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UM0723 bảng dữ liệu(PDF) 24 Page - STMicroelectronics |
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UM0723 bảng dữ liệu(HTML) 24 Page - STMicroelectronics |
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24 / 48 page ![]() Hardware setting of the STEVAL-IHM023V2 UM0723 24/48 Doc ID 15870 Rev 4 4 Hardware setting of the STEVAL-IHM023V2 The STEVAL-IHM023V2 demonstration board can be driven through the J5 motor control connector by various MCU control units released by STMicroelectronics which feature a unified 34-pin motor connector (STM3210B-EVAL, STM32F100-EVAL, STEVAL- IHM022v1, STM32F10E-EVAL, etc.). The demonstration board is suitable for both field oriented and scalar controls. In particular, it can handle output signal conditioning for different types of speed and/or position feedback sensors (such as tachometer, Hall sensors, and quadrature encoders) and different current sensing topologies (single-shunt resistor placed on DC bus or three-shunt resistors placed in the three inverter legs). 4.1 Hardware settings for six-step (block commutation) control of BLDC motors To drive any motor, the user must ensure that: ● The motor control demonstration board is driven by a control board that provides the six output signals required to drive the three-phase power stage ● The motor is connected to the J2 motor output connector ● If using an encoder or Hall sensor connection, it is connected to connector J4 ● If using a tachometer connection, it is connected to connector J8 ● If using the brake control feature, connect a dissipative power load to J6 connector Table 2 below shows the jumper settings for any BLDC high-voltage motors in six-step (block commutation) control. Please confirm that the demonstration board input voltage is in the range of 125 VDC to 400 VDC or 90 VAC to 285 VAC. If the voltage doubler is applied, the input voltage must be in the range of 65 VAC to 145 VAC. Table 2. Jumper settings for high-voltage BLDC motor in six-step control Jumper Settings for any HV motor in six-step control W1 “3.3 V” position for VDD = 3.3 V “5 V” position for VDD = 5 V W3 “HIGH VOLTAGE” position W4 Present for Hall sensor or encoder Not present for connected tachometer W5 “R_BRAKE” position for software handling of resistive brake (if any) “OCP OFF” position for software handling of overcurrent protection disabling W6 Present for supplying stage from IHM023V2 (max. 50 mA) W7 Present for connected tachometer Not present for connected Hall sensor or encoder W9 Single-shunt W10 Not present W11 Not marked position |
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