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2.2.2 - Atom Powered Embedded
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Industrial Computers and Embedded Systems powered by Atom are powerful solutions for businesses and industries. They are designed to be reliable, high performance and energy efficient. They provide a cost effective way to manage and control industrial processes, and can be used in a wide range of applications. Atom powered embedded systems are ideal for applications that require low power consumption and long term reliability.
| 2.2.2 | MXE-212-S/M2G | Intel Atom E3930 Ultra Compact System 2*GbE 2*COM 4*USB SATA |
626,00 € (w/o VAT) |
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| 2.2.2 | MXE-212-ET/M2G | Intel Atom E3930 Ultra Compact 2*GbE 2*COM 4*USB ext. Temp. |
585,00 € (w/o VAT) |
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| 2.2.2 | MXE-212/M4G | Intel Atom E3930 Ultra Compact Embedded 2*GbE 2*COM 4*USB |
586,00 € (w/o VAT) |
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| 2.2.2 | MXE-211-S/M2G | Intel Atom E3950 Ultra Compact System 2*GbE 2*COM 4*USB SATA |
661,00 € (w/o VAT) |
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| 2.2.2 | MXE-211-ET/M2G | Intel Atom E3950 Ultra Compact 2*GbE 2*COM 4*USB ext. Temp. |
620,00 € (w/o VAT) |
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| 2.2.2 | MXE-211/M2G | Intel Atom E3950 Ultra Compact Embedded 2*GbE 2*COM 4*USB |
616,00 € (w/o VAT) |
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| 2.2.2 | MXE-1401 | Atom E3845 fanless 2*mini PCIe, 6*USB 2.0 1*USB 3.0 |
954,00 € (w/o VAT) |
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| 2.2.2 | MXC-2300-3S | Atom E3845 fanless 3*PCI |
1.015,00 € (w/o VAT) |
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| 2.2.2 | MXC-2300-3E1 | Atom E3845 fanless 2*PCI 1*PCIe*4 |
1.059,00 € (w/o VAT) |
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| 2.2.2 | MXC-2300CD-3S | Atom E3845 fanless 3*PCI CAN 16*DI 16*DO miniPCIe USIM |
1.167,00 € (w/o VAT) |
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| 2.2.2 | MXC-2300CD-3E1 | Atom E3845 fanless 2*PCI 1*PCIe*4 CAN 16*DI 16*DO mPCIe USIM |
1.212,00 € (w/o VAT) |
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| 2.2.2 | MCM-218 | Ethernet DAQ with 8*AI, 16*bit, 2*AO, 250KS/s, 8*DIO |
985,00 € (w/o VAT) |
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| 2.2.2 | MCM-216 | Ethernet DAQ with 16*AI, 16*bit, 250KS/s, 8*DI/O |
980,00 € (w/o VAT) |
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| 2.2.2 | MCM/NL-100 | Ethernet DAQ with 4*AI, 24*bit, 128KS/s, 4*DIO w/o log |
3.090,00 € (w/o VAT) |
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| 2.2.2 | MCM-204 | Ethernet DAQ with 4*AI, 24*bit, 128KS/s, 4*DIO |
1.590,00 € (w/o VAT) |
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| 2.2.2 | MCM-100 | Intel Atom E3950 Machine Condition Monitoring Edge Platform |
2.990,00 € (w/o VAT) |
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| 2.2.2 | ARS-1600 | Fanless D525 System 2*GbE 8*COM 8*DIO 1*PC/104+ 2*CAN | call | |
| 2.2.2 | ARS-1500 | Fanless D525 System 2*GbE 8*COM 8*DIO 1*PC/104+ | call | |
| 2.2.2 | ARS-1200 | Fanless D525 Syst. 2*GbE 4*COM 8*DIO 1*PC/104+ 3*1394a 2*CAN | call | |
| 2.2.2 | ARS-1100 | Fanless D525 System 2*GbE 4*COM 8*DIO 1*PC/104+ 3*1394a | call | |
| 2.2.2 | ARS-1000 | Fanless D525 System 2*GbE 4*COM 8*DIO 1*PCI-104 | call | |
| 2.2.2 | Nuvo-2430 | Celeron J1900 Fanless PC 3* PCI 2*GbE 2*COM | Request a quote | |
| 2.2.2 | Nuvo-2421 | Celeron J1900 Fanless PC 2*PCI 1*PCIe 2*GbE 2*COM | Request a quote | |
| 2.2.2 | POC-100ST | Atom D525 Ultra-Compact Fanless Controller Terminal DC-Input | use POC-212 | |
| 2.2.2 | POC-100RK | Atom D525 Ultra-Compact Fanless Controller 2*GbE 2*COM | use POC-212 | |
| 2.2.2 | POC-120MZ-R10 | Atom E3826 Ultra-Compact Low Profile Fanless MezIO-R10 | Request a quote | |
| 2.2.2 | POC-120MZ | Atom E3826 Ultra-Compact Low Profile Controller MezIO | Request a quote | |
| 2.2.2 | POC-120 | Atom E3826 Ultra-Compact Low Profile Fanless Controller | Request a quote | |
| 2.2.2 | POC-546 | AMD Ryzen V1807B Ultra-Compact Controller with MezIO-R12 | Request a quote | |
| 2.2.2 | POC-545 | AMD Ryzen V1807B Ultra-Compact Embedded Controller | Request a quote | |
| 2.2.2 | POC-516 | AMD Ryzen V1605B Ultra-Compact Controller with MezIO-R12 | Request a quote | |
| 2.2.2 | POC-515 | AMD Ryzen V1605B Ultra-Compact Embedded Controller | Request a quote | |
| 2.2.2 | POC-500-Series | AMD Ryzen V1000 Ultra-Compact Embedded Controller | Request a quote | |
| 2.2.2 | POC-551VTC | AMD Ryzen V1000 Ultra-Compact In-Vehicle Controller PoE+ CAN | Coming soon | |
| 2.2.2 | POC-351VTC | Atom E3950 Ultra-Compact In-Vehicle 3*GbE 4*USB 4*COM | Request a quote | |
| 2.2.2 | POC-330 | N4200 Ultra-Compact Ctrllr 3*GbE 2/2USB3/2.0 4*COM | Request a quote | |
| 2.2.2 | POC-320 | N4200 Ultra-Compact Ctrllr 3*GbE 2*PoE 2/2USB3/2.0 4*COM | Request a quote | |
| 2.2.2 | POC-310 | Atom E3950 Ultra-Compact Ctrllr 3*GbE 2/2USB3/2.0 4*COM | Request a quote | |
| 2.2.2 | POC-300 | Atom E3950 Ultra-Compact 3*GbE 2*PoE 4*USB 4*COM | Request a quote | |
| 2.2.2 | POC-300-Series | Atom E3950 Ultra-Compact Fanless Controller | Request a quote | |
| 2.2.2 | POC-222 | Atom E3825 Ultra-Compact Fanless Controller with HDD Bay | Request a quote | |
| 2.2.2 | POC-212 | Atom E3845 Ultra-Compact Fanless Controller with HDD Bay | Request a quote | |
| 2.2.2 | POC-210 | Atom E3845 Ultra-Compact Fanless Controller 4*COM | Request a quote | |
| 2.2.2 | POC-200 | Atom E3845 Ultra-Compact Fanless Controller 2*PoE 4*COM | Request a quote | |
| 2.2.2 | POC-200-Series | Atom E3845 Ultra-Compact Fanless Controller | Request a quote | |
| 2.2.2 | MXE-210-Series | Intel Atom E3900 Based Ultra Compact Embedded Platform | Request a quote | |
| 2.2.2 | IoT Gateway Starter kit (MXE-202i) | IoT Gateway Starter kit (MXE-202i), USB ZigBee,sensor&actor | Request a quote | |
| 2.2.2 | MXE-202i | Atom E3826 fanless 2*GbE 2*COM 1*USB 3.0 2*USB 2.0 OS Windr | EOL, call | |
| 2.2.2 | MXE-202 | Atom E3826 fanless 2*GbE 2*COM 1*USB 3.0 2*USB 2.0 | Request a quote | |
| 2.2.2 | MXE-201 | Atom E3845 fanless 2*GbE 2*COM 1*USB 3.0 2*USB 2.0 | Request a quote |
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acceed news
The new RQX-59 AI controller is part of the ROScube-X family and is based on Nvidia’s Jetson AGX Orin module. The SoM (System-on-Module) combines the energy-efficient Cortex-A78AE (64-bit) ARM processor with a GPU featuring up to 2048 CUDA processing units and 64 Tensor cores. This enables AI models for object recognition, depth estimation or semantic segmentation to be processed directly within the vehicle or robot. A power budget starting at around 40 W is likely to be attractive for battery-powered mobile applications, without having to compromise on sophisticated models.
With the NRU-160-FT, German distributor Acceed aims to bring AI computing power to the very places where data is collected and decisions are made. The system can be installed in dust- or waterproof enclosures and uses their walls for heat dissipation, for example in construction machinery, in car parks and on roads, or in autonomous logistics vehicles. With Nvidia’s Jetson Orin AI module, the embedded computer achieves up to 100 INT8-TOPS and can simultaneously process up to 18 Full HD video streams, whilst consuming around 25 Watt of power.
Industrial edge computing is increasingly evolving from a data collector into an autonomous decision-maker. Requirements are changing in OT (Operational Technology) networks. The focus is on deterministic communication, a minimal footprint in the control cabinet, AI performance and energy efficiency. This is where Acceed’s new Nuvo-11531 sets new standards. The book-sized computer combines an exceptionally small, fanless housing with the latest Intel Ultra 200S processors, positioning itself between traditional industrial PLCs and GPU vision computers, but with remarkable I/O density.
It is a well-known fact that industrial applications require computing power at the edge of the network, where data is generated. Real-time AI systems for image processing, quality control, or autonomous machines need to evaluate large amounts of data directly on site. Bypassing cloud architectures saves time and bandwidth and reduces costs. However, edge applications have special requirements: high performance in limited space, constant availability despite dust and vibrations, and high tolerance to ambient temperatures. The new GT-92GC, a 19-inch rack system that combines GPU acceleration, multi-camera connectivity and a fanless chassis design, is tailored precisely to these requirements.
As AI models become increasingly efficient in industry, the demands on hardware in the field are also growing: GPU performance must be mobile, robust and maintenance-free in vehicles, production lines, energy plants and security systems. With the new GT-92RL-H controller, German distributor Acceed now has another edge platform in its portfolio that is designed precisely for this purpose: powerful, fanless, with high I/O density and, thanks to its robust system design (in accordance with EN 50155 / EN 45545), largely independent of infrastructure conditions.