Javascript must be enabled to continue!
Power Dividers
View through CrossRef
Power dividers are one of the most fundamental and important passive components in engineering systems that are basically used for splitting or combining power at a junction. Specifically, electrical power divider systems have the added complexity of operating at frequencies ranging from very low (dc) to very high (optical) frequencies. Hence, over the years, circuit application over a wide spectrum has led to the development of diverse structural configurations such ascoaxial,two wire,waveguide,microstrip,stripline, coplanar waveguide, andoptical fiber, which perform the same function of power division/combining, although at different frequency bands. These structures also vary in power handling capacity, which is defined by the system, ranging from low‐power electronics to high‐power radar systems. Efficient power divider design also requiresmatchingat the junction to ensure smooth flow of power between the various ports of the device, which may have different input/output impedances.This article starts with a discussion of the basic theory andS‐parameter analysis of electrical power dividers in equal and unequal configuration, followed by specific applications to different transmission line structures such as coaxial, waveguide, and microstrip. This introductory section is followed by details of analytical and computer optimization methods to design equal and unequal power dividers, including empirical formulas for techniques such astaperingandsteppingto obtain increased bandwidth of operation. Finally, the article concludes with an overview of current trends and innovations in power divider design.
Title: Power Dividers
Description:
Power dividers are one of the most fundamental and important passive components in engineering systems that are basically used for splitting or combining power at a junction.
Specifically, electrical power divider systems have the added complexity of operating at frequencies ranging from very low (dc) to very high (optical) frequencies.
Hence, over the years, circuit application over a wide spectrum has led to the development of diverse structural configurations such ascoaxial,two wire,waveguide,microstrip,stripline, coplanar waveguide, andoptical fiber, which perform the same function of power division/combining, although at different frequency bands.
These structures also vary in power handling capacity, which is defined by the system, ranging from low‐power electronics to high‐power radar systems.
Efficient power divider design also requiresmatchingat the junction to ensure smooth flow of power between the various ports of the device, which may have different input/output impedances.
This article starts with a discussion of the basic theory andS‐parameter analysis of electrical power dividers in equal and unequal configuration, followed by specific applications to different transmission line structures such as coaxial, waveguide, and microstrip.
This introductory section is followed by details of analytical and computer optimization methods to design equal and unequal power dividers, including empirical formulas for techniques such astaperingandsteppingto obtain increased bandwidth of operation.
Finally, the article concludes with an overview of current trends and innovations in power divider design.
Related Results
Design of Approximate Restoring Dividers for Error Resilient Applications
Design of Approximate Restoring Dividers for Error Resilient Applications
In this paper, a low-power and high-speed approximate divider using restoring array architecture has been proposed. Approximation is realized by replacing the subtractor/divider ce...
Modelado de un Recuperador Dinámico de Tensión para el Mejoramiento de la Calidad de la Onda de Tensión
Modelado de un Recuperador Dinámico de Tensión para el Mejoramiento de la Calidad de la Onda de Tensión
[1] R. C. Dugan, H. W. Beaty, y S. Santoso, Electrical Power Systems Quality, Third edition. Tata McGraw Hill Education, 2012.[2] J. Arrilaga y N. R. Watson, Powe...
[RETRACTED] Keto Max Power - BURN FATINSTEAD OF CARBS with Keto Max Power! v1
[RETRACTED] Keto Max Power - BURN FATINSTEAD OF CARBS with Keto Max Power! v1
[RETRACTED]Keto Max Power Reviews: Warning! Don’t Buy Dragons Den Pills Fast Until You Read This UK Latest Report Weight gain’s principle of “energy intake exceeding energy spent”...
Fractional Digital Regenerative Frequency Dividers
Fractional Digital Regenerative Frequency Dividers
ABSTRACT
This paper describes the topology and operation of a new family of asynchronous frequency dividers called fractional digital regenerative frequency divid...
Design of N-Way Wilkinson Power Dividers with New Input/Output Arrangements for Power Halving Operations
Design of N-Way Wilkinson Power Dividers with New Input/Output Arrangements for Power Halving Operations
In this paper, new N-way Wilkinson power dividers (WPDs) are represented by using slow-wave structures such as narrow slits loaded and meandered transmission lines. The slit loaded...
Design of N-Way Wilkinson Power Dividers with New Input/Output Arrangements for Power-Halving Operations
Design of N-Way Wilkinson Power Dividers with New Input/Output Arrangements for Power-Halving Operations
In this paper, new single/double-layer N-way Wilkinson power dividers (WPDs) were designed by using slow-wave structures such as narrow-slit-loaded and meandered transmission lines...
Designing a framework of power procurement for a power distribution utility: a case study
Designing a framework of power procurement for a power distribution utility: a case study
Purpose
The study aims to find out an appropriate volume of power to be procured through long-term power purchase agreements (PPAs), the volume to be sourced from the power exchang...
Soft Power with Chinese Specifics: Concept and Approaches
Soft Power with Chinese Specifics: Concept and Approaches
The purpose of the study. Joseph Nye’s theory of soft power has enriched the idea of the country’s comprehensive power and attracted great attention from the Chinese theoretical co...

