A-Thermocouple WRE-120 WRE-130 WRE-320 WRE-330
Thermocouple WRE- Brief Description
Thermocouple WRE- industrial assembly-type thermocouple without fixed device,splash proof type,which is used as a sensor to measure temperature, Thermocouple WRE- usually matched with display instruments, recording meter and electronic computer.Thermocouple WRE- can directly measure temperature from 0℃ to 800℃ of liquid, vapor, gas medium and solid surface during various production processes. In addition, Thermocouple WRE- has the advantages of simple assembly, convenient replacement, pressure spring type temperature sensing element, good anti-vibration, wide measuring range, high mechanical strength, good pressure durability.
Thermocouple WRE-120 WRE-121 WRE-122 WRE-123 Working principle
Thermocouple WRE- working principle: two conductors with different components are welded at both ends to form a loop, measuring temperature directly side is called measurement side, terminal side is called reference side. When the temperature between measurement side and reference side has a difference, it will generate heat in the loop current, then connected to the display instrument, And the instrument indicates the corresponding temperature value of the thermal electromotive force generated by the thermocouple. Thermocouple thermoelectric EMF will grow with the measurement temperature’s growth, The size of the thermal electromotive force is related to the temperature of both ends. It has nothing to do with the length, diameter of the thermode.
Junction box, protective tube, insulated casing, termals and thermal electodes form a basic structure of assembly-type thermocouple, with a variety of installation of fixtures.
Thermocouple WRE- Main technical parameter
Temperature measurement range and tolerance
| Thermocouple type | Code | Graduation | Measurement range℃ | tolerance△t ℃ |
| Nickel – chromium | WRE | E | Max Temp:0~800 Working Temp:0~600 |
±2.5℃/±0.75%│t│ |
Thermocouple WRE Thermal response time
When the temperature appear step change, the thermocouple output variation is to the equivalent of 50% of the change, The time required is called the thermal response time “T”.
The nominal pressure of Thermocouple WRE
Generally speaking, Thermocouple WRE- is the static outside pressure which the protection tube can withstand without being broken in the room temperature. In fact, allowing working pressure is not only related to the protection tube material, the diameter and wall thickness, it is also related to its structure, the installation method, the into depth, the measured flow rate to its structure, the installation method, the into depth, the measured flow rate and the type of media.
The test voltage of the insulation resistance in room temperature is DC 500V±50V, The atmospheric conditions of measuring at the room temperature insulation resistance is 15~35℃, relative humidity is 45% and atm pressure is 86~106kPa,
a. For thermocouples that is longer than 1 meters, the product of the resistance value at ambient-temperature and its length should be not less than 100.
Can be expressed as: Rr. L≧100MΩ.ML>1m
Rr here means the insulation resistance value of the thermocouple at ambient-temperature, the unit is MΩ.
b. For thermocouple of which the length is equal to/less than 1m small, its ambient temperature insulation resistance value shall not be less than 100MΩ.
Upper-limit temperature of the insulation resistance
The upper-limit temperature of the insulation resistance for Thermocouple WRE- should not be less than the following provisions:
| Upper-limit temperature℃ | Test temperature t℃ | Resistance value MΩ |
| 100≤tm<300 | t=tm | 10 |
| 300≤tm<500 | t=tm | 2 |
| 500≤tm<850 | t=tm | 0.5 |
| 850≤tm<1000 | t=tm | 0.08 |
| 1000≤tm<1300 | t=tm | 0.02 |
| tm>1300 | t=1300 | 0.02 |
Thermocouple WRE- Model
| WR | Thermocouple | Content | ||||
| Code | Heat probe type | |||||
| R | Pt-Rh30- Pt-Rh6 | |||||
| P | Pt-Rh 10-Pt | |||||
| N | Nickel chromium-nickel silicon | |||||
| M | Nickel chromium nickel silicon – silicon | |||||
| E | Nickel chromium – nickel copper | |||||
| C | Copper – Copper – Nickel | |||||
| F | Iron copper nickel | |||||
| Code | Output signal number | |||||
| None 2 |
single double |
|||||
| Code | Fixed device form | |||||
| 1 2 3 4 5 6 7 |
Without fixed device Fixed threaded Movable flange Fixed flange Movable flange square Fixed thread conical Straight pipe joint type |
|||||
| Code | Terminal type | |||||
| 2 3 4 |
Splash proof Waterproof type Explosion proof type |
|||||
| Code | Protection tube diameter | |||||
| 0 | Φ16mm | |||||
| 1 | Φ25mm | |||||
| 2 | Φ16mm | |||||
| 3 | Φ20mm | |||||
B-Thermocouple WRN-120 WRN-130 WRN-320 WRN-330
Thermocouple WRN-120 WRN- Brief Description
Thermocouple WRN- assembly-type thermocouple without fixed device connection,splash proof type,Thermocouple WRN- is used as a sensor to measure temperature, Thermocouple WRN- usually matched with display instruments, recording meter and electronic computer.Thermocouple WRN- can directly measure temperature from 0℃ to 1300℃ of liquid, vapor, gas medium and solid surface during various production processes. In addition, Thermocouple WRN- has the advantages of simple assembly, convenient replacement, pressure spring type temperature sensing element, good anti-vibration, wide measuring range, high mechanical strength, good pressure durability.
Thermocouple WRN- Working principle
Thermocouple WRN- working principle: two conductors with different components are welded at both ends to form a loop, measuring temperature directly side is called measurement side, terminal side is called reference side. When the temperature between measurement side and reference side has a difference, Thermocouple WRN- will generate heat in the loop current, then connected to the display instrument, And the instrument indicates the corresponding temperature value of the thermal electromotive force generated by the thermocouple. Thermocouple thermoelectric EMF will grow with the measurement temperature’s growth, The size of the thermal electromotive force is related to the temperature of both ends. It has nothing to do with the length, diameter of the thermode.
Junction box, protective tube, insulated casing, termals and thermal electodes form a basic structure of assembly-type thermocouple, with a variety of installation of fixtures.
Thermocouple WRN- Main technical parameter
Temperature measurement range and tolerance
| Thermocouple type | Code | Graduation | Measurement range℃ | tolerance△t ℃ |
| Nickel chromium nickel silicon | WRN | K | Max Temp:0~1300 Working Temp:0~1000 |
±2.5℃/±0.75%│t│ |
Note: “t” is absolute value of measured temperature of temperature-sensing element.
Thermocouple WRN- WRN-123 Thermal response time
When the temperature appear step change, the thermocouple output variation is to the equivalent of 50% of the change, The time required is called the thermal response time “T0.5”
The nominal pressure of the Thermocouple WRN-
Generally speaking, it is the static outside pressure which the protection tube can withstand without being broken in the room temperature. In fact, allowing working pressure is not only related to the protection tube material, the diameter and wall thickness, it is also related to its structure, the installation method, the into depth, the measured flow rate to its structure, the installation method, the into depth, the measured flow rate and the type of media.
The test voltage of the insulation resistance in room temperature is DC 500V±50V, The atmospheric conditions of measuring at the room temperature insulation resistance is 15~35℃, relative humidity is 45% and atm pressure is 86~106kPa,
For thermocouples that is longer than 1 meters, the product of the resistance value at ambient-temperature and its length should be not less than 100.
Can be expressed as: Rr. L≧100MΩ.ML>1m
Rr here means the insulation resistance value of the thermocouple at ambient-temperature, the unit is MΩ.
For thermocouple of which the length is equal to/less than 1m small, its ambient temperature insulation resistance value shall not be less than 100MΩ.
Upper-limit temperature of the insulation resistance
The upper-limit temperature of the insulation resistance for Thermocouple WRN- should not be less than the following provisions:
| Upper-limit temperature℃ | Test temperature t℃ | Resistance value MΩ |
| 100≤tm<300 | t=tm | 10 |
| 300≤tm<500 | t=tm | 2 |
| 500≤tm<850 | t=tm | 0.5 |
| 850≤tm<1000 | t=tm | 0.08 |
| 1000≤tm<1300 | t=tm | 0.02 |
| tm>1300 | t=1300 | 0.02 |
Thermocouple WRN-120
| WR | Thermocouple | Content | ||||
| Code | Heat probe type | |||||
| R | Pt-Rh30- Pt-Rh6 | |||||
| P | Pt-Rh 10-Pt | |||||
| N | Nickel chromium-nickel silicon | |||||
| M | Nickel chromium nickel silicon – silicon | |||||
| E | Nickel chromium – nickel copper | |||||
| C | Copper – Copper – Nickel | |||||
| F | Iron copper nickel | |||||
| Code | Output signal number | |||||
| None 2 |
single double |
|||||
| Code | Fixed device form | |||||
| 1 2 3 4 5 6 7 |
Without fixed device Fixed threaded Movable flange Fixed flange Movable flange square Fixed thread conical Straight pipe joint type |
|||||
| Code | Terminal type | |||||
| 2 3 4 |
Splash proof Waterproof type Explosion proof type |
|||||
| Code | Protection tube diameter | |||||
| 0 | Φ16mm | |||||
| 1 | Φ25mm | |||||
| 2 | Φ16mm | |||||
| 3 | Φ20mm | |||||









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