High Isolation Wideband Diplexer, DC-5GHz & 5.75-15GHz, SMA Female, 70dB Rejection

The CDU05000M05750A02 High-Isolation Wideband Diplexeris a precision-engineered passive microwave component designed to separate or combine two distinct frequency bands with exceptional isolation and low insertion loss. It features a low-pass channel (DC–5 GHz) and a high-pass channel (5.75–15 GHz), making it ideal for advanced RF and microwave systems requiring reliable band separation in communication, radar, and test applications.


Product Detail

Product Tags

Application

5G & Cellular Base Stations

Satellite Communication Systems

Radar & EW Systems

Test & Measurement Equipment

Broadband Wireless Links and Software Defined Radio (SDR)

Futures

• Small size and excellent performances

• Low passband insertion loss and high rejection

• Broad, high frequency pass and stopbands

• Microstrip, cavity, LC , helical structures are avaliable according to different applications

Availability: NO MOQ, NO NRE and free for testing

Frequency range

Low

High

DC~5GHz

5.75GHz~15GHz

Insertion loss

≤2.0dB

≤2.0dB

VSWR

≤2.0

≤2.0

Rejection

≥70dB@5.75GHz~15GHz

≥70dB@DC~5GHz

Power

≤25W

Impedance

50Ω

Notes

1. Specifications are subject to change at any time without any notice.

2. Default is SMA-female connectors. Consult factory for other connector options.

OEM and ODM servies are welcomed. Lumped-element, microstrip, cavity, LC structures custom triplexer are avaliable according to different applications. SMA, N-Type, F-Type, BNC, TNC, 2.4mm and 2.92mm connectors are avaliable for option.

Please feel freely to contact with us if you need any different requirements or a customized Duplexers/triplexer/filters: sales@concept-mw.com.

Product Tags

Dual-Band Satellite Quadruplexer

S band Ku band multiplexer

high isolation multiplexer

Custom RF multiplexer manufacturer

Custom Diplexer for 5G and Satellite

Microwave Diplexer for Radar and Communication

High-performance wideband diplexer

Broadband Diplexer for Military Communications


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