193D Allicdata Electronics
Allicdata Part #:

HM4782-ND

Manufacturer Part#:

193D

Price: $ 32.40
Product Category:

Inductors, Coils, Chokes

Manufacturer: Hammond Manufacturing
Short Description: FIXED IND 8H 150MA 75 OHM CHASS
More Detail: 8H Unshielded Inductor 150mA 75 Ohm Nonstandard
DataSheet: 193D datasheet193D Datasheet/PDF
Quantity: 8
1 +: $ 29.45250
10 +: $ 27.97770
Stock 8Can Ship Immediately
$ 32.4
Specifications
DC Resistance (DCR): 75 Ohm
Height - Seated (Max): 3.060" (77.72mm)
Size / Dimension: 2.500" L x 3.250" W (63.50mm x 82.55mm)
Supplier Device Package: --
Package / Case: Nonstandard
Mounting Type: Chassis Mount
Operating Temperature: --
Ratings: --
Frequency - Self Resonant: --
Q @ Freq: --
Series: 193
Shielding: Unshielded
Current - Saturation: --
Current Rating: 150mA
Tolerance: ±15%
Inductance: 8H
Material - Core: --
Type: --
Part Status: Active
Packaging: Bulk 
Description

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Fixed inductors are widely used in automated applications ranging from construction to manufacturing in a variety of industries. They are most commonly used to store electrical energy for varying amounts of time prior to delivery to an application. In this way, storage inductors help to regulate the electrical energy needed to power the equipment or application, ensuring a stable energy source.

193D inductors, also known as double choke inductors, are the most common type of storage inductors and are made up of two separate coils of wire that are wound together. They are commonly used for power applications in motor drives and for smoothing of rapid current changes. The two coils of wire use their mutual inductance in the arrangement to form an electromagnet, which results in a varying current coming through the windings.

The working principle behind 193D inductors lie in the core and the ability of its coils to accept and store electrical energy. When the core is energized, the magnetism it generates creates a force in each of the coil windings. This force is responsible for storing and releasing the electrical energy. The output current of the inductor is proportional to the rate at which the energy is supplied to it.

Traditional 193D inductors utilize an iron core material, as iron is a good electrical conductor and it is an effective medium for containing the required flux. In addition, iron provides a low-cost and durable product that is resistant to external forces that might damage the core, such as vibration and temperature changes. For applications requiring higher performance, some manufacturers use a higher grade of materials, such as ferrite or powder iron, in the construction of the inductor.

The application fields of 193D inductors are varied and depend on the type of hardware or electronic system being used. Common applications include motor control, DC-DC converters, power oscillators, and general power electronics. Inductors are also used in audio systems and integrated circuit design, and many other industrial applications such as automotive, medical, industrial, and communications.

193D inductors are designed with a specific purpose in mind, and the requirements for that purpose can vary widely. Factors such as frequency range, inductance, current, and temperature must all be taken into account when selecting the correct inductor. These parameters are crucial to understanding the performance of the inductor in any application.

193D inductors offer a wide range of benefits to system engineers, including improved efficiency, higher accuracy and minimal power loss. They are highly versatile components and are designed to meet specific power requirements, allowing high-voltage applications to be controlled more effectively. In addition, these inductors are more reliable than their predecessors, offering stability and long-term stability.

In order to ensure maximum performance and value for money, it is important to ensure that the correct type of 193D inductor is selected for the application. Factors such as power requirements, operating temperature, inductance, and frequency range must all be taken into account when choosing the suitable inductor. Ultimately, the selection of a suitable inductor depends on the application and its needs.

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

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