WO2001003313A9 - Device for radiation shielding of wireless transmit/receive electronic equipment - Google Patents

Device for radiation shielding of wireless transmit/receive electronic equipment

Info

Publication number
WO2001003313A9
WO2001003313A9 PCT/US2000/040315 US0040315W WO0103313A9 WO 2001003313 A9 WO2001003313 A9 WO 2001003313A9 US 0040315 W US0040315 W US 0040315W WO 0103313 A9 WO0103313 A9 WO 0103313A9
Authority
WO
WIPO (PCT)
Prior art keywords
shielding
hybrid
electromagnetic field
emi
predetermined
Prior art date
Application number
PCT/US2000/040315
Other languages
French (fr)
Other versions
WO2001003313A1 (en
Inventor
Juan C Carillo Jr
James S Carillo
Original Assignee
Juan C Carillo Jr
James S Carillo
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 Juan C Carillo Jr, James S Carillo filed Critical Juan C Carillo Jr
Priority to EP00955921A priority Critical patent/EP1232570A4/en
Priority to AU68040/00A priority patent/AU6804000A/en
Publication of WO2001003313A1 publication Critical patent/WO2001003313A1/en
Publication of WO2001003313A9 publication Critical patent/WO2001003313A9/en
Priority to HK03101312.6A priority patent/HK1049076A1/en

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/3833Hand-held transceivers
    • H04B1/3838Arrangements for reducing RF exposure to the user, e.g. by changing the shape of the transceiver while in use
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B1/00Hats; Caps; Hoods
    • A42B1/008Hats; Caps; Hoods with means for heating or cooling
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K9/00Screening of apparatus or components against electric or magnetic fields
    • H05K9/0007Casings
    • H05K9/002Casings with localised screening

Definitions

  • This invention relates generally to shielding electromagnetic interference / radio frequency interference (EMI / RFI ) fields and, more particularly, to shielding sensitive local human body tissue parts from potential harmful electromagnetic fields emanating from close proximity direct line-of-sight wireless transmit / receive electronic equipment antenna source.
  • EMI / RFI radio frequency interference
  • the shielding to encompass around the human body user part as noted by the diagrammed reference node point to user.
  • the closed-form shielding area encompasses and terminates more electromagnetic fields from the antenna thereby increasing the design sensitivities and interactions, whereas for the opened-form shielding area does not encompass or terminate electromagnetic fields appreciably to affect the antenna operation any further for matters that would be appreciated by those skilled in the art.
  • a shielding device using opened-form method design solutions around the electronic user body part that will reduce potential hannful effects from the direct line-of-sight electromagnetic field radiation of an emanating antenna source of a wireless transmit / receive electronic equipment including such as and not limited to a cellular telephone is disclosed that employs the use of wearable garments including and not limited to a hat, eyewear articles, wearable wrap-around type articles, electronic equipment carrying pouch of upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, screen structure arrangement, that resolves the problem of inadequate antenna electromagnetic field direct line-of-sight human body part shielding protection as stated in the prior art discussion.
  • the electromagnetic field radiation shielding device is comprised of a wearable garments including a hat, eyewear articles, wearable wrap-around type articles, electronic equipment carrying pouch of upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, screen structure arrangement, that employs the use of EMI / RFI material properties which will provide shielding or blockage (either reflective or absorptive or dissipative behavior in nature or some interdependency combinations of said behavior group ) of harmful direct line-of-sight electromagnetic field radiation from an emanating antenna wireless transmit / receive electronic equipment source.
  • EMI / RFI material properties which will provide shielding or blockage (either reflective or absorptive or dissipative behavior in nature or some interdependency combinations of said behavior group ) of harmful direct line-of-sight electromagnetic field radiation from an emanating antenna wireless transmit / receive electronic equipment source.
  • This device is placed in relatively close-proximity with or without contact to the sensitive human body tissue part and lies in the direct line-of-sight to the emanating antenna electromagnetic field radiation or propagation field path of travel.
  • Figure A is a simplified circuit model comparison between a closed-form versus opened-form method design solutions as applied to close-proximity electromagnetic field radiation exposure to the user;
  • Figure 1 is a perspective view of such wearable garment device such as a baseball cap with having EMI / RFI material properties, providing local area shielding or blockage from close-proximity wireless transmit / receive electronic equipment according to an embodiment of the present invention;
  • Figure 2 is a perspective view of such wearable garment device in Figure 1 depicting a modified implementation of the embodiment as worn differently by the user to provide a variation in shielding coverage area;
  • Figure 3 is a perspective view of such electronic equipment carrying pouch of extended upwardly fan structure arrangement device with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention;
  • Figure 4 is a perspective view of such foldable or fixed fan device structure arrangement with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention;
  • FIGS. 1 through 9 are perspective views of such wearable garment device types, electronic equipment carrying pouch of upwardly fan structure arrangement, fan structure arrangement, eyewear articles and screen article types, joined with having EMI / RFI material properties for which the invention is located between the sensitive human body tissue part area and the direct line-of-sight electromagnetic field radiation emanating from a wireless transmit / receive electronic equipment antenna 22.
  • Electromagnetic field radiation emanating from a wireless transmits / receive electronic equipment antenna 22 when located in close-proximity to a user human body tissue part will propagate a portion of its energy through the human body tissue non-blocked.
  • the nature of this invention provides the affected local human body tissue part area with predetermined electromagnetic field shielding or blockage effective area zone of protection from exposure to direct line-of-sight electromagnetic fields. These electromagnetic fields propagates in a path of travel that originates from an antenna 22 which emanates a composite of electromagnetic fields traveling in a radial isotropic direction and those of the direct line-of-sight electromagnetic fields towards the sensitive human body tissue part.
  • the invention variation of Figure 1 is a perspective view of such wearable garment device type joined with having EMI / RFI material properties that is worn on the user head 40, in particular but not limited to any hat design, a baseball cap 10 design to provide local head shielding or blockage effective area 15 from exposure to direct line-of-sight electromagnetic field radiation 51, 53 emanating from a wireless transmit /receive electronic equipment antenna 22.
  • the user may wear the baseball cap 10 design in a different orientation over the head that will provide various shielding coverage, local head blockage effective area 16 from exposure to direct line-of-sight electromagnetic field radiation 55 to the head with respect to the wireless transmit / receive electronic equipment antenna 22 position.
  • potential harmful direct line-of-sight electromagnetic field radiation 51, 53, 55 are shielded or blocked as reflective or absorptive or dissipative behavior in nature or some interdependency combination of said behavior group, from propagating through the invention and through the sensitive human body tissue part area directly behind or beneath the invention.
  • the diagrammed legend 39 describes a pictorial representation of the electromagnetic field radiation travel pattern as representative sample-point lines of directional travel path and are depicted as interconnecting lines with arrows for examples of deflected or blocked electromagnetic field radiation travel patterns 51 to 52, 53 to 54, 55 to 56, 57 to 58, 59 to 60, 61 to 62, 63 to 64, 65 to 66, 67 to 68 as influenced by the functional behavior of the invention local shielding effective area and the other lines with tick marks and arrows are shown for examples of non-blocked electromagnetic field radiation travel patterns 30, 31, 32, 33, 34, 35, 36, 37, 38 as is not designed to be shielded or blocked by the invention.
  • FIG. 1 and 2 examples of shielded or blocked electromagnetic fields 51 to 52, 53 to 54, 55 to 56 and non-blocked electromagnetic fields 30, 31, 32, 33 are shown to demonstrate the inventions shielding or blocking functional nature.
  • a typical wearable garment radiation shield material cross-sectional view 11 of the invention is shown, and is not limited in basic design form implementation to be employed with other wearable garments including and not limited to hats, electronic equipment carrying pouch of extended upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, eyewear articles as an eye-glass, screens, blind-screen, wearable wrap-around type articles, is a baseball cap 10 device material cross- sectional perspective, j oined with EMI / RFI material properties.
  • the head shielding effective area 15, 16 perspectively is designed to encompass around the user head 40 and not around the antenna 22, thus the invention design constituting an opened-form method design solutions.
  • the invention variation of Figure 3 is a back, side and front perspective view of such electronic equipment carrying pouch of extended upwardly fan structure arrangement device 110 joined with having EMI / RFI material properties, with electronic equipment access window holes 124, 125, 126 as required, that is hand-held by the user, near the head 41, 42, perspectively.
  • the wireless transmit / receive electronic equipment 20 in particular but not limited to a cellular telephone, a cellular telephone predeterminedly placed inside the electronic equipment carrying pouch of extended upwardly fan structure arrangement 110 to provide electromagnetic field local head shielding or blockage effective area 120 from exposure to direct line-of-sight electromagnetic field radiation 57 to 58, 59 to 60 emanating from a wireless transmit / receive electronic equipment antenna 22 position.
  • the remaining non-blocked electromagnetic field radiation 34, 36 are left un-perturbed by the invention design.
  • the head shielding effective area 120 is designed to relatively encompass around the head 41,42 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions.
  • the invention variation of Figure 4 is a back, front and side perspective view of such foldable or fixed fan device structure arrangement 210, joined with having EMI / RFI material properties and said fan device structure arrangement 210 that implements a clipped-on or slip-fitted on attachment arrangement 220.
  • the wireless transmit / receive electronic equipment 20, predeterminedly attached to the clipped-on or slip-fitted on attachment arrangement 220 will provide electromagnetic field local head blockage effective area 121 from exposure to direct line-of-sight electromagnetic field radiation 57 1 58, 59 to 60 emanating from a wireless transmit / receive electronic equipment antenna 22 position.
  • the non-blocked electromagnetic field radiation 34, 35 are left un-perturbed by invention design.
  • the local head blockage effective area 121 and 127 respectively is designed to relatively encompass around the user head and not around the antenna 22, thus the invention design constituting an opened-form method design solutions.
  • the invention variation of Figure 6 is a front and side perspective view of such sandwiched type screen device arrangement 310 joined with EMI / RFI material properties, or modified slotted sandwiched type screen device arrangement 311 joined with EMI / RFI material properties, that is either slipped-in arrangement between the wireless transmit / receive electronic equipment 20, a belt arrangement 29 and the user body part 43,45 perspectively for device arrangement 310, or is slip-fitted onto the wireless transmit / receive electronic equipment body hanger 23 which is then sandwiched closely against the user body 44 and hung in support by a belt arrangement 29 for device arrangement 311.
  • Electromagnetic field user body part shielding or blockage effective area 122 is provided by either approach through sandwiched type screen device arrangement 310 or 311 from exposure to direct line-of-sight electromagnetic field radiation 57 to 58, 59 to 60 emanating from a wireless transmit receive electronic equipment antenna 22 position.
  • the non-blocked electromagnetic field radiation 34, 35, 36 perspectively, are left un-perturbed by the invention design.
  • the user body part shielding effective area 122 is designed to relatively encompass around the user body part 43, 44, 45 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions.
  • preceding invention variations discussions were examples of close-proximity electromagnetic field radiation exposure to the user.
  • this invention variation applies to relative far-field proximity electromagnetic field radiation exposure to the user in providing effective shielding.
  • This invention variation of Figure 7 is a front and side perspective view of such variation of sandwiched type screen device 410 joined with EMI / RFI material properties that is slipped-in arrangement between the wireless transmit / receive electronic equipment antenna 22 and computer device 90 in direct line-of-sight of the human body head sensitive tissue part 46, 47, perspectively.
  • the sandwiched type screen device 410 is predeterminedly placed between the wireless transmit / receive electronic equipment 20, in particular but not limited to a cellular telephone, the back or front side view of the computer device 90, as to provide electromagnetic field local head shielding or blockage effective area 123 from exposure to direct line-of-sight electromagnetic field radiation 57 to 58, 59 to 60, emanating from a wireless transmit / receive electronic equipment antenna 22 position.
  • the non-blocked electromagnetic field radiation 34, 35 are left un-perturbed by the invention design.
  • the local head shielding effective area 123 is designed to relatively encompass around the user head 46, 47 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions.
  • FIG. 8 For another invention variation in far-field proximity electromagnetic field radiation exposure to the user as shown in Figure 8 is a perspective view of such screen or blind-screen device joined with EMI / RFI material properties of predetermined size that is either free-standing screen 510 or suspended screen 550 from a support structure and is predeterminedly placed between the wireless transmit / receive electronic equipment antenna 22 and the user human body 48, 49, perspectively. Shielding is provided by the electromagnetic field shielding effective area 524, 525 perspectively, for the human body from exposure to direct line-of-sight electromagnetic field radiation 61 to 62, 63 to 64 and 65 to 66, 67 to 68 perspectively emanating from a wireless transmit /receive electronic equipment antenna 22 position.
  • the invention variation of Figure 9 is a front and back perspective view of such eye-glass device 610 j oined with having EMI / RFI material properties that is permanently or non-permanently attached that will provide local eye shielding or blockage effective area 627 from exposure to direct line-of-sight electromagnetic field radiation 69 to 70, 71 to 72 emanating from a wireless transmit / receive electronic equipment antenna 22.
  • the non-blocked electromagnetic field radiation 37, 38 are left un-perturbed by the invention design.
  • the wireless transmit / receive electronic equipment in this case and not limited to function may represent visual information content, such that the user human body head 49, 149 shown perspectively may expose sensitive human body tissue eye part to potential harmful direct line-of-sight electromagnetic fields.
  • the local eye shielding effective area 627 is designed to relatively encompass around the human body head 49, 149 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions.
  • Figure 10 is a perspective view of the " Cell-Shield Wearables" logo 700 encompassing an overall 1 to 1 aspect ratio design area and simple general logo design dimensions according to the embodiment of the present invention.

Abstract

A device for locally shielding or blocking a user from close proximity electromagnetic fields 51, 53, 55, 57, 59, 61, 63, 65, 67, 69, 71 emitted by a wireless electronic equipment antenna 22 such as a cellular telephone. The device includes a wearable garments such as a baseball cap 10, electronic carrying pouch 110, fan 210, 250, 410, eyeglass 610 design, or screens, joined with having EMI/RFI material properties that is specifically worn by or placed between the user and the electromagnetic field source 22. It serves to provide as an electromagnetic field shield, either reflective, absorptive, or dissipative behavior in nature, from a direct line-of-sight electromagnetic field 51, 53, 55, 57, 59, 61, 63, 65, 67, 69, 71 radiating from a wireless device antenna 22.

Description

Device For Radiation Shielding of Wireless Transmit / Receive Electronic Equipment
BACKGROUND OF THE INVENTION
Field of the Invention This invention relates generally to shielding electromagnetic interference / radio frequency interference ( EMI / RFI ) fields and, more particularly, to shielding sensitive local human body tissue parts from potential harmful electromagnetic fields emanating from close proximity direct line-of-sight wireless transmit / receive electronic equipment antenna source.
Background Art There is much concern throughout the world that electromagnetic field radiation and microwave radiation may cause human body tissue damage. The antenna and the body of wireless transmit / receive electronic equipment such as a cellular telephone and higher frequency band transceivers come in close contact with a person head or sensitive human body tissue part thereby creating a close exposure to electromagnetic field and microwave radiation. Because of these hazards and to offer some protection against these hazards, some form of shielding devices was invented. Current state-of-the-art provide accessories for cellular telephones or higher frequency band transceivers that will afford some protection to cellular telephone and higher frequency band transceiver users from the alleged brain, head and sensitive body tissue damage caused by electromagnetic field radiation of cellular telephone or higher frequency band transceiver use. These accessories are primarily of closed-form design solutions around the electronic equipment to reduce electromagnetic field radiation emanating from the electronic equipment body, but does not attempt to sufficiently reduce electromagnetic field radiation from the antenna, regarding direct line-of-sight signal transmission between the antenna and the sensitive human body tissue part without causing serious impact to normal signal transmission operation. Some attempts to implement closed-form method shielding design solutions around electromagnetic field radiation from an electronic equipment antenna would be very difficult to implement without causing tremendous antenna transmit / receive signal degradation for the equipment and still be effective in providing sufficiently adequate shielding for the user. Strict and exacting design parameters and controls over time of equipment operation on shield spacing, positioning, shield part dimensions and material electrical characteristic behavior parameters under normal stress movement conditions by the user, would be required to solve the complex and specific antenna electromagnetic field frequency response voltage standing wave ratio loading and matching criteria relative to that particular antenna electrical structure design in order for proper antenna operation. Note that for added clarification regarding the concept of closed-form method design solutions, a simplified circuit model is shown in Figure A, that shows a comparison between the closed-form versus opened-form method design solutions as applied to close-proximity electromagnetic field radiation exposure to the user. Also note that the basic distinction for the closed-form method design solutions is for the shielding to encompass around the electronic equipment body or antenna as noted by the diagrammed reference node point to antenna. But with regards to the opened-form method design solution, is the shielding to encompass around the human body user part as noted by the diagrammed reference node point to user. Further note, if we were to start with the same finite small closed-form and opened-form surface shielding area and now increase each surface area evenly further, the closed-form shielding area encompasses and terminates more electromagnetic fields from the antenna thereby increasing the design sensitivities and interactions, whereas for the opened-form shielding area does not encompass or terminate electromagnetic fields appreciably to affect the antenna operation any further for matters that would be appreciated by those skilled in the art. What is needed is an opened-form method design solution that is simply detached from the design requirement of solving for complex antenna matching criteria parameters and now centered the design solution around the exposed electronic user body part, serving means to provide an electromagnetic field radiation shielding or blockage, either reflective or absorptive or dissipative behavior in nature, in order to reduce the direct line-of-sight antenna electromagnetic field radiation to the sensitive human body tissue part without causing significant antenna signal transmit / receive degradation for proper wireless electronic equipment operation and simplifying the shielding device design, irrespective of any antenna strict electrical and structure matching criteria that would be imposed if one were to use parameters for closed-form method design solutions, thus simplifying the present invention fabrication, improving performance reliability and repeatability of the present invention. SUMMARY OF THE INVENTION In accordance with the teaching of the present invention, a shielding device using opened-form method design solutions around the electronic user body part, that will reduce potential hannful effects from the direct line-of-sight electromagnetic field radiation of an emanating antenna source of a wireless transmit / receive electronic equipment including such as and not limited to a cellular telephone is disclosed that employs the use of wearable garments including and not limited to a hat, eyewear articles, wearable wrap-around type articles, electronic equipment carrying pouch of upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, screen structure arrangement, that resolves the problem of inadequate antenna electromagnetic field direct line-of-sight human body part shielding protection as stated in the prior art discussion. The electromagnetic field radiation shielding device is comprised of a wearable garments including a hat, eyewear articles, wearable wrap-around type articles, electronic equipment carrying pouch of upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, screen structure arrangement, that employs the use of EMI / RFI material properties which will provide shielding or blockage (either reflective or absorptive or dissipative behavior in nature or some interdependency combinations of said behavior group ) of harmful direct line-of-sight electromagnetic field radiation from an emanating antenna wireless transmit / receive electronic equipment source. This device is placed in relatively close-proximity with or without contact to the sensitive human body tissue part and lies in the direct line-of-sight to the emanating antenna electromagnetic field radiation or propagation field path of travel. Additional objects, advantages, and features of the present invention will become apparent from the following description and appended claims, taken in conjunction with the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS Figure A is a simplified circuit model comparison between a closed-form versus opened-form method design solutions as applied to close-proximity electromagnetic field radiation exposure to the user; Figure 1 is a perspective view of such wearable garment device such as a baseball cap with having EMI / RFI material properties, providing local area shielding or blockage from close-proximity wireless transmit / receive electronic equipment according to an embodiment of the present invention; Figure 2 is a perspective view of such wearable garment device in Figure 1 depicting a modified implementation of the embodiment as worn differently by the user to provide a variation in shielding coverage area; Figure 3 is a perspective view of such electronic equipment carrying pouch of extended upwardly fan structure arrangement device with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention; Figure 4 is a perspective view of such foldable or fixed fan device structure arrangement with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention; Figure 5 is a perspective view of such internally pop-up foldable fan device structure arrangement with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention; Figure 6 is a perspective view of such sandwiched type screen device arrangement with having EMI / RFI material properties providing various applications to shielding a sensitive human body tissue part, according to an embodiment of the present invention; Figure 7 is a perspective view in variation of such sandwiched type screen device similar to Figure 6 as located differently with the wireless transmit / receive electronic equipment by the user to provide a variation in shielding area according to an embodiment of the present invention; Figure 8 is a perspective view of such screen or blind-screen device with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention; Figure 9 is a perspective view of such eye-glass device with having EMI / RFI material properties providing various applications to shielding sensitive human body tissue part, according to an embodiment of the present invention; Figure 10 is a perspective view of the " Cell-Shield Wearable " logo according to an embodiment of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS By way of opened-form method design solutions, the following discussion of the preferred embodiments directed to wearable garments including and not limited to a hat as a baseball cap, eyewear articles including and not limited to an eye-glass, electronic equipment carrying pouch of extended upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, screen articles, wearable wrap-around type articles, where said items joined with having EMI / RFI material properties that is predeterminedly worn by the user or placed between the user and the electromagnetic field emanating wireless transmit / receive electronic equipment 20 as comprised of an electronic body 21 and antenna 22, serves to provide predetermined local human body tissue part area with electromagnetic field shielding or blockage , either reflective or absorptive or dissipative behavior in nature or some interdependency combinations of said behavior group, from exposure to direct line-of-sight electromagnetic field signal radiating from a wireless transmit / receive electronic equipment antenna 22 is merely exemplary in nature and is in no way intended to limit the invention or its applications or uses. It is further noted that in all following antenna 22 discussions, although the drawings shown are in external electronic body antenna structure design form representation, an internally embedded electronic body antenna structure design form in meaning is encompassed in this embodiment. Referring to Figures 1 through 9 are perspective views of such wearable garment device types, electronic equipment carrying pouch of upwardly fan structure arrangement, fan structure arrangement, eyewear articles and screen article types, joined with having EMI / RFI material properties for which the invention is located between the sensitive human body tissue part area and the direct line-of-sight electromagnetic field radiation emanating from a wireless transmit / receive electronic equipment antenna 22. Electromagnetic field radiation emanating from a wireless transmits / receive electronic equipment antenna 22 when located in close-proximity to a user human body tissue part will propagate a portion of its energy through the human body tissue non-blocked. The nature of this invention provides the affected local human body tissue part area with predetermined electromagnetic field shielding or blockage effective area zone of protection from exposure to direct line-of-sight electromagnetic fields. These electromagnetic fields propagates in a path of travel that originates from an antenna 22 which emanates a composite of electromagnetic fields traveling in a radial isotropic direction and those of the direct line-of-sight electromagnetic fields towards the sensitive human body tissue part. A predetermined portion of the electromagnetic fields are then blocked by the invention shielding effective area zone and thereby leaving the outside region of the shielding effective area zone comprising the remaining non-blocked electromagnetic field radiation to be un-perturbed for normal equipment signal transmission operation. In close-proximity electromagnetic field radiation exposure to the user, the invention variation of Figure 1 is a perspective view of such wearable garment device type joined with having EMI / RFI material properties that is worn on the user head 40, in particular but not limited to any hat design, a baseball cap 10 design to provide local head shielding or blockage effective area 15 from exposure to direct line-of-sight electromagnetic field radiation 51, 53 emanating from a wireless transmit /receive electronic equipment antenna 22. In addition, in Figure 2 the user may wear the baseball cap 10 design in a different orientation over the head that will provide various shielding coverage, local head blockage effective area 16 from exposure to direct line-of-sight electromagnetic field radiation 55 to the head with respect to the wireless transmit / receive electronic equipment antenna 22 position. As shown in Figures 1 and 2 according to the invention, potential harmful direct line-of-sight electromagnetic field radiation 51, 53, 55 are shielded or blocked as reflective or absorptive or dissipative behavior in nature or some interdependency combination of said behavior group, from propagating through the invention and through the sensitive human body tissue part area directly behind or beneath the invention. Note in general description applied to Figures 1 to 9, the diagrammed legend 39 describes a pictorial representation of the electromagnetic field radiation travel pattern as representative sample-point lines of directional travel path and are depicted as interconnecting lines with arrows for examples of deflected or blocked electromagnetic field radiation travel patterns 51 to 52, 53 to 54, 55 to 56, 57 to 58, 59 to 60, 61 to 62, 63 to 64, 65 to 66, 67 to 68 as influenced by the functional behavior of the invention local shielding effective area and the other lines with tick marks and arrows are shown for examples of non-blocked electromagnetic field radiation travel patterns 30, 31, 32, 33, 34, 35, 36, 37, 38 as is not designed to be shielded or blocked by the invention. With respect to Figures 1 and 2, examples of shielded or blocked electromagnetic fields 51 to 52, 53 to 54, 55 to 56 and non-blocked electromagnetic fields 30, 31, 32, 33 are shown to demonstrate the inventions shielding or blocking functional nature. Also note, in general, a typical wearable garment radiation shield material cross-sectional view 11 of the invention is shown, and is not limited in basic design form implementation to be employed with other wearable garments including and not limited to hats, electronic equipment carrying pouch of extended upwardly fan structure arrangement, foldable or fixed fan structure arrangement, internally pop-up fan mechanism arrangement, eyewear articles as an eye-glass, screens, blind-screen, wearable wrap-around type articles, is a baseball cap 10 device material cross- sectional perspective, j oined with EMI / RFI material properties. The general device material cross-sectional view 11 perspective of the invention joined with having EMI / RFI material properties layered together in a predetermined about or multitude of alternating sandwiched material layer fashion such as and not limited to: an outside EMI / RFI material layer 12 option, an optional cloth or other support material layer 13 and an inside EMI / RFI material layer 14 option. Also note in Figures 1 and 2 that the head shielding effective area 15, 16 perspectively is designed to encompass around the user head 40 and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. In another example of close-proximity electromagnetic field radiation exposure to the user, the invention variation of Figure 3 is a back, side and front perspective view of such electronic equipment carrying pouch of extended upwardly fan structure arrangement device 110 joined with having EMI / RFI material properties, with electronic equipment access window holes 124, 125, 126 as required, that is hand-held by the user, near the head 41, 42, perspectively. The wireless transmit / receive electronic equipment 20, in particular but not limited to a cellular telephone, a cellular telephone predeterminedly placed inside the electronic equipment carrying pouch of extended upwardly fan structure arrangement 110 to provide electromagnetic field local head shielding or blockage effective area 120 from exposure to direct line-of-sight electromagnetic field radiation 57 to 58, 59 to 60 emanating from a wireless transmit / receive electronic equipment antenna 22 position. The remaining non-blocked electromagnetic field radiation 34, 36 are left un-perturbed by the invention design. Further note that the head shielding effective area 120 is designed to relatively encompass around the head 41,42 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. Likewise, in another example of a close-proximity electromagnetic field radiation exposure to the user, the invention variation of Figure 4 is a back, front and side perspective view of such foldable or fixed fan device structure arrangement 210, joined with having EMI / RFI material properties and said fan device structure arrangement 210 that implements a clipped-on or slip-fitted on attachment arrangement 220. The wireless transmit / receive electronic equipment 20, predeterminedly attached to the clipped-on or slip-fitted on attachment arrangement 220 will provide electromagnetic field local head blockage effective area 121 from exposure to direct line-of-sight electromagnetic field radiation 57 1 58, 59 to 60 emanating from a wireless transmit / receive electronic equipment antenna 22 position. The non-blocked electromagnetic field radiation 34, 35 are left un-perturbed by invention design. Or as shown in another variation of the invention, in Figure 5 an internally pop-up fan mechanism arrangement 250 within the user wireless transmit / receive electronic equipment antenna body 23, comprising a slide position mechanism 24 within a slide assembly 26 and thereby mechanically supports the fan device pop- up mechanism structure arrangement 250 joined with EMI / RFI material properties. Again further note that the local head blockage effective area 121 and 127 respectively, is designed to relatively encompass around the user head and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. Continuing another example of a close-proximity electromagnetic field radiation exposure to the user, the invention variation of Figure 6 is a front and side perspective view of such sandwiched type screen device arrangement 310 joined with EMI / RFI material properties, or modified slotted sandwiched type screen device arrangement 311 joined with EMI / RFI material properties, that is either slipped-in arrangement between the wireless transmit / receive electronic equipment 20, a belt arrangement 29 and the user body part 43,45 perspectively for device arrangement 310, or is slip-fitted onto the wireless transmit / receive electronic equipment body hanger 23 which is then sandwiched closely against the user body 44 and hung in support by a belt arrangement 29 for device arrangement 311. Electromagnetic field user body part shielding or blockage effective area 122 is provided by either approach through sandwiched type screen device arrangement 310 or 311 from exposure to direct line-of-sight electromagnetic field radiation 57 to 58, 59 to 60 emanating from a wireless transmit receive electronic equipment antenna 22 position. The non-blocked electromagnetic field radiation 34, 35, 36 perspectively, are left un-perturbed by the invention design. Note that the user body part shielding effective area 122 is designed to relatively encompass around the user body part 43, 44, 45 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. In contrast, note that preceding invention variations discussions were examples of close-proximity electromagnetic field radiation exposure to the user. But for Figure 7, this invention variation applies to relative far-field proximity electromagnetic field radiation exposure to the user in providing effective shielding. This invention variation of Figure 7 is a front and side perspective view of such variation of sandwiched type screen device 410 joined with EMI / RFI material properties that is slipped-in arrangement between the wireless transmit / receive electronic equipment antenna 22 and computer device 90 in direct line-of-sight of the human body head sensitive tissue part 46, 47, perspectively. The sandwiched type screen device 410 is predeterminedly placed between the wireless transmit / receive electronic equipment 20, in particular but not limited to a cellular telephone, the back or front side view of the computer device 90, as to provide electromagnetic field local head shielding or blockage effective area 123 from exposure to direct line-of-sight electromagnetic field radiation 57 to 58, 59 to 60, emanating from a wireless transmit / receive electronic equipment antenna 22 position. The non-blocked electromagnetic field radiation 34, 35 are left un-perturbed by the invention design. Note that the local head shielding effective area 123 is designed to relatively encompass around the user head 46, 47 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. For another invention variation in far-field proximity electromagnetic field radiation exposure to the user as shown in Figure 8 is a perspective view of such screen or blind-screen device joined with EMI / RFI material properties of predetermined size that is either free-standing screen 510 or suspended screen 550 from a support structure and is predeterminedly placed between the wireless transmit / receive electronic equipment antenna 22 and the user human body 48, 49, perspectively. Shielding is provided by the electromagnetic field shielding effective area 524, 525 perspectively, for the human body from exposure to direct line-of-sight electromagnetic field radiation 61 to 62, 63 to 64 and 65 to 66, 67 to 68 perspectively emanating from a wireless transmit /receive electronic equipment antenna 22 position. The non-blocked electromagnetic field radiation 34, 35 are left un-perturbed by the invention design. Note that the user body shielding effective area 524, 525 perspectively is designed to relatively encompass around the user body 48, 49 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. In another example of far-field proximity electromagnetic field radiation exposure to the user, the invention variation of Figure 9 is a front and back perspective view of such eye-glass device 610 j oined with having EMI / RFI material properties that is permanently or non-permanently attached that will provide local eye shielding or blockage effective area 627 from exposure to direct line-of-sight electromagnetic field radiation 69 to 70, 71 to 72 emanating from a wireless transmit / receive electronic equipment antenna 22. The non-blocked electromagnetic field radiation 37, 38 are left un-perturbed by the invention design. The wireless transmit / receive electronic equipment in this case and not limited to function, may represent visual information content, such that the user human body head 49, 149 shown perspectively may expose sensitive human body tissue eye part to potential harmful direct line-of-sight electromagnetic fields. Note that the local eye shielding effective area 627 is designed to relatively encompass around the human body head 49, 149 perspectively and not around the antenna 22, thus the invention design constituting an opened-form method design solutions. Figure 10 is a perspective view of the " Cell-Shield Wearables " logo 700 encompassing an overall 1 to 1 aspect ratio design area and simple general logo design dimensions according to the embodiment of the present invention. The discussion above describes wearable garments, electronic equipment carrying pouch, fan structures, eyewear articles and screen articles, joined with EMI / RFI material properties that include several variations to allow it operated as an electromagnetic field radiation shielding or blockage device for the predetermined human body tissue part, either predeterminedly worn or placed in close proximity to the user. Although various implementations and variations are discussed above, other variations can be incorporated within the scope of the present invention, as would be appreciated by those skilled in the art. The foregoing discussion discloses and describes merely exemplary embodiments of the present invention. One skilled in the

Claims

Claims: 1. A method of shielding electromagnetic fields 51, 53, 55, 57, 59, 61, 63, 65, 67, 69, 71 from direct line-of-sight antenna signal radiation of an wireless transmit / receive electronic equipment antenna 22 such as and not limited to a cellular telephone antenna,
comprises the use of: Joining wearable garments including and not limited to types of hats, such as a baseball cap 10 with electromagnetic interference / radio frequency interference ( EMI / RFI ) material properties to form hybrid wearable garment devices, Joining various design types of screens 310, 510, 550 with EMI / RFI material properties to form types of hybrid
screen devices, Joining eyewear articles including and not limited to an eyeglass 610 with EMI RFI material properties to form types of hybrid eyewear article devices, Joining wearable wrap-around type articles including and not limited to a bandanna or to a scarf with EMI / RFI material properties to form hybrid wearable wrap-around type article devices, Joining electronic equipment carrying pouch 110 of extended upwardly fan structure arrangement with EMI / RFI material properties to form hybrid electronic equipment carrying pouch of extended upwardly fan structure arrangement devices, Joining foldable or fixed fan structure arrangement 210, 410 with EMI / RFI material properties to form hybrid foldable or fixed fan structure arrangement devices,
Joining an internally pop-up fan mechanism arrangement 250 with EMI / RFI material properties to form hybrid internally pop-up fan arrangement devices, whereby said devices are specifically worn or placed between the wireless transmit / receive electronic equipment antenna 22 and the sensitive human body tissue part to provide means for effective electromagnetic field shielding or blockage, either reflective or absorptive or dissipative behavior in nature or some interdependency combinations of said behavior group, from potentially harmful direct line-of-sight of electromagnetic fields 51, 53, 55, 57, 59, 61, 63, 65, 67, 69, 71 emanating from a wireless transmit / receive electronic equipment antenna 22, as solutions for opened-form design method which serves to minimize the shielding degradation effects and sensitivity interaction effects on normal non-blocked electromagnetic fields 30, 31, 32, 33, 34, 35, 36, 37, 38 antenna signal transmission operation.
2. A method of shielding electromagnetic fields 51 , 53, 55, 57, 59, 61 , 63 , 65, 67, 69, 71 emanating from wearable electronic hardware equipment with wireless transmit / receive electronic equipment capability, according to claim 1, whereby said devices are specifically worn between the wearable electronic hardware equipment wireless antenna 22 area and the sensitive human body tissue part area to provide means for predetermined local human body tissue area shielding of electromagnetic fields emanating from various types of wearable electronic equipments.
3. An electromagnetic field shielding or blockage device according to claim 1 comprises of: a plurality of EMI /RFI materials, processes and forms used to operate specifically within the 100 Mega-Hertz to 300 Giga-Hertz electromagnetic field frequency spectrum range parameter,
a plurality of EMI / RFI materials and processes used comprising and not limited
to: conductive composites, conductive laminates, conductive fibers, molded / extruded conductive elastomers, conductive silicone-base, conductive polymer-base, woven fabric, foam, conductive coatings, foil, tape, film shielding laminates, conductive film can be Indium Tin Oxide (ITO) or multi-layer conductive coatings, conductive material deposition process, silk screen on conductive paint, metal mesh, knitted wire mesh, grilles, which constitute electrical properties having a predetermined resistivity range and is within about zero ohms per square and less than or equal to 100,000 ohms per square range parameter, a plurality of EMI / RFI materials used comprising of types of forms such as and not limited to: conductive woven fabric, metal or polymer-based or silicone-based mesh, knitted wire mesh, grilles, of said types of forms having a multitude array of square holes in sheet-material form of predetermined thickness, where said forms design comprises a grid structure arrangement of square holes, the overall effective square hole area design
range is within about zero to 0.01 inch in grid area effective square hole dimensions, which constitute electrical properties having predetermined electromagnetic waveguide cutoff wavelength range parameter behavior in nature, a plurality of EMI / RFI materials used comprising of types of material textures such as and not limited to: flat surface shape, periodic triangular-surface or accordion surface shape, periodic grid of pyramidal volume protruding element surface shape, periodic grid of semi-bubble volume protruding-in or protruding-out element surface
shape, periodic grid of waffle-iron shape protruding-out or protruding-in element surface shape, which constitute the enhancement of increasing electromagnetic field surface absorption range parameter behavior in nature,
whereby said electrical design range parameters contain means for effective electromagnetic field shielding or blockage by the invention and serves to minimize the shielding degradation effects and sensitivity interaction effects on non-blocked electromagnetic field 30, 31, 32, 33, 34, 35, 36, 37, 38 normal antenna signal transmission operation.
4. An electromagnetic field shielding or blockage device according to claim
1, where said electromagnetic shielding device comprising: a plurality of conventional fabrication techniques used to produce wearable garments including a hat such as and not limited to a baseball cap 10, a plurality of conventional fabrication techniques used to produce wearable wrap- around type articles including and not limited to a bandanna of scarf, a plurality of conventional fabrication techniques used to produce a electronic equipment carrying pouch 110 of extended upwardly fan structure arrangement, a plurality of conventional fabrication techniques used to produce eyewear articles including and not limited to an eye-glass 610, a plurality of conventional fabrication techniques used to produce attachable fan structure arrangement 210, 410 with fixed or foldable or collapsible functions, a plurality of conventional fabrication techniques used to produce internal electronic equipment pop-up fan mechanism arrangement 250 with fixed or foldable or
collapsible functions, a plurality of conventional fabrication techniques used to produce free-standing
510 or suspended support screen 550 structures including and not limited to blinds with fixed or foldable or collapsible functions, where said conventional fabrication techniques joined specifically with EMI / RFI material properties to form hybrid fabrication constructions and process forms of the electromagnetic field shielding device, comprises of and not limited to: an EMI / RFI material layer or liner joined in a predetermined about or multitude of alternating sandwich layered fashion 11 with a predetermined wearable garment layer or support member structure layer or screen structure layer where said sandwich layers could be sewn on together, or adhesively attached or a wrapped around configuration or a temporary attachment by way of clip-on pins or pinned on attach or Nelcro-attached or non-permanent bond adhesive attach or process depositioned attach together, to form together a predetermined sandwiched layer arrangement, or an EMI / RFI material layer joined with predetermined about or multitude layers of a predetermined wearable garment layer or support member layer or screen structure layer to form together a predetermined laminate arrangement, or a some about or multitude combination of predetermined EMI / RFI material types and layers used entirely in place of the wearable garment layer or the support member structure layer or the screen structure layer to form together a predetermined hybrid material and process arrangement, whereby said conventional fabrication techniques, said predetermined sandwiched layer arrangement 11, said predetermined laminate arrangement, said predetermined hybrid material and process arrangement, provide predetermined methods of hybrid wearable garment fabrication construction techniques, hybrid eyewear article fabrication construction techniques, hybrid fan structure fabrication construction techniques, hybrid pop-up fan mechanism fabrication
construction techniques, and hybrid screen structure fabrication construction techniques for the invention.
5. A method of device rating the shielding or blockage effectiveness of reducing the energy of radiated electromagnetic fields 51, 53, 55, 57, 59, 61, 63, 65, 67, 69, 71 is referred to as radiation blockage factor (RBF) comprising of the standard unit of RBF measurement is the decibel or dB, the decibel value is the ratio of two measurements of electromagnetic field ratio of two measurement of electromagnetic field strength taken before and after shielding is in place, the method by which RBF may be estimated is the transmission line method and circuit method (JJBEE, 1988, "Special issue on electromagnetic shielding", IEEE Transactions on EMC, EMC- 30, No. 3, August), an alternate standard unit of RBF measurement is in magnitude ratio defined as M^ = 10Λ(RBF/20), alternate nomenclatures for RBF device rating the shielding effectiveness, are radiation proof factor ( RPF ) and radiation shield factor (RSF ), an alternate standard unit of RPF measurement is in magnitude ratio defined as
Figure imgf000022_0001
= 10Λ(RPF/20), and an alternate standard unit of RSF measurement is in magnitude ratio defined as M^ = 10Λ(RSF/20), whereby said device rating provide a quality figure-of- merit measure for the invention.
6. A method of product awareness for the hybrid wearable garments 10, hybrid wearable wrap-around type articles, hybrid screens 310, 510, 550, hybrid fan structure arrangements 210, 250, 410, hybrid carrying pouch arrangements 110, and hybrid eyewear articles 610 as a means for their electromagnetic field shielding property from direct line-of-sight antenna 22 signal transmission of a wireless transmit / receive electronic equipment 20, is comprised of: the trademark name, " Cell-Shield Wearables ", the combination of colors, orange and yellow , used in print for the " Cell-Shield Wearables " name and logo, the logo for the
" Cell-Shield Wearables " trademark name as shown in Figure 10, whereby said product awareness items provide a quality name brand recognition for reliability and dependability from the invention.
7. Amethod of shielding electromagnetic fields 51, 53, 55, 57, 59, 61 , 63, 65, 67, 69, 71 according to claim 1 embodies both externally mounted electronic body antenna 22 and internally embedded electronic body antenna structure design types.
8. A method of predetermined effective shielding area coverage protection according to claim 1 comprising: an increasing or decreasing elongated invention structure to encompass around the user body part in a predetermined set of dimensions of length, width, height or thickness of the embodiments of the shield device invention variations, whereby said predetermined effective shielding area coverage provide means of predetermined compliance in meeting the user's required electromagnetic field shielding or blocking performance.
9. Another method of alternate device rating the shielding or blockage effectiveness of reducing the energy of a radiated electromagnetic field 51, 53, 55, 57, 59, 61, 63, 65, 67, 69, 71 according to claim 5 as other alternate nomenclatures to mean equivalently RBF nomenclature in nature, includes: electromagnetic-field blockage factor (EBF), electromagnetic-field proof factor (EPF), electromagnetic-field shield factor (ESF), cell-phone blockage factor (CBF), cell-phone proof factor (CPF), cell-phone shield
factor (CSF), whereby said alternate device ratings provide a terminology extension of
shield effectiveness rating nomenclature means to provide a relevant quality figure-of- merit measure for the invention.
PCT/US2000/040315 1999-07-06 2000-07-06 Device for radiation shielding of wireless transmit/receive electronic equipment WO2001003313A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
EP00955921A EP1232570A4 (en) 1999-07-06 2000-07-06 Device for radiation shielding of wireless transmit/receive electronic equipment
AU68040/00A AU6804000A (en) 1999-07-06 2000-07-06 Device for radiation shielding of wireless transmit/receive electronic equipment
HK03101312.6A HK1049076A1 (en) 1999-07-06 2003-02-20 Device for radiation shielding of wireless transmit/receive electronic equipment

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US09/348,144 US6603981B1 (en) 1999-07-06 1999-07-06 Device for radiation shielding of wireless transmit/receive electronic equipment such as cellular telephone from close proximity direct line-of-sight electromagnetic fields
US09/348,144 1999-07-06

Publications (2)

Publication Number Publication Date
WO2001003313A1 WO2001003313A1 (en) 2001-01-11
WO2001003313A9 true WO2001003313A9 (en) 2002-08-01

Family

ID=23366818

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2000/040315 WO2001003313A1 (en) 1999-07-06 2000-07-06 Device for radiation shielding of wireless transmit/receive electronic equipment

Country Status (5)

Country Link
US (2) US6603981B1 (en)
EP (1) EP1232570A4 (en)
AU (1) AU6804000A (en)
HK (1) HK1049076A1 (en)
WO (1) WO2001003313A1 (en)

Families Citing this family (46)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060119525A1 (en) * 2004-08-24 2006-06-08 Nathan Cohen Wideband antenna system for garments
US20050231426A1 (en) * 2004-02-02 2005-10-20 Nathan Cohen Transparent wideband antenna system
US6709387B1 (en) * 2000-05-15 2004-03-23 Given Imaging Ltd. System and method for controlling in vivo camera capture and display rate
GB2369744B (en) * 2000-08-31 2002-11-13 Lightwire Comm Ltd Hands-free kit for mobile radio-telephone handset
GB0021238D0 (en) * 2000-08-31 2000-10-18 Lewis Marcus Hands-free kit for mobile radio telephone handset
US6711387B1 (en) * 2000-10-13 2004-03-23 Andrew T. Lungley Radiation-shielding mobile phone case device
US7031762B2 (en) * 2000-12-28 2006-04-18 Mitsubishi Denki Kabushiki Kaisha Mobile terminal including first and second housings and an antenna
US7079086B2 (en) 2001-02-15 2006-07-18 Integral Technologies, Inc. Low cost electromagnetic field absorbing devices manufactured from conductive loaded resin-based materials
GB2393387B (en) * 2001-05-19 2005-05-04 Lance Harold Rayner Safety shield
IL150575A (en) * 2001-07-05 2009-02-11 Arkady Glukhovsky Device and method for attenuating radiation from in vivo electrical devices
WO2003083875A1 (en) * 2002-04-03 2003-10-09 Schem Nz Limited Remote monitoring apparatus
US8086283B2 (en) 2002-08-08 2011-12-27 Parker Stephen B Wireless child communication device
GB0310656D0 (en) * 2003-05-09 2003-06-11 Koninkl Philips Electronics Nv Radio communications device
US7671803B2 (en) * 2003-07-25 2010-03-02 Hewlett-Packard Development Company, L.P. Wireless communication system
US20060111162A1 (en) * 2004-11-24 2006-05-25 Samsung Electronics Co., Ltd. Portable wireless terminal having conductor for improving antenna property
US7257374B1 (en) 2004-12-10 2007-08-14 Cingular Wireless Ii, Llc Automatic security locking method and system for wireless-enabled devices
US7482925B2 (en) * 2005-06-24 2009-01-27 Visa U.S.A. Apparatus and method to electromagnetically shield portable consumer devices
US20070034406A1 (en) 2005-08-11 2007-02-15 Amber Schroader EMI shielding containers
RO123485B1 (en) * 2006-02-01 2012-11-29 Tomescu Angelica-Ecaterina-Ioana Device and method for reducing electromagnetic field-induced stress in the human body, mobile phone-generated fields included
US20090008146A1 (en) * 2007-03-16 2009-01-08 Michael William Oleske Optimizing in-building wireless signal propagation while ensuring data network security
US8604995B2 (en) * 2007-06-11 2013-12-10 Visa U.S.A. Inc. Shielding of portable consumer device
US8038068B2 (en) * 2007-11-28 2011-10-18 Visa U.S.A. Inc. Multifunction removable cover for portable payment device
AT505775B1 (en) * 2008-02-21 2009-04-15 Hannes Witte RADIATION PROTECTION DEVICE
EP2356717A4 (en) 2008-11-06 2016-06-22 Antenna79 Inc Radiation redirecting external case for portable communication device and antenna embedded in battery of portable communication device
US8957813B2 (en) 2009-03-13 2015-02-17 Pong Research Corporation External case for redistribution of RF radiation away from wireless communication device user and wireless communication device incorporating RF radiation redistribution elements
US9172134B2 (en) 2008-11-06 2015-10-27 Antenna79, Inc. Protective cover for a wireless device
US8214003B2 (en) 2009-03-13 2012-07-03 Pong Research Corporation RF radiation redirection away from portable communication device user
US20100240421A1 (en) * 2009-03-17 2010-09-23 Michael Sekora Cellular phone cover/case that blocks radiation from reaching the user through the implementation of faraday cage and/or conductive material properties
US7966673B1 (en) * 2009-10-26 2011-06-28 Edwin Lowell Gibson Protective shield for a cap
TWI432124B (en) * 2009-11-13 2014-03-21 Advanced Int Multitech Co Ltd A method of forming a notebook computer case and a product thereof
JP5649657B2 (en) 2009-11-20 2015-01-07 ギブン イメージング リミテッドGiven Imaging Ltd. System and method for controlling power consumption of in-vivo devices
US8810425B2 (en) 2010-06-18 2014-08-19 The Invention Science Fund I, Llc Travel route mapping based on radiation exposure risks
US8686865B2 (en) 2010-06-18 2014-04-01 The Invention Science Fund I, Llc Interactive technique to reduce irradiation from external source
US8462002B2 (en) 2010-06-18 2013-06-11 The Invention Science Fund I, Llc Personal telecommunication device with target-based exposure control
US8463288B2 (en) 2010-06-18 2013-06-11 The Invention Science Fund I, Llc Irradiation self-protection from user telecommunication device
US9750167B2 (en) 2010-09-07 2017-08-29 Caged Idea's Llc Data transmission blocking holder for personal data transmitting and receiving devices
US8559869B2 (en) 2011-09-21 2013-10-15 Daniel R. Ash, JR. Smart channel selective repeater
US20120264492A1 (en) * 2011-04-15 2012-10-18 Anthony Stewart Hat Cell Phone Holder
US8270929B1 (en) 2011-09-09 2012-09-18 Contech RF Devices, LLC RF shielding for mobile devices
US20130099956A1 (en) * 2011-10-24 2013-04-25 Lsi Corporation Apparatus to reduce specific absorption rate
US9838060B2 (en) 2011-11-02 2017-12-05 Antenna79, Inc. Protective cover for a wireless device
US8921709B2 (en) 2013-03-15 2014-12-30 Continental Accessory Corp. RF shielding for mobile devices
US10141968B2 (en) 2016-07-29 2018-11-27 Rowtan Technologies, Llc Device for reflecting, deflecting, and/or absorbing electromagentic radiation emitted from an electronic device and method therefor
US10630331B2 (en) 2016-07-29 2020-04-21 Rowtan Technologies Llc Devices for reflecting, deflecting, and/or absorbing electromagnetic radiation emitted from an electronic device and methods therefor
WO2018126247A2 (en) 2017-01-02 2018-07-05 Mojoose, Inc. Automatic signal strength indicator and automatic antenna switch
CN110740007A (en) * 2019-11-20 2020-01-31 上海应用技术大学 anti-interference shielding device for subway communication system and layout method thereof

Family Cites Families (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5307456A (en) * 1990-12-04 1994-04-26 Sony Electronics, Inc. Integrated multi-media production and authoring system
WO1995031048A1 (en) * 1993-02-01 1995-11-16 Daniels John J Radiation shielding apparatus for a radio transmitting device
US5335366A (en) 1993-02-01 1994-08-02 Daniels John J Radiation shielding apparatus for a radio transmitting device
US5336896A (en) 1993-02-04 1994-08-09 Katz Joseph M Cellular telephone users protective device
FI930646A (en) * 1993-02-15 1994-08-16 Increa Oy radio device
US5550552A (en) * 1993-02-18 1996-08-27 L. Thomas Oxley Radiation shield
US5444866A (en) 1993-02-24 1995-08-22 Cykiert; Robert C. Device for shielding a cellular telephone user from electromagnetic waves
US5613221A (en) 1993-04-12 1997-03-18 J. R. Hunt Ventures Radiation shield for cellular telephones
US5367309A (en) 1993-07-09 1994-11-22 Richard Tashjian Cellular phone shield
US5338896A (en) 1993-09-03 1994-08-16 Danforth David M Shield device for cellular phones
DE4420121A1 (en) * 1994-06-09 1995-12-14 Klaus Kuschmierski Portable radiotelephone subscriber's appts. with external antenna and pivotable shield
US5564085A (en) 1994-08-30 1996-10-08 Chen; Jinyuan Cellular telephone RF radiation ameliorating device
US5570476A (en) * 1995-02-16 1996-11-05 Olive; Bruce B. Head cover providing selective radiation shielding
JP3493808B2 (en) 1995-05-23 2004-02-03 ソニー株式会社 Electromagnetic wave shielding device
US5813014A (en) * 1996-07-10 1998-09-22 Survivors Of The Shoah Visual History Foundation Method and apparatus for management of multimedia assets
IT1296577B1 (en) * 1997-11-27 1999-07-14 Edilio Livio Alpini ELECTROMAGNETIC FIELD DIVERTER CLOTHING
GB2322080B (en) * 1998-02-11 1999-01-06 Robin Andrew Mobile phone safety cap

Also Published As

Publication number Publication date
EP1232570A4 (en) 2004-03-17
WO2001003313A1 (en) 2001-01-11
AU6804000A (en) 2001-01-22
US20030119459A1 (en) 2003-06-26
HK1049076A1 (en) 2003-04-25
US6603981B1 (en) 2003-08-05
EP1232570A1 (en) 2002-08-21
US6947764B2 (en) 2005-09-20

Similar Documents

Publication Publication Date Title
US6947764B2 (en) Device for radiation shielding wireless transmit/receive electronic equipment such as cellular telephones from close proximity direct line-of-sight electromagnetic fields
US6492957B2 (en) Close-proximity radiation detection device for determining radiation shielding device effectiveness and a method therefor
US9030373B2 (en) Transparent film for reducing electromagnetic waves and method of manufacturing the same
US20120047631A1 (en) Pocket Or Pouch Shield
US20100240421A1 (en) Cellular phone cover/case that blocks radiation from reaching the user through the implementation of faraday cage and/or conductive material properties
WO1998035543A1 (en) Electromagnetic wave blocking material and electromagnetic wave blocking case
WO2014063008A1 (en) Radio frequency shielded clothing
KR20070010428A (en) Complex sheet for shielding electromagnetic wave of mobile phone and manufacturing method for the same
JP3874806B2 (en) Novel conductive loop pattern and frequency selective electromagnetic shielding material having the same
JP2017045743A (en) Electromagnetic wave shielding material for small-sized electronic apparatus
NZ320440A (en) A shielding device for a telecommunication device
US20140246609A1 (en) Body shield for thermal and electromagnetic radiation
US20130122975A1 (en) Radiation protector for mobile devices
KR101200051B1 (en) Film for shielding electromagnetic wave of mobile phone
US20150357065A1 (en) Body shield for thermal and electromagnetic radiation
JPWO2003081973A1 (en) Electromagnetic wave shielding sheet, electromagnetic wave shielding transmission cable, and electromagnetic wave shielding LSI
US20150014047A1 (en) Method and Apparatus for Electromagnetic Interference Protection
US20130117915A1 (en) Radiation protector for mobile devices
AU2014405615B2 (en) RF shielding for mobile devices
WO2003028424A1 (en) Shielding method and device
KR200216783Y1 (en) Intercepting device for electromagnetic waves
JP3050242U (en) Mobile phone case
JP2005019850A (en) Portable equipment
KR200288901Y1 (en) A sponge for interception of electromagnetic waves
JP2005042223A (en) Electromagnetic-wave protective garment

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AU BR CA CN IL JP KR MX NZ SG VN

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): AT BE CH CY DE DK ES FI FR GB GR IE IT LU MC NL PT SE

121 Ep: the epo has been informed by wipo that ep was designated in this application
DFPE Request for preliminary examination filed prior to expiration of 19th month from priority date (pct application filed before 20040101)
WWE Wipo information: entry into national phase

Ref document number: 2000955921

Country of ref document: EP

AK Designated states

Kind code of ref document: C2

Designated state(s): AU BR CA CN IL JP KR MX NZ SG VN

AL Designated countries for regional patents

Kind code of ref document: C2

Designated state(s): AT BE CH CY DE DK ES FI FR GB GR IE IT LU MC NL PT SE

COP Corrected version of pamphlet

Free format text: PAGE 15, DESCRIPTION, REPLACED BY A NEW PAGE 15; PAGES 16-22, CLAIMS, REPLACED BY NEW PAGES 16-22; PAGES 1/10-10/10, DRAWINGS, REPLACED BY NEW PAGES 1/10-10/10; DUE TO LATE TRANSMITTAL BY THE RECEIVING OFFICE

WWP Wipo information: published in national office

Ref document number: 2000955921

Country of ref document: EP

NENP Non-entry into the national phase

Ref country code: JP