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Hanna Instruments HI8936CLN Conductivity Transmitter with LCD, 0 to 1999 microsecond/cm, 1 microsecond/cm Resolution

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ASIN B0085WZ758

Specifications for this item
Number of Items
1
Measurement Type
Electrical Conductivity
Part Number
HI8936CLN
Brand Name
Hanna Instruments
UNSPSC Code
41115609
Display
LCD

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Key Features

  • Utilizes Hanna's potentiometric four-ring conductivity probe
  • Automatic temperature compensation
  • Direct probe connection eliminates signal loss
  • Use in conjunction with platinum conductivity probes
  • Measures 4-19/64" width by 6-1/2" height by 2-51/64" depth

Package Details

Shipping Weight: 2 pounds
Package Size: 7.6 x 7.3 x 5.2 inches

Product Description

Conductivity transmitter is supplied complete with instructions. Utilizes Hanna's potentiometric four-ring conductivity probe. Automatic temperature compensation. Direct probe connection eliminates signal loss. Use in conjunction with platinum conductivity probes. Conductivity transmitter is our redesigned conductivity transmitter that utilizes a four-ring potentiometric probe. This probe is virtually immune to contamination by unclean solutions. This allows the transmitter to operate at peak performance at all times. Temperature effects are compensated for by utilizing both the built-in temperature sensor on the probe and the transmitter's ATC circuitry with a beta of 2 percent per degree C. Direct connection of the probe to the transmitter assures a positive electrical connection with no signal loss over long distances. Requires external power to the 4-20 mA current loop. Range: 0 to 1999 micro Siemens per centimeter. Resolution: 1 micro Siemens per centimeter. Accuracy at 20 degree C: +/-2 percent FS (excluding probe error). Calibration: manual, two point, with offset and slope trimmers. Temperature compensation: fixed or automatic from 0 to 50 degree C with betais equal to 2 percent per degree C. Recorder output: 4-20 mA, not isolated, maximum 500 Ohm. Power supply: 17-36 VDC. Environment: 0 to 50 degree C; RH maximum 95 percent non-condensing.

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