H424K9BDA Allicdata Electronics
Allicdata Part #:

H424K9BDA-ND

Manufacturer Part#:

H424K9BDA

Price: $ 0.51
Product Category:

Resistors

Manufacturer: TE Connectivity Passive Product
Short Description: RES 24.9K OHM 1/2W 0.1% AXIAL
More Detail: 24.9 kOhms ±0.1% 0.5W, 1/2W Through Hole Resistor ...
DataSheet: H424K9BDA datasheetH424K9BDA Datasheet/PDF
Quantity: 1000
250 +: $ 0.46438
Stock 1000Can Ship Immediately
$ 0.51
Specifications
Series: Holco, Holsworthy
Packaging: Bulk 
Part Status: Active
Resistance: 24.9 kOhms
Tolerance: ±0.1%
Power (Watts): 0.5W, 1/2W
Composition: Metal Film
Features: Pulse Withstanding
Temperature Coefficient: ±25ppm/°C
Operating Temperature: -55°C ~ 155°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.146" Dia x 0.394" L (3.70mm x 10.00mm)
Height - Seated (Max): --
Number of Terminations: 2
Failure Rate: --
Description

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Through Hole Resistors, such as the H424K9BDA, have been available for industrial and commercial applications for many years. While they can be used in a wide variety of applications, the H424K9BDA is particularly well suited to high-power, high-performance applications. This article will provide an overview of the H424K9BDA’s main application field and the working principle of the device.

The H424K9BDA is a through-hole resistor that is designed to be able to withstand very high power and temperature levels. The device is built using a patented process that allows it to offer superior performance and reliability in applications where high current and voltage levels are present. This includes applications such as motor control, LED driving, portable electronics, automotive electronics and lighting. The H424K9BDA is particularly well suited to applications that require very high stability, such as in high-precision medical instrumentation.

The H424K9BDA is designed with a low-DFT (differential thermal transfer) coefficient, which allows it to better manage heat and temperature when operating in high-power applications. The device has a low resistance value when compared to other resistors and is available in a wide range of resistance ranges. This makes it suitable for both high and low resistance applications.

The device is designed with an ‘anti-heat’ design, which helps reduce thermal drift and dynamic power losses. The design also helps improve signal integrity, as the device exhibits very low levels of noise when driven at high currents. This makes it a suitable choice for power supplies in applications where noise immunity is important.

The H424K9BDA is designed with a low-profile design, which helps reduce thermal losses by decreasing the amount of exposed area. This helps reduce the overall size of the device and allows it to be more quickly and easily mounted onto circuit boards. The device also features a high-temperature resistance of up to 155°C.

The H424K9BDA utilizes a metal-oxide film resistor, which is a type of resistor that utilizes a thin layer of metal oxide over a substrate element. This offers superior resistance performance and stability over a wide temperature range when compared to other types of resistors. The H424K9BDA also features a low inductance and high power rating that makes it suitable for use in many applications.

The working principle behind the H424K9BDA is simple: when current is applied to the device, it produces a voltage drop across its terminals. This voltage drop produces a resistance in the circuit, which in turn affects the flow of current. The resistance of the device is determined by its design, which consists of the type of metal oxide film and its thickness.

The H424K9BDA is an ideal resistor for a wide range of applications, due to its high temperature and power rating, low resistance value, and low inductance. Its low profile design makes it suitable for quick and easy mounting on circuit boards. The device also offers superior resistance and stability over a wide temperature range as well as noise immunity, making it suitable for applications that require very high stability.

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

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