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    • Versatile Current Sensing: Accurately measure small and large currents, from sub-milliamp levels to thousands of amps.
    • High-Speed Pulse Monitoring: Patented distributed termination technology enables ultra-fast rise time measurement (as short as 2ns).
    • Enhanced Noise Immunity & Safety: Double shielding minimizes external noise, making these monitors ideal for high-voltage applications.
    • Robust Construction: Sealed models are suitable for high-voltage insulating oil or vacuum environments.
    • Broad Compatibility: Works with oscilloscopes, spectrum analyzers, power analyzers, digital voltmeters, ADCs, and more.

     

  • High-Precision Current Measurement with BNC Connectivity

    • Precision Current Sensing: ±1% accuracy ensures reliable real-time current monitoring.
    • BNC Connector for Seamless Connectivity: Works with oscilloscopes, ADCs, spectrum analyzers, and power analyzers.
    • Clamp-On Design for Non-Intrusive Measurement: Safely monitor live current flow without circuit disruption.
    • 50 Ohm Termination Compatible: Output reduces by half when using a 50Ω termination.
    • High-Voltage Safety Considerations: Conductive case requires adequate insulation for user safety.

     

  • High-Precision Current Sensing with BNC Connectivity

    • High-Precision Measurement: ±1% accuracy for reliable current sensing.
    • Customizable Configurations: Designed to meet specific user requirements for precision measurement.
    • BNC Connector for Easy Integration: Works with oscilloscopes, ADCs, spectrum analyzers, and power analyzers.
    • Non-Insulated Conductive Case: Proper insulation must be provided on the monitored conductor.
    • 50 Ohm Termination Compatibility: Using a 50Ω termination reduces the output to half.

     

  • High-Precision Voltage Measurement Up to 500kV

    • High-Voltage Measurement Capability: Supports up to 500kV in insulating oil and customizable calibration for air use.
    • Precision Division Ratios: Models with 5000:1, 10,000:1, and custom ratios, ensuring reliable voltage scaling.
    • Temperature-Compensated Accuracy: ±1% over 20°C to 80°C, providing stable voltage readings.
    • Robust Design for Harsh Environments: Sealed for high-voltage insulating oil use, with custom air calibration available.
    • Safe Operation with Ground Loop Control: The outer conductor is isolated from the case, allowing controlled grounding connections.

     

  • Precision Pulse Output Up to 500kV

    • Wide Voltage Range: Supports 100kV to 500kV pulse outputs for high-energy applications.
    • Fast Pulse Transmission: Pulse durations from 0.25 to 50 microseconds, ensuring efficient energy transfer.
    • Insulating Oil Immersion: Open-construction design for operation in high-voltage insulating oil, reducing breakdown risks.
    • Advanced Overvoltage Protection: Designed with built-in safety factors (50-100%) to prevent damage from overvoltages.
    • Reliable Flashover Protection: Corona ring-to-core insulation prevents damage from accidental flashovers.

     

  • The EMI 64k software allows to embed the TDEMI systems in a fully automated test environment.

    • Full automation of EMI testing according to all commercial and military standards
    • Automated control of turntable, antenna and other equipment
    • Height and Angular Scan
    • Procedures according to standards as well as customized procedures
    • Reducing the cost for EMC and communication testing and certification by tailored packages

     

  • The measurement system for all emission measurments in the frequency range 1 Hz – 44 GHz.

    • Frequency Range  1 Hz – 30MHz, 1GHz, 3GHz, 6GHz, 9GHz, 18GHz, 26GHz, 40 GHz and 44GHz
    • 225 MHz Real-time Analysis Bandwidth
    • Weighted Real-time Spectrogram up to 44 GHz
    • CISPR Bandwidths 200 Hz, 9 kHz, 120 kHz, 1 MHz
    • MIL/DO Bandwidths 10 Hz, 100 Hz, 1 kHz, 10 kHz, 100 kHz, 1 MHz

     

  • The measurement system for all emission measurments in the frequency range 1 Hz – 44 GHz.

    • Full compliance EMI Reciever according to standard CISPR 16-1· 1, ANSI C63.2, MIL->461, and DO·160
    • Spectrum Analyzer
    • Integrated LOW Noise Ampllfier (lNAI)
    • Integrated Preselect1on
    • Tradttional and FFT·based Mode
    • Automatic Stepped Attenuator
    • Ultra Low Noise Floor
    • Excellent spurious Performance
    • Real-time Spectrum Analyzer optional
    • Vast IQ-Bandwidth

     

  • TDEMI Mobile+. The ultra mobile EMI receiver – Emission measurements everytime, everywhere. Fully stand-alone operable.

    • Frequency Ranges 10Hz – 1GHz, 3GHz, 6GHz or 7GHz
    • 16000x faster than conventional receivers
    • Super compact design and 12V supply
    • 225 MHz fully gapless real-time analysis bandwidth
    • Weighted Real-time Spectrogram

     

  • Ultra High Performance RT Spectrum Analyzer. Ultrafast EMI Measurements.

    • Frequency Range from 1 Hz up to 50 GHz
    • 225 MHz Real-time analysis bandwidth
    • 100 dB Dynamic Range
    • Ultrahigh performance preselection in all modes
    • Up to 510 MHz Real-time IQ-Analysis bandwidth
    • Ultra High Performance Spectrum Analyzer

     

     

  • HDO4000A oscilloscopes have 4 analog input channels, 12-bit resolution using Teledyne LeCroy’s HD4096 high-definition technology, up to 1 GHz of bandwidth and a compact form factor with a large 12.1” multi-touch display. They are ideal for debug and troubleshooting of power electronics designs, digital power management or power integrity analysis, automotive electronics systems, and deeply embedded or mechatronic designs.

     

  • The WaveSurfer 3000z has a 10.1″ capacitive touch display, the longest memory, and the deepest toolbox – all at an affordable price.

    • HD4096 technology provides 12-bit resolution all the time
    • 2ProBus input supports over 30 probes in 9 product categories
    • 3Long record capture of up to 25 Mpts
    • 412.1” 1280 x 800 HD capacitive touchscreen
    • 5Mixed-signal capability – debug complex embedded designs with integrated 16-channel mixed signal option
    • 6Easy connectivity with 2 USB 3.1 ports
    • 7MAUI with OneTouch user interface for intuitive and efficient operation

     

    • 15.6″ 1920 x 1080 capacitive touchscreen display
    • 24 analog input channels
    • 3ProBus input supports every Teledyne LeCroy probe
    • 4MAUI with OneTouch user interface for intuitive and efficient operation
    • 5Q-Scape multi-tab display architecture
    • 6Up to 250 Mpts of acquisition memory
    • 7HD4096 technology – 12 bits all the time
    • 8Buttons/indicators color-coded to associated waveform on display
    • 9Use cursors and adjust settings without opening a menu
    • 10Mixed Signal capability with 16 integrated digital channels
    • 116 USB 3.1 ports (2 front, 4 side)

     

    • HD4096 technology provides 12-bit resolution up to 8 GHz and 20 GS/s
    • Up to 5 Gpts of acquisition memory enables detailed viewing of long events
    • 15.6” 1900 x 1080 Full HD capacitive touchscreen
    • ProBus2 input supports up to 8 GHz bandwidth while maintaining support for legacy ProBus probes
    • MAUI with OneTouch user interface for intuitive and efficient operation
    • Waveform Control Knobs – Control channel, zoom, math and memory traces with the multiplexed vertical and horizontal knobs
    • Color-coded panel indicators – Trigger, horizontal and vertical indicator colors correspond to the associated waveform on the display
    • Cursor/Adjust Knobs – Enable and position cursors or adjust settings and parameters without opening a menu
    • Mixed Signal Capability – Debug complex embedded designs with integrated 16-channel mixed signal capability
    • Easy connectivity with seven USB 3.1 ports (3 front, 4 side) and UHD (4k) HDMI and DisplayPort outputs

     

    • Eye diagram (a), eye mask failure (b) and IsoBER eye opening analysis (c)
    • Jitter spectrum (a) with noise floor display (b) and inverse FFT of the periodic jitter (c)
    • Data dependent jitter (DDj) plot for each bit in synch with pattern (a) and with histogram (b)
    • Time interval error (TIE) jitter track analysis
    • Jitter histograms (a) with bathtub curves (b) and CDF plot (c)
    • Intersymbol interference (ISI) plots pinpoint bit sequences that have high ISI and are sources of bit errors
    • Jitter measurements table with full details for one or more “lanes” plus reference