LPC11E14FBD48/401, Allicdata Electronics
Allicdata Part #:

568-8584-ND

Manufacturer Part#:

LPC11E14FBD48/401,

Price: $ 2.28
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC MCU 32BIT 32KB FLASH 48LQFP
More Detail: ARM® Cortex®-M0 LPC11Exx Microcontroller IC 32-Bit...
DataSheet: LPC11E14FBD48/401, datasheetLPC11E14FBD48/401, Datasheet/PDF
Quantity: 2968
1 +: $ 2.06640
10 +: $ 1.85787
100 +: $ 1.52214
500 +: $ 1.29575
1000 +: $ 1.09280
Stock 2968Can Ship Immediately
$ 2.28
Specifications
Program Memory Type: FLASH
Base Part Number: LPC11E
Supplier Device Package: 48-LQFP (7x7)
Package / Case: 48-LQFP
Operating Temperature: -40°C ~ 85°C (TA)
Oscillator Type: Internal
Data Converters: A/D 8x10b
Voltage - Supply (Vcc/Vdd): 1.8 V ~ 3.6 V
RAM Size: 10K x 8
EEPROM Size: 4K x 8
Series: LPC11Exx
Program Memory Size: 32KB (32K x 8)
Number of I/O: 40
Peripherals: Brown-out Detect/Reset, POR, WDT
Connectivity: I²C, Microwire, SPI, SSI, SSP, UART/USART
Speed: 50MHz
Core Size: 32-Bit
Core Processor: ARM® Cortex®-M0
Part Status: Active
Packaging: Tray 
Description

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Application Field of the LPC11E14FBD48/401

The LPC11E14FBD48/401 is a low-power, low-cost, highly integrated 8-bit microcontroller (MCU) with embedded Flash memory and various peripherals such as I/O pins, serial communication and timer modules. It is suitable for a wide range of embedded system applications, including automotive and industrial control, monitoring and automation solutions, or applications in consumer electronics such as smart appliances and home automation. Various modules and peripherals with advanced configuration are available for linking with other devices or subsystems. This highly integrated MCU also includes a complete set of features and peripherals like USART, I2C, ADC, DAC and Timer, making it an ideal choice for a wide range of industrial, automotive and home automation applications. With the internal Flash memory, up to 47kb of program code can be stored directly on the MCU, making it suitable for applications that require high-level code efficiency and fast execution. The device also features low-power sleep mode, which reduces power consumption by up to 95%, allowing it to extend battery life and increase device performance.

Working Principle of the LPC11E14FBD48/401

The LPC11E14FBD48/401 is an 8-bit microcontroller with a built-in flash memory and various other peripherals and modules. The device has an internal subsystem that controls the data and code stored inside the flash memory and is used to fix the stages of operation, which is known as the Harvard Architecture. Through the Harvard Architecture, it is possible to speed up data processing. In essence, the LPC11E14FBD48/401 can enable faster data transfer due to the Harvard Architecture and its low-power sleep mode capabilities.The Harvard Architecture has two independent buses (representation of wires) which connect the processor to the memory. The first data bus is used to read instructions, while the second is used to read and write data to be processed. The data bus is a low latency data bus, which allows the processor to access data quickly. The Harvard Architecture helps to divide the processor operations, which allows it to read instructions faster and carry out processes that are more efficient.The device has two low-power sleep modes, which are designed to reduce power consumption and extend battery life. These two sleep modes are Deep Sleep and Power-down mode, each providing its own benefits in regards to the microcontroller’s power consumption. When Deep Sleep mode is enabled, the clock is disabled, but all status, registers and settings are preserved. Whereas when Power-down mode is enabled, the device is completely reset and all settings and states are cleared. The advantage of this is that the device can be quickly reactivated and start up from a low-power state.

In summary, the LPC11E14FBD48/401 is a low-power, low-cost 8-bit microcontroller suitable for a variety of applications due to its integrated Flash memory, various peripherals and deeply-embedded sleep modes. By implementing the Harvard Architecture, the device can speed up data processing and enable faster data transfer. The two low-power sleep modes offered by the device provide a great balance between power consumption and device performance.

The specific data is subject to PDF, and the above content is for reference

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