The NXP P87LPC761BN is a highly integrated microcontroller that belongs to the LPC family, known for its low power consumption and high performance. This microcontroller is particularly suitable for a wide range of industrial and consumer applications where efficiency and reliability are key requirements.
Key Features
- Core: The P87LPC761BN is built around a high-performance 80C51 processor core, which operates at a clock frequency of up to 20 MHz, providing a robust platform for embedded applications.
- Memory: It comes equipped with 4 KB of on-chip OTP (One-Time Programmable) memory, allowing for secure and reliable storage of your application code.
- I/O Ports: The device offers 21 general-purpose I/O pins, giving developers flexibility in interfacing with various peripherals and sensors.
- Timers: Two 16-bit timers/counters are included, which can be utilized for a variety of timing and counting functions critical in control applications.
- Communication: For communication purposes, the microcontroller features a serial communication interface, facilitating easy data exchange with other devices in the system.
- Analog-to-Digital Converter: An 8-bit A/D converter with multiple channels enables the microcontroller to process analog signals, making it ideal for sensor-based applications.
- Power Management: The P87LPC761BN offers several power-saving modes, including Idle and Power-down modes, which significantly reduce power consumption and extend battery life in portable applications.
Applications
The versatile feature set of the P87LPC761BN makes it an excellent choice for a variety of applications such as:
- Industrial control systems
- Battery-powered devices
- Home automation
- Automotive components
- Consumer electronics
Package and Quality
The NXP P87LPC761BN is available in a 20-pin DIP (Dual In-line Package) which is suitable for through-hole mounting, making it easy to integrate into a wide range of product designs. Additionally, the product meets stringent quality standards, ensuring reliable performance in demanding environments.