Nuke Smart Manufacturing (Nanjing) Technology Co., Ltd.
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NUKE pt100 Input High Temperature Measuring Wire

NUKE High-temperature PT100 sensor cable: features durable materials like stainless steel, ideal for industrial, lab settings; Nuke ensures quality, precision, customization.

  • High Temperature Resistance: Designed to withstand extreme temperatures, making it suitable for industrial applications.
  • Durable Construction: Made with high-quality materials like stainless steel for enhanced durability and longevity.
  • Precision Measurement: Ensures accurate temperature readings for reliable performance in critical environments.
  • Customizable Options: Available in various configurations to meet specific application needs.
  • Versatile Applications: Ideal for use in high-temperature environments such as furnaces, reactors, and manufacturing processes.

NUKE pt100 Input High Temperature Measuring Wire Description

The PT100 high-temperature sensor cable is engineered for precise temperature measurement in extreme environments, featuring robust stainless steel construction for durability and accuracy. Ideal for applications in industries such as chemical processing, metallurgy, and energy production, this sensor ensures reliable performance in furnaces, reactors, and high-temperature machinery. Targeted at industrial clients requiring stable and accurate temperature monitoring, the sensor cable comes in customizable configurations to meet diverse operational needs. Nuke guarantees high quality, competitive pricing, and tailored solutions for specialized applications.

NUKE pt100 Input High Temperature Measuring Wire Data Sheet

PT100 temperature measurement wire

Performance and Parameters

1. Temperature Coefficient (TCR) of Platinum Resistance Elements TCR = (R1 – R°) / R° × 100, where R1 represents the resistance value at 100 °C, R° represents the resistance value at 0 °C. We provide platinum resistance elements with a TCR of 0.003851 that comply with the IEC751 standard. In addition, we can also supply platinum resistance elements with other temperature coefficients for our customers, such as those with a TCR of 0.003750, etc.

2.Temperature-Resistance Characteristics of Platinum Resistance Elements RṬ = R°[1 + aT – bT² – cT³(T – 100)] where RṬ represents the resistance value at temperature T, R° represents the resistance value at 0 °C, and a, b, and c are coefficients. The coefficients when TCR = 0.003851.

Temperature a b c
T<0 3.90802×10-3 5.80195×10-7 4.27351×10-12
T≥0 3.90802×10-3 5.80195×10-7 0

3. The Error of Platinum Resistance Elements

Level Resistance error at zero degrees (%) Temperature error(°C) Temperature coefficient TCR error (ohm/ohm/° c)
1/3DIN ±0.04 ±(0.10+0.0017T) 0.003851±0.000004
A ±0.06 ±(0.15+0.0027T) 0.003851+0.000005
B ±0.12 ±(0.30+0.005T) 0.003851+0.000012
2B ±0.25 ±(0.60+0.01T) 0.003851+0.000024

4.Stability of Platinum Resistance Elements Platinum resistive elements have good long-term stability. For example, CRZ-1632 lasts for 300 hours at 400C and has a maximum temperature drift of only 0.02 ° C at 0’C

5. Thermal response time of platinum resistance elements

Model Thermal response time T.q (seconds)
Air Water
V=1.0m/s V=3.0m/s
CRZ-1632 10 7 0.3
CRZ-2005 16 11 0.3

6. Self-heating and test current of platinum resistance elements The test current of the platinum resistance element should not exceed the allowable value, for example, the CRZ-1632 element is installed in a φ 8mm protective tube without any filler, immersed in 0 ° C stirred water, when the test current is 1mA, the self-heating temperature rise is 0.05 ° C; when the test current is 5mA, the self-heating temperature rise is 2.2 ° C.

7. Self-heating coefficient of platinum resistance elements

Model Self-heating coefficient (mW/° C)
Air Still water
V=1.0m/s Still
CRZ-1632-100 2 1 12
CRZ-2005-100 4 2 20
CRZ-2005-1000 4 2 20

8.Temperature resistance meter

Nominal resistance (Ω) 100 500 1000
TCR(10 6/K) 3851
Temperature (C) Resistance value(Ω)
-50 80.31 401.53 803.07
0 100.00 500.00 1000.00
50 119.40 596.98 1193.95
100 138.51 692.50 1385.00
150 157.33 786.57 1573.15
200 175.86 879.20 1758.40
250 194.10 970.37 1940.74
300 212.05 1060.09 2120.19
350 229.72 1148.37 2296.73
400 247.09 1235.19 2470.38
450 264.18 1320.56 2641.12
500 280.98 1404.48 2808.96
550 297.49 1486.95 2973.90
600 313.71 1567.97 3135.94
650 329.64 1647.54 3295.08

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NUKE pt100 Input High Temperature Measuring Wire Applications

The PT100 high-temperature sensor cable has diverse applications across several specialized fields:

  • Chemical Processing: Used in reactors and distillation units where precise high-temperature monitoring ensures reaction control and safety.
  • Metallurgy: Essential in furnaces and heat treatment processes to monitor extreme temperatures crucial for metal properties and quality.
  • Energy Production: Applied in boilers and turbines to maintain stable temperatures, optimizing efficiency and reducing downtime in power plants.
  • Pharmaceutical Manufacturing: Ensures accurate temperature control in sterilization and production equipment to meet stringent safety standards.
  • Aerospace: Used in engine testing and material testing labs where reliable, high-temperature data is critical for safety and innovation.
More Information
  • Nuke pt100 temperature measurement line is waterproof and high temperature resistant. nuke is located in Nanjing, China, with a professional R & D team, deeply engaged in the instrument industry.
  • Products have integrated electromagnetic flowmeter, vortex flowmeter, split electromagnetic flowmeter and other products, can be customized according to customer choice and software page design.

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