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  • A powerful Windows-based software package for managing and analyzing TDR data from CT100 Series and other TDR instruments.

    Key Features:

    • Archive, analyze, and compare TDR waveforms with ease
    • Compatible with CT100 Series TDRs and other instruments via CSV import
    • Live LAN/WAN/Internet streaming and remote control of CT100 units
    • Powerful tools for QA/QC, fault detection, and cable performance tracking
    • Supports SQL database storage and flexible file management
    • Includes advanced transforms: subtraction, derivative, and averaging
    • Fine-tune velocity of propagation (VoP) up to 6 significant digits

     

  • The ECO-710E/810E ThermoStream® systems are eco-friendly temperature forcing solutions designed for precise electronic testing, delivering fast temperature transitions with quiet, energy-efficient operation.

    Key Features:

    • Wide temperature range: -80°C to +225°C
    • Eco-friendly design compliant with EU 517/2014 (no annual leak testing)
    • Quiet operation at just 56 dBA
    • Energy-efficient performance on a 20-amp circuit
    • Rapid temperature transitions for consistent results
    • Touchscreen controls with embedded software (no Windows® OS)
    • No need for LN2 or LCO2 cooling agents
    • Remote setup and communication capabilities
    • Ideal for 24/7/365 lab or production use

     

  • The industry’s highest-resolution portable TDR cable tester, the MOHR CT100 delivers unmatched accuracy for coaxial and twisted-pair cables in the field, lab, or production floor.

    Key Features:

    • Resolves connector details < 1 cm (8–10x sharper than competitors)
    • Tests coaxial, twisted-pair, and multi-conductor cables
    • Exceeds Tektronix® 1502C TDR specifications
    • Accurate impedance and cable length measurement with 16-bit ADC
    • Detects intermittent faults with up to 250,000 samples/sec
    • Integrated LAN/WAN/Internet remote control with CT Viewer™ 2 software
    • Lightweight, portable design with 4.3″ color LCD
    • Used by the U.S. Navy as the Tektronix 1502 series replacement

     

  • RapidTemp™ BT28 ThermoStream® Benchtop Thermal Test System

    Key Features:

    • Compact and lightweight design under 80 lbs (38 kg) for easy benchtop integration
    • Wide temperature range from -28°C to +225°C for versatile testing
    • High airflow capacity of 14 scfm for precise and reliable temperature forcing
    • SwiftTherm™ technology for ultra-fast temperature transitions
    • Detachable 9 ft. touchscreen interface for flexible operation
    • ECO-Stream design: quieter, smaller, and energy-efficient
    • Embedded control system with Ethernet, IEEE-488, RS232, and USB connectivity
    • Customizable test setups with data logging via USB storage

     

  • Key Features:

    • Wide temperature range from -65°C to +300°C
    • Compatible with 150mm, 200mm, and 300mm wafer sizes
    • Options for mechanical refrigeration, glycol/water, or air cooling
    • Heating methods: ThermoElectric or Resistive, depending on model
    • Retrofits available for existing probe stations
    • Customizable surface plating: gold or nickel
    • Supports advanced applications like low leakage probing (fA level) and high-voltage probing (up to 10kV)

     

  • ThermoSpot Systems – Benchtop Direct Contact Cooling and Heating Solution

    The Temptronic® ThermoSpot® delivers high-performance temperature control for IC testing and high-Watt devices with unmatched cooling capacity.

    Key Features:

    • Reliable thermal cycling without thermoelectric modules
    • Wide temperature range: -65°C to +175°C
    • Cooling power: 40W at -40°C, 55W at -55°C, 120W at -40°C
    • Fast transitions: <35 seconds from +25°C to -40°C
    • Secure thermal contact with ThermoBridge™ design
    • Touch-screen with data logging and programmable settings
    • Multiple communication ports: Ethernet, USB, IEEE, RS232

     

  • ThermoSpot® Systems – Direct Contact Thermal Test Solutions

    Key Features:

    • Temperature range: -65°C to +175°C
    • Cooling power up to 120W at -40°C
    • Fast transition rate (<35 sec from +25°C to -40°C)
    • Reliable thermal cycling without thermoelectric modules
    • Flexible thermal probe with interchangeable ThermoBridge™
    • Touchscreen controller with programmable profiles
    • Connectivity options: Ethernet, USB, IEEE, RS232
    • Easy, secure connection to in-circuit or socketed DUTs

    • 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

  • The new G5.RSS series features

    • High control dynamics
    • An exceptional accuracy
    • A nominal output voltage of up to 3000 VDC
    • A wide current-voltage range with an auto-ranging factor of 3.
    • You get the best value for your investment.

     

  • 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

     

    • compact and completely modular design
    • high effectiveness in all operation modes, few requirements on building infrastructure
    • ability to use an existing liquid cooling system directly
    • optional matched liquid-to-air cooling unit TC.LAE available
    • possibility of upgrading to systems of up to 1 MVA
    • high level of system dynamics, ≤ 5 kHz modulation bandwidth
    • non-restrictive capability of refeeding in the Q4 operation mode
    • possibility of operating as an autonomous 4-Q and 3-phase quasi-analogue amplifier
    • possibility of “Hardware-in-the loop”-operation (HIL mode)
    • user friendly application software with pre-configured test patterns
    • possibility of integrating into a complete SAS simulation and test system
    • galvanic isolation available as an option without derating the simulator port data

     

  • Bidirectional (source & sink), Regenerative 0…65VDC to 0…1500VDC, 20kW up to 1.5 MW 

    • cell system nominal voltage and type of chemistry
    • number of cells
    • internal resistance and associated parameters
    • cell temperature progression
    • allowed current
    • charge efficiency
    • energy computing and management facilities
    • time-dependent and functional dependent parameters

     

    • Setting of operational parameters for each output phase: (frequency, phase, voltage, basic waveform)
    • Defining functional blocks enabling a wide variety of modulation capabilities
    • Defining, editing and storing of even complex and long test sequences
    • Preview window for output voltage waveforms
    • LC load mode, definition of complex equivalent circuits
    • Hand drawing curve tool and FOURIER tool (harmonics synthesis)
    • TC.ACS provides an extensive safety concept in order to detect unwanted or off-limit conditions very quickly and to initiate controlled limiting or even a shutdown.

     

    • compact and completely modular design
    • high effectiveness in all operation modes, few requirements on building infrastructure
    • ability to use an existing liquid cooling system directly
    • optional matched liquid-to-air cooling unit TC.LAE available
    • possibility of upgrading to systems of up to 1 MVA
    • high level of system dynamics, ≤ 5 kHz modulation bandwidth
    • non-restrictive capability of refeeding in the Q4 operation mode
    • possibility of operating as an autonomous 4-Q and 3-phase quasi-analogue amplifier
    • possibility of “Hardware-in-the loop”-operation (HIL mode)
    • user friendly application software with pre-configured test patterns
    • possibility of integrating into a complete SAS simulation and test system
    • galvanic isolation available as an option without derating the simulator port data