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Journal ArticleDOI

UHF RFCPUs on Flexible and Glass Substrates for Secure RFID Systems

TLDR
A radio frequency integrated circuit (RFIC) tag consisting of an 8 bit CPU, a 4 kB ROM, a 512B SRAM, and an RF circuit, which communicates using 915 MHz UHF RF signals, has been developed on both a flexible substrate and a glass substrate.
Abstract
A radio frequency integrated circuit (RFIC) tag consisting of an 8 bit CPU, a 4 kB ROM, a 512B SRAM, and an RF circuit, which communicates using 915 MHz UHF RF signals, has been developed on both a flexible substrate and a glass substrate. Each of the RFIC tags employs a single DES and an anti-side channel attack routine in firmware for secured communication, and occupies an area of 10.5 mm in width and 8.9 mm in height. The RFIC tag on the flexible substrate is 145 mum thick and weighs 262 mg, and the RFIC tag on the glass substrate consumes 0.54 mW at a power supply voltage of 1.5 V and communicates with a maximum range of 43 cm at a power of 30 dBm. The high-performance poly-silicon TFT technology on flexible substrate and glass substrate of 0.8 mum design rule, and a gate plus one metal layer are used for fabrication. The RFIC tag realizes stable internal clock generation and distribution by a digital control clock generator and a two-phase nonoverlap clock scheme, respectively.

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Citations
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TL;DR: In this paper, a connection terminal portion is provided with a plurality of connection pads which are part of the connection terminal, each of which includes a first connection pad and a second connection pad having a line width different from that of the first one.
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Journal ArticleDOI

Conductive Inkjet-Printed Antennas on Flexible Low-Cost Paper-Based Substrates for RFID and WSN Applications

TL;DR: The first-ever two-dimensional sensor integration with an RFID tag module on paper, as well as the possibility of a three-dimensional multilayer paper-based RF/microwave structure, are shown.
References
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Proceedings ArticleDOI

RFCPUs on glass and plastic substrates fabricated by TFT transfer technology

TL;DR: The development of the world's first flexible RFCPUs (8bit, passive type) by adding to the CPU an antenna, an analog circuit, an encryption function and an RFID function, which operate using an RF signal with a frequency of 13.56MHz.
Book ChapterDOI

An Implementation of DES and AES, Secure against Some Attacks

TL;DR: This paper introduces some transformed S-boxes for DES and a new masking method and its applications to the non-linear part of Rijndael and applies this method to protect two of the most popular block ciphers: DES and the AES RIJndael.
Journal ArticleDOI

From polymer transistors toward printed electronics

TL;DR: In this paper, the authors present results on high performance polymer transistors, mainly based on poly-3alkylthiophene (P3AT) as semiconducting material.
Proceedings ArticleDOI

A CPU on a glass substrate using CG-silicon TFTs

TL;DR: In this article, a glass substrate using continuous-gain silicon TFTs was used to produce an 8b CPU with a distortion point of 640/spl deg/C, operating at a frequency of 3MHz at 5V.
Proceedings ArticleDOI

A CPU on a plastic film substrate

TL;DR: In this paper, a CPU using a high performance poly-silicon TFT is successfully fabricated on a plastic film substrate by a TFT transfer technology onto a polysilicon substrate.
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