Horiba Temperature Electrode External Temperature Probe (Model 4163-10T)
Horiba 4163-10T is an external temperature electrode designed for accurate temperature measurement and temperature compensation when used with compatible Horiba pH and water quality meters. This probe is specifically intended for applications where electrodes without built-in temperature sensors are used, enabling precise manual or automatic temperature compensation (ATC) to improve overall measurement accuracy.
The temperature electrode features a robust sensor construction optimized for stable and fast thermal response in laboratory and field environments. By directly measuring sample temperature, the 4163-10T helps ensure reliable pH, ORP, and other electrochemical measurements, particularly in applications where temperature fluctuations can significantly affect results.
Key Features
Dedicated external temperature electrode
Provides accurate temperature measurement for compensation purposes
Essential for electrodes without built-in temperature sensors
Fast response time for real-time temperature tracking
Stable and reliable performance in routine laboratory and field use
Compatible with Horiba LAQUA meters and suitable Horiba instruments
Simple connection and easy operation
Technical Characteristics (General)
Sensor Type: Temperature probe
Function: Temperature measurement and compensation
Application: External ATC for pH and electrochemical measurements
Measurement Range: Suitable for typical laboratory temperature ranges
Compatibility: Horiba meters supporting external temperature input
(Exact temperature range, accuracy, and connector specifications depend on the connected meter model.)
Applications
pH measurement using electrodes without temperature sensors
ORP and electrochemical measurements requiring temperature compensation
Routine laboratory analysis
Water and wastewater testing
Environmental monitoring
Educational and research laboratories
Advantages
Using the Horiba 4163-10T temperature electrode allows users to maintain accurate measurement results when working with combination or reference electrodes that lack built-in temperature sensing. By providing direct temperature input to the meter, it minimizes temperature-related measurement errors and improves repeatability across varying sample conditions.
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