
Allicdata Part #: | RL1007-6890-103-D1-ND |
Manufacturer Part#: |
RL1007-6890-103-D1 |
Price: | $ 0.57 |
Product Category: | Sensors, Transducers |
Manufacturer: | Amphenol Advanced Sensors |
Short Description: | THERMISTOR NTC 12KOHM 4073K DISC |
More Detail: | NTC Thermistor 12k Disc, 2.8mm Dia x 3.8mm W |
DataSheet: | ![]() |
Quantity: | 1000 |
5000 +: | $ 0.52252 |
Series: | RL1007 |
Packaging: | Bulk |
Part Status: | Active |
Resistance in Ohms @ 25°C: | 12k |
Resistance Tolerance: | ±10% |
B Value Tolerance: | -- |
B0/50: | -- |
B25/50: | -- |
B25/75: | -- |
B25/85: | 4073K |
B25/100: | -- |
Operating Temperature: | -50°C ~ 150°C |
Length - Lead Wire: | 1.50" (38.00mm) |
Mounting Type: | Through Hole |
Package / Case: | Disc, 2.8mm Dia x 3.8mm W |
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NTC thermistors are temperature sensors typically used in temperature measurement applications. The RL1007-6890-103-D1 is a particular type of thermistor that is often used to measure extreme temperatures and is mainly designed to resist high temperatures and radiation. This thermistor can be used in smartphones, tablets, medical instruments, cars, and any other device that requires accurate and reliable temperature readings. Here, we\'ll go over the RL1007-6890-103-D1\'s application field and working principle.
Application Field:
The RL1007-6890-103-D1 is a nickel-based, negative temperature coefficient (NTC) thermistor. Its high-temperature resistant coating enables it to measure extreme temperatures up to 300°C with high accuracy and reliability. This thermistor can be used in a variety of applications, but it is most widely used in temperature measurement applications that involve high temperatures or radiation. Some examples of these applications include:
- Spacecrafts, satellites
- Industrial heating, cooling, and measuring systems
- Fire alarm systems
- Automotive applications
- Medical devices
- Optoelectronics
Working Principle:
The RL1007-6890-103-D1 thermistor is an NTC thermistor composed of an electrically conductive metal such as nickel. Its resistance varies with the temperature, and has a negative temperature coefficient, where its resistance decreases with an increase in temperature. The thermistor is composed of a resistor, an insulating material, and a lead-out line, which is connected to the resistor by welding. As a result, when the temperature of the knee is a certain temperature around the thermistor, the resistance of the thermistor will change. The resistance of the thermistor decreases with an increase in temperature, or increases with a decrease in temperature.
When the RL1007-6890-103-D1 thermistor is connected to a voltage source, a current flows through the thermistor depending on its resistance. When the temperature around the thermistor changes, its resistance will also change, and the current will also change proportionally, allowing the thermistor to accurately measure any changes in temperature.
The RL1007-6890-103-D1 thermistor is designed with a high-temperature resistant coating that enables the thermistor to accurately measure extreme temperatures up to 300°C. Furthermore, the thermistor is designed to be radiation-resistant, which allows it to be used in applications that involve exposure to ionizing radiation, such as spacecrafts, satellites, and medical devices.
Conclusion:
The RL1007-6890-103-D1 is a nickel-based NTC thermistor designed to measure extreme temperatures up to 300°C. It is also radiation-resistant and can be used in a variety of temperature measurement applications, such as spacecrafts, satellites, fire alarm systems, industrial heating, cooling, and measuring systems, automotive applications, medical devices, and optoelectronics. The thermistor works by connecting it to a voltage source and sensing any changes in temperature through the change in resistance.
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