
Allicdata Part #: | MCIMX6L2DVN10AB-ND |
Manufacturer Part#: |
MCIMX6L2DVN10AB |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | IC MPU I.MX6SL 1.0GHZ 432MAPBGA |
More Detail: | ARM® Cortex®-A9 Microprocessor IC i.MX6SL 1 Core, ... |
DataSheet: | ![]() |
Quantity: | 1365 |
Ethernet: | 10/100 Mbps (1) |
Base Part Number: | MCIMX6 |
Additional Interfaces: | AC97, I²C, I²S, MMC/SD/SDIO, SPI, SSI, UART |
Supplier Device Package: | 432-MAPBGA (13x13) |
Package / Case: | 432-TFBGA |
Security Features: | ARM TZ, Boot Security, Cryptography, RTIC, Secure Fusebox, Secure JTAG, Secure Memory, Secure RTC, Tamper Detection |
Operating Temperature: | 0°C ~ 95°C (TJ) |
Voltage - I/O: | 1.2V, 1.8V, 3.0V |
USB: | USB 2.0 + PHY (3) |
SATA: | -- |
Series: | i.MX6SL |
Display & Interface Controllers: | Keypad, LCD |
Graphics Acceleration: | Yes |
RAM Controllers: | LPDDR2, LVDDR3, DDR3 |
Co-Processors/DSP: | Multimedia; NEON™ SIMD |
Speed: | 1.0GHz |
Number of Cores/Bus Width: | 1 Core, 32-Bit |
Core Processor: | ARM® Cortex®-A9 |
Part Status: | Active |
Packaging: | Tray |
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The MCIMX6L2DVN10AB is a general purpose microcontroller unit (MCU) integrated circuit used in a wide range of embedded systems. It is a 32-bit ARM Cortex-A7 processor core and is based on the NXP\'s i.MX 6 series multimedia applications processors. This processor provides industry-leading energy efficiency and features several integrated peripherals, such as Ethernet, CAN, and USB interfaces. The processor is well suited for use in a wide variety of applications due to its scalability capabilities and feature set. The MCIMX6L2DVN10AB can be used in automotive, industrial, and consumer electronics applications.
The MCIMX6L2DVN10AB is a powerful processor featuring an ARM Cortex-A7 core running at up to 1GHz, connected to a 256KB tightly coupled memory (TCMSRAM) and 1MB/2MB of on-chip SRAM. The processor supports both LPDDR2 and LPDDR3 RAM and can be connected to an off-chip DRAM, if needed. It has several features that make it suitable for low-power applications, such as power gating, dynamic clock gating, and programmable frequency governors. The processor also supports multiple standby modes for further power savings. The processor also supports the CAN, Ethernet, and USB 2.0 protocols.
The main application field for the MCIMX6L2DVN10AB is the automotive industry. The processor is well suited for automotive applications due to its low power requirements and scalability capabilities. It can be used for in-vehicle infotainment (IVI) systems, instrument clusters, and telematics. Additionally, the MCIMX6L2DVN10AB can be used in industrial or consumer electronic applications, such as smart meters, home automation devices, motor control systems, and industrial automation. The processor is also suitable for other applications requiring low power consumption and efficient execution.
The working principle of the MCIMX6L2DVN10AB is based on the ARM Cortex-A7 core. The processor runs a version of the Linux operating system and is compatible with RTOS-based systems. The core architecture consists of two pipelines (instruction and data), two levels of cache (level 1 and level 2), an integrated graphics controller and DMA controller, and an optional MultiCore debug module. The processor also features an array of I/O subsystems, such as the USB 2.0 and Ethernet ports, the CAN controller, timers, and UARTs. The processor is capable of running multiple tasks simultaneously and is capable of supporting advanced graphics applications and video encoding/decoding.
The MCIMX6L2DVN10AB is a powerful and efficient processor that can be used in a variety of applications requiring low power and high performance. The processor features an ARM Cortex-A7 core, 256KB tightly coupled memory, and several integrated peripherals and I/O subsystems. The processor is well suited for use in automobile, industrial, and consumer electronics applications. Its scalability capabilities and feature set make it an ideal processor for a variety of embedded systems.
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