WO2005120889A2 - Child restraint system and method for monitoring installation of the child restraint system - Google Patents

Child restraint system and method for monitoring installation of the child restraint system Download PDF

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Publication number
WO2005120889A2
WO2005120889A2 PCT/US2005/020041 US2005020041W WO2005120889A2 WO 2005120889 A2 WO2005120889 A2 WO 2005120889A2 US 2005020041 W US2005020041 W US 2005020041W WO 2005120889 A2 WO2005120889 A2 WO 2005120889A2
Authority
WO
WIPO (PCT)
Prior art keywords
tension value
child
seat belt
restraint system
vehicle seat
Prior art date
Application number
PCT/US2005/020041
Other languages
French (fr)
Other versions
WO2005120889A3 (en
Inventor
Rodney A. Lawrence
Duane D. Fortune
Kevin D. Kincaid
Stephen B. Porter
Stuart S. Sullivan
Edward J. Wallner
James F. Patterson
William W. Fultz
Original Assignee
Delphi Technologies, 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 Delphi Technologies, Inc. filed Critical Delphi Technologies, Inc.
Priority to EP05757579.7A priority Critical patent/EP1794025B1/en
Publication of WO2005120889A2 publication Critical patent/WO2005120889A2/en
Publication of WO2005120889A3 publication Critical patent/WO2005120889A3/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2881Upholstery, padded or cushioned members therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/002Seats provided with an occupancy detection means mounted therein or thereon
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/02Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles the seat or part thereof being movable, e.g. adjustable
    • B60N2/0224Non-manual adjustments, e.g. with electrical operation
    • B60N2/0244Non-manual adjustments, e.g. with electrical operation with logic circuits
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/02Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles the seat or part thereof being movable, e.g. adjustable
    • B60N2/0224Non-manual adjustments, e.g. with electrical operation
    • B60N2/0244Non-manual adjustments, e.g. with electrical operation with logic circuits
    • B60N2/0272Non-manual adjustments, e.g. with electrical operation with logic circuits using sensors or detectors for detecting the position of seat parts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2803Adaptations for seat belts
    • B60N2/2806Adaptations for seat belts for securing the child seat to the vehicle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2803Adaptations for seat belts
    • B60N2/2806Adaptations for seat belts for securing the child seat to the vehicle
    • B60N2/2809Adaptations for seat belts for securing the child seat to the vehicle with additional tether connected to the top of the child seat and passing above the top of the back-rest
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2803Adaptations for seat belts
    • B60N2/2812Adaptations for seat belts for securing the child to the child seat
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2821Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle having a seat and a base part
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2821Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle having a seat and a base part
    • B60N2/2824Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle having a seat and a base part part of the base being supported by the vehicle frame
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2842Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle adapted to carry the child, when dismounted from the vehicle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2842Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle adapted to carry the child, when dismounted from the vehicle
    • B60N2/2845Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle adapted to carry the child, when dismounted from the vehicle having handles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2857Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle characterised by the peculiar orientation of the child
    • B60N2/286Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle characterised by the peculiar orientation of the child forward facing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2857Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle characterised by the peculiar orientation of the child
    • B60N2/2863Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle characterised by the peculiar orientation of the child backward facing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2875Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle inclinable, as a whole or partially
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2887Fixation to a transversal anchorage bar, e.g. isofix
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/24Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles
    • B60N2/26Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles for particular purposes or particular vehicles for children
    • B60N2/28Seats readily mountable on, and dismountable from, existing seats or other parts of the vehicle
    • B60N2/2803Adaptations for seat belts
    • B60N2002/2815Adaptations for seat belts with additional belt accessories, e.g. a belt tension detector

Definitions

  • CHILD RESTRAINT SYSTEM AND METHOD FOR MONITORING INSTALLATION OF THE CHILD RESTRAINT SYSTEM Attorney Docket No. DP-312329; CHILD SEAT AND MONITORING SYSTEM, Attorney Docket No. DP-312336; CHILD SEAT AND MONITORING SYSTEM, Attorney Docket No. DP- 312733; CHILD SEAT MONITORING SYSTEM AND METHOD FOR DETERMINING A TYPE OF CHILD SEAT, Attorney Docket No. DP- 312081; CHILD RESTRAINT SYSTEM COMPRISING WEIGHT SENSOR, Attorney Docket No. DP-312079; CHILD RESTRAINT SYSTEM COMPRISING CONTROL UNIT FOR EVALUATING HARNESS
  • This application relates to a child restraint system and a method for monitoring installation of the child restraint system.
  • a first type of child restraint system includes a child seat and a base portion for holding the seat, that are rearward-facing with respect to a vehicle seat. In this type of child restraint system, the child seat is secured in the base portion and a vehicle seat belt webbing is used to secure the base portion to the vehicle seat.
  • a second type of child restraint system utilizes a rearward-facing child seat that is secured via the vehicle seat belt webbing to the vehicle seat.
  • a third type of child restraint system is a booster child seat that is frontward-facing with respect to the vehicle seat and is secured via the vehicle seat belt webbing to the vehicle seat.
  • the inventors herein have recognized a need for a child restraint system that can notify a person when a desired amount of tension is being applied to the vehicle seat belt webbing when securing a child restraint system on a vehicle seat.
  • the child restraint system includes a child seat configured to receive a child occupant.
  • the child seat has at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to a vehicle seat.
  • the child restraint system further includes a first sensor coupled to the first seat belt guide member.
  • the first sensor is configured to output a first signal indicative of an amount of tension being applied to the vehicle seat belt webbing.
  • the child restraint system further includes a controller coupled to the child seat configured to receive the first signal and to compute a first tension value based on the first signal.
  • the controller further is configured to induce a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value.
  • a method for monitoring installation of a child restraint system on a vehicle seat in accordance with another exemplary embodiment is provided.
  • the child restraint system has a child seat configured to receive a child occupant.
  • the child seat has at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to the vehicle seat.
  • the method includes outputting a first signal from a first sensor disposed on the first seat belt guide member of the child seat.
  • the first signal is indicative of an amount of tension being applied to the vehicle seat belt webbing.
  • the method further includes computing a first tension value based on the first signal utilizing a controller.
  • the method further includes inducing a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value, utilizing the controller.
  • Figure 1 is a diagram of a child restraint system in accordance with exemplary embodiment
  • Figure 2 is a top view of a base portion of the child restraint system of Figure 1;
  • Figure 3 is enlarged view of a portion of a child seat of the child restraint system of Figure 1;
  • Figure 4 is an electrical schematic of a seat belt tension monitoring system utilized in the child restraint system of Figure 1;
  • Figure 5 is a schematic of a force sensor utilized in the seat belt tension monitoring system of Figure 4.
  • Figure 6 is a diagram of a portion of the force sensor of Figure 5;
  • Figure 7 is a plot of the curve indicating electrical resistance versus force characteristics of the force sensor of Figure 5;
  • Figures 8-10 are flowcharts of a method for monitoring installation of the child restraint system of Figure 1 ;
  • Figure 11 is a diagram of a child restraint system in accordance with another exemplary embodiment.
  • a child restraint system 10 that can be secured to a vehicle seat 12 in accordance with exemplary embodiment is provided.
  • the child restraint system 10 is secured to the vehicle seat 12 utilizing the vehicle seat belt webbing 14.
  • the child restraint system 10 includes a child seat 20, a base portion 22, and a seat belt tension monitoring system 24.
  • the child seat 20 comprises a rearward facing child seat that is configured to accommodate a child therein for transporting the child both inside and outside of a vehicle.
  • the child seat 20 is configured to be fixedly secured to the base portion 22 and the base portion 22 is further secured via the vehicle seat belt webbing 14 to the seat 12 or to a frame of a vehicle.
  • the child seat 20 includes a shell 30, the handle 31, and a cushion 32.
  • the shell 30 is constructed from a rigid polymeric material and defines a compartment for accommodating the child.
  • the shell 30 includes a back portion 33, a seat portion 34, and a pair of seat belt guide members 36.
  • the back portion 33 supports a back of the child and the seat portion 34 supports the buttocks and legs of the child.
  • a compartment defined by the shell 34 is lined with the cushion 32.
  • the pair of seat belt guide members 36 (one of which shown in Figure 1) are disposed on opposite sides of the shell 30 and are configured to form an inner groove for receiving the vehicle seat belt webbing 14 therethrough.
  • the handle 31 is coupled to shell 30 and is provided to allow a user to easily lift the child seat 20.
  • the handle 31 is constructed from a rigid polymeric material.
  • the base portion 22 is provided to receive the child seat 20 therein.
  • the base portion 22 has a shell 50 constructed from a rigid polymeric material.
  • the shell 50 includes a bottom wall 52, and sidewalls 58, 60 coupled to the bottom wall 52.
  • the side walls 58, 60 include apertures 54, 56, respectively, extending therethrough for receiving the vehicle seat belt webbing 14.
  • the bottom wall 52 includes a seat belt guide portion 70 for guiding vehicle seat belt webbing 14 from the aperture 54 in the side wall 58 to the aperture 56 in the side wall 60.
  • the seat belt tension monitoring system 24 is provided to monitor a tension of the vehicle seat belt webbing 14 and to provide an indication to a user as to whether the tension is less than or greater than a predetermined tension value.
  • the seat belt tension monitoring system 24 includes a controller 80, force sensors 82, 84, 86, 88, resistors 90, 92, 94, 96, 98, 100, 102, 104 capacitors 110, 112, 114, 116, light emitting diodes (LEDs) 130, 132, an annunciator 134, a liquid crystal display (LCD) 136, and a switch 137.
  • the controller 80 is provided to monitor the output of the force sensors
  • the controller 80 is further provided to control operation of the indicator devices including the LEDs 130, 132, the annunciator 134, and the LCD 136, as will be described in greater detail below.
  • the controller 80 includes a central processing unit (CPU) 140, a read-only memoiy (ROM) 142, a volatile memory such as a random access memory (RAM) 144 and an input/output (I/O) interface 146.
  • the CPU 140 operably communicates with the ROM 142, the RAM 144, and the I/O interface 146.
  • the computer readable media including ROM 142 and RAM 144 may be implemented using any of a number of known memoiy devices such as PROMs, EPROMs, EEPROMS, flash memory or any other electric, magnetic, optical or combination memory device capable of storing data, some of which represent executable instructions used by the CPU 140.
  • the force sensors 82, 84, 86, 88 are provided to output signals (VI), (V2), (V3), (V4), respectively, indicative of a tension be applied to the vehicle seat belt webbing 14.
  • the force sensors 82, 84, 86, 88 comprise piezo-resistive force sensors and have an identical construction with one another.
  • a curve 186 indicates an operational characteristics of each of the force sensors 82, 84, 86, 88.
  • the curve 186 indicates that as a force applied to a force sensor is increased, a resistance of the force sensor is decreased.
  • the force sensors 82, 84, 86, 88 can comprise any other type of force sensor known to those skilled and the art, that is capable of detecting a tension applied to the vehicle seat belt webbing 14.
  • the force sensors 82, 84 are disposed proximate the pair of seat belt guide members 36, respectively.
  • the force sensors 86, 88 are disposed on the seat belt guide member 70 between the seat belt guide member and the vehicle seat belt webbing 14. For purposes of simplicity, only the structure of the force sensor 82 will be explained.
  • the force sensor 82 includes a frame portion 160, a deflection member 162, a force sensor strip 164, and a contact 166.
  • the frame portion 160 includes slots 170, 174 disposed therethrough on opposite sides of the deflection member 162 for receiving the vehicle seat belt webbing 14 is therethrough.
  • the frame portion 160 can be either integrally molded within the shell 30 of the child seat 20 or fixedly attached to the shell 30.
  • the frame portion 160 is operably coupled to the deflection member 162 at pivot points 168, 170 which are adjacent the slots 172, 174, respectively.
  • the vehicle seat belt webbing 14 routed over the surface 176 and through the slot 172 and further routed over the underside surface 178 of the deflection member 162. Thereafter, the vehicle seat belt webbing 14 is routed through the slot 174 and over the surface 176 on an opposite side of the frame portion 160.
  • the force sensor strip 164 is disposed on the surface 176 of the deflection member 162 a predetermined distance from the stationary contact 166.
  • the force sensor strip 164 includes a conductive ink layer 184 that is disposed between polyester layers 180, 182.
  • the vehicle seat belt webbing 14 applies a substantially perpendicular force against the deflection member 162 that induces the member 162 to move towards the stationary contact 166.
  • the stationary contact 166 is fixedly coupled to the shell 33.
  • the force sensor strip 164 disposed on the deflection member 162 When the force sensor strip 164 disposed on the deflection member 162 is pushed against the contact 166, a force applied to the force sensor strip 164 reduces a resistance of the conductive ink layer 84 that is proportional to the applied force. Accordingly, the resistance of the conductive ink layer 84 is proportional to the force being applied to the force sensor strip 164 by the vehicle seat belt webbing 14, that is further proportional to the tension being applied to the vehicle seat belt webbing 14.
  • the resistor 90 is electrically coupled between a node 118 and the I/O interface 146.
  • the capacitor 110 is electrically coupled between the node 118 and electrical ground.
  • the resistor 92 is electrically coupled between a voltage source Vdd and the node 118.
  • the force sensor 82 is electrically coupled between the node 118 and the electrical ground.
  • the conductive ink layer 184 of the force sensor strip 162 in the force sensor 82 is electrically coupled between the node 118 and the electrical ground.
  • a resistance of conductive ink layer 184 is decreased which results in an amplitude of the voltage signal (VI) being decreased.
  • a resistance of conductive ink layer 184 is increased which results in an amplitude of the voltage signal (VI) being increased.
  • the resistor 94 is electrically coupled between a node 120 and the I/O interface 146.
  • the capacitor 112 is electrically coupled between the node 120 and electrical ground.
  • the resistor 96 is electrically coupled between a voltage source Vdd and the node 120.
  • the force sensor 84 is electrically coupled between the node 120 and the electrical ground.
  • a conductive ink layer of the force sensor strip in the force sensor 84 is electrically coupled between the node 120 and the electrical ground.
  • the resistor 98 is electrically coupled between a node 122 and the I/O interface 146.
  • the capacitor 114 is electrically coupled between the node 122 and electrical ground.
  • the resistor 100 is electrically coupled between a voltage source Vdd and the node 122.
  • the force sensor 86 is electrically coupled between the node 122 and the electrical ground.
  • a conductive ink layer of the force sensor strip in the force sensor 86 is electrically coupled between the node 122 and the electrical ground.
  • the resistor 102 is electrically coupled between a node 124 and the I/O interface 146.
  • the capacitor 116 is electrically coupled between the node 124 and electrical ground.
  • the resistor 104 is electrically coupled between a voltage source Vdd and the node 124.
  • the force sensor 88 is electrically coupled between the node 124 and the electrical ground.
  • a conductive ink layer of the force sensor strip in the force sensor 80 is electrically coupled between the node 124 and the electrical ground.
  • the force sensors 86, 88 are electrically coupled to the controller 80 through an electrical wiring harness (not shown), using a plug and a socket to allow the child seat 20 to be detached from the base portion 22.
  • the force sensors 86, 88 are operably coupled to one or more radio frequency (RF) transmitters that transmit RF signals having information indicative of the measured tension
  • the seat belt tension monitoring system 24 includes an RF receiver operably coupled to the controller 80 configured to receive the RF signals, to allow wireless communication therebetween.
  • RF radio frequency
  • the LED 130 is provided to emit light having a first color to indicate when a measured tension of the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value.
  • the LED 132 is provided to emit light having a second color to indicate when a measured tension of the vehicle seat belt webbing is less than a predetermined tension value. As shown, the LEDs 130, 132 are electrically coupled between the I/O interface 146 and electrical ground.
  • the electrical annunciator 134 is provided to emit a first audible sound when a measured tension of the vehicle seat belt webbing 14 is less than a predetermined tension value, in response to a control signal from the controller 80.
  • the electrical annunciator 134 is further provided to emit a second audible sound when a measured tension of the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value, in response to another control signal from the controller 80.
  • the annunciator 134 is electrically coupled to the I/O interface 146.
  • the LCD 136 is provided to display a first message when a measured tension of the vehicle seat belt webbing 14 is less than a predetermined tension value, in response to a control signal from the controller 80.
  • the LCD 136 is further provided to display a second message when a measured tension of the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value, in response to a control signal from the controller 80.
  • the LCD 136 is electrically coupled to the I/O interface 146.
  • the switch 137 is provided to induce the controller 80 to monitor installation of the child restraint system 10 in accordance with the method of Figures 8-10. In particular, when the switch 137 is moved to a closed operational position, the controller 80 monitors installation of the child restraint system 10.
  • the switch 137 is electrically coupled to the I/O interface 146.
  • a single force sensor could be utilized in the child seat 20 and a single force sensor could be utilized in the base portion 22.
  • another type of force sensor such as a piezo-resistive sensor, could be used in place of the conductive ink sensors 82, 84, 86, and 88.
  • one type of indicator e.g., LED or annunciator or LCD
  • LED or annunciator or LCD could be utilized to indicate whether the amount of tension being applied to the vehicle seat belt webbing 14 is less than a predetermined tension value or greater than or equal to the predetermined tension value.
  • FIG. 8-10 a method for monitoring installation of the child restraint system 10 is illustrated.
  • the method can be implemented utilizing software algorithms executed by the controller 80 of the seat belt monitoring system 24.
  • the controller 80 samples a signal (VI) output from the force sensor 82 disposed proximate a first seat belt guide member 36 on the child seat 20 and calculates a first tension value based on the signal (VI).
  • the controller 80 samples a signal (V2) output from a force sensor 84 disposed proximate a second seat belt guide member 36 on the child seat 20 and calculates a second tension value based on the signal (V2).
  • the controller 80 samples a signal (V3) output from a force sensor 86 disposed on a seat belt guide portion 70 of a base portion 22 and calculates a third tension value based on the signal (V3).
  • the controller 80 samples a signal (V4) output from a force sensor 88 disposed on the seat belt guide portion 70 of the base portion 22 and calculates a fourth tension value based on the signal (V4).
  • step 198 the controller 80 makes a determination as to whether: (i) the first tension value is less than a predetermined tension value, and (ii) the second tension value is less than a predetermined tension value. If the value of step 198 equals "yes", the method advances to step 200. Otherwise, the method advances to step 214.
  • step 200 the controller 80 makes a determination as to whether: (i) the third tension value is less than the predetermined tension value, and (ii) the fourth tension value is less than in the predetermined tension value. If the value of step 200 equals "yes", the method advances to step 202. Otherwise, the method advances to step 214.
  • step 202 the controller 80 makes a determination as to whether the child seat 10 has LEDs 130, 132. If the value of step 202 equals "yes", the method advances to step 204. Otherwise, the method advances to step 206.
  • step 204 the controller 80 induces the LED 130 to emit light having a first color indicating an amount of tension being applied to the vehicle seat belt webbing 14 is less than the predetermined tension value. After step 204, the method advances to step 206.
  • step 206 the controller 80 makes a determination as to whether the child seat 20 has an annunciator 134. If the value of step 206 equals "yes", the method advances step 208. Otherwise, the method advances to step 210.
  • step 208 the controller 80 induces the annunciator 134 to emit a first audible sound indicating an amount of tension being applied to the vehicle seat belt webbing 14 is less than the predetermined tension value.
  • step 210 the controller 80 makes a determination as to whether the child seat 20 has an LCD 136. If the value of step 210 equals "yes", the method advances to step 212. Otherwise, method advances to step 190.
  • step 212 the controller 80 induces the LCD 136 to display a first message indicating an amount of tension being applied to the vehicle seat belt webbing is less than the predetermined tension value.
  • step 212 the method advances to step 190.
  • step 214 the controller 80 makes a determination as to whether the child seat 20 has the LEDs 130, 132. If the value of step 214 equals "yes”, the method advances to step 216. Otherwise, the method advances to step 218.
  • step 216 the controller 80 induces the LED 132 to emit light having a second color indicating an amount of tension being applied to the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value.
  • step 216 the method advances to step 218.
  • step 218 the controller 80 makes a determination as to whether the child seat 20 has the annunciator 134. If the value of step 218 equals "yes", the method advances to step 220. Otherwise, the method advances to step 222.
  • step 220 the controller 80 induces the annunciator 134 to emit a second audible sound indicating an amount of tension being applied to the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value.
  • step 220 the method advances to step 222.
  • step 222 the controller 80 makes a determination as to whether the child seat 20 has the LCD 136. If the value of step 222 equals "yes", the method advances to step 224. Otherwise, the method advances to step 190.
  • step 224 the controller 80 induces the LCD 136 to display a second message indicating an amount of tension being applied to the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value.
  • step 224 method advances to step 190.
  • a child restraint system 230 that can be secured to a vehicle seat 12 in accordance with another exemplary embodiment is provided.
  • the child restraint system 230 is secured to the vehicle seat 12 utilizing the vehicle seat belt webbing 14.
  • the child restraint system 230 includes a child seat 232 and a portion of a seat belt tension monitoring system 24.
  • the child seat 232 comprises a frontward-facing child seat that is configured to accommodate a child therein for transporting the child inside of a vehicle.
  • the child seat 232 is configured to be fixedly secured via the vehicle seat belt webbing 14 to the seat 12 or to a frame of a vehicle.
  • the child seat 232 includes a shell 234 and a cushion 235.
  • the shell 234 is constructed from a rigid polymeric material and defines a compartment for accommodating the child.
  • the shell 234 includes a back portion 236, a seat portion 238, and a seat belt guide member (not shown) disposed in the back portion 236.
  • the back portion 236 supports a back of the child and the seat portion 238 supports the buttocks and legs of the child.
  • a compartment defined by the shell 234 is lined with the cushion 235.
  • the back portion 236 includes an aperture 240 extending therethrough for receiving the vehicle seat belt webbing 14 therethrough.
  • the child restraint system 230 can utilize substantially all of the component of the seat belt tension monitoring system 24, except for the force sensors 86, 88, and the associated components provided to supply the voltage signals (V3), (V4) to the controller 80. It particular, the force sensors 82, 84 can be disposed on the back portion 236 proximate the aperture 240 to contact the vehicle seat belt webbing 14 for monitoring a seat belt tension applied to the vehicle seat belt webbing 14, as described above with respect to the child restraint system 10.
  • the child restraint system and a method for monitoring installation of the child restraint system provides a substantial advantage over other systems and methods.
  • the child restraint system utilizes a controller to monitor the amount of tension being applied to the vehicle seat belt webbing when securing the child restraint system on a vehicle seat. Further, the controller induces at least one indicator device to notify a person when a desired amount of tension is being applied to vehicle seat belt webbing.
  • the method for monitoring installation of the child restraint system can be embodied in the form of computer-implemented processes and apparatuses for practicing those processes.
  • the method is embodied in computer program code executed by one or more elements.
  • the present method may be embodied in the form of computer program code containing instructions embodied in tangible media, such as floppy diskettes, CD-ROMs, hard drives, flash memory, or any other computer-readable storage medium, wherein, when the computer program code is loaded into and executed by a computer, the computer becomes an apparatus for practicing the invention.
  • the present method can also be embodied in the form of computer program code, for example, whether stored in a storage medium, loaded into and/or executed by a computer.

Abstract

A child restraint system and a method for monitoring installation of the child restraint system are provided. The child restraint system includes a child seat configured to receive a child occupant. The child seat has at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to a vehicle seat. The child restraint system further includes a first sensor coupled to the first seat belt guide member. The first sensor is configured to output a first signal indicative of an amount of tension being applied to the vehicle seat belt webbing. The child restraint system further includes a controller coupled to the child seat configured to receive the first signal and to compute a first tension value based on the first signal. The controller further is configured to induce a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value.

Description

CHILD RESTRAINT SYSTEM AND METHOD FOR MONITORING INSTALLATION OF THE CHILD RESTRAINT SYSTEM
CROSS REFERENCE TO RELATED APPLICATIONS The application claims the benefit of United States Provisional application, serial no. 60/577,546, filed June 7, 2004, the contents of which are incorporated herein by reference thereto.
The application also claims the benefit of United States Provisional application, serial no. 60/607,988, filed September 8, 2004, the contents of which are incorporated herein by reference thereto. This application is also related to the following United States Patent
Applications filed contemporaneously herewith: CHILD RESTRAINT SYSTEM AND METHOD FOR MONITORING INSTALLATION OF THE CHILD RESTRAINT SYSTEM, Attorney Docket No. DP-312329; CHILD SEAT AND MONITORING SYSTEM, Attorney Docket No. DP-312336; CHILD SEAT AND MONITORING SYSTEM, Attorney Docket No. DP- 312733; CHILD SEAT MONITORING SYSTEM AND METHOD FOR DETERMINING A TYPE OF CHILD SEAT, Attorney Docket No. DP- 312081; CHILD RESTRAINT SYSTEM COMPRISING WEIGHT SENSOR, Attorney Docket No. DP-312079; CHILD RESTRAINT SYSTEM COMPRISING CONTROL UNIT FOR EVALUATING HARNESS
ADJUSTMENT, Attorney Docket No. DP-312730. The contents of which are each incorporated herein by reference thereto. TECHNICAL FIELD
This application relates to a child restraint system and a method for monitoring installation of the child restraint system.
BACKGROUND Child restraint systems have been utilized to hold infants or children therein within vehicles. A first type of child restraint system includes a child seat and a base portion for holding the seat, that are rearward-facing with respect to a vehicle seat. In this type of child restraint system, the child seat is secured in the base portion and a vehicle seat belt webbing is used to secure the base portion to the vehicle seat. A second type of child restraint system utilizes a rearward-facing child seat that is secured via the vehicle seat belt webbing to the vehicle seat. A third type of child restraint system is a booster child seat that is frontward-facing with respect to the vehicle seat and is secured via the vehicle seat belt webbing to the vehicle seat.
During installation of any of the foregoing types of child restraint systems in a vehicle, if a sufficient amount of tension is applied to the vehicle seat belt webbing to secure the child seat, rotation of the child seat with respect to a vehicle seat is restricted which assists in protecting a child disposed in the child seat. However, if an insufficient amount of tension is applied to the vehicle seat belt webbing when securing the child seat, the child seat may rotate more than desired.
Accordingly, the inventors herein have recognized a need for a child restraint system that can notify a person when a desired amount of tension is being applied to the vehicle seat belt webbing when securing a child restraint system on a vehicle seat. SUMMARY
A child restraint system adapted to be mounted within a vehicle in accordance with an exemplary embodiment is provided. The child restraint system includes a child seat configured to receive a child occupant. The child seat has at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to a vehicle seat. The child restraint system further includes a first sensor coupled to the first seat belt guide member. The first sensor is configured to output a first signal indicative of an amount of tension being applied to the vehicle seat belt webbing. The child restraint system further includes a controller coupled to the child seat configured to receive the first signal and to compute a first tension value based on the first signal. The controller further is configured to induce a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value.
A method for monitoring installation of a child restraint system on a vehicle seat in accordance with another exemplary embodiment is provided. The child restraint system has a child seat configured to receive a child occupant. The child seat has at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to the vehicle seat. The method includes outputting a first signal from a first sensor disposed on the first seat belt guide member of the child seat. The first signal is indicative of an amount of tension being applied to the vehicle seat belt webbing. The method further includes computing a first tension value based on the first signal utilizing a controller. The method further includes inducing a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value, utilizing the controller.
BRIEF DESCRIPTION OF THE DRAWINGS Figure 1 is a diagram of a child restraint system in accordance with exemplary embodiment;
Figure 2 is a top view of a base portion of the child restraint system of Figure 1; Figure 3 is enlarged view of a portion of a child seat of the child restraint system of Figure 1;
Figure 4 is an electrical schematic of a seat belt tension monitoring system utilized in the child restraint system of Figure 1;
Figure 5 is a schematic of a force sensor utilized in the seat belt tension monitoring system of Figure 4;
Figure 6 is a diagram of a portion of the force sensor of Figure 5;
Figure 7 is a plot of the curve indicating electrical resistance versus force characteristics of the force sensor of Figure 5;
Figures 8-10 are flowcharts of a method for monitoring installation of the child restraint system of Figure 1 ; and
Figure 11 is a diagram of a child restraint system in accordance with another exemplary embodiment.
DESCRIPTION OF EXEMPLARY EMBODIMENTS
Referring to Figures 1, 3 and 4, a child restraint system 10 that can be secured to a vehicle seat 12 in accordance with exemplary embodiment is provided. In particular, the child restraint system 10 is secured to the vehicle seat 12 utilizing the vehicle seat belt webbing 14. The child restraint system 10 includes a child seat 20, a base portion 22, and a seat belt tension monitoring system 24. Referring to Figure 1, the child seat 20 comprises a rearward facing child seat that is configured to accommodate a child therein for transporting the child both inside and outside of a vehicle. The child seat 20 is configured to be fixedly secured to the base portion 22 and the base portion 22 is further secured via the vehicle seat belt webbing 14 to the seat 12 or to a frame of a vehicle. The child seat 20 includes a shell 30, the handle 31, and a cushion 32.
The shell 30 is constructed from a rigid polymeric material and defines a compartment for accommodating the child. The shell 30 includes a back portion 33, a seat portion 34, and a pair of seat belt guide members 36. The back portion 33 supports a back of the child and the seat portion 34 supports the buttocks and legs of the child. A compartment defined by the shell 34 is lined with the cushion 32. The pair of seat belt guide members 36 (one of which shown in Figure 1) are disposed on opposite sides of the shell 30 and are configured to form an inner groove for receiving the vehicle seat belt webbing 14 therethrough.
The handle 31 is coupled to shell 30 and is provided to allow a user to easily lift the child seat 20. The handle 31 is constructed from a rigid polymeric material.
Referring to Figure 2, the base portion 22 is provided to receive the child seat 20 therein. The base portion 22 has a shell 50 constructed from a rigid polymeric material. The shell 50 includes a bottom wall 52, and sidewalls 58, 60 coupled to the bottom wall 52. The side walls 58, 60 include apertures 54, 56, respectively, extending therethrough for receiving the vehicle seat belt webbing 14. The bottom wall 52 includes a seat belt guide portion 70 for guiding vehicle seat belt webbing 14 from the aperture 54 in the side wall 58 to the aperture 56 in the side wall 60. Referring to Figure 4, the seat belt tension monitoring system 24 is provided to monitor a tension of the vehicle seat belt webbing 14 and to provide an indication to a user as to whether the tension is less than or greater than a predetermined tension value. The seat belt tension monitoring system 24 includes a controller 80, force sensors 82, 84, 86, 88, resistors 90, 92, 94, 96, 98, 100, 102, 104 capacitors 110, 112, 114, 116, light emitting diodes (LEDs) 130, 132, an annunciator 134, a liquid crystal display (LCD) 136, and a switch 137. The controller 80 is provided to monitor the output of the force sensors
82, 84, 86, 88 and to calculate a tension applied to the vehicle seat belt webbing 14. The controller 80 is further provided to control operation of the indicator devices including the LEDs 130, 132, the annunciator 134, and the LCD 136, as will be described in greater detail below. The controller 80 includes a central processing unit (CPU) 140, a read-only memoiy (ROM) 142, a volatile memory such as a random access memory (RAM) 144 and an input/output (I/O) interface 146. The CPU 140 operably communicates with the ROM 142, the RAM 144, and the I/O interface 146. The computer readable media including ROM 142 and RAM 144 may be implemented using any of a number of known memoiy devices such as PROMs, EPROMs, EEPROMS, flash memory or any other electric, magnetic, optical or combination memory device capable of storing data, some of which represent executable instructions used by the CPU 140. Referring to Figures 4-6, the force sensors 82, 84, 86, 88 are provided to output signals (VI), (V2), (V3), (V4), respectively, indicative of a tension be applied to the vehicle seat belt webbing 14. The force sensors 82, 84, 86, 88 comprise piezo-resistive force sensors and have an identical construction with one another. Referring to Figure 7, a curve 186 indicates an operational characteristics of each of the force sensors 82, 84, 86, 88. In particular, the curve 186 indicates that as a force applied to a force sensor is increased, a resistance of the force sensor is decreased. It should be noted that in an alternate embodiment, the force sensors 82, 84, 86, 88 can comprise any other type of force sensor known to those skilled and the art, that is capable of detecting a tension applied to the vehicle seat belt webbing 14. Referring to Figures 1 and 3, the force sensors 82, 84 are disposed proximate the pair of seat belt guide members 36, respectively. Referring to Figure 2, the force sensors 86, 88 are disposed on the seat belt guide member 70 between the seat belt guide member and the vehicle seat belt webbing 14. For purposes of simplicity, only the structure of the force sensor 82 will be explained.
Referring to Figure 5, the force sensor 82 includes a frame portion 160, a deflection member 162, a force sensor strip 164, and a contact 166. The frame portion 160 includes slots 170, 174 disposed therethrough on opposite sides of the deflection member 162 for receiving the vehicle seat belt webbing 14 is therethrough. The frame portion 160 can be either integrally molded within the shell 30 of the child seat 20 or fixedly attached to the shell 30. The frame portion 160 is operably coupled to the deflection member 162 at pivot points 168, 170 which are adjacent the slots 172, 174, respectively. The vehicle seat belt webbing 14 routed over the surface 176 and through the slot 172 and further routed over the underside surface 178 of the deflection member 162. Thereafter, the vehicle seat belt webbing 14 is routed through the slot 174 and over the surface 176 on an opposite side of the frame portion 160.
Referring to Figures 5 and 6, the force sensor strip 164 is disposed on the surface 176 of the deflection member 162 a predetermined distance from the stationary contact 166. The force sensor strip 164 includes a conductive ink layer 184 that is disposed between polyester layers 180, 182. When a tensional force is applied to the vehicle seat belt webbing 14, the vehicle seat belt webbing 14 applies a substantially perpendicular force against the deflection member 162 that induces the member 162 to move towards the stationary contact 166. The stationary contact 166 is fixedly coupled to the shell 33. When the force sensor strip 164 disposed on the deflection member 162 is pushed against the contact 166, a force applied to the force sensor strip 164 reduces a resistance of the conductive ink layer 84 that is proportional to the applied force. Accordingly, the resistance of the conductive ink layer 84 is proportional to the force being applied to the force sensor strip 164 by the vehicle seat belt webbing 14, that is further proportional to the tension being applied to the vehicle seat belt webbing 14.
Referring again to Figure 4, the remainder of the seat belt tension monitoring system 24 will now be explained. The resistor 90 is electrically coupled between a node 118 and the I/O interface 146. The capacitor 110 is electrically coupled between the node 118 and electrical ground. The resistor 92 is electrically coupled between a voltage source Vdd and the node 118. The force sensor 82 is electrically coupled between the node 118 and the electrical ground. In particular, the conductive ink layer 184 of the force sensor strip 162 in the force sensor 82 is electrically coupled between the node 118 and the electrical ground. During operation, when an increasing force is applied to the force sensor 82 by the vehicle seat belt webbing 14, a resistance of conductive ink layer 184 is decreased which results in an amplitude of the voltage signal (VI) being decreased. Alternately, when the force applied to the force sensor 82 is reduced, a resistance of conductive ink layer 184 is increased which results in an amplitude of the voltage signal (VI) being increased.
The resistor 94 is electrically coupled between a node 120 and the I/O interface 146. The capacitor 112 is electrically coupled between the node 120 and electrical ground. The resistor 96 is electrically coupled between a voltage source Vdd and the node 120. The force sensor 84 is electrically coupled between the node 120 and the electrical ground. In particular, a conductive ink layer of the force sensor strip in the force sensor 84 is electrically coupled between the node 120 and the electrical ground. During operation, when an increasing force is applied to the force sensor 84 by the vehicle seat belt webbing 14, a resistance of conductive ink layer therein is decreased which results in an amplitude of the voltage signal (V2) being decreased. Alternately, when the force applied to the force sensor 84 is reduced, a resistance of conductive ink layer therein is increased which results in an amplitude of the voltage signal (V2) being increased.
The resistor 98 is electrically coupled between a node 122 and the I/O interface 146. The capacitor 114 is electrically coupled between the node 122 and electrical ground. The resistor 100 is electrically coupled between a voltage source Vdd and the node 122. The force sensor 86 is electrically coupled between the node 122 and the electrical ground. In particular, a conductive ink layer of the force sensor strip in the force sensor 86 is electrically coupled between the node 122 and the electrical ground. During operation, when an increasing force is applied to the force sensor 86 by the vehicle seat belt webbing 14, a resistance of conductive ink layer therein is decreased which results in an amplitude of the voltage signal (V3) being decreased. Alternately, when the force applied to the force sensor 86 is reduced, a resistance of conductive ink layer therein is increased which results in an amplitude of the voltage signal (V3) being increased.
The resistor 102 is electrically coupled between a node 124 and the I/O interface 146. The capacitor 116 is electrically coupled between the node 124 and electrical ground. The resistor 104 is electrically coupled between a voltage source Vdd and the node 124. The force sensor 88 is electrically coupled between the node 124 and the electrical ground. In particular, a conductive ink layer of the force sensor strip in the force sensor 80 is electrically coupled between the node 124 and the electrical ground. During operation, when an increasing force is applied to the force sensor 88 by the vehicle seat belt webbing 14, a resistance of conductive ink layer therein is decreased which results in an amplitude of the voltage signal (V4) being decreased. Alternately, when the force applied to the force sensor 88 is reduced, a resistance of conductive ink layer therein is increased which results in an amplitude of the voltage signal (V4) being increased.
It should be noted that the force sensors 86, 88 are electrically coupled to the controller 80 through an electrical wiring harness (not shown), using a plug and a socket to allow the child seat 20 to be detached from the base portion 22. In another alternate embodiment, the force sensors 86, 88 are operably coupled to one or more radio frequency (RF) transmitters that transmit RF signals having information indicative of the measured tension, and the seat belt tension monitoring system 24 includes an RF receiver operably coupled to the controller 80 configured to receive the RF signals, to allow wireless communication therebetween.
The LED 130 is provided to emit light having a first color to indicate when a measured tension of the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value. The LED 132 is provided to emit light having a second color to indicate when a measured tension of the vehicle seat belt webbing is less than a predetermined tension value. As shown, the LEDs 130, 132 are electrically coupled between the I/O interface 146 and electrical ground.
The electrical annunciator 134 is provided to emit a first audible sound when a measured tension of the vehicle seat belt webbing 14 is less than a predetermined tension value, in response to a control signal from the controller 80. The electrical annunciator 134 is further provided to emit a second audible sound when a measured tension of the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value, in response to another control signal from the controller 80. The annunciator 134 is electrically coupled to the I/O interface 146. The LCD 136 is provided to display a first message when a measured tension of the vehicle seat belt webbing 14 is less than a predetermined tension value, in response to a control signal from the controller 80. The LCD 136 is further provided to display a second message when a measured tension of the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value, in response to a control signal from the controller 80. The LCD 136 is electrically coupled to the I/O interface 146. The switch 137 is provided to induce the controller 80 to monitor installation of the child restraint system 10 in accordance with the method of Figures 8-10. In particular, when the switch 137 is moved to a closed operational position, the controller 80 monitors installation of the child restraint system 10. The switch 137 is electrically coupled to the I/O interface 146.
It should be noted that in an alternate embodiment of the seat belt tension monitoring system 24, a single force sensor could be utilized in the child seat 20 and a single force sensor could be utilized in the base portion 22. Also, another type of force sensor, such as a piezo-resistive sensor, could be used in place of the conductive ink sensors 82, 84, 86, and 88. Further, one type of indicator (e.g., LED or annunciator or LCD) could be utilized to indicate whether the amount of tension being applied to the vehicle seat belt webbing 14 is less than a predetermined tension value or greater than or equal to the predetermined tension value.
Referring to Figures 8-10, a method for monitoring installation of the child restraint system 10 is illustrated. The method can be implemented utilizing software algorithms executed by the controller 80 of the seat belt monitoring system 24.
At step 190, the controller 80 samples a signal (VI) output from the force sensor 82 disposed proximate a first seat belt guide member 36 on the child seat 20 and calculates a first tension value based on the signal (VI). At step 192, the controller 80 samples a signal (V2) output from a force sensor 84 disposed proximate a second seat belt guide member 36 on the child seat 20 and calculates a second tension value based on the signal (V2).
At step 194, the controller 80 samples a signal (V3) output from a force sensor 86 disposed on a seat belt guide portion 70 of a base portion 22 and calculates a third tension value based on the signal (V3). At step 196, the controller 80 samples a signal (V4) output from a force sensor 88 disposed on the seat belt guide portion 70 of the base portion 22 and calculates a fourth tension value based on the signal (V4).
At step 198, the controller 80 makes a determination as to whether: (i) the first tension value is less than a predetermined tension value, and (ii) the second tension value is less than a predetermined tension value. If the value of step 198 equals "yes", the method advances to step 200. Otherwise, the method advances to step 214. At step 200, the controller 80 makes a determination as to whether: (i) the third tension value is less than the predetermined tension value, and (ii) the fourth tension value is less than in the predetermined tension value. If the value of step 200 equals "yes", the method advances to step 202. Otherwise, the method advances to step 214.
At step 202, the controller 80 makes a determination as to whether the child seat 10 has LEDs 130, 132. If the value of step 202 equals "yes", the method advances to step 204. Otherwise, the method advances to step 206. At step 204, the controller 80 induces the LED 130 to emit light having a first color indicating an amount of tension being applied to the vehicle seat belt webbing 14 is less than the predetermined tension value. After step 204, the method advances to step 206.
At step 206, the controller 80 makes a determination as to whether the child seat 20 has an annunciator 134. If the value of step 206 equals "yes", the method advances step 208. Otherwise, the method advances to step 210.
At step 208, the controller 80 induces the annunciator 134 to emit a first audible sound indicating an amount of tension being applied to the vehicle seat belt webbing 14 is less than the predetermined tension value. After step 208, method advances to step 210
At step 210, the controller 80 makes a determination as to whether the child seat 20 has an LCD 136. If the value of step 210 equals "yes", the method advances to step 212. Otherwise, method advances to step 190.
At step 212, the controller 80 induces the LCD 136 to display a first message indicating an amount of tension being applied to the vehicle seat belt webbing is less than the predetermined tension value. After step 212, the method advances to step 190.
Referring to steps 198, 200, when the value of either of the steps equals "no", the method advances to step 214. At step 214, the controller 80 makes a determination as to whether the child seat 20 has the LEDs 130, 132. If the value of step 214 equals "yes", the method advances to step 216. Otherwise, the method advances to step 218.
At step 216, the controller 80 induces the LED 132 to emit light having a second color indicating an amount of tension being applied to the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value. After step 216, the method advances to step 218.
At step 218, the controller 80 makes a determination as to whether the child seat 20 has the annunciator 134. If the value of step 218 equals "yes", the method advances to step 220. Otherwise, the method advances to step 222.
At step 220, the controller 80 induces the annunciator 134 to emit a second audible sound indicating an amount of tension being applied to the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value. After step 220, the method advances to step 222.
At step 222, the controller 80 makes a determination as to whether the child seat 20 has the LCD 136. If the value of step 222 equals "yes", the method advances to step 224. Otherwise, the method advances to step 190.
At step 224, the controller 80 induces the LCD 136 to display a second message indicating an amount of tension being applied to the vehicle seat belt webbing 14 is greater than or equal to the predetermined tension value. After step 224, method advances to step 190.
Referring to the Figure 11, a child restraint system 230 that can be secured to a vehicle seat 12 in accordance with another exemplary embodiment is provided. In particular, the child restraint system 230 is secured to the vehicle seat 12 utilizing the vehicle seat belt webbing 14. The child restraint system 230 includes a child seat 232 and a portion of a seat belt tension monitoring system 24.
The child seat 232 comprises a frontward-facing child seat that is configured to accommodate a child therein for transporting the child inside of a vehicle. The child seat 232 is configured to be fixedly secured via the vehicle seat belt webbing 14 to the seat 12 or to a frame of a vehicle. The child seat 232 includes a shell 234 and a cushion 235.
The shell 234 is constructed from a rigid polymeric material and defines a compartment for accommodating the child. The shell 234 includes a back portion 236, a seat portion 238, and a seat belt guide member (not shown) disposed in the back portion 236. The back portion 236 supports a back of the child and the seat portion 238 supports the buttocks and legs of the child. A compartment defined by the shell 234 is lined with the cushion 235. The back portion 236 includes an aperture 240 extending therethrough for receiving the vehicle seat belt webbing 14 therethrough.
The child restraint system 230 can utilize substantially all of the component of the seat belt tension monitoring system 24, except for the force sensors 86, 88, and the associated components provided to supply the voltage signals (V3), (V4) to the controller 80. It particular, the force sensors 82, 84 can be disposed on the back portion 236 proximate the aperture 240 to contact the vehicle seat belt webbing 14 for monitoring a seat belt tension applied to the vehicle seat belt webbing 14, as described above with respect to the child restraint system 10.
The child restraint system and a method for monitoring installation of the child restraint system provides a substantial advantage over other systems and methods. In particular, the child restraint system utilizes a controller to monitor the amount of tension being applied to the vehicle seat belt webbing when securing the child restraint system on a vehicle seat. Further, the controller induces at least one indicator device to notify a person when a desired amount of tension is being applied to vehicle seat belt webbing.
As described above, the method for monitoring installation of the child restraint system can be embodied in the form of computer-implemented processes and apparatuses for practicing those processes. In an exemplary embodiment, the method is embodied in computer program code executed by one or more elements. The present method may be embodied in the form of computer program code containing instructions embodied in tangible media, such as floppy diskettes, CD-ROMs, hard drives, flash memory, or any other computer-readable storage medium, wherein, when the computer program code is loaded into and executed by a computer, the computer becomes an apparatus for practicing the invention. The present method can also be embodied in the form of computer program code, for example, whether stored in a storage medium, loaded into and/or executed by a computer.
While the invention has been described with reference to exemplar}' embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed for carrying out this invention, but that the invention will include all embodiments falling within the scope of the appended claims. Moreover, the use of the terms first, second, etc. do not denote any order or importance, but rather the terms first, second, etc. are used to distinguish one element from another. Furthermore, the use of the terms a, an, etc. do not denote a limitation of quantity, but rather denote the presence of at least one of the referenced item.

Claims

CLAIMSWhat is claimed is:
1. A child restraint system adapted to be mounted within a vehicle, the child restraint system comprising: a child seat configured to receive a child occupant, the child seat having at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to a vehicle seat; a first sensor coupled to the first seat belt guide member, the first sensor configured to output a first signal indicative of an amount of tension being applied to the vehicle seat belt webbing; and a controller coupled to the child seat configured to receive the first signal and to compute a first tension value based on the first signal, the controller further configured to induce a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value.
2. The child restraint system of claim 1, wherein the first sensor comprises a piezo-resistive force sensor configured to adjust an amplitude of the first signal based on an amount of force applied to the first sensor by the vehicle seat belt webbing.
3. The child restraint system of claim 1, wherein the first device comprises a light-emitting diode, the controller configured to induce the light-emitting diode to emit light having a first color when the first tension value is less than the predetermined tension value.
4. The child restraint system of claim 1, wherein the first device comprises an electrical am unciator, the controller configured to induce the electrical annunciator to emit a first audible sound when the first tension value is less than the predetermined tension value, the controller further configured to induce the electrical annunciator to emit a second audible sound when the first tension value is greater than or equal to the predetermined tension value.
5. The child restraint system of claim 1, wherein the first device comprises a liquid-crystal display, the controller configured to induce the liquid-crystal display to display a first message when the first tension value is less than the predetermined tension value, the controller further configured to induce the liquid-crystal display to display a second message when the first tension value is greater than or equal to the predetermined tension value.
6. The child restraint system of claim 1, wherein the controller is further configured to induce a second device to indicate when the first tension value is greater than or equal to the predetermined tension value.
7. The child restraint system of claim 6, wherein the second device comprises a light-emitting diode, the controller further configured to induce the light-emitting diode to emit light having a first color when the first tension value is greater than or equal to the predetermined tension value.
8. The child restraint system of claim 1, wherein the child seat further comprises a second seat belt guide member configured to engage the vehicle seat belt webbing for securing the child seat to the vehicle, and a second sensor disposed on the second seat belt guide member, the second sensor configured to output a second signal indicative of an amount of tension being applied to the vehicle seat belt webbing, the controller further configured to receive the second signal and to compute a second tension value based on the second signal, the controller further configured to induce the first device to indicate when the second tension value is less than the predetermined tension value.
9. The child restraint system of claim 1, further comprising a base portion and a second sensor, the base portion configured to receive and to hold the child seat therein, the base portion having a seat belt guide portion configured to receive the vehicle seat belt webbing thereon, the second sensor being disposed on the seat belt guide portion and outputting a second signal indicative of an amount of tension being applied to the vehicle seat belt webbing, the controller configured to receive the second signal and to compute a second tension value based on the second signal, the controller further configured to induce the first device to indicate when the second tension value is less than the predetermined tension value.
10. The child restraint system of claim 9, wherein the second sensor comprises a piezo-resistive force sensor configured to adjust an amplitude of the second signal based on an amount of force applied to the second sensor by the vehicle seat belt webbing.
11. The child restraint system of claim 1, wherein the child seat comprises a rearward-facing child seat with respect to the vehicle seat.
12. The child restraint system of claim 1, wherein the child seat comprises a frontward-facing child seat with respect to the vehicle seat.
13. A method for monitoring installation of a child restraint system on a vehicle seat, the child restraint system having a child seat configured to receive a child occupant, the child seat having at least a first seat belt guide member configured to engage a vehicle seat belt webbing for securing the child seat to the vehicle seat, the method comprising: outputting a first signal from a first sensor disposed on the first seat belt guide member of the child seat, the first signal indicative of an amount of tension being applied to the vehicle seat belt webbing; computing a first tension value based on the first signal utilizing a controller; and inducing a first device disposed on the child seat to indicate when the first tension value is less than a predetermined tension value, utilizing the controller.
14. The method of claim 13, wherein the first device comprises a light- emitting diode, and the step of inducing the first device to indicate when the first tension value is less than the predetermined tension value comprises inducing the light-emitting diode to emit light having a first color when the first tension value is less than the predetermined tension value.
15. The method of claim 13, wherein the first device comprises an electrical annunciator, and the step of inducing the first device to indicate when the first tension value is less than the predetermined tension value comprises inducing the electrical annunciator to emit a first audible sound when the first tension value is less than the predetermined tension value.
16. The method of claim 13, wherein the first device comprises a liquid- crystal display, and the step of inducing the first device to indicate when the first tension value is less than the predetermined tension value comprises inducing the liquid-crystal display to display a first message when the first tension value is less than the predetennined tension value.
17. The method of claim 13, further comprising inducing a second device to indicate when the first tension value is greater than or equal to the predetermined tension value.
18. The method of claim 17, wherein the second device comprises a light- emitting diode, and the step of inducing the second device to indicate when the first tension value is greater than or equal to the predetermined tension value, comprises inducing the light-emitting diode to emit light having a first color 5 when the first tension value is greater than or equal to the predetermined tension value.
19. The method of claim 13, wherein the child restraint system further comprises
10 a base portion and a second sensor, the base portion configured to receive and to hold the child seat therein, the base portion having a seat belt guide portion configured to receive the vehicle seat belt webbing thereon, the method further comprising: outputting a second signal indicative of an amount of tension being 15 applied to the vehicle seat belt webbing utilizing a second sensor disposed on the seat belt guide portion of the child seat; computing a second tension value based on the second signal utilizing the controller; and inducing the first device to indicate when the second tension value is 20 less than the predetermined tension value, utilizing the controller.
20. The method of claim 11, further comprising positioning the child seat in either a rearward-facing position relative to the vehicle seat or a frontward- facing position relative to the vehicle seat. o 5
PCT/US2005/020041 2004-06-07 2005-06-06 Child restraint system and method for monitoring installation of the child restraint system WO2005120889A2 (en)

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PCT/US2005/020059 WO2005120893A2 (en) 2004-06-07 2005-06-06 Child restraint system comprising control unit for evaluating harness adjustment
PCT/US2005/020050 WO2005120892A2 (en) 2004-06-07 2005-06-06 Child seat and monitoring system
PCT/US2005/020047 WO2006009619A2 (en) 2004-06-07 2005-06-06 Child restraint system comprising weight sensor
PCT/US2005/020046 WO2005120890A2 (en) 2004-06-07 2005-06-06 Child seat monitoring system and method for determining a type of child seat
PCT/US2005/020048 WO2005120891A2 (en) 2004-06-07 2005-06-06 Child seat and monitoring system
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PCT/US2005/020050 WO2005120892A2 (en) 2004-06-07 2005-06-06 Child seat and monitoring system
PCT/US2005/020047 WO2006009619A2 (en) 2004-06-07 2005-06-06 Child restraint system comprising weight sensor
PCT/US2005/020046 WO2005120890A2 (en) 2004-06-07 2005-06-06 Child seat monitoring system and method for determining a type of child seat
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Families Citing this family (114)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050184496A1 (en) 2003-10-03 2005-08-25 Speckhart Frank H. Sensor pad for controlling airbag deployment and associated support
US8251444B2 (en) * 2005-04-25 2012-08-28 Arjuna Indraeswaran Rajasingham Vehicle occupant support
US7163263B1 (en) * 2002-07-25 2007-01-16 Herman Miller, Inc. Office components, seating structures, methods of using seating structures, and systems of seating structures
US7410214B2 (en) * 2003-02-14 2008-08-12 Delphi Technologies, Inc. Apparatus for measuring child seat anchor tension
US7607697B2 (en) * 2003-06-18 2009-10-27 Indiana Mills & Manufacturing, Inc. Load control device
US9512346B2 (en) * 2004-02-10 2016-12-06 Halliburton Energy Services, Inc. Cement compositions and methods utilizing nano-hydraulic cement
CN100460168C (en) * 2004-03-26 2009-02-11 张周新 Contact type sensor for object
US7207619B2 (en) * 2004-03-26 2007-04-24 Nissan Technical Center North America, Inc. Child seat tether anchor structure
US7439866B2 (en) * 2004-08-09 2008-10-21 Delphi Technologies, Inc. Child restraint system comprising event data recorder, and method for providing data relating to installation or adjustment
US7676339B2 (en) * 2004-10-12 2010-03-09 Robert Bosch Gmbh Apparatus and method of compensating a seat offset for a load applied to the seat
US7216932B2 (en) * 2004-11-04 2007-05-15 Britax Romer Kindersicherheit Gmbh Half fold belt tensioner
EP1669251A1 (en) * 2004-12-07 2006-06-14 IEE INTERNATIONAL ELECTRONICS & ENGINEERING S.A. Child seat detection system
GB2422097B (en) * 2005-01-12 2008-10-15 Autoliv Dev Improvements in or relating to an adjustable seat
GB2426189A (en) * 2005-05-20 2006-11-22 Autoliv Dev Vehicle seat with movable seat belt guide and booster squab
US20070296254A1 (en) * 2005-09-06 2007-12-27 Kahn Michael R Child seat safety system
US7441436B2 (en) * 2005-09-27 2008-10-28 Mettler-Toledo, Inc. Method for weighing apparatus calibration management
ES1061536Y (en) * 2005-11-11 2006-06-16 Jane Sa DEVICE FOR THE CONTROL OF THE COUPLING OF CHILD SEATS IN CARS.
US7463161B2 (en) * 2005-12-02 2008-12-09 Delphi Technologies, Inc. Child restraint system with child seat monitoring system and method for monitoring a child seat
IL180462A0 (en) * 2006-03-30 2007-06-03 Asher S Saban Intelligent child safety seat
US7490898B2 (en) * 2006-09-01 2009-02-17 Cosco Management, Inc. Child restraint with swiveling juvenile seat and swivel-status indicator
US20080055064A1 (en) * 2006-09-05 2008-03-06 John David Keith Child detector and reminder system
US7466221B1 (en) * 2006-11-08 2008-12-16 Lehr Scott K Warning system for child restraint system
US7819472B2 (en) * 2006-12-12 2010-10-26 Wonderland Nurserygoods Co., Ltd. Latch mechanism for a child car seat
DE102007006033A1 (en) * 2007-02-07 2008-08-14 Recaro Aircraft Seating Gmbh & Co. Kg Seat control unit
US20080246316A1 (en) * 2007-04-03 2008-10-09 David Shaun Carine Child restraint system including tension sensor and status indicator
DE102007022463A1 (en) * 2007-05-09 2008-11-13 Takata-Petri Ag measuring system
US7567181B1 (en) * 2007-05-18 2009-07-28 Davison Zenobia F Child cushion monitor apparatus
US9443411B2 (en) * 2007-12-14 2016-09-13 Cars-N-Kids Llc Systems and methods for networking of car seat monitoring systems utilizing a central hub
US9266535B2 (en) 2007-12-14 2016-02-23 Cars-N-Kids Llc Systems and methods for determining if a child safety seat is in a moving vehicle
WO2009079477A2 (en) 2007-12-14 2009-06-25 Cars 'n' Kids Inc. Systems and methods for indicating the presence of a child in a vehicle
US7735920B2 (en) * 2007-12-20 2010-06-15 Delphi Technologies, Inc. Child seat and method for monitoring installation of the child seat
US8577711B2 (en) * 2008-01-25 2013-11-05 Herman Miller, Inc. Occupancy analysis
US7758118B1 (en) * 2008-02-11 2010-07-20 Good Jr William A Child seat restraint alarm system
NO330660B1 (en) * 2008-03-12 2011-06-06 Tore Eide Sensor unit and method for monitoring the condition of lashing material.
US20100025974A1 (en) * 2008-07-31 2010-02-04 Gray Charles A Apparatus for allowing or suppressing deployment of a low risk deployment airbag
US8007043B1 (en) * 2008-09-19 2011-08-30 Thien Vuong Child car seat with enhanced features
US20130021476A1 (en) * 2008-10-10 2013-01-24 Trummer Marcus A Child seat safety system
US8179274B2 (en) * 2009-04-02 2012-05-15 Ford Global Technologies, Llc Child seat monitoring system
EP2414200A4 (en) * 2009-04-02 2012-09-26 Indiana Mills & Mfg Restraint system including a disengaged coupling apparatus indicator
ES2616070T5 (en) * 2009-07-14 2021-07-29 Britax Roemer Kindersicherheit Gmbh Child seat with side impact protection
US9403437B1 (en) 2009-07-16 2016-08-02 Scott D. McDonald Driver reminder systems
US20110089726A1 (en) * 2009-10-16 2011-04-21 Summer Infant (Usa), Inc. Car seat with integrated level indicator
US8322234B2 (en) * 2009-10-29 2012-12-04 Advanced Technologies Group, Inc. Method and apparatus for measuring liquid quantity in bulk containers
US9247828B2 (en) * 2010-01-28 2016-02-02 Sava Cvek Smart seating chair with IC controls, electronic sensors, and wired and wireless data and power transfer capabilities
US8714646B2 (en) 2010-02-08 2014-05-06 Sava Cvek Mobile task chair and mobile task chair control mechanism with adjustment capabilities and visual setting indicators
US8333433B2 (en) 2010-02-10 2012-12-18 Friedman Mark J Locking harness apparatus and method
DE102010010188B4 (en) * 2010-03-01 2011-11-10 Keiper Gmbh & Co. Kg Vehicle seat, in particular motor vehicle seat
CN101966045B (en) * 2010-09-16 2013-05-22 北京理工大学 Quake-proof cradle for infants
US8403361B2 (en) * 2011-04-05 2013-03-26 Amsafe, Inc. Activation systems for inflatable personal restraint systems
US9176202B2 (en) 2011-04-05 2015-11-03 Amsafe, Inc. Electronic module assembly for inflatable personal restraint systems and associated methods
US8818759B2 (en) 2011-04-05 2014-08-26 Amsafe, Inc. Computer system for remote testing of inflatable personal restraint systems
US8914188B2 (en) 2011-04-05 2014-12-16 Amsafe, Inc. Computer system and graphical user interface for testing of inflatable personal restraint systems
US9156558B2 (en) 2011-04-05 2015-10-13 Amsafe, Inc. Inflatable personal restraint systems
US8988235B2 (en) * 2011-04-22 2015-03-24 Aspen Medical Partners, Llc Force indicating attachment strap for an orthotic
US8950809B2 (en) 2011-10-06 2015-02-10 Thorley Industries Llc Child restraint system with user interface
US9751433B2 (en) 2011-10-06 2017-09-05 Thorley Industries Llc Child restraint system with user interface
US8684403B2 (en) * 2011-12-12 2014-04-01 Chrysler Group Llc Active airbag venting system
US8973989B2 (en) 2012-02-02 2015-03-10 Delphi Technologies, Inc. Occupant detection sensor assembly
SE536465C2 (en) * 2012-04-04 2013-11-26 Sakta Ab Car seat / Belt cushion with illumination on the side of the seat cushion
US8807650B2 (en) * 2012-04-26 2014-08-19 Barbara ASCHER Infant to adult adjustable car seat
US9162593B2 (en) 2012-07-03 2015-10-20 Kids Ii, Inc. Infant carrier and car safety seat with no-rethread harness adjustment
WO2014022089A1 (en) * 2012-08-01 2014-02-06 Cars-N-Kids Llc Systems and methods for notifying a caregiver of the condition of a child in a vehicular child safety restraint
US9424728B2 (en) 2012-09-24 2016-08-23 Amy Rambadt Child safety seat mobile alarm and method therefor
US9381857B1 (en) 2012-10-05 2016-07-05 All Distributors, LLC Vehicle heat alarm for vehicle occupants and pets
US9381855B1 (en) 2012-10-05 2016-07-05 All Distributors, LLC Vehicle temperature alarm for vehicle occupants and pets
US9381856B1 (en) 2012-10-05 2016-07-05 All Distributors, LLC Vehicle temperature alarm for occupants and pets
US9384647B1 (en) 2012-10-05 2016-07-05 All Distributors, LLC Sound, temperature and motion alarm for vehicle occupants and pets
US9663004B2 (en) * 2013-03-16 2017-05-30 Heather F. Perrin Systems for soothing and prolonging sleep of a child in a car seat
CN103770672B (en) * 2013-04-03 2016-09-07 中山市乐瑞婴童用品有限公司 It is provided with the child restraint equipment of display device
KR101477233B1 (en) * 2013-09-16 2014-12-29 현대모비스 주식회사 Customized air conditioner controlling system and method thereof
US9187013B2 (en) 2013-11-11 2015-11-17 Toyota Motor Engineering & Manufacturing North America, Inc. Systems and methods for child restraint monitoring
CN104648193B (en) * 2013-11-20 2017-05-31 明门香港股份有限公司 Armchair cushioning mechanism and safety chair seats of car
CN103786608B (en) * 2014-01-23 2016-09-28 上海贝翔婴儿用品有限公司 A kind of safe baby seat
WO2015138741A1 (en) * 2014-03-12 2015-09-17 Cars-N-Kids Llc Systems and methods for determining if a child safety seat is in a moving vehicle
EP2979920B1 (en) * 2014-08-01 2017-03-22 Daniele Speziani Electronic device to improve safety of child protection systems for car seats
US20160059745A1 (en) * 2014-08-30 2016-03-03 Christopher Carl Whitcombe Automatic Child Car Seat Safety Harness Tightening and Indication Systems
US9610862B2 (en) * 2014-10-14 2017-04-04 Faurecia Automotive Seating, Llc Seat position sensing and adjustment
US9475405B2 (en) * 2014-11-19 2016-10-25 Ford Global Technologies, Llc Vehicle occupant classification
CN104709126B (en) * 2015-02-12 2017-05-31 王建新 A kind of child safety seat and installation method
CN105034871A (en) * 2015-07-10 2015-11-11 苍安国 Device for restraining child passenger on motor vehicle
US9648963B2 (en) * 2015-08-28 2017-05-16 Susan Diane Johnston Disinfectable vinyl baby bouncer seat cover
WO2017099580A1 (en) * 2015-12-11 2017-06-15 N.V. Nutricia Baby tracker
WO2018046018A1 (en) * 2016-09-12 2018-03-15 Suzhou Swandoo Children's Articles Co., Ltd. Child transportation device weight sensing
CN106314211A (en) * 2016-09-12 2017-01-11 苏州纪宝儿童用品有限公司 Child safety seat monitoring device and control method thereof
EP3509899A4 (en) * 2016-09-12 2020-03-11 Suzhou Swandoo Children's Articles Co., Ltd Child transportation system
CN108608911B (en) * 2016-12-28 2020-12-18 长城汽车股份有限公司 Backrest locking mechanism and vehicle
US10391960B2 (en) 2017-02-28 2019-08-27 Amsafe, Inc. Electronic module assembly for controlling aircraft restraint systems
US11148555B2 (en) * 2017-04-03 2021-10-19 Firasat Ali System and method for securing and monitoring a child placed in a car seat of a vehicle
CN207140871U (en) * 2017-07-21 2018-03-27 宁波宝贝第一母婴用品有限公司 A kind of upper drawstring tenses detecting system and child safety seat
CN107696927A (en) * 2017-08-25 2018-02-16 北汽福田汽车股份有限公司 Fixing device and vehicle on children's seat
US10449399B2 (en) * 2017-09-14 2019-10-22 Werner Co. Horizontal lifeline system and method of adjusting a horizontal lifeline system
US10115282B1 (en) * 2017-10-17 2018-10-30 Joseph Merrill Baby car seat and dock alarm system
US10553097B2 (en) 2017-11-09 2020-02-04 Chukwunoso ARINZE Interactive smart seat system
EP3498527B1 (en) * 2017-12-14 2021-02-03 BRITAX RÖMER Kindersicherheit GmbH Child safety seat
ES2884135T3 (en) 2017-12-21 2021-12-10 Britax Roemer Kindersicherheit Gmbh Child safety seat with pivot joint with belt
US10293782B1 (en) * 2018-01-03 2019-05-21 GM Global Technology Operations LLC Method and apparatus for providing seatbelt notifications
ES2900576T3 (en) * 2018-01-10 2022-03-17 Britax Roemer Kindersicherheit Gmbh Child safety seat with anti-rotation device
CN207931541U (en) * 2018-01-29 2018-10-02 麦克英孚(宁波)婴童用品有限公司 Pulling belt structure in a kind of intelligence
AU2019200460A1 (en) * 2018-01-31 2019-08-15 Britax Childcare Pty Ltd Strap indicator
CN108851762A (en) * 2018-06-08 2018-11-23 大连理工大学 A kind of automobile baby safe shaking table
CN113056394A (en) 2018-09-18 2021-06-29 印第安纳米尔斯生产制造股份有限公司 Seat belt apparatus and buckle
US10675548B1 (en) * 2018-12-04 2020-06-09 Christy Colton Child car seat
US11453312B2 (en) 2019-03-21 2022-09-27 Ford Global Technologies, Llc Vehicle seat operation
CN112550093B (en) * 2019-09-10 2023-10-20 明门瑞士股份有限公司 Child safety seat and warning system thereof
WO2021098710A1 (en) * 2019-11-18 2021-05-27 明门瑞士股份有限公司 Tether assembly, and child safety seat and support structure thereof
KR20210143577A (en) 2020-05-20 2021-11-29 삼성전자주식회사 Method and apparatus for controling vehicle
US20220063536A1 (en) * 2020-09-03 2022-03-03 Kimberly Creek Child Safety Seat Assembly
KR20220045639A (en) * 2020-10-06 2022-04-13 현대자동차주식회사 Power supply apparatus for vehicle child seat
GB202020735D0 (en) * 2020-12-30 2021-02-10 Cordsafe Ltd A child seat safety harness
CN112827090A (en) * 2021-01-21 2021-05-25 中建三局四川建筑装备有限公司 High altitude construction safety device based on 5G
AU2021201211B1 (en) * 2021-02-24 2021-08-12 BRITAX RÖMER Kindersicherheit GmbH Child restraint
US20220388465A1 (en) * 2021-06-07 2022-12-08 Toyota Connected North America, Inc. Radar detection of child car seat conditions in a vehicle
US20230150426A1 (en) * 2021-11-16 2023-05-18 GM Global Technology Operations LLC Cabin child seat monitoring methods and systems
DE102022004540A1 (en) 2021-12-15 2023-06-15 Mercedes-Benz Group AG System and method for detecting the presence of a child seat in a vehicle

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040011277A1 (en) 2001-06-29 2004-01-22 Barnes F. Michael Seat belt tension sensing device

Family Cites Families (85)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2522415C2 (en) * 1975-05-21 1985-03-14 Volkswagenwerk Ag, 3180 Wolfsburg Adjustment device for the articulation point of a passive seat belt
US7134687B2 (en) * 1992-05-05 2006-11-14 Automotive Technologies International, Inc. Rear view mirror monitor
US6324453B1 (en) * 1998-12-31 2001-11-27 Automotive Technologies International, Inc. Methods for determining the identification and position of and monitoring objects in a vehicle
US6412813B1 (en) * 1992-05-05 2002-07-02 Automotive Technologies International Inc. Method and system for detecting a child seat
US4538142A (en) * 1982-09-30 1985-08-27 Hamilton Scott B Signal seat for children
JPH0285030A (en) * 1988-09-21 1990-03-26 Takata Kk Child restraining seat
US5174035A (en) 1989-05-18 1992-12-29 Shigemi Yamazaki Attitude sensing apparatus
US5181773A (en) * 1991-03-28 1993-01-26 Colvin David S Vehicle occupant restraint belt buckle including illumination
US5260684A (en) * 1991-05-14 1993-11-09 Northpoint Manufacturing & Marketing, Inc. Warning system for a child's restraining seat for use in a passenger vehicle
US6397136B1 (en) 1997-02-06 2002-05-28 Automotive Technologies International Inc. System for determining the occupancy state of a seat in a vehicle
US6958451B2 (en) * 1995-06-07 2005-10-25 Automotive Technologies International, Inc. Apparatus and method for measuring weight of an occupying item of a seat
EP0884224A1 (en) 1993-07-16 1998-12-16 New Lennox Industries Inc., Child safety and restraint system and alarm system therefor
US5454591A (en) * 1993-11-03 1995-10-03 Trw Vehicle Safety Systems Inc. Method and apparatus for sensing a rearward facing child restraining seat
DE4418028B4 (en) * 1994-05-25 2006-03-23 Volkswagen Ag Child restraint system
DE19525442A1 (en) 1995-07-13 1997-01-16 Riesen Gmbh & Co Van Add-on child seat
US5581234A (en) * 1995-07-31 1996-12-03 Emery; Anna L. Infant vehicle seat alarm system
DK172924B1 (en) * 1995-12-01 1999-10-04 Maersk Medical As Device for use in flushing body cavities
US5656994A (en) * 1996-01-23 1997-08-12 Heninger; Brent D. Incentive apparatus and method for use with a seat belt
US5695243A (en) * 1996-01-31 1997-12-09 Indiana Mills And Manufacturing, Inc. Child seat mount with anti-twist web mechanism
DE19648268A1 (en) * 1996-11-21 1998-05-28 Siemens Ag Vehicle seat with a control device
US5758737A (en) 1996-12-09 1998-06-02 Trw Inc. Seat belt positioning apparatus and method of use
US6005958A (en) * 1997-04-23 1999-12-21 Automotive Systems Laboratory, Inc. Occupant type and position detection system
US5965827A (en) 1997-05-12 1999-10-12 Automotive Systems Laboratory, Inc. Seat belt tension measurement device using a bend sensor
JPH1111198A (en) 1997-06-23 1999-01-19 Nec Home Electron Ltd Occupant detecting system
US6364352B1 (en) 1997-07-09 2002-04-02 Peter Norton Seat occupant weight sensing system
US5987370A (en) * 1997-09-03 1999-11-16 Delco Electronics Corp. Vehicle occupant weight estimation apparatus having fluid-filled seat bladder
JP3286219B2 (en) 1997-09-11 2002-05-27 トヨタ自動車株式会社 Seat usage status determination device
DE19741631B4 (en) 1997-09-20 2013-08-14 Volkswagen Ag Method and device for avoiding and / or minimizing conflict situations in road traffic
US5984349A (en) 1997-11-17 1999-11-16 Automotive Systems Laboratory, Inc. Low profile hydraulic seat weight sensor
US6272936B1 (en) * 1998-02-20 2001-08-14 Tekscan, Inc Pressure sensor
JPH11291799A (en) * 1998-04-09 1999-10-26 Combi Corp Child seat
US5996421A (en) * 1998-04-24 1999-12-07 Breed Automotive Technology, Inc. Seat belt tension sensor employing flexible potentiometer
JP3838794B2 (en) 1998-10-20 2006-10-25 タカタ株式会社 Crew restraint system
US6577023B1 (en) 1998-12-30 2003-06-10 Automotive Systems Laboratory, Inc. Occupant detection system
US6203059B1 (en) 1999-01-29 2001-03-20 Breed Automotive Technologies, Inc. Seat belt usage indicating system
US6151540A (en) * 1999-05-11 2000-11-21 Delphi Technologies, Inc. Dynamic occupant position detection system and method for a motor vehicle
JP3428495B2 (en) * 1999-05-21 2003-07-22 トヨタ自動車株式会社 Airbag device operation control system for passenger seat
JP2001058552A (en) * 1999-08-04 2001-03-06 Takata Corp Damage reduction system vehicle crash
US6370037B1 (en) 1999-09-16 2002-04-09 Garmin Corporation Releasable mount for an electric device
US6246936B1 (en) 1999-10-05 2001-06-12 Delphi Technologies, Inc. Vehicle occupant characterization method based on sensed occupant weight
JP4157677B2 (en) * 1999-10-06 2008-10-01 タカタ株式会社 Crew restraint protection device
US6502860B1 (en) 1999-10-08 2003-01-07 Delphi Technologies, Inc. Tension sensing switch assembly
US6554318B2 (en) * 2000-01-12 2003-04-29 Delphi Technologies, Inc. Seat belt tension sensor
JP2003534181A (en) * 2000-01-24 2003-11-18 シーメンス ヴィディーオー オートモーティヴ コーポレイション Belt force sensor
JP2003533399A (en) 2000-05-12 2003-11-11 シーメンス ヴィディーオー オートモーティヴ コーポレイション Sensor device for force applied to seat belt
US6259042B1 (en) * 2000-05-24 2001-07-10 Trw Inc. Weight determining system
US6703845B2 (en) 2000-05-26 2004-03-09 Automotive Systems Laboratory, Inc. Occupant sensor
WO2003030118A2 (en) 2001-09-28 2003-04-10 Seatsignal, Inc. Object-proximity monitoring and alarm system
US7009522B2 (en) 2001-09-28 2006-03-07 Seatsignal, Inc. Object-proximity monitoring and alarm system
US6578871B2 (en) 2001-10-09 2003-06-17 Delphi Technologies, Inc. Vehicle occupant weight detection system with occupant position compensation
US6481750B1 (en) * 2001-11-27 2002-11-19 Ford Global Technologies, Inc. Seat belt restraint system for vehicle occupants with automatic belt tension compensation
US6796192B2 (en) * 2001-12-19 2004-09-28 Delphi Technologies, Inc. Pass through seat restraint tension sensing assembly
US6850825B2 (en) * 2002-02-04 2005-02-01 Delphi Technologies, Inc. Method for suppressing deployment of an inflatable restraint based on sensed occupant weight
US6644689B2 (en) * 2002-02-08 2003-11-11 Delphi Technologies, Inc. Method for suppressing deployment of an inflatable restraint based on sensed occupant capacitance
US6662094B2 (en) * 2002-02-15 2003-12-09 Delphi Technologies, Inc. Method of initially characterizing an occupant of a vehicle seat based on weight and seat belt tension
US6749038B2 (en) * 2002-02-20 2004-06-15 Delphi Technologies, Inc. Tension sensing assembly
US20030160689A1 (en) 2002-02-25 2003-08-28 Darius Yazdgerdi Seat belt detection device
US6587770B1 (en) 2002-02-26 2003-07-01 Delphi Technologies, Inc. Vehicle seat occupant weight estimation method with floor weight compensation
US6605877B1 (en) 2002-02-26 2003-08-12 Delphi Technologies, Inc. Restraint system interface arrangement for a seat belt tension sensor
US6438476B1 (en) * 2002-02-27 2002-08-20 Delphi Technologies, Inc. Vehicle seat occupant characterization method including ultralight child seat detection
US6834915B2 (en) * 2002-03-04 2004-12-28 Baby Trend, Inc. Infant car seat system
US6868745B2 (en) 2002-05-07 2005-03-22 Delphi Technologies, Inc. Seat restraint buckle and tension sensing assembly
US6683534B2 (en) * 2002-05-31 2004-01-27 Delphi Technologies, Inc Vehicle seat occupant detection system with seat cushion identifying transponder
US6650978B1 (en) 2002-05-31 2003-11-18 Delphi Technologies, Inc. Method and apparatus for preserving calibration data in a vehicle seat occupant detection system
US6812844B1 (en) 2002-06-28 2004-11-02 Marty G. Burgess Child safety seat with alarm
AU2002951170A0 (en) * 2002-09-03 2002-09-19 Britax Childcare Pty Ltd Improved security strap system
US7024294B2 (en) 2002-09-04 2006-04-04 Delphi Technologies, Inc. Vehicle seat occupant status classification using multiple sensors
US6851503B2 (en) 2002-10-01 2005-02-08 Delphi Technologies, Inc. Seat belt tension sensor assembly
CN100509476C (en) 2002-10-11 2009-07-08 高田株式会社 Child seats
US6863286B2 (en) 2002-11-18 2005-03-08 Evenflo Company, Inc. Infant carrier-receiving component with indicator
US6715830B2 (en) * 2002-12-04 2004-04-06 Sea Seat, Inc. Child restraint system for use in watercraft
US20040113797A1 (en) * 2002-12-16 2004-06-17 John Osborne System and method for alerting an operator to the presence of an occupant in a vehicle
US6818842B2 (en) 2002-12-19 2004-11-16 Delphi Technologies, Inc. Seat foam humidity compensation for vehicle seat occupant weight detection system
US6809643B1 (en) * 2003-03-18 2004-10-26 The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration Health monitoring system for car seat
KR100568177B1 (en) 2003-06-23 2006-04-05 삼성전자주식회사 Connector and notebook computer for using the same
CA2476948C (en) * 2003-09-05 2007-11-20 Tony Contrino Portable hockey puck freezer
US7168738B2 (en) * 2003-10-17 2007-01-30 General Motors Corporation Child restraint seat detection devices
FR2861025B1 (en) * 2003-10-20 2006-12-22 Ampafrance CHILD SEAT, WITH ALERT MEANS IN CASE OF STRAPS REMOVING STRAPS
US7233239B2 (en) 2003-11-04 2007-06-19 Ford Global Technologies, Llc Method and apparatus for detecting improper installation of child seat in a vehicle
US7021709B2 (en) 2003-11-20 2006-04-04 General Motors Corporation Child restraint seat anchors with integrated child seat detectors
US20050189805A1 (en) * 2004-03-01 2005-09-01 Edward Burley Lower anchor and tethers for children (latch) detection and measurement device
JP4285281B2 (en) 2004-03-08 2009-06-24 株式会社デンソー Vehicle seat belt warning device
FR2869858B1 (en) * 2004-05-05 2011-03-04 Pierre Terrand SAFETY BELT HAVING SENSORS FOR VERIFYING POSITIONING IN RELATION TO THE SEAT
US7422283B2 (en) 2004-06-07 2008-09-09 Delphi Technologies, Inc. Child restraint system and method for monitoring installation of the child restraint system
US20060095184A1 (en) * 2004-10-29 2006-05-04 Gray Charles A Apparatus for detecting a usage condition of a vehicle seat lap/shoulder belt

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040011277A1 (en) 2001-06-29 2004-01-22 Barnes F. Michael Seat belt tension sensing device

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EP1755916A2 (en) 2007-02-28
WO2005120888A3 (en) 2007-01-25
US7188898B2 (en) 2007-03-13
WO2005120891A2 (en) 2005-12-22
US20050275258A1 (en) 2005-12-15
EP1755424A4 (en) 2012-02-01
WO2005120893A3 (en) 2006-12-21
EP1831473A2 (en) 2007-09-12
EP1755915B1 (en) 2015-08-12
EP1794025B1 (en) 2015-08-12
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US7385520B2 (en) 2008-06-10
WO2005120890A2 (en) 2005-12-22
US7478875B2 (en) 2009-01-20
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WO2006009619A3 (en) 2007-07-05
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US20060006713A1 (en) 2006-01-12
WO2005120888A2 (en) 2005-12-22
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US20050275260A1 (en) 2005-12-15
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US20050275554A1 (en) 2005-12-15
EP1755914A4 (en) 2010-10-06
US20050280297A1 (en) 2005-12-22
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US7224270B2 (en) 2007-05-29
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WO2005120891A3 (en) 2007-01-25
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