INTX86-ODM01
X86 Mother Board


Features
Custom Design
2GB DRAM on board
Intel® Core™
2 x USB2.0
Expandability
MIC IN & LINE OUT
SPEC
Model Name | INTX86-ODM01 | |
---|---|---|
System | Processor | Intel Atom® Processor E3900 Series, BGA 1296 |
Memory | Single Channel DDR3L SODIMM 2G/4G/8G DDR3L memory on board Total memory up to 8GB |
|
BIOS | AMI SPI 128Mbit (support UEFI/legacy mode) | |
Graphics | Controller | Intel® HD Graphics |
Feature | OpenGL 4.2, Direct X 11.1, OpenCL 1.2, OGL ES 3.0 HW Decode: H.264, MPEG2, VC1, VP8, H.265, MPEG4 HW Encode: H.264, MPEG2, MPEG4 |
|
Display | 1 x DP++/HDMI (auto-detection) 1 x VGA/DP(opt.) DP: resolution up to 4096x2160 @ 60Hz HDMI: resolution up to 3840x2160 @ 30Hz VGA: resolution up to 1920x1200 @ 60Hz |
|
Dual Display | DP++/HDMI + VGA/DP(opt.) | |
Storage | eMMC | 1 x 8G/16G/32G/64G (opt.) |
Expansion | Interface | 1 x Full-size mSATA (SATA, USB is available by BOM option) 1 x Full-size Mini PCIe (USB2.0/LPC/PCIe, PCIe is available for config. with 4 LAN) 1 x M.2 (2230 E Key) (PCIe/USB2.0) |
Ethernet | Controller | 4 x Intel® I211AT PCIe, co-lay with I210IT (10/100/1000Mbps) |
Rear I/O | Ethernet | up to 4 x GbE (RJ-45) (1 x GbE colay 2 x USB 3.1 Gen1) |
Serial | 4 x RS-232/422/485 (1 x RS-232/422/485 colay 1 x 8-bit DIO by jumper setting) | |
USB | up to 4 x USB 3.1 Gen1 (2 x USB 3.1 Gen1 colay 1 x GbE) | |
Display | 1 x DP++/HDMI (auto-detection) 1 x VGA/DP(opt.) |
|
Internal I/O | USB | 2 x USB 2.0 (2.0mm pitch) |
SATA | 1 x SATA 3.0 (up to 6Gb/s, support SSD only) 1 x SATA Power |
|
DIO | 1 x 8-bit DIO | |
Other I/O | 1 x Front Panel | |
Security | TPM | fTPM2.0 |
Power | Type | 9~36V DC input |
Connector | DC Jack | |
Consumption | Typical: E3950:12V, 5.88Watt Max.: E3950:12V, 18.84Watt |
|
RTC Battery | CR2032 Coin Cell, link main board with cable | |
OS Support | Microsoft | Windows 10 IoT Enterprise 64-bit Windows 7 (/WES7) 32/64-bit (project support only) |
Linux | Linux |
Description
Under X86 structure, it is available for high expandability, optimized operating system, and multiple software capability. Reduce the cost and shorten the time to market.
With a wild temperature ranging, the board can maintain its performance stability and reliability.
In the general use-case, high quality X86 structure can be the best choice.
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