Overview
A sealed stainless-steel NTC assembly for appliance and water-temperature measurement. A one-piece shell and multilayer sealing are intended for durable wet and hot-water installations.

Durable stainless-steel temperature probe for long-term hot-water and appliance integration.
Ask about parameters, interfaces, calibration, versions, customization or volume supply. The answer does not need to pass through layers of resellers.
Durable stainless-steel temperature probe for long-term hot-water and appliance integration.
A sealed stainless-steel NTC assembly for appliance and water-temperature measurement. A one-piece shell and multilayer sealing are intended for durable wet and hot-water installations.
Durable stainless-steel temperature probe for long-term hot-water and appliance integration.
Durable stainless-steel temperature probe for long-term hot-water and appliance integration.
A sealed stainless-steel NTC assembly for appliance and water-temperature measurement. A one-piece shell and multilayer sealing are intended for durable wet and hot-water installations.
NTC resistive output · Host circuit dependent
NTC option dependent · 1% NTC element
Ensure the sensing end makes good thermal contact with the measured medium.
The official Chinese document is currently shared by every language version.
1% NTC element with stainless-steel one-piece housing.
IP68 waterproof structure for long-term wet service.
Specified normal operating range -40 to +100 °C and recommended storage -40 to +85 °C.
NTC resistance, B value and accuracy can be selected for OEM orders.
Ensure the sensing end makes good thermal contact with the measured medium.
Avoid cable strain and verify sealing after installation.
Use the correct resistance-to-temperature table for the ordered NTC option.
Use the product as part of a complete measurement workflow, not as an isolated component. Confirm the water matrix, target range and decision that the data must support.
Integrated TDS and conductivity components for dispensers, purifiers, filter-life estimation and quality indication.
Digital sensors and embedded ASICs for equipment builders, automation systems and water-intensive production.
Small-footprint sensing electronics for connected water devices, pet appliances and intelligent home products.
The applications above are common examples. If this measurement principle may solve a different problem in your field, we welcome a feasibility discussion.
Define the measurement objective and expected range.
Match the sensor, probe or analyzer to the real sample matrix.
Complete mechanical, electrical and communication integration.
Validate results with reference samples before routine operation.
Validate the complete system with representative samples. Record the reference method, temperature and installation conditions. Recheck after cleaning, replacement or process changes, and define a maintenance interval from actual fouling rather than a fixed assumption.
The product platform is defined, but range, calibration and installation must still be confirmed against the actual water matrix and project objective.
Confirm power, interface, cable length, enclosure, sampling frequency, probe position and the host system data format.
Compare representative samples with an agreed reference method and document the acceptance criteria before commissioning.
Yes. Ask for the current ordering specification and describe your application so the correct materials can be supplied.

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Learn More →Tell us your target parameters, water matrix, interface and annual volume. Our engineering team will recommend a practical configuration.
Tell us what you need to measure. Our product and application team will reply by email.