YOKOGAWA SC42-SP34 Contacting Conductivity Sensor – 3/4 in NPT insertion for reliable process water monitoring

1 Brand: YOKOGAWA
2 Model: SC42-SP34
3 Quality: Original module
4 Warranty: 1 year
5 Delivery time: 1 week in stock
6 Condition: New/Used
7 Shipping method: DHL/UPS

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Description

YOKOGAWA SC42-SP34 Contacting Conductivity Sensor – 3/4 in NPT insertion for reliable process water monitoringSC42-SP34

The YOKOGAWA SC42-SP34 is a contacting conductivity cell designed for inline or immersion applications where stable, repeatable conductivity measurement is needed—think cooling towers, RO skids, boiler make-up, or general process water loops. One thing I appreciate is how straightforward it is to mount: the SP34 code indicates a 3/4 in NPT screw-in fitting, so it typically drops into standard tees or small flow chambers without fuss. From my experience, this model pairs smoothly with EXA/FLXA conductivity transmitters and tends to deliver quick temperature compensation when wired with the correct RTD.

Order Placement Process and Guarantees

  • Warranty: 365 days
  • Delivery time: 1 week if in stock; not more than one month at the latest
  • Payment: 50% advance payment; full payment prior to delivery
  • Express options: FedEx, UPS, DHL

Key Features

  • Contacting 2‑electrode design – Suited for low to medium conductivity ranges in clean to mildly fouling water systems.
  • SP34 process connection – 3/4 in NPT screw-in fitting for inline tees, small flow cells, or immersion adaptors.
  • Temperature compensation support – Works with common RTDs (Pt100/Pt1000 depending on option) for accurate, compensated readings.
  • Analyzer compatibility – Designed to interface with YOKOGAWA conductivity transmitters such as FLXA202/FLXA402 and legacy EXA units.
  • Rugged wetted materials – Typically supplied in chemically resistant plastics and noble metal electrodes for stable response in many cases.
  • Flexible installation – Inline mounting in a bypass line, or immersion into tanks/sumps with the right holder.

You might notice that the SC42 family is often chosen where a compact, easy-to-service conductivity probe is preferred over bulky inductive coils. A maintenance lead from a food plant told us their SC42 installation “held calibration longer than expected on RO permeate—quick rinse and it was back on spec.”

Technical Specifications

Brand / Model YOKOGAWA SC42-SP34
Product Type Contacting conductivity sensor (2‑electrode), insertion type
HS Code 9027.80 (Instruments and apparatus for physical/chemical analysis – other)
Power Requirements Not applicable (passive sensor; powered by connected analyzer measurement circuit)
Process Connection 3/4 in NPT (SP34 screw-in type)
Signal I/O Conductivity cell leads + temperature sensor leads (Pt100/Pt1000 depending on option); fixed cable to analyzer
Communication Interfaces None on sensor; interface provided by the paired YOKOGAWA analyzer/transmitter
Operating Temperature Typically 0 to 80 °C (32 to 176 °F), application dependent
Pressure Rating Commonly up to ~0.5 MPa at 25 °C (verify per selected materials and fitting)
Installation Method Inline (tee/flow cell) or immersion via holder; vertical or horizontal lines with steady flow

Related or Supporting Products

  • YOKOGAWA FLXA202 / FLXA402 Conductivity Analyzers – 2‑wire and 4‑wire transmitters that read contacting cells and provide temperature compensation, analog outputs, and comms.
  • YOKOGAWA SC4A Series Contacting Cells – Alternative general‑purpose contacting conductivity sensors with a variety of cell constants and mounting styles.
  • YOKOGAWA ISC40 Series Inductive Sensors – Toroidal (electrodeless) option for high conductivity or fouling media where contacting electrodes are not ideal.
  • Flow fittings and holders – Inline tees/flow cells sized for 3/4 in NPT to stabilize flow and protect the sensor; choose based on line size and velocity.

Installation & Maintenance

  • Mounting orientation: Install in a line with steady flow; avoid dead legs and air pockets. Upstream filtration improves stability in many cases.
  • Wiring: Use shielded cable runs to the transmitter. Keep sensor leads away from high‑voltage or VFD power to minimize noise.
  • Environmental considerations: For panel‑mounted transmitters, allow ventilation in the cabinet and keep humidity controlled; the sensor itself should not be exposed to mechanical shock.
  • Routine cleaning: If readings drift upward, remove and rinse. For scaling, a short soak in a mild acid (e.g., 5% citric) usually helps; for oils, use a non‑ionic detergent. Rinse thoroughly.
  • Calibration: Calibrate with fresh conductivity standards at process temperature. A one‑point check monthly is typical; adjust based on fouling rate.
  • Firmware/updates: Any updates apply to the connected analyzer (FLXA/EXA). Keep transmitter firmware current for best compensation algorithms.
  • Spares: Keep a spare sensor and cable on hand for critical loops; it reduces downtime if cleaning or reconditioning is needed.

Quality & Certifications

  • Manufacturer quality systems: ISO 9001
  • Product compliance: CE; RoHS (typical for analytical sensors)
  • Warranty: 365 days (our supply policy)

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