2014Unpublished venueRequires access

Design of a X-band image rejection balanced mixer

Qian Yun Pang, Zhen Xu, Jun Xu

Open publisher page 3 citations

Abstract

In order to meet the need of anti-interference in the millimeter wave receiver and radar, fundamental theory of the image rejection sub-harmonic mixer was introduced first, then a design proposal of a X-band image-rejection balanced mixer was proposed. The mixer is made up of two mixer units, RF signal and image signal can be distinguished by the phase relationship of the outputs from two units. The RF outputs of the two units are in-phase and combine, the image output of the two units are 90 phase difference and offset. Passive part simulation and harmonic balance simulation of the mixer were finished by the software HFSS and ADS, respectively. The mixer was finally fabricated and tested. The tested result shows that, when RF and IF are 9.3~9.7GHz and 100MHz respectively, the convention loss is about 8.8dB, the image rejection is larger than 17dB, all the port-to-port isolations are larger than 20dB, the voltage standing wave ratio(VSWR) of the RF port and LO port are less than 1.3 and 2.2 respectively, the input power 1dB compression point is 11.5dBm.

About this research paper

What this paper is about

In order to meet the need of anti-interference in the millimeter wave receiver and radar, fundamental theory of the image rejection sub-harmonic mixer was introduced first, then a design proposal of a X-band image-rejection balanced mixer was proposed. The mixer is made up of two mixer units, RF signal and image signal can be distinguished by the phase relationship of the outputs from two units. The RF outputs of the two units are in-phase and combine, the image output of the two units are 90 phase difference and offset. Passive part simulation and harmonic balance simulation of the mixer were finished by the software HFSS and ADS, respectively. The mixer was finally fabricated and tested. The tested result shows that, when RF and IF are 9.3~9.7GHz and 100MHz respectively, the convention loss is about 8.8dB, the image rejection is larger than 17dB, all the port-to-port isolations are larger than 20dB, the voltage standing wave ratio(VSWR) of the RF port and LO port are less than 1.3 and 2.2 respectively, the input power 1dB compression point is 11.5dBm.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In order to meet the need of anti-interference in the millimeter wave receiver and radar, fundamental theory of the image rejection sub-harmonic mixer was introduced first, then a design proposal of a X-band image-rejection balanced mixer was proposed. The mixer is made up of two mixer units, RF signal and image signal can be distinguished by the phase relationship of the outputs from two units. The RF outputs of the two units are in-phase and combine, the image output of the two units are 90 phase difference and offset. Passive part simulation and harmonic balance simulation of the mixer were finished by the software HFSS and ADS, respectively. The mixer was finally fabricated and tested. The tested result shows that, when RF and IF are 9.3~9.7GHz and 100MHz respectively, the convention loss is about 8.8dB, the image rejection is larger than 17dB, all the port-to-port isolations are larger than 20dB, the voltage standing wave ratio(VSWR) of the RF port and LO port are less than 1.3 and 2.2 respectively, the input power 1dB compression point is 11.5dBm.

Key concepts: Image response, Harmonic mixer, HFSS, Frequency mixer, Radio frequency, Electronic mixer, Standing wave ratio, Intermediate frequency

Related papers

Back to paper searchBrowse research topicsOriginal source
Design of a X-band image rejection balanced mixer — Research Paper | ScholarLens