• Title/Summary/Keyword: 18000-4

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ISO/IEC 18000-7 433MHz Active RFID System-based on Multi-hop Relay System for Coverage Extension (ISO/IEC 18000-7 433MHz 능동형 RFID 시스템 기반의 인식거리 향상을 위한 멀티홉 릴레이 시스템)

  • Hong, Sung-Hyun;Song, In-Chan;Zhang, Hong;Chang, Kyung-Hi;Shin, Dong-Beom;Lee, Heyung-Sub
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.5A
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    • pp.372-380
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    • 2009
  • In this paper, we analyze the active RFID systems ISO/IEC 18000-7 and ISO/IEC 18000-4. In order to improve the coverage in sensor networks, which consist active RFID tag, we propose RFID multi-hop relay system using active RFID relay tag. To compare the performance between the existing ISO/IEC 18000-7 system and the proposed RFID multi-hop relay system, we introduce new system efficiency measure and sensitivity-based measure of achieved coverage. Also, we analyze the performance of the proposed system and compare it with that of the existing system through MCL (Minimum Coupling Loss) analysis and SLS (System Level Simulation) analysis.

Design and Analysis of a NMOS Gate Cross-connected Current-mirror Type Bridge Rectifier for UHF RFID Applications (UHF RFID 응용을 위한 NMOS 게이트 교차연결 전류미러형 브리지 정류기의 설계 및 해석)

  • Park, Kwang-Min
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.45 no.6
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    • pp.10-15
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    • 2008
  • In this paper, a new NMOS gate cross-connected current-mirror type bridge rectifier for UHF RFID applications is presented. The DC converting characteristics of the proposed rectifier are analyzed with the high frequency equivalent circuit and the gate capacitance reduction technique for reducing the gate leakage current due to the increasing of operating frequency is also proposed theoretically by circuitry method. As the results, the proposed rectifier shows nearly same DC output voltages as the existing NMOS gate cross-connected rectifier, but it shows the gate leakage current reduced to less than 1/4 and the power consumption reduced more than 30% at the load resistor, and it shows more stable DC supply voltages for the valiance of load resistance. In addition, the proposed rectifier shows high enough and well-rectified DC voltages for the frequency range of 13.56MHz HF(for ISO 18000-3), 915MHz UHF(for ISO 18000-6), and 2.45 GHz microwave(for ISO 18000-4). Therefore, the proposed rectifier can be used as a general purpose one to drive RFID transponder chips on various RFID systems which use specified frequencies.

Implementation of Digital CODEC for RFID Dual-band Reader system (RFID Dual-band 리더 시스템의 디지털 코덱 설계)

  • Sim, Jae-Hee;Lee, Yong-Joo;Lee, Yong-Surk
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.10A
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    • pp.1015-1022
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    • 2007
  • In this paper, dual-band digital codec for UHF(Ultra High Frequency) and MW(Micro Wave) is proposed for an RFID reader system. Most RFID systems have been supported only one protocol. But, There are many protocols of each bandwidth. Especially, UHF bandwidth which is widely used on the globe consists of A,B,C type, and more standards will be established. Recently, Since an interest about mobile RFID system is increasing, the RFID system with more than one protocol will be need. Therefore, this paper suggests a dual-band digital codec with UHF and MW bands for an RFID reader system. Standards used in this system are 18000-6C and 18000-4 standards. The digital codec is synthesize by the Quartus II compiler. Target device is EPC20Q240C8 which is family of CycloneII. Main Clock is 19.2MHz and elements of FPGA which is used for the system is 18,752.

Design of an NMOS Current-Mirror Type Bridge Rectifier for driving RFID chips (RFID 칩 구동을 위한 NMOS 전류미러형 브리지 정류기의 설계)

  • Park, Kwang-Min;Hur, Myung-Joon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.9 no.2
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    • pp.333-338
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    • 2008
  • In this paper, a new NMOS current-mirror type bridge rectifier for driving RFID chips, whose minimum input voltage required to obtain the effective DC output voltage is low enough and whose power dissipation can be reduced than that of conventional one, is proposed. The designed rectifier is able to supply high enough and well-rectified DC voltages to drive RFID transponder chips for the frequency range of 13.56 MHz HF(for ISO 18000-3), 915 MHz UHF(fur ISO 18000-6), and 2.45 GHz microwave(for ISO 18000-4). Output characteristics of the proposed rectifier are analyzed with the high frequency equivalent circuit. And the circuitry method for effective reducing of the gate leakage current due to the increasing of operating frequency is also proposed theoretically. Using this method, the power consumption of $100\;{\mu}W$ and the DC output voltage of 2.13V for 3V peak-to-peak input voltage and $45\;K{\Omega}$ load resistance are obtained. Compared to conventional one, the proposed rectifier operates in more stable and shows superior characteristics in UHF and microwave frequencies.

Design and Implementation of UHF RFID Reader System Supporting Sensor Data Processing (센서 데이터 처리를 지원하는 UHF RFID 리더 시스템의 설계 및 구현)

  • Shin, Dong-Beom;Lee, Heyung-Sub;Choi, Gil-Young;Kim, Dae-Young
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.12A
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    • pp.925-932
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    • 2009
  • Precise temperature monitoring is the major preconditioning to supervise quality losses within the transport chain for fresh products. ISO/IEC18000-6REV1 defines new protocols supporting BAP(Battery Assisted Passive) RFID tag which is completely compatible with EPCglobal Class1 Generation2 specification. In this paper, we designed a modem supporting BAP RFID tag with FPGA(Field Programmable Gate Array) and implemented sensor data processing function defined in ISO/IEC18000-6REV1. The transmit block of the modem supports pulse shaping filter and the output signal of the implemented RFID reader is satisfied with the spectrum mask defined in the standard. The receive block of the modem uses Gardner TED to synchronize timing of symbol. In this paper, we designed a modem supporting ISO/IEC18000-6REV1 standard and developed a RFID reader sndard. The developed RFID reader sndard can recognize sensor tag and passive tag in the wireless environment and supports real-time processing of the sensor data in the embedded linux platform.

Implementation of UHF Multi-band Multi-protocol u-ID Mobile Reader System (UHF 대역 멀티밴드 멀티프로토콜 ubiquitous-ID 휴대형 리더기 시스템 구현)

  • Ko, Dae-Soo;Kim, Young-Kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.11 no.4
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    • pp.707-713
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    • 2007
  • This paper implements a RFID multi-band multi-protocol reader platform, possible to select one of the UHF bands used in particular for distribution system in RFID, that is, from 860MHz to 960MHz, through programmable configuration. It also enables implemented platform in this paper to recognize many kinds of TAG protocol, such as EPC Class 1 GEN 1, Class 1 Gen2, ISO 18000-6A, B and C.

UWB-based Class 4 Active RFID Protocol for USN Application (USN 응용을 위한 UWB 기반의 Class 4 능동형 RFID 프로토콜)

  • Hong, Sung-Hyun;Zhang, Hong;Chang, Kyung-Hi;Shin, Dong-Beom;Lee, Heyung-Sub
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.35 no.7A
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    • pp.669-681
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    • 2010
  • In this paper, we analyze the active RFID system ISO/IEC 18000-7. In order to apply to USN, which consists active RFID tags and sensor nodes, we propose UWB-based Class 4 active RFID protocol using active RFID relay tag as relay AP. To compare the performance between the existing ISO/IEC 18000-7 system and the proposed system, we introduce sensitivity-based measurement of achieved coverage and system efficiency. Also, we analyze the performance of the proposed system and compare it with that of the existing system through MCL analysis and SLS analysis.

Design and Implementation of Large Tag Data Transmission Protocol for 2.4GHz Multi-Channel Active RFID System (2.4GHz 다중채널 능동형 RFID시스템을 위한 대용량 태그 데이터 전송 프로토콜의 설계 및 구현)

  • Lee, Chae-Suk;Kim, Dong-Hyun;Kim, Jong-Doek
    • Journal of KIISE:Information Networking
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    • v.37 no.3
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    • pp.217-227
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    • 2010
  • To apply active RFID technology in the various kinds of industry, it needs to quickly transmit a large amount of data. ISO/IEC 18000-7 standard uses the 433.92MHz as single channel system and its transmit rate is just 27.8kbps, that is insufficient for a large amount of data transmission. To solve this problem, we designed a new data transmission protocol using 2.4GHz band. The feature of designed protocol is not only making over 255bytes data messages using the Burst Read UDB but also efficiently transmitting it. To implement this protocol, we use Texas Instruments's SmartRF04 develop kit and CC2500 transceiver as RF module. As an evaluation of 63.75kbytes data transmission, we demonstrate that transmission time of Burst Read UDB has improved as 17.95% faster than that of Read UDB in the ISO/IEC 18000-7.

A New High-Efficiency CMOS Darlington-Pair Type Bridge Rectifier for Driving RFID Tag Chips (RFID 태그 칩 구동을 위한 새로운 고효율 CMOS 달링턴쌍형 브리지 정류기)

  • Park, Kwang-Min
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.4
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    • pp.1789-1796
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    • 2012
  • In this paper, a new high-efficiency CMOS bridge rectifier for driving RFID tag chips is designed and analyzed. The input stage of the proposed rectifier is designed as a cascade structure connected with two NMOSs for reducing the gate capacitance by circuitry method, which is the main path of the leakage current that is increased when the operating frequency is increased. This gate capacitance reduction technique using the cascade input stage for reducing the gate leakage current is presented theoretically. The output characteristics of the proposed rectifier are derived analytically using its high frequency small-signal equivalent circuit. For the general load resistance of $50K{\Omega}$, the proposed rectifier shows better power conversion efficiencies of 28.9% for 915MHz UHF (for ISO 18000 -6) and 15.3% for 2.45GHz microwave (for ISO 18000-4) than those of 26.3% and 26.8% for 915MHz, and 13.2% and 12.6% for 2.45GHz of compared other two existing rectifiers. Therefore, the proposed rectifier may be used as a general purpose rectifier to drive tag chips for various RFID systems.

A CMOS Complementary Bridge Rectifier for Driving RFID Transponder Chips

  • Park, Kwang-Min
    • Transactions on Electrical and Electronic Materials
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    • v.7 no.3
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    • pp.103-107
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    • 2006
  • In this paper, a CMOS complementary bridge rectifier for driving RFID transponder chips is presented. The proposed RFID CMOS complementary bridge rectifier is designed with two NMOSs at the input, which are configured by cross-connected gate structures, and two PMOSs and two NMOSs at the output, which are configured by diode-connected MOS structures. Output characteristics of the proposed rectifier are analyzed with the high frequency small-signal equivalent circuit and verified with SPICE for RFID operating frequencies of 13.56 MHz HF for ISO 18000-3, 915MHz UHF for ISO 18000-6, and 2.45 GHz microwave for ISO 18000-4. Simulation results show well-rectified and high enough DC output voltages for driving the low power microchip in the RFID transponder for the frequency range from HF to microwave. DC output voltages are dropped by only around 0.7 V from the input peak-to-peak voltages.