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LPC1113FBD48/302
+BOMARM Microcontrollers - MCU LPC1113FBD48/LQFP48//302/STANDARD MARKING * TRAY P
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Nhà sản xuấtNXP bán dẫn
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Ông. Phần #LPC1113FBD48/302
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Bảng dữ liệu LPC1113FBD48/302 DataSheet
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Description
Equivalent
Features
- Processor Core: ARM Cortex-M0, operating at up to 50 MHz.
- Memory: 8 KB of flash memory and 2 KB of SRAM.
- GPIO: 42 General-purpose I/O pins.
- Timers: Multiple timers including 16-bit and 32-bit options.
- Communication Interfaces: Includes one I2C, two SPI, and two UARTs for versatile connectivity.
- ADC: 8-channel 10-bit ADC for analog signal processing.
- Power: Low power consumption with various power-saving modes.
- Package: Available in an LQFP48 package.
- Debugging: Integrated with a Serial Wire Debug (SWD) interface.
This microcontroller is ideal for general-purpose applications requiring efficient performance with minimal power use, such as consumer electronics, industrial control, and simple motor control tasks.
Pinout
1. Pin Count: 48 pins.
2. Functions:
- Power Supply Pins: Includes VDD (power) and VSS (ground) pins.
- GPIO Pins: General-purpose input/output pins for interfacing with other devices.
- Communication Interfaces:
- UART: Universal asynchronous receiver-transmitter for serial communication.
- I2C: Inter-integrated circuit for connecting peripherals.
- SPI: Serial peripheral interface bus for high-speed communication.
- Analog Pins: ADC (analog-to-digital converter) inputs for reading analog signals.
- Clock Pins: For clock input and output functions.
- Reset Pin: For resetting the microcontroller.
- Debug Interface: SWD (Serial Wire Debug) for debugging and development.
The microcontroller is designed for low-power applications and is suitable for a wide range of embedded applications. For detailed pin assignments and functionalities, refer to the official datasheet from NXP.
Manufacturer
Application
1. Consumer Electronics: Used in remote controls, gaming peripherals, and home automation systems.
2. Industrial Control: Suitable for motor control, lighting systems, and sensor interfaces.
3. Automotive: Employed in dashboard interfaces and basic control systems.
4. Medical Devices: Utilized in devices requiring low power and efficient processing, like portable monitoring systems.
5. IoT Devices: Ideal for small, energy-efficient IoT nodes and wearables.
6. Educational Tools: Used in development boards and kits for learning embedded systems.
Its low power consumption and efficient performance make it versatile for various applications.