12.07.2015 Views

3-Phase BLDC Motor Sensorless Control Using MC56F8013

3-Phase BLDC Motor Sensorless Control Using MC56F8013

3-Phase BLDC Motor Sensorless Control Using MC56F8013

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Component Descriptions4.1.2 Hardware Implementation with Micro Power Board+12V / 0V+12V / 0VJ12J3J2U3<strong>MC56F8013</strong>Evalution BoardU1J140 pinflatcableJ1Micro PowerStage BoardU2JTAGComm.Conv.14 pinflatcableJ4J4J6JTAG toPC ParallelPortRS232 toPC SerialPort4.2 Component Descriptions4.2.1 <strong>MC56F8013</strong> EVBM1IB23811 orN2311<strong>BLDC</strong><strong>Motor</strong>Figure 4-2. Hardware Diagram with Micro Power BoardThe <strong>MC56F8013</strong> EVB is used to demonstrate the abilities of the <strong>MC56F8013</strong> and to provide a hardwaretool, for use in the development of applications that use the <strong>MC56F8013</strong>.The <strong>MC56F8013</strong> EVB is an evaluation board that includes a <strong>MC56F8013</strong> part, peripheral expansionconnectors, and some peripheral expansions. The expansion connectors are for signal monitoring anduser feature expandability.The EVB has the following features:• <strong>MC56F8013</strong> 16-bit +3.3 V hybrid controller operating at 32 MHz• Internal oscillator• Joint Test Action Group (JTAG) port interface connector for an external debug host target interface• RS-232 interface– Galvanic isolation– Single wire/bi-wire communication option• SPI connector• 64 kilobit serial EEPROM• UNI-3 motor interface• Encoder/Hall effect interface3-<strong>Phase</strong> <strong>BLDC</strong> <strong>Motor</strong> <strong>Sensorless</strong> <strong>Control</strong> using <strong>MC56F8013</strong>, Rev. 0Freescale Semiconductor 47

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