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    • Compact, air-cooled OEM style
    • Superior pulse repeatability
    • Simple parallel operation for higher power
    • Optional Active PFC (pf = 0.98)
    • Full remote control interface
    • High EMI-RFI immunity

     

    • Advanced semiconductor technology
    • High-quality construction
    • Rapid capacitor and pulse-forming network charging
    • Compact and lightweight design
    • Simple parallel operation for higher power needs
    • Compatible with worldwide input voltages and frequencies
    • Fully adjustable output voltage
    • Comprehensive remote control interface

     

  • High-Speed Current Control: No dynamic overshoot or oscillation
    High Slew-Rate: Up to 30A/*s for fast load changes
    Low Voltage Operation: Stable operation with no turn-on delay
    Multi-Functional: Seven load modes and four operating modes
    Parallel Operation: Up to 10kW with 10 units
    User-Friendly Interface: Built-in USB and optional IEEE interfaces
    Compliance: EN61010-1 compliant with a two-year warranty

    • 20 Amp Operation: Full performance with 20 amp service
    • Automatic Power Reduction: Reduces power usage during idle periods
    • Heat Only Mode: Reduces power usage when cold temperatures are not used
    • WhisperStream Technology: quieter, smooth-sounding operation, 56 dBA
    • Frost Free Test Environment: dry air purge for tester interface, prevents condensation:
      0.5 to 3scfm (0.25 to 1.5 l/s)
    • Heated Defrost: quickly removes moisture buildup from internal chiller
    • DUT Temperature Control : Proprietary control algorithm enables DUT temperature to be directly controlled
    • Transition Rate*
      -55 to +125°C, approx. 10 seconds
      125 to -55°C, approx. 10 seconds
    • System Airflow Output*
      4 to 18scfm (1.9 to 8.5 l/s) Continuous
    • Temperature Range*
      -80 to +225°C (60Hz) No LN2 or LCO2 Required

     

    • High reliability thermal cycling without thermoelectric modules
    • Temperature range: -65 to 175°C
    • Cooling power:
      • 40W at -40°C for lower power devices
      • 55W at -55°C and 120W at -40°C.
    • Transition rate: up to <35 sec over 25 to -40°C
    • Easy and secure thermal connection to in-circuit or test socked DUT
    • Touch-screen controller: user-programmable temperatures, graphing, data logging
    • Communications options: Ethernet, USB, IEEE, RS232

     

  • -60° to +200°C

    • Economy model with high thermal capacity
    • Precise temperatures with fast transitions from -60 to 200°C
    • No annual leak testing required per EU 517/2014 F-Gas Regulation
    • Effective testing and conditioning of electronic components, boards, and modules
    • Available for 50 and 60Hz operation
    • No need for Liquid Nitrogen (LN2) or Liquid Carbon Dioxide (LCO2)
    • Remote communications and set up and touch screen operation
    • User Defined Temperature Limits

     

     

    • 2U Chassis – 19″ rack mount 3.48” Height, 9.60” Depth and Weight 6lb.
    • Power 120V AC 60Hz
    • Washable front removable air filter
    • Ball Bearing AC fans provide 330 CFM
    • Dual plenum design
    • Cooling for 160mm,220mm depth modules
    • Diverts lower warmed air to rear of Cabinet
    • RM option diverts lower air to front of Cabinet

     

    • accommodate these control schemes
    • total control system interface on a single VME-standard card
    • occupies the left-most slot of the crate
    • monitoring voltage reference inputs, output voltages and fault conditions
    • standard VMEbus-compatible 6U by 220 mm board installed
    • Eurocard crate
    • Two 96-pin I/O connectors

     

  • MCOR Modules

    MCOR 2/6/9/12

    Each module can be customized to provide maximum outputs of 2 amps, 6 amps, 9 amps, and 12 amps. Up to 16 of these can fit in a single 6U VME style crate.

    MCOR 30

    Each module can provide a maximum output 30 amps. Up to 8 of these can fit in a single 6U VME style crate.

    • provides precision bi-polar output currents
    • minimal zero-cross over distortion
    • 19” rack mounted 6U x 220 mm crate
    • crate has 17 slots; 16 (slot 0 thru 15)
    • connectors
      • J1 (ExtIntlk),
      • J2 (CrateOK),
      • J3 (Input Reference Voltages),
      • J4 (Output Monitors), and
      • J9 (Bitbus)

     

  • High‐Resolution Portable TDR with Frequency‐Domain Analysis Tools

    Ideal for testing all types of microwave/RF and digital cables and connectors

    • Rugged portable TDR with S‐parameter tools
    • Resolves connector detail (<1 cm)
    • 75 μm (0.003 in.) cursor resolution
    • 16‐bit digital sampling at up to 250 KSPS
    • Stores thousands of TDR traces
    • USB host/client, 10/100 Ethernet
    • Lightweight, bright color screen
    • Internet streaming and remote control

     

  • Simplify Aging Aircraft Wiring Maintenance Using High-Resolution MOHR CT100 Series TDR Cable Analyzers

    • Designed for use with the high-resolution CT100 TDR Cable Tester
    • Ideal for TDR testing MIL-STD-1553B data bus aerospace cable assemblies
    • Detect and localize open, short, and partial cable and connector faults on the main bus and stubs
    • Detects cable and connector faults through 3+ transformer couplers
    • Simplifies troubleshooting of aging aircraft MIL-STD-1553 cable assemblies

     

  • Next-gen Time-Domain Reflectometers replace the Tektronix® 1502C

    The new CT100 and CT100HF are the industry’s highest-resolution portable metallic TDRs, designed for testing all coaxial and twisted-pair cables and interconnects used in modern microwave/RF and digital systems. These are the only portable instruments that exceed all TDR specifications of the Tektronix® 1502C Metallic TDR Cable Tester, while providing next-generation improvements in TDR analysis, data storage, connectivity, and ergonomics.

    CT100 Series TDRs feature 8-10x sharper spatial resolution and100-1000x better Distance-to-Fault (DTF) resolution than competing TDR instruments, and have multi-GHz bandwidth similar to competing FDR (Frequency-Domain Reflectometer) instruments with similar or better cable fault sensitivity andorders-of-magnitude better DTF precision.

    These instruments’ unique combination of fast system rise-time,high-resolution time-base, and precision 16-bit impedance measurements allow you to identify and correct subtle changes in cable and connector performance before system failure. Some of the CT100 Series’ innovative features are described below. Also, please read CT100 Series Features for more information.

     


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