Claims
- 1. A circuit for controlling a motor's operation, the motor including a first and second motor terminal, the circuit comprising:
a relay for selectively interconnecting a voltage source with a braking terminal and the first motor terminal; and a motor braking circuit electrically connected to the braking terminal, the motor braking circuit having a motor brake switch connected to the first motor terminal and braking terminal, wherein the braking switch is activated to brake the motor when the relay interconnects the voltage source with the braking terminal.
- 2. The circuit of claim 1, wherein the second motor terminal is connected to the electrical ground.
- 3. The circuit of claim 1, wherein the relay is a form C relay.
- 4. The circuit of claim 1, wherein the brake switch is a semiconductor device.
- 5. The circuit of claim 4, wherein a control input of the semiconductor device is selectively connected to the voltage source and to the electrical ground.
- 6. The circuit of claim 1, further comprising a filter circuit interconnected between the voltage source and the motor brake switch.
- 7. The circuit of claim 6, wherein the filter circuit includes a resister in electrical series connection with the brake switch and a capacitor in parallel connection with the brake switch.
- 8. The circuit of claim 1, further comprising a fault protection circuit, in connection with the first motor terminal and the voltage source.
- 9. The circuit of claim 8, wherein the fault protection circuit includes a diode and a resistive load, wherein the diode and the resistive load are in electrical series connection between the first motor terminal and the voltage source.
- 10. The circuit of claim 1, wherein the brake switch is a field effect transistor, the field effect transistor having a gate, a drain, and a source.
- 11. The circuit of claim 10, wherein the gate of the field effect transistor is selectively connected to the voltage source and to the electrical ground.
- 12. The circuit of claim 10, wherein the drain of the field effect transistor is connected to the first motor terminal.
- 13. The circuit of claim 10, wherein the source of the field effect transistor is connected to the electrical ground.
- 14. The circuit of claim 10, further comprising a first diode, in electrical connection with the first motor terminal and the gate to prevent deactivation of the field effect transistor.
- 15. The circuit of claim 10, further comprising a voltage limiting circuit for setting an active clamp voltage for the field effect transistor and preventing excessive source to drain voltage for the field effect transistor.
- 16. The circuit of claim 15, wherein the voltage limiting circuit includes two diodes connected in electrical series connection between the first motor terminal and the gate.
- 17. The circuit of claim 10, further comprising a filter circuit interconnected between the voltage source and the motor brake switch.
- 18. The circuit of claim 17, further comprising a deactivation circuit in parallel electrical connection with the filter circuit.
- 19. The circuit of claim 18, wherein the deactivation circuit includes a diode and a resistive load, the diode is in electrical series connection with the resistive load.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present invention claims priority to United States Provisional Application Serial No. 60/415,888 filed on Oct. 3, 2002, entitled “DC Motor Having A Braking FET Circuit Design.”
Provisional Applications (1)
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Number |
Date |
Country |
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60415888 |
Oct 2002 |
US |