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Antenna switches. Part 6

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1. Title Title of document Antenna switches. Part 6
2. Creator Author's name, affiliation, country V. Kochemasov; ООО «Радиокомп»; Russian Federation
2. Creator Author's name, affiliation, country A. Safin; НИУ «МЭИ»; Russian Federation
2. Creator Author's name, affiliation, country S. Dinges; МТУСИ; Russian Federation
3. Subject Discipline(s)
3. Subject Keyword(s) antenna switch; frequency range; power
4. Description Abstract

The article considers the antenna switches. Information is provided on the features and characteristics of various types of such devices produced by a number of manufacturers.

5. Publisher Organizing agency, location Technosphera JSC
6. Contributor Sponsor(s)
7. Date (DD-MM-YYYY) 20.03.2024
8. Type Status & genre Peer-reviewed Article
8. Type Type Review Article
9. Format File format
10. Identifier Uniform Resource Identifier https://journals.eco-vector.com/1992-4178/article/view/629298
10. Identifier Digital Object Identifier (DOI) 10.22184/1992-4178.2023.223.2.120.133
11. Source Title; vol., no. (year) Elektronika: Nauka, Tekhnologiya, Biznes; No 2 (2023)
12. Language English=en ru
13. Relation Supp. Files Fig.82. Characteristics of the integrated gallium nitride SP3T switch QPC1006 with the first channel turned on: a – IL(f) at different temperatures; b – IL(f) at different control voltages; c – Iso(f) at different temperatures; d – Iso(f) at different control voltages (61KB)
Fig.83. Inserted attenuation IL(Pin) in the first channel of the gallium nitride SP3T switch QPC1006: a – continuous mode; b, c, d – pulse mode (Ti = 100 μs, Q = 10%) (63KB)
Fig.84. A simplified diagram of a 16-channel CMOS switch SKY13492-21, to the ports of which 14 transceivers and two GSM transmitters are connected (18KB)
Fig.85. Block diagram of the RF1196 multi-position CMOS switch (Qorvo company) (28KB)
Fig.86. Inserted attenuation IL(f): a–c – in various channels of the 10-position CMOS switch SKY13406-389LF (Skyworks Solutions): a – from the antenna to all transmitting channels; b – from the antenna to the GSM Tx LF port; c – from the antenna to the GSM Tx HF port; d – in the QPC6064 switch (Qorvo company) at different ambient temperatures (48KB)
Fig.87. Iso(f) isolation between channels in the CMOS SP10T switch SKY13406-389LF: a – between GSM Tx LB and all TRx ports; b – between GSM Tx HB and all TRx ports; c – between ports TRx1 and TRx4/5/6; d – between ports TRx2 and TRx4/5/6; d – between ports TRx3 and TRx5; e – between adjacent TRx ports (97KB)
Fig.88. Classic structure of pSemi multi-position switches (a) and two versions of channel switches (b, c) (24KB)
Fig.89. Dependences of IL(f) in the PE42542 microcircuit, made using SNS technology: a – between channels RFс and RFj (j = 1, 2, 3, 4); b – at different temperatures; c – at different supply voltages (37KB)
Fig.90. Dependences of Iso(f) between channels in the PE42542 switch: a – at different temperatures; b – at different supply voltages (34KB)
Fig.91. Dependence of maximum input power on frequency in a 4-position switch (PE42440) at various supply voltages (15KB)
Fig.92. Dependencies of Iso(f) in the ADRF5046 switch in various channels: a – between RFc and ports RF2, RF3, RF4, the RFc – RF1 channel is turned on; b – between RFc and ports RF1, RF3, RF4, the RFc – RF2 channel is enabled; c – between RFc and ports RF1, RF2, RF4, the RFc – RF3 channel is enabled; d – between RFc and ports RF1, RF2, RF3, the RFc – RF4 channel is enabled (59KB)
Fig.93. Dependence of compression power P0.1 dB(f): a – for different ambient temperatures; b – for different supply voltages. Tcorp. = 25 °C (ADRF5040, Analog Devices) (26KB)
Fig.94. Implementation on one chip of two multi-position switches providing the diversity property: a – DP8T = SP4T + SP4T (SKY13550–667LF, Skyworks Solutions); b – DP9T = SP4T + SP5T (RF1255, Qorvo company) (34KB)
14. Coverage Geo-spatial location, chronological period, research sample (gender, age, etc.)
15. Rights Copyright and permissions Copyright (c) 2023 Kochemasov V., Safin A., Dinges S.