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3.3.1.1 | DIO-1616T-PE | PCIe TTL 16/16 channel digital input/output Card |
180,00 € (w/o VAT) |
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3.3.1.1 | DIO-1616T-LPE | PCIe Low Profile TTL 16/16 channel DIO Card |
200,00 € (w/o VAT) |
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3.3.1.1 | PCIe-7360 | PCIe DIO Card 32 Chan max 100MBytes/s |
3.547,00 € (w/o VAT) |
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3.3.1.1 | PCIe-7350 | PCIe DIO Card 32 Chan max 200MBytes/s |
2.302,00 € (w/o VAT) |
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3.3.1.1 | PCIe-7300A | PCIe DIO Card 16 In/16Out TTL max 80MBytes/s |
1.046,00 € (w/o VAT) |
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3.3.1.1 | PCIe-7200 | PCIe 1*lane DIO 32in/32out 12MBytes/s |
393,00 € (w/o VAT) |
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3.3.1.1 | PCIe-7296 | PCIe Digital IO Card 96DIO Opto-22 Compatible |
266,00 € (w/o VAT) |
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3.3.1.1 | PCIe-7248 | PCIe Digital IO Card 48DIO Opto-22 Compatible |
240,00 € (w/o VAT) |
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3.3.1.1 | DIO-1616TB-PE | PCIe high speed isolated TTL 16/16 channel DIO Card |
350,00 € (w/o VAT) |
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3.3.1.1 | DIO-32DM3-PE | PCIe LVTTL 16/16 50MS/s channel DIO Card |
360,00 € (w/o VAT) |
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3.3.1.3 | cPCI-7249R | cPCI 48DIO TTL Card rear IO | call | |
7.1.4.5 | MDDMS3822 | Modul Brücke / DMS, 3,0mV/V | call | |
7.1.4.5 | MDDMS3821 | Modul Brücke / DMS, 2,5mV/V | call | |
7.1.4.5 | MDDMS3820 | Modul Brücke / DMS, 2,0mV/V | call | |
7.1.4.5 | MDDMS3812 | Modul Brücke / DMS, 3,0mV/V, 333-fach | call | |
7.1.4.5 | MDDMS3811 | Modul Brücke / DMS, 2,5mV/V, 400-fach | call | |
7.1.4.5 | MDDMS3810 | Modul Brücke / DMS, 2,0mV/V, 500-fach | call | |
7.1.4.5 | MDDMS3803 | Brücke / DMS, 3,0mV/V (666-fach), Ausgang ±5V | call | |
7.1.4.5 | MDDMS3802 | Brücke / DMS, 2,5mV/V (800-fach), Ausgang ±5V | call | |
7.1.4.5 | MDDMS3801 | Brücke / DMS, 2,0mV/V (1000-fach), Ausgang ±5V | call | |
8.5 | SEAcc | Sensor Beschleunigung z.B. ±5g | call | |
8.5 | SEForce | Sensor Kraft, auch kundenspezifisch auf DMS-Basis | call | |
8.5 | SEDMS | Sensor Dehnung z.B. Dehnungsmessstreifen Stabform Si 10Stück | call | |
8.5 | SEVel | Sensor Gasgeschwindigkeit (Anemometer) | call | |
8.5 | SEIGD50 | Stromwandler max 50 A | call | |
8.5 | SEIGZ10 | Stromwandler 0-10 A und 0-100A | call | |
8.5 | SEK10to | Kraftaufnehmer DMS Vollbrücke 350R | call | |
8.5 | SEPR25 | Druck rel. 0-25bar, M10 | call | |
8.5 | SEPR10 | Druck rel. 0-10bar, M10 | call | |
8.5 | SEPR1 | Druck rel. 0-1bar, M10 | call | |
8.5 | SEPR100m | Druck rel. 0-100mbar, M10 | call | |
8.5 | SEPR25V | Druck rel. 0-25bar, M10 Anschluss | call | |
8.5 | SEPR10V | Druck rel. 0-10bar, M10 Anschluss | call | |
8.5 | SEPR1V | Druck rel. 0-1bar, M10 Anschluss | call | |
8.5 | SEPR100mV | Druck rel. 0-100mbar, M10 Anschluss | call | |
6.5.2 | DynaSim-AX5411 | DLL Treiber zur Ansteuerung der AX5411 unter DynaSim-R | call | |
6.5.2 | DynaSim-Upg | DynaSim-S Upgrade auf DynaSim-R | call | |
6.5.2 | DynaSim-R | Regelung mit Simulationsmodellen unter Windows | call | |
6.5.2 | DynaSim-S | Simulation von Regelungsmodellen in Windows | call | |
2.2.1.7 | Nuvo-5095GC-GTX950 | Core i7/i5 Fanless System 1*PCIe*16 2*DP w GTX950M2 | Request a quote | |
2.2.1.7 | Nuvo-5095GC | Core i7/i5 Fanless System 1*PCIe*16 2*DP for GTX950M2 | Request a quote | |
2.2.1.7 | Nuvo-6108GC-TI | Xeon i5/i7 C236 GPU System 1*PCIe*16 2*PCIe*8 250W NVIDIA | Request a quote | |
2.2.1.7 | Nuvo-6108GC-IGN | Xeon i5/i7 C236 GPU Ignition Control 3*PCIe 250W NVIDIA | Request a quote | |
2.2.1.7 | Nuvo-6108GC | Xeon i5/i7 C236 GPU System 1*PCIe*16 2*PCIe*8 180W NVIDIA | Request a quote | |
2.2.1.7 | Nuvo-7166GC | AI Platform 2*PCIe Intel 8th/9th-Gen Core Tesla T4 GPU | Request a quote | |
2.2.1.7 | Nuvo-7164GC | AI Platform 1*PCIe Intel 8th/9th-Gen Core Tesla T4 GPU | Request a quote | |
2.2.1.7 | Nuvo-7160GC | Intel 8th-Gen Core GPU System 1*PCIe*16 1*miniPCIe 6*GigE | Request a quote | |
2.2.1.7 | Nuvo-8208GC | Xeon E or 8th-Gen Core GPU System supports 2x 250W Graphics | Request a quote | |
2.2.1.7 | Nuvo-8108GC | Xeon E or 8/9th-Gen Core GPU System supports 250W Graphics | Request a quote | |
4.2.1.6 | TGAR-W1061+-4G | Cellular Outdoor 4G Router 802.11abgn 1000TX RJ45 EN50155 | Request a quote |
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acceed news

Edge AI applications often mean that the hardware used is housed in tightly dimensioned enclosures, ducts or narrow boxes. Enclosures are unavoidable to protect against environmental influences, but air circulation and thus cooling suffer just as inevitably. The NRU-156U3-FT AI controller from Acceed now scores points with a new fanless chassis design for installation in confined spaces with reduced airflow and simultaneous operation at high ambient temperatures. The full-surface, flat heat sink maximises cooling efficiency across the entire top of the housing, enabling efficient heat dissipation even with reduced air circulation. The robust embedded PC has six USB interfaces (3.2) and is designed for operation at ambient temperatures from -25 to +60 °C.

Good cooling, or more precisely effective heat dissipation, is a not insignificant factor when it comes to operational reliability and performance in the case of built-in computers, the embedded controllers in demand for industrial applications. Traditionally, extensive ribbed heat sinks are used here, which are mounted on the actual housing. The experienced manufacturer Neousys is taking a different approach with its new Nuvo-9531-FT model series, which is available from Acceed.

The successful NRU series for edge AI applications from German distributor Acceed has received a special addition. The already fanless chassis design for operation at high temperatures has been further optimised thanks to an unusual redesign. The now full-surface, flat heat sink maximises cooling efficiency across the entire top of the housing, allowing the controller to be used in closed housings or confined spaces with reduced airflow. The robust NRU-154PoE-FT has four GbE interfaces (2.5 Gb) with PoE and is designed for operation in ambient temperatures from -25 to +60 °C.

PCIe-DAQ cards (Peripheral Component Interconnect Express - Data Acquisition Cards) are a key technology in measurement applications and form the high-performance interface for digital signal processing and data acquisition. The new PCIe-9100 series multiplexer DAQ cards from Adlink, which are now available from German distributor Acceed, have been developed for use in demanding industrial measurement and control systems. They combine high input resolution for precise data acquisition with a choice of different channel counts and configurations, making them a preferred choice for demanding applications, for example in data analysis, development, performance control or automation.

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.