The DRV8307 is a three half-bridge pre-driver that drives six N-type MOSFETs 30 mA with a
single power supply. Aimed at sensored three-phase brushless DC motors, the DRV8307 is driven by a
single PWM input and supports integrated commutation logic with three Hall sensor inputs. A
separate 5-V regulator is also included to be used to power Hall-effect sensors and other external
components.
The DRV8307 includes a current sense input for current limiting and protection. The
current limit can be set by adjusting the value of the RISENSE sense
resistor.
Motor operation (start and stop) is controlled through the ENABLEn terminal. If the
ENABLEn terminal is set high and motor rotation has stopped, the device enters into a low-power
standby state, thereby conserving overall system power during periods of inactivity.
Protection features are also included in the DRV8307 device such as locked rotor
detection, as well as overcurrent and overtemperature protection and undervoltage lockout to
bolster overall system robustness and reliability.
The DRV8307 is a three half-bridge pre-driver that drives six N-type MOSFETs 30 mA with a
single power supply. Aimed at sensored three-phase brushless DC motors, the DRV8307 is driven by a
single PWM input and supports integrated commutation logic with three Hall sensor inputs. A
separate 5-V regulator is also included to be used to power Hall-effect sensors and other external
components.
The DRV8307 includes a current sense input for current limiting and protection. The
current limit can be set by adjusting the value of the RISENSE sense
resistor.
Motor operation (start and stop) is controlled through the ENABLEn terminal. If the
ENABLEn terminal is set high and motor rotation has stopped, the device enters into a low-power
standby state, thereby conserving overall system power during periods of inactivity.
Protection features are also included in the DRV8307 device such as locked rotor
detection, as well as overcurrent and overtemperature protection and undervoltage lockout to
bolster overall system robustness and reliability.