Microchip Technology's PIC24FJ128GB202-I/SS Microcontroller
The PIC24FJ128GB202-I/SS is a high-performance PIC microcontroller unit (MCU) from Microchip Technology, tailored for embedded applications that demand low power consumption, robust operation, and versatile interfacing options. This compact and efficient 16-bit MCU is an ideal choice for designers looking to balance functionality and power efficiency in their designs.
At the heart of the PIC24FJ128GB202-I/SS is a modified Harvard architecture that includes an up to 16 MIPS 16-bit CPU, providing a perfect blend of processing power for complex algorithms and control tasks. The device is equipped with 128 KB of flash memory and 8 KB of RAM, offering ample space for application code and data storage. The flash memory is highly reliable, with a typical endurance of 10,000 write/erase cycles, ensuring long-term stability for your application's firmware.
One of the standout features of this MCU is its USB 2.0 OTG capability, which enables it to act as either a device or a host, thus providing excellent versatility for USB-connected applications. Furthermore, the PIC24FJ128GB202-I/SS includes a variety of peripherals such as UART, SPI, and I2C modules, making it easy to interface with sensors, actuators, and other ICs.
The device operates over an extended temperature range of -40°C to +85°C, ensuring reliable performance in harsh environments. Additionally, the MCU comes in a 28-SSOP (Shrink Small Outline Package) form factor, making it a compact solution for space-constrained applications.
For power-sensitive designs, the PIC24FJ128GB202-I/SS boasts power management features such as multiple idle modes and an on-chip voltage regulator, which contribute to a lower overall power consumption. This makes the MCU a suitable choice for battery-operated devices, portable instruments, and energy-harvesting applications.
Overall, the PIC24FJ128GB202-I/SS from Microchip Technology is a versatile and efficient microcontroller that combines advanced features with low-power operation, making it an excellent choice for a wide range of embedded systems.