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This paper presents current mode logic gates using MTJ elements without any intermediate electronic circuitry.
This paper presents a modified low-voltage MOS current mode logic (MCML) exclusive-OR (XOR) gate.
This logic family takes over and improves main characteristics of Gate Diffusion Input (GDI) and Dual Mode Logic (DML).
A new low-voltage MOS current mode logic (MCML) topology for an exclusive-OR (XOR) gate using triple-tail cell concept is proposed.
An automated optimization-based design strategy is proposed for MOS current mode logic (MCML) circuits to overcome the complexities of the design procedure.
The recently proposed Dual Mode Logic (DML) family provides a novel approach to provide this capability by introducing two configurable operating modes, static and dynamic, that enable fine-grained control of the power-performance tradeoff of a logic path.
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To this aim, the differential MOS current-mode logic (MCML) is adopted as reference logic style, and a complete differential design flow is used.
The non-linear storytelling also shakes the audience free from their default mode of logic, instead opening up their ability to feel.
A mode change logic is provided in MG1 and is demonstrated in Fig. 12.
An ultra-low power, high speed dual mode CMOS logic family called DMTGDI is introduced.
The existing impact angle control guidance laws with field-of-view constraint are only applicable against stationary targets and most of them suffer abrupt-jumping of guidance command due to the application of additional guidance mode switching logic.
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