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Current Mode Neuromorphic Implementation using Current Memory
2020 International SoC Design Conference (ISOCC), 2020Recently, neuromorphic research has been drawing attentions as there is a limitation of a serial processor with a Von Neumann architecture. In particular, spiking neural network (SNN) is one of the neuromorphic AI models that has been actively researched because it can be implemented with a low power consumption and a parallel signal processing system.
Hyungmin Kim +6 more
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1984 IEEE International Solid-State Circuits Conference. Digest of Technical Papers, 1984
The use of down and up transistors to form nonsaturating and merged current mode logic resulting in a power-delay product of 0.1pJ for power dissipation less than 50μW/gate and a minimum delay of 1.6ns at 200μW/gate will be described.
P. Zdebel, W. Engl
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The use of down and up transistors to form nonsaturating and merged current mode logic resulting in a power-delay product of 0.1pJ for power dissipation less than 50μW/gate and a minimum delay of 1.6ns at 200μW/gate will be described.
P. Zdebel, W. Engl
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Cascadable Current-Mode Biquads
Analog Integrated Circuits and Signal Processing, 1997New procedures are presented that yield cascadable, opamp based current-mode biquads from voltage-mode biquads without the use of voltage-mode to current-mode transformations. The opamps in the resulting current-mode circuits can be replaced by current-mode devices, such as current conveyors, producing circuits that are fully current-mode.
Zbigniew J. Lata, Peter B. Aronhime
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1997
As pointed out in Chapter 6, the conventional PWM converters are in essence feedback control systems and can therefore be treated accordingly with the available analytical tools, provided some additional steps are taken. The major theme of these types of treatments center, in almost all cases, around two performance merits: output voltage DC regulation
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As pointed out in Chapter 6, the conventional PWM converters are in essence feedback control systems and can therefore be treated accordingly with the available analytical tools, provided some additional steps are taken. The major theme of these types of treatments center, in almost all cases, around two performance merits: output voltage DC regulation
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Current-driven electromagnetic modes
Plasma Physics, 1979The dispersion relation for current-driven electromagnetic instabilities in an inhomogeneous slab geometry is derived and analyzed. It is shown that current in the direction of the equilibrium magnetic field, as well as transverse current gradients can strongly modify the drift-Alfven dispersion relation as given by Kadomtsev (1965).
J L Sperling, D K Bhadra
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Analogue Current Mode Circuits
International Journal of Electrical Engineering & Education, 1989Circuits designed to use current as the active parameter can often outperform by a significant margin the more traditional voltage mode formulations. Many wideband circuit functions and new design opportunities are available by using current mirrors and current conveyors as basic building blocks.
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Current-mode signal processing
17th Convention of Electrical and Electronics Engineers in Israel, 2002The trend of lowering the supply voltages to 3.3 V of mixed analog-digital VLSI circuits has renewed the interest in current-mode signal processing, which employs current as signal parameter and therefore minimizes voltage swings. Some old, and several recently published current-mode circuits are reviewed.
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Current-mode network transformations
Proceedings of IEEE International Symposium on Circuits and Systems - ISCAS '94, 2002Current-mode network transformations are presented from which it is possible to generate new current-mode circuits by performing simple operations on the network. These transformations are developed by interchanging the ports of a current-mode circuit and exploiting the properties of current-conveyors and RC networks.
M. Desai, P. Aronhime, J. Zurada
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2006
In this chapter we begin the discussion of digital control techniques for switching power converters. In the previous chapter, we have introduced the topology and operation of the half-bridge VSI and designed an analog PI current controller for this switching converter.
Buso S., Mattavelli P.
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In this chapter we begin the discussion of digital control techniques for switching power converters. In the previous chapter, we have introduced the topology and operation of the half-bridge VSI and designed an analog PI current controller for this switching converter.
Buso S., Mattavelli P.
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Current-Mode Wheatstone Bridge
2018Current chapter deals with Wheatstone Bridges with the focus on Current-Mode Wheatstone Bridge and its associated signal conditioning circuits. The operation, advantages and drawbacks of each circuit are discussed in detail. To make the comparison between traditional Voltage-Mode Wheatstone Bridge and Current-Mode Wheatstone Bridge more convenient, at ...
Leila Safari +3 more
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