WO2010021647A1 - Lighting device having switch controlled modes - Google Patents

Lighting device having switch controlled modes Download PDF

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Publication number
WO2010021647A1
WO2010021647A1 PCT/US2009/002486 US2009002486W WO2010021647A1 WO 2010021647 A1 WO2010021647 A1 WO 2010021647A1 US 2009002486 W US2009002486 W US 2009002486W WO 2010021647 A1 WO2010021647 A1 WO 2010021647A1
Authority
WO
WIPO (PCT)
Prior art keywords
switch
lighting device
light sources
light
mode
Prior art date
Application number
PCT/US2009/002486
Other languages
French (fr)
Inventor
David A. Spartano
Frank Huang
Mark A. Ferguson
Thomas Meyers
Original Assignee
Eveready Battery Company, Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Eveready Battery Company, Inc. filed Critical Eveready Battery Company, Inc.
Publication of WO2010021647A1 publication Critical patent/WO2010021647A1/en
Priority to US13/029,167 priority Critical patent/US8376574B2/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21LLIGHTING DEVICES OR SYSTEMS THEREOF, BEING PORTABLE OR SPECIALLY ADAPTED FOR TRANSPORTATION
    • F21L4/00Electric lighting devices with self-contained electric batteries or cells
    • F21L4/04Electric lighting devices with self-contained electric batteries or cells characterised by the provision of a light source housing portion adjustably fixed to the remainder of the device
    • F21L4/045Pocket lamps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21LLIGHTING DEVICES OR SYSTEMS THEREOF, BEING PORTABLE OR SPECIALLY ADAPTED FOR TRANSPORTATION
    • F21L4/00Electric lighting devices with self-contained electric batteries or cells
    • F21L4/02Electric lighting devices with self-contained electric batteries or cells characterised by the provision of two or more light sources
    • F21L4/022Pocket lamps
    • F21L4/027Pocket lamps the light sources being a LED
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V15/00Protecting lighting devices from damage
    • F21V15/01Housings, e.g. material or assembling of housing parts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/04Arrangement of electric circuit elements in or on lighting devices the elements being switches
    • F21V23/0414Arrangement of electric circuit elements in or on lighting devices the elements being switches specially adapted to be used with portable lighting devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/04Arrangement of electric circuit elements in or on lighting devices the elements being switches
    • F21V23/0414Arrangement of electric circuit elements in or on lighting devices the elements being switches specially adapted to be used with portable lighting devices
    • F21V23/0421Arrangement of electric circuit elements in or on lighting devices the elements being switches specially adapted to be used with portable lighting devices the switch being part of, or disposed on the tail cap portion thereof
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/34Voltage stabilisation; Maintaining constant voltage
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/345Current stabilisation; Maintaining constant current
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/37Converter circuits
    • H05B45/3725Switched mode power supply [SMPS]
    • H05B45/38Switched mode power supply [SMPS] using boost topology
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/32Pulse-control circuits
    • H05B45/325Pulse-width modulation [PWM]
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/32Pulse-control circuits
    • H05B45/335Pulse-frequency modulation [PFM]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/30Semiconductor lamps, e.g. solid state lamps [SSL] light emitting diodes [LED] or organic LED [OLED]

Definitions

  • the present invention generally relates to lighting devices and, more particularly, to multifunctional lighting devices, such as flashlights that offer multiple lighting options, control of such lighting options and multiple modes of operation.
  • Portable lighting devices such as flashlights, generally employ a light source, such as an incandescent lamp or one or more light emitting diodes (LEDs), a reflector or other optics, and a power source typically employing one or more electrochemical cell batteries.
  • a light source such as an incandescent lamp or one or more light emitting diodes (LEDs), a reflector or other optics, and a power source typically employing one or more electrochemical cell batteries.
  • Many handheld lighting devices commonly referred to as flashlights, generally offer limited functionality and performance.
  • the conventional flashlight includes a switch located on the outer circumference of the housing that can be activated to alternatively close and open a circuit connection to turn the flashlight on and off. If more than one light source is included in the flashlight, multiple switches typically are provided to control each light source.
  • a portable lighting device such as a flashlight, that may offer enhanced use in the field, such as for military and industrial applications, and for other outdoor use
  • a lighting device in accordance with one aspect of the present invention, includes a plurality of light sources and a housing adapted to receive power to power the plurality of light sources.
  • the lighting device also includes a first switch configured to be actuated by a user to select from one of a plurality of operating modes.
  • the lighting device further includes a second switch configured to be actuated by a user to control one of the plurality of light sources based on the selected operating mode.
  • a method of operating a lighting device includes the step of providing a lighting device comprising a plurality of light sources, a housing adapted to receive power to power the plurality of light sources, a first switch and a second switch.
  • the method also includes the step of actuating the first switch by a user to select one of a plurality of operating modes.
  • the method further includes the step of actuating the second switch by a user to control one of the plurality of light sources based on the selected operating mode.
  • FIG. 1 is an upper front perspective view of a lighting device, according to one embodiment
  • FIG. 2 is a lower front perspective view of the lighting device shown in FIG. 1 with the swivel head rotated to a second locked position and the end cap in the open position
  • FIG. 3 is a front view of the lighting device shown in FIG. 1;
  • FIG. 4 is a left side view of the lighting device shown in FIG. 1 with the swivel head in a first locked position;
  • FIG. 5 is a cross-sectional view of the lighting device taken through line V-V of FIG. 3;
  • FIG. 6 is a cross-sectional view of the lower portion of the lighting device taken through line VI-VI of FIG. 3; [0016] FIG. 6A is an enlarged view of section VIA of FIG. 6 illustrating electrical connection of the positive terminal of a battery to electrical circuitry;
  • FIG. 7 is an exploded assembly view of the lighting device shown in FIG. 1 ;
  • FIG. 7A is an exploded assembly view of the swivel heading shown in FIG. 7;
  • FIG. 7B is an exploded assembly view of the swivel connector shown in FIG. 7;
  • FIG. 7C is an exploded assembly view of the main body shown in FIG. 7;
  • FIG. 7D is an exploded assembly view of the end cap shown in FIG. 7;
  • FIG. 8 is a cross-sectional view of the lighting device taken through line VIII-VIII of
  • FIG. 4 [0023] FIG. 8A is an enlarged view of section VIII-VIII of FIG. 8 further illustrating electrical connection of the batteries to electrical circuitry in the lighting device; [0024] FIG. 9 is a cross-sectional view of the lighting device taken through line VIII-VIII of
  • FIG. 4 showing one battery in a reverse oriented storage position
  • FIG. 9A is an enlarged view of section IX-IX taken through line FIG. 9 showing the electrical connection of the batteries to electrical circuitry in the lighting device
  • FIG. 10 is a perspective view of the swivel head with the right pivot connector of the head attachment mechanism exploded
  • FIG. 1 IA is a side view of the swivel head shown in the first locked position
  • FIG. 1 IB is a side view of the swivel head shown in an intermediate position
  • FIG. 1 1 C is a side view of the swivel head shown in a second locked position
  • FIG. 12A is a cross-sectional view taken through line XII-XII of FIG. 3 showing the right pivot connector of the head attachment assembly in a locked position
  • FIG. 12B is a cross-sectional view taken through line XII-XII of FIG. 3 showing the right pivot connector of the head attachment assembly in an unlocked position
  • FIG. 13 is a perspective view of the tail cap showing the cam lock wheel mechanism exploded
  • FIG. 14 is a perspective view on the inside of the cam lock wheel mechanism shown in
  • FIG. 13 [0034] FIG. 15 is a front view of the tail cap assembly shown in the closed position; [0035] FIG. 16 is a partial cross-sectional view taken through the cam lock wheel of FIG. 15 showing the locking engagement of the tail cap;
  • FIG. 17 is a side view of the tail cap shown in the closed position
  • FIG. 18 is a front view of the tail cap assembly shown in an intermediate partial open position;
  • FIG. 19 is a partial cross-sectional view through the cam lock wheel mechanism of FIG.
  • FIG. 20 is a side perspective view of the tail cap assembly in a partial open position
  • FIG. 21 is a front view of the tail cap illustrated in an open position
  • FIG. 22 is a partial cross-sectional view of the cam lock wheel mechanism shown in the open position
  • FIG. 23 is a side view of the tail cap assembly shown in an open position.
  • FIG. 24 is a circuit diagram illustrating control circuitry for controlling the various lighting sources of the lighting device, according to one embodiment.
  • relational terms such as first and second, top and bottom, and the like, may be used to distinguish one entity or action from another entity or action, without necessarily requiring or implying any actual such relationship or order between such entities or actions.
  • the terms “comprises,” “comprising,” or any other variation thereof, are intended to cover a non- exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
  • An element preceded by “comprises” does not, without more constraints, preclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
  • a lighting device 10 is generally illustrated embodied as a handheld lighting device, also referred to herein as a flashlight that is portable and adapted to be handled by a user to provide light illumination, according to one embodiment. While the lighting device 10 is shown and described herein as a handheld flashlight, it should be appreciated that the lighting device 10 may be employed with one or more mounting structures that enable the lighting device 10 to be mounted onto a supporting structure, including an article of clothing, such as a shirt, a vest, a helmet, a ball cap, or may be mounted onto other structures, such as firearms to assist with military or hunting applications.
  • the lighting device 10 is configured to operate in multiple modes of operation and can be used as a flashlight (spot or flood), an exterior light, an automotive light, a table light, a desk light, and the like.
  • the lighting device 10 generally includes a main housing body
  • the body 12 that is generally elongated and adapted to be received within and gripped by the hand of a user.
  • the body 12 generally has walls that define a compartment within the interior that is adapted to receive one or more batteries as the power source, generally within a battery cartridge 100.
  • the compartment with body 12 further contains electrical circuitry and controls.
  • the body 12 also includes a yoke portion 14 having a pair of upward extending arms 14A and 14B extending from one end that engages a swivel head 20 by way of a head attachment mechanism 32.
  • Each of arms 14A and 14B has an opening for receiving left and right swivel connectors 34 and 36 that connect the swivel head 20 thereto.
  • the swivel head 20 includes one or more light sources.
  • the swivel head 20 includes five light sources embodied as light emitting diodes (LEDs) 22, 24, 26, 28 and 30.
  • the swivel head 20 may be rotated to swivel amongst a plurality of positions to selectively provide light illumination oriented in a desired one of a plurality of directions.
  • the swivel head locks into fixed positions at two locations.
  • the main body 12 has a pivoting bottom end or tail cap 16 at the end opposite from the yoke portion 14.
  • the end cap 16 pivots relative to the body 12 and has a locking mechanism that is user actuatable to open or close the end cap 16.
  • the end cap 16 may be opened as shown in FIG. 2 to expose the battery compartment to allow a user to remove batteries 64 from and insert batteries 64 into the battery compartment.
  • the end cap 16 is pivotally connected to the main body 12 by way of a pivot connection.
  • the pivot connection may be in the form of a hinge having hinge members 66A and 66B formed on the end cap 16 and body 12, respectively, that align and a pin 68 extending through aligned openings in the hinge members 66A and 66B, according to one embodiment.
  • Attached to the end cap 12 is a lock mechanism having rotating cam lock wheel 18 which includes a cam surface formed on the inside for engaging a protruding member, such as a tooth 132, on the outer wall of the main body 12.
  • the end cap 16 is rotated to a partial closed position and the cam lock wheel 18 is then rotated clockwise such that the cam surface engages the protruding member 132 to forcibly translate rotational movement of the wheel 18 to pivoting movement of the end cap 16 to move the end cap 16 towards the main body 12 with sufficient force to engage and compress a seal 160 disposed between the end cap 16 and the main body 12.
  • a sealed closure is provided.
  • the cam lock wheel 18 is rotated counterclockwise such that the protruding member 132 comes out of engagement with the cam surface so that the end cap 16 is free to be rotated to the fully open position.
  • the lighting device 10 includes five light sources in the form of LEDs 22, 24, 26, 28 and
  • LED 22 is generally located in the middle region of the front face of the swivel head 20 and is implemented as a white LED, also referred to as a non-colored LED for projecting visible non-colored white light illumination. The remaining four LEDs are generally located near the four corners of the front face of the swivel head 20.
  • LED 24 may be implemented as a blue colored LED for emitting a beam of visible blue colored light in a blue colored illumination beam.
  • LED 26 may be implemented as a red colored LED for emitting a beam of visible red colored light in a red colored illumination beam.
  • LED 28 may be implemented as a green colored LED for emitting a beam of visible green colored light.
  • LED 30 may be implemented as an infrared (IR) LED for emitting a forward projecting beam of infrared (IR) illumination, according to one embodiment.
  • one of the light sources, such as LED 30, may be implemented as an ultraviolet (UV) light source.
  • the UV light can be used for various applications including inspection of documents such as passports and paper currency, to detect Freon leaks where Freon is treated with a UV sensitive dye, to detect clothing and fishing line amongst other possible materials, to detect and track UV sensitive fluids, and to activate UV color in dyes and paints.
  • the various colored and non-colored light sources may be implemented in different patterns and arranged in different locations, and may further have different output illuminations, according to other embodiments.
  • the white main LED 22 generally provides a higher light intensity than the other light sources 22, 26, 28 and 30.
  • the white LED 22 may typically be driven by one AA-size alkaline battery at a current of approximately 150 milliamps to achieve about 75-80 lumens of light illumination, or may be driven by two series connected alkaline batteries at a current of about 275 milliamps to generate about 75-80 lumens of light illumination.
  • the colored LEDs 24, 26 and 28 and the IR LED 30 may typically be driven with one alkaline battery at approximately 30 milliamps to achieve in the range of about 1-10 lumens of light illumination or driven with two alkaline batteries at approximately 50 milliamps to achieve in the range of about 1-10 lumens of light illumination for each light source. It should be appreciated that other batteries such as lithium batteries may be employed to achieve greater power capacity.
  • the lighting device 10 may operate on power supplied by one battery cell or two batteries, according to one embodiment. In doing so, the lighting device 10 employs control circuitry to maintain sufficient electrical power output to drive the one or more light sources under conditions when either one or two batteries are employed. Further, the light intensity of the light sources may be adjusted to low, medium and high intensity settings. In a medium intensity setting, the light source may be powered at about fifty percent of the high power setting, and in the low power setting, the light source may be powered at twenty-five percent of the high power setting. It should be appreciated that the main white LED 22 thereby serves as the main light source for providing the greatest amount of illumination. However, it should be appreciated that the amount of illumination achieved with each of the lighting sources 22, 24, 26, 28 and 30 may be varied, according to other embodiments.
  • the lighting device 10 is further configured with a plurality of user actuatable control switches for controlling activation and illumination of the light sources 22, 24, 26, 28 and 30.
  • a first switch 40 shown implemented as a three-position toggle switch, is located on the front side of the main body 12 below the swivel head 20 and generally in a convenient location to be actuated by the thumb of a user gripping the main body 12.
  • the three-position toggle switch 40 has three switch positions, namely a first switch position 4OA on the right side that enables the visible LEDs to be actuated in a visible LED enabled mode, a second switch position 4OB on the left side that enables the infrared LED to be actuated in either the IR or IFF enabled mode, and a third switch position 4OC in the center that serves as a lockout mode such that none of the LEDs can be turned on.
  • the control arm of the toggle switch 40 is substantially aligned with an outward protruding switch guard member 98 that serves to prevent accidental or inadvertent actuation of the toggle switch 40.
  • the outward protruding switch guard member 98 generally has a shape and size that extends outward from the main body 12 by a distance the same as or greater than the control arm of the toggle switch 40 and can be formed as an integrally molded member from the main body 12. Thus, the outward protruding member 98 serves as a protective guard.
  • the lighting device 10 also includes three user-depressible push button switches 42, 44 and 46 located generally below the toggle switch 40 and actuatable conveniently by the thumb of a user holding the main body 12.
  • push button switch 42 may be actuated (depressed) to control the green LED to turn the green LED on and off, and may further be actuatable (depressed) to control illumination intensity (brightness) of the green LED.
  • switch 44 may be actuated to control the red LED so as to turn the red LED on and off, and to further control the illumination intensity of the red LED.
  • switch 46 may likewise be actuated to control the blue LED so as to turn on the blue LED and to further control the illumination intensity of the blue LED.
  • each of the push button switches 42, 44 and 46 are operable to control the corresponding LEDs 24, 26 and 28 when the three-position toggle switch 4OA is in the visible LED enabled position 4OA so as to turn on the corresponding colored light sources 24, 26 and 28.
  • Each of the push button switches 42, 44 and 46 is further actuatable, generally within a two second window, to adjust the intensity or brightness of the corresponding colored light sources 24, 26 and 28.
  • a two second window is provided to allow a user to control the intensity of the light source once the corresponding light source is turned on.
  • any of switches 40, 42 and 44 may be actuated repeatedly to turn the corresponding light source on and off and to sequentially change intensity of the colored light emitted by the corresponding light sources among a plurality of brightness settings, including high, medium and low intensity settings.
  • the intensity or brightness of the light sources may be adjusted according to a predetermined sequence.
  • the light sources may be turned on at a low intensity setting and may be subsequently adjusted in intensity to sequence from the low brightness setting to a medium brightness setting to a high brightness setting and repeat the sequence or reverse the order of the sequence.
  • the light sources may be turned on at a high brightness setting and subsequently adjusted sequentially to a medium brightness setting, then a low brightness setting, and repeat the sequence or reverse the order of the sequence.
  • some of the light sources such as the white light LED 20 may be turned on at the highest intensity setting, whereas a colored light LED such as LEDs 22, 24 and 26 may be turned at a low intensity setting so as to provide for a less noticeable light illumination which may be desirable for hunting or military applications.
  • the switches 40, 42 and 44 may be further actuated, within the two second window, by continuous depression so as to adjust the colored light intensity of the corresponding light source at more incremental settings by ramping the visible light intensity up and down.
  • the lighting device 10 further includes a user depressible push button switch 48 located in the bottom end of the end cap 16.
  • Switch 48 is actuatable by a user to control the main white LED 22 when the three-position toggle switch 40 is in the visible LED enabled position 4OA such that depression of switch 48 turns on the main white light source 22, and may further change intensity of the main white light source 22 by continued depression of the switch 48 within a two second window. Accordingly, if a user depresses switch 48 to turn on the white LED 22, any subsequent depression within the two second window will adjust the intensity of the white light in a sequence, such as to switch from a high to a medium and then to low brightness setting sequence or in a ramped fashion to ramp the brightness of the light source incrementally up and down.
  • the infrared light source 30 will turn on in the infrared (IR) mode to provide continuous IR with no blinking and, if switch 48 is depressed, then the lighting device 10 will enter the IFF or SOS mode in which the infrared LED 30 blinks at a specified rate for purposes of IFF or SOS, according to one embodiment.
  • the light source 30 may be an ultraviolet light source that provides ultraviolet lighting. Accordingly, it should be appreciated that the three-position toggle switch 40 may be utilized to select between the visible LED mode and the IR/IFF mode, and the push button switch 48 may be employed to control the white LED 20 or IR LED 30 depending upon the selected mode.
  • the infrared light source 30 is employed as an identification friend or foe (IFF) light source, which is particularly useful for military applications.
  • the IFF light source 30 may be implemented with the infrared LED generating an infrared identifier beam that is generally invisible to the naked human eye, which in a military use serves as a friendly party member indicator.
  • the IFF light source 30 may operate intermittently to provide a blinking signal at a predetermined rate or pattern that may be viewable by other persons with the use of night vision equipment (e.g., night vision goggles).
  • the infrared light source 30 may be employed as an identification friend or foe (IFF) light source, which is particularly useful for military applications.
  • the IFF light source 30 may be implemented with the infrared LED generating an infrared identifier beam that is generally invisible to the naked human eye, which in a military use serves as a friendly party member indicator.
  • the IFF light source 30 may operate intermittently to provide a blinking signal at a predetermined rate or pattern
  • the light source 30, in the SOS embodiment may be implemented as a visible light source that is generally visible to the human eye and may operate intermittently to provide a blinking visual light signal at a predetermined rate or pattern that may be visible by other persons.
  • the lighting device 10 is further equipped with a test mode that enables a test to check whether all of the LEDs are properly operating.
  • a test mode that enables a test to check whether all of the LEDs are properly operating.
  • switches 42 and 46 are simultaneously depressed.
  • the various light sources 20, 22, 24, 26 and 28 automatically cycle through a predetermined sequence. This enables an assembler in a manufacturing facility or a user in the field to verify that the various light sources are operating properly.
  • the white LED 22 is shown in FIG. 7 A generally mounted to a thermally conductive
  • a lens in the form of a total internal reflectance (TIR) lens 90, is disposed in front of the main white LED 22 for focusing the white light beam illumination in a desired beam pattern.
  • the TIR lens 90 may be made of a thermoplastic and transparent plastic, also referred to as acrylic glass.
  • acrylic glass is polymethyl methacrylate (PMMA).
  • the TIR lens 90 may include a TIR rebel lens with an O-ring frame 91 that may be injection molded.
  • the TIR lens 90 has a flange 93 that is provided to allow a hard polymeric material of front housing member 86 to be molded therewith. By molding the hard polymeric material 86 around the flange 93 of TIR lens 90, a watertight seal is formed during the molding operation. A soft elastomeric material 88 is then overmolded over the hard plastic material 86.
  • LED board 94 Also disposed within the swivel head 20 is an LED board 94 with each of the other four
  • the LED board 94 includes contact terminals for providing electrical connection to each of the LEDs 24, 26, 28 and 30.
  • TIR lens 90, heat sink 92 and circuit board 94 disposed within the rear housing 58 and its overmolded elastomeric material 60 of the swivel head 20, the front housing 86 and its overmolded elastomeric material 88 is assembled so as to engage a seal 87 and fasteners (e.g., screws) are installed to form a sealed closure to the swivel head 20.
  • the main white LED 22 may include a Cree XRE, commercially available from Cree, Inc.
  • the colored blue LED may include Part No. GB- 333B473C-032, commercially available from Globe Technology Component.
  • the red LED may include Part No. GB-IR224B31C-015, commercially available from Globe Technology Component.
  • the green LED may include Part No. LL-F50SRGBC2E-F1, commercially available from Globe Technology Component.
  • the IR LED 30 may include an invisible IR LED, such as Part No. GB-IR224B31C-015, commercially available from Globe Technology Component. While the main LED 22 is shown having an optical lens in the form of a TIR lens 90 in front thereof, it should be appreciated that the other LEDs 24, 26, 28 and 30 may likewise include a TIR lens or other optical lens.
  • the main body 12 of the lighting device 10 is shown having various components assembled within the compartment, including the battery cartridge 100 which includes first and second battery compartments or receptacles 102A and 102B configured to receive first and second batteries 64.
  • the batteries 64 are installed side-by-side in parallel, but the electrical connection of the batteries 64 is generally connected in series to provide a summed voltage output from both batteries.
  • the batteries 64 that are used to power the lighting device 10 are installed with the positive terminal 65A inserted first such that the negative terminal end 65B is at the bottom or rear end and in contact with the negative contact springs 72 A and 72B.
  • circuit board 120 having components assembled thereto including control circuitry 200 and a switch board 121 having switches 42, 44 and 46 assembled thereto.
  • Circuit board 120 and switch board 121 sandwich member 1 12 and are electrically connected to allow switch signals to pass to the control circuitry 200.
  • the control circuitry 200 includes a microprocessor, according to one embodiment. However, it should be appreciated that other forms of circuitry including an application specific integrated circuit (ASIC) or other analog and/or digital circuitry may be employed.
  • ASIC application specific integrated circuit
  • the control circuitry 200 controls various aspects of activating the light sources, adjusting intensity or brightness, and controlling the modes of operation as explained herein.
  • electrically conductive circuit elements that provide electrical power from one or more batteries 64 to the control circuitry 200 and to power the light sources 20, 22, 24, 26 and 28.
  • the electrically conductive elements include a flat ribbon or strip 114 having a plurality of circuit elements formed as circuit traces packaged within a non-conductive strip. According to one embodiment, four circuit traces are provided within the ribbon strip 1 14. Two of the circuit traces in the ribbon strip 114 are connected to the bottom switch 48 assembled in the tail cap 16. A first conductive strip is in contact with a first contact of switch 48 and a second conductive strip is in contact with a second contact of the switch 48.
  • the third conductive strip is in contact with the first negative battery contact spring 72A and the fourth conductive strip is in electrical contact with the second negative battery terminal contact spring 72B. Accordingly, the signals across the switch 48 and at the negative terminal of each of the two batteries 64 is supplied to the control circuitry 200 by way of the ribbon strip 114. The control circuitry 200 thereby can determine the state of switch 48 and can provide an electrical connection to each battery 64.
  • the control circuitry 200 processes the battery power output and provides a sufficient power supply to power each of the light sources 20, 22, 24, 26 and 28, when they are turned on.
  • a plurality of wires 82 extend from the control circuitry 200 through one side of the swivel connection in slot 35 of the left pivot connector 34 which extends through opening 15 in arm 14A as shown in FIG. 7B.
  • the bundle of wires 82 extend into the interior of the swivel head 20.
  • the plurality of wires 82 are packaged together in a bundle and extend through the swivel head 20 in a seal tight manner so as to prevent moisture from entering the compartment within the swivel head 20.
  • the plurality of wires 82 employ eight or ten wires sufficient to allow electric current to flow individually to each of the LEDs 22, 24, 26, 28 and 30.
  • the plurality of wires 82 employ eight or ten wires sufficient to allow electric current to flow individually to each of the LEDs 22, 24, 26, 28 and 30.
  • a different number of wires may be employed, according to other embodiments.
  • a pair of wires may be employed to transmit power and data between the control circuitry 200 and the swivel head 20.
  • separate control circuitry may be included in the swivel head 20 so as to allow for the receipt and transmission of data and power supplied by way of the pair of wires.
  • a pair of batteries 64 is shown installed within the battery cartridge 100 of the lighting device 10 in a dual battery operation mode in FIGs. 8 and 8A and a single battery operation mode in FIGs. 9 and 9A.
  • the battery cartridge 100 is adapted to receive first and second batteries 64 within corresponding first and second battery compartments 102A and 102B, according to the disclosed embodiment.
  • Each of the batteries 64 is intended to be installed in the same orientation, such that the positive terminal 65 A of each battery 64 is installed into the battery cartridge 100 first so that the negative terminal 65B of batteries 64 contact the negative terminal springs 72A and 72B.
  • the positive terminal 65A of each battery 64 has a protruding nubbin in the central region that is distinguished from the negative terminal 65B having a more flat bottom.
  • the battery cartridge 100 is configured to allow the lighting device 10 to be powered by both the first and second batteries 64 when the positive terminal 65A of both batteries 64 is installed properly such that the protruding nubbins 65 A of batteries 64 contact respective electrically conductive cups 108A and 108B, which are spring biased by the springs 1 1OA and HOB, respectively.
  • the protruding nubbin 65 A of each battery 64 extends within a region between an inward protruding rib or ring member 105 to contact the conductive cup 108 A or 108B as shown in FIG.
  • the inward protruding members 180 have a ring shape with an inside diameter sufficiently large to allow the protruding nubbin 65 A of each battery 64 to extend into contact with the corresponding conductive cup 108A or 108B, but prevent the negative terminals 65B of batteries 64 from contacting the corresponding conductive cups 108A or 108B.
  • the negative terminal end 65B of the battery 64 directly engages the inward protruding ring member 105 which prevents electrical contact between the battery negative terminal 65B and the electrically conductive cup 108B as shown in FIGs. 9 and 9A for the battery 64 on the right side.
  • the battery 64 installed in the reverse orientation direction does not contact electrical circuit elements and therefore does not provide a power output for powering or operating the lighting device 100, but instead is merely stored in a non-use position within the battery cartridge 100.
  • the lighting device 10 may be operated from the single properly installed battery 64.
  • a user may intentionally install one battery 64 in a reverse orientation so that the reverse oriented battery 64 is considered a storage battery that is not used as the power source.
  • the lighting device 10 may be powered with a single battery until the one battery is drained, and then a user will know that about half of the available power has been used and may switch the orientation of the improperly installed battery so as to use the storage battery to power the light device 10 thereafter.
  • the battery compartment 100 may be configured to receive multiple batteries 64 arranged in parallel, but electrically connected in series, and installed in the same orientation within the battery cartridge 100, a user may easily install batteries into the lighting device 10 in the dark knowing that the battery orientation is proper. This allows for ease in changing batteries 64 and enhanced overall use of the lighting device 10.
  • the swivel head 20 and its rotational positioning with respect to the main body 12 are further illustrated.
  • the right pivot connection 36 is shown having a plurality of detents 154 formed in an inner surface.
  • the detents 154 align with teeth 152 in the push button release mechanism 38 to provide locking positions ninety degrees (90°) apart from one another such that the swivel head 20 may be locked in the first position shown in FIGs. 10 and 1 IA, which is ninety degrees (90°) relative to the longitudinal axis of the body 12, and may further be rotated ninety degrees (90°) and locked into the second position shown in FIG.
  • the push button release mechanism 38 that is actuated by a user is shown including a plurality of teeth 152 which engage detents 154 in connection 36 in either of the locked positions. It should be appreciated that the detents and the teeth may be switched such that the detents 154 are provided in the push button release mechanism 38 and the teeth 152 are provided in the pivot connection 36. Further, it should be appreciated that both detents and teeth may be provided on both of the push button release mechanism 38 and pivot connection 36, such that the detents and teeth correspondingly mate in the locked swivel head positions.
  • Push button release mechanism 38 is assembled onto the square pin 150 of the head attachment mechanism 32. It should be appreciated that pin 150 may be otherwise configured to have a plus (+) shape or other shape. Push button release mechanism 38 rotates with swiveling movement of the head 20. A spring 80 biases the push button release mechanism 38 outward and is compressible upon sufficient actuation from a user so as to disengage teeth 152 from detents 154 to allow rotational movement of head 20. The swivel head 20 may be oriented at ninety degrees (90°) relative to the longitudinal axis of the body 12 as shown in FIG. 1 IB. Upon depression of switch 38 as shown in FIG.
  • the teeth 152 become disengaged from detents 154 and the swivel head 20 is rotated and may be moved through intermediate positions, such as the position shown in FIG. 1 IB. In an intermediate position, the teeth 152 are not engaged within detents 154 such that the pivot head 20 is not in a locked position.
  • the teeth 152 may be biased back into engagement with detents 154 to lock the swivel head 20 into the second position as shown in FIG. 11C.
  • the spring 80 biases the push button 38 back to the outward position.
  • the left side of the head attachment mechanism 32 has a left pivot connection 34 in the form of a pin that allows the swivel head 20 to swivel.
  • the swivel head 20 fits into place into the first or second locked positions.
  • the first locked position the swivel head 20 projects light illumination in a direction substantially perpendicular to the longitudinal axis of the main body 12.
  • the lighting device 10 may be installed onto a mounting structure, such as an article of clothing, and may withstand forces that impact the lighting device 10, such as forces experienced while the lighting device 10 is in motion.
  • the second locked position maintains the swivel head 20 in position sufficient to withstand forces acting upon the swivel head.
  • the lighting device 10 may be mounted to a firearm or other weapon and the locking mechanism sufficiently maintains the swivel head 20 in position and is sufficient to withstand the recoil forces experienced during firing of the weapon.
  • the light body 12 is shown equipped with a clip 76 installed on the back wall of the body 12 as shown in FIGs. 4 and 5.
  • the clip 76 may be in the form of a bent wire as shown in FIG. 7C and is connected to the body 12 by way of a clip bracket 78. It should be appreciated that the clip 76 may bend outward from the end opposite the clip bracket 78 to allow for engagement with a member, such as a shirt pocket such that the clip 76 holds the lighting device 10 in position relative to the other structure. It should be appreciated that other clip attachments and mounting structures may be employed to support the lighting device 10 attached onto a structure.
  • the cam lock wheel mechanism 18 is shown assembled to the end cap 16.
  • the cam lock wheel mechanism 18 includes a lever 136 extending from the periphery that allows the user to easily engage and rotate the cam lock wheel 18.
  • the cam lock wheel 18 is assembled to the end cap 16 by a fastener such as a screw.
  • the cam lock wheel 18 has an internal barrel cam 134 in the form of a groove or slot that is spiraled inward from the periphery.
  • the internal barrel cam 134 is positioned to engage an outward protruding member, such as tooth 132, provided on the main body 12 to close the end cap 16 and provide a sealed and locked closure.
  • the internal barrel cam 134 includes a detent 135 provided in the slot located at a position to engage and retain the tooth 132 in the sealed and locked closure position.
  • the detent 135 locks the cam lock wheel mechanism 18 in place with regard to the tooth 132 such that a larger amount of force is required to overcome the frictional engagement between the detent 135 and tooth 132 to rotate the wheel mechanism 18 to unlock the locked engagement.
  • the detent 135 may be an outward protruding member such as a bump.
  • the end cap 16 is in a fully closed position with the cam lock wheel 18 rotated fully clockwise so that lever 136 is in the vertical position.
  • the internal barrel cam 134 substantially fully engages the protruding tooth 132 on housing 12 such that the end cap 16 is pulled toward main body 12 due to the internal cammed surface of cam lock wheel 18.
  • the detent 135 provides a resistive force to lock the cam lock wheel mechanism 18 in place relative to tooth 132 such that a sufficient amount of force is required to overcome the locking engagement to rotate the wheel mechanism 18 to open the end cap 16.
  • the end cap 16 forms a sealed closure to the battery compartment as shown in FIG. 17.
  • cam lock wheel 18 To open the end cap 16, a user rotates the cam lock wheel 18 counterclockwise. As seen in FIG. 18, the cam lock wheel 18 is turned one quarter of a turn (90°) counterclockwise to a partial open position. In this position, the cam surface of cam lock wheel 18 allows the end cap 16 to move away from the tooth 132 engaged within the cam surface 134. As such, the end cap 16 may be partially opened as shown in FIG. 20. To fully open the end cap 16, the cam lock wheel 18 is rotated further counterclockwise as shown in FIG. 21 to complete a half rotation (180°) relative to the fully locked position.
  • the batteries may be replaced.
  • the ribbon connector 114 extends from within an internal wall of the main body 12 and into the end cap 16 where connections are made.
  • the ribbon connector 1 14 may slidingly move in and out of the main body 12 via an opening as the end cap 16 is pivoted between the open and closed positions.
  • the lighting device 10 is made of a substantially rigid polymeric material capable of withstanding large forces such as those encountered when dropped or loads under abusive conditions.
  • the body 12 is formed of a rigid polymeric material 50 which may include a blend of ABS and polycarbonate, according to one embodiment.
  • the soft elastomeric material 52 may include soft durometer material, such as TPE.
  • Portions of the main body 12, particularly the front portion and push button switches 42, 44 and 46 have an overmolded soft elastomeric material 52 overmolded onto the rigid polymeric material 50 as shown in FIG. 6.
  • the tail cap 16 has a rigid polymeric layer 54 and a bottom portion is overmolded with a soft elastomeric layer 56.
  • the head cap 20 likewise includes a hard polymeric layer 58 overmolded with a soft elastomeric layer 60.
  • the soft elastomeric overmolded material of layers 52, 56 and 60 advantageously absorb forces during impact and provide for an enhanced feel that is easy and comfortable to grip.
  • the yoke portion 14 is shown as a separate piece which connects to the main body 12. It should be appreciated that the yoke portion 14 and main body 12 are adapted and connect together and may include a seal disposed therebetween to provide a sealed closure.
  • the yoke portion 14 may be made of a rigid polymeric material, according to one embodiment. It should be appreciated that the yoke portion 14 may otherwise be integrally formed as part of the main body, according to an alternate embodiment.
  • the lighting device 10 includes control circuitry 200 for controlling operation of the light sources 22, 24, 26, 28 and 30.
  • the control circuitry 200 is generally illustrated in FIG. 24 having a pair of boost circuits, according to one embodiment.
  • the control circuitry 200 includes a microprocessor 202 coupled to memory 204.
  • the microprocessor 202 may include any signal processing device capable of processing switch inputs, executing routines, and generating control signals, as described herein.
  • Memory 204 may include volatile and nonvolatile memory devices, such as electronically erasable programmable read-only memory (EEPROM), flash memory, or other known memory devices.
  • EEPROM electronically erasable programmable read-only memory
  • Stored within memory 204 are a plurality of routines including one or more light control routines 300 and ramping light control routines 400.
  • the light control routines 300 are executed by the microprocessor 202 to control activation of the various light sources based on activation of the various switches.
  • the ramping light control routines 400 provide a ramped adjustment of the intensity (for brightness) of the light sources, according to one embodiment.
  • the control circuitry 200 includes boost control circuitry for supplying a substantially constant current to power the main white LED 22, and provides a substantially constant voltage of approximately 3.6 volts to power the control circuitry, including the microprocessor 202, and the remaining LEDs 24, 26, 28 and 30, according to the disclosed embodiment.
  • the control circuitry 200 illustrates first and second batteries 64 electrically connected in series to provide a summed power source voltage BAT+. Given that each single cell battery 64 typically outputs a voltage of approximately 1.5 volts, the sum total voltage BAT+ for two series connected batteries is approximately 3.0 volts. Connected in parallel to the first and second batteries 64 are a pair of series connected diodes D8 and D9, which serve as protective devices to prevent shorting of the batteries 64. It should be appreciated that if one of the batteries 64 is installed in the lighting device 10 in a reverse orientation such that it is in a stored non-used orientation, then the other battery 64 solely provides the battery voltage output BAT+, which is typically about 1.5 volts. The battery output BAT+ is supplied to first boost circuitry 206 and second boost circuitry 208. Additionally, the microprocessor 202 senses the battery voltage BAT+ at input pin RB2.
  • the three-position toggle switch 40 is shown having a first switch position that grounds out signal KEY3 , a second position that is not connected to the control circuitry, and a third position that grounds out signal KEY5.
  • the microprocessor 202 senses signals KEY3 and KEY5, and thereby determines which position the toggle switch 40 is in based on the sensed signals.
  • Switch 46 closes out the connection between ground and voltage VDD passing through resistor R3 and provides a grounded signal KEYl when switch 46 is depressed.
  • Signal KEYl is sensed by the microprocessor 202.
  • Switch 42 closes the connection between ground and voltage VDD through resistor R4 when switch 42 is depressed and provides a grounded signal through signals KEYl and KEY4, both of which are detected by microprocessor 202.
  • Switch 44 when depressed, closes the connection between ground and voltage VDD through resistor R5 and provides a grounded signal KEY2 which is sensed by microprocessor 202.
  • Switch 48 when depressed, provides a connection between ground and voltage VDD such that signal KEY4 is grounded, which is detected by microprocessor 202.
  • the microprocessor 202 is able to determine whether any of the switches 40, 42, 44, 46 and 48 are depressed.
  • the first boost circuitry 206 receives the summed battery voltage BAT+ at inductor L2 across capacitor 96 and generates a substantially constant current through diode D7 which is supplied to the main white LED 22. In doing so, the microprocessor 202 provides a pulse width modulated (PWM) output signal on pin RCO which is supplied through diode D2 to the enable input (CE) of the first boost circuitry 206. The first boost circuitry 206 in turn generates a pulse frequency modulated (PFM) output on output pin OUT which is supplied to power the main white LED 22.
  • the first boost circuitry 206 may receive a feedback signal from current sensing resistors R24 and R25. The capacitors C7 and C8 are connected across the LED 22 to provide a stable output.
  • the second boost circuitry 208 receives the summed battery voltage BAT+ at inductor Ll across capacitor Cl.
  • the second boost circuitry 208 generates a substantially constant voltage of approximately 3.6 volts passing through diode Dl.
  • the substantially constant 3.6 volts is then used to power the control circuitry, including the microprocessor 202, and to power the remaining LEDs 24, 26, 28 and 30.
  • LED 24 is shown receiving a blue output signal (out blue) from pin RC3 of the microprocessor 202 to turn the blue LED 24 on.
  • the red LED is turned on when the microprocessor 202 outputs an output signal (out red) on pin RCl.
  • the green LED 28 is turned on when the microprocessor 202 outputs a green output signal (out green) on pin RC2.
  • the IR LED 30 is turned on when the microprocessor 202 outputs a signal (out IR) on pin RC4. It should be appreciated that the intensity of each of the blue LED 24, red LED 26, green LED 28 and IR LED 30 may be adjusted by the microprocessor 202 providing a pulse width modulated signal and changing the pulse width modulated signal to adjust the intensity of each LED.
  • the boost circuitry boosts a voltage output of one or more batteries to power the light source.
  • the control circuitry may be employed to control the boost circuitry to boost the voltage output to power the light source. In doing so, the summed total voltage output of the power source may be detected and the pulse width modulated signal adjusted based on the detected voltage.
  • the first and second boost circuitry is shown and described herein as including an inductor, it should be appreciated that other energy conversion elements may be employed, according to other embodiments.
  • the boost circuitry may employ one or more capacitive charge pumps to convert energy provided by one or more the batteries to a form suitable for powering the light source(s).
  • a capacitive charge pump may use one or more charge pump capacitors to convert the energy.
  • the control circuitry 200 advantageously detects whether a single battery or multiple batteries are connected in series in the lighting device 10 to supply power to operate the light sources and control circuitry. While one or two batteries 64 are shown and described herein for operating the lighting device 10, it should be appreciated that the lighting device 10 may be configured to receive more than two batteries and may be powered by three or more batteries. Additionally, it should be appreciated that the boost circuitry advantageously adjusts the output voltage and current supplied to power the light sources. In doing so, the lighting device 10 is generally more efficient at boosting a higher voltage such as three volts, as opposed to a single battery output voltage of 1.5 volts.
  • the control circuitry 200 may receive any of a number of voltages and convert the voltage to a useful voltage and current for powering the lighting sources and control circuitry.
  • a lighting device comprises a plurality of light sources, and a housing adapted to receive power to power the plurality of light sources.
  • the lighting device also includes a first switch configured to be actuated by a user to select from one of a plurality of operating modes.
  • the lighting device further includes a second switch configured to be actuated by a user to control one of the plurality of light sources based on the selected operating mode.
  • the first switch comprises a toggle switch
  • the second switch comprises a push button switch.
  • the first switch comprises a three-position toggle switch.
  • the plurality of operating modes comprise a visible light mode and a non-visible light mode, wherein one of the plurality of light sources is a non-visible light source comprising an infrared light source for providing the non-visible light mode and wherein one of the plurality of light sources is a visible light source comprising a white light source for providing the visible light mode.
  • one of the light sources may be an ultraviolet light source.
  • the lighting device further includes a switch guard member comprising an outward protruding member substantially aligned with the toggle switch to prevent inadvertent actuation of the toggle switch.
  • the toggle switch comprises a three-position toggle switch and the outward protruding member substantially aligns with a first switch position, wherein the outward protruding member extends outward by a distance the same as or greater than a control arm of the toggle switch, and the first switch position is an off position.
  • the second switch is further actuatable to adjust intensity of one of the plurality of light sources.
  • the method also includes the step of actuating the first switch by a user to select one of a plurality of operating modes, and actuating the second switch by a user to control one of the plurality of light sources based on the selected operating mode.
  • the step of actuating the first switch comprises toggling a toggle switch into a first position from one of a plurality of positions
  • actuating the second switch comprises depressing a push button switch.
  • the step of actuating the first switch comprises toggling a three-position switch into one of three positions, according to one embodiment.
  • the step of toggling the three-position switch into one of three positions comprises toggling the switch into a first position to operate in a visible light mode, a second position to operate in a non-visible light mode and into a third position to operate in an off mode.
  • the method further comprises the step of further actuating the second switch to control intensity of one of the plurality of light sources.

Abstract

A lighting device (10) in the form of a handheld flashlight is provided that includes a plurality of light sources (22, 24, 26, 28 and 30) located within a swivel head pivotally connected to a main body. The lighting device includes a first switch (40) configured to be actuated by a user to select from one of a plurality of operating modes, and a second switch (48) configured to be actuated by a user to control one of the plurality of light sources (22, 24, 26, 28 and 30) based on the selected operating mode.

Description

LIGHTING DEVICE HAVING SWITCH CONTROLLED MODES
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit under 35 U.S.C. § 119(e) of U.S. Provisional Patent
Application No. 61/090,429 filed on August 20, 2008, the entire disclosure of which is hereby incorporated herein by reference.
BACKGROUND OF THE INVENTION [0002] The present invention generally relates to lighting devices and, more particularly, to multifunctional lighting devices, such as flashlights that offer multiple lighting options, control of such lighting options and multiple modes of operation.
[0003] Portable lighting devices, such as flashlights, generally employ a light source, such as an incandescent lamp or one or more light emitting diodes (LEDs), a reflector or other optics, and a power source typically employing one or more electrochemical cell batteries. Many handheld lighting devices, commonly referred to as flashlights, generally offer limited functionality and performance. Typically, the conventional flashlight includes a switch located on the outer circumference of the housing that can be activated to alternatively close and open a circuit connection to turn the flashlight on and off. If more than one light source is included in the flashlight, multiple switches typically are provided to control each light source. [0004] It would be desirable to provide for a lighting device that offers enhanced functionality and performance. In particular, it would be desirable to provide for a portable lighting device, such as a flashlight, that may offer enhanced use in the field, such as for military and industrial applications, and for other outdoor use.
SUMMARY OF THE INVENTION
[0005] The following presents a simplified summary in order to provide a basic understanding of one or more aspects of the invention. This summary is not an extensive overview of the invention, and is neither intended to identify key or critical elements of the invention, nor delineate the scope thereof. Rather, the primary purpose of the summary is to present some concepts of the invention in a simplified form as a prelude to the more detailed description that is presented later. [0006] In accordance with one aspect of the present invention, a lighting device is provided that includes a plurality of light sources and a housing adapted to receive power to power the plurality of light sources. The lighting device also includes a first switch configured to be actuated by a user to select from one of a plurality of operating modes. The lighting device further includes a second switch configured to be actuated by a user to control one of the plurality of light sources based on the selected operating mode.
[0007] According to another aspect of the present invention, a method of operating a lighting device is provided. The method includes the step of providing a lighting device comprising a plurality of light sources, a housing adapted to receive power to power the plurality of light sources, a first switch and a second switch. The method also includes the step of actuating the first switch by a user to select one of a plurality of operating modes. The method further includes the step of actuating the second switch by a user to control one of the plurality of light sources based on the selected operating mode.
[0008] These and other features, advantages, and objects of the present invention will be further understood and appreciated by those skilled in the art by reference to the following specification, claims, and appended drawings.
BRIEF DESCRIPTION OF THE DRAWINGS [0009] In the drawings:
[0010] FIG. 1 is an upper front perspective view of a lighting device, according to one embodiment; [0011] FIG. 2 is a lower front perspective view of the lighting device shown in FIG. 1 with the swivel head rotated to a second locked position and the end cap in the open position; [0012] FIG. 3 is a front view of the lighting device shown in FIG. 1;
[0013] FIG. 4 is a left side view of the lighting device shown in FIG. 1 with the swivel head in a first locked position;
[0014] FIG. 5 is a cross-sectional view of the lighting device taken through line V-V of FIG. 3;
[0015] FIG. 6 is a cross-sectional view of the lower portion of the lighting device taken through line VI-VI of FIG. 3; [0016] FIG. 6A is an enlarged view of section VIA of FIG. 6 illustrating electrical connection of the positive terminal of a battery to electrical circuitry;
[0017] FIG. 7 is an exploded assembly view of the lighting device shown in FIG. 1 ;
[0018] FIG. 7A is an exploded assembly view of the swivel heading shown in FIG. 7;
[0019] FIG. 7B is an exploded assembly view of the swivel connector shown in FIG. 7;
[0020] FIG. 7C is an exploded assembly view of the main body shown in FIG. 7;
[0021] FIG. 7D is an exploded assembly view of the end cap shown in FIG. 7;
[0022] FIG. 8 is a cross-sectional view of the lighting device taken through line VIII-VIII of
FIG. 4; [0023] FIG. 8A is an enlarged view of section VIII-VIII of FIG. 8 further illustrating electrical connection of the batteries to electrical circuitry in the lighting device; [0024] FIG. 9 is a cross-sectional view of the lighting device taken through line VIII-VIII of
FIG. 4 showing one battery in a reverse oriented storage position; [0025] FIG. 9A is an enlarged view of section IX-IX taken through line FIG. 9 showing the electrical connection of the batteries to electrical circuitry in the lighting device; [0026] FIG. 10 is a perspective view of the swivel head with the right pivot connector of the head attachment mechanism exploded;
[0027] FIG. 1 IA is a side view of the swivel head shown in the first locked position;
[0028] FIG. 1 IB is a side view of the swivel head shown in an intermediate position;
[0029] FIG. 1 1 C is a side view of the swivel head shown in a second locked position;
[0030] FIG. 12A is a cross-sectional view taken through line XII-XII of FIG. 3 showing the right pivot connector of the head attachment assembly in a locked position; [0031] FIG. 12B is a cross-sectional view taken through line XII-XII of FIG. 3 showing the right pivot connector of the head attachment assembly in an unlocked position; [0032] FIG. 13 is a perspective view of the tail cap showing the cam lock wheel mechanism exploded; [0033] FIG. 14 is a perspective view on the inside of the cam lock wheel mechanism shown in
FIG. 13; [0034] FIG. 15 is a front view of the tail cap assembly shown in the closed position; [0035] FIG. 16 is a partial cross-sectional view taken through the cam lock wheel of FIG. 15 showing the locking engagement of the tail cap;
[0036] FIG. 17 is a side view of the tail cap shown in the closed position;
[0037] FIG. 18 is a front view of the tail cap assembly shown in an intermediate partial open position; [0038] FIG. 19 is a partial cross-sectional view through the cam lock wheel mechanism of FIG.
18 in the partial open position;
[0039] FIG. 20 is a side perspective view of the tail cap assembly in a partial open position;
[0040] FIG. 21 is a front view of the tail cap illustrated in an open position;
[0041] FIG. 22 is a partial cross-sectional view of the cam lock wheel mechanism shown in the open position;
[0042] FIG. 23 is a side view of the tail cap assembly shown in an open position; and
[0043] FIG. 24 is a circuit diagram illustrating control circuitry for controlling the various lighting sources of the lighting device, according to one embodiment.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS [0044] Before describing in detail embodiments that are in accordance with the present invention, it should be observed that the embodiments reside primarily in combinations of method steps and apparatus components related to a lighting device and method of operating thereof. Accordingly, the apparatus components and method steps have been represented, where appropriate, by conventional symbols in the drawings, showing only those specific details that are pertinent to understanding the embodiments of the present invention so as not to obscure the disclosure with details that will be readily apparent to those of ordinary skill in the art having the benefit of the description herein. Further, like reference characters in the description and drawings represent like elements.
[0045] In this document, relational terms, such as first and second, top and bottom, and the like, may be used to distinguish one entity or action from another entity or action, without necessarily requiring or implying any actual such relationship or order between such entities or actions. The terms "comprises," "comprising," or any other variation thereof, are intended to cover a non- exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element preceded by "comprises" does not, without more constraints, preclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
[0046] Referring now to FIGs. 1-12, a lighting device 10 is generally illustrated embodied as a handheld lighting device, also referred to herein as a flashlight that is portable and adapted to be handled by a user to provide light illumination, according to one embodiment. While the lighting device 10 is shown and described herein as a handheld flashlight, it should be appreciated that the lighting device 10 may be employed with one or more mounting structures that enable the lighting device 10 to be mounted onto a supporting structure, including an article of clothing, such as a shirt, a vest, a helmet, a ball cap, or may be mounted onto other structures, such as firearms to assist with military or hunting applications. The lighting device 10 is configured to operate in multiple modes of operation and can be used as a flashlight (spot or flood), an exterior light, an automotive light, a table light, a desk light, and the like.
[0047] As shown in FIGs. 1-7D, the lighting device 10 generally includes a main housing body
12 that is generally elongated and adapted to be received within and gripped by the hand of a user. The body 12 generally has walls that define a compartment within the interior that is adapted to receive one or more batteries as the power source, generally within a battery cartridge 100. The compartment with body 12 further contains electrical circuitry and controls. The body 12 also includes a yoke portion 14 having a pair of upward extending arms 14A and 14B extending from one end that engages a swivel head 20 by way of a head attachment mechanism 32. Each of arms 14A and 14B has an opening for receiving left and right swivel connectors 34 and 36 that connect the swivel head 20 thereto.
[0048] The swivel head 20 includes one or more light sources. In the embodiment shown and described herein, the swivel head 20 includes five light sources embodied as light emitting diodes (LEDs) 22, 24, 26, 28 and 30. The swivel head 20 may be rotated to swivel amongst a plurality of positions to selectively provide light illumination oriented in a desired one of a plurality of directions. In the disclosed embodiment, the swivel head locks into fixed positions at two locations.
[0049] The main body 12 has a pivoting bottom end or tail cap 16 at the end opposite from the yoke portion 14. The end cap 16 pivots relative to the body 12 and has a locking mechanism that is user actuatable to open or close the end cap 16. The end cap 16 may be opened as shown in FIG. 2 to expose the battery compartment to allow a user to remove batteries 64 from and insert batteries 64 into the battery compartment.
[0050] The end cap 16 is pivotally connected to the main body 12 by way of a pivot connection.
The pivot connection may be in the form of a hinge having hinge members 66A and 66B formed on the end cap 16 and body 12, respectively, that align and a pin 68 extending through aligned openings in the hinge members 66A and 66B, according to one embodiment. Attached to the end cap 12 is a lock mechanism having rotating cam lock wheel 18 which includes a cam surface formed on the inside for engaging a protruding member, such as a tooth 132, on the outer wall of the main body 12. To close the end cap 12, the end cap 16 is rotated to a partial closed position and the cam lock wheel 18 is then rotated clockwise such that the cam surface engages the protruding member 132 to forcibly translate rotational movement of the wheel 18 to pivoting movement of the end cap 16 to move the end cap 16 towards the main body 12 with sufficient force to engage and compress a seal 160 disposed between the end cap 16 and the main body 12. Thus, a sealed closure is provided. To open the end cap 16, the cam lock wheel 18 is rotated counterclockwise such that the protruding member 132 comes out of engagement with the cam surface so that the end cap 16 is free to be rotated to the fully open position.
[0051] The lighting device 10 includes five light sources in the form of LEDs 22, 24, 26, 28 and
30, all assembled in the swivel head 20 and facing in the same general forward direction, according to one embodiment. LED 22 is generally located in the middle region of the front face of the swivel head 20 and is implemented as a white LED, also referred to as a non-colored LED for projecting visible non-colored white light illumination. The remaining four LEDs are generally located near the four corners of the front face of the swivel head 20. LED 24 may be implemented as a blue colored LED for emitting a beam of visible blue colored light in a blue colored illumination beam. LED 26 may be implemented as a red colored LED for emitting a beam of visible red colored light in a red colored illumination beam. LED 28 may be implemented as a green colored LED for emitting a beam of visible green colored light. LED 30 may be implemented as an infrared (IR) LED for emitting a forward projecting beam of infrared (IR) illumination, according to one embodiment. According to another embodiment, one of the light sources, such as LED 30, may be implemented as an ultraviolet (UV) light source. The UV light can be used for various applications including inspection of documents such as passports and paper currency, to detect Freon leaks where Freon is treated with a UV sensitive dye, to detect clothing and fishing line amongst other possible materials, to detect and track UV sensitive fluids, and to activate UV color in dyes and paints. It should be appreciated that the various colored and non-colored light sources may be implemented in different patterns and arranged in different locations, and may further have different output illuminations, according to other embodiments.
[0052] In the disclosed embodiment, the white main LED 22 generally provides a higher light intensity than the other light sources 22, 26, 28 and 30. According to one embodiment, the white LED 22 may typically be driven by one AA-size alkaline battery at a current of approximately 150 milliamps to achieve about 75-80 lumens of light illumination, or may be driven by two series connected alkaline batteries at a current of about 275 milliamps to generate about 75-80 lumens of light illumination. The colored LEDs 24, 26 and 28 and the IR LED 30 may typically be driven with one alkaline battery at approximately 30 milliamps to achieve in the range of about 1-10 lumens of light illumination or driven with two alkaline batteries at approximately 50 milliamps to achieve in the range of about 1-10 lumens of light illumination for each light source. It should be appreciated that other batteries such as lithium batteries may be employed to achieve greater power capacity.
[0053] The lighting device 10 may operate on power supplied by one battery cell or two batteries, according to one embodiment. In doing so, the lighting device 10 employs control circuitry to maintain sufficient electrical power output to drive the one or more light sources under conditions when either one or two batteries are employed. Further, the light intensity of the light sources may be adjusted to low, medium and high intensity settings. In a medium intensity setting, the light source may be powered at about fifty percent of the high power setting, and in the low power setting, the light source may be powered at twenty-five percent of the high power setting. It should be appreciated that the main white LED 22 thereby serves as the main light source for providing the greatest amount of illumination. However, it should be appreciated that the amount of illumination achieved with each of the lighting sources 22, 24, 26, 28 and 30 may be varied, according to other embodiments.
[0054] The lighting device 10 is further configured with a plurality of user actuatable control switches for controlling activation and illumination of the light sources 22, 24, 26, 28 and 30. A first switch 40, shown implemented as a three-position toggle switch, is located on the front side of the main body 12 below the swivel head 20 and generally in a convenient location to be actuated by the thumb of a user gripping the main body 12. The three-position toggle switch 40 has three switch positions, namely a first switch position 4OA on the right side that enables the visible LEDs to be actuated in a visible LED enabled mode, a second switch position 4OB on the left side that enables the infrared LED to be actuated in either the IR or IFF enabled mode, and a third switch position 4OC in the center that serves as a lockout mode such that none of the LEDs can be turned on. In the central lockout mode position 40C, the control arm of the toggle switch 40 is substantially aligned with an outward protruding switch guard member 98 that serves to prevent accidental or inadvertent actuation of the toggle switch 40. The outward protruding switch guard member 98 generally has a shape and size that extends outward from the main body 12 by a distance the same as or greater than the control arm of the toggle switch 40 and can be formed as an integrally molded member from the main body 12. Thus, the outward protruding member 98 serves as a protective guard.
[0055] The lighting device 10 also includes three user-depressible push button switches 42, 44 and 46 located generally below the toggle switch 40 and actuatable conveniently by the thumb of a user holding the main body 12. With the three position toggle switch 40 in the visible LED enabled position 4OA, push button switch 42 may be actuated (depressed) to control the green LED to turn the green LED on and off, and may further be actuatable (depressed) to control illumination intensity (brightness) of the green LED. With switch 40 in the visible LED enabled position 4OA, switch 44 may be actuated to control the red LED so as to turn the red LED on and off, and to further control the illumination intensity of the red LED. With switch 40 in the visible LED enabled position 4OA, switch 46 may likewise be actuated to control the blue LED so as to turn on the blue LED and to further control the illumination intensity of the blue LED. It should be appreciated that each of the push button switches 42, 44 and 46 are operable to control the corresponding LEDs 24, 26 and 28 when the three-position toggle switch 4OA is in the visible LED enabled position 4OA so as to turn on the corresponding colored light sources 24, 26 and 28. Each of the push button switches 42, 44 and 46 is further actuatable, generally within a two second window, to adjust the intensity or brightness of the corresponding colored light sources 24, 26 and 28. A two second window is provided to allow a user to control the intensity of the light source once the corresponding light source is turned on. If the user depresses one of push button switches 42, 44 or 46 within two seconds of turning on the corresponding light source, then the brightness of the corresponding light source may be adjusted. If a user waits for longer than the two second time period to subsequently depress one of push button switches 42, 44 and 46, the subsequent depression of the switch will turn off the corresponding light source. According to one embodiment, any of switches 40, 42 and 44 may be actuated repeatedly to turn the corresponding light source on and off and to sequentially change intensity of the colored light emitted by the corresponding light sources among a plurality of brightness settings, including high, medium and low intensity settings. The intensity or brightness of the light sources may be adjusted according to a predetermined sequence. According to one embodiment, the light sources may be turned on at a low intensity setting and may be subsequently adjusted in intensity to sequence from the low brightness setting to a medium brightness setting to a high brightness setting and repeat the sequence or reverse the order of the sequence. According to another embodiment, the light sources may be turned on at a high brightness setting and subsequently adjusted sequentially to a medium brightness setting, then a low brightness setting, and repeat the sequence or reverse the order of the sequence. Additionally, it should be appreciated that some of the light sources, such as the white light LED 20 may be turned on at the highest intensity setting, whereas a colored light LED such as LEDs 22, 24 and 26 may be turned at a low intensity setting so as to provide for a less noticeable light illumination which may be desirable for hunting or military applications. According to another embodiment, the switches 40, 42 and 44 may be further actuated, within the two second window, by continuous depression so as to adjust the colored light intensity of the corresponding light source at more incremental settings by ramping the visible light intensity up and down.
[0057] The lighting device 10 further includes a user depressible push button switch 48 located in the bottom end of the end cap 16. Switch 48 is actuatable by a user to control the main white LED 22 when the three-position toggle switch 40 is in the visible LED enabled position 4OA such that depression of switch 48 turns on the main white light source 22, and may further change intensity of the main white light source 22 by continued depression of the switch 48 within a two second window. Accordingly, if a user depresses switch 48 to turn on the white LED 22, any subsequent depression within the two second window will adjust the intensity of the white light in a sequence, such as to switch from a high to a medium and then to low brightness setting sequence or in a ramped fashion to ramp the brightness of the light source incrementally up and down. If the three-position toggle switch 40 is in the IR/IFF enabled position 4OB, then the infrared light source 30 will turn on in the infrared (IR) mode to provide continuous IR with no blinking and, if switch 48 is depressed, then the lighting device 10 will enter the IFF or SOS mode in which the infrared LED 30 blinks at a specified rate for purposes of IFF or SOS, according to one embodiment. According to another embodiment, the light source 30 may be an ultraviolet light source that provides ultraviolet lighting. Accordingly, it should be appreciated that the three-position toggle switch 40 may be utilized to select between the visible LED mode and the IR/IFF mode, and the push button switch 48 may be employed to control the white LED 20 or IR LED 30 depending upon the selected mode.
[0058] According to one embodiment, the infrared light source 30 is employed as an identification friend or foe (IFF) light source, which is particularly useful for military applications. The IFF light source 30 may be implemented with the infrared LED generating an infrared identifier beam that is generally invisible to the naked human eye, which in a military use serves as a friendly party member indicator. According to one embodiment, the IFF light source 30 may operate intermittently to provide a blinking signal at a predetermined rate or pattern that may be viewable by other persons with the use of night vision equipment (e.g., night vision goggles). [0059] According to another embodiment, the infrared light source 30 may be employed as an
SOS light source. The light source 30, in the SOS embodiment, may be implemented as a visible light source that is generally visible to the human eye and may operate intermittently to provide a blinking visual light signal at a predetermined rate or pattern that may be visible by other persons.
[0060] The lighting device 10 is further equipped with a test mode that enables a test to check whether all of the LEDs are properly operating. To initiate the test mode, switches 42 and 46 are simultaneously depressed. Upon initiation of the test mode, the various light sources 20, 22, 24, 26 and 28 automatically cycle through a predetermined sequence. This enables an assembler in a manufacturing facility or a user in the field to verify that the various light sources are operating properly.
[0061] The white LED 22 is shown in FIG. 7 A generally mounted to a thermally conductive
LED heat sink 92, which generally includes openings for terminals to provide electrical power to the LED 22. The heat sink 92 conducts thermal energy away from the LED 20. A lens, in the form of a total internal reflectance (TIR) lens 90, is disposed in front of the main white LED 22 for focusing the white light beam illumination in a desired beam pattern. The TIR lens 90 may be made of a thermoplastic and transparent plastic, also referred to as acrylic glass. One example of a suitable acrylic glass is polymethyl methacrylate (PMMA). In one embodiment, the TIR lens 90 may include a TIR rebel lens with an O-ring frame 91 that may be injection molded. The TIR lens 90 has a flange 93 that is provided to allow a hard polymeric material of front housing member 86 to be molded therewith. By molding the hard polymeric material 86 around the flange 93 of TIR lens 90, a watertight seal is formed during the molding operation. A soft elastomeric material 88 is then overmolded over the hard plastic material 86.
[0062] Also disposed within the swivel head 20 is an LED board 94 with each of the other four
LEDs 24, 26, 28 and 30 mounted thereto. The LED board 94 includes contact terminals for providing electrical connection to each of the LEDs 24, 26, 28 and 30. With the internal components including the LEDs 22, 24, 26, 28 and 30, TIR lens 90, heat sink 92 and circuit board 94 disposed within the rear housing 58 and its overmolded elastomeric material 60 of the swivel head 20, the front housing 86 and its overmolded elastomeric material 88 is assembled so as to engage a seal 87 and fasteners (e.g., screws) are installed to form a sealed closure to the swivel head 20.
[0063] According to one embodiment, the main white LED 22 may include a Cree XRE, commercially available from Cree, Inc. The colored blue LED may include Part No. GB- 333B473C-032, commercially available from Globe Technology Component. The red LED may include Part No. GB-IR224B31C-015, commercially available from Globe Technology Component. The green LED may include Part No. LL-F50SRGBC2E-F1, commercially available from Globe Technology Component. The IR LED 30 may include an invisible IR LED, such as Part No. GB-IR224B31C-015, commercially available from Globe Technology Component. While the main LED 22 is shown having an optical lens in the form of a TIR lens 90 in front thereof, it should be appreciated that the other LEDs 24, 26, 28 and 30 may likewise include a TIR lens or other optical lens.
[0064] With particular reference to FIG. 7C, the main body 12 of the lighting device 10 is shown having various components assembled within the compartment, including the battery cartridge 100 which includes first and second battery compartments or receptacles 102A and 102B configured to receive first and second batteries 64. The batteries 64 are installed side-by-side in parallel, but the electrical connection of the batteries 64 is generally connected in series to provide a summed voltage output from both batteries. The batteries 64 that are used to power the lighting device 10 are installed with the positive terminal 65A inserted first such that the negative terminal end 65B is at the bottom or rear end and in contact with the negative contact springs 72 A and 72B.
[0065] Also disposed within the main housing body 12 of the lighting device 10 are a number of circuit components including a circuit board 120 having components assembled thereto including control circuitry 200 and a switch board 121 having switches 42, 44 and 46 assembled thereto. Circuit board 120 and switch board 121 sandwich member 1 12 and are electrically connected to allow switch signals to pass to the control circuitry 200. The control circuitry 200 includes a microprocessor, according to one embodiment. However, it should be appreciated that other forms of circuitry including an application specific integrated circuit (ASIC) or other analog and/or digital circuitry may be employed. The control circuitry 200 controls various aspects of activating the light sources, adjusting intensity or brightness, and controlling the modes of operation as explained herein.
[0066] Also disposed within the body 12 of lighting device 10 are electrically conductive circuit elements that provide electrical power from one or more batteries 64 to the control circuitry 200 and to power the light sources 20, 22, 24, 26 and 28. The electrically conductive elements include a flat ribbon or strip 114 having a plurality of circuit elements formed as circuit traces packaged within a non-conductive strip. According to one embodiment, four circuit traces are provided within the ribbon strip 1 14. Two of the circuit traces in the ribbon strip 114 are connected to the bottom switch 48 assembled in the tail cap 16. A first conductive strip is in contact with a first contact of switch 48 and a second conductive strip is in contact with a second contact of the switch 48. The third conductive strip is in contact with the first negative battery contact spring 72A and the fourth conductive strip is in electrical contact with the second negative battery terminal contact spring 72B. Accordingly, the signals across the switch 48 and at the negative terminal of each of the two batteries 64 is supplied to the control circuitry 200 by way of the ribbon strip 114. The control circuitry 200 thereby can determine the state of switch 48 and can provide an electrical connection to each battery 64.
[0067] The control circuitry 200 processes the battery power output and provides a sufficient power supply to power each of the light sources 20, 22, 24, 26 and 28, when they are turned on. To supply power from the main body 12 to the swivel head 20, a plurality of wires 82 extend from the control circuitry 200 through one side of the swivel connection in slot 35 of the left pivot connector 34 which extends through opening 15 in arm 14A as shown in FIG. 7B. The bundle of wires 82 extend into the interior of the swivel head 20. The plurality of wires 82 are packaged together in a bundle and extend through the swivel head 20 in a seal tight manner so as to prevent moisture from entering the compartment within the swivel head 20. According to one embodiment, the plurality of wires 82 employ eight or ten wires sufficient to allow electric current to flow individually to each of the LEDs 22, 24, 26, 28 and 30. However, it should be appreciated that a different number of wires may be employed, according to other embodiments.
[0068] According to an alternate embodiment, a pair of wires may be employed to transmit power and data between the control circuitry 200 and the swivel head 20. In this embodiment, separate control circuitry may be included in the swivel head 20 so as to allow for the receipt and transmission of data and power supplied by way of the pair of wires. By reducing the number of wires to a pair of wires, the lighting device 10 may be more easily manufactured and fewer wires allows for improved ability to ensure that the main body 12 and swivel head 20 have a waterproof closure.
[0069] Referring to FIGs. 8-9A, a pair of batteries 64 is shown installed within the battery cartridge 100 of the lighting device 10 in a dual battery operation mode in FIGs. 8 and 8A and a single battery operation mode in FIGs. 9 and 9A. The battery cartridge 100 is adapted to receive first and second batteries 64 within corresponding first and second battery compartments 102A and 102B, according to the disclosed embodiment. Each of the batteries 64 is intended to be installed in the same orientation, such that the positive terminal 65 A of each battery 64 is installed into the battery cartridge 100 first so that the negative terminal 65B of batteries 64 contact the negative terminal springs 72A and 72B. The positive terminal 65A of each battery 64 has a protruding nubbin in the central region that is distinguished from the negative terminal 65B having a more flat bottom. The battery cartridge 100 is configured to allow the lighting device 10 to be powered by both the first and second batteries 64 when the positive terminal 65A of both batteries 64 is installed properly such that the protruding nubbins 65 A of batteries 64 contact respective electrically conductive cups 108A and 108B, which are spring biased by the springs 1 1OA and HOB, respectively. The protruding nubbin 65 A of each battery 64 extends within a region between an inward protruding rib or ring member 105 to contact the conductive cup 108 A or 108B as shown in FIG. 8 A, which provides for an electric circuit connection to supply power from both of the batteries 64 to power the lighting device 10. The inward protruding members 180 have a ring shape with an inside diameter sufficiently large to allow the protruding nubbin 65 A of each battery 64 to extend into contact with the corresponding conductive cup 108A or 108B, but prevent the negative terminals 65B of batteries 64 from contacting the corresponding conductive cups 108A or 108B.
[0070] When one of the batteries 64 is installed in a reverse orientation direction such that the negative terminal 65B is inserted first into the battery compartment 100, the negative terminal end 65B of the battery 64 directly engages the inward protruding ring member 105 which prevents electrical contact between the battery negative terminal 65B and the electrically conductive cup 108B as shown in FIGs. 9 and 9A for the battery 64 on the right side. When this occurs, the battery 64 installed in the reverse orientation direction does not contact electrical circuit elements and therefore does not provide a power output for powering or operating the lighting device 100, but instead is merely stored in a non-use position within the battery cartridge 100. Provided that the one other battery 64 is properly installed in the battery cartridge 100, the lighting device 10 may be operated from the single properly installed battery 64. It should be appreciated that a user may intentionally install one battery 64 in a reverse orientation so that the reverse oriented battery 64 is considered a storage battery that is not used as the power source. In doing so, the lighting device 10 may be powered with a single battery until the one battery is drained, and then a user will know that about half of the available power has been used and may switch the orientation of the improperly installed battery so as to use the storage battery to power the light device 10 thereafter.
[0071] It should be appreciated that by configuring the battery compartment 100 to receive multiple batteries 64 arranged in parallel, but electrically connected in series, and installed in the same orientation within the battery cartridge 100, a user may easily install batteries into the lighting device 10 in the dark knowing that the battery orientation is proper. This allows for ease in changing batteries 64 and enhanced overall use of the lighting device 10.
[0072] Referring to FIGs. 10-12B, the swivel head 20 and its rotational positioning with respect to the main body 12 are further illustrated. As seen in FIG. 10, the right pivot connection 36 is shown having a plurality of detents 154 formed in an inner surface. In the embodiment shown, the detents 154 align with teeth 152 in the push button release mechanism 38 to provide locking positions ninety degrees (90°) apart from one another such that the swivel head 20 may be locked in the first position shown in FIGs. 10 and 1 IA, which is ninety degrees (90°) relative to the longitudinal axis of the body 12, and may further be rotated ninety degrees (90°) and locked into the second position shown in FIG. 11C which is aligned with the longitudinal axis of the body 12. The push button release mechanism 38 that is actuated by a user is shown including a plurality of teeth 152 which engage detents 154 in connection 36 in either of the locked positions. It should be appreciated that the detents and the teeth may be switched such that the detents 154 are provided in the push button release mechanism 38 and the teeth 152 are provided in the pivot connection 36. Further, it should be appreciated that both detents and teeth may be provided on both of the push button release mechanism 38 and pivot connection 36, such that the detents and teeth correspondingly mate in the locked swivel head positions.
[0073] Push button release mechanism 38 is assembled onto the square pin 150 of the head attachment mechanism 32. It should be appreciated that pin 150 may be otherwise configured to have a plus (+) shape or other shape. Push button release mechanism 38 rotates with swiveling movement of the head 20. A spring 80 biases the push button release mechanism 38 outward and is compressible upon sufficient actuation from a user so as to disengage teeth 152 from detents 154 to allow rotational movement of head 20. The swivel head 20 may be oriented at ninety degrees (90°) relative to the longitudinal axis of the body 12 as shown in FIG. 1 IB. Upon depression of switch 38 as shown in FIG. 12B, the teeth 152 become disengaged from detents 154 and the swivel head 20 is rotated and may be moved through intermediate positions, such as the position shown in FIG. 1 IB. In an intermediate position, the teeth 152 are not engaged within detents 154 such that the pivot head 20 is not in a locked position. Upon sufficient rotation of the swivel head 20 by ninety degrees (90°) to the second locked position relative to the first locked position aligned with the longitudinal axis of the main body 12, the teeth 152 may be biased back into engagement with detents 154 to lock the swivel head 20 into the second position as shown in FIG. 11C. As seen in FIG. 12A, the spring 80 biases the push button 38 back to the outward position. The left side of the head attachment mechanism 32 has a left pivot connection 34 in the form of a pin that allows the swivel head 20 to swivel.
[0074] The swivel head 20 fits into place into the first or second locked positions. In the first locked position, the swivel head 20 projects light illumination in a direction substantially perpendicular to the longitudinal axis of the main body 12. By locking the swivel head 20 into the first locked position, the lighting device 10 may be installed onto a mounting structure, such as an article of clothing, and may withstand forces that impact the lighting device 10, such as forces experienced while the lighting device 10 is in motion. Similarly, with the swivel head 20 in the second position such that light illumination projects substantially parallel to the longitudinal axis of the main body 12, the second locked position maintains the swivel head 20 in position sufficient to withstand forces acting upon the swivel head. For example, the lighting device 10 may be mounted to a firearm or other weapon and the locking mechanism sufficiently maintains the swivel head 20 in position and is sufficient to withstand the recoil forces experienced during firing of the weapon.
[0075] To accommodate the attachment or mounting of the lighting device 10 to another structure, the light body 12 is shown equipped with a clip 76 installed on the back wall of the body 12 as shown in FIGs. 4 and 5. The clip 76 may be in the form of a bent wire as shown in FIG. 7C and is connected to the body 12 by way of a clip bracket 78. It should be appreciated that the clip 76 may bend outward from the end opposite the clip bracket 78 to allow for engagement with a member, such as a shirt pocket such that the clip 76 holds the lighting device 10 in position relative to the other structure. It should be appreciated that other clip attachments and mounting structures may be employed to support the lighting device 10 attached onto a structure.
[0076] Referring to FIGs. 13 and 14, the cam lock wheel mechanism 18 is shown assembled to the end cap 16. The cam lock wheel mechanism 18 includes a lever 136 extending from the periphery that allows the user to easily engage and rotate the cam lock wheel 18. The cam lock wheel 18 is assembled to the end cap 16 by a fastener such as a screw. As seen in FIG. 14, the cam lock wheel 18 has an internal barrel cam 134 in the form of a groove or slot that is spiraled inward from the periphery. The internal barrel cam 134 is positioned to engage an outward protruding member, such as tooth 132, provided on the main body 12 to close the end cap 16 and provide a sealed and locked closure. The internal barrel cam 134 includes a detent 135 provided in the slot located at a position to engage and retain the tooth 132 in the sealed and locked closure position. The detent 135 locks the cam lock wheel mechanism 18 in place with regard to the tooth 132 such that a larger amount of force is required to overcome the frictional engagement between the detent 135 and tooth 132 to rotate the wheel mechanism 18 to unlock the locked engagement. The detent 135 may be an outward protruding member such as a bump.
[0077] The opening and closing operation of the tail cap 16 is further illustrated in FIGs. 15-23.
As seen in FIGs. 15-17, the end cap 16 is in a fully closed position with the cam lock wheel 18 rotated fully clockwise so that lever 136 is in the vertical position. In this position, the internal barrel cam 134 substantially fully engages the protruding tooth 132 on housing 12 such that the end cap 16 is pulled toward main body 12 due to the internal cammed surface of cam lock wheel 18. In the fully closed position, the detent 135 provides a resistive force to lock the cam lock wheel mechanism 18 in place relative to tooth 132 such that a sufficient amount of force is required to overcome the locking engagement to rotate the wheel mechanism 18 to open the end cap 16. In this position, the end cap 16 forms a sealed closure to the battery compartment as shown in FIG. 17. To open the end cap 16, a user rotates the cam lock wheel 18 counterclockwise. As seen in FIG. 18, the cam lock wheel 18 is turned one quarter of a turn (90°) counterclockwise to a partial open position. In this position, the cam surface of cam lock wheel 18 allows the end cap 16 to move away from the tooth 132 engaged within the cam surface 134. As such, the end cap 16 may be partially opened as shown in FIG. 20. To fully open the end cap 16, the cam lock wheel 18 is rotated further counterclockwise as shown in FIG. 21 to complete a half rotation (180°) relative to the fully locked position. In this position, the tooth 132 is clear of the cam surface 134, such that the cam lock wheel 18 and end cap 16 are no longer engaged on one side to the main body 12 such that the end cap 16 may be pivoted about hinge members 66A and 66B as shown in FIG. 23.
[0078] With the end cap 16 in the open position, the batteries may be replaced. It should further be appreciated that the ribbon connector 114 extends from within an internal wall of the main body 12 and into the end cap 16 where connections are made. The ribbon connector 1 14 may slidingly move in and out of the main body 12 via an opening as the end cap 16 is pivoted between the open and closed positions.
[0079] The lighting device 10 is made of a substantially rigid polymeric material capable of withstanding large forces such as those encountered when dropped or loads under abusive conditions. The body 12 is formed of a rigid polymeric material 50 which may include a blend of ABS and polycarbonate, according to one embodiment. The soft elastomeric material 52 may include soft durometer material, such as TPE. Portions of the main body 12, particularly the front portion and push button switches 42, 44 and 46 have an overmolded soft elastomeric material 52 overmolded onto the rigid polymeric material 50 as shown in FIG. 6. Similarly, the tail cap 16 has a rigid polymeric layer 54 and a bottom portion is overmolded with a soft elastomeric layer 56. The head cap 20 likewise includes a hard polymeric layer 58 overmolded with a soft elastomeric layer 60. The soft elastomeric overmolded material of layers 52, 56 and 60 advantageously absorb forces during impact and provide for an enhanced feel that is easy and comfortable to grip. In the embodiment shown, the yoke portion 14 is shown as a separate piece which connects to the main body 12. It should be appreciated that the yoke portion 14 and main body 12 are adapted and connect together and may include a seal disposed therebetween to provide a sealed closure. The yoke portion 14 may be made of a rigid polymeric material, according to one embodiment. It should be appreciated that the yoke portion 14 may otherwise be integrally formed as part of the main body, according to an alternate embodiment.
[0080] The lighting device 10 includes control circuitry 200 for controlling operation of the light sources 22, 24, 26, 28 and 30. The control circuitry 200 is generally illustrated in FIG. 24 having a pair of boost circuits, according to one embodiment. As seen in FIG. 24, the control circuitry 200 includes a microprocessor 202 coupled to memory 204. The microprocessor 202 may include any signal processing device capable of processing switch inputs, executing routines, and generating control signals, as described herein. Memory 204 may include volatile and nonvolatile memory devices, such as electronically erasable programmable read-only memory (EEPROM), flash memory, or other known memory devices. Stored within memory 204 are a plurality of routines including one or more light control routines 300 and ramping light control routines 400. The light control routines 300 are executed by the microprocessor 202 to control activation of the various light sources based on activation of the various switches. The ramping light control routines 400 provide a ramped adjustment of the intensity (for brightness) of the light sources, according to one embodiment.
[0081] The control circuitry 200 includes boost control circuitry for supplying a substantially constant current to power the main white LED 22, and provides a substantially constant voltage of approximately 3.6 volts to power the control circuitry, including the microprocessor 202, and the remaining LEDs 24, 26, 28 and 30, according to the disclosed embodiment.
[0082] The control circuitry 200 illustrates first and second batteries 64 electrically connected in series to provide a summed power source voltage BAT+. Given that each single cell battery 64 typically outputs a voltage of approximately 1.5 volts, the sum total voltage BAT+ for two series connected batteries is approximately 3.0 volts. Connected in parallel to the first and second batteries 64 are a pair of series connected diodes D8 and D9, which serve as protective devices to prevent shorting of the batteries 64. It should be appreciated that if one of the batteries 64 is installed in the lighting device 10 in a reverse orientation such that it is in a stored non-used orientation, then the other battery 64 solely provides the battery voltage output BAT+, which is typically about 1.5 volts. The battery output BAT+ is supplied to first boost circuitry 206 and second boost circuitry 208. Additionally, the microprocessor 202 senses the battery voltage BAT+ at input pin RB2.
[0083] The various switches 40, 42, 44, 46 and 48 are shown connected to the control circuitry
200. The three-position toggle switch 40 is shown having a first switch position that grounds out signal KEY3 , a second position that is not connected to the control circuitry, and a third position that grounds out signal KEY5. The microprocessor 202 senses signals KEY3 and KEY5, and thereby determines which position the toggle switch 40 is in based on the sensed signals.
[0084] Switch 46 closes out the connection between ground and voltage VDD passing through resistor R3 and provides a grounded signal KEYl when switch 46 is depressed. Signal KEYl is sensed by the microprocessor 202. Switch 42 closes the connection between ground and voltage VDD through resistor R4 when switch 42 is depressed and provides a grounded signal through signals KEYl and KEY4, both of which are detected by microprocessor 202. Switch 44, when depressed, closes the connection between ground and voltage VDD through resistor R5 and provides a grounded signal KEY2 which is sensed by microprocessor 202. Switch 48, when depressed, provides a connection between ground and voltage VDD such that signal KEY4 is grounded, which is detected by microprocessor 202. By sensing signals KEYl, KEY2 or KEY4, the microprocessor 202 is able to determine whether any of the switches 40, 42, 44, 46 and 48 are depressed.
[0085] The first boost circuitry 206 receives the summed battery voltage BAT+ at inductor L2 across capacitor 96 and generates a substantially constant current through diode D7 which is supplied to the main white LED 22. In doing so, the microprocessor 202 provides a pulse width modulated (PWM) output signal on pin RCO which is supplied through diode D2 to the enable input (CE) of the first boost circuitry 206. The first boost circuitry 206 in turn generates a pulse frequency modulated (PFM) output on output pin OUT which is supplied to power the main white LED 22. The first boost circuitry 206 may receive a feedback signal from current sensing resistors R24 and R25. The capacitors C7 and C8 are connected across the LED 22 to provide a stable output.
[0086] The second boost circuitry 208 receives the summed battery voltage BAT+ at inductor Ll across capacitor Cl. The second boost circuitry 208 generates a substantially constant voltage of approximately 3.6 volts passing through diode Dl. The substantially constant 3.6 volts is then used to power the control circuitry, including the microprocessor 202, and to power the remaining LEDs 24, 26, 28 and 30.
[0087] LED 24 is shown receiving a blue output signal (out blue) from pin RC3 of the microprocessor 202 to turn the blue LED 24 on. The red LED is turned on when the microprocessor 202 outputs an output signal (out red) on pin RCl. The green LED 28 is turned on when the microprocessor 202 outputs a green output signal (out green) on pin RC2. The IR LED 30 is turned on when the microprocessor 202 outputs a signal (out IR) on pin RC4. It should be appreciated that the intensity of each of the blue LED 24, red LED 26, green LED 28 and IR LED 30 may be adjusted by the microprocessor 202 providing a pulse width modulated signal and changing the pulse width modulated signal to adjust the intensity of each LED.
[0088] It should be appreciated that the boost circuitry boosts a voltage output of one or more batteries to power the light source. The control circuitry may be employed to control the boost circuitry to boost the voltage output to power the light source. In doing so, the summed total voltage output of the power source may be detected and the pulse width modulated signal adjusted based on the detected voltage. While the first and second boost circuitry is shown and described herein as including an inductor, it should be appreciated that other energy conversion elements may be employed, according to other embodiments. For example, the boost circuitry may employ one or more capacitive charge pumps to convert energy provided by one or more the batteries to a form suitable for powering the light source(s). A capacitive charge pump may use one or more charge pump capacitors to convert the energy.
[0089] The control circuitry 200 advantageously detects whether a single battery or multiple batteries are connected in series in the lighting device 10 to supply power to operate the light sources and control circuitry. While one or two batteries 64 are shown and described herein for operating the lighting device 10, it should be appreciated that the lighting device 10 may be configured to receive more than two batteries and may be powered by three or more batteries. Additionally, it should be appreciated that the boost circuitry advantageously adjusts the output voltage and current supplied to power the light sources. In doing so, the lighting device 10 is generally more efficient at boosting a higher voltage such as three volts, as opposed to a single battery output voltage of 1.5 volts. The control circuitry 200 may receive any of a number of voltages and convert the voltage to a useful voltage and current for powering the lighting sources and control circuitry. According to one aspect of the present invention, a lighting device is provided that comprises a plurality of light sources, and a housing adapted to receive power to power the plurality of light sources. The lighting device also includes a first switch configured to be actuated by a user to select from one of a plurality of operating modes. The lighting device further includes a second switch configured to be actuated by a user to control one of the plurality of light sources based on the selected operating mode. According to further aspects of this invention, the first switch comprises a toggle switch, and the second switch comprises a push button switch. In one embodiment, the first switch comprises a three-position toggle switch. The plurality of operating modes comprise a visible light mode and a non-visible light mode, wherein one of the plurality of light sources is a non-visible light source comprising an infrared light source for providing the non-visible light mode and wherein one of the plurality of light sources is a visible light source comprising a white light source for providing the visible light mode. Alternatively, one of the light sources may be an ultraviolet light source. The lighting device further includes a switch guard member comprising an outward protruding member substantially aligned with the toggle switch to prevent inadvertent actuation of the toggle switch. The toggle switch comprises a three-position toggle switch and the outward protruding member substantially aligns with a first switch position, wherein the outward protruding member extends outward by a distance the same as or greater than a control arm of the toggle switch, and the first switch position is an off position. The second switch is further actuatable to adjust intensity of one of the plurality of light sources. [0091] According to another aspect of the present invention, a method of operating a lighting device is provided that includes the steps of providing a lighting device comprising a plurality of light sources, a housing adapted to receive power to power the plurality of light sources, a first switch, and a second switch. The method also includes the step of actuating the first switch by a user to select one of a plurality of operating modes, and actuating the second switch by a user to control one of the plurality of light sources based on the selected operating mode. According to further aspects of this invention, the step of actuating the first switch comprises toggling a toggle switch into a first position from one of a plurality of positions, and actuating the second switch comprises depressing a push button switch. The step of actuating the first switch comprises toggling a three-position switch into one of three positions, according to one embodiment. The step of toggling the three-position switch into one of three positions comprises toggling the switch into a first position to operate in a visible light mode, a second position to operate in a non-visible light mode and into a third position to operate in an off mode. The method further comprises the step of further actuating the second switch to control intensity of one of the plurality of light sources.
[0092] While the invention has been described in detail herein in accordance with certain preferred embodiments thereof, many modifications and changes therein may be affected by those skilled in the art without departing from the spirit of the invention. Accordingly, it is our intent to be limited only by the scope of the appending claims and not by way of the details and instrumentalities describing the embodiments shown herein.

Claims

CLAIMSWhat is claimed is:
1. A lighting device comprising: a plurality of light sources; a housing adapted to receive power to power the plurality of light sources; a first switch configured to be actuated by a user to select from one of a plurality of operating modes; and a second switch configured to be actuated by a user to control one of the plurality of light sources based on the selected operating mode.
2. The lighting device as defined in claim 1, wherein the first switch comprises a toggle switch.
3. The lighting device as defined in any one of claims 1 and 2, wherein the second switch comprises a push button switch.
4. The lighting device as defined in claim 1, wherein the first switch comprises a three- position toggle switch.
5. The lighting device as defined in claim 1, wherein the plurality of operating modes comprise a visible light mode and a non-visible light mode.
6. The lighting device as defined in claim 5, wherein one of the plurality of light sources is a non-visible light source comprising an infrared light source for providing the non-visible light mode.
7. The lighting device as defined in claim 5, wherein one of the plurality of light sources is an ultraviolet light source.
8. The lighting device as defined in any one of claims 6 and 7, wherein another of the plurality of light sources is a visible light source comprising a white light source for providing the visible light mode.
9. The lighting device as defined in any one of claims 2 and 4 further comprising a switch guard member comprising an outward protruding member substantially aligned with the toggle switch to prevent inadvertent actuation of the toggle switch.
10. The lighting device as defined in claim 9, wherein the toggle switch comprises a three- position toggle switch and the outward protruding member substantially aligns with a first switch position.
11. The lighting device as defined in any one of claims 9 and 10, wherein the outward protruding member extends outward by a distance the same as or greater than a control arm of the toggle switch.
12. The lighting device as defined in any one of claims 10 and 1 1, wherein the first switch position is an off position.
13. The lighting device as defined in claim 1, wherein the second switch is further actuatable to adjust intensity of one of the plurality of light sources.
14. The lighting device as defined in any one of claims 1 and 13, wherein the second switch is further actuatable to cause one of the light sources to blink at a specified rate.
15. The lighting device as defined in claim 1 , wherein the first switch is located in a main body of the housing and the second switch is located in an end cap at one end of the housing.
16. The lighting device as defined in claim 15, wherein the first switch is located closer to the plurality of light sources as compared to the second switch.
17. A method of operating a lighting device, said method comprising the steps of: providing a lighting device comprising a plurality of light sources, a housing adapted to receive power to power the plurality of light sources, a first switch, and a second switch; actuating the first switch by a user to select one of a plurality of operating modes; and actuating the second switch by a user to control one of the plurality of light sources based on the selected operating mode.
18. The method as defined in claim 17, wherein the step of actuating the first switch comprises toggling a toggle switch into a first position from one of a plurality of positions.
19. The method as defined in claim 18, wherein the step of actuating the second switch comprises depressing a push button switch.
20. The method as defined in claim 17, wherein the step of actuating the first switch comprises toggling a three-position switch into one of three positions.
21. The method as defined in claim 20, wherein the step of toggling the three-position switch into one of three positions comprises toggling the switch into a first position to operate in a visual light mode, a second position to operate in a non-visual light mode and into a third position to operate in an off mode.
22. The method as defined in any one of claims 17-21 further comprising the step of further actuating the second switch to control intensity of one of the plurality of light sources.
23. The method as defined in any one of claims 17-21 further comprising the step of further actuating the second switch to cause one of the light sources to blink at a specified rate.
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Families Citing this family (86)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7850330B2 (en) * 2008-08-20 2010-12-14 Eveready Battery Co., Inc. Lighting device configured to operate with different batteries
US8944626B2 (en) 2008-10-09 2015-02-03 Surefire, Llc Lighting device with switchable light sources
US8147089B2 (en) * 2008-10-09 2012-04-03 Surefire, Llc Switchable light sources
US8182109B2 (en) * 2008-10-09 2012-05-22 Surefire, Llc Lighting device with switchable light sources
TWM358976U (en) * 2009-01-16 2009-06-11 Genius Electronic Optical Co Ltd Focus adjustable flashlight structure
US8739313B2 (en) * 2009-11-20 2014-06-03 Wilcox Industries Corp. Helmet mounting systems
US8777446B2 (en) 2010-02-09 2014-07-15 Streamlight, Inc. Portable light having a rotatable head
US8960947B2 (en) * 2010-03-05 2015-02-24 The Tiffen Company, Llc Lighting apparatus
DK177414B1 (en) * 2010-07-26 2013-04-15 Daniamant Aps Maritime light source
EP2601435A4 (en) * 2010-08-03 2015-01-07 Streamlight Inc Portable light having a rotatable cylindrical head
USD680672S1 (en) 2010-08-03 2013-04-23 Streamlight, Inc. Portable light
US8727561B2 (en) 2011-03-17 2014-05-20 Streamlight, Inc. Light and/or device having a compartment accommodating batteries of different types, sizes and/or shapes
MY164596A (en) * 2011-07-22 2018-01-30 Lapin Create Inc Light emitting apparatus
US20130107505A1 (en) * 2011-10-27 2013-05-02 Tactical Energy Corporation Rapid charge capacitor light
GB2498528B (en) * 2012-01-17 2018-05-30 Hartley Richard Multifunctional light
CN103574523A (en) * 2012-08-07 2014-02-12 欧司朗股份有限公司 Lamp shell, manufacturing method thereof and illuminating device comprising lamp shell
US8641227B1 (en) * 2012-08-20 2014-02-04 Shih-Hao Wang Anti-pressing apparatus for flashlight
US8926121B2 (en) * 2013-02-15 2015-01-06 Youjin Wu Portable light with spectrum control means
US9206951B2 (en) 2013-12-20 2015-12-08 Streamlight, Inc. Rechargeable clip-on light with male USB connector
USD782716S1 (en) 2013-12-20 2017-03-28 Streamlight, Inc. Portable light
US9249964B2 (en) * 2014-01-08 2016-02-02 Zweibruder Optoelectronics Gmbh & Co. Kg Multi-purpose illumination device
US9599327B2 (en) * 2014-01-17 2017-03-21 5.11, Inc. Switch for battery flashlight to change modes
US9752761B2 (en) 2014-07-16 2017-09-05 Telebrands Corp. Landscape light
US20170205058A1 (en) * 2014-10-15 2017-07-20 Marche International Llc Multi-purpose light emitting diode lamp with articulating head and clip
USD773707S1 (en) 2014-10-30 2016-12-06 Telebrands Corp. Landscape light
US9341323B1 (en) * 2015-03-16 2016-05-17 National Chung Cheng University Light-mixing flashlight
USD766483S1 (en) 2015-05-11 2016-09-13 Telebrands Corp. Light projector
USD824066S1 (en) 2015-05-11 2018-07-24 Telebrands Corp. Light projector
USD766484S1 (en) 2015-05-11 2016-09-13 Telebrands Corp. Light projector
USD816890S1 (en) 2015-05-11 2018-05-01 Telebrands Corp. Light projector
USD778478S1 (en) 2015-05-11 2017-02-07 Telebrands Corp. Light projector
US9845946B2 (en) * 2015-09-30 2017-12-19 Robert Miller Waterproof lighting assembly
US10212994B2 (en) 2015-11-02 2019-02-26 Icon Health & Fitness, Inc. Smart watch band
TWI607669B (en) * 2015-11-25 2017-12-01 凌通科技股份有限公司 Infrared circuit for single battery and remote controller using the same
US9562673B1 (en) * 2015-12-03 2017-02-07 Telebrands Corp. Decorative lighting apparatus having an attenuation assembly
US9879847B2 (en) 2015-12-03 2018-01-30 Telebrands Corp. Decorative lighting apparatus having two laser light sources
US9458994B1 (en) 2015-12-03 2016-10-04 Telebrands Corp. Decorative lighting apparatus having two laser light sources and a switch
US9546775B1 (en) * 2015-12-03 2017-01-17 Telebrands Corp. Decorative lighting apparatus having two laser light sources
US10119663B2 (en) * 2016-04-07 2018-11-06 Bayco Products, Inc. Dual-light flashlight with pivoting beam housing
US9954205B2 (en) 2016-04-12 2018-04-24 Energizer Brands, Llc Slotted battery cavity for multiple cell sizes
US10378702B2 (en) * 2016-04-21 2019-08-13 Streamlight, Inc. Portable light with plane of a laser light
USD825803S1 (en) 2016-05-03 2018-08-14 Spectrum Brands, Inc. Flashlight head
USD810980S1 (en) * 2016-05-03 2018-02-20 Spectrum Brands, Inc. Flashlight
DE102016009956A1 (en) 2016-08-19 2018-02-22 Sata Gmbh & Co. Kg Tempering device and assembly method of a tempering device for heating and / or cooling of gases or gas mixtures, in particular for use in the field of respiratory protection
DE202016005025U1 (en) 2016-08-19 2016-10-14 Sata Gmbh & Co. Kg Daylight hand lamp for testing painted surfaces, in particular as part of paint repair work on motor vehicles
DE202016005026U1 (en) 2016-08-19 2016-10-14 Sata Gmbh & Co. Kg Daylight hand lamp for testing painted surfaces, in particular as part of paint repair work on motor vehicles
USD797975S1 (en) 2016-09-29 2017-09-19 Telebrands Corp. Landscape light
USD798484S1 (en) 2016-09-29 2017-09-26 Telebrands Corp. Landscape light
WO2018081331A1 (en) * 2016-10-26 2018-05-03 Milwaukee Electric Tool Corporation Soldering tool
CN210266995U (en) * 2016-11-23 2020-04-07 米沃奇电动工具公司 Regional lamp
US10837609B2 (en) 2017-06-30 2020-11-17 Streamlight, Inc. Portable light providing plural beams of laser light
CN110118313A (en) * 2018-02-05 2019-08-13 宁波福泰电器有限公司 Lamps and lanterns and its application
WO2019162214A1 (en) * 2018-02-22 2019-08-29 Signify Holding B.V. Lighting device with battery housing
USD906559S1 (en) 2018-04-26 2020-12-29 Milwaukee Electric Tool Corporation Light
CN210004181U (en) * 2018-04-26 2020-01-31 米沃奇电动工具公司 Portable lamp
US11035556B2 (en) 2018-04-27 2021-06-15 Milwaukee Electric Tool Corporation Portable lighting device
USD904657S1 (en) 2018-04-27 2020-12-08 Milwaukee Electric Tool Corporation Light
GB201812719D0 (en) 2018-08-06 2018-09-19 Weizel Daniel Nissan Segmentally extendable modular handheld flashlight and respective kit-of-parts for assembling the same
CN111256054B (en) 2018-11-30 2023-11-07 米沃奇电动工具公司 portable lighting device
USD940369S1 (en) * 2019-01-17 2022-01-04 Streamlight, Inc. Portable light having a movable head
US10775001B1 (en) 2019-04-09 2020-09-15 Waters Industries, Inc. Compact flashlight
USD939139S1 (en) 2019-04-09 2021-12-21 Waters Industries, Inc. Compact flashlight
USD963221S1 (en) 2019-04-22 2022-09-06 Energizer Brands, Llc Lighting device
EP3734144B1 (en) 2019-04-29 2022-11-09 Black & Decker Inc. Shed light
USD918446S1 (en) 2019-05-08 2021-05-04 Energizer Brands, Llc Flashlight
EP3757455A1 (en) * 2019-06-24 2020-12-30 A1 Mobile Light Technology GmbH Adjustable lamp
USD954314S1 (en) * 2019-08-16 2022-06-07 Arclite, Inc. Flashlight
USD954312S1 (en) * 2019-08-16 2022-06-07 Arclite, Inc. Flashlight
USD954315S1 (en) * 2019-08-16 2022-06-07 Arclite, Inc. Flashlight
USD954313S1 (en) * 2019-08-16 2022-06-07 Arclite, Inc. Flashlight
US11015770B2 (en) * 2019-08-26 2021-05-25 Emissive Energy Corp. Flashlight with multiple light sources
USD935654S1 (en) * 2019-10-01 2021-11-09 Energizer Brands, Llc Flashlight
CN214580790U (en) 2019-11-22 2021-11-02 米沃奇电动工具公司 Working lamp
US11421833B2 (en) * 2020-01-20 2022-08-23 Streamlight, Inc. Multifunction portable light and actuator
US11859783B2 (en) * 2020-06-15 2024-01-02 Good Bison Convertible light device
USD970072S1 (en) 2020-09-01 2022-11-15 Energizer Brands, Llc Flashlight
USD938635S1 (en) 2020-10-20 2021-12-14 Energizer Brands, Llc Flashlight
USD968667S1 (en) 2020-10-20 2022-11-01 Energizer Brands, Llc Flashlight
USD974617S1 (en) 2020-12-01 2023-01-03 Energizer Brands, Llc Flashlight
WO2022140571A1 (en) 2020-12-22 2022-06-30 Milwaukee Electric Tool Corporation Lighting device with state of charge based control
US11732847B2 (en) 2021-01-12 2023-08-22 Milwaukee Electric Tool Corporation Portable light, such as a stick light
WO2022155589A1 (en) 2021-01-18 2022-07-21 Milwaukee Electric Tool Corporation Lighting apparatus having ultra-low mode
USD976461S1 (en) 2021-01-26 2023-01-24 Energizer Brands, Llc Flashlight
US20230083057A1 (en) * 2021-09-10 2023-03-16 Alliance Sports Group, LP Hand Held Spotlight
US11761593B2 (en) * 2021-09-13 2023-09-19 Techtronic Cordless Gp Portable lighting apparatus
DE102021126078A1 (en) * 2021-10-07 2023-04-13 Metallwarenfabrik Gemmingen Gmbh Arrangement having an emergency light and a hand lamp housing

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000268601A (en) * 1999-03-15 2000-09-29 Kyushu Hitachi Maxell Ltd Portable lighting system
US6641279B1 (en) * 2001-11-01 2003-11-04 Wilson Williams Dual-beam light assembly with adjustable posterior head
JP2005243520A (en) * 2004-02-27 2005-09-08 Matsushita Electric Ind Co Ltd Portable luminaire
US20060028812A1 (en) * 2004-08-05 2006-02-09 Yuen Se K Rechargeable halogen searcheye

Family Cites Families (45)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1613203A (en) * 1926-03-30 1927-01-04 James L Shannon Flash light
US3204807A (en) * 1963-12-23 1965-09-07 Sierra Electric Corp Hinged electrical cover plate closure
US3527914A (en) * 1969-03-03 1970-09-08 Edward A Spacek Toggle switch guard
FR2156974A5 (en) * 1971-10-12 1973-06-01 Accumulateurs Fixes
US4102471A (en) * 1977-09-08 1978-07-25 Nicola Lore Switch guard assembly
USD260232S (en) * 1979-08-27 1981-08-18 Simons Sanford L Toggle switch guard
US4363944A (en) * 1980-08-25 1982-12-14 Poirier Earl J Method of preventing unintentional actuation of a light switch
US4506120A (en) * 1982-11-18 1985-03-19 Jonas Fleischman Arrangement for preventing operation of an electric switch
USD301336S (en) * 1987-12-11 1989-05-30 Copeland A Eugene Light switch protective shield
US5167447A (en) * 1992-04-22 1992-12-01 Gonzales Luis J M Flashlight using different size batteries
USD351376S (en) * 1993-06-11 1994-10-11 Hughes Richard R Switch actuator cover
JPH08119035A (en) * 1994-10-25 1996-05-14 Souji Kobayashi Emergency signal light
USD408018S (en) * 1996-03-12 1999-04-13 Mcnaughton Patrick J Switch guard
US6046572A (en) * 1997-12-05 2000-04-04 Laser Products Ltd. Battery operated appliance, flashlight and switching systems
US5955700A (en) * 1997-12-30 1999-09-21 Motorola, Inc. Housing unit including a latching mechanism with a cam
US5909062A (en) * 1998-03-10 1999-06-01 Krietzman; Mark Howard Secondary power supply for use with handheld illumination devices
US6019482A (en) * 1998-10-15 2000-02-01 Everett; Randall L. Polychromatic body surface irradiator
US6161938A (en) * 1999-07-02 2000-12-19 Koehler-Bright Star, Inc. Safety flashlight
US6609812B2 (en) * 2000-12-20 2003-08-26 Honeywell International Inc. Dual mode visible and infrared lighthead
US6623140B2 (en) * 2001-04-13 2003-09-23 Scott R. Watterson Illumination device having multiple light sources
US6942365B2 (en) * 2002-12-10 2005-09-13 Robert Galli LED lighting assembly
US20040223342A1 (en) * 2001-12-31 2004-11-11 Klipstein Donald L. LED inspection lamp, cluster LED, and LED with stabilizing agents
US6627816B1 (en) * 2002-09-20 2003-09-30 Imagine That, Llc Device for preventing switch operation
US20050174782A1 (en) * 2003-03-25 2005-08-11 Chapman Leonard T. Flashlight
US6930262B2 (en) * 2003-06-30 2005-08-16 Wy Peron Lee Safety switch box for saw machine
US6851828B1 (en) * 2003-07-15 2005-02-08 William J. Hansen Flashlight utilizing differently sized batteries
DE10333421A1 (en) * 2003-07-17 2005-02-24 Witte & Sutor Gmbh Electrically operated portable apparatus especially pocket torch and circuit can switch between battery and accumulator operation to extend accumulator life
US6942359B2 (en) * 2003-12-08 2005-09-13 Eveready Battery Company, Inc. Flashlight that can operate with alternative size batteries
US7220016B2 (en) * 2003-12-09 2007-05-22 Surefire, Llc Flashlight with selectable output level switching
US7293893B2 (en) * 2003-12-09 2007-11-13 Surefire Llc Flashlight with adjustable color selector switch
US20050157492A1 (en) * 2004-01-20 2005-07-21 Si Fu Chiu Lighting device
US7117624B2 (en) * 2004-04-06 2006-10-10 Surefire, Llc Accessory devices for firearms
JP2005125797A (en) * 2004-12-13 2005-05-19 Rabo Sufia Kk Writing instrument with local lighting device
US7731385B2 (en) * 2005-10-18 2010-06-08 Eveready Battery Company, Inc. Multi-mode flashlight
US7621653B2 (en) * 2005-11-22 2009-11-24 Xenopus Electronix, Llc Multi-function illumination device
EP1989478A1 (en) * 2006-02-20 2008-11-12 Koninklijke Philips Electronics N.V. Portable illumination device
US7758203B2 (en) * 2006-04-03 2010-07-20 Welch Allyn, Inc. Power connections and interface for compact illuminator assembly
JP2008078009A (en) * 2006-09-22 2008-04-03 Sanyo Tekunika:Kk Lighting device
US7518133B2 (en) * 2006-10-30 2009-04-14 Honeywell International Inc. Integrated searchlight lighthead
US7909478B2 (en) * 2007-08-06 2011-03-22 Fiskars Brands, Inc. Multi battery type flashlight
US7896518B2 (en) * 2008-01-22 2011-03-01 Powertech, Inc. Multimode flashlight having light emitting diodes
US9101022B2 (en) * 2008-01-25 2015-08-04 Eveready Battery Company, Inc. Lighting device having boost circuitry
US20100026205A1 (en) * 2008-01-29 2010-02-04 Emissive Energy Corporation Method of operating a multi-function flashlight
US8087797B2 (en) * 2008-07-18 2012-01-03 Stanley Black & Decker, Inc. Illumination device with detachable light sources
US7850330B2 (en) * 2008-08-20 2010-12-14 Eveready Battery Co., Inc. Lighting device configured to operate with different batteries

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000268601A (en) * 1999-03-15 2000-09-29 Kyushu Hitachi Maxell Ltd Portable lighting system
US6641279B1 (en) * 2001-11-01 2003-11-04 Wilson Williams Dual-beam light assembly with adjustable posterior head
JP2005243520A (en) * 2004-02-27 2005-09-08 Matsushita Electric Ind Co Ltd Portable luminaire
US20060028812A1 (en) * 2004-08-05 2006-02-09 Yuen Se K Rechargeable halogen searcheye

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US7850330B2 (en) 2010-12-14
US20100046211A1 (en) 2010-02-25
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US20110149562A1 (en) 2011-06-23
US7959317B2 (en) 2011-06-14
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US20110075407A1 (en) 2011-03-31
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US20110163698A1 (en) 2011-07-07
US8376574B2 (en) 2013-02-19

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