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UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design

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    Buy cheap UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design from wholesalers
     
    Buy cheap UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design from wholesalers
    • Buy cheap UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design from wholesalers

    UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design

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    Brand Name : MEASTEK
    Model Number : UHCT0060A
    Payment Terms : T/T,Western Union,MoneyGram
    Delivery Time : 5-8 work days
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    UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design

    UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design


    1.Balanced sensitivity and range: 100mV/A sensitivity, peak current 0.06kA, taking into account both accuracy and medium current scenarios.


    2.High frequency response 50MHz: Quickly capture transient current, such as capacitor discharge waveform analysis.


    3.Low attenuation characteristics 78%/ms: Reduce signal distortion and truly restore current waveform.


    4.Compact and lightweight design: The total weight is only 180g, suitable for mobile detection needs.


    5.Standard BNC interface: Compatible with mainstream oscilloscopes, plug and play.


    6.High temperature resistant probe ring: The operating temperature range is 0℃-100℃, suitable for harsh industrial environments.


    Technical Parameters

    ModelUHCT0060A
    Sensitivity (mV/A)100
    Peak current (KA)0.06
    Maximum noise (mV Vp-p)18
    Attenuation characteristics (%/ms)78
    Low frequency bandwidth -3dB (Hz)100
    Peak di/dt (A/ns)4.0
    High frequency bandwidth -3dB (MHz)50

    Note: If you need a larger range, please consult the manufacturer. It can be customized according to your requirements.
    Other Technical Parameters

    Accuracy

    2%

    Insulation withstand voltage value

    2KV

    Terminal load

    ≥100kΩ

    Power supply methodUSB 5V (standard adapter)
    Ring circumference100mm (customizable)
    Coil lead length1.0m (customizable)
    Operating temperature rangeIntegrator

    0℃ - 50℃

    Probe ring

    0℃ - 100℃

    Storage temperature range

    -40℃~80℃

    Front end dimensionsAbout 110(L)*45(W)*30(H)mm
    Probe weightIntegrator

    About125g

    Total weight

    About180g


    Product Description


    UHCT0060A Wideband Current Probe 100mV/A Sensitivity For Capacitor Discharge Analysis | Industrial Grade Temperature Resistant Design

    1) Input interface: probe ring input interface.
    2) Output interface: integrator output interface.
    3) USB 5V power supply interface: standard USB (type B) interface, USB power supply cable as standard.
    Probe induction ring body diameter: 3.5mm
    Coil circumference: 100mm


    Care And Maintenance

    *The current transmitter can only be guaranteed to operate safely and trouble-free if it is properly transported, stored, installed, and carefully operated and maintained.
    *Keep the probe clean and dry, and wipe it with a soft dry cloth.
    *When transporting the probe, put it in the standard packaging to prevent shock.
    *Do not force the flexible probe ring and connecting wire to avoid damage due to excessive twisting, bending or knotting.


    Packing List

    Integrator1 piece
    Flexible coil1 piece
    USB output adapter (5V/1A)1 piece
    USB power cable1 piece
    BNC output cable1 piece
    Electronic manual1 serving


    Notes

    1. To ensure measurement accuracy, the measured wire should pass through the center of the probe ring during measurement.
    2. The error is greatest at the junction of the induction rings, and the measured wire should try to avoid this area.
    3. Make sure the probe ring is inserted in place (to the bottom) during measurement, otherwise it will affect the measurement accuracy.
    4. When measuring the measured signal, if there is a strong magnetic field interference source nearby (such as a magnetic field radiation source composed of multiple coils), it should be kept as far away as possible, otherwise it will cause measurement errors.

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