Embedded Computing INTX86-ODM01 | Faless PCs - NETIO Technologies
NETIO Technologies
NETIO Technologies

Embedded Computing INTX86-ODM01 | Faless PCs

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
SystemProcessorIntel Atom® Processor E3900 Series, BGA 1296
MemorySingle Channel DDR3L SODIMM
2G/4G/8G DDR3L memory on board
Total memory up to 8GB
BIOSAMI SPI 128Mbit (support UEFI/legacy mode)
GraphicsControllerIntel® HD Graphics
FeatureOpenGL 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
Display1 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 DisplayDP++/HDMI + VGA/DP(opt.)
StorageeMMC1 x 8G/16G/32G/64G (opt.)
ExpansionInterface1 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)
EthernetController4 x Intel® I211AT PCIe, co-lay with I210IT (10/100/1000Mbps)
Rear I/OEthernetup 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)
USBup to 4 x USB 3.1 Gen1 (2 x USB 3.1 Gen1 colay 1 x GbE)
Display1 x DP++/HDMI (auto-detection)
1 x VGA/DP(opt.)
Internal I/O
USB2 x USB 2.0 (2.0mm pitch)
SATA1 x SATA 3.0 (up to 6Gb/s, support SSD only)
1 x SATA Power
DIO1 x 8-bit DIO
Other I/O1 x Front Panel
SecurityTPMfTPM2.0
PowerType9~36V DC input
ConnectorDC Jack
ConsumptionTypical: E3950:12V, 5.88Watt
Max.: E3950:12V, 18.84Watt
RTC BatteryCR2032 Coin Cell, link main board with cable
OS SupportMicrosoftWindows 10 IoT Enterprise 64-bit
Windows 7 (/WES7) 32/64-bit (project support only)
LinuxLinux

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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