AAEON MIX-PTLWV1 Panther Lake industrial mini-ITX motherboard offers quad DisplayPort, dual 10GbE, and more

AAEON MIX-PTLWV1 is an industrial mini-ITX motherboard based on Intel Core Ultra Series 3 “Panther Lake” processors with up to two 10GbE and two 2.5GbE RJ45 jacks, and four 4K-capable DisplayPort video outputs.

The motherboard also supports up to 128GB DDR5 C/SO-DIMM memory, M.2 NVMe SSD storage, optional WiFi and Bluetooth, and/or 4G LTE/5G cellular via M.2 modules, a PCIe Gen4 x8 slot for expansion, six serial interfaces, 12V-24V wide DC input, and more.

Industrial Panther Lake mini ITX motherbaord

AAEON MIX-PTLWV1 specifications:

  • SoC – Intel Panther Lake processor (PTL-H404/PTL-H484 families) with Intel Xe LPG graphics; TDP: 15 to 25W
  • System Memory – Up to 128GB via 2x 262-pin DDR5 C/SO-DIMM sockets up to 6400MHz (H404 SKU) or 7200MHz (H484 SKU)
  • Storage – M.2 2280 M-Key (PCIe Gen4 x4) socket for NVMe SSD
  • Display Interfaces
    • 4x DisplayPort 1.4 up to 4096 x 2160 @ 60Hz
    • 40-pin LVDS/eDP co-layout connector for
      • Default: 18/24 bit dual-channel LVDS up to 1920 x 1080 @ 60Hz
      • 4-channel eDP1.4 up to 4096 x 2160 @ 120Hz (by BOM)
    • eDP/LVDS Tcon IC voltage select
    • eDP/LVDS panel backlight voltage select (3.3V/5V/12V)
    • LVDS Inverter
    • Quad independent display support
  • Audio
    • Realtek ALC897 HD audio codec
    • Line-out jack
    • 4-pin header for 2W/4Ω speakers
  • Networking
    • 2.5GbE RJ45 port via Intel I226-V 2.5Gbps Ethernet controller
    • 2.5GbE RJ45 port via Intel I226-LM 2.5Gbps Ethernet controller
    • SKU 4L only – 2x 10GbE via Intel E610-XAT2 10Gbps Ethernet controllers
    • Optional WiFi and Bluetooth via M.2 Key-E socket
    • Optional 4G LTE/5G cellular via M.2 Key-B socket and SIM card slot
  • USB
    • 4x USB 3.2 Gen1 (5Gbps) Type-A ports
    • 2.0mm pitch 20-pin header with 2x USB 3.2 Gen 1 interfaces
  • Serial
    • 1x RS-232/422/485 box header (5V/12V/RI optional)
    • 5x RS-232 box headers
  • Expansion
    • PCIe Gen 5 x8 open edge slot (BoM optional on H484)
    • M.2 2230 E-Key socket (PCIe 4.0 x1/USB 2.0/CNVi)
    • M.2 3042/3052 B-Key socket (PCIe x1/USB 3.2 Gen 1) + Nano SIM Socket; default 3052 by BOM (optional)
    • 8-bit programmable DIO
  • Security – Infineon SLB9672 TPM2.0 chip
  • Misc
    • Watchdog Timer
    • AMI UEFI/BIOS on 256Mbit SPI Flash ROM
    • H/W Monitor – Temperature monitor on CPU/System, voltage monitor on Vcore/5V/3.3V/12V, fan monitor on chassis
    • I/O Chipset –Nuvoton NCT6126D
    • 4-pin CPU fan connector, 4-pin SYS fan connector
    • Wake-On-LAN (WoL) and PXE  support
    • Power State S4, S5
    • Lithium battery for BIOS
    • CMOS jumper
    • Front panel header
    • ME disable
  • Power Supply – 12 to 24V DC input via 4-pin connector; ATX/AT mode
  • Dimensions – 170 x 170 mm (mini-ITX form factor)
  • Weight – TBC
  • Temperature Range – Operating: 0 to 60°C; storage: -40 to 85°C
  • Operating Humidity – 60°C @ 90% relative humidity, non-condensing
  • Certifications – CE & FCC (Class A)

AAEON MIX-PTLWV1

AAEON provides support for Windows 11 64-bit and Ubuntu 24.04 with Linux kernel 6.8 for the board. Note that there are two SKUs: MIX-PTLWV1-A10-4L and MIX-PTLWV1-A10-2L, with the only difference being the two 10GbE RJ45 ports on the 4L model.

While the MIX-PTLWV1 is AAEON’s first industrial motherboard powered by the Intel Core Ultra Series 3 “Panther Lake” processor family, Avalue previously introduced the EMX-PTLP thin mini-ITX motherboard with up to an Intel Core Ultra 7 358H SoC, and BCM Advanced Research is working on the MX-PTL motherboard with similar features.

Intel Panther Lake mini-ITX motherboard block diagram
Block diagram

AAEON did not provide price information for the MIX-PTLWV1 motherboard, and the product page is still marked as “preliminary”. It will probably launch soon, as the Taiwanese company will be demonstrating the Panther Lake board at the ITS America Conference & Expo 2026 on June 9-12, and use it or another Panther Lake platform, for two demos, one leveraging “smart intersection technology” combined with Vision Language Models (VLMs) for advanced traffic event monitoring, and the other relying on agentic AI for advanced route planning.

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