Status: | Active |
---|---|
Series: | dsPIC33CH64MP205 |
RoHS: | Compliant |
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.
The dsPIC33CH product family has many features that help simplify functional safety certifications for ASIL-B and ASIL-C focused applications including:
ā¢ Functional Safety Manual, FMEDA and Diagnostic Software available under NDA upon request to your local sales office
ā¢ Learn more about 16-bit Functional Safety capabilities including hardware, software, and supporting collateral
Operating Conditions |
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3V to 3.6V, -40Ā°C to +150Ā°C |
Core: Dual 16-Bit dsPIC33CH CPUs |
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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 |
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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 |
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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 |
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 |
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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 |
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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 |
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Low-Power Management Modes (Sleep, Idle, Doze) |
Integrated Power-on Reset and Brown-out Reset |
Debugger Development Support |
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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 |
Functional Safety support (ISO26262) |
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ASIL-B & ASIL-C focused applications |
FMEDA, Diagnostic Software and Functional Safety manual available under NDA upon request to your sales office |
Functional Safety hardware features |
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Multiple redundant clock sources |
I/O Port read-back |
Analog peripherals redundancies |
Windowed Watchdog Timer |
RAM BIST |
Hardware traps |
SFR locks |
Write protection |
Shadow working registers |
Architecture | 16 |
---|---|
MaxSpeed (MHz) | 200 |
CPU Speed (MIPS/DMIPS) | 100 |
Program Memory Size (KB) | 64 |
Multiple Flash Panels | False |
Direct Memory Access (DMA) Channels | 8 |
Temp. Range Min. | -40 |
Temp. Range Max. | 150 |
Operation Voltage Min.(V) | 3 |
Operation Voltage Max.(V) | 3.6 |
Pin Count | 48 |
Low Power | No |
Number of Comparators | 4 |
Number of ADCs | 4 |
ADC Channels | 19 |
Max ADC Resolution (bits) | 12 |
Max ADC Sampling Rate (ksps) | 3500 |
Number of DACs | 4 |
DAC outputs | 1 |
Max DAC Resolution (bits) | 12 |
Hardware RTCC | No |
Motor Control PWM Channels | 12 |
SMPS PWM Channels | 12 |
Number of PWM Time Bases | 5 |
Output Compare Channels | 0 |
USB Interface | None |
Number of CAN Modules | 0 |
Crypto Engine | No |
Quadrature Encoder Interface (QEI) | 1 |
Segment LCD | 0 |
LCD/Graphics Interface | No |
Configurable Logic Cell Modules (CLC /CCL) | 8 |
Peripheral Pin Select (PPS)/Pin Muxing | Yes |
Supported in MPLAB Code Configurator | Yes |
Pins | Packaging | 48 | UQFN |
Temp Range | -40C to +125C |
Packing Media | Tube (61) |
Data Sheets |
---|
dsPIC33CH128MP508 Family Datasheet |
Programming Specifications |
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16-Bit MCU and DSC Programmer's Reference Manual |
dsPIC33CH128MP508 Family Flash Programming Specification |
dsPIC33C Family Flash Program Exec |
JEDEC Indicator | e3 |
---|---|
ROHS | Compliant |
China EFUP | Compliant |
Device Weight (g) | 0.0772 |
Shipping Weight (kg) | 0.114754 |
Lead Count | 48 |
Package Type | UQFN |
Package Width or Size | 6x6x0.6mm |
Soldering Composition | Matte Tin |
Dsc, 200Mhz, 64Kb, Uqfn-Ep-48 | Newark Electronics |
dsPIC33 100MHz Dual Core 48-Pin 64KB Flash | Microchip Technology |
DSC, 200MHZ, 64KB, UQFN-EP-48 | Farnell |
Where can I find additional details, specifications and documents for a DSPIC33CH64MP205-E/M4?
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What category does DSPIC33CH64MP205-E/M4 fall under?
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Is the DSPIC33CH64MP205-E/M4 RoHS compliant?
Yes. This part has been flagged as RoHS Compliant by Microchip Technology.
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