H4332KDYA Allicdata Electronics
Allicdata Part #:

H4332KDYA-ND

Manufacturer Part#:

H4332KDYA

Price: $ 0.46
Product Category:

Resistors

Manufacturer: TE Connectivity Passive Product
Short Description: RES 332K OHM 1/2W 0.5% AXIAL
More Detail: 332 kOhms ±0.5% 0.5W, 1/2W Through Hole Resistor A...
DataSheet: H4332KDYA datasheetH4332KDYA Datasheet/PDF
Quantity: 1000
250 +: $ 0.41724
Stock 1000Can Ship Immediately
$ 0.46
Specifications
Series: Holco, Holsworthy
Packaging: Bulk 
Part Status: Active
Resistance: 332 kOhms
Tolerance: ±0.5%
Power (Watts): 0.5W, 1/2W
Composition: Metal Film
Features: Pulse Withstanding
Temperature Coefficient: ±15ppm/°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

The H4332KDYA resistor is one of the most versatile resistors on the market, offering the user an effective and reliable gadget for a variety of insulation applications. This article will explore the application field and working principle in greater detail.

Application Field

The H4332KDYA can be used for a variety of insulation applications, including radio frequency (RF), automotive, medical, industrial, and audio industries. The resistor is best suited to be used in an RF device, as it can effectively handle frequency ranges from 10MHz to 600MHz. The resistance value is kept consistent throughout the entire frequency range, which allows users to accurately adjust the resistance level required for their operational needs.

In automotive applications, the H4332KDYA is an ideal choice for insulation purposes. This particular resistor can withstand temperatures as low as -55°C up to an impressive +150°C, making it perfect for use in electric and hybrid vehicle controllers. Furthermore, the resistor is RoHS compliant which makes it safe to use in a variety of automotive applications.

The H4332KDYA is also compliant with industry-standard medical device certifications. This makes it an ideal choice for medical electronics such as diagnostic equipment, medical prostheses, and even hospital equipment and medical wearables. The resistor meets several industrial environmental standards, making it perfect for industrial control systems and HVAC systems.

Finally, the resistor is great for audio applications, given its low-noise performance. The H4332KDYA can handle low-noise frequencies, allowing it to be effectively used for audio signal amplification, equalization, and volume control. This makes it an ideal choice for high-end audio systems or professional audio systems.

Working Principle

The H4332KDYA works on the basis of the standard ohmic law, which states that electric current is directly proportional to the applied voltage. The resistor is designed to give a fixed resistance value, regardless of the amount of voltage present. This allows the user to accurately and reliably control the amount of voltage flowing through the device.

The resistor’s working principle is also reliant on its thermodynamic properties. Heat is generated by the resistor when current passes through it. The resistor is designed with a heat-dissipating system which directs heat away from the resistor and towards the mounting plate. This keeps the temperature inside the resistor within safe levels, ensuring its stability.

The resistor also works on the thermal expansion principle. When the resistor is exposed to a temperature change, the resistance value changes slightly. This allows the user to adjust the resistance value to compensate for any temperature changes, ensuring stable performance.

Conclusion

The H4332KDYA resistor is an effective and reliable component, perfect for a variety of insulation applications. Its versatile design allows it to be used in RF, automotive, medical, industrial, and audio applications. The resistor works on the basis of the standard ohmic law, and also relies on its thermodynamic properties and thermal expansion principle for optimal performance.

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

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