LPC1751FBD80
Manufacturer Part Number: LPC1751FBD80 | Manufacturer / Brand: NXP Semiconductors |
Part of Description: SoC FPGA LPC1751FBD80 | Lead Free Status / RoHS Status: Lead free / RoHS Compliant |
Ship From: HK/Shen Zhen | Shipment Way: DHL/Fedex/TNT/UPS |
Datasheets: |
Product parameters
Manufacturer | NXP USA Inc |
RoHS | Details |
Type | Digital |
Number of I/O | 52 |
Package / Case | 80-LQFP |
Mounting Style | SMD/SMT |
Series | LPC17xx |
Brand | NXP Semiconductors |
Maximum Operating Temperature | -40C |
Minimum Operating Temperature | +85 C |
Speed | 100MHz |
Factory Pack Quantity | 119 |
Supplier Device Package | 80-LQFP (12×12) |
Package | Tray |
RAM Size | 8K x 8 |
Program Memory Type | FLASH |
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What is LPC1751FBD80?
Additional peripherals include up to 512 kB of flash memory, up to 64 kB of data memory, Ethernet MAC, USB device/host/OTG interface, 8-channel universal DMA controller, 4 UARTs, 2 CAN channels,
2 SSP controllers, SPI interface, 2 I2C bus interfaces, 2 in and 2 out I2S bus interfaces, 6 channel 12 bit ADC, 10 bit DAC, motor control PWM, orthogonal encoder interface, 4 general-purpose timers,
and 6 output universal PWM Ultra low power real-time clock (RTC) with independent battery power and up to 52 universal I/O pins.
LPC1751FBD80 Applications:
Industrial Automation:Control systems for manufacturing equipment, process automation, and industrial monitoring.
Motor Control:Motor control applications in appliances, robotics, and industrial machinery.
Consumer Electronics:Embedded control systems for home appliances, multimedia devices, and smart home applications.
Automotive Systems:Automotive control units, engine control modules, dashboard systems, and other automotive electronics.
Medical Devices:Embedded systems in medical equipment, patient monitoring devices, and diagnostic instruments.
Smart Energy:Applications in smart meters, energy monitoring systems, and power management.
Networking Equipment:Routers, switches, and other networking devices that require embedded control and communication capabilities.
Communication Systems:Embedded control for communication systems, including radio frequency (RF) modules, transceivers, and networking devices.
Embedded Computing:General-purpose embedded computing applications where a combination of processing power and peripheral integration is needed.
IoT (Internet of Things):Devices and systems that are part of the IoT ecosystem, such as sensor nodes, actuators, and IoT gateways.
Smart Sensors:Sensor nodes with processing capabilities for data acquisition and processing.
Security Systems:Embedded controllers for security systems, access control, and surveillance cameras.Instrumentation and Measurement:Measurement and control systems for scientific instruments,
data acquisition, and test equipment.
Avionics:Embedded control systems in aviation applications, including avionics and flight control systems.
Educational Platforms:Development boards and educational platforms for learning embedded systems and microcontroller programming.
Robotics:Control systems for robotic applications, including both industrial and hobbyist robotics.
Wireless Communication Devices:Devices requiring wireless communication capabilities, such as remote controls and wireless sensor networks.
Home Automation:Smart home applications that involve controlling and monitoring various home devices.