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TSC2012H 数据表(PDF) 39 Page - STMicroelectronics |
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TSC2012H 数据表(HTML) 39 Page - STMicroelectronics |
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39 / 49 page ![]() 5.13 Application examples 5.13.1 H-bridge motor control The H-bridge topology is very popular in motor control, DC-DC converters, LED lighting control and other bidirectional loads from a single supply potential. The TSC2011H provides a feedback control system for current but also detects overload conditions. Figure 1 describes a typical schematic using the TSC2011H in a motor control application. A 20 mΩ shunt resistance in series with the motor monitors a measurable voltage drop representing the load current, and the TSC2011H amplifies the Vsense in order to give some information about the current flowing into the motor in real time. This information is then digitalizing by the 12-bit ADC (ADC120). Figure 79. H-bridge application General overview: To make the motor rotation occur, the NMOS H1, H2, L1, L2 are driven by a H-bridge quad power MOSFET driver. We have to consider that the current flows from 12 V to the GND, through H1 NMOS and L2 NMOS. A PWM is applied on the NMOS L2 in order to control the current and thus the speed of the motor. By PWM, the average voltage applied on the motor is controlled. H1 remains always ON and the PWM is applied on L2. When L2 is turned OFF, H2 must be turned ON, for freewheeling, allowing the discharge of the motor inductance current. This phenomenon generates a fast input common mode voltage transition on the TSC2011H, from 0 V to 12 V. Thanks to a good recovery time due to fast input common mode change, the TSC2011H follows the current flowing into the motor as depicted by the scope probe in Figure 80. TSC2011H H-bridge application. The black curve represents the fast Vicm variation step of 12 V in 500 ns when the freewheeling is activated. The blue curve represents the current flowing into the motor measured with a current probe. The red curve represents the output voltage - 1.35 V (Vref voltage) of the TSC2011H probe after the RC filter. The RC filter, used to drive the ADC120, smoothens the output signal a little and adds a small constant time, in the range of 1 µs. TSC2010H, TSC2011H, TSC2012H Application information DS13791 - Rev 2 page 39/49 |
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