CONFIGURABLE POWER DOMAIN AND METHOD
Aspects of this disclosure are directed to level-shifting approaches with communications between respective circuits (120, 130). As may be implemented in accordance with one or more embodiments characterized herein, voltage levels of communications passed between respective circuits are selectively...
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creator | VAN DER WEL, Arnoud PINEDA DE GYVEZ, Jose KAPOOR, Ajay BLUTMAN, Kristóf |
description | Aspects of this disclosure are directed to level-shifting approaches with communications between respective circuits (120, 130). As may be implemented in accordance with one or more embodiments characterized herein, voltage levels of communications passed between respective circuits are selectively shifted. Where the respective circuits operate under respective power domains that are shifted in voltage range relative to one another, the voltage level of the communications is shifted. This approach may, for example, facilitate power-savings for stacked circuits in which a low-level voltage of one circuit is provided as a high-level voltage for another circuit. When the respective circuits operate under a common power domain, the communications are passed directly between the respective circuits (e.g., bypassing any level-shifting, and facilitating fast communication). |
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As may be implemented in accordance with one or more embodiments characterized herein, voltage levels of communications passed between respective circuits are selectively shifted. Where the respective circuits operate under respective power domains that are shifted in voltage range relative to one another, the voltage level of the communications is shifted. This approach may, for example, facilitate power-savings for stacked circuits in which a low-level voltage of one circuit is provided as a high-level voltage for another circuit. 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As may be implemented in accordance with one or more embodiments characterized herein, voltage levels of communications passed between respective circuits are selectively shifted. Where the respective circuits operate under respective power domains that are shifted in voltage range relative to one another, the voltage level of the communications is shifted. This approach may, for example, facilitate power-savings for stacked circuits in which a low-level voltage of one circuit is provided as a high-level voltage for another circuit. 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As may be implemented in accordance with one or more embodiments characterized herein, voltage levels of communications passed between respective circuits are selectively shifted. Where the respective circuits operate under respective power domains that are shifted in voltage range relative to one another, the voltage level of the communications is shifted. This approach may, for example, facilitate power-savings for stacked circuits in which a low-level voltage of one circuit is provided as a high-level voltage for another circuit. When the respective circuits operate under a common power domain, the communications are passed directly between the respective circuits (e.g., bypassing any level-shifting, and facilitating fast communication).</abstract><oa>free_for_read</oa></addata></record> |
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subjects | BASIC ELECTRONIC CIRCUITRY CALCULATING COMPUTING COUNTING ELECTRIC DIGITAL DATA PROCESSING ELECTRICITY PHYSICS PULSE TECHNIQUE |
title | CONFIGURABLE POWER DOMAIN AND METHOD |
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