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MP6543GL Scheda tecnica(PDF) 13 Page - Monolithic Power Systems |
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MP6543GL Scheda tecnica(HTML) 13 Page - Monolithic Power Systems |
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13 / 16 page ![]() MP6543 – 12V, 2A, THREE-PHASE POWER STAGE MP6543 Rev. 1.01 www.MonolithicPower.com 13 1/15/2020 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2020 MPS. All Rights Reserved. OPERATION The MP6543 is a three-channel half-bridge driver intended to drive a brushless DC motor. Input Logic The MP6543 has logic input pins ENA, ENB, and ENC, which enable the outputs SA, SB, and SC. When ENx is low, the corresponding output is disabled (output is high-impedance), and the PWM input on that phase is ignored. When ENx is high, the output is enabled, and the PWM input controls the state of the output. Table 1.1 shows the logic truth table. Table 1.1: Input Logic Truth Table of the MP6543 ENx PWMx Sx H H VIN H L GND L X High impedance The MP6543A has separate inputs to enable the HS-FETs and LS-FETs of each phase independently. Table 1.2 shows the logic truth table. Table 1.2: Input Logic Truth Table of the MP6543A HSx LSx Sx L L High impedance L H GND H L VIN H H High impedance The MP6543B has three Hall-element inputs, whose commutation logic is determined by three Hall-element inputs spaced at 120°. The PWM, DIR, and nBRAKE inputs control motor speed, direction, and brake engagement, respectively. Table 1.3: Input Logic Truth Table of the MP6543B PWM nBRAKE Operation Mode 0 1 PWM chop mode – the load current decays 0 0 Brake mode – all low-side gates on 1 1 Selected drivers on 1 0 Brake mode – all low-side gates on Table 2: Commutation Table of the MP6543B (nBRAKE = 1) Logic Inputs Motor Terminals HA HB HC DIR SA SB SC 1 0 1 1 PWM Z L 1 0 0 1 Z PWM L 1 1 0 1 L PWM Z 0 1 0 1 L Z PWM 0 1 1 1 Z L PWM 0 0 1 1 PWM L Z 1 0 1 0 L Z PWM 0 0 1 0 L PWM Z 0 1 1 0 Z PWM L 0 1 0 0 PWM Z L 1 1 0 0 PWM L Z 1 0 0 0 Z L PWM 0 0 0 X Z Z Z 1 1 1 X Z Z Z Note that the logic inputs have internal weak pull- down resistors. nSLEEP Operation Driving nSLEEP low puts the device into a low- power sleep state. In this state, all internal circuits are disabled. All inputs are ignored when nSLEEP is active low. When waking up from sleep mode, approximately 1.5ms must pass before the device responds to inputs. The nSLEEP input has a weak pull-down resistor. Current-Sense Amplifiers The current flowing in each of the three outputs is sensed by internal current-sensing circuits. An output pin for each phase sources or sinks a current that is proportional to the current flowing in each phase. Note that only current flowing in the LS-FET is sensed, and that it is sensed in both the forward and reverse directions. To convert this current into a voltage (e.g. to input to an A/D converter), a termination resistor (RREF) is used as a reference voltage. When there is no current flowing, the resultant output will be equal to the reference voltage. When current is flowing, the voltage is above or below the reference voltage, determined with Equation (1): VSOUT = VREF + (RREF * ILOAD) / 4000 (1) |
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