A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation
This article presents a parallel sliding-IF 5-6-GHz wireless local area network (WLAN) receiver front-end supporting two-band carrier aggregation (CA), which alleviates potential local oscillator (LO) pulling and crosstalk problems. The supported frequency spacing between any two different carriers...
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sg-ntu-dr.10356-1463512021-02-10T07:41:48Z A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation Yang, Kaituo Yi, Xiang Boon, Chirn Chye Liang, Zhipeng Feng, Guangyin Li, Chenyang Bei, Liu School of Electrical and Electronic Engineering Virtus/CICS Engineering::Electrical and electronic engineering RFIC Noise Measurement This article presents a parallel sliding-IF 5-6-GHz wireless local area network (WLAN) receiver front-end supporting two-band carrier aggregation (CA), which alleviates potential local oscillator (LO) pulling and crosstalk problems. The supported frequency spacing between any two different carriers ranges from tens to hundreds of MHz. First, a complementary current-reused single-ended LNA with very low noise figure (NF) is developed to guarantee a low noise performance. Second, an active balun-splitter establishes a bridge between the LNA and the following parallel fully differential down-conversion paths. Next, to optimize the performance of the passive double-conversion mixer, a detailed analysis has been conducted and shown that the time offset with specific values between the two LOs maximizes conversion gain and minimizes noise contribution, which enhances harmonic rejection simultaneously. Fabricated in 65-nm CMOS technology, this receiver front-end achieves an average 1.9-dB NF with a 39-dB gain at 5-6 GHz for single-carrier scenario, degraded by 0.4 dB with 35-dB gain for two-band CA scenario. It consumes 35 and 60 mA with 1.2-V supply for single carrier and two-band CA scenario, respectively. The total area is 0.56 mm². Accepted version 2021-02-10T07:41:48Z 2021-02-10T07:41:48Z 2021 Journal Article Yang, K., Yi, X., Boon, C. C., Liang, Z., Feng, G., Li, C., & Bei, L. (2021). A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation. IEEE Journal of Solid-State Circuits, 56(2), 392-403. doi:10.1109/JSSC.2020.3014333 1558-173X https://hdl.handle.net/10356/146351 10.1109/JSSC.2020.3014333 2 56 392 403 en IEEE Journal of Solid-State Circuits © 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. The published version is available at: https://doi.org/10.1109/JSSC.2020.3014333 application/pdf |
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Engineering::Electrical and electronic engineering RFIC Noise Measurement Yang, Kaituo Yi, Xiang Boon, Chirn Chye Liang, Zhipeng Feng, Guangyin Li, Chenyang Bei, Liu A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation |
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This article presents a parallel sliding-IF 5-6-GHz wireless local area network (WLAN) receiver front-end supporting two-band carrier aggregation (CA), which alleviates potential local oscillator (LO) pulling and crosstalk problems. The supported frequency spacing between any two different carriers ranges from tens to hundreds of MHz. First, a complementary current-reused single-ended LNA with very low noise figure (NF) is developed to guarantee a low noise performance. Second, an active balun-splitter establishes a bridge between the LNA and the following parallel fully differential down-conversion paths. Next, to optimize the performance of the passive double-conversion mixer, a detailed analysis has been conducted and shown that the time offset with specific values between the two LOs maximizes conversion gain and minimizes noise contribution, which enhances harmonic rejection simultaneously. Fabricated in 65-nm CMOS technology, this receiver front-end achieves an average 1.9-dB NF with a 39-dB gain at 5-6 GHz for single-carrier scenario, degraded by 0.4 dB with 35-dB gain for two-band CA scenario. It consumes 35 and 60 mA with 1.2-V supply for single carrier and two-band CA scenario, respectively. The total area is 0.56 mm². |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Yang, Kaituo Yi, Xiang Boon, Chirn Chye Liang, Zhipeng Feng, Guangyin Li, Chenyang Bei, Liu |
format |
Article |
author |
Yang, Kaituo Yi, Xiang Boon, Chirn Chye Liang, Zhipeng Feng, Guangyin Li, Chenyang Bei, Liu |
author_sort |
Yang, Kaituo |
title |
A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation |
title_short |
A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation |
title_full |
A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation |
title_fullStr |
A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation |
title_full_unstemmed |
A parallel sliding-IF receiver front-end with sub-2-dB noise figure for 5-6-GHz WLAN carrier aggregation |
title_sort |
parallel sliding-if receiver front-end with sub-2-db noise figure for 5-6-ghz wlan carrier aggregation |
publishDate |
2021 |
url |
https://hdl.handle.net/10356/146351 |
_version_ |
1692012972264652800 |