Hanna HI3133B Platinum ORP Half-Cell Electrode
The Hanna HI3133B Platinum ORP Half-Cell Electrode is a precision ORP half-cell electrode featuring a platinum pin sensing element, ideal for accurate and consistent oxidation-reduction potential (ORP) measurements. This electrode is designed for use in tandem with a separate reference electrode, offering flexibility in both laboratory and industrial applications.
Key Features
Platinum Pin for Enhanced Accuracy: Designed with a platinum sensing surface, this electrode delivers excellent sensitivity and fast response time, even in demanding redox environments.
Customizable Half-Cell Design: Since it is a half-cell electrode, the HI3133B pairs with a reference electrode of your choice, allowing a tailored measurement setup to suit your specific needs.
Durable Glass Body: Additionally, the glass construction ensures strong chemical resistance and easy maintenance—making it ideal for repeated use in harsh sample matrices.
Wide Instrument Compatibility: With a BNC connector and coaxial cable, this electrode integrates seamlessly with most benchtop ORP meters, including those outside the Hanna family.
Optimized for Laboratory Temperatures: Moreover, it performs best in controlled settings, supporting measurements between 20 to 40°C (68 to 104°F).
Technical Specifications
| Parameter | Details |
|---|---|
| Model | HI3133B |
| Electrode Type | ORP Half-Cell Electrode |
| Sensing Element | Platinum pin |
| Body Material | Glass |
| Measurement Range | mV (typical ORP scale) |
| Recommended Temperature Range | 20 to 40°C (68 to 104°F) |
| Connector Type | BNC |
| Cable | Coaxial |
Applications
Research Laboratories: Ideal for electrochemical studies where a separate reference electrode is preferred for system customization.
Industrial Process Monitoring: Often used in redox potential analysis during plating, water treatment, and chemical production processes.
Academic Experiments: Furthermore, it’s suitable for controlled ORP testing in teaching labs and calibration protocols.
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