


Microchip Technology
DSPIC33EP128GM604-E/ML
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DSPIC33EP128GM604-E/ML Description
The Microchip Technology's DSPIC33EP128GM604-E/ML is a high-performance digital signal controller (DSC) that combines the features of a microcontroller and a digital signal processor (DSP) in a single chip. It is part of the DSPIC33E family of devices, which are designed for use in a wide range of applications that require both high computational power and real-time control capabilities.
Description:
The DSPIC33EP128GM604-E/ML is a 40-pin, low-power, high-performance DSC that features a 128KB flash memory, 16KB RAM, and a 10-bit, 200 ksps ADC. It operates at a core speed of up to 40 MIPS and has a 16-bit central processing unit (CPU) with a 16-bit timer and a 16-bit event manager. The device also includes a USB On-The-Go (OTG) interface, which allows it to act as a USB host or a USB peripheral.
Features:
- 128KB flash memory
- 16KB RAM
- 10-bit, 200 ksps ADC
- Core speed up to 40 MIPS
- 16-bit CPU
- 16-bit timer
- 16-bit event manager
- USB On-The-Go (OTG) interface
- Peripheral Pin Select (PPS) for flexible I/O configuration
- Up to 40 MIPS performance
- Up to 200 ksps sampling rate for the ADC
- Low-power operation with sleep modes
Applications:
The DSPIC33EP128GM604-E/ML is suitable for a wide range of applications that require both high computational power and real-time control capabilities. Some of the potential applications for this device include:
- Motor control systems
- Power electronics
- Inverters
- Servo drives
- Battery management systems
- Industrial automation and control systems
- Medical equipment
- Consumer electronics
In summary, the Microchip Technology's DSPIC33EP128GM604-E/ML is a high-performance digital signal controller that offers a range of features and capabilities that make it suitable for use in a wide range of applications that require both high computational power and real-time control capabilities. Its low-power operation and flexible I/O configuration options make it an ideal choice for applications where power consumption and space are at a premium.



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