Microchip Technology PIC16F1828-E/SS Microcontroller
The PIC16F1828-E/SS is a high-performance 8-bit microcontroller from Microchip Technology, which is part of their extensive PIC16F family. This compact and versatile microcontroller is designed to deliver power efficiency and robust operation for a wide array of embedded applications. Encased in an SSOP-20 (Shrink Small Outline Package) form factor, it offers a perfect blend of size and functionality for space-constrained designs.
Equipped with Microchip's advanced RISC architecture, the PIC16F1828-E/SS provides a rich set of features including:
- Enhanced Mid-range Core with 49 Instructions, 16 Stack Levels
- Flash Program Memory: 3.5KB (2048 x 14)
- RAM: 256 bytes
- Data EEPROM: 256 bytes
- 32 MHz Internal Oscillator: with software selectable clock options
- 10-bit Analog-to-Digital Converter (ADC): with up to 12 channels
- Two PWM Modules for enhanced control applications
- Two Comparators with selectable voltage reference
- Serial Communication: with I2C™, SPI, and EUSART for versatile connectivity
- Power-Saving Features: such as Power-down Sleep mode, Peripheral Module Disable, and Doze mode to optimize power consumption
With its integrated features, the PIC16F1828-E/SS is a prime choice for applications requiring complex timing, pulse generation, and analog integration. It is ideal for automation systems, consumer electronics, automotive modules, and Internet of Things (IoT) devices.
Programming the device is made simple with the MPLAB X Integrated Development Environment (IDE) and the MPLAB Code Configurator. These tools allow for a streamlined development process, from code writing and debugging to device programming. Additionally, the PIC16F1828-E/SS supports in-circuit serial programming (ICSP) for easy in-system updates.
The PIC16F1828-E/SS microcontroller from Microchip Technology combines performance, versatility, and ease of use, making it a suitable choice for designers looking to optimize their embedded systems without compromising on space or power efficiency.