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STMicroelectronics ST7MC   
ST7MC Line Up          
  Part Number Family Manufacturer Core Variant Freq. Flash/ROM Package
 
 ST7FMC2S6T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  32768  TQF 44
 ST7FMC2S4T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  16384  TQF 44
 ST7FMC2R7T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  49152  TQFP64
 ST7FMC2R6T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  32768  TQFP64
 ST7FMC2M9T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  61440  TQFP80
 ST7FMC1K4T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  16384  LQFP32
 ST7FMC1K2T6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  8192  LQFP32
 ST7FMC1K2T3  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  8192  LQFP32
 ST7FMC1K2B6  ST7MC  STMicroelectronics  STMicroelectronics ST7  8MHz  8192  PDIP32


ST7MC Family Description   

MCU with three-phase induction and permanent magnet brushless motor cells.

The ST7MC family is built around an industry-standard 8-bit core. All devices feature standard MCU peripherals, and ST´s on-chip motor control peripheral, the Motor Control Cell, which consists mainly of a three-phase Pulse Width Modulator multiplexed on six high-sink outputs, with a highly flexible Back EMF (BEMF) zero-crossing detector and co-processor unit for the sensorless control of permanent magnet Brushless Direct Current (BLDC) motors. ST´s patented ´three resistors´ sensorless control method - in conjunction with on-chip comparators, op-amp - provides the lowest possible system cost and the highest system integration for BLDC motor control.

Key features and benefits

  • Single micro approach for control of three-phase induction and BLDC motors
  • Flexibility with Family approach: 32-pin to 80-pin, 8k to 60K Flash/ROM
  • Easy to program, reduced time to market
  • Suitable for a wide range of motors (including compressors) from 12 to 300V and sensor/sensorless control topologies
  • Trapezoidal 6 Step or Sine Wave Signal output, Voltage/current mode, PWM or PAM control
  • Very low system cost, few external components
  • 70% of CPU available for non-motor control related tasks
  • Small footprint. Fits inside motor housing
  • Automotive applications compliant
  • Very low-cost, real-time development tools