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Gysel Power Divider Based on Substrate Integrated Waveguide

A substrate-integrated waveguide and power divider technology, applied in waveguide devices, circuits, connection devices, etc., can solve problems affecting the application of power dividers, unable to withstand high power, unable to isolate, etc., to achieve wide versatility and economical The effect of outstanding performance and stable circuit index

Inactive Publication Date: 2019-05-07
NANJING UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At the same time, there are more and more introductions about substrate integrated waveguide power dividers, such as literature 1 (“Y‐junction power divider based on substrate integrated waveguide”, Electronics Letters8thDec.2011Vol.47No.25) or literature 2 (“Multilayer Substrate Integrated Waveguide Four‐Way Out‐of‐Phase Power Divider”, IEEE Transactions on MicrowaveTechnology and Techniques, Vol.57, No.12, Dec 2009, pp3469‐3476); Wilkinson power divider, the isolation resistor is located in the center of the branch arm, so it cannot withstand high power, and due to the parasitic effect of the isolation resistor, it cannot work to a high frequency; on the other hand, based on the traditional waveguide form, it cannot be isolated, or Requires multiple layers of circuitry for isolation; these drawbacks prevent the use of this type of splitter at high power

Method used

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  • Gysel Power Divider Based on Substrate Integrated Waveguide
  • Gysel Power Divider Based on Substrate Integrated Waveguide
  • Gysel Power Divider Based on Substrate Integrated Waveguide

Examples

Experimental program
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Embodiment 1

[0030] In order to facilitate the test and terminal load, the method of substrate integrated waveguide-microstrip-coaxial transformation is uniformly used for testing.

[0031] to combine figure 1 , the height of the intermediate dielectric plate is 1.016mm, and the dielectric constant of the intermediate dielectric plate is 3.5;

[0032] to combine figure 2 , the second port and the third port of this embodiment are symmetrical about the branch line of the power divider and are on a straight line, the fourth port and the fifth port are symmetrical about the middle line of the power divider and are aligned with the second port and the third port The straight lines are perpendicular to each other.

[0033] to combine Figure 4 , the diameter of the metallized hole is 0.5mm, the distance between the centers of the holes is 1mm, and the distance between the centers of the holes between two rows of metal columns is 10.75mm. The designed operating frequency is 9.75GHz-10.25GHz...

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Abstract

The invention discloses a Gysel-type power divider based on a substrate integrated waveguide, and the power divider comprises a first port, a second port, a third port, a fourth port, and a fifth port. The first port is disposed on a central line of the power divider, and the power divider is symmetric relative to the central line. The first port is a common port, and the second and third ports are branch ports. The fourth and fifth ports are load ports. The power divider employs a substrate integrated waveguide structure, and comprises an upper metal surface, a central dielectric plate, and a lower metal surface. Two rows of second metal post line columns are disposed between the upper metal surface and the lower metal surface. Each row of second metal post line columns comprises a plurality of metal columns, and each metal column contacts with the upper metal surface and the lower metal surface. The power divider meets the actual demands of high power and high isolation, is small in size, is light in weight, and is suitable for the power combination and distribution of various types of SIW systems.

Description

technical field [0001] The invention belongs to the field of power dividers, in particular to a Gysel type power divider based on a substrate integrated waveguide. Background technique [0002] Power splitters are important components in modern communication systems and are widely used in systems such as microwave communication, electronic countermeasures, frequency synthesis, and microwave measurement. The power divider is mainly used for the distribution and synthesis of energy. Generally, there is one main port and more than two branch ports. Whether the split port power is exactly the same can be divided into two types: equal split and unequal split; according to whether the split port phase is the same, it can be divided into two types: equal phase and unequal phase; according to the power capacity, it can be divided into small power, medium power and High power, etc.; according to the form of transmission line, it can be divided into microstrip type, coaxial type, wav...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01P5/16
Inventor 陈海东车文荃顾超冯文杰
Owner NANJING UNIV OF SCI & TECH
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