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IAN32

Intel® N150 x86 Embedded Motherboard

KEY FEATURES

  • 3.5” Form Factor (146mm x 102mm), x86 Embedded motherboard
  • Intel® Processor N150
  • 1 x SO-DIMM, DDR5 4800 MHz (Max. 16GB)
  • Integrated Dual 2.5 Gigabit Ethernet
  • 1 x USB 3.2 Type-C (USB 3.2 + DisplayPort)
  • 1 x M.2 Key M Slot for M.2 2280 NVME SSD. Optional 1 x 2.5" SATA III Storage
  • 12 V Single Voltage Power Input

    CERTIFICATIONS

  • FCC
    CE

IAN32

Intel® N150 x86 Embedded Motherboard
The IAN32 embedded motherboard features an Intel® Processor N50, offering efficient performance for industrial applications.

High-Performance Embedded Motherboard

The Intel® Processor N100 offers an upgraded computing performance with low power efficiency, making it ideal for embedded applications. Integrated into the IAN32 x86 embedded motherboard, it provides a versatile and reliable platform with a rich set of IoT features for seamless connectivity. Designed for stability and long-term performance, the IAN32 ensures efficient operation in demanding industrial environments.


 The IAN32 supports 9-36V power input and operates in -40 to +85°C conditions.

Rugged Power Design for Extreme Environments

The IAN32 supports a wide 9-36V power input range, ensuring flexibility across various industrial applications. It also features a 12V single voltage power input, simplifying system integration. Built for harsh conditions, its extended temperature tolerance of -40 to +85°C guarantees stable and reliable performance in the most demanding environments.


Equipped with a DDR5 4800 MHz SO-DIMM slot, the IAN32 supports up to 16GB memory for enhanced performance.

Next-Generation DDR5 Memory for Maximum Speed

Equipped with one SO-DIMM slot supporting DDR5 4800 MHz, this motherboard significantly boosts data processing efficiency. With up to 16GB capacity, it ensures smooth multitasking and enhanced system performance. High bandwidth and low latency make it ideal for real-time computing applications.


With dual 2.5G Ethernet ports, the IAN32 ensures high-speed, low-latency networking for industrial and IoT use.

Dual 2.5G Ethernet for Ultra-Fast Connectivity

The IAN32 features integrated dual 2.5 Gigabit Ethernet ports, providing high-speed, low-latency networking for industrial automation, IoT, and edge computing. Compared to traditional 1G LAN, it offers faster data transmission and improved reliability. Ideal for applications requiring seamless connectivity and real-time communication.


The IAN32 features an M.2 Key M slot supporting NVMe SSDs, providing fast and reliable data storage.

High-Speed M.2 NVMe Storage Expansion

Designed for fast and efficient data access, the IAN32 includes an M.2 Key M slot that supports M.2 2280 NVMe SSDs, ensuring high-performance storage. An optional M.2 2242 SATA III SSD offers flexibility for different storage needs. This configuration is perfect for AI processing, industrial control, and video analysis applications.

System Specification

Processor

Intel® Processor N150 6M Cache, up to 3.60 GHz

Memory

8GBDefault) (Default)
16GB (Optional)

Storage

128GB SSD(Default) (Default)
256GB SSD (Optional)
512GB SSD (Optional)
1TB (Optional)
2TB (Optional)
4TB
1 x SATA III for 2.5" SSD/HDD up to 2TB(Only available when NVME SSD is not present) (Optional)

Ethernet controller

2 x Intel® 2.5 Gigabit Ethernet Controller

Security

TPM 2.0

Operating System

Windows 11 IoT Enterprise (64 bit) (Optional)
Windows 11 Pro 64 bit (Optional)
Linux Ubuntu 24.04(Do not support Wake on Touch) (Optional)

WLAN

Support (Optional)

BT

Support (Optional)

IO Ports

USB Port

2 x USB3.2 Gen2x1 (Type-A)
1 x USB 3.2 Gen 2x1 Type C connector,support DP Alt. mode

Serial Port

1 x RS232/422/485 (Default RS232)

LAN

2 x 2.5 Giga LAN RJ45 Connector

Video

1 x HDMI 2.0b, Max resolution up to
4096x2160@60Hz (Optional)

Expansion Port

1 x M.2 2230 E-Key Slot (for Wi-Fi module)
1 x M.2 2230 E-Key Slot (for AI Acceleration Card, Only available when NVME SSD is not present)

Power Input

1 x 12V DC, 2.5φ DC jack

Internal IO Ports

Power input

1 x 2pin(1x2) for 12V DC in

Power output

1 x 2pin(1x2) blue wafer for 3.3V DC out
1 x 2pin(1x2) red wafer for 5V DC out
1 x 2pin(1x2) yellow wafer for 12V DC out

USB

2 x 8pin(2x4) for 4 x USB 2.0

Serial port

3 x 10pin(2x5) for RS232

Display

1 x 40pin DF13 connector for LVDS (Default)
1 x 30pin DF13 connector for eDP 1.4a, Max resolution up to 4096x2304@60Hz(1 lane) (Optional)

Backlight

1 x 7pin(1x7) for panel backlight

SATA

1 x SATA III(Only available when NVME SSD is not present)
1 x 8pin(2x4) for SATA power

DIDO

1 x 14pin(2x7) for Digital input/output

VR

1 x 3pin(1x3) for Digital panel backlight brightness control
1 x 3pin(1x3) VR/Software brightness switch jumper
1 x 3pin(1x3) PWM/DC brightness switch jumper
1 x 3pin(1x3) 3.3V/5V PWM Level switch jumper

Fan

1 x 3pin(1x3) for CPU Fan

OSD

1 x 10pin(2x5) for OSD control

Speaker

2 x 2pin(1x2) for Speaker

Backup battery

1 x 2pin(1x2) for RTC battery

Audio

1 x 12pin(2x6) for Line in/Line out/ Mic in

Certification

Certification

CE, FCC

Mechanical

Dimension

146 x 102 mm

Environment

Operating Humidity

10% to 95% RH, Non-Condensing

Operating Temperature

0°C to 60°C

Storage Temperature

-40°C to 70°C

Accessory

Accessory

1 x Installation Guide

Optional Accessory

1 x SATA cable (94H007Z070K0) (Optional)
1 x SATA Power cable (94HE08Z150E0) (Optional)
1 x COM cable (94G309E100E1) (Optional)
1 x 2-Port USB 2.0 Type A cable (94E808E080K0) (Optional)
1 x 12V 84W Adapter (922D084W12V1) (Optional)
1 x Power cord (Varies by country) (Optional)
1 x CPU Heatspreader (98K000A000N2) (Optional)
1 x Membrane (98K000A000N1) (Optional)
2 x Speaker (612620000007) (Optional)

Power

Power Rating

12V DC

  • What is the Winmate IAN32 embedded motherboard used for?

    The Winmate IAN32 embedded motherboard is designed for compact industrial control, IoT gateways, and edge systems that need modern connectivity in a small footprint. In Winmate product planning, board selection is usually based on the full system design rather than board size alone, so this platform is best evaluated together with installation space, interface demand, and long-term service requirements.

  • What processor does the IAN32 embedded motherboard use?

    The IAN32 embedded motherboard uses Intel® Processor N100 platform. This gives buyers a compact x86 platform for embedded and industrial workloads, while the final configuration should still be aligned with the application’s performance target, thermal conditions, and operating environment.

  • Why does the form factor of the IAN32 embedded motherboard matter in system design?

    In Winmate product planning, motherboard form factor refers to the board’s physical size, mounting layout, and expansion structure. For the IAN32 embedded motherboard, this directly affects enclosure design, port placement, cooling strategy, and upgrade flexibility. Smaller platforms help reduce installation footprint while still supporting essential I/O and reliable performance.

  • How much memory does the IAN32 embedded motherboard support?

    The IAN32 embedded motherboard supports DDR5 4800 memory up to 16GB. Memory selection should be matched to the intended workload, especially for applications involving multitasking, edge analytics, graphics, or data-intensive control processes.

  • What storage options are available on the IAN32 embedded motherboard?

    The IAN32 embedded motherboard supports M.2 2280 NVMe SSD storage, with optional SATA III 2.5-inch storage support depending on configuration. For Winmate-related industrial use cases, storage planning should consider boot speed, data logging needs, maintenance access, and whether the application benefits more from compact flash storage, additional drive capacity, or both.

  • What networking features does the IAN32 embedded motherboard provide?

    The IAN32 embedded motherboard provides dual 2.5 Gigabit Ethernet controllers. In industrial deployment, network choice affects system architecture, cable routing, and connected device strategy, so buyers should match the board’s Ethernet capability to their real communication and field integration requirements.

  • What display and I/O options are supported by the IAN32 embedded motherboard?

    The IAN32 embedded motherboard supports USB Type-C with DisplayPort Alt Mode, optional HDMI 2.0b, default LVDS, and optional eDP 1.4a, along with practical embedded I/O for industrial integration. This kind of flexibility matters because enclosure compatibility, connector clearance, display routing, and peripheral support all influence how easily the final system can be deployed and maintained.

  • Does the IAN32 embedded motherboard support expansion or wireless integration?

    Yes. The IAN32 embedded motherboard supports M.2 E-Key expansion for optional WLAN or AI acceleration modules. For compact industrial systems, expansion planning should balance footprint, thermal headroom, and future upgrade needs rather than focusing on connector count alone. It is a strong fit when buyers want a compact Intel N100 platform with next-generation memory, dual 2.5GbE networking, and USB Type-C display flexibility.

  • Which operating systems, power input, and platform protection features are available on the IAN32 embedded motherboard?

    The IAN32 embedded motherboard supports Windows 11 IoT Enterprise, Windows 11 Pro, and Ubuntu 22.04 with TPM 2.0 and uses 12V DC input. In Winmate product selection, power architecture should be matched to the deployment environment first, with attention to input stability, thermal design, security requirements, and the surrounding application ecosystem.

  • Is the IAN32 embedded motherboard suitable for industrial environments?

    Yes. The IAN32 embedded motherboard is specified for 0°C to 60°C operating temperature, -40°C to 70°C storage temperature, 10% to 95% non-condensing humidity, and CE/FCC compliance. With Winmate products, compatibility is evaluated at the system level: board dimensions, mounting pattern, I/O clearance, power input, and cooling space all matter. The right platform should therefore be selected according to ruggedness, operating environment, and application-specific integration needs.