PWD-5520-03-SMA-79 Allicdata Electronics
Allicdata Part #:

PWD-5520-03-SMA-79-ND

Manufacturer Part#:

PWD-5520-03-SMA-79

Price: $ 533.58
Product Category:

RF/IF and RFID

Manufacturer: Cinch Connectivity Solutions Midwest Microwave
Short Description: CONN 3WAY DIVIDER
More Detail: RF Power Divider 500MHz ~ 2GHz Isolation (Min) 15d...
DataSheet: PWD-5520-03-SMA-79 datasheetPWD-5520-03-SMA-79 Datasheet/PDF
Quantity: 1000
1 +: $ 485.06900
Stock 1000Can Ship Immediately
$ 533.58
Specifications
Series: --
Packaging: Bulk 
Part Status: Active
Insertion Loss: 1dB
Frequency: 500MHz ~ 2GHz
Specifications: Isolation (Min) 15dB
Size / Dimension: 3.000" L x 1.500" W (76.20mm x 38.10mm)
Package / Case: Module
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

PWD-5520-03-SMA-79 RF power dividers/splitters have a wide range of applications across many industries. In the field of wireless communication, they are essential components that enable the distribution of signals, control of antenna patterns, and the steering of radio waves. In the industrial sector, they are often used to control the output of high-power microwave generators for heating and drilling applications. In the medical sector, they can be used to guide medical imaging equipment in order to provide accurate imaging data. In the defense sector, they can be used to control and redirect powerful radar signals. In all of these fields, PWD-5520-03-SMA-79 RF power dividers/splitters have unique characteristics and capabilities that make them indispensable for achieving reliable results.

As a type of coaxial component, PWD-5520-03-SMA-79 RF power dividers/splitters are constructed from a central conductor, two identical outer conductors, and a dielectric material that separates the outer conductors from each other and the center conductor. This type of construction provides passive signal transmission by dividing the RF input signal into two equal signals out of each output port. The signals can then be amplified, filtered, and routed to other components or devices in the system. The spacing between the center conductor, the outer conductors, and the dielectric material affect the operation of the RF power divider/splitter, particularly in terms of its insertion loss, isolation, and return loss performance.

In order to optimize the performance of a PWD-5520-03-SMA-79 RF power divider/splitter, the spacing between the center conductor, the outer conductors, and the dielectric material must be carefully chosen. This is done by measuring the impedance of the device and comparing it to the desired target impedance. The tolerance, the ratio of the input power, and the number of output ports also need to be determined in order to achieve the desired results.

Once the components have been chosen and assembled, the RF power divider/splitter is tested in order to ensure optimal performance. During the testing process, the characteristic impedance, the insertion loss, the isolation, and the return loss of the RF power divider/splitter are all measured. The results of these tests will provide the basis for further optimization of the device, if needed.

The performance of PWD-5520-03-SMA-79 RF power dividers/splitters can vary dramatically based on the location where they are used and the type of signal that they are expected to divide. It is important to make sure that the divider/splitter is suited for the specific application and that its performance is suitable for the expected results. If not, adjustments may be needed in order to ensure that the device will perform as expected.

In summary, PWD-5520-03-SMA-79 RF power dividers/splitters are essential components in many industries. They are constructed from a central conductor, two identical outer conductors, and a dielectric material that separates the outer conductors from each other and the center conductor. In order to optimize the performance of a power divider/splitter, the spacing between the center conductor, the outer conductors, and the dielectric material must be carefully chosen. When the components have been chosen and assembled, the power divider/splitter is tested in order to ensure optimal performance. The performance of the RF power divider/splitter can vary dramatically based on the application that it is being used for, so it is important to make sure that the divider/splitter is suitable for the task.

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

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