The LPC1113FHN33/302,5 is a low-cost, low-power microcontroller (MCU) from NXP Semiconductors, designed for a variety of embedded applications. It belongs to the LPC1100 series, which is based on the ARM Cortex-M0+ processor.
Description:
The LPC1113FHN33/302,5 is a 32-bit microcontroller featuring an ARM Cortex-M0+ core with a clock speed of up to 50 MHz. It is manufactured using a 0.33μm CMOS process and is available in a 32-pin LQFP package.
Features:
- ARM Cortex-M0+ processor with a clock speed of up to 50 MHz.
- 16 kB to 64 kB of on-chip Flash memory for program storage.
- 2 kB to 8 kB of on-chip RAM for data storage.
- Flexible clock management system with an internal RC oscillator, external oscillator, or clock input options.
- Power management features, including a low-power sleep mode and a power-down mode for energy efficiency.
- Up to 16 general-purpose I/O (GPIO) pins with various functions, such as PWM, ADC inputs, or communication interfaces.
- On-chip peripherals, including a UART, SPI, and I2C interface for communication with external devices.
- Up to 8-channel 10-bit ADC for analog input conversion.
- Programmable watchdog timer for system monitoring and reset functionality.
- Support for JTAG and SWD debugging interfaces.
Applications:
The LPC1113FHN33/302,5 microcontroller is suitable for a wide range of embedded applications, including but not limited to:
- Industrial control and automation systems.
- Medical devices and equipment.
- Consumer electronics, such as smart home devices and portable gadgets.
- Battery-powered devices, where low power consumption is critical.
- Sensor networks and IoT devices, due to its low-power and low-cost characteristics.
- Human Interface Devices (HIDs), such as keyboards and mice.
- Basic motor control applications.
- Simple data acquisition and signal processing tasks.
The LPC1113FHN33/302,5's combination of low cost, low power consumption, and a rich set of features make it an attractive choice for developers looking to implement efficient and reliable embedded systems.