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YOKOGAWA K9142TN Junction Assembly

YOKOGAWA K9142TN Junction Assembly

The YOKOGAWA K9142TN, also cataloged as the K9142TN Junction Assembly, operates as a dedicated hardware component for facilitating ion flow between the reference electrode and the process medium within industrial...

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AvailabilityIn stock

SKU: k9142TN
Vendor: Yokogawa
Category: Junction Assembly
Related Series:

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The YOKOGAWA K9142TN, also cataloged as the K9142TN Junction Assembly, operates as a dedicated hardware component for facilitating ion flow between the reference electrode and the process medium within industrial pH measurement systems.

Hardware Specifications

Parameter Specification
Model K9142TN
Brand YOKOGAWA
Origin Japan
Weight 0.02 kg
Dimensions Not specified
Operating Temp Not specified
Product Type Junction Assembly
Compatibility PH8ERP, PH8EFP, PH8EHP Series

Process Control Electrochemical Connectivity

The K9142TN serves as the critical interface in electrochemical pH sensing, maintaining the liquid junction potential necessary for stable millivolt signals. By providing a controlled conductive path between the reference electrolyte and the sample, the assembly minimizes measurement noise and potential drift. This component is essential for maintaining the linearity of the output signal, which is subsequently converted by the transmitter into a standard 4-20 mA HART loop protocol signal for process monitoring.

Frequently Asked Questions

Q: Is the K9142TN compatible with all Yokogawa pH sensors?

A: The K9142TN is specifically engineered for compatibility with the PH8ERP, PH8EFP, and PH8EHP sensor series. Verification of the sensor body type is required to ensure a proper physical and ionic seal.

Q: How does the junction assembly design minimize measurement error?

A: The junction is designed to maintain a stable, low-resistance ionic bridge that resists polarization. By minimizing the asymmetry potential at the junction, it reduces the baseline drift commonly associated with fluctuating process chemistry.

Field Installation Guidelines

  • Ensure the junction assembly is properly seated within the sensor body to prevent leakage of the reference electrolyte, which can lead to rapid measurement degradation.
  • Verify that the junction surface is free of physical contaminants or process precipitates before installation, as these can impede ion flow and increase impedance.
  • After installation, perform a slope and offset calibration using standard pH buffers to confirm the junction is performing within specified millivolt ranges.
  • If the pH measurement exhibits slow response times, inspect the junction for surface fouling or salt crystallization, which may necessitate cleaning or immediate component replacement.
  • Always handle the assembly with care to avoid mechanical stress on the junction matrix, as micro-fractures can introduce unstable reference potentials.