HIERARCHICAL POWER MANAGEMENT APPARATUS AND METHOD
Hierarchical Power Management (HPM) architecture considers the limits of scaling on a power management controller, the autonomy at each die, and provides a unified view of the package to a platform. At a simplest level, HPM architecture has a supervisor and one or more supervisee power management un...
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Main Authors | , , , , , , , , , , , , , , , , , , , , , , , , , |
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Format | Patent |
Language | English |
Published |
24.05.2022
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Subjects | |
Online Access | Get full text |
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Abstract | Hierarchical Power Management (HPM) architecture considers the limits of scaling on a power management controller, the autonomy at each die, and provides a unified view of the package to a platform. At a simplest level, HPM architecture has a supervisor and one or more supervisee power management units (PMUs) that communicate via at least two different communication fabrics. Each PMU can behave as a supervisor for a number of supervisee PMUs in a particular domain. HPM addresses these needs for products that comprise a collection of dice with varying levels of power and thermal management capabilities and needs. HPM serves as a unified mechanism than can span collection of dice of varying capability and function, which together form a traditional system-on-chip (SOC). HPM provides a basis for managing power and thermals across a diverse set of dice. |
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AbstractList | Hierarchical Power Management (HPM) architecture considers the limits of scaling on a power management controller, the autonomy at each die, and provides a unified view of the package to a platform. At a simplest level, HPM architecture has a supervisor and one or more supervisee power management units (PMUs) that communicate via at least two different communication fabrics. Each PMU can behave as a supervisor for a number of supervisee PMUs in a particular domain. HPM addresses these needs for products that comprise a collection of dice with varying levels of power and thermal management capabilities and needs. HPM serves as a unified mechanism than can span collection of dice of varying capability and function, which together form a traditional system-on-chip (SOC). HPM provides a basis for managing power and thermals across a diverse set of dice. |
Author | DORIT SHAPIRA ANDREW HERDRICH RUPAL PARIKH NILANJAN PALIT PAVITHRA SAMPATH ADWAIT PURANDARE ANKUSH VARMA YOGESH BANSAL PHANI KUMAR KANDULA DEAN MULLA SURESH UDUPATI TIMOTHY YEE-KWONG KAM KRISHNAKANTH SISTLA VIVEK GARG RIPAN DAS STEPHEN WANG ERIC DEHAEMER MICHAEL HAAK STEPHEN PAUL HAAKE NAZAR HAIDER STANLEY CHEN SHRUTHI VENUGOPAL NIKETHAN SHIVANAND BALIGAR UJJWAL GUPTA AMAN SEWANI NIKHIL GUPTA |
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Title | HIERARCHICAL POWER MANAGEMENT APPARATUS AND METHOD |
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