NXP LPC2104FBD48/01 Microcontroller
The NXP LPC2104FBD48/01 is a robust microcontroller that is part of the LPC2100 family, known for its high-performance ARM7TDMI-S core. This microcontroller is particularly suitable for embedded applications requiring a high level of control and I/O flexibility. It operates at a maximum frequency of 70 MHz, which provides a solid balance of processing power and energy efficiency for a variety of tasks.
Key Features:
- CPU: 32-bit ARM7TDMI-S processor, which delivers excellent performance with low power consumption.
- Memory: Comes with 128 KB of on-chip flash memory and 16 KB of static RAM, enabling efficient handling of complex code and data storage without the need for external memory components.
- Digital Peripherals: Includes multiple 32-bit timers, an improved Vectored Interrupt Controller, and up to 46 GPIO pins, providing extensive interfacing capabilities.
- Serial Communications: Features two 16C550 compatible UARTs, two I2C-bus interfaces, and two SPI/SSP serial interfaces, allowing for flexible connection with other devices and peripherals.
- Packaging: Available in a compact 48-pin LQFP package, making it suitable for space-constrained applications.
- Power Management: Supports multiple power-saving modes, including Idle and Power-down modes, which are essential for power-sensitive designs.
- System Control: Equipped with a System Control Block for system configuration, including the memory mapping control, external interrupt configuration, and power control.
- Debugging: Embedded In-System Programming (ISP) and In-Application Programming (IAP) capabilities through on-chip bootloader software, along with JTAG and serial debug support.
The LPC2104FBD48/01 is a versatile microcontroller that is well-suited for industrial control, medical systems, e-metering, security systems, and many other embedded applications. Its comprehensive feature set ensures developers can create high-performance, reliable, and cost-effective products with reduced development time and increased flexibility.