Title :
30.4 A 13.56MHz RFID tag with active envelope detection in an organic complementary TFT technology
Author :
Fiore, Vincenzo ; Ragonese, Egidio ; Abdinia, S. ; Jacob, Shebin ; Chartier, Isabelle ; Coppard, R. ; van Roermund, Arthur ; Cantatore, Eugenio ; Palmisano, G.
Author_Institution :
Univ. of Catania, Catania, Italy
Abstract :
In the last several years, organic electronics have gained increasing consideration as a cost-effective alternative to silicon, especially in RFID applications. An inductive-coupled organic RFID operating at 13.56MHz was demonstrated on foil using p-type organic technologies [1]. A complementary organic technology was used for a 13.56MHz transponder in [2]. Recently, a complementary hybrid organic/metal-oxide process was exploited to demonstrate bidirectional communication in an HF RFID [3]. It adopts passive envelope detection using traditional diode-based schemes with OOK modulation. However, OOK modulation usually reduces sensitivity and reading range. In this work, a complementary organic TFT (C-OTFT) technology [4] is used for the first time to implement a 13.56MHz RX front-end, which exploits an active detection scheme and is able to demodulate ASK PWM-coded signals with modulation depth (h) as low as 25%.
Keywords :
amplitude shift keying; demodulation; organic field effect transistors; radiofrequency identification; thin film transistors; transponders; ASK PWM-coded signal demodulation; C-OTFT technology; OOK modulation; RFID tag; active envelope detection; bidirectional communication; complementary hybrid organic-metal-oxide process; complementary organic TFT technology; complementary organic technology; diode-based schemes; foil; frequency 13.56 MHz; front-end; inductive-coupled organic RFID; modulation depth; organic complementary TFT technology; organic electronics; p-type organic technology; passive envelope detection; sensitivity reduction; transponder; Clocks; Logic gates; Modulation; Radiofrequency identification; Rectifiers; Synchronization; Voltage measurement;
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2014 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4799-0918-6
DOI :
10.1109/ISSCC.2014.6757526