
YXIPC-E201 series
Model: YXIPC-E201
System Core Specifications
- •CPU: Intel Apollo Lake SoC Processor
- •Memory: LPDDR4(Max. 8GB)
- •Networking: 2 x Intel i225-V GbE LAN
- •Display: 1 x HDMI
- •Operating System: Windows 10, centos 7/8, ubuntu 18.04/20.04/22.04
Product





System Features
Specifications_1
| Specs | Item | E201 Series |
|---|---|---|
| Processor System | CPU | Intel® Pentium-N4200, Celeron-N3350/J3355/ J3455 |
| BIOS | AMI UEFI BIOS at 64 Mb | |
| Memory | Sockets | LPDDR4 |
| Capacity | Max. 8 GB | |
| Graphics | Controller | Intel Gen9 Graphic engine |
| Features | DirectX 12.0, OpenGL 4.3, OpenCL 2.0, HW Decode: H.264, MPEG2, VC-1, WMV9, H.265/HEVC, VP8, JPEG/MJPEG | |
| External IO | HDMI | 1 x HDMI, resolution up to 3840 x 2160 @ 30Hz |
| Ethernet | 2 x Intel i225-V 2.5GbE LAN | |
| COM | 1 x RS-232, 1 x RS-485 | |
| USB | 3x USB3.0, 1 x USB2.0 | |
| SIM | 1 x Micro SIM | |
| CAN | 2 x CANBus | |
| DIO | 4 x DI, 4 x DO | |
| Power DC Jack | Phoenix 4pin terminal | |
| Expansion | M.2 E-Key | 1 x M.2 2242Support Wi-Fi |
| M.2 B-Key | 1 x M.2 3052 Support 4G/5G | |
| M.2 M-Key | 1 x M.2 2280 SATA3.0 | |
| SATA 3.0 | 1 | |
| LED | LED Lights | Power, SATA, USER1, USER2 |
| Power | Power Type | 24V/2.5ADC Input |
| Others | Watchdog | 255-level timer, resettable |
| OS | Operation system | Windows 10, centos 7/8, ubuntu 18.04/20.04/22.04 |
| Physical Characteristics | Dimensions | 172 x 125 x 62.5 mm |
| Construction | AluminiumAlloy | |
| Mounting | Wall Mounting/ Din Rail Clip | |
| Certification | EMC | CE, FCC |
| Environment | Operating Temperature | 0 ~ 60 °C(32~140°F) |
| Storage Temperature | -40°C ~ 85°C(-40~185°F) | |
| Relative Humidity (Operating) | 95% @ 40 °C (non-condensing) | |
| Relative Humidity(Storage) | 95% @ 60 °C (non-condensing) |

Technical
| Hardware & Core System | |
|---|---|
| Processor / CPU | Intel Apollo Lake SoC Processor |
| System Memory | LPDDR4(Max. 8GB) |
| Network / LAN | 2 x Intel i225-V GbE LAN |
| Display Output | 1 x HDMI |
| I/O & Physical Construction | |
| Mechanical / Housing | Industrial Metal Chassis |
| Operating System | Windows 10, centos 7/8, ubuntu 18.04/20.04/22.04 |
Deployment

Frequently Asked Questions
Technical specifications, OS compatibility, and deployment details for this platform
Which operating systems are supported on YXIPC-E201?
YXIPC-E201 supports Windows 10, centos 7/8, ubuntu 18.04/20.04/22.04. Yantronic provides board support packages (BSP), driver validation, and long-term OS maintenance for mission-critical automation and edge AI workloads.
How does YXIPC-E201 handle thermal management and harsh industrial environments?
Engineered with an industrial-grade passive heatsink and rugged chassis, YXIPC-E201 operates reliably across -20°C to 60°C. The fanless, sealed design prevents dust ingress, withstands mechanical shock and vibration, and ensures continuous 24/7 operation.
What are the power input requirements and connectivity options for YXIPC-E201?
YXIPC-E201 is equipped with a wide-range 9–36V DC input featuring over-voltage, over-current, and reverse polarity protections, along with 2 x Intel i225-V GbE LAN and 1 x HDMI for seamless integration into factory cabinets and automated machinery.
Does Yantronic support OEM/ODM customization and long lifecycle availability for YXIPC-E201?
Yes. Yantronic offers full OEM/ODM customization services for YXIPC-E201, including custom BIOS configurations, additional I/O expansion daughterboards, private-label branding, and enclosure modifications, backed by a guaranteed 5 to 7+ year product lifecycle commitment.
Technical Selection Guides
Engineering references and whitepapers relevant to this hardware platform
How Fanless PCs Manage Heat: The Engineering of Passive Cooling
Thermal management is the defining challenge of industrial computing. Learn how to calculate thermal headroom and why component-level conduction is the key to 24/7 reliability.
Vibration Resistant Industrial PCs: Engineering for Mechanical Stress
Vibration is the primary cause of intermittent connection failures and structural fatigue. Discover how to interpret MIL-STD-810H random vibration profiles and specify systems for high-G environments.



