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dsPIC33CH128MP506

Dual Core, High Performance

Status: In Production

Features:

  • Master Core 90 MIPS and Slave Core 100 MIPS Operation
  • Independent Peripherals for Master Core and Slave Core
  • 4 x 12-bit 3.5 MSPS ADCs
  • High Speed PWMs with 250ps resolution, 12 Ch
  • Low-Power Management Modes (Sleep, Idle, Doze)
  • Simultaneous Debugging Support for Master and Slave Cores
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Overview
Documents
Development Environment
Similar Devices
RoHS Information
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Device Overview

Summary

System developers designing high-end embedded control applications can benefit from a new Digital Signal Controller (DSC) with two dsPIC DSC cores in a single chip. The dsPIC33CH has one core that is designed to function as a master while the other is designed as a slave. The slave core is useful for executing dedicated, time-critical control code while the master core is busy running the user interface, system monitoring and communications functions, customized for the end application.

The dsPIC33CH is designed to facilitate independent code development for each core by separate design teams and allows seamless integration when they are brought together in one chip. The dsPIC33CH family is optimized for high-performance digital power, motor control and other high-end embedded applications requiring sophisticated algorithms.

Additional Features
  • Operating Conditions
    • 3V to 3.6V, -40°C to +150°C
  • Core: Dual 16-Bit dsPIC33CH CPUs
    • Master Core 90 MIPS and Slave Core 100 MIPS Operation
    • Independent Peripherals for Master Core and Slave Core
    • Configurable Shared Resources for Master Core and Slave Core
    • Fast 6-Cycle Divide
    • Message Boxes and FIFO to Communicate Between Master and Slave (MSI)
    • Code Efficient (C and Assembly) Architecture
    • 40-Bit Wide Accumulators
    • Single-Cycle (MAC/MPY) with Dual Data Fetch
    • Single-Cycle, Mixed-Sign MUL Plus Hardware Divide
    • 32-Bit Multiply Support
    • Five Sets of Interrupt Context Selected Registers and Accumulators per Core for Fast Interrupt Response
    • Zero Overhead Looping
  • High Performance Peripherals for Real Time Control
    • 4 x 12-bit 3.5 MSPS ADCs
    • High Speed PWMs with 250ps resolution, 12 Ch
    • Optimized for high-performance digital power, motor control and applications requiring sophisticated algorithms
  • Master Core features
    • Core Frequency 90 MIPS @ 180 MHz
    • Internal Data RAM: 16 Kbytes
    • 16-Bit Timer: 1
    • DMA: 6
    • SCCP (Capture/Compare/Timer): 8
    • UART: 2
    • SPI/I2S: 2
    • I2C: 2
    • CAN Flexible Data-Rate (FD): 1
    • SENT: 2
    • CRC: 1
    • QEI: 1
    • PTG:1
    • CLC: 4
    • 16-Bit High-Speed (250ps) PWM: 4
    • 12-bit, 3.5 Msps ADC: 1
    • Digital Comparator: 4
    • 12-Bit DAC/Analog CMP Module: 1
    • Watchdog Timer: 1
    • Deadman Timer: 1
    • Breakpoints: 3 complex, 5 simple
    • Oscillator: 1
  • Slave Core features
    • Core Frequency 100 MIPS @ 200 MHz
    • Program Memory: 24 Kbytes (PRAM) Dual Partition with LiveUpdate
    • Internal Data RAM: 4 Kbytes
    • 16-Bit Timer: 1
    • DMA: 2
    • SCCP (Capture/Compare/Timer): 4
    • UART: 1
    • SPI/I2S: 1
    • I2C: 1
    • QEI: 1
    • CLC: 4
    • 16-Bit High-Speed (250ps) PWM: 8
    • 12-bit, 3.5 Msps ADC: 3
    • Digital Comparator: 4
    • 12-Bit DAC/Analog CMP Module: 3
    • Watchdog Timer: 1
    • Breakpoints: 1 complex, 2 simple
    • Oscillator: 1
  • Clock Management
    • Internal Oscillator
    • Programmable PLLs and Oscillator Clock Sources
    • Master Reference Clock Output
    • Slave Reference Clock Output
    • Fail-Safe Clock Monitor (FSCM)
    • Fast Wake-up and Start-up
    • Backup Internal Oscillator
    • LPRC Oscillator
  • Power Management
    • Low-Power Management Modes (Sleep, Idle, Doze)
    • Integrated Power-on Reset and Brown-out Reset
  • Debugger Development Support
    • In-Circuit and In-Application Programming
    • Simultaneous Debugging Support for Master and Slave Cores
    • Master Only Debug and Slave Only Debug Support
    • IEEE 1149.2 Compatible (JTAG) Boundary Scan
    • Trace Buffer and Run-Time Watch
Parametrics
Name
Value
Architecture
16-bit
Max CPU Speed (MHz)
200
CPU Speed (MIPS/DMIPS)
100
Program Memory Size (KB)
128
Error Correction Code Program Flash
Yes
SRAM (KB)
20
Direct Memory Access Channels
8
Temperature Range (C)
-40 to 150
Operating Voltage Range (V)
3 to 3.6
Pin Count
64
Comparators
4
Analog Peripherals
4-A/D 23x12-bit @ 3500(ksps) 4-D/A 0x12-bit
UART
3
SPI
3
I2C
3
Timers
13 x 16-bit 12 x 32-bit
Motor Control PWM Outputs
12
SMPS PWM Outputs
12
Max PWM outputs (including complementary)
24
Number of PWM Time Bases
5
Number of CAN Modules
1
Type of CAN Module
CAN-FD
Quadrature Encoder Interface
1
Configurable Cell Logic
8
Peripheral Trigger Generator
Yes
Peripheral Pin Select / Pin Muxing
Yes
Supported in MPLAB Code Configurator
Yes

Documents

Jump to:

Data Sheet

Applications Source code

Software

12/03/2018
1166KB

Reference Manual

Download All
11/13/2013
204KB

Development Environment

  • Emulators & Debuggers
  • Programmers
  • Demo & Evaluation Boards
  • Application Examples
Emulators & Debuggers
MPLAB PICkit 4 In-Circuit Debugger
MPLAB PICkit 4 In-Circuit Debugger ( PG164140 )

Fast programming, increased functionality, at the same price as its predecessor.


The MPLAB® PICkit™ 4 In-Circuit Debugger/Programmer allows fast and easy debugging and programming of PIC®, dsPIC®, AVR, SAM and CEC flash microcontrollers, using the powerful graphical user interface of MPLAB X Integrated Development Environment (IDE), version 4.15. The MPLAB

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MPLAB ICD 4 In-Circuit Debugger
MPLAB ICD 4 In-Circuit Debugger ( DV164045 )

The MPLAB® ICD 4 In-Circuit Debugger/Programmer is Microchip’s fastest, cost-effective debugging and programming tool for PIC® Microcontrollers (MCUs), dsPIC® Digital Signal Controllers (DSCs), and CEC flash microcontrollers. This speed is provided by a SAME70 MCU with 300 MHz, 32-bit MCU with 2MB of RAM and a high-speed FPGA to yield faster

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PICkit 3 In-Circuit Debugger
PICkit 3 In-Circuit Debugger ( PG164130 )
(Not Recommended for new design)

The PICkit 3 is not recommended for new designs. For new designs, please see the MPLAB PICKit 4.

Microchip’s PICkit™ 3 In-Circuit Debugger/Programmer uses in-circuit debugging logic incorporated into each chip with Flash memory to provide a low-cost hardware debugger and programmer. In-circuit

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MPLAB ICD 3 In-Circuit Debugger
MPLAB ICD 3 In-Circuit Debugger ( DV164035 )
(Not Recommended for new design)

 The MPLAB ICD 3 is a mature product. For new designs, consider using the MPLAB ICD 4 (DV164045)

MPLAB® ICD 3 In-Circuit Debugger System is Microchip's most cost effective high-speed hardware debugger/programmer for Microchip Flash Digital Signal Controller (DSC) and microcontroller

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MPLAB REAL ICE PROBE KIT
MPLAB REAL ICE PROBE KIT ( DV244005 )
(Not Recommended for new design)

 

Not recommended for new designs. For new designs, please consider the MPLAB ICD 4 (DV164045).

MPLAB REAL ICE In-Circuit Emulator System is Microchip’s next generation high speed emulator for Microchip Flash DSC® and MCU devices. It debugs and programs

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Programmers
MPLAB PICkit 4 In-Circuit Debugger
MPLAB PICkit 4 In-Circuit Debugger ( PG164140 )

Fast programming, increased functionality, at the same price as its predecessor.


The MPLAB® PICkit™ 4 In-Circuit Debugger/Programmer allows fast and easy debugging and programming of PIC®, dsPIC®, AVR, SAM and CEC flash microcontrollers, using the powerful graphical user interface of MPLAB X Integrated Development Environment (IDE), version 4.15. The MPLAB

...

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Add To Cart
MPLAB ICD 4 In-Circuit Debugger
MPLAB ICD 4 In-Circuit Debugger ( DV164045 )

The MPLAB® ICD 4 In-Circuit Debugger/Programmer is Microchip’s fastest, cost-effective debugging and programming tool for PIC® Microcontrollers (MCUs), dsPIC® Digital Signal Controllers (DSCs), and CEC flash microcontrollers. This speed is provided by a SAME70 MCU with 300 MHz, 32-bit MCU with 2MB of RAM and a high-speed FPGA to yield faster

...

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Add To Cart
PICkit 3 In-Circuit Debugger
PICkit 3 In-Circuit Debugger ( PG164130 )
(Not Recommended for new design)

The PICkit 3 is not recommended for new designs. For new designs, please see the MPLAB PICKit 4.

Microchip’s PICkit™ 3 In-Circuit Debugger/Programmer uses in-circuit debugging logic incorporated into each chip with Flash memory to provide a low-cost hardware debugger and programmer. In-circuit

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MPLAB PM3 Universal Device Programmer
MPLAB PM3 Universal Device Programmer ( DV007004 )

The MPLAB® PM3 Universal Device Programmer is easy to use and operates with a PC or as a stand-alone unit, and programs Microchip's entire line of PIC® devices as well as the latest dsPIC® DSC devices. When used standalone, data can be loaded and saved with the SD/MMC card (not included).

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MPLAB ICD 3 In-Circuit Debugger
MPLAB ICD 3 In-Circuit Debugger ( DV164035 )
(Not Recommended for new design)

 The MPLAB ICD 3 is a mature product. For new designs, consider using the MPLAB ICD 4 (DV164045)

MPLAB® ICD 3 In-Circuit Debugger System is Microchip's most cost effective high-speed hardware debugger/programmer for Microchip Flash Digital Signal Controller (DSC) and microcontroller

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Add To Cart
MPLAB REAL ICE PROBE KIT
MPLAB REAL ICE PROBE KIT ( DV244005 )
(Not Recommended for new design)

 

Not recommended for new designs. For new designs, please consider the MPLAB ICD 4 (DV164045).

MPLAB REAL ICE In-Circuit Emulator System is Microchip’s next generation high speed emulator for Microchip Flash DSC® and MCU devices. It debugs and programs

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Demo & Evaluation Boards
dsPIC33CH Curiosity Development Board
dsPIC33CH Curiosity Development Board ( DM330028 )
(Not Recommended for new design)

The dsPIC33CH Curiosity Development Board (DM330028) is intended as a cost effective development and demonstration platform for the dsPIC33CH128MP508 family of dual core high performance digital signal controllers.

Designed from the ground-up to take full advantage of Microchip’s MPLAB® X IDE, the board includes an integrated programmer/debugger and requires no additional

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dsPIC33CH Curiosity Development Board
dsPIC33CH Curiosity Development Board ( DM330028-2 )

The dsPIC33CH Curiosity Development Board (DM330028-2) is intended as a cost effective development and demonstration platform for the entire dsPIC33CH family of dual core high performance digital signal controllers.

Designed from the ground-up to take full advantage of Microchip’s MPLAB® X IDE, the board includes an integrated programmer/debugger and requires no additional...

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dsPICDEM MCLV-2 Development Board
dsPICDEM MCLV-2 Development Board ( DM330021-2 )

The dsPICDEM™ MCLV-2 Development Board provides a cost-effective method of evaluating and developing sensored or sensorless Brushless DC (BLDC) and permanent magnet synchronous motor control applications. The board supports Microchip’s 100-pin Plug-In-Modules with dsPIC33E, dsPIC33F and PIC32MK Digital Signal Controllers. The board supports the use of the internal, on chip OpAmps

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dsPICDEM MCHV-2 Development System
dsPICDEM MCHV-2 Development System ( DM330023-2 )

The Microchip dsPICDEM™ MCHV-2 Development System is intended to aid the user in the rapid evaluation and development of a wide variety of motor control applications using a dsPIC® Digital Signal Controller (DSC). This development system is targeted to control Brushless DC (BLDC) motors, Permanent Magnet Synchronous Motors (PMSM), and AC Induction Motors (ACIM) in sensor or sensorless...

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dsPICDEM MCHV-3 Development System
dsPICDEM MCHV-3 Development System ( DM330023-3 )

The Microchip dsPICDEM™ MCHV-3 Development System is intended to aid the user in the rapid evaluation and development of a wide variety of motor control applications using a dsPIC® Digital Signal Controller (DSC). This development system is targeted to control Brushless DC (BLDC) motors, Permanent Magnet Synchronous Motors (PMSM), and AC Induction Motors (ACIM) in sensor or sensorless...

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dsPIC33CH128MP508 Motor Control PIM
dsPIC33CH128MP508 Motor Control PIM ( MA330039 )

The dsPIC33CH128MP508 Motor Control PIM is designed to demonstrate the capabilities of the devices from the dsPIC33CH128MPxxx family of dual core, 16-bit Digital Signal Controllers (DSCs). The dsPIC33CH128MPxxx devices have two DSC cores, namely ‘Master Core’ and ‘Slave Core’, that can run independently at different device frequencies. This PIM can be used to

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dsPIC33CH128MP508 General Purpose PIM
dsPIC33CH128MP508 General Purpose PIM ( MA330040 )

The dsPIC33CH128MP508 General Purpose Explorer 16/32 PIM (MA330040) is designed to demonstrate the capabilities of the dsPIC33CH128MP508 family using the Explorer 16 or Explorer 16/32 Development Board.

The devices from the dsPIC33CH128MP508 family are the first Microchip dual core, 16-bit microcontrollers. The dsPIC33CH128MP508 has two Digital Signal Controllers (DSC) cores that can

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RoHS Information

Part Number
Device Weight (g)
Shipping Weight (Kg)
Lead Count
Package Type
Package Width
Solder Composition
JEDEC Indicator
RoHS
China EFUP
DSPIC33CH128MP506-E/PT
0.286700
2.487500
64
TQFP
10x10x1mm
Matte Tin
e3
DSPIC33CH128MP506-I/PT
0.286700
2.487500
64
TQFP
10x10x1mm
Matte Tin
e3
DSPIC33CH128MP506T-I/PT
0.286700
0.574667
64
TQFP
10x10x1mm
Matte Tin
e3
DSPIC33CH128MP506-E/MR
0.232400
0.350000
64
QFN
9x9x0.9mm
Matte Tin
e3
DSPIC33CH128MP506-I/MR
0.232400
0.350000
64
QFN
9x9x0.9mm
Matte Tin
e3
DSPIC33CH128MP506T-I/MR
0.232400
0.370303
64
QFN
9x9x0.9mm
Matte Tin
e3
DSPIC33CH128MP506T-E/MRVAO
0.232400
0.370303
64
QFN
9x9x0.9mm
Matte Tin
e3
DSPIC33CH128MP506-E/MRVAO
0.232400
0.350000
64
QFN
9x9x0.9mm
Matte Tin
e3
To see a complete listing of RoHS data for this device, please Click here
Shipping Weight = Device Weight + Packing Material weight. Please contact sales office if device weight is not available.

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