Title :
30.1 8b Thin-film microprocessor using a hybrid oxide-organic complementary technology with inkjet-printed P2ROM memory
Author :
Myny, Kris ; Smout, Steve ; Rockele, Maarten ; Bhoolokam, Ajay ; Tung Huei Ke ; Steudel, Soeren ; Obata, Koji ; Marinkovic, M. ; Duy-Vu Pham ; Hoppe, Andreas ; Gulati, Aashini ; Gonzalez Rodriguez, Francisco ; Cobb, Brian ; Gelinck, Gerwin H. ; Genoe, Jan
Author_Institution :
imec, Leuven, Belgium
Abstract :
We present an 8b general-purpose microprocessor realized in a hybrid oxide-organic complementary thin-film technology. The n-type transistors are based on a solution-processed n-type metal-oxide semiconductor, and the p-type transistors use an organic semiconductor. As compared to previous work utilizing unipolar logic gates [1], the higher mobility n-type semiconductor and the use of complementary logic allow for a >50x speed improvement. It also adds robustness to the design, which allowed for a more complex and complete standard cell library. The microprocessor consists of two parts, a processor core chip and an instruction generator. The instructions are stored in a Write-Once-Read-Many (WORM) memory formatted by a post-fabrication inkjet printing step, called Print-Programmable Read-Only Memory (P2ROM). The entire processing was performed at temperatures compatible with plastic foil substrates, i.e., at or below 250°C [2].
Keywords :
MOSFET; PROM; microprocessor chips; organic semiconductors; thin film circuits; WORM memory; cell library; complementary logic; general-purpose microprocessor; hybrid oxide-organic complementary technology; inkjet-printed P2ROM memory; instruction generator; n-type transistors; organic semiconductor; p-type transistors; plastic foil substrates; print-programmable read-only memory; processor core chip; solution-processed n-type metal-oxide semiconductor; storage capacity 8 bit; unipolar logic gates; write-once-read-many memory; Computer architecture; Generators; Grippers; Microprocessors; Printing; Registers; Transistors;
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.2014.6757523