DNR-12-1G - Compact (3U), 12-slot, Rugged, Gigabit Ethernet Data Acquisition and Control Rack

DNR-12-1G - 








Compact (3U), 12-slot, Rugged, Gigabit Ethernet Data Acquisition and Control Rack
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Main features
  • Allows the installation of up to 12 I/O boards
  • Over 90+ different I/O boards available
  • Front-loading I/O boards for rapid reconfiguration
  • Two independent Gigabit Ethernet Interfaces with independent IP addresses
  • Inter RACK Sync Interface
  • Compact: 3U rack (5.25″ x 6.2″ x 17.5″)
  • Up to 300 A/D, 576 DIO, 384 D/A, 144 ARINC-429 channels per rack
  • Rugged: 3 g Vibration, 100 g Shock, -40 to +70 °C
  • Real-time: 1000 I/O scans in < 1 millisecond
  • Complete Windows, Linux and RT OS support
  • LabVIEW™, MATLAB support and more
DNR-12-1G-CPU-8347 Data acquisition and control chassis (3U), 12 slots, with 8347 CPU.
DNR-12-1G-CPU-8347E Data acquisition and control chassis (3U), 12 slots, with 8347E CPU.
DNR-12-1G-CPU-SoloX/i.MX6 Data acquisition and control chassis (3U), 12 slots, with SoloX CPU.

The RACKtangle is an ideal substitute for VME technology in data acquisition and control applications. It is smaller, more modern and lower cost. The RACKtangle is also an ideal choice for a myriad of Ethernet data acquisition and control applications where small footprint and high performance are desired. The DNR-12-1G RACKtangle chassis is a compact (3U), rugged Ethernet based data acquisition and control I/O rack. Though the backplane electronics are identical to our popular PowerDNA Cube series, the PowerDNR RACKtangle series provides two Gigabit Ethernet interfaces and provides slots for up to 12 I/O boards, allowing the I/O boards to be quickly and easily installed and removed directly from the front of the rack. These capabilities dramatically increase performance and simplify system reconfiguration when necessary. The backplane within the rack contains no active electronic components, ensuring the rack itself has an almost unlimited MTBF (mean time between failures). It also means that all active components are on easily replaceable I/O modules, offering an extremely short MTTR (mean time to recovery) in critical applications.

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