Design of a Digital Baseband Processor for UHF Tags

In this paper, we present a new digital baseband processor for UHF tags. It is a low-power and low-voltage digital circuit and adopts the Chinese military standard protocol GJB7377.1. The processor receives data or commands from the RF front-end and carries out various functions, such as receiving a...

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Main Authors: Na Bai, Liang Wang, Yaohua Xu, Yi Wang
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Electronics
Subjects:
tag
Online Access:https://www.mdpi.com/2079-9292/10/17/2060
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spelling doaj-7980628ab5204e388de9297a374e36b52021-09-09T13:41:55ZengMDPI AGElectronics2079-92922021-08-01102060206010.3390/electronics10172060Design of a Digital Baseband Processor for UHF TagsNa Bai0Liang Wang1Yaohua Xu2Yi Wang3Department of Electronic Information Engineering, Anhui University, Hefei 230601, ChinaDepartment of Electronic Information Engineering, Anhui University, Hefei 230601, ChinaDepartment of Electronic Information Engineering, Anhui University, Hefei 230601, ChinaDepartment of Electronic Information Engineering, Anhui University, Hefei 230601, ChinaIn this paper, we present a new digital baseband processor for UHF tags. It is a low-power and low-voltage digital circuit and adopts the Chinese military standard protocol GJB7377.1. The processor receives data or commands from the RF front-end and carries out various functions, such as receiving and writing data to memory, reading and sending memory data to the RF front-end and killing tags. The processor consists of thirteen main sub-modules: TPP decoding, clock management, random number generator, power management, memory controller, cyclic redundancy check, FM0 encoding, input data processing, output data processing, command detection module, initialization module, state machine module and controller. We use ModelSim for the TPP decoding simulation and communication simulation between tag and reader, and the simulation results meet the design requirements. The processor can be applied to UHF tags and has been taped out using a TSMC 0.18 um CMOS process.https://www.mdpi.com/2079-9292/10/17/2060RFIDtagdigital baseband processorGJB7377.1 protocol
collection DOAJ
language English
format Article
sources DOAJ
author Na Bai
Liang Wang
Yaohua Xu
Yi Wang
spellingShingle Na Bai
Liang Wang
Yaohua Xu
Yi Wang
Design of a Digital Baseband Processor for UHF Tags
Electronics
RFID
tag
digital baseband processor
GJB7377.1 protocol
author_facet Na Bai
Liang Wang
Yaohua Xu
Yi Wang
author_sort Na Bai
title Design of a Digital Baseband Processor for UHF Tags
title_short Design of a Digital Baseband Processor for UHF Tags
title_full Design of a Digital Baseband Processor for UHF Tags
title_fullStr Design of a Digital Baseband Processor for UHF Tags
title_full_unstemmed Design of a Digital Baseband Processor for UHF Tags
title_sort design of a digital baseband processor for uhf tags
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2021-08-01
description In this paper, we present a new digital baseband processor for UHF tags. It is a low-power and low-voltage digital circuit and adopts the Chinese military standard protocol GJB7377.1. The processor receives data or commands from the RF front-end and carries out various functions, such as receiving and writing data to memory, reading and sending memory data to the RF front-end and killing tags. The processor consists of thirteen main sub-modules: TPP decoding, clock management, random number generator, power management, memory controller, cyclic redundancy check, FM0 encoding, input data processing, output data processing, command detection module, initialization module, state machine module and controller. We use ModelSim for the TPP decoding simulation and communication simulation between tag and reader, and the simulation results meet the design requirements. The processor can be applied to UHF tags and has been taped out using a TSMC 0.18 um CMOS process.
topic RFID
tag
digital baseband processor
GJB7377.1 protocol
url https://www.mdpi.com/2079-9292/10/17/2060
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