IP Library Granted Patent US 8,341,762
Granted Patent B2
US 8,341,762 · App. 12/077,841 · Granted Jan 1, 2013

Safety vest assembly including a high reliability communication system

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Quick Facts
Patent No.
US 8,341,762
App. No.
12/077,841
Granted
Jan 1, 2013
Kind
B2
Abstract

There is provided a safety vest assembly including a vest having a vest outer layer defining a vest inner cavity. A pair of contact substrates is disposed within the vest inner cavity. Each contact substrate includes an input connection element. A data input is connected to a respective contact substrate. The data input is electrically connected to the respective input connection element and is configured to receive data from the wearer. A data output is connected to a respective contact substrates and is communicable with a remote transceiver. The data output is electrically connected to the respective input connection element and is configured to communicate data to the remote transceiver. An input flex circuit is engageable with the pair of input connection elements to facilitate communication between the data input and data output along the input flex circuit.

Claims (27)

1. A safety vest assembly fitted for use by a wearer, the safety vest assembly comprising:

an outer layer;

a bullet protection layer disposed within the vest adjacent the outer layer;

an inner portion disposed adjacent to the bullet protection layer;

a receiver disposed within the vest for receiving data from a first remote transceiver;

a pressure sensor disposed within the vest for detecting pressure applied to the vest and generating a pressure sensor output signal in response thereto, the pressure sensor output signal being generated independent of wearer input;

an encryption device disposed within the vest for encrypting the pressure sensor output signal;

a decryption device disposed within the vest for decrypting the data received by the receiver;

a data output disposed within the vest and operative to receive output signals from the encrypting device; and

flex circuitry disposed within the vest, the flex circuitry including multiple conductive paths formed on a flexible contact substrate;

wherein the receiver communicates the data received from the first remote transceiver to the decryption device; and

wherein the data output communicates data received from the encryption device and outputs encrypted data to a second remote transceiver.

2. The safety vest assembly of claim 1 wherein the vest further includes a physiological sensor, a GPS, a speaker, a microphone, a display and a keypad and the pressure sensor, the encryption device, the decryption device, the data output, the receiver, the physiological sensor, the GPS, the speaker, the microphone, the display and the keypad being distributed within the vest.

3. The safety vest assembly of claim 2 wherein the pressure sensor, the encryption device, the decryption device, the data output, the receiver, the physiological sensor, the GPS, the speaker, the microphone, the display and the keypad are all connected by flex circuitry to facilitate flexibility of the vest assembly.

4. The safety vest assembly of claim 1 wherein the bullet protection layer is configured to mitigate bullet penetration through the vest.

5. The safety vest assembly of claim 1 further including a vest inner portion, and wherein at least a portion of the flex circuitry is disposed between the bullet protection layer and the vest inner portion.

6. The safety vest assembly of claim 1 wherein at least the vest assembly outer layer is comprised of lire resistant material.

7. The safety vest assembly of claim 3 wherein the keypad is disposed substantially flush with the vest outer layer, the keypad being in electrical communication with the data output and the encryption device, the keypad being operative to facilitate manual entry of data.

8. The safety vest assembly of claim 7 wherein the microphone is disposed substantially flush with the vest outer layer, the microphone being in electrical communication with the data output and the encryption device, the microphone being operative to facilitate transmission of audio messages.

9. The safety vest assembly of claim 8 wherein the GPS device is in electrical communication with the data output and the encryption device, the GPS device being operative to generate a positioning signal independent of wearer input.

10. The safety vest assembly of claim 9 wherein the physiological sensor is in electrical communication with the data output and the encryption device, the physiological sensor being operative to monitor the wearer's body temperature and heart rate.

11. The safety vest assembly of claim 10 wherein speaker is disposed substantially flush with the vest outer layer, the speaker being in electrical communication with the receiver and the decryption device, and operative to broadcast a received audio signal.

12. The safety vest assembly of claim 11 wherein display is disposed substantially flush with the vest outer layer, the display being in electrical communication with the receiver and the decryption device, and operative to display a received signal.

13. The safety vest assembly of claim 3 wherein the flex circuit includes an insulative covering layer over the plurality of conductive strips.

14. The safety vest assembly of claim 3 wherein the data output is configured to transmit an RF signal.

15. The safety vest assembly of claim 3 wherein the data output is wirelessly communicable with a remote transceiver.

16. The safety vest assembly of claim 12 wherein the encryption device also encrypts data received from the physiological sensor, the GPS, the microphone, and the keypad.

Continuity (1)
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