Title :
Smart-pixel cellular neural networks in analog current-mode CMOS technology
Author :
Espejo, S. ; Rodriguez-Vázquez, A. ; Dominguez-Castro, R. ; Huertas, J.L. ; Sánchez-Sinencio, E.
Author_Institution :
Centro Nacional de Microelectron., Seville Univ., Spain
fDate :
8/1/1994 12:00:00 AM
Abstract :
This paper presents a systematic approach to design CMOS chips with concurrent picture acquisition and processing capabilities. These chips consist of regular arrangements of elementary units, called smart pixels. Light detection is made with vertical CMOS-BJT´s connected in a Darlington structure. Pixel smartness is achieved by exploiting the cellular neural network paradigm, incorporating at each pixel location an analog computing cell which interacts with those of nearby pixels. We propose a current-mode implementation technique and give measurements from two 16 x 16 prototypes in a single-poly double-metal CMOS n-well 1.6-μm technology. In addition to the sensory and processing circuitry, both chips incorporate light-adaptation circuitry for automatic contrast adjustment. They obtain smart-pixel densities up to 89 units/mm2, with a power consumption down to 105 μW/unit and image processing times below 2 μs
Keywords :
CMOS integrated circuits; analogue processing circuits; image processing equipment; image sensors; intelligent sensors; linear integrated circuits; neural chips; parallel processing; 1.6 micron; 105 muW; 2 mus; CMOS n-well technology; Darlington structure; analog computing cell; analog current-mode CMOS technology; automatic contrast adjustment; concurrent picture acquisition; concurrent picture processing; light detection; light-adaptation circuitry; sensory circuitry; single-poly double-metal technology; smart-pixel cellular neural networks; vertical CMOS-BJTs; Analog computers; CMOS process; CMOS technology; Cellular neural networks; Circuits; Computer networks; Current measurement; Prototypes; Semiconductor device measurement; Smart pixels;
Journal_Title :
Solid-State Circuits, IEEE Journal of