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For the standard of ISO18000-6C UHF RFID tag chip core module design

Author: LiJian
Tutor: WenGuangJun
School: University of Electronic Science and Technology
Course: Communication and Information System
Keywords: UHF Radio Frequency Identification ISO 18000-6C Tag chip Modulation Demodulation
CLC: TP391.44
Type: Master's thesis
Year: 2010
Downloads: 193
Quote: 1
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RFID technology has been gradually integrated into people's lives , and are actively transform the whole industry chain of production , manufacturing , logistics , retail, and public information services . In the wave of development of the Internet of Things , RFID as a core technology , access to unprecedented opportunities for development . RFID family , the low-frequency and high-frequency band RFID technology has matured , UHF and microwave band RFID technology has become the research focus at home and abroad . Compared with the low-frequency and high-frequency band RFID system , UHF RFID system recognition distance , large storage capacity and support for multi-objective quickly identify advantages . Tag chip design as a core technology of UHF RFID systems , to get the country attaches great importance to and vigorously support . However, due to weak domestic RF and digital-to-analog hybrid integrated circuit technology base , there is no stable performance to the commercial application of UHF passive tag chip available . Therefore , to carry out the international standards of ISO18000-6C UHF RFID tag chip , mastered the core technology for UHF RFID , has a good scientific significance and social and economic value . This thesis, facing the international standards of ISO18000-6C UHF RFID tag chip RF analog front-end design as research direction that the the tag chip 's technology development status , the theoretical basis of the system architecture , the key circuit module and key technical indicators were in-depth analysis , the core modules of the modulation circuit and demodulation circuit design , simulation , optimization , and layout production based on TSMC 0.18μm CMOS mixed-signal process , and the MPW project tapeout verification . Finally, the label system-on-a-chip and RF analog front-end Core module functional verification and performance testing .

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CLC: > Industrial Technology > Automation technology,computer technology > Computing technology,computer technology > Computer applications > Information processing (information processing) > Pattern Recognition and devices > Optical pattern recognition devices
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