Claims
- 1. A voltage supply circuit for an Electronic Control Unit comprising:a voltage regulator having an input terminal and an output terminal, said output terminal adapted to be continuously connected to the Electronic Control Unit, said voltage regulator also having a ground terminal; a power supply having a ground terminal connected to said voltage regulator ground terminal, said power supply also having a supply terminal; a diode having a cathode connected to said supply terminal of said power supply and an anode connected to said voltage regulator input terminal; a capacitor having first and second ends, said first end of said capacitor connected to said voltage regulator ground terminal; a charge supply connected said second terminal of said capacitor, said charge supply operable to charge said capacitor to a voltage which is greater than the voltage available at said supply terminal of said power supply; an electronic switch connected between said second terminal of said capacitor and said input terminal of said voltage regulator, said electronic switch including a control port; and a controller having first and second input ports and an output port, said first controller input port connected to said voltage regulator input terminal and said second controller input port connected to a reference voltage, said controller output port connected to said electronic switch input terminal with said controller being operative to cause said electronic switch to connect said second terminal of said capacitor to said voltage regulator input terminal when said power supply voltage decreases to a predetermined voltage such that said capacitor maintains the voltage at said voltage regulator input terminal above said predetermined level for a period of time.
- 2. The voltage supply circuit according to claim 1 wherein said charge supply includes a charge pump, said charge pump being connected directly to said second terminal of said capacitor.
- 3. The voltage supply circuit according to claim 2 wherein said charge pump is an nth order voltage multiplier.
- 4. The voltage supply circuit according to claim 2 wherein said electronic switch includes a transistor having an input terminal connected to said second capacitor terminal and an output terminal connected to said voltage regulator input terminal, said transistor also having a control terminal connected to said controller, said controller being coupled to said power supply and being operative to cause said transistor to be in a non-conductive state when said power supply voltage is above said predetermined voltage and to cause said transistor to be in a conductive state when said power supply voltage decreases to said predetermined voltage.
- 5. The voltage supply circuit according to claim 4 wherein said controller is further operative to cause said transistor to switch back to a non-conductive state when said power supply rises above said predetermined voltage.
- 6. The voltage supply circuit according to claim 4 wherein said input terminal of said transistor is an emitter, said output terminal is a collector and said control terminal is a base.
- 7. The voltage supply circuit according to claim 4 further including a first resistor connected between said transistor emitter and said transistor base and a second resistor connected between said transistor base and said controller.
- 8. The voltage supply circuit according to claim 4 wherein said transistor is a first transistor, said first transistor having a first bias resistor connected between its input and control terminals, and further wherein said controller includes a second transistor having an input terminal connected through a second bias resistor to said control terminal of said first transistor and an output terminal connected to said first end of said capacitor, said second transistor also having a control terminal connected to an output terminal of a comparator, said comparator also having a first input terminal connected to said input terminal of said voltage regulator and a second input terminal connected to a reference voltage, said comparator being operative when said voltage regulator input voltage decreases to said reference voltage to cause said second transistor to change condition whereby said first transistor is changed to said conducting state.
- 9. The voltage supply circuit according to claim 8 wherein said second transistor input terminal is a collector, said second transistor output terminal is an emitter and said second transistor control terminal is a base.
- 10. The voltage supply circuit according to claim 8 wherein said comparator includes an operational amplifier.
- 11. The voltage supply circuit according to claim 10 wherein said reference voltage is said predetermined voltage.
- 12. The voltage supply circuit according to claim 10 further including a voltage divider connected between said input and ground terminals of said voltage regulator, said voltage divider including a pair of resistors connected in series, and further wherein said first input terminal of said comparator is connected to said common junction of said pair of voltage divider resistors.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9803720 |
Feb 1998 |
GB |
|
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation and claims the benefit of International Application No. PCT/GB99/00319, filed Jan. 29, 1999, and the United Kingdom Patent Application No. GB9803720.3 filed on Feb. 24, 1998.
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Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/GB99/00319 |
Jan 1999 |
US |
Child |
09/643802 |
|
US |