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dsPIC33FJ16MC102

Status: In Production

Features:

  • Up to 16 MIPS operation (3.0 - 3.6V)
  • Modified Harvard architecture
  • 16-bit-wide data path
  • 24-bit-wide instructions
  • 16 x 16 integer multiply operations
  • 32/16 and 16/16 integer divide operation
  • Two 40-bit accumulators with rounding and saturation options
  • Modulo
  • Bit-reversed
  • Accumulator write back for DSP operations
  • Dual data fetch
  • Shifts for up to 40-bit data
  • 16 x 16 fractional multiply/divide operations
  • Flash program memory (16 Kbytes)
  • Data SRAM (1 Kbyte)
  • Security for program Flash
  • Three duty cycle generators
  • Independent or Complementary mode
  • Programmable dead time and output polarity
  • Edge-aligned or center-aligned
  • Two and four simultaneous samples
  • Up to six input channels with auto-scanning
  • Up to four inputs per Comparator
  • Supports capacitive touch sensing for touch screens and capacitive switches (mTouch™)
  • Can pair up to make one 32-bit timer
  • Capture on up, down, or both edges
  • 16-bit capture input functions
  • Single or Dual 16-bit Compare mode
  • Hardware Real-Time Clock and Calendar (RTCC)
  • 4-wire SPI
  • I2C™
  • UART
  • Flexible clock options
  • High-accuracy internal FRC
  • Power-on Reset (POR)
  • Power-up Timer (PWRT)
  • Brown-out Reset (BOR)
  • Single supply on-chip voltage regulator
  • Switch between clock sources in real time
  • Idle, Sleep, and Doze modes with fast wake-up
  • 28-pin SPDIP/SOIC/SSOP
  • 28-pin QFN: 6x6 mm
  • 36-pin TLA: 5x5 mm
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Overview
Documents
Development Environment
Similar Devices
RoHS Information
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Device Overview

Summary

An ultra low cost, high performance 16-bit motor control family of digital signal controllers featuring CTMU, MCPWMs, PPS and other advanced peripherals with low pin count and small footprint options.

Additional Features

    CPU:

    • Up to 16 MIPS operation (3.0 - 3.6V)
    • Modified Harvard architecture
    • 16-bit-wide data path
    • 24-bit-wide instructions
    • 16 x 16 integer multiply operations
    • 32/16 and 16/16 integer divide operation
    • Two 40-bit accumulators with rounding and saturation options
    • Additional flexible and powerful addressing modes:
      • Modulo
      • Bit-reversed
    • Single-cycle multiply and accumulate:
      • Accumulator write back for DSP operations
      • Dual data fetch
    • Shifts for up to 40-bit data
    • 16 x 16 fractional multiply/divide operations

    On-Chip Flash and SRAM:

    • Flash program memory (16 Kbytes)
    • Data SRAM (1 Kbyte)
    • Security for program Flash

    Motor Control PWM:

    • 6-channel 16-bit Motor Control PWM:
      • Three duty cycle generators
      • Independent or Complementary mode
      • Programmable dead time and output polarity
      • Edge-aligned or center-aligned

    Analog Peripherals:

    • 10-bit, 1.1 Msps Analog-to-Digital Converter (ADC):
      • Two and four simultaneous samples
      • Up to six input channels with auto-scanning
    • Three Analog Comparators with programmable input/output configuration
      • Up to four inputs per Comparator
    • Charge Time Measurement Unit (CTMU):
      • Supports capacitive touch sensing for touch screens and capacitive switches (mTouch™)

    Timers/Capture/Compare/PWM:

    • Timer/Counters, up to three 16-bit timers:
      • Can pair up to make one 32-bit timer
    • Input Capture (up to three channels)
      • Capture on up, down, or both edges
      • 16-bit capture input functions
    • Output Compare (up to two channels)
      • Single or Dual 16-bit Compare mode
    • Hardware Real-Time Clock and Calendar (RTCC)

    Communication Modules:

    • 4-wire SPI
    • I2C™
    • UART

    System Management:

    • Flexible clock options
    • High-accuracy internal FRC
    • Power-on Reset (POR)
    • Power-up Timer (PWRT)
    • Brown-out Reset (BOR)

    Power Management:

    • Single supply on-chip voltage regulator
    • Switch between clock sources in real time
    • Idle, Sleep, and Doze modes with fast wake-up

    Packaging:

    • 28-pin SPDIP/SOIC/SSOP
    • 28-pin QFN: 6x6 mm
    • 36-pin TLA: 5x5 mm
Parametrics
Name
Value
Architecture
16-bit
Max CPU Speed (MHz)
32
CPU Speed (MIPS/DMIPS)
16
Program Memory Size (KB)
16
SRAM (KB)
1
Temperature Range (C)
-40 to 125
Operating Voltage Range (V)
3 to 3.6
Pin Count
28
Comparators
3
Analog Peripherals
1-A/D 6x10-bit @ 1100(ksps) 1-D/A 0x4-bit
UART
1
SPI
1
I2C
1
Timers
3 x 16-bit 1 x 32-bit
Hardware RTCC/RTC
Yes
Motor Control PWM Outputs
6
Input Capture
3
Max PWM outputs (including complementary)
8
Number of PWM Time Bases
2
Output Compare Channels
3
Class B Hardware
Yes
Peripheral Pin Select / Pin Muxing
Yes

Documents

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Programming Specification

Application Notes

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Reference Manual

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03/18/2014
668KB
03/14/2014
467KB

Software

Code Examples

08/17/2009
20KB
08/17/2009
31KB
08/17/2009
13KB
12/10/2009
45KB
08/17/2009
16KB
08/17/2009
12KB

Brochures

Development Environment

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  • Code Examples
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Ethernet PICtail Plus Daughter Board
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Emulators & Debuggers
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MPLAB ICD 4 In-Circuit Debugger
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PICkit 3 In-Circuit Debugger
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Debug Features:
Runtime watch:Supported
I/O Port Trace:True (Requires Compiler Support)
Native Trace:True
SPI Trace:True (Requires Compiler Support)


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Programmers
MPLAB PICkit 4 In-Circuit Debugger
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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 PM3 Universal Device Programmer
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  • Socket: AC164336   PartNo: DSPIC33FJ16MC102 (28ML)
  • Socket: AC164337   PartNo: DSPIC33FJ16MC102 (28SP)
  • Socket: AC164339   PartNo: DSPIC33FJ16MC102 (28SO)
  • Socket: AC164338   PartNo: DSPIC33FJ16MC102 (28SS)
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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)

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MPLAB REAL ICE PROBE KIT
MPLAB REAL ICE PROBE KIT ( DV244005 )
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Software Libraries
16-bit CPU Self-test Library

The 16-bit CPU Self-test Library is intended to periodically verify during run-time, that all CPU core features are functioning correctly. This library supports the dsPIC33F, PIC24H, dsPIC33E and

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Microchip Easy Bootloader Library for PIC24/dsPIC33 and PIC32MM

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dsPIC DSC DTMF Generation/Detection Libraries

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Code Examples

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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
DSPIC33FJ16MC102-I/SO
0.770400
1.370370
28
SOIC
.300in
Matte Tin
e3
DSPIC33FJ16MC102T-I/SO
0.770400
1.152500
28
SOIC
.300in
Matte Tin
e3
DSPIC33FJ16MC102-I/SP
2.087500
3.733333
28
SPDIP
.300in
Matte Tin
e3
DSPIC33FJ16MC102-H/ML
0.101600
0.163934
28
QFN
6x6x0.9mm
Matte Tin
e3
DSPIC33FJ16MC102-I/ML
0.101600
0.163934
28
QFN
6x6x0.9mm
Matte Tin
e3
DSPIC33FJ16MC102T-I/ML
0.101600
0.332500
28
QFN
6x6x0.9mm
Matte Tin
e3
DSPIC33FJ16MC102-E/ML
0.101600
0.163934
28
QFN
6x6x0.9mm
Matte Tin
e3
DSPIC33FJ16MC102T-E/ML
0.101600
0.332500
28
QFN
6x6x0.9mm
Matte Tin
e3
DSPIC33FJ16MC102-I/SS
0.229200
0.489362
28
SSOP
.209in
Matte Tin
e3
DSPIC33FJ16MC102T-I/SS
0.229200
0.333333
28
SSOP
.209in
Matte Tin
e3
DSPIC33FJ16MC102-E/SS
0.229200
0.489362
28
SSOP
.209in
Matte Tin
e3
DSPIC33FJ16MC102-E/SSVAO
0.229200
0.489362
28
SSOP
.209in
Matte Tin
e3
DSPIC33FJ16MC102T-E/SSVAO
0.229200
0.333333
28
SSOP
.209in
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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