eInfochips i.MX6 SOM is a high speed, power-efficient and cost-effective solution based on Freescale’s latest series of i.MX application processors. A highly configurable SOM, i.MX6 supports the complete line of i.MX6 series of processor from Solo to Quad Core along with expandable memory options that support a wide range of applications. These highly flexible and configurable architecture provide design engineers the capability to create complex and integrated embedded systems in short time duration.
Feature | EIC-iMX6-Single | EIC-iMX6-Dual |
Processor | IMX6 solo (single core) processor (Upgradeable to dual/dualite /quad core family processors | IMX6 Dual core processor (Upgradeable to dualite /quad core family processors) |
System Memory(DRAM) | 256MBx32 DDR3SDRAM (256MB = 2Gb = 1Gb x 16 x2 SDRAM chips) | 1GMBx64 DDR3SDRAM (1GB = 8Gb =2Gb x 16 x 4 SDRAM chips) |
Program Memory(NAND) | 256 M Byte x8 NAND flash | 512M Byte x8 NAND Flash |
Other memory | No | 4MB SPI NOR Flash |
Ethernet | 10/100/1000 Gbit Ethernet | 10/100/1000 Gbit Ethernet |
RTC | Internal IMAX RTC | Internal RTC only |
USB | On board USB OTG support | On board USB OTG support |
JTAG & UART | On board Debug UART | On board Debug UART |
Micro SD card | On board Micro SD card (upto 32GB SDHC card,upto 2TB SDXC card) | On board Micro SD card (upto 32GB SDHC card,upto 2TB SDXC card) |
Standard SODIMM for peripherals | 200 pin SO-DIMM | 200 pin SO-DIMM |
Interface on SODIMM connector | 2xLVDS, 1xHDMI, 1xUSB Host, 1xUSB OTG, Gbit Ethernet, PCIe, 2xSPI, 2xI2C, GPIO, LCD, 2xUART, Audio, MIPI DSI(Display), MIPI CSI(Camera), Parallel Camera, Keypad, 2xCAN, S/PDIF | 2xLVDS, 1xHDMI, 1xUSB Host, 1xUSB OTG, Gbit Ethernet, SATA, PCIe, 2xSPI, 2xI2C, GPIO, LCD, 2xUART, Audio, MIPI DSI(Display), MIPI CSI(Camera), Parallel Camera, Keypad, 2xCAN, S/PDIF |
Operating System | Linux | Linux / Android |
Input Voltage Range | 3.3V-4.2V | 3.3V-4.2V |
Power consumption | 4V @ 2Amax | 4V @ 1.5A max |
Operating Temperature | 0°C to 70°C | 0°C to 70°C |
i.MX6 SOM Block Diagram