Q64TDV-GH Channel-to-channel insulation Thermocouple / micro voltage input unit
Q64TDV-GH Channel-to-channel insulation Thermocouple / micro voltage input unit

Q64TDV-GH Channel-to-channel insulation Thermocouple / micro voltage input unit

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USD710.00
Retail Price:USD817.00
Your Savings:USD107.00(13%)
Availability: Estimated Lead Time : Usually ships in 1 - 10 working days.
Part Number: Q64TDV-GH
Manufacturer:NEX INSTRUMENT
Condition : Brand New
Warranty : 12 months 
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NII REF No : IAFD111611121121

  • Estimated Lead Time : Usually ships in 1 - 10 working days.

  • Manufacturer : Mitsubishi Electric

  • Channel-to-channel insulation thermocouple / micro voltage input unit Q64TDV-GH

  • Analog input points : 4 points (4 channels + cold junction compensation channel)

  • Number of channels : 4 channels

  • Digital output : -
    Measured temperature : 16-bit signed binary (-2700 to 18200: 10 times the value to the first decimal place)

  • Micro voltage conversion value : 16-bit signed binary (-25000 to 25000)

  • Scaling value : 16-bit signed binary

  • Thermocouple compliant standard : JIS C1602-1995

  • Minute voltage input : -
    Input range : -
    100 to +100 mV (input resistance 2 MO or more)

  • accuracy : ± 0.2mV (operating ambient temperature: 25 ± 5 ° C) 
    ± 0.8mV (operating ambient temperature: 0 to 55 ° C)

  • resolution : 4 µV

  • resolution : B: 0.7 ° C. 
    R, S: 0.8 ° C. 
    K, T: 0.3 ° C. 
    E: 0.2 ° C. 
    J: 0.1 ° C. 
    N: 0.4 ° C.

  • accuracy : -
    Thermocouple type Measurement temperature range : Accuracy (° C) = (conversion accuracy) + (temperature characteristics) × (use ambient temperature change) + (cold junction compensation accuracy) 
    conversion accuracy: Operating ambient temperature 25 ± 5 ° C 
    Temperature characteristics: Operating ambient temperature change 1 ° C 
    use Ambient temperature change: Operating ambient temperature out of the range of 25 ± 5 ° C

  • B 0 to 600 ° C : -

  • 600 to 800 ° C : Conversion accuracy: ± 4.0 ° C 
    Temperature characteristics: ± 0.4 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 14.0 ° C 
    Influence per 1O of wiring resistance: 0.011 ° C / O

  • 800-1700 ° C : Conversion accuracy: ± 3.5 ° C 
    Temperature characteristics: ± 0.4 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 13.5 ° C 
    Influence per 1 O of wiring resistance: 0.010 ° C / O

  • 1700 to 1820 ° C : -

  • R -50 to 0 ° C : -

  • 0 to 300 ° C : Conversion accuracy: ± 4.0 ° C 
    Temperature characteristics: ± 0.4 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 14.0 ° C 
    Influence per 1 O wiring resistance: 0.013 ° C / O

  • 300 to 1600 ° C : Conversion accuracy: ± 3.5 ° C 
    Temperature characteristics: ± 0.4 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 13.5 ° C 
    Influence per 1 O of wiring resistance: 0.008 ° C / O

  • 1600 to 1760 ° C : -

  • S -50 to 0 ° C : -

  • 0 to 300 ° C : Conversion accuracy: ± 4.0 ° C 
    Temperature characteristics: ± 0.4 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 14.0 ° C 
    Influence per 1 O wiring resistance: 0.013 ° C / O

  • 300 to 1600 ° C : Conversion accuracy: ± 3.5 ° C 
    Temperature characteristics: ± 0.4 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 13.5 ° C 
    Influence per 1 O of wiring resistance: 0.008 ° C / O

  • 1600 to 1760 ° C : -

  • K -270 to -200 ° C : -

  • -200 to 0 ° C : Conversion accuracy: ± 2.0 ° C 
    Temperature characteristics: ± 0.25 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 8.25 ° C 
    Influence per 1O of wiring resistance: 0.005 ° C / O

  • 0 to 200 ° C : Conversion accuracy: ± 1.5 ° C 
    Temperature characteristics: ± 0.25 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 7.75 ° C 
    Influence per 1 O wiring resistance: 0.002 ° C / O

  • 200 to 1200 ° C : Conversion accuracy: ± 2.0 ° C 
    Temperature characteristics: ± 0.25 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 8.25 ° C 
    Influence per 1O of wiring resistance: 0.002 ° C / O

  • 1200 to 1370 ° C : -

  • E -270 to -200 ° C : -

  • -200 to 200 ° C : Conversion accuracy: ± 1.5 ° C 
    Temperature characteristics: ± 0.15 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 5.25 ° C 
    Influence per 1 O resistance: 0.003 ° C / O

  • 200 to 900 ° C : Conversion accuracy: ± 2.0 ° C 
    Temperature characteristics: ± 0.15 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 5.75 ° C 
    Influence per 1 O resistance: 0.001 ° C / O

  • 900 to 1000 ° C : -

  • J -210 to -40 ° C : -

  • -40 to 200 ° C : Conversion accuracy: ± 1.5 ° C 
    Temperature characteristics: ± 0.15 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 5.25 ° C 
    Influence per 1 O resistance: 0.002 ° C / O

  • 200 to 750 ° C : Conversion accuracy: ± 2.0 ° C 
    Temperature characteristics: ± 0.15 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 5.75 ° C 
    Influence per 1 O resistance: 0.002 ° C / O

  • 750 to 1200 ° C : -

  • T -270 to -200 ° C : -

  • -200 to 0 ° C : Conversion accuracy: ± 2.0 ° C 
    Temperature characteristics: ± 0.1 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 4.5 ° C 
    Influence per 1 O of wiring resistance: 0.004 ° C / O

  • 0 to 350 ° C : Conversion accuracy: ± 1.5 ° C 
    Temperature characteristics: ± 0.1 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 4.0 ° C 
    Influence per 1 O resistance: 0.002 ° C / O

  • 350 to 400 ° C : -

  • N -270 to -200 ° C : -

  • -200 to 0 ° C : Conversion accuracy: ± 2.5 ° C 
    Temperature characteristics: ± 0.25 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 8.75 ° C 
    Influence per 1O of wiring resistance: 0.007 ° C / O

  • 0 to 200 ° C : Conversion accuracy: ± 2.0 ° C 
    Temperature characteristics: ± 0.25 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 8.25 ° C 
    Influence per 1 O of wiring resistance: 0.003 ° C / O

  • 200 to 1250 ° C : Conversion accuracy: ± 2.5 ° C 
    Temperature characteristics: ± 0.25 ° C 
    Maximum temperature error at 55 ° C ambient temperature: ± 8.75 ° C 
    Influence per 1 O resistance: 0.002 ° C / O

  • 1250 to 1300 ° C : -

  • Sampling period : 20 ms / channel

  • Conversion speed : Sampling period x 3

  • Absolute maximum input : ± 5 V

  • Disconnection detection : Yes (each channel independent)

  • Insulation method : Between thermocouple input / microvoltage input and sequencer power supply: Between transformer insulation 
    thermocouple input / microvoltage input channel: Between transformer insulation 
    cold junction compensation input (Pt100) and sequencer power supply: Non insulation

  • Dielectric breakdown voltage : Between thermocouple input / microvoltage input and sequencer power supply, between thermocouple input / microvoltage input channel: AC 1780 Vrms / 3 cycles (altitude 2000 m)

  • Insulation resistance : Between thermocouple input / microvoltage input and sequencer power supply: DC500V 100MO or more 
    Thermocouple input / microvoltage input channel between DC500V 10MO or more

  • External wiring connection method : 18-point screw terminal block (M3 screw)

  • I / O occupancy points : 16 points (I / O assignment: Intelli 16 points)

  • DC 5 V internal current consumption : 0.50A

  • External dimensions : -

  • Height (H) : 98 mm

  • Width (W) : 27.4 mm

  • Depth (D) : 112 mm

  • mass : 0.25 kg

  • accuracy Cold junction compensation accuracy : ± 1.0 ° C

  • Shipping Weight : 1.5 Kg

 

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