HSC250680RJ Allicdata Electronics
Allicdata Part #:

A127602-ND

Manufacturer Part#:

HSC250680RJ

Price: $ 23.24
Product Category:

Resistors

Manufacturer: TE Connectivity Passive Product
Short Description: RES CHAS MNT 680 OHM 5% 250W
More Detail: 680 Ohms ±5% 250W Wirewound Chassis Mount Resistor
DataSheet: HSC250680RJ datasheetHSC250680RJ Datasheet/PDF
Quantity: 198
1 +: $ 21.12300
10 +: $ 18.70740
25 +: $ 17.19880
50 +: $ 16.29360
100 +: $ 15.69010
250 +: $ 15.08660
Stock 198Can Ship Immediately
$ 23.24
Specifications
Operating Temperature: -55°C ~ 200°C
Failure Rate: --
Package / Case: Axial, Box
Lead Style: Terminal Screw Type
Height - Seated (Max): 1.654" (42.00mm)
Size / Dimension: 4.291" L x 2.874" W (109.00mm x 73.00mm)
Mounting Feature: Flanges
Coating, Housing Type: Aluminum
Features: --
Series: HS, CGS
Temperature Coefficient: ±30ppm/°C
Composition: Wirewound
Power (Watts): 250W
Tolerance: ±5%
Resistance: 680 Ohms
Part Status: Active
Packaging: Bulk 
Description

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Chassis Mount Resistors are some of the most versatile and widely used resistors in the electronics industry. The HSC250680RJ is a special type of chassis mount resistor that is designed with a high current rating and a low temperature coefficient. It is a popular and widely used choice for many applications, including high current and high power amplifiers, DC-DC converters, power supplies, lighting designs, and automotive and industrial equipment. This article will discuss the application field and working principle of the HSC250680RJ.

Application Field

The HSC250680RJ is a chassis mount resistor with a high current rating and a low temperature coefficient. This makes it an ideal choice for high power and current applications, such as:

  • High power amplifiers
  • DC-DC converters
  • Power supplies
  • Lighting designs
  • Automotive and industrial equipment

The HSC250680RJ is also highly suitable for use in applications where temperature changes may occur, such as vehicle batteries, medical equipment, and other electronics that are exposed to extreme temperatures. Its low temperature coefficient means that its resistance remains relatively stable when the temperature changes.

Working Principle

The HSC250680RJ is a chassis mount resistor that utilizes the principle of Ohm’s law to regulate current flow. It consists of a ceramic substrate and two thick metal ends. When connected directly to a voltage source, the ceramic substrate provides a physical barrier that causes electricity to flow through it at a reduced rate. The two metal ends act as a resistor, which can be adjusted by changing the size of the resistive element. The resistance of the resistor is equal to the ratio of the voltage applied to the current that passes through it. This ratio is determined by the geometry of the resistor.

In order to achieve a high current rating, the HSC250680RJ utilizes a special alloy to provide superior thermal stability. This alloy is composed of compounds such as nickel, iron, chromium, and manganese. The metal ends are also highly resistant to corrosion, making the HSC250680RJ a reliable and durable choice for many applications.

In addition, the HSC250680RJ offers excellent temperature stability, thanks to its low temperature coefficient. This means that the resistance of the resistor will remain relatively stable when temperatures fluctuate. This makes it ideal for applications where temperature changes may occur, such as vehicle batteries, medical equipment, and other electronics that are exposed to extreme temperatures.

Conclusion

The HSC250680RJ is a chassis mount resistor with a high current rating and a low temperature coefficient. It is highly suitable for use in high power and current applications, such as high power amplifiers, DC-DC converters, power supplies, lighting designs, and automotive and industrial equipment. It also offers excellent temperature stability, thanks to its low temperature coefficient. The metal ends are also highly resistant to corrosion, making the HSC250680RJ a reliable and durable choice for many applications.

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

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