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1.8.1 | EMP2-X402-W1-A71 | mPCIe to Four RS422/485 | Request a quote | |
1.8.1 | EMP2-X404-W1-A71 | mPCIe to Four RS232/422/485 | Request a quote | |
1.8.1 | EMP2-X2S1-W1-A71 | mPCIe to Dual Isolated RS-232 | Request a quote | |
1.8.1 | EMP2-X4S1-W1-A71 | mPCIe to four Isolated RS-485 | Request a quote | |
1.8.1 | EMP2-X4S2-W1-A71 | mPCIe to two Isolated RS-422 & RS-485 | Request a quote | |
1.8.1 | EGP2-X401-W1-A71 | M.2 to Four RS232/422/485 | Request a quote | |
1.8.1 | EMUC-B201-W1-A71 | USB to dual Isolated CANbus 2.0B | Request a quote | |
1.8.1 | EMUC-B202-W2-A71 | USB to dual Isolated CANbus J1939 | Request a quote | |
1.8.1 | EMUC-B202-W3-A71 | USB to dual Isolated CANbus CANopen | Request a quote | |
1.8.1 | EGPC-B201-W1-A71 | M.2 2260 to dual isolated CANbus 2.0B | Request a quote | |
1.8.1 | EGPC-B201-W2-A71 | M.2 2280 to dual isolated CANbus 2.0B | Request a quote | |
1.8.1 | EGPC-B201-W3-A71 | M.2 2260 to dual isolated CANbus J1939 | Request a quote | |
1.8.1 | EGPC-B201-W4-A71 | M.2 2280 to dual isolated CANbus J1939 | Request a quote | |
1.8.1 | EGPC-B201-W5-A71 | M.2 2280 to dual isolated CANbus CANopen | Request a quote | |
1.8.1 | EGPC-B4S1-W1-A71 | M.2 2280 to four isolated CANbus | Request a quote | |
1.8.1 | EGPC-B1S1-W1-A71 | M.2 2242 to single isolated CANbus | Request a quote | |
1.8.1 | EMPL-G2P1-C1-A71 | mPCIe to dual isolated PoE module | Request a quote | |
1.8.1 | EMPL-G2P1-W1-A71 | mPCIe to dual isolated PoE module WT | Request a quote | |
1.8.1 | EMPL-G2P2-C1-A71 | mPCIe to dual isolated PoE+ module | Request a quote | |
1.8.1 | EMPL-G2P2-W1-A71 | mPCIe to dual isolated PoE+ module WT | Request a quote | |
1.8.1 | EGPL-G2P1-C1-A71 | M.2 to dual isolated PoE module | Request a quote | |
1.8.1 | EGPL-G2P1-W1-A71 | M.2 to dual isolated PoE module WT | Request a quote | |
1.8.1 | ESPL-G4P1-C1-A71 | PCIe to four isolated PoE/PoE+ Module | Request a quote | |
1.8.1 | ESPL-G4P1-W1-A71 | PCIe to four isolated PoE/PoE+ Module WT | Request a quote | |
1.8.1 | EMUI-0D01-W1-A71 | USB to 32bit Digital I/O Module | Request a quote | |
1.8.1 | EMPA-I101-C1-A71 | mPCIe to one MYDX Module | Request a quote | |
1.8.1 | EGPA-I201-C1-A71 | M.2 to dual MYDX Module | Request a quote | |
1.8.1 | ELPP-0101-C2-A71 | mPCIe to PCIe x 1 Module | Request a quote | |
1.8.1 | EZSS-0101-C1-A71 | CFast to SATA Module | Request a quote | |
1.8.1 | E2SS-0101-C1-A71 | mSATA to SATA Module | Request a quote | |
1.8.1 | EZSS-0102-C1-A71 | SATADOM to SATA Module | Request a quote | |
1.8.1 | EMXX-0101-W1-A71 | mPCIe to M.2 A key Module | Request a quote | |
1.8.1 | EMXX-0101-W2-A71 | mPCIe to M.2 E key Module | Request a quote | |
1.8.1 | EMXX-0102-W1-A71 | mPCIe to M.2 B key Module | Request a quote | |
2.1.1 | DLAP-201-JT2 | NVIDIA Jetson TX2 Edge Inference Platform | Request a quote | |
2.1.1 | DLAP-4000 | MiniITX Embedded Computer System for deep learning | Request a quote | |
2.1.1 | EGX-MXM-P2000 | NVIDIA Pascal Quadro P2000 Embedded Graphics Module | Request a quote | |
2.1.1 | EOS-J-Series | NVIDIA Jetson TX2-based Vision System | Request a quote | |
2.1.2 | Neon-1040 | Intel® Atom™ Quad-Core Processor based Smart Camera | Request a quote | |
2.1.2 | NEON-i1000 series | NVIDIA Jetson TX2-based industrial AI camera family for Edge | Request a quote | |
2.1.2 | NEON-i2000 series | Intel Movidius Myriad-based AI camera family for the Edge | Request a quote | |
2.1.3 | NeuronBot | Autonomous robot platform with high-power computer | Request a quote | |
2.1.3 | ROScube-I | Embedded Real-Time Robotic Controller | Request a quote | |
2.1.3 | ROScube-I Starter Kit | ROS Starter Kit with Intel Core Motherboard and MXM Graphics | Request a quote | |
2.1.3 | ROScube-X | Embedded Robotic Controller with NVIDIA® Jetson AGX Xavier | Request a quote | |
2.2.1.1 | MXC-6401D/M4G | Core i7-QM170 fanless 2*Dport, 1*PCI 2*PCIe*8 or 1*PCIe*16 | Request a quote | |
2.2.1.1 | MXC-6402D/M4G | Core i5-QM170 fanless 2*Dport, 1*PCI 2*PCIe*8 or 1*PCIe*16 | Request a quote | |
2.2.1.1 | MXC-6403D/M4G | Core i3-QM170 fanless 2*Dport, 1*PCI 2*PCIe*8 or 1*PCIe*16 | Request a quote | |
2.2.1.1 | MXC-6305D | Celeron-QM77 fanless 2*Dport, 1*PCI 2*PCIe*8 or 1*PCIe*16 | Request a quote | |
2.2.1.1 | MXC-6101D | Core i7-QM57 fanless 2*PCI | Request a quote |
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acceed news

Box PCs and embedded controllers often have to be installed in very small spaces or in tight control cabinets. The limited space is a challenge for heat dissipation. Inadequate temperature management can quickly lead to problems with performance and operational reliability. The new POC-700-FT controller, now available from German distributor Acceed, offers an efficient solution. The innovative design with the newly developed full-surface, flat heat sink maximises cooling efficiency via the housing surface and allows safe fanless operation in industrial environments.

Computers for the intelligent control of unmanned vehicles and stationary robots, also in industrial surroundings for a longer period with AI-based applications. However, manufacturers and constructors are faced with a special type of challenge when handling flying devices, e.g. drones which are applied in an industrial context. The weight of all components then plays a supporting role in the literal sense. Specifically tailored to such applications, the German distributor Acceed has now added the ultralight box computer FLYC-300 from the experienced manufacturer Neousys to its programme. With its flyweight of a mere 297 grams and an AI processor power of 100 TOPS, the controller is suitable for various applications in unmanned systems, in particular airborne vehicles, but also agricultural machinery and autonomous mobile robots of a smaller size, to name just a few further examples.

As their name already indicates, access points basically only have one simple task: the extension of the network via radio technology in an efficient manner with access points. However, within industrial surroundings, higher requirements must be met, including temperature tolerance, robustness and safety. Last but not least, the speed plays an important role for successful data communication in virtually all business fields. The German distributor Acceed has now incorporated the new high-speed access point IAP-1800AX from Planet into its programme, which with Wi-Fi 6, two radio frequencies (dual band 2.4 GHz, 5 GHz), a wide temperature range from -40 to +75 °C and five LAN interfaces in a stable metal casing is designated for professional use.

The constantly growing requirements of processor power are typical for industrial AI operations, robotics applications and automation architecture. Controlling, monitoring and evaluating processes, machines and systems assume large data quantities and complex algorithms. Their calculation requires specialist hardware and a high bandwidth for data communication. As a response to these challenges, Acceed has now added the new Edge AI platform DLAP-411-Orin to its programme.

Under the brand name ExpertDAQ, Acceed offers a comprehensive range of scalable and cost-efficient IO modules, for example the EX9200 series. The modules with analogue and digital inputs and outputs also serve to link distributed sensors, actuators, meters or relays in extensive areas or via the Internet. They are robust, energy-efficient and can be installed and commissioned without any great effort. The EX9250-MTCP is a digital I/O module with ten inputs and six outputs. Two Ethernet interfaces enable the linking of several modules. Here, the auto-bypass function ensures the further operation of the other modules in the chain if one fails.