Claims
- 1. A fire safety system comprising:
a control panel comprised of one or more controllers for controlling a plurality of devices, a pair of lines operably connected to said control panel and said devices for communicating signals between said control panel and said devices; at least one rectifier circuit operatively connected between said lines and at least one device, wherein said at least one rectifier circuit is comprised of at least a first transistor and a second transistor, each said transistor providing the circuit with a low-impedance ground path when said transistor is turned on, said transistors further providing the circuit with a polarity insensitive output; and a sensing circuit operatively connected between each said at least one rectifier circuit and each said at least one device, each said at least one device provided with a device controller, wherein said sensing circuit and said device controller extract a signal from said rectifier circuit to be received by said device.
- 2. The system according to claim 1 wherein the transistors are field-effect transistors.
- 3. The system according to claim 1, wherein the transistors are MOSFETs.
- 4. The system according to claim 1, wherein the rectifier circuit is comprised of four transistors.
- 5. The system according to claim 1, further comprising a first capacitor operably connected to said first transistor and a second capacitor operably connected to said second transistor, wherein said first capacitor provides a delay to said first transistor when said first transistor is turned on, and wherein said second capacitor provides a delay to said second transistor when said second transistor is turned on, said capacitors allowing said transistors to continuously provide a low impedance path to ground when a low voltage is applied to the circuit.
- 6. The system according to claim 1, wherein said first transistor is operatively connected to said first line, and said first capacitor is operatively connected to said second line, and wherein said second transistor is operatively connected to said second line, and said second capacitor is operatively connected to said first line.
- 7. The system according to claim 1, further comprising a first resistor connected in parallel to said first capacitor to form a first RC circuit and a second resistor connected in parallel with said second capacitor to form a second RC circuit.
- 8. The system according to claim 1, further comprising a third resistor connected between said first RC circuit and said second line and a fourth resistor connected between said second RC circuit and said first line.
- 9. The system according to claim 1, further comprising a first diode operatively connected to said first transistor and a second diode operatively connected to said second transistor, said first diode turns on said first transistor when said first transistor receives a signal to turn on and said second diode turns on said second transistor when said second transistor receives a signal to turn on, said first and second diodes further providing the circuit with an initial ground reference.
- 10. The system according to claim 1, wherein said sensing circuit is comprised of at least two diodes.
- 11. The system according to claim 1, further comprising:
a storage capacitor operably connected to each said at least one device for storing energy and providing said at least one device with power, wherein each said sensing circuit isolates the signal transmitted from said at least one rectifier circuit to said at least one device from said storage capacitor.
- 12. A fire safety system comprising:
a plurality of devices, a control panel for controlling said plurality of devices in said fire safety system, said control panel comprising a central processor unit and one or more controllers operably connected to said central processor unit for transmitting and receiving signals from said devices; a pair of lines are connected to said controller for transmitting signals between said controller and said devices; at least one rectifier circuit operatively connected between said lines and at least one device, wherein said at least one rectifier circuit is comprised of at least a first transistor and a second transistor, each said transistor providing the circuit with a low-impedance ground path when said transistor is turned on, said transistors further providing a polarity insensitive output.
- 13. The circuit according to claim 12, a first capacitor operably connected to said first transistor and a second capacitor operably connected to said second transistor, wherein said first capacitor provides a delay to said first transistor when said first transistor is turned on, and wherein said second capacitor provides a delay to said second transistor when said second transistor is turned on, said capacitors allowing said transistors to continuously provide a low impedance path to ground when a low voltage is applied to the circuit.
- 14. The system according to claim 13, wherein said first transistor is operatively connected to said first line, and said first capacitor is operatively connected to said second line, and wherein said second transistor is operatively couple to said second line, and said second capacitor is operatively connected to said second line.
- 15. The system according to claim 14, further comprising a first resistor connected in parallel to said first capacitor to form a first RC circuit and a second resistor connected in parallel with said second capacitor to form a second RC circuit.
- 16. The system according to claim 14, further comprising a third resistor connected in between said first RC circuit and said second line and a fourth resistor connected between said second RC circuit and said first line.
- 17. The system according to claim 12, further comprising a first diode connected to said first transistor and a second diode couple to said second transistor for turning on said transistor when power is applied to said circuit and for providing the circuit with an initial ground reference
- 18. The system according to claim 12, further comprising a sensing circuit operatively connected between each said at least one rectifier circuit and each said at least one device, each said device connected to a rectifier circuit provided with a device controller, wherein said sensing circuit and said device controller extract a signal from said rectifier circuit to be received by said device.
- 19. The system according to claim 12, further comprising:
a storage capacitor operably connected to each said at least one device for storing energy and providing said at least one device with power, wherein each said sensing circuit isolates the signal transmitted from said at least one rectifier circuit to said at least one device from said storage capacitor.
- 20. The system according to claim 12, wherein the rectifier circuit is comprised of four transistors.
CROSS-REFERENCE TO RELATED CO-PENDING APPLICATIONS
[0001] This application claims the priority to and the benefit of Provisional Application No. 60/306,778 entitled “Fire Safety System,” filed Jul. 20, 2001.
[0002] The following patent applications cover subject matter related to the subject matter of the present invention: “An Automatic Polarity Sensing Power and Signal Interface” U.S. Ser. No. ______; “Fire Protection System and Method for Configuring” U.S. Ser. No. ______; “Portable Diagnostic Device” U.S. Ser. No. ______; “User Interface for Fire Detection System” U.S. Ser. No. ______; “User Interface with Installment Mode” U.S. Ser. No. ______.
Provisional Applications (1)
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Number |
Date |
Country |
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60306778 |
Jul 2001 |
US |