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CDTX-2850-Series

Integral Or Remote Mount Conductivity/Resistivity Transmitters

Models In Stock
  • Compact Design
  • Two-Wire 4 to 20 mA Output
  • Automatic Test Solution Recognition
  • Applications
CDTX-2850-Series
From $ 927.20
Models In Stock
Integral Or Remote Mount Conductivity/Resistivity Transmitters CDTX-2850-Series CDTX-2850-Series
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Product Overview
  • Accuracy ± 2 %
  • Accuracy Detail ±2% of output span
  • Additional Features 1 0 to 20 MΩ
  • Applications Aquatic Life Support, Boilers, Cooling Tower, Deionization, Demineralizer, Waste Management, Water Quality Monitoring
  • Approvals Manufactured under ISO 9001 for quality and ISO 14001 for environmental management
  • Automatic Solution Recognition Conductivity values 146.93 μS, 1408.8 μS, 12856 μS [@25°C (77ºF)] (test solutions per ASTM D1125-95) 10 μS, 100 μS, 200 μS, 500 μS, 1000 μS, 5000 μS, 10,000 μS, 50,000 μS, 100,000 μS [@ 25°C (77ºF)] (Standard test solutions)
  • Conductivity Measurement 0.055 to 400,000 µS
  • Conductivity Resolution 0.1%
  • Electrical Output 4 to 20 mA
  • Enclosure Ratings IP65, NEMA Type 4X
  • Housing Material PBT, PVDF
  • Loop Resistance, Max 50Ω at 12 Vdc, 325Ω at 18 Vdc, 600Ω at 24 Vdc
  • Measurement Type Conductivity
  • Mounting Junction box for integral mount PBT
  • Relative Humidity 0 to 95% RH, non condensing
  • Resolution 7 μA
  • Sensor Break Detection 22 mA
  • Storage Temperature, Max 85 °C
  • Storage Temperature, Min -20 °C
  • Supply Power Note 12 to 24 Vdc ±10%, regulated for 4 to 20 mA output (typically called “loop powered”)
  • Supply Voltage 12 to 24 Vdc
  • Temperature Compensation <0.2 °C/ºF
  • Update Rate Single Channel : <600 ms ; Dual Channel: <1200 m
  • Weight 0.75 kg
  • Weight Note NPT Mount Junction Box: 1.75 lb (0.75 kg) Universal Mount: 1.75 lb (0.75 kg)
Electronics are available in various configurations for maximum installation flexibility. The universal-mount version is for pipe, wall, or tank mounting and uses the CDCE-90 Series conductivity/ resistivity sensor (sold separately). It is also available as a combined integral system configuration for in-line mounting and includes a conductivity electrode in a choice of 0.01, 0.1, 1.0, 10.0 or 20.0 cm† “1 cell constants. The CDTX-2850 is ideal for applications with a conductivity range of 0.055 to 400,000 ?S or a resistivity range of 18.2 M? to 10 k?. All CDTX-2850 units are built with NEMA 4X (IP65) enclosures which allow output wiring connections with long cable runs of up to 305 m (1000 feet). The two-wire 4 to 20 mA output has eight 4 to 20 mA output ranges for each electrode cell constant. Each range can be inverted and is field selectable. Standard calibration automatically recognizes conductivity test solution values for simple field calibration. A certification tool is available for validation of the sensor electronics according to USP requirements.

Specifications
Materials
NPT Mount: Junction box for integral mount PBT
Universal/Remote Mount: PBT, PVDF
Automatic Solution Recognition: Conductivity values 146.93 µS, 1408.8 µS, 12856 µS [@25 °C (77 °F)] (test solutions per ASTM D1125-95) 10 µS, 100 µS, 200 µS, 500 µS, 1000 µS, 5000 µS, 10,000 µS, 50,000 µS, 100,000 µS [@ 25 °C (77 °F)] (Standard test solutions)
Electrical
Power: 12 to 24 Vdc ±10%, regulated for 4 to 20 mA output (typically called † œloop powered† )
Accuracy Conductivity: ±2% of reading
Resolution Conductivity: 0.1% of reading
Temperature (For Compensation Only): <0.2 °C/ °F
Update Rate Single Channel Models: <600 ms
Dual Channel Models: <1200 ms
Maximum Temperature/Pressure Rating
    Operating Temperature: -10 to 85 °C (14 to 185 °F)
    Storage Temperature: -20 to 85 °C (-4 to 185 °F)
    Relative Humidity: 0 to 95%, non-condensing
Enclosure: NEMA 4X (IP65)
Current Output
Field-Selectable Ranges
    Factory Set Span 4 to 20 mA:
    0.01 Cell: = 0 to 100 µS (Integral mount only)
    0.10 Cell: = 0 to 1000 µS
    1.0 Cell: = 0 to 10,000 µS
    10.0 Cell: = 0 to 200,000 µS
    20.0 Cell: (CDCE-90-20B, not for integral mount) = 0 to 400,000 µS
Maximum Loop Resistance: 50? at 12 Vdc, 325O at 18 Vdc, 600O at 24 Vdc
Accuracy: ±2% of output span
Resolution: 7 µA
Update Rate: <600 ms
Error Indication: 22 mA
Pure water compensation when using 0.01-cm cell and raw conductivity value <0.5 µS, the CDTX-2850 auto-switches to compensate for non-linear temperature effects found in this low conductivity (high resistivity) range.
Shipping Weight
    NPT Mount Junction Box: 1.75 lb (0.75 kg)
    Universal Mount: 1.75 lb (0.75 kg)
Standards and Approvals: Manufactured under ISO 9001 for quality and ISO 14001 for environmental management
Rated 4 out of 5 by from Sensor Cap This is one of the few conductivity transmitters that I could find with transmitter and probe offered as one unit, AND as a blind configuration (no display.) I have used many of these on various projects, and the configuration jumpers on the transmitter board makes it easy to configure with different cell constants and ranges. The quarter-turn CAP (top cover) seems to fit a little loose... I have two units installed in an area where there is steam and constant light splashing, so I will see in time of the IP65 rating holds up.
Date published: 2020-06-18
Rated 5 out of 5 by from Start Up Achieved Availability of this instrument helped our customer out of a situation that could have delayed start up. There was a hiccup due to delivery, but all things considered, we were able to assist our customer on a timely basis.
Date published: 2021-05-13
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Please, could you inform me if the &quot;Update Rate&quot; is the same as the &quot;Response Time&quot; of the sensor?

Asked by: DanPer
Thank you for your inquiry! The update rate will be the same as the response time for the CDTX-2851.
Answered by: Application Engineer JM
Date published: 2022-08-02

Can you confirm that the measurement/output for these sensors are microsiemens/centimeter (&mu;S/cm) and not microsiemens/meter (&mu;S/cm)?

Asked by: Automation Rob
The output range is microSiemens / centimeter (uS/cm). CDCE-90 sensors are sold separately.
Answered by: ASE HPO
Date published: 2020-04-10
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