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PIC32MZ1025DAS176-V/2J
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PIC32MZ1025DAS176-V/2J Description
The PIC32MZ1025DAS176-V/2J is a microcontroller unit (MCU) from Microchip Technology's PIC32MZ family of devices. It is designed for high-performance embedded applications that require advanced processing capabilities, high-speed connectivity, and low-power consumption.
Description:
The PIC32MZ1025DAS176-V/2J is a 32-bit MCU based on the MIPS32 24KEc CPU core. It operates at a maximum frequency of 250 MHz and features a 256 KB on-chip flash memory, 64 KB of SRAM, and 16 KB of EEPROM. The device is housed in a 176-pin plastic ball grid array (PBGA) package.
Features:
- Core: MIPS32 24KEc CPU core with a clock speed of up to 250 MHz.
- Memory: 256 KB on-chip flash memory, 64 KB of SRAM, and 16 KB of EEPROM.
- Connectivity: Integrated connectivity options include USB, Ethernet, and CAN interfaces.
- Peripherals: A wide range of peripherals, including UART, SPI, I2C, and ADC/DAC.
- Graphics: 2D graphics hardware accelerator and LCD controller with support for up to 24-bit color depth.
- Security: Secure Debug and Secure Boot features to protect against unauthorized access and code execution.
- Power Management: Advanced power management features to optimize energy consumption in battery-powered applications.
- Package: 176-pin plastic ball grid array (PBGA) package.
Applications:
The PIC32MZ1025DAS176-V/2J is suitable for a wide range of embedded applications that require high processing power, advanced connectivity, and low power consumption. Some potential applications include:
- Industrial automation and control systems
- Medical devices and equipment
- Networking and communication devices
- Automotive infotainment and control systems
- High-end consumer electronics
- IoT devices and smart home applications
- Robotics and unmanned systems
- Advanced human-machine interface (HMI) devices
The PIC32MZ1025DAS176-V/2J's combination of processing power, connectivity options, and low-power capabilities make it an ideal choice for demanding embedded applications that require a balance of performance and energy efficiency.



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