MCIMX6D6AVT08AC Allicdata Electronics
Allicdata Part #:

MCIMX6D6AVT08AC-ND

Manufacturer Part#:

MCIMX6D6AVT08AC

Price: $ 31.47
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC MPU I.MX6D 852MHZ 624FCBGA
More Detail: ARM® Cortex®-A9 Microprocessor IC i.MX6D 2 Core, 3...
DataSheet: MCIMX6D6AVT08AC datasheetMCIMX6D6AVT08AC Datasheet/PDF
Quantity: 1000
300 +: $ 28.61080
Stock 1000Can Ship Immediately
$ 31.47
Specifications
Ethernet: 10/100/1000 Mbps (1)
Base Part Number: MCIMX6
Additional Interfaces: CAN, I²C, I²S, MMC/SD/SDIO, SAI, SPI, SSI, UART
Supplier Device Package: 624-FCBGA (21x21)
Package / Case: 624-FBGA, FCBGA
Security Features: ARM TZ, Boot Security, Cryptography, RTIC, Secure Fusebox, Secure JTAG, Secure Memory, Secure RTC, Tamper Detection
Operating Temperature: -40°C ~ 125°C (TJ)
Voltage - I/O: 1.8V, 2.5V, 2.8V, 3.3V
USB: USB 2.0 + PHY (4)
SATA: SATA 3Gbps (1)
Series: i.MX6D
Display & Interface Controllers: Keypad, LCD
Graphics Acceleration: Yes
RAM Controllers: LPDDR2, LVDDR3, DDR3
Co-Processors/DSP: Multimedia; NEON™ SIMD
Speed: 852MHZ
Number of Cores/Bus Width: 2 Core, 32-Bit
Core Processor: ARM® Cortex®-A9
Part Status: Not For New Designs
Packaging: Tray 
Description

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An embedded microprocessor is a microprocessor that is designed for use in special purpose applications. MCIMX6D6AVT08AC is one such microprocessor that has proven to have wide-ranging applications and capabilities. In this article, we will explore what this microprocessor is, what applications it can be used for, and its working principles.

MCIMX6D6AVT08AC is a low-power, high-performance processor built around an ARM Cortex-A9 dual-core processor and an ARM Cortex-M4 core with floating-point unit. This microprocessor is specifically designed for portable, power-efficient applications, such as consumer and industrial products. It is capable of running multiple operating systems and is well-suited for multimedia applications and high-performance computing tasks.

The MCIMX6D6AVT08AC has multiple applications, such as industrial automation, consumer electronics, and embedded systems. Its low-power design makes it perfect for battery-powered devices, such as handheld devices and portable medical equipment. It also features enhanced power saving features that can help extend battery life, such as low-power mode for always-on devices. In addition, its powerful processor can help render complex graphics, enabling it to be used for gaming devices, medical devices, and automotive applications.

The key features of MCIMX6D6AVT08AC are its wide range of peripherals, its robust memory architecture, and its optimized signal integrity. It features USB 3.0, PCIe, I2C, SPI, RTC, and CAN support, giving it more connection options than ever before. The architecture also provides real-time throughput and enables accelerated boot-up times. It also has 4Kx4K high-resolution video and audio output, enabling the processor to handle the latest multimedia applications. Finally, the signal integrity and on-die EMI protection allow longer lifecycles and lower interference.

From a working principle standpoint, the MCIMX6D6AVT08AC processor is designed to operate in a multi-core environment and can scale up to 2800 MHz. Its six cores are divided between the two main cores and four auxiliary cores, allowing it to handle multiple tasks simultaneously. The cores also feature power-saving and low-power features, such as dynamic power management, to boost battery life. The processor also offers full duplex communication, and its on-die EMI protection helps reduce radiation. Finally, its advanced memory traffic control unit is designed to deliver maximum throughput and performance.

Overall, MCIMX6D6AVT08AC is a powerful, low-power microprocessor designed for a number of applications. Its wide range of peripherals, enhanced power-saving features, low-power consumption, and robust memory architecture make it an ideal choice for battery-powered devices. Its on-die EMI protection and advanced signal integrity also allow it to operate in more challenging environments. Finally, its multi-core design and real-time throughput capabilities make it perfect for multimedia services and high-performance computing tasks.

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

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