
- Journal of Infrared and Millimeter Waves
- Vol. 40, Issue 1, 33 (2021)
Abstract
Introduction
The sub-harmonic mixer is a common solution in the millimeter-wave system because it only requires a relatively low frequency of local-oscillator(LO)signal,which provides lots of merits,such as high reliability,low phase noise and low cost. Anti-parallel diode pair(APDP)was proved to have several advantages in the design of sub-harmonic mixers[
Many studies have been devoted to the performance improvement of conversion loss of sub-harmonic mixers[
In this paper,a millimeter-wave sub-harmonic mixer with a wide IF bandwidth is presented based on standard microstrip hybrid microwave integrated circuit(MIC)technology. Meanwhile,a novel frequency suppression circuit is employed to broaden the bandwidth and decreases the conversion loss. Hence,the proposed sub-harmonic mixer has features of wide operating frequency band,low conversion loss,the ease of fabrication and convenience of integration with microwave and millimeter wave circuits.
1 Circuit Design
To achieve broad band,a scheme of APDP sub-harmonic mixer including a short-circuited band pass filter(BPF)and a diplexer is proposed,as shown in
Figure 1.The circuit topology of the proposed sub-harmonic mixer
To design such a mixer with low conversion loss and broad band,the key factor is to achieve broad band and low insertion loss of the diplexer,the matching circuits,and the RF filter while maintaining enough isolation between LO and RF.
Firstly,the diplexer of this work adopts a compact low pass filter(LPF)[
Figure 2.Simulated S parameters of the proposed diplexer
Secondly,considering to the RF BPF requires high rejection of LO/IF,and low insertion loss at RF port,a broadband BPF using short stubs is chosen for this purpose. Higher-order filter is necessary to achieve higher nearby LO rejection,however higher-order usually leads to higher insertion loss. To overcome this difficulty,a wideband short-circuited BPF shown in
Figure 3.The proposed RF band pass filter (a) Geometry view, (b) Simulated S parameters
Finally,the APDP used is commercial GaAs Schottky diode DMK2308 from Skyworks,Inc. This diode chip structure can be modeled in HFSS[
2 Mixer implementation and performance
According to the optimized parameters,a demonstration circuit was fabricated on a Duriod RT/5880 substrate with a thickness of 0.254 mm and a relative permittivity of 2.2. And finally the whole mixer is mounted in a metal housing to shield from outside interference,as shown in
Figure 4.Photograph of the fabricated sub-harmonic mixer
Reference | RF frequency /GHz | IF frequency /GHz | Conversion gain/dB | Technology |
---|---|---|---|---|
#[ | 35 to 42 | DC to 0.5 | <-7.2 | MMIC |
*[ | 28 to 50 | DC to 1 | -11 to -6.6 | MMIC |
*[ | 90 to 100 | DC to 4 | -11 to -8 | hybrid MIC |
#[ | 24 to 44 | 1 (fixed) | 6 to 10.5 | MMIC |
#*This work | 27 to 48 | DC to 6 | -11.2 to -7.5 | hybrid MIC |
Table 1. Comparison of reported similar sub-harmonic mixers
Figure 5.Measured conversion loss versus RF frequency at different IF frequencies (a) USB at IF of 1 GHz and 6 GHz (b) USB and LSB at IF of 1 GHz
Figure 6.Measured USB conversion loss versus IF frequency at different LO frequencies (a) Down-conversion (b) Up-conversion
Figure 7.Measurement results of LO-to-RF and LO-to-IF isolations as a function of LO frequency
Comparisons between the proposed sub-harmonic mixer and similar published works[
3 Conclusions
A microstrip-based millimeter-wave broadband sub-harmonic mixer employing an open stubs loaded short-circuited wideband BPF and a novel diplexer has been proposed. The measured results reveal a conversion loss of 7.5 to 12.5 dB over a wide RF frequency range of 27 to 48 GHz for both up-conversion and down-conversion. This proposed configuration provides a flexible and low-cost design in sub-harmonic mixers,which are relatively efficient for integration of millimeter-wave systems.
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