Allicdata Part #: | MK51DN512CMC10-ND |
Manufacturer Part#: |
MK51DN512CMC10 |
Price: | $ 8.69 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | IC MCU 32BIT 512KB FLASH 121BGA |
More Detail: | ARM® Cortex®-M4 Kinetis K50 Microcontroller IC 32-... |
DataSheet: | MK51DN512CMC10 Datasheet/PDF |
Quantity: | 347 |
1 +: | $ 7.90020 |
10 +: | $ 7.25886 |
100 +: | $ 6.13059 |
Program Memory Type: | FLASH |
Base Part Number: | MK51DN512 |
Supplier Device Package: | 121-MAPBGA (8x8) |
Package / Case: | 121-LFBGA |
Operating Temperature: | -40°C ~ 85°C (TA) |
Oscillator Type: | Internal |
Data Converters: | A/D 37x16b, D/A 2x12b |
Voltage - Supply (Vcc/Vdd): | 1.71 V ~ 3.6 V |
RAM Size: | 128K x 8 |
EEPROM Size: | -- |
Series: | Kinetis K50 |
Program Memory Size: | 512KB (512K x 8) |
Number of I/O: | 78 |
Peripherals: | DMA, I²S, LCD, LVD, POR, PWM, WDT |
Connectivity: | I²C, IrDA, SPI, UART/USART, USB, USB OTG |
Speed: | 100MHz |
Core Size: | 32-Bit |
Core Processor: | ARM® Cortex®-M4 |
Part Status: | Active |
Packaging: | Tray |
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The MK51DN512CMC10 is an 8-bit microcontroller (MCU) core powered by the Freescale Kinetis K family. This particular MCU is based on the company’s ARM Cortex-M4 core and it offers a wide range of features and configurations for embedded applications. It is a low-power MCU that operates within a modest power budget, making it suitable for a wide range of projects and applications.
The MK51DN512CMC10 offers considerable embedded device performance and excellent power-saving features. It runs on an ARM Cortex-M4 processor at speeds of up to 50MHz and integrates a large set of analog, digital and communication peripherals. It also comes with a wide array of integrated development environments that support C/C++ and other high-level languages.
The MK51DN512CMC10 is specifically designed for energy-efficient applications. It combines a very low power baseline with high performance features and integrated peripherals. It is ideally suited for embedded applications such as data sampling, motor speed and position control and various other applications requiring low power performance and high dynamic range. At the same time, the MCU is capable of achieving up to 0.6 mA/MHz active power consumption, making it an excellent candidate for portable, power-sensitive designs.
The main application field of the MK51DN512CMC10 microcontroller is in embedded applications. It is ideal for projects where high performance, efficient power management and multiple connectivity options are a necessity. The MCU is usually integrated into complete systems, since it is capable of handling hardware input and output as well as gathering data and carrying out sophisticated computations. It provides a wide range of I/O options and peripherals, including interfaces like USB, CAN and 10/100 Ethernet. The sophisticated architecture of the processor makes it suitable for applications controlling sensors, actuators, and user-interfaces, including those with displays and buttons.
The MK51DN512CMC10 operates on a 32-bit ARM Cortex-M4 processor core and includes an extensive set of on-chip resources. The processor core offers an execution environment with 8/16/32-bit instructions and 16/32/64-bit data. The integrated peripherals include a total of 12 digital communication peripherals, 6 analog-to-digital converters, an on-chip oscillator, 4 Low-Power Comparator Modules, 4 Pulse Width Modulator Modules and 4 Quadrature Decoder Modules. The MCU also includes an external bus interface for connecting external memories and peripherals.
The working principle of the MK51DN512CMC10 microcontroller is quite simple. The device is programmed using the on-chip resources such as parallel or serial data transfer or software libraries and tools. The ARM Cortex-M4 core provides an efficient and reliable execution environment while the optimized architecture of the device enables a fast and efficient communication between the peripherals and memories. The on-chip resources can be configured to achieve the desired function, interaction and result. By combining the advanced on-chip resources, developers can create efficient, powerful and sophisticated embedded systems, even on extremely low power budgets.
The specific data is subject to PDF, and the above content is for reference
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