Claims
- 1. A programmable inverter drive module, comprising:
a processor programmable to accept inputs related to inverter operation and process the inputs to produce inverter control outputs for controlling the inverter; a communication interface coupled to the processor for transferring information to and from the processor; a current sense signal derived from current provided by the inverter under control of the processor; and a conditioning circuit for conditioning the current sense signal and providing the conditioned signal to the processor to provide a closed loop converter control.
- 2. The module according to claim 1, wherein the inverter is separated from the processor and conditioning circuit.
- 3. The module according to claim 2, further comprising a shield separating the inverter and the processor and conditioning circuit.
- 4. The module according to claim 2, wherein the processor and conditioning circuit are located on a circuit board that is removably connected to the inverter.
- 5. The module according to claim 1, further comprising sensing resistors coupled to the output current of the inverter.
- 6. The module according to claim 1, further comprising a thermal sensor coupled to the inverter and capable of providing a thermal sense signal to the processor.
- 7. A power control module, comprising:
a control board including a signal processor, a communication interface coupled to the signal processor, circuitry for processing current sense signals indicative of output current and outputting the processed signals to the signal processor, a gate driver controlled by said signal processor and a power supply; and a power module removably coupled to the control board and including a power switch driven by the gate driver to switch power to a load, a power diode in parallel with the switch and a current sense resistor for providing the current sense signal indicative of output current.
- 8. The module according to claim 7, wherein the switch turns off without the application of a negative voltage.
- 9. The module according to claim 7, further comprising a current sensing resistor on a negative line of a DC bus in the power module.
- 10. The module according to claim 7, further comprising a thermal sensor on the power module for providing a signal to the signal processor indicative of a temperature of the power module.
- 11. The module according to claim 7, further comprising Kelvin point connections between the control board and the power module.
- 12. The module according to claim 1, further comprising an isolation circuit between a communication link and the communication interface to improve communication information noise immunity.
- 13. The module according to claim 7, further comprising isolation between a communication link and the communication interface of the control board to improve noise immunity for communications.
- 14. The module according to claim 1, further comprising an ADC input on the processor; and
a capacitor between the ADC input and ground sized to prevent loss of significance in a conversion.
- 15. The module according to claim 7, further comprising electrically isolated voltage supplies referenced to a voltage level in common with the signal processor.
- 16. The module according to claim 15, wherein the power supply further comprises an adjustable linear regulator, such that all reference voltages track together from the linear regulator.
- 17. The module according to claim 7, further comprising multiple conductive layers in the control board to increase signal noise immunity and shield the signal processor from noise generated by the power module.
- 18. The module according to claim 7, wherein the gate driver is powered directly from an input supply voltage.
- 19. A method for controlling a power inverter having a switch and an output power line with a current sense resistor comprising:
deriving a switch control signal from a processor programmed to command a specific power output; applying the switch control signal to the switch to produce an output current through the current sense resistor; measuring a voltage across the current sense resistor; conditioning the measured voltage signal to provide a conditioned signal indicative of output current to the processor; and instructing the processor to adjust the switch control signal based on the conditioned signal to obtain a feedback control.
- 20. The method according to claim 19, further comprising communicating with the processor to provide instructions to command the specific output and process the conditioned signal.
RELATED APPLICATION
[0001] This application is based on and claims the benefit of U.S. Provisional Application Serial No. 60/316,242, filed Aug. 31, 2001, entitled Motor Drive Module, to which a claim of priority is hereby made.
Provisional Applications (1)
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Number |
Date |
Country |
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60316242 |
Aug 2001 |
US |