Allicdata Part #: | 568-11404-ND |
Manufacturer Part#: |
LPC1111JHN33/103E |
Price: | $ 0.99 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | IC MCU 32BIT 8KB FLASH 33HVQFN |
More Detail: | ARM® Cortex®-M0 LPC1100XL Microcontroller IC 32-Bi... |
DataSheet: | LPC1111JHN33/103E Datasheet/PDF |
Quantity: | 1000 |
260 +: | $ 0.89964 |
Program Memory Type: | FLASH |
Base Part Number: | LPC1111 |
Supplier Device Package: | 32-HVQFN (7x7) |
Package / Case: | 32-VQFN Exposed Pad |
Operating Temperature: | -40°C ~ 105°C (TA) |
Oscillator Type: | Internal |
Data Converters: | A/D 8x10b |
Voltage - Supply (Vcc/Vdd): | 1.8 V ~ 3.6 V |
RAM Size: | 2K x 8 |
EEPROM Size: | -- |
Series: | LPC1100XL |
Program Memory Size: | 8KB (8K x 8) |
Number of I/O: | 28 |
Peripherals: | Brown-out Detect/Reset, POR, WDT |
Connectivity: | I²C, SPI, UART/USART |
Speed: | 50MHz |
Core Size: | 32-Bit |
Core Processor: | ARM® Cortex®-M0 |
Part Status: | Active |
Packaging: | Tray |
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The LPC1111JHN33/103E is an embedded microcontroller characterized by its ability to process a range of digital and analog data. It is an ARM Cortex-M0 processor with 32KB Flash memory, and 2K byte of SRAM. This microcontroller includes onboard Flash and SRAM as well as on-chip debug circuitry. It is a very flexible device that can easily be used in a wide range of embedded applications.
The LPC1111JHN33/103E is one of the best microcontrollers for embedded systems. It has a Broadcom 52-bit Cortex-M0 processor that runs at up to 40MHz and provides complete and reliable data access. It also features an integrated voltage regulator with a wide range of operating voltages. Additionally, it has several power saving features for longer battery life.
The LPC1111JHN33/103E is a feature-rich microcontroller that is used in many embedded systems. Its features include integrated voltage regulators, on-chip debug circuitry, and multiple power saving features. Additionally, it has 32-bit general purpose I/O, Serial Interfaces, and an Enhanced Cortex-M0 processor. It is also capable of supporting real time operating systems (RTOS) for time-critical operations.
The main application field of the LPC1111JHN33/103E is control and automation. It can be used in industrial applications, military and security systems, healthcare, automotive and consumer electronics. It is especially useful in applications requiring a high degree of precision and accuracy.
The working principle of the LPC1111JHN33/103E is simple yet effective. First it executes an instruction cycle. This includes fetching the instruction code and decoding it. The instruction code is then executed and the result is stored in the associated registers. After that, the program counter is incremented and the next instruction is fetched and decoded. It continues to execute the instruction cycle until it encounters a branching instruction or a special purpose instruction.
The LPC1111JHN33/103E microcontroller is designed for low power applications and features an extensive power management system. It provides four power domains-cpu, peripheral, IO, and SRAM. Each of these power domains can be controlled independently, allowing the user to optimize power consumption. Additionally, the LPC1111JHN33/103E supports both static and dynamic power optimization, allowing the user to choose the most suitable solution for their application.
In summary, the LPC1111JHN33/103E is an embedded microcontroller that is used in various control and automation applications. It has a Broadcom 52-bit Cortex-M0 processor and features integrated voltage regulators, on-chip debug circuitry, and multiple power saving features. Additionally, it has 32-bit general purpose I/O, Serial Interfaces, and an Enhanced Cortex-M0 processor. It is also capable of supporting real time operating systems (RTOS) for time-critical operations. Its principle of operation is a simple instruction cycle that includes fetching, decoding and executing instructions, and the result is stored in the associated registers. Finally, it supports dynamic and static power optimization, allowing the user to choose the most suitable solution for their application.
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