
Microchip Technology
PIC16C716-04E/SS
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PIC16C716-04E/SS Description
The PIC16C716-04E/SS is a microcontroller (MCU) manufactured by Microchip Technology. It is a member of the PIC16C7xx series of 8-bit MCUs that are designed for a wide range of applications, including industrial control, automotive systems, and consumer electronics.
Description:
The PIC16C716-04E/SS is a 28-pin, mid-range MCU based on the PIC architecture. It features a rich set of on-chip peripherals and memory options, making it suitable for a variety of applications. The device operates with a supply voltage range of 2.0V to 5.5V and has a maximum operating frequency of 20 MHz using an external clock source.
Features:
- 8-bit CPU with enhanced RISC architecture
- Up to 8KB of Flash program memory
- 256 bytes of RAM
- 128 bytes of EEPROM
- 21 GPIO pins with various input/output options
- Three 16-bit timer/counters with capture/compare capabilities
- 8-channel 10-bit ADC
- USART for serial communication
- On-chip oscillator with precision tuning
- Low-power sleep modes to conserve energy
- In-circuit serial programming (ICSP) and debugging capabilities
- Enhanced watchdog timer with windowed mode
- Brown-out reset (BOR) protection
Applications:
- Industrial control systems for motor control, sensor interfacing, and process monitoring
- Automotive applications such as body control modules, instrument clusters, and infotainment systems
- Consumer electronics, including appliances, toys, and home automation systems
- Medical devices for monitoring and control
- Telecommunication equipment for data acquisition and control
- Battery management systems for monitoring and protection
- Security systems for access control, monitoring, and alarm management
The PIC16C716-04E/SS is a versatile and reliable MCU suitable for a wide range of embedded applications, thanks to its robust feature set and flexible memory options. Its low-power capabilities and various communication interfaces make it an ideal choice for applications where energy efficiency and connectivity are critical.



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