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28-UQFN
Integrated Circuits (ICs)

DSPIC33CH64MP502T-I/2N

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Microchip Technology

DUAL CORE, TWO DSCS ON ONE CHIP

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28-UQFN
Integrated Circuits (ICs)

DSPIC33CH64MP502T-I/2N

Active
Microchip Technology

DUAL CORE, TWO DSCS ON ONE CHIP

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

SpecificationDSPIC33CH64MP502T-I/2N
ConnectivityIrDA, UART/USART, I2C, CANbus, SPI, LINbus
Core ProcessordsPIC
Core Size16-Bit Dual-Core
Data Converters [custom]D/A 4x12b
Data Converters [custom]A/D 23x12b
Mounting TypeSurface Mount
Number of I/O21 I/O
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Oscillator TypeInternal
Package / Case28-UQFN Exposed Pad
Program Memory Size88 KB
Program Memory TypeFLASH, PRAM
RAM Size20 K
Speed180 MHz, 200 MHz
Supplier Device Package28-UQFN (6x6)

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTape & Reel (TR) 3300$ 3.59
Microchip DirectT/R 1$ 4.33
25$ 3.96
100$ 3.59
1000$ 3.31
5000$ 3.15

Description

General part information

DSPIC33CH64MP502 Series

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 main core while the other is designed as a secondary core. The secondary core is useful for executing dedicated, time-critical control code while the main 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, advanced sensing and control, and general-purpose high-end embedded applications requiring sophisticated algorithms.

These dual-core DSCs are a good fit for complex yet cost-effective advanced sensing, core-independent touch, motor, and digital power applications.