KC503J2K Allicdata Electronics
Allicdata Part #:

KC503J2K-ND

Manufacturer Part#:

KC503J2K

Price: $ 0.92
Product Category:

Sensors, Transducers

Manufacturer: US Sensor/Littelfuse Inc
Short Description: THERMISTOR NTC 50KOHM 3892K BEAD
More Detail: NTC Thermistor 50k Bead, Epoxy
DataSheet: KC503J2K datasheetKC503J2K Datasheet/PDF
Quantity: 1000
500 +: $ 0.83664
Stock 1000Can Ship Immediately
$ 0.92
Specifications
Series: KC
Packaging: Bulk 
Part Status: Active
Resistance in Ohms @ 25°C: 50k
Resistance Tolerance: ±10%
B Value Tolerance: --
B0/50: 3892K
B25/50: --
B25/75: --
B25/85: --
B25/100: --
Operating Temperature: 135°C
Length - Lead Wire: 1.50" (38.00mm)
Mounting Type: Free Hanging
Package / Case: Bead, Epoxy
Description

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Introduction

The KC503J2K is a type of temperature sensors that is based on NTC (Negative Temperature Coefficient) Thermistors. They are useful for temperature detection and temperature control. NTC thermistors are small, compact, and sensitive temperature sensors which consist of a bead or disk constructed of semiconductor material and a pair of leads. They are the most commonly used temperature sensing devices due to their accuracy, reliability and cost-effectiveness.

Applications

KC503J2K thermistors are used in various industries for a variety of temperature sensing applications. These include on/off temperature control for home and office appliances, industrial equipment, and machinery. They are also used in automotive and consumer electronics such as personal computers, cellular phones, and microwaves. Additionally, they are used for medical equipment such as patient monitoring devices, blood pressure monitors, and temperature regulation systems.

Working Principle

NTC thermistors are made up of a ceramic material composed primarily of nickel, cobalt, manganese, and copper. This material is sensitive to temperature; therefore, when exposed to temperature changes, the resistance of the material changes as well. This is due to the fact that when the temperature rises, the molecular bonds between atoms in the material become weaker, and the current is easily able to flow through the material. Conversely, when the temperature decreases, the bonds between atoms are strengthened, and less current is able to flow.

The amount of current that is able to flow through the material is a good indicator of the temperature, and this is the basis of the KC503J2 mechanism. A known amount of current is sent through the thermistor, and the resistance of the material can be measured. This resistance is then converted into temperature, and the temperature can be displayed on a digital readout or activated to control a system.

Advantages

KC503J2K thermistors have many advantages compared to other types of temperature sensors. They are accurate, reliable, and cost effective. They are small and have a good response time. They are also very durable and can withstand high temperatures up to 200°C. Additionally, they have a low thermal mass and therefore can reach their operating temperature very quickly, which is important in applications where fast response time is necessary.

NTC thermistors also have a wide range of temperatures that they can operate in. They can operate in low temperatures from -55°C to high temperatures of 200°C. This makes them very versatile and suitable for a wide variety of applications. They are also immune to electrical noise which makes them a good choice for environments with high levels of electrical interference.

Conclusion

KC503J2K is an NTC thermistor that is used for temperature sensing and control. It has a wide range of applications due to its accuracy, reliability, cost-effectiveness, and small size. It is also very durable and can withstand high temperatures. It is also immune to electrical noise, making it a good choice for noisy environments.

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

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