The NXP P87LPC767BN is a highly integrated microcontroller that is part of the LPC family, known for its low power consumption and high performance. This microcontroller is ideal for a wide range of applications, from industrial control systems to consumer electronics, due to its versatile features and robust design.
At the core of the P87LPC767BN is an 80C51 microcontroller which offers a familiar architecture for those used to working with traditional 8051 devices but with enhanced features. It operates at a voltage range of 2.4V to 3.6V, making it suitable for battery-operated devices. The device is available in a compact 14-pin DIP package, which allows for easy integration into various circuit designs.
Key Features:
- CPU: 80C51 microcontroller core with 8-bit architecture and a frequency of up to 20 MHz.
- Memory: It includes 4 KB of on-chip flash memory, which is both In-System Programmable (ISP) and In-Application Programmable (IAP), along with 256 bytes of RAM.
- I/O Ports: The device provides 13 general-purpose I/O pins, allowing for flexible interfacing with peripheral devices.
- Timers: Two 16-bit timers/counters and a watchdog timer, which are essential for time-sensitive operations.
- Communication: Integrated UART for serial communication, which is essential for networking applications.
- Analog-to-Digital Converter (ADC): A 10-bit ADC with 8 multiplexed inputs, enabling the microcontroller to process analog signals.
- Power Management: Multiple power-down modes for energy efficiency, including Idle and Power-down modes.
Applications:
The NXP P87LPC767BN is designed to address the needs of a multitude of applications requiring a balance between power efficiency and processing capability. Its applications include, but are not limited to, utility metering, consumer electronics, alarm systems, small-scale robotics, and embedded control systems.
Overall, the P87LPC767BN is a reliable and cost-effective solution for designers looking to implement a microcontroller with a rich feature set and low power consumption.