The present disclosure relates generally to power switches in a drive circuit for generating an alternating current (AC) power to supply an electric motor. More specifically, the present disclosure relates to power switches that are configured to have a safe state in which the conductor supplying the electric motor is automatically short-circuited to a low-side conductor.
AC motor drives are used in a variety of applications to supply power to permanent-magnet synchronous motors. Conventional AC motor drives may be configured to short-circuit all motor phases in a safe state to protect the semiconductors from overvoltage. To accomplish such a safe state, switches in a high-side path of the motor drive are opened and switches in a low-side path are closed.
A phase switch circuit may be designed to ensure that each motor phase is driven to the safe state by causing switches in the low-side path to default to a closed or conductive condition and by causing switches in the high-side path to default to an open or non-conductive condition in the event of a sudden loss of control signals.
The present disclosure provides a switching circuit including a high-side switch configured to selectively conduct current between a DC positive conductor and an output conductor, and a low-side switch configured to selectively conduct current between the output conductor and a DC negative conductor. At least one of the high-side switch or the low-side switch comprises a high-electron-mobility transistor (HEMT) and a second transistor in a cascaded configuration.
Further details, features and advantages of designs of the invention result from the following description of embodiment examples in reference to the associated drawings.
Referring to the Figures, wherein like numerals indicate corresponding parts throughout the several views, a motor drive 20 for providing AC power to an electric motor 22 is disclosed. As best shown in
As also shown in
The motor drive 20 includes a first phase switch 30a for selectively connecting the first output terminal PHASE_A_OUT to either of the DC positive conductor VBUS+ or the DC negative conductor VBUS− of the DC bus 24 at any given time. The motor drive 20 also includes a second phase switch 30b for selectively connecting the second output terminal PHASE_B_OUT to either of the DC positive conductor VBUS+ or the DC negative conductor VBUS− of the DC bus 24 at any given time. The motor drive 20 also includes a third phase switch 30c for selectively connecting the third output terminal PHASE_C_OUT to either of the DC positive conductor VBUS+ or the DC negative conductor VBUS− of the DC bus 24 at any given time. Each of the phase switches 30a, 30b, 30c includes a high-side switch Sh configured to selectively conduct current between the DC positive conductor VBUS+ and a corresponding one of the output terminals PHASE_A_OUT, PHASE_B_OUT, PHASE_C_OUT. Each of the phase switches 30a, 30b, 30c also includes a low-side switch Sl configured to selectively conduct current between the DC negative conductor VBUS− and the corresponding one of the output terminals PHASE_A_OUT, PHASE_B_OUT, PHASE_C_OUT.
A controller 32 coordinates operation of the phase switches 30a, 30b, 30c by providing control signals upon control lines 34a, 34b, 34c.
The switching circuit 40 includes a high-side switch Sh configured to selectively conduct current between a DC positive conductor VBUS+ and an output conductor PHASE_A_OUT. The switching circuit 40 also includes a low-side switch S1 configured to selectively conduct current between the output conductor PHASE_A_OUT and a DC negative conductor VBUS−, where the DC positive conductor VBUS+ at a higher voltage potential than the DC negative conductor VBUS−. At least one of the high-side switch Sh or the low-side switch Sl comprises a high-electron-mobility transistor (HEMT) 44 and a second transistor 46 in a cascaded configuration. The high-side switch Sh in the example circuit shown in
The HEMT 44 of the high-side switch Sh includes a depletion mode (D-Mode) transistor in the example switching circuit 40 shown in
In some embodiments, and as shown in
The high-side switch Sh is configured to selectively conduct current between the DC positive conductor VBUS+ and an output conductor PHASE_A_OUT in response to assertion of a high-side control line 34h. In the example circuit shown in
The low-side switch Sl in the example switching circuit 40 shown in
The present disclosure provides a switching circuit 40 using depletion mode switches, which are in a conductive state in the absence of a control signal, while also providing for safe-state operation with the output conductor PHASE_A_OUT conducted with a DC negative conductor VBUS− and isolated from a DC positive conductor VBUS+ in the event of a loss of control signals 34h, 34i. The switching circuit 40 may be used as a phase switch 30a, 30b, 30c of a motor drive 20, with the output conductor PHASE_A_OUT providing power to an electric motor 22. If the gates G of each of the transistors 42, 44, 46 in the switching circuit 40 are 0V with respect to their corresponding source terminals S, the switching circuit 40 provides a conductive path between the DC negative conductor VBUS− and the output conductor PHASE_A_OUT. Furthermore, when all the control signals 34h, 34l are in a low voltage state, the switching circuit 40 provides electrical continuity to conduct current between the DC negative conductor VBUS− and the output conductor PHASE_A_OUT while also providing electrical isolation, blocking current flow, between the DC positive conductor VBUS+ and the output conductor PHASE_A_OUT.
The switching circuit 40 shown in
The foregoing description is not intended to be exhaustive or to limit the disclosure. Individual elements or features of a particular embodiment are generally not limited to that particular embodiment, but, where applicable, are interchangeable and can be used in a selected embodiment, even if not specifically shown or described. The same may also be varied in many ways. Such variations are not to be regarded as a departure from the disclosure, and all such modifications are intended to be included within the scope of the disclosure.
This PCT International Patent Application claims the benefit of U.S. Provisional Patent Application Ser. No. 62/968,607 filed on Jan. 31, 2020, and titled “Electric Motor Drive With Gallium Nitride Power Switches Having Low-Side Short Circuit Safe State”, the entire disclosure of which is hereby incorporated by reference.
Filing Document | Filing Date | Country | Kind |
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PCT/CA2021/050099 | 1/29/2021 | WO |
Number | Date | Country | |
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62968607 | Jan 2020 | US |