1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement

Product Details
Customization: Available
Frequency Range (GHz): 1.72-40GHz
Vswr: ≤1.2
Diamond Member Since 2025

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Year of Establishment
2025-04-01
Plant Area
80 square meters
  • 1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement
  • 1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement
  • 1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement
  • 1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement
  • 1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement
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  • Overview
  • Product Description
  • Product Parameters
  • Recommended Products
  • Company Profile
  • FAQ
Overview

Basic Info.

Model NO.
RT-H0HQ22C30D15APN
Material
Aluminum
Coupling Degree (dB)
20 - 60
Directivity (°)
20
Coupling Accuracy (dB)
±0.8
Flatness (dB)
±0.6
Key
Coupler
Name
Passive Components
Transport Package
Carton
Origin
China

Product Description

1.72-40GHz WR430-WR28 Double ring coupler for system monitoring and measurement

Product Description

 
1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement
The model numbers of dual - loop couplers range from WR430 to WR28. The coupling degree is 20 - 60 dB, and the directivity is greater than 20°, with excellent fluctuation characteristics. There are single - arm standard types, and multi - arm options are available. The port types include waveguide or coaxial coupling ports. It can monitor forward and/or reflected power. The basic materials are aluminum or brass, with a unique corrosion - resistant 316 stainless - steel epoxy coating for surface treatment. It is commonly used for system monitoring and measurement

 

 

Product Parameters

 
Product Model Waveguide Specification Frequency Range (GHz) Secondary Path Voltage Standing Wave Ratio Main Path Voltage Standing Wave Ratio Coupling Degree Directivity (°) Coupling Accuracy Flatness
RT - H0HQ22C30D15APN BJ22 (WR430) 1.72 - 2.61 ≤1.2 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ26C30D15APN BJ26 (WR340) 2.17 - 3.3 ≤1.2 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ32C30D15APN BJ32 (WR284) 2.6 - 3.95 ≤1.2 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT- H0HQ40C30D15APN BJ40 (WR229) 3.22 - 4.90 ≤1.2 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT- H0HQ48C30D15APN BJ48 (WR187) 3.94 - 5.99 ≤1.25 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ58C30D15APN BJ58 (WR159) 4.64 - 7.05 ≤1.25 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ70C30D15APN BJ70 (WR137) 5.38 - 8.17 ≤1.25 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ84C30D15APN BJ84 (WR112) 6.57 - 9.99 ≤1.25 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ100C30D15APN BJ100 (WR90) 8.2 - 12.5 ≤1.25 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ120C30D15APS BJ120 (WR75) 9.84 - 15.0 ≤1.25 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ140C30D15APX BJ140 (WR62) 11.9 - 18.0 ≤1.3 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ180C30D15APX BJ180 (WR51) 14.5 - 22.0 ≤1.3 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ220C30D15CPX BJ220 (WR42) 17.6 - 26.7 ≤1.3 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT - H0HQ260C30D15CPX BJ260 (WR34) 21.7 - 33.0 ≤1.3 ≤1.05 25 - 60 20 ±0.8 ±0.6
RT- H0HQ320C30D15CPX BJ320 (WR28) 26.3 - 40.0 ≤1.3 ≤1.05 25 - 60 20 ±0.8 ±0.6

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1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement


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1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement

Company Profile


1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement1.72-40GHz Wr430-Wr28 Double Ring Coupler for System Monitoring and Measurement

FAQ

Regarding Frequency Bands

Q1: Can C - band filters be used for satellite TV?
A: C - band filters are commonly used in satellite communication and other scenarios. Although some satellite TV signals may be in the C - band, satellite TV mostly uses the Ku - band. So, C - band filters may not be suitable for satellite TV. It depends on the specific frequency band of the TV signal.
 
Q2: Where are X - band filters mainly used?
A: X - band filters are mostly applied in radar and aviation communication. For example, they are used in radar signal processing to ensure that the radar can accurately detect targets.

Regarding Materials

Q1: Are aluminum - made filters sturdy?
A: Aluminum - made filters are light - weight and cost - effective. Under normal usage environments and with proper operation, they can meet usage requirements and are relatively sturdy and durable.
 
Q2: Why are copper - made filters more expensive?
A: Copper - made filters are more expensive because copper has excellent electrical and thermal conductivity, performing well in scenarios with high - frequency signal transmission and high heat - dissipation requirements. Moreover, the cost of copper is relatively high.

Regarding Performance

Q1: What are the impacts of high insertion loss on signals?
A: High insertion loss means more energy loss when the signal passes through the filter. The signal will weaken, which may affect the quality and accuracy of signal reception by subsequent devices.
 
Q2: What happens if the voltage standing wave ratio is high?
A: A high voltage standing wave ratio indicates poor matching between the filter and the transmission line. There will be more signal reflection, reducing the transmission efficiency and potentially affecting the normal operation of the equipment.

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