JC103C4R5/F Allicdata Electronics
Allicdata Part #:

JC103C4R5/F-ND

Manufacturer Part#:

JC103C4R5/F

Price: $ 7.39
Product Category:

Sensors, Transducers

Manufacturer: Amphenol Advanced Sensors
Short Description: THERMISTOR NTC 10KOHM 3435K CLIP
More Detail: NTC Thermistor 10k Pipe Sensor Assembly
DataSheet: JC103C4R5/F datasheetJC103C4R5/F Datasheet/PDF
Quantity: 1000
150 +: $ 6.71347
Stock 1000Can Ship Immediately
$ 7.39
Specifications
Series: JC103
Packaging: Bulk 
Part Status: Active
Resistance in Ohms @ 25°C: 10k
Resistance Tolerance: ±6.46%
B Value Tolerance: ±1%
B0/50: --
B25/50: --
B25/75: --
B25/85: 3435K
B25/100: --
Operating Temperature: 0°C ~ 100°C
Length - Lead Wire: --
Mounting Type: Clip On
Package / Case: Pipe Sensor Assembly
Description

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NTC thermistors are widely used in temperature sensing applications. The JC103C4R5/F is a type of NTC thermistor that is capable of sensing, controlling, and protecting temperature on a very small scale. In this article, we will discuss the application field and working principle of the JC103C4R5/F NTC thermistor.

The JC103C4R5/F NTC thermistor is mainly used for temperature measurement applications. It has a high temperature sensing range of -40°C to +125°C. It can also measure temperatures up to 150°C with an accuracy of 5%. Additionally, it has a low temperature drift of 5% per °C. This makes the JC103C4R5/F a great choice for high-temperature measurement applications.

In terms of its working principle, the JC103C4R5/F NTC thermistor works on the basis of the Seebeck effect. The Seebeck effect states that when two dissimilar metals are connected to each other, an electric current will be generated between them. This is due to the fact that when two dissimilar metals come into contact, their electrons rearrange themselves, creating an imbalance in the temperature of the two metals. When this happens, an electric current is generated between them.

In addition to the Seebeck effect, the JC103C4R5/F thermistor also works on the basis of the Resistance Temperature Detector (RTD). The RTD works on the same principle as the Seebeck effect. When a temperature change occurs, the resistance of the RTD will change proportionally with it. This change in resistance will generate a voltage across the RTD, as a result of which, a line voltage output will be created.

The JC103C4R5/F thermistor also works on the basis of thermoelectric effects. A thermoelectric effect is a phenomenon that occurs when a temperature difference is present between two materials. This temperature difference causes a voltage difference to be created between the materials, which can then be used to measure the temperature. The JC103C4R5/F thermistor utilizes this effect to measure temperatures by connecting two conducting materials to a circuit that converts the voltage difference into a temperature.

The JC103C4R5/F thermistor has a variety of uses. It is typically used in medical, automotive, electronic, and aerospace industries. It is also used in industrial applications, such as HVAC systems, as well as in consumer electronics, such as laptops and smartphones. The JC103C4R5/F is also used in military and space applications, as well as in the automotive industry for engine management systems.

In conclusion, the JC103C4R5/F is a type of NTC thermistor that is capable of measuring temperatures over a large range. It uses the Seebeck effect, RTD, and thermoelectric effects to measure temperatures, and is used in a variety of industries. The JC103C4R5/F is highly accurate and has a low temperature drift of 5% per °C, making it a great choice for high-temperature applications.

The specific data is subject to PDF, and the above content is for reference

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