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NXP MCIMX6QP7CVT8ABRoHS

Manufacturer
MPN
MCIMX6QP7CVT8AB
LCSC Part #
C1555395
Packaging
FCBGA-624
Customer #
Key Attributes
ARM Cortex-ASeries 800MHz FCBGA-624 Microprocessors RoHS
Datasheetpdf iconNXP MCIMX6QP7CVT8AB
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QtyUnit PriceTotal Amount
1+$ 77.7954$ 77.80
30+$ 75.1357$ 2254.07
Standard Packaging60/Full Tray
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Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Embedded/Microprocessors
ManufacturerNXP
PackagingFCBGA-624
Features-
CPU CoreARM Cortex-ASeries
CPU Maximum Speed800MHz

Introduction

AI Translation

The i.MX 6DualPlus/6QuadPlus processors offer the highest levels of graphics processing performance in the i.MX 6 series family and are ideally suited for graphics intensive applications such as reconfigurable instrument clusters and high performance infotainment systems. The i.MX 6DualPlus/6QuadPlus processors feature advanced implementation of the quad Arm Cortex-A9 core, which operates at speeds up to 1 GHz. They include updated versions of the 2D and 3D graphics processors, 1080p video processing, and integrated power management. Each processor provides a 64-bit DDR3/DDR3L/LPDDR2 memory interface and a number of other interfaces for connecting peripherals, such as WLAN, Bluetooth, GPS, hard drive, displays, and camera sensors. Graphics rendering for Human Machine Interfaces (HMI) Video processing and display Multilevel memory system—The multilevel memory system of each processor is based on the L1 instruction and data caches, L2 cache, and internal and external memory. The processors support many types of external memory devices, including DDR3, DDR3L, LPDDR2, NOR Flash, PSRAM, cellular RAM, NAND Flash (MLC and SLC), OneNAND, and managed NAND, including eMMC up to rev 4.4/4.41. Smart speed technology—The processors have power management throughout the device that enables the rich suite of multimedia features and peripherals to consume minimum power in both active and various low power modes. Smart speed technology enables the designer to deliver a feature-rich product, requiring levels of power far lower than industry expectations. Dynamic voltage and frequency scaling—The processors improve the power efficiency of devices by scaling the voltage and frequency to optimize performance. Multimedia powerhouse—The multimedia performance of each processor is enhanced by a multilevel cache system, Neon MPE (Media Processor Engine) co-processor, a multi-standard hardware video codec, 2 autonomous and independent image processing units (IPU), and a programmable smart DMA (SDMA) controller. Powerful graphics acceleration—Each processor provides three independent, integrated graphics processing units: an OpenGL ES3.0 3D graphics accelerator with four shaders (up to 198 MTri/s and OpenCL support), 2D graphics accelerator, and dedicated OpenVG1.1 accelerator. Interface flexibility—Each processor supports connections to a variety of interfaces: LCD controller for up to four displays (including parallel display, HDMI1.4, MIPI display, and LVDS display), dual CMOS sensor interface (parallel or through MIPI), high-speed USB on-the-go with PHY, high-speed USB host with PHY, multiple expansion card ports (high-speed MMC/SDIO host and other), 10/100/1000 Mbps Gigabit Ethernet controller, and a variety of other popular interfaces (such as UART, I²C, and I²S serial audio, SATA-II, and PCIe-II). Automotive environment support—Each processor includes interfaces, such as two CAN ports, an MLB150/50 port, an ESAI audio interface, and an asynchronous sample rate converter for multichannel/multisource audio. Advanced security—The processors deliver hardware-enabled security features that enable secure e-commerce, digital rights management (DRM), information encryption, secure boot, and secure software downloads. Integrated power management—The processors integrate linear regulators and internally generate voltage levels for different domains. This significantly simplifies system power management structure.

Applications

AI Translation
  • Reconfigurable instrument cluster
  • High performance infotainment
  • Graphics rendering for Human Machine Interfaces (HMI)
  • Video processing and display