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DRV8874PWPRG4 数据表(PDF) 20 Page - Texas Instruments |
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DRV8874PWPRG4 数据表(HTML) 20 Page - Texas Instruments |
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20 / 42 page ![]() DRV887x EN/IN1 1 PH/IN2 2 nSLEEP 3 nFAULT 4 VREF 5 IPROPI 6 IMODE 7 OUT1 8 PMODE 16 GND 15 CPL 14 CPH 13 VCP 12 VM 11 OUT2 10 PGND 9 Thermal Pad BDC Controller PWM I/O I/O I/O ADC 0.1 …F C Bulk V M 0.1 …F 0.022 …F 10 k V CC R IPROPI V REF R REF2 R REF1 V CC V REF V CC 20 DRV8874 SLVSF66A – AUGUST 2019 – REVISED DECEMBER 2019 www.ti.com Submit Documentation Feedback Copyright © 2019, Texas Instruments Incorporated 8 Application and Implementation NOTE Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality. 8.1 Application Information The DRV887x family of devices can be used in a variety of applications that require either a half-bridge or H- bridge power stage configuration. Common application examples include brushed DC motors, solenoids, and actuators. The device can also be utilized to drive many common passive loads such as LEDs, resistive elements, relays, etc. The application examples below will highlight how to use the device in bidirectional current control applications requiring an H-bridge driver and dual unidirectional current control applications requiring two half-bridge drivers. 8.2 Typical Application 8.2.1 Primary Application In the primary application example, the device is configured to drive a bidirectional current through an external load (such as a brushed DC motor) using an H-bridge configuration. The H-bridge polarity and duty cycle are controlled with a PWM and IO resource from the external controller to the EN/IN1 and PH/IN2 pins. The device is configured for the PH/EN control mode by tying the PMODE pin to GND. The current limit threshold (ITRIP) is generated with an external resistor divider from the control logic supply voltage (VCC). The device is configured for the fixed off-time current regulation scheme by tying the IMODE pin to GND. The load current is monitored with an ADC from the controller to detect the voltage across RIPROPI. Figure 19. Typical Application Schematic |
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