Microchip Technology's PIC16F917-E/P is a microcontroller (MCU) that belongs to the PIC16F series. It is a mid-range device with a wide range of features and capabilities, making it suitable for a variety of applications.
Description:
The PIC16F917-E/P is a 28-pin microcontroller that features an enhanced mid-range core with increased instruction execution speed and reduced power consumption. It is based on the 8-bit architecture and operates at a frequency of up to 20 MIPS.
Features:
- Enhanced mid-range core with increased instruction execution speed and reduced power consumption.
- 28-pin package with a wide range of I/O options.
- 8-bit architecture with a maximum frequency of 20 MIPS.
- 8KB of Flash program memory and 368 bytes of RAM.
- 256 bytes of EEPROM memory for non-volatile data storage.
- 16-bit wide instruction set for efficient code execution.
- On-chip debugging and programming support with an ICD 2 module.
- Low-power sleep modes to conserve energy during periods of inactivity.
- On-chip oscillator with internal frequency stability.
- Multiple communication interfaces, including UART, SPI, and I2C.
Applications:
The PIC16F917-E/P is suitable for a wide range of applications, including:
- Industrial control systems, such as motor control, temperature monitoring, and process control.
- Consumer electronics, such as appliances, toys, and gaming devices.
- Automotive applications, such as engine control, safety systems, and infotainment systems.
- Medical devices, such as monitoring equipment and diagnostic tools.
- Telecommunication systems, such as modems and routers.
- Security systems, such as access control and surveillance cameras.
- Data acquisition and signal processing applications.
In summary, the PIC16F917-E/P is a versatile and powerful microcontroller with a range of features that make it suitable for a wide variety of applications. Its enhanced mid-range core, low-power capabilities, and multiple communication interfaces make it an attractive choice for designers looking for a reliable and efficient MCU.