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M-04 / Sensor model
MO 413
Liquid Temperature Sensor · Sealed liquid temperature sensing for demanding circuits
MO 413 is a robust liquid temperature sensor for mobile and industrial systems, designed for water, oil, coolant and fuel circuits operating under high pressure.
- Temperature
- -35°C to +120°C
- Pressure
- Up to max 400 Bar
- Protection
- IP6K9K

Quick highlights
Performance snapshot
Built for liquid circuits under high pressure and vibration.
- Operating temperature range: -35°C to +120°C
- Operating pressure up to 400 Bar
- Nominal resistance at 25°C: 400 Ohm or 2252 Ohm (different Ohm value on request)
- Ingress protection: IP6K9K
- Thread options: 1/2"-14 NPT or M16x1,5 DIN 3852 Form A (Other values are available on request.)
- Weight: 0.076 kg
Engineering views
Technical overview
- Application
- Measurement of liquid temperature
- Medium
- Water, oil, coolants, fuels
- Operating temperature
- -35°C to +120°C
- Operating pressure
- Up to max 400 Bar
- Nominal resistance
- At 25°C 400 Ohm or 2252 Ohm (different Ohm value on request)
- Ingress protection
- IP6K9K
- Connector
- Grothe Hartman
- Counter connector
- Counter connector kit is available on request.
- Housing material
- Brass
- Weight
- 0.076 kg
- Thread size
- 1/2"-14 NPT or M16x1,5 DIN 3852 Form A (Other values are available on request.)
Module capabilities
- Water, oil, coolants, fuels
- -35°C to +120°C
- Up to max 400 Bar
- At 25°C 400 Ohm or 2252 Ohm (different Ohm value on request)
- IP6K9K
- Grothe Hartman
- Counter connector kit is available on request.
- Brass
- 0.076 kg
- 1/2"-14 NPT or M16x1,5 DIN 3852 Form A (Other values are available on request.)
- Measurement of liquid temperature
Order Code
MO 413 - | X - Connection | X Nominal Resistance at 25°C |
|---|---|---|
| A - 1/2" 14 NPT | 1 - 400 Ohm | |
| B - M16x1,5 DIN 3852 Form A | 2 - 2252 Ohm | |
| C - M14x1,5 DIN 3852 Form A |
Example: MO 413 - A - 1
Need a custom configuration?
Contact EngineeringTell our engineering team about your medium, pressure envelope and thread standard. We'll propose the right connector and resistance variant.
