Active gate driver
An active gate driver suitable for activating an electronic switch of an electric motor. The active gate driver includes a pull up branch, a pull down branch and a current and voltage feedback from an output of the active gate driver to at least one input of the active gate driver, wherein the current and voltage feedback is common to both the pull up branch and the pull down branch.
1. An active gate driver comprising:
a pull up branch;
a pull down branch;
a first connection between a first input of the active gate driver and an output of the pull up branch and the pull down branch; and
a second connection between a second input of the active gate driver and the output of the pull up branch and the pull down branch,
wherein a current and voltage feedback is performed via the first connection and the second connection, the feedback being performed from an output of the active gate driver to the first input and the second input of the active gate driver.
2. The active gate driver according to claim 1 wherein the active gate driver further comprises biasing circuitry configured to activate the pull up branch in response to a positive voltage signal and the pull down branch in response to a negative voltage signal.
3. The active gate driver according to claim 1 wherein the pull up branch comprises a transistor at an output of the pull up branch and the pull down branch comprises a transistor at an output of the pull down branch, wherein the transistor of the pull up branch and the transistor of the pull down branch are configured to be connected in series between a first and a second supply voltage and wherein the output of the active gate driver is configured to be connected to a node between the transistor of the pull up branch and the transistor of the pull down branch.
4. The active gate driver according to claim 1 wherein the active gate driver further comprises an operational amplifier comprising the first input and the second input, wherein the voltage feedback is from the output of the active gate driver to the first input and the second input, and the output of the active gate driver is configured to be connected to a node between the output of the pull up branch and the output of the pull down branch.
5. The active gate driver according to claim 1 wherein the active gate driver further comprises an operational amplifier comprising the first input and the second input, and the active gate driver further comprises current sensing circuitry configured to sense a current provided at an output of the pull up branch and a current provided at an output of the pull down branch and configured to feed a sensed current back to the first input and the second input.
6. The active gate driver according to claim 1 wherein the current and voltage feedback is adaptive or controlled in real time.
7. The active gate driver according to claim 1 wherein the output of the active gate driver is current limited.
8. The active gate driver according to claim 1 wherein at least one of the pull up branch and the pull down branch comprises a current mirror.
9. An electric motor control system, comprising:
an active gate driver comprising:
a pull up branch; and
a pull down branch,
wherein a current and voltage feedback is performed from an output of the active gate driver to at least one input of the active gate driver, wherein a path of the current and voltage feedback is connected, directly or indirectly, to circuit elements of the pull up branch and the pull down branch; and
a controller,
wherein the electric motor control system is configured to perform a current feedback from an output of an electronic switch of the electric motor to an input of the controller and the controller is configured to output a control signal to the input of the active gate driver.
10. An electric motor control system, comprising:
an active gate driver comprising:
a pull up branch;
a pull down branch;
a first connection between a first input of the active gate driver and an output of the pull up branch and the pull down branch;
a second connection between a second input of the active gate driver and the output of the pull up branch and the pull down branch; and
a controller, wherein
the electric motor control system comprises current feedback circuitry to perform feedback from an output of an electronic switch of the electric motor to an input of the controller and the controller is configured to output a control signal to the first input and the second input of the active gate driver,
a current and voltage feedback is performed via the first connection and the second connection, the feedback being performed from an output of the active gate driver to the first input of the active gate driver and the second input of the active gate driver, and
a path of the current and voltage feedback is connected, directly or indirectly, to circuit elements of the pull up branch and the pull down branch.
11. The electric motor control system according to claim 10 wherein the active gate driver further comprises biasing circuitry configured to activate the pull up branch in response to a positive voltage signal and the pull down branch in response to a negative voltage signal.
12. The electric motor control system according to claim 10 wherein the pull up branch comprises a transistor at an output of the pull up branch and the pull down branch comprises a transistor at an output of the pull down branch, wherein the transistor of the pull up branch and the transistor of the pull down branch are configured to be connected in series between a first and a second supply voltage and wherein the output of the active gate driver is configured to be connected to a node between the transistor of the pull up branch and the transistor of the pull down branch.
13. The electric motor control system according to claim 10 wherein the active gate driver further comprises an operational amplifier comprising the first input and the second input, wherein the current and voltage feedback is from the output of the active gate driver to the first input and the second input, and the output of the active gate driver is configured to be connected to a node between the output of the pull up branch and the output of the pull down branch.
14. The electric motor control system according to claim 10 wherein the active gate driver further comprises an operational amplifier comprising the first input and the second input, and the active gate driver further comprises current sensing circuitry configured to sense a current provided at an output of the pull up branch and a current provided at an output of the pull down branch and configured to feed a sensed current back to the first input and the second input.
15. The electric motor control system according to claim 10 wherein the current and voltage feedback is adaptive or controlled in real time.
16. The electric motor control system according to claim 10 wherein the output of the active gate driver is current limited.
17. The electric motor control system according to claim 10 wherein at least one of the pull up branch or the pull down branch comprises a current mirror.