NXP LPC2119FBD64/01 Microcontroller
The NXP LPC2119FBD64/01 is a robust microcontroller that is part of the LPC2100 family, designed to offer a balanced performance for embedded applications. This microcontroller is built around a 16/32-bit ARM7TDMI-S CPU core with real-time emulation and embedded trace support, making it ideal for applications that require high-speed computing and accurate real-time monitoring.
Key Features:
- CPU: 16/32-bit ARM7TDMI-S with 128-bit wide interface/accelerator, enabling 32-bit code execution at the maximum clock rate.
- Memory: 128 KB of on-chip Flash program memory with In-System Programming (ISP) and In-Application Programming (IAP) capabilities, alongside 16 KB of RAM for efficient data storage and manipulation.
- Frequency: Up to 60 MHz maximum CPU clock available from the onboard Phase-Locked Loop (PLL).
- Debugging: EmbeddedICE RT and Embedded Trace interfaces offer comprehensive debugging features.
- I/O: Up to 45 of 5 V tolerant fast general purpose I/O pins in a tiny LQFP64 package.
- Timers: Multiple 32-bit timers, including an external event counter, a watchdog timer, and a PWM unit for versatile time-related operations.
- Serial Interfaces: Includes two 16C550-compliant UARTs, two Fast I²C-bus interfaces, SPI and SSP with buffering and variable data length capabilities.
- ADC: 10-bit A/D Converter with input multiplexing among 8 pins.
- Power Control: Processor wake-up from Power-down mode via an external interrupt or BOD.
Applications:
The LPC2119FBD64/01 is suitable for a wide range of applications due to its versatile feature set. It's commonly used in industrial control systems, protocol converters, voice recognition, communication gateways, and embedded soft modems. Other applications include system management, medical systems, e-commerce, security systems, and GPS receivers.
Package and Quality:
This microcontroller comes in a compact LQFP64 package, ensuring a small footprint on PCBs. It is manufactured under NXP's quality control processes, ensuring high reliability and performance for critical applications.