Microchip Technology PIC32MX230F256B-I/SP Microcontroller
The PIC32MX230F256B-I/SP is a high-performance 32-bit microcontroller (MCU) from Microchip Technology, designed for embedded applications that require efficient processing and a variety of communication interfaces. This particular MCU is part of the PIC32MX family, known for its rich feature set and flexibility to handle complex tasks in a compact form factor.
Featuring a MIPS M4K core, the PIC32MX230F256B-I/SP operates at a maximum frequency of 50 MHz, offering the computational power necessary for demanding applications. With 256 KB of flash memory and 64 KB of RAM, this microcontroller provides ample space for program storage and sufficient RAM for real-time data processing, making it an excellent choice for applications such as industrial control systems, Internet of Things (IoT) devices, and consumer electronics.
The device is equipped with extensive connectivity options, including:
These interfaces enable the PIC32MX230F256B-I/SP to connect with peripherals and other microcontrollers, facilitating complex tasks like data acquisition, communication, and control.
Furthermore, the MCU features a 10-bit, 1 Msps Analog-to-Digital Converter (ADC) with up to 13 input channels, which allows for precise measurement of analog signals, critical for sensor interfacing and data acquisition tasks. Its Peripheral Pin Select (PPS) functionality allows designers to remap digital I/O to optimize board layout and to support multiple custom configurations, enhancing the design's flexibility.
The PIC32MX230F256B-I/SP operates in the industrial temperature range of -40°C to +85°C and comes in a 28-pin SPDIP package, making it robust for harsh environments and convenient for prototyping or production in various applications. Microchip's MPLAB® development ecosystem supports this MCU, providing developers with comprehensive tools for coding, debugging, and programming.
Overall, the PIC32MX230F256B-I/SP from Microchip Technology is a versatile and powerful microcontroller that offers a balance between performance and power consumption, making it an ideal choice for designers looking to push the boundaries of what's possible in embedded system design.