Hostname: page-component-89b8bd64d-72crv Total loading time: 0 Render date: 2026-05-12T23:16:32.840Z Has data issue: false hasContentIssue false

A compact low-noise frontend for interleaved Rx/Tx arrays at K-/Ka-Band

Published online by Cambridge University Press:  29 March 2021

Anton Sieganschin*
Affiliation:
Institut für Hochfrequenztechnik, Techn. Univ. Hamburg, 21073 Hamburg, Germany
Thomas Jaschke
Affiliation:
Institut für Hochfrequenztechnik, Techn. Univ. Hamburg, 21073 Hamburg, Germany
Arne F. Jacob
Affiliation:
Institut für Hochfrequenztechnik, Techn. Univ. Hamburg, 21073 Hamburg, Germany
*
Author for correspondence: Anton Sieganschin, Email: anton.sieganschin@tuhh.de
Rights & Permissions [Opens in a new window]

Abstract

This contribution deals with a frontend for interleaved receive (Rx)-/transmit (Tx)-integrated phased arrays at K-/Ka-band. The circuit is realized in printed circuit board technology and feeds dual-band Rx/Tx- and single-band Tx-antenna elements. The dual-band element feed is composed of a substrate-integrated waveguide (SIW) diplexer with low insertion loss, a low-noise amplifier (LNA), a bandpass filter, and several passive transitions. The compression properties of the LNA are identified through two-tone measurements. The results dictate the maximum allowable output power of the power amplifier. The single band feed consists of a SIW with several transitions. Simulation and measurement results of the individual components are presented. The frontend is assembled and measured. It exhibits an Rx noise figure of 2 dB, a Tx insertion loss of ~ 2.9 dB, and an Rx/Tx-isolation of 70 dB. The setup represents the unit cell of a full array and thus complies with the required half-wave spacing at both Rx and Tx.

Information

Type
Research Paper
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press in association with the European Microwave Association
Figure 0

Fig. 1. Interleaved Rx/Tx phased array grid; (a) top view and (b) modular setup.

Figure 1

Fig. 2. Simplified frontend schematic representation of an antenna module.

Figure 2

Fig. 3. (a) State of the art and (b) proposed frontend architecture for K-/Ka-band dual-band antenna element.

Figure 3

Fig. 4. (a) Small-signal characteristics and (b) two-tone measurement results of the LNA.

Figure 4

Fig. 5. Model of the diplexer with two different cutaway views.

Figure 5

Fig. 6. Schematic representation of the diplexer.

Figure 6

Fig. 7. Simulated (dashed line) and measured (solid line) results of the diplexer. (a) Transmission and reflection coefficients S13, S32, S33, S22 and (b) transmission coefficient S21.

Figure 7

Fig. 8. (a) Layout of the corner cavity filter and (b) simulated (dashed line) and measured (solid line) results of the bandpass filter.

Figure 8

Fig. 9. Transition between CPW and buried SIW (two cut planes).

Figure 9

Fig. 10. Manufactured back-to-back transition from CPW to buried SIW. The positions of the SIW and of the taper are indicated by (red line) and (blue line), respectively.

Figure 10

Fig. 11. Simulated (dashed line) and measured (solid line) results of the back-to-back CPW-to-SIW transition.

Figure 11

Fig. 12. (a) Schematic representation and (b) model of the SIW-to-SIW transition.

Figure 12

Fig. 13. Simulated (dashed line) and measured (solid line) results of the SIW-to-SIW transition in a back-to-back arrangement.

Figure 13

Fig. 14. Multilayer stack of the frontend assembly.

Figure 14

Fig. 15. Photograph of the manufactured dual-band element frontend.

Figure 15

Fig. 16. Measured results of the frontend circuit. (a) Transmission and reflection coefficients S33, S22, S13, S32 and (b) transmission coefficient S12.

Figure 16

Fig. 17. Measured noise figure of the frontend circuit.

Figure 17

Fig. 18. Photograph of the frontend circuit for the interleaved array.

Figure 18

Fig. 19. Measured frontend performance. S22(blue line) and S32(red line) of the dual-band feed and S44(yellow line) and S54(purple line) of the Tx-only feed.