RTD with no-fixed device
Overview
RTD with no-fixed device is a primary element that converts temperature change into resistance value change. It is usually necessary to transfer resistance signal to computer control device or other primary instruments through leads. The industrial thermal resistance is installed at the production site and there is a certain distance from the control room. Therefore, the lead of the thermal resistance will have a great impact on the measurement results.
RTD with no-fixed device is a kind of temperature detector commonly used in medium and low temperature areas. Its main features are high measurement accuracy and stable performance. The measurement accuracy of platinum thermistor is , which is not only widely used in industrial temperature measurement, but also made into a standard reference instrument. The temperature sensing elements of the metal thermal resistance include the cross skeleton structure of the quartz sleeve, the rod structure of the fried dough twist skeleton structure, etc. There are many kinds of temperature sensing materials commonly used for metal thermal resistance, platinum wire is commonly used. In addition to platinum wire, there are also copper, nickel, iron, iron nickel, tungsten, silver and other metal thermal resistance materials for industrial measurement. Thin film thermal resistance is manufactured by electron cathode sputtering, which can realize industrial mass production. The framework is made of ceramic and the lead is made of platinum palladium alloy.
Working principle of RTD with no-fixed device
RTD with no-fixed device the temperature by using the characteristic that the resistance of a substance changes with the temperature. When the resistance value changes, the working instrument will display the temperature value corresponding to the resistance value.
Main tech date of RTD with no-fixed device
Graduation: PT100 Cu50 Cu100
Range of temperature measurement ℃: A -30-300 B -50-500 -50~100
Diameter: φ16, φ12
Install mode: no fix device
Model |
Graduation |
Range of temperature measurement ℃ |
Thermal response time
|
d
|
L
|
WZP-120 WZP2-120 |
Pt100
|
A -30-300 B -50-500
|
<90s <24s
|
16 |
300 350 400 450 500 550 650 900 1150 1650 2150
|
WZP-120G WZP2-120G |
|||||
WZP-121 WZP2-121 |
12
|
||||
WZP- 121G WZP2-121G |
|||||
WZP- 130 WZP2-130 |
16
|
||||
WZP- 130G WZP2-130G |
|||||
WZP- 131 WZP2-131 |
12 |
||||
WZP- 131G WZP2-131G |
|||||
WZC-120G |
Cu50 Cu100
|
-50~100
|
<120s <40s
|
16 |
|
WZC-120 |
|||||
WZC-130 |
|||||
WZC-130G |
|||||
WZC-121 |
12 |
||||
WZC-121G |
|||||
WZC-131 |
|||||
WZC-131G |
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