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dsPIC33EP512MU810
  • dsPIC33EP512MU810
  • dsPIC33EP512MU810
  • dsPIC33EP512MU810

dsPIC33EP512MU810

In Production

Microchip’s dsPIC33E family of digital signal controllers (DSCs) features a 70 MIPS dsPIC® DSC core with integrated DSP and enhanced on-chip peripherals. These DSCs enable the design of high-performance, precision motor control systems that are more energy efficient, quieter in operation, have a great range and extended life. They can be used to control brushless DC, permanent magnet synchronous, AC induction and stepper motors. These devices are also ideal for high-performance general purpose applications....

Microchip Technology dsPIC33EP512MU810 Product Info

16 April 2026 0

Parameters

ADC Resolution (bits)

12

ADC Sampling Rate (ksps)

1100

ADC Modules

2

CAN/CAN-FD

2

Type of CAN module

CAN

Configurable Logic Cell (CLC/CCL)

0

CPU

dsPIC® DSC

CPU Speed (MIPS/DMIPS)

70

Number of Comparators

3

DAC Resolution (Bits)

4

DAC Outputs

0

Number of DACs

1

Hardware RTCC/RTC

No

Number of PWM Time Bases

3

Operation Voltage Max.(V)

3.6

Operation Voltage Min.(V)

3

Output Compare Channels

16

SMPS

0

Segmented LCD (# of segments)

0

USB

FS Device/Host/OTG

Program Memory size (KB)

512

Peripheral Pin Select / Pin Muxing

Yes

Direct Memory Access (DMA) Channels

15

Multiple Flash Panels

Yes

Graphics Controller/GPU

No

Motor Control PWM Outputs

12

Quadrature Encoder Interface

2

Low Power

No

ADC Channels

32

Pincount

100

Crypto Engine

No

TempRange Min

-40

TempRange Max

125

Features

    Operating Conditions
  • 3.0V to 3.6V, -40ºC to +125ºC, DC to 60 MIPS
  • 3.0V to 3.6V, -40ºC to +85ºC, DC to 70 MIPS
    dsPIC33E Core
  • Modified Harvard Architecture
  • C Compiler Optimized Instruction Set
  • 16-bit Wide Data Path
  • 24-bit Wide Instructions
  • 16x16 Integer Multiply Operations
  • 32/16 and 16/16 Integer Divide Operations
  • 11 Additional Instructions
  • Two 40-bit Accumulators with Rounding and Saturation Options
  • Flexible and Powerful Addressing modes
  • Single-Cycle Multiply and Accumulate
  • Single-Cycle shifts for up to 40-bit Data
  • 16x16 Fractional Multiply/Divide Operations
    Motor Control PWM
  • Two master time base modules can control dual 3-phase motors simultaneously
  • Up to seven PWM generators
  • Two PWM outputs per PWM generator
  • 8.32 ns PWM resolution
    Quadrature Encoder Interface (QEI)
  • 32-bit position counter
  • 32-bit Index pulse counter
    Integrated Analog Features
  • Two independent ADC modules
  • One ADC configurable as 10-bit, 1.1 Msps with four S&H or 12-bit, 500 ksps with one S&H
  • One 10-bit ADC, 1.1 Msps with four S&H
  • Eight S&H using both ADC 10-bit modules
  • 24 analog channels (64-pin devices) up to 32 analog channels (100/121/144-pin devices)
  • Flexible and independent ADC trigger sources
  • Up to three Analog Comparator modules with programmable 32 voltage points references
    Timers / Capture / Compare / Standard PWM
  • 9 16-bit Timers/Counters. Unused Output compares can be used as standard times for a total of 25 timers
  • 16 Input Capture
  • 16 Output Compare/ PWM
  • Hardware Real-Time Clock and Calendar
  • Peripheral Pin Select (PPS) to allow function remap
    Direct Memory Access (DMA)
  • 15-channel DMA with user-selectable priority arbitration
    Communication Interfaces
  • USB 2.0 OTG-Compliant Full-Speed Interface
  • Four UART modules (15 Mbps), supporting LIN/J2602 protocols and IrDA®
  • Four 4-Wire SPI modules (15 Mbps)
  • Two ECAN™ modules (1 Mbaud) CAN 2.0B Support
  • Two I2C modules (up to 1 Mbaud) with SMBus Support
  • Data Converter Interface (DCI) module with Support for I2S and Audio Codecs
  • PPS to allow Function Remap
  • Parallel Master Port (PMP)
    Qualification and Class B Support
  • AEC-Q100 Grade 1 (-40ºC to +125ºC)
  • AEC-Q100 Grade 0 (-40ºC to +150ºC)
  • Class B Safety Library, IEC 60730

Description

Microchip’s dsPIC33E family of digital signal controllers (DSCs) features a 70 MIPS dsPIC® DSC core with integrated DSP and enhanced on-chip peripherals. These DSCs enable the design of high-performance, precision motor control systems that are more energy efficient, quieter in operation, have a great range and extended life. They can be used to control brushless DC, permanent magnet synchronous, AC induction and stepper motors. These devices are also ideal for high-performance general purpose applications.

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