This paper addresses the design and VLSI implementation of MOS-based RC networks capable of performing time-controlled Gaussian filtering. In these networks, all the resistors are substituted one by one by a single MOS transistor biased in the ohmic region. The design of this elementary transistor is carefully realized according to the value of the ideal resistor to be emulated. For a prescribed signal range, the MOSFET in triode region delivers an interval of instantaneous resistance values. We demonstrate that, for the elementary 2-node network, establishing the design equation at a particular point within this interval guarantees minimum error. This equation is then corroborated for networks of arbitrary size by analyzing them from a sto...
A variety of computational tasks in early vision can be formulated through lattice networks. The coo...
This paper introduces an architecture of a switched-capacitor network for Gaussian pyramid generatio...
The detection of discontinuities in motion, intensity, color, and depth is a well-studied but diffic...
Abstract—This paper analyses a MOS-based resistive network suitable for massively parallel image pro...
The authors have designed and tested a one-dimensional 64 pixel, analog CMOS VLSI chip which localiz...
Abstract—This paper presents a massively parallel processing array designed for the 0.13µm 1.5V stan...
Abstract—Cellular Nonlinear Networks (CNN) establish a theoretical framework in which programmable f...
This paper presents a massively parallel processing array designed for the 0.13-μm 1.5-V standard CM...
Abstract —The architecture of an active resistive mesh con-taining both positive and negative resist...
This paper describes the electronic implementation of a four-layer cellular neural network architect...
A methodological approach to the definition of nonlinear circuits for real-time image processing is ...
Gaussian filtering is a basic tool for image processing. Noise reduction, scale-space generation or ...
Image filtering is computationally intensive on digital computers. Analog VLSI implementations can p...
A variety of computational tasks in early vision can be formulated through lattice networks. The coo...
The detection of discontinuities in motion, intensity, color, and depth is a well-studied but diffic...
A variety of computational tasks in early vision can be formulated through lattice networks. The coo...
This paper introduces an architecture of a switched-capacitor network for Gaussian pyramid generatio...
The detection of discontinuities in motion, intensity, color, and depth is a well-studied but diffic...
Abstract—This paper analyses a MOS-based resistive network suitable for massively parallel image pro...
The authors have designed and tested a one-dimensional 64 pixel, analog CMOS VLSI chip which localiz...
Abstract—This paper presents a massively parallel processing array designed for the 0.13µm 1.5V stan...
Abstract—Cellular Nonlinear Networks (CNN) establish a theoretical framework in which programmable f...
This paper presents a massively parallel processing array designed for the 0.13-μm 1.5-V standard CM...
Abstract —The architecture of an active resistive mesh con-taining both positive and negative resist...
This paper describes the electronic implementation of a four-layer cellular neural network architect...
A methodological approach to the definition of nonlinear circuits for real-time image processing is ...
Gaussian filtering is a basic tool for image processing. Noise reduction, scale-space generation or ...
Image filtering is computationally intensive on digital computers. Analog VLSI implementations can p...
A variety of computational tasks in early vision can be formulated through lattice networks. The coo...
The detection of discontinuities in motion, intensity, color, and depth is a well-studied but diffic...
A variety of computational tasks in early vision can be formulated through lattice networks. The coo...
This paper introduces an architecture of a switched-capacitor network for Gaussian pyramid generatio...
The detection of discontinuities in motion, intensity, color, and depth is a well-studied but diffic...