The Microchip Technology's PIC16F18875T-I/MV is a microcontroller unit (MCU) that belongs to the PIC16F series. It is a high-performance, 8-bit, CMOS microcontroller with enhanced on-chip debug and programmability features. The PIC16F18875T-I/MV is designed for a wide range of applications, including industrial control, automotive, medical, and consumer electronics.
Description:
The PIC16F18875T-I/MV is a 28-pin microcontroller that features a high-speed CPU, up to 16 MHz operation, and up to 16 kB of Flash program memory. It also includes 768 bytes of RAM, 256 bytes of EEPROM, and 16 bytes of SRAM. The device is available in a 28-pin plastic dual-in-line package (PDIP).
Features:
- Enhanced mid-range core with increased performance and instruction set
- Up to 16 MHz operation
- Up to 16 kB of Flash program memory
- 768 bytes of RAM
- 256 bytes of EEPROM
- 16 bytes of SRAM
- 15-bit wide A/D converter with up to 8 channels
- Two 8-bit timers with 8-bit postscaler
- Two 16-bit timers with 8-bit prescaler
- Real-time clock (RTC) with 1-second to 255-day alarm
- 16-bit wide instruction word
- On-chip debug tools, including ICD 3 and debugWIRE
- Low-power sleep modes
- Enhanced CCP module for PWM applications
- On-chip comparator with non-inverting input
- On-chip reference voltage for A/D converter
- Watchdog timer with separate oscillator
- Brown-out reset (BOR) with programmable voltage threshold
Applications:
- Industrial control systems
- Automotive applications, such as body control modules, engine control units, and infotainment systems
- Medical devices, such as monitoring equipment, diagnostic tools, and portable medical instruments
- Consumer electronics, including home appliances, gaming consoles, and smart home devices
- Telecommunication systems, such as modems and routers
- Data acquisition and signal processing systems
- Battery-powered devices, thanks to its low-power sleep modes and brown-out reset feature
The PIC16F18875T-I/MV is a versatile and powerful microcontroller that can be used in a wide range of applications, thanks to its high-performance CPU, ample memory, and extensive feature set. Its on-chip debug tools and low-power capabilities make it an attractive choice for developers looking to create efficient and reliable embedded systems.