Avalue · System komputerowy

ACS-ADN2C

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Producent: Avalue

Najważniejsze informacje

  • Intel Alder Lake-N series processor, fanless
  • 1 x DDR5 4800MHz SO-DIMM, up to 16GB
  • Default 128GB M.2 2242 Key-M SSD + M.2 Key-E 2230 slot
  • Dual HDMI output, 4096x2160 @ 60Hz (Intel UHD Graphics)
  • 4 x USB 3.0, 2 x RS-232 (DB9)
  • Dual Realtek 8111H Gigabit Ethernet
  • Line-out + Mic-in audio
  • Single 12V DC input (36W adapter)
  • Ultra-compact 129 x 129 x 39 mm, Windows 10 / Linux

Opis produktu

The Avalue ACS-ADN2C is an ultra-compact fanless computing system built on the Intel Alder Lake-N series processor, pairing low-power efficiency with a 129 x 129 x 39 mm chassis ideal for space-constrained industrial, kiosk, and edge deployments.

It ships with a DDR5 4800MHz SO-DIMM (up to 16GB) and a default 128GB M.2 2242 Key-M SSD, with an additional M.2 Key-E 2230 slot for wireless expansion.

Despite its tiny footprint, the ACS-ADN2C offers practical industrial I/O: dual HDMI outputs (each 4096x2160 @ 60Hz via Intel UHD Graphics), four USB 3.0 ports, two RS-232 (DB9) COM ports, dual Gigabit Ethernet (Realtek 8111H), and line-out/mic-in audio.

A single 12V DC input (36W) and a 0°C to 40°C operating range make it a simple, reliable drop-in compute node running Windows 10 or Linux.

Dane techniczne

Procesor

Intel® Alder lake N series Processor

Pamięć systemowa

1 x SO-DIMM DDR5 4800MHz up to 16GB

M.2

1 x M.2 Key-E 2230

M.2

Default 1 x 128GB M.2 2242 Key M

Przycisk zasilania

1 x PWR BTN

Port COM

2 x RS232(DB9)

Audio

1 x Line-Out

1 x Mic-in

Wejście AC/DC

1 x DC12V

USB

4 x USB 3.0

Port LAN

2 x RJ45

HDMI

2 x HDMI

Chipset graficzny

Intel® UHD Graphics Engine

Rozdzielczość

2 x HDMI 4096x2160@60Hz

Chipset LAN

2 x Realtek8111H Gigabit Ethernet Controller

Specyfikacja wejścia napięciowego

DC 12V/3A,36W

OS

Win10, Linux

Temperatura pracy

0°C ~ 40°C (32°F ~ 104°F) with 0.5m/s Air Flow

Temp. przechowywania

-30℃~70℃(-22℉~158℉)

Wilgotność pracy

5%~95% , No-condensation

Wymiary (szer. x dł. x wys.)

129mm x 129mm x 39mm

Informacje o zamawianiu

ACS-ADN2C-A1-1R, ACS-ADN2C w/N97, DDR5 8GB, M.2 128GB, US PWR cord, 36W adapter

Czym jest ACS-ADN2C?

The ACS-ADN2C is a system komputerowy manufactured by Avalue, designed specifically for compact-computing-system applications. It features sieć of 1 x PWR BTN and system operacyjny of Win10, Linux. The Avalue ACS-ADN2C is an ultra-compact fanless computing system built on the Intel Alder Lake-N series processor, pairing low-power efficiency with a 129 x 129 x 39 mm chassis ideal for space-constrained industrial, kiosk, and edge deployments. It ships with a DDR5 4800MHz SO-DIMM (up to 16GB) and a default 128GB M.2 2242 Key-M SSD, with an additional M.2 Key-E 2230 slot for wireless expansion. Despite its tiny footprint, the ACS-ADN2C offers practical industrial I/O: dual HDMI outputs (each 4096x2160 @ 60Hz via Intel UHD Graphics), four USB 3.0 ports, two RS-232 (DB9) COM ports, dual Gigabit Ethernet (Realtek 8111H), and line-out/mic-in audio. A single 12V DC input (36W) and a 0°C to 40°C operating range make it a simple, reliable drop-in compute node running Windows 10 or Linux.

Najważniejsze cechy i korzyści

  • Intel Alder Lake-N series processor, fanless
  • 1 x DDR5 4800MHz SO-DIMM, up to 16GB
  • Default 128GB M.2 2242 Key-M SSD + M.2 Key-E 2230 slot
  • Dual HDMI output, 4096x2160 @ 60Hz (Intel UHD Graphics)
  • 4 x USB 3.0, 2 x RS-232 (DB9)
  • Dual Realtek 8111H Gigabit Ethernet
  • Line-out + Mic-in audio
  • Single 12V DC input (36W adapter)
  • Ultra-compact 129 x 129 x 39 mm, Windows 10 / Linux

Zastosowania i przykłady użycia

Model ACS-ADN2C doskonale sprawdza się w różnych zastosowaniach automatyki przemysłowej:

  • Dust-sensitive environments and silent operation requirements
  • DC-powered industrial installations and mobile applications
  • Legacy equipment integration and serial communication
  • High-performance computing and data processing tasks
  • Networked industrial systems and data communication
  • Peripheral device connectivity and data transfer
  • Memory-intensive applications and multitasking
  • Data logging and storage-intensive operations

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