Characteristics, Advantages and Disadvantages
A Ni1000 Tk5000 sensor is a specific type of temperature sensor made of nickel, with a temperature coefficient of 5000 ppm/K at 0°C. The temperature coefficient indicates how strongly the sensor’s resistance changes with temperature. For the Ni1000 Tk5000 sensor, a temperature coefficient of 5000 ppm/K signifies very high sensitivity to temperature changes. A change of 1 kelvin in temperature will cause the sensor’s resistance to change by 5000 parts per million (ppm).
Here are the advantages and disadvantages of Ni1000 Tk5000 sensors, as well as their common applications:
Advantages:
- High sensitivity: Ni1000 Tk5000 sensors have a high temperature coefficient of 5000 ppm/K, meaning they are highly responsive to temperature changes. This makes them suitable for applications requiring a fast and precise response to temperature variations.
- Wide temperature range: Like other nickel-based sensors, Ni1000 Tk5000 sensors can be used over a wide temperature range, making them suitable for diverse applications.
- Robustness: Nickel has good mechanical properties, so Ni1000 Tk5000 sensors are robust and resistant to vibration and shock.
- Chemical resistance: Nickel is corrosion-resistant, making Ni1000 Tk5000 sensors suitable for use in demanding environments.
Disadvantages:
- Cost: Ni1000 Tk5000 sensors can be more expensive than some other types of temperature sensors due to their high sensitivity and accuracy.
- Stability: Although generally stable, Ni1000 Tk5000 sensors can be susceptible to long-term drift, which may lead to deviations in measurement results.
- Measurement circuit requirements: Because of the high temperature coefficient, Ni1000 Tk5000 sensors require specialized measurement circuitry capable of handling this high sensitivity.
Applications:
- Industrial process monitoring and control: Ni1000 Tk5000 sensors are often used in industrial environments where temperature monitoring and control are needed, such as in the chemical, petrochemical and food processing industries.
- HVAC systems: They are used for temperature control in heating, ventilation and air conditioning systems, especially in applications requiring a fast response to temperature changes.
- Laboratory and scientific applications: Ni1000 Tk5000 sensors are used in laboratory experiments and scientific research where accurate and sensitive temperature measurements are required.
- Medical applications: They can be used in medical equipment for patient temperature measurements, particularly in applications where rapid temperature changes are critical.
In general, Ni1000 Tk5000 sensors are used in situations requiring high sensitivity, robustness and precise temperature measurements, especially in industrial and demanding environments.
These sensors are available in many forms, for example as cable probes, surface-mounted probes, outdoor probes, room probes, duct probes, etc.
| TEMPERATURE | SENSOR Ni 1000 Tk 5000 | ||
| °C | Ω | ||
| -50 | 790,88 | ||
| -40 | 830,83 | ||
| -30 | 871,69 | ||
| -20 | 913,48 | ||
| -10 | 956,24 | ||
| 0 | 1.000,00 | ||
| 10 | 1.044,79 | ||
| 20 | 1.090,65 | ||
| 25 | 1.113,99 | ||
| 30 | 1.137,61 | ||
| 40 | 1.185,71 | ||
| 50 | 1.234,97 | ||
| 60 | 1.285,44 | ||
| 70 | 1.337,14 | ||
| 80 | 1.390,12 | ||
| 90 | 1.444,39 | ||
| 100 | 1.500,00 | ||
| 110 | 1.556,98 | ||
| 120 | 1.615,36 | ||
| 130 | 1.675,18 | ||
| 140 | 1.736,47 | ||
| 150 | 1.799,26 | ||










