Microchip Technology's PIC16F1827T-I/ML is a microcontroller unit (MCU) that is part of the PIC16F series. It is a low-cost, high-performance, 8-bit CMOS microcontroller with enhanced mid-range capabilities.
Description:
The PIC16F1827T-I/ML is a 28-pin microcontroller that features 8 kB of Flash program memory, 368 bytes of RAM, and 256 bytes of EEPROM data memory. It operates at a frequency of up to 20 MHz and has a wide operating voltage range of 2.0V to 5.5V.
Features:
- Enhanced mid-range architecture for faster execution and lower power consumption.
- On-chip peripherals such as an 8-bit timer, a watchdog timer, and an ADC.
- Up to 8 analog inputs with 10-bit resolution.
- Up to 17 digital I/O pins, with options for interrupt-on-change, pulse-width modulation, and sinking capabilities.
- On-chip debugging and programming support with in-circuit serial programming (ICSP) and debugging (ICD).
- Low-power sleep modes to conserve energy.
- Enhanced EEPROM data retention with tachtronic under-voltage protection.
Applications:
The PIC16F1827T-I/ML is suitable for a wide range of applications, including:
- Industrial control systems: Its robustness and wide operating voltage range make it suitable for use in industrial environments.
- Consumer electronics: Its low cost and high performance make it an attractive choice for consumer electronics such as appliances and toys.
- Automotive applications: Its low power consumption and robustness make it suitable for use in automotive systems such as engine control modules and body control modules.
- Medical devices: Its small form factor and low power consumption make it suitable for use in portable medical devices such as blood glucose meters and heart rate monitors.
- Security systems: Its on-chip peripherals and low power consumption make it suitable for use in security systems such as access control and surveillance cameras.
Overall, the PIC16F1827T-I/ML is a versatile and cost-effective microcontroller that is suitable for a wide range of applications. Its enhanced mid-range architecture, on-chip peripherals, and low power consumption make it an attractive choice for designers looking for a reliable and efficient solution.