Product Overview: PIC16HV785-I/P from Microchip Technology
The PIC16HV785-I/P is a high-performance, 8-bit, fully-integrated Flash microcontroller designed by Microchip Technology. Aimed at low-power and high-efficiency applications, this microcontroller operates directly from a 2.0V to 5.5V power supply, making it ideal for battery-operated and power-sensitive systems.
Key Features:
- Enhanced Mid-range Core: With 49 Instructions, 16 Stack Levels, and an operating speed of up to 20 MHz, the PIC16HV785-I/P delivers a powerful combination of performance and efficiency.
- Integrated EEPROM: Equipped with 256 bytes of EEPROM, this microcontroller allows for easy data storage without the need for external memory components.
- High-Voltage Versions Available: The "HV" in its name denotes the ability to handle high-voltage inputs, making it suitable for a variety of applications including automotive and industrial control systems.
- Analog Features: Boasting a 10-bit Analog-to-Digital Converter (ADC) with up to 11 channels, as well as two analog comparators with programmable voltage reference, the PIC16HV785-I/P excels in tasks requiring analog interfacing.
- Flexible Oscillator Structure: A wide range of selectable oscillator options including INTRC, EXTRC, HS, XT, LP, and more, provide flexible clocking configurations to best suit the application's requirements.
- Robust Peripheral Set: Includes Enhanced Capture/Compare/PWM (ECCP) module, Master Synchronous Serial Port (MSSP) with SPI and I2C capability, and USART module supporting serial communication.
Applications:
The PIC16HV785-I/P is versatile enough to fit a broad range of applications, including:
- Industrial Control Systems
- Automotive Systems
- Battery Management
- Power Supplies
- Consumer Electronics
- Smart Sensors
Package and Quality:
The device is available in a 18-pin PDIP (Plastic Dual In-line Package) format, which is suitable for breadboard prototyping and easy mounting on PCBs. Microchip Technology ensures high-quality standards, with each device subjected to rigorous testing and validation processes.