
Allicdata Part #: | 568-13536-ND |
Manufacturer Part#: |
MCIMX6DP4AVT1AB |
Price: | $ 53.05 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | IC MPU I.MX6DP ENHAN 624FCBGA |
More Detail: | ARM® Cortex®-A9 Microprocessor IC i.MX6DP 2 Core, ... |
DataSheet: | ![]() |
Quantity: | 50 |
1 +: | $ 48.22650 |
10 +: | $ 45.81610 |
100 +: | $ 41.29500 |
Display & Interface Controllers: | HDMI, Keypad, LCD, LVDS, MIPI/DSI, Parallel |
Supplier Device Package: | 624-FCPBGA (21x21) |
Package / Case: | 624-FBGA, FCBGA |
Security Features: | ARM TZ, A-HAB, CAAM, CSU, SJC, SNVS |
Operating Temperature: | -40°C ~ 125°C (TJ) |
Voltage - I/O: | 1.8V, 2.5V, 2.8V, 3.3V |
USB: | USB 2.0 + PHY (3), USB 2.0 OTG + PHY (1) |
SATA: | SATA 3Gbps (1) |
Ethernet: | 10/100/1000 Mbps (1) |
Series: | i.MX6DP |
Graphics Acceleration: | Yes |
RAM Controllers: | LPDDR2, DDR3L, DDR3 |
Co-Processors/DSP: | Multimedia; NEON™ SIMD |
Speed: | 1.0GHz |
Number of Cores/Bus Width: | 2 Core, 32-Bit |
Core Processor: | ARM® Cortex®-A9 |
Part Status: | Active |
Packaging: | Tray |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Embedded technology has become a widespread phenomenon in our daily lives. There are many devices, both big and small, that rely on embedded technology for their functioning. The microprocessor is a key component of embedded technology. The MCIMX6DP4AVT1AB microprocessor is a device that has been designed for use in embedded devices. In this article, we will discuss the application field and working principle of the MCIMX6DP4AVT1AB microprocessor.
The MCIMX6DP4AVT1AB is a high-performance microprocessor that has been designed for use in embedded devices. The device is based on a 32-bit ARM Cortex-A9 processor and is manufactured using a 65nm process technology. This type of microprocessor provides a low-power solution that enables an embedded system to reach high performance levels without consuming too much energy. The device is also equipped with a 256KB primary L2 cache, 64KB of instruction and data caches, and a 64KB of shared L2 cache.
The MCIMX6DP4AVT1AB microprocessor can be used in a wide range of embedded applications. These applications include automotive systems, medical systems, industrial and military applications, networking and communication systems, and audio/video applications. The device is especially suitable for automotive applications due to its low power consumption and excellent performance. In addition, the device has been designed to offer increased reliability and extended thermal envelopes for applications that require robust and high-performance solutions.
The MCIMX6DP4AVT1AB microprocessor uses the ARM architecture, which is a Reduced Instruction Set Computer (RISC) architecture. This instruction set is characterized by simple instructions that can be executed very quickly. In addition, it is optimized for low-power applications while still providing high performance. This architecture also includes features like branch prediction, superscalar execution, multi-issue capability and virtual memory.
The working principle of the MCIMX6DP4AVT1AB microprocessor is based on the ARM architecture. In the ARM architecture, the system is composed of several components, including the processor core, the cache memory, the system memory, and the peripheral components. The processor core is responsible for executing instructions and performing calculations, while the cache and system memories are used to store data and instructions. The peripheral components control the input and output of data and allow for communication between different parts of the system.
The MCIMX6DP4AVT1AB microprocessor is a powerful and versatile device that can be used in a wide range of embedded applications. Its low power consumption and high performance make it an ideal choice for automotive, medical and industrial applications. Furthermore, its ARM-based architecture provides the necessary features for reliable and efficient operation of embedded systems. As such, it is an ideal choice for embedded applications that require robust and high-performance solutions.
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