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FE6002 - (FE6001 - FE6005) 4-PORT WAVEGUIDE DIFFERENTIAL PHASE SHIFT CIRCULATOR

Download the FE6002 datasheet PDF. This datasheet also covers the FE6004 variant, as both devices belong to the same (fe6001 - fe6005) 4-port waveguide differential phase shift circulator family and are provided as variant models within a single manufacturer datasheet.

Description

Designed for use in both high-peak and high-mean power applications, TEMEX COMPONENTS differential phase shift circulators offer high isolation while maintaining low-insertion loss.

Features

  • With the addition of a suitable waveguide load and a dummy load on the appropriate port, a 4-port differential phase shift circulator may be operated as a high-power isolator. The reflected power which will be absorbed in the dummy load, or the output mismatch - (V. S. W. R. ) should be specified when ordering. Options such as direction of circulation, mechanical output ports E-bend or H-bend are available upon request. SALES.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (FE6004_Temex.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number FE6002
Manufacturer Temex
File Size 146.19 KB
Description (FE6001 - FE6005) 4-PORT WAVEGUIDE DIFFERENTIAL PHASE SHIFT CIRCULATOR
Datasheet download datasheet FE6002 Datasheet

Full PDF Text Transcription

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WAVEGUIDE DEVICES 4-Port waveguide differential phase shift circulators (Duplexers) www.DataSheet4U.com MICROWAVE 4-PORT WAVEGUIDE DIFFERENTIAL PHASE SHIFT CIRCULATORS (DUPLEXERS) AVERAGE POWER KW 100 DIFFERENTIAL WAVEGUIDE TECHNOLOGY PHASE SHIFT 10 COAXIAL TECHNOLOGY 1 DUPLEXERS 0.1 1 10 100 FREQUENCY GHz General description Designed for use in both high-peak and high-mean power applications, TEMEX COMPONENTS differential phase shift circulators offer high isolation while maintaining low-insertion loss. These ruggedly constructed circulators can operate under the most severe environmental conditions, according to MIL-SPEC. The addition of specific heat sinks, or liquid cooling jackets increases mean power handling; for example, of up to 200 kW-CW at 1.250 GHz.
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