X-Point Hybrid Memory Module With Resonant Power Gating

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Solution Overview

Problem

Server farms consume excessive electrical power, straining power grids and increasing costs, necessitating a solution to reduce power consumption while maintaining high computational speeds and efficiency.

Innovation Solution

Implementing hybrid computing modules with high-speed semiconductor chip stacks, resonant gate transistors, and efficient power management systems using electroceramic dielectric members and resonant gate transistors to optimize power distribution and reduce losses.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Use of energy by moving object

If conventional server farms use traditional power management systems, then they can maintain current computational speeds, but they consume excessive electrical power straining power grids

Engineering Contradiction:
Improveelectrical power consumptionVSAvoidpower grid stability
Core Design Contradiction:
Use of energy by moving objectVSReliability

Solution Approach 1:

The patent changes the electrical parameters by introducing resonant gate transistors that operate at resonant frequencies, transforming the power management approach from conventional non-resonant operation to resonant operation, thereby achieving 100-fold power reduction while maintaining computational functionality

Inventive Principle:
Principle #35Parameter changes

Solution Approach 2:

The patent replaces conventional power management systems with a resonant-based power management system using resonant gate transistors and electroceramic dielectric members, substituting traditional electrical power distribution with a resonant electromagnetic field-based system that dramatically reduces power consumption

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

2Productivity

If server farms increase power consumption to maintain high computational speeds, then processing capacity is improved, but operational costs increase significantly

Engineering Contradiction:
Improvecomputational speedVSAvoidoperational cost
Core Design Contradiction:
ProductivityVSUse of energy by stationary object

Solution Approach 1:

The patent transforms the operational parameters by using resonant gate transistors that switch at resonant frequencies determined by electroceramic dielectric members, enabling high-speed computation while reducing power consumption and operational costs by 100-fold

Inventive Principle:
Principle #35Parameter changes

Solution Approach 2:

The patent employs periodic resonant oscillations in the gate transistors, where the resonant frequency is determined by the electroceramic dielectric members, creating efficient periodic switching action that maintains high computational speeds with minimal power consumption

Inventive Principle:
Principle #19Periodic action

3Power

If conventional power management stages are used, then power can be delivered to server farms, but power losses are excessive and inefficient

Engineering Contradiction:
Improvepower delivery efficiencyVSAvoidpower loss
Core Design Contradiction:
PowerVSLoss of energy

Solution Approach 1:

The patent replaces conventional power management stages with a resonant power management system using resonant gate transistors and electroceramic dielectric members, substituting traditional resistive power distribution with resonant electromagnetic coupling that eliminates excessive power losses

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

Solution Approach 2:

The patent changes the power management parameters by operating transistors at resonant frequencies determined by electroceramic dielectric members, transforming inefficient conventional power delivery into efficient resonant power transfer with minimal losses

Inventive Principle:
Principle #35Parameter changes

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

Achieves a dramatic reduction in power consumption by 100-fold, enabling cost-effective operation of server farms without government subsidies and maintaining high computational speeds.

Implementation Method 1

A resonant gate transistor is provided that comprises a gate electrode, a dielectric member comprising an electroceramic dielectric material formed over the gate electrode, and a gate capacitance formed by the gate electrode and the dielectric member

Methodology Applied
Scientific EffectCapacitance: Capacitance

Implementation Method 2

transform, invert, or convert electrical energy drawn from a power source to AC or DC voltage used by an electronic system

Methodology Applied
Scientific EffectElectromagnetic Induction: Electromagnetic Induction

Data Source

PatentUS12578778B2Hybrid computer module element X-(cross)-point memory
Publication Date: 2026.03.17 DE ROCHEMONT L PIERRE
  • US12578778B2 patent drawing
  • US12578778B2 patent drawing
  • US12578778B2 patent drawing

AI summary

Hybrid computer module element X-(Cross)-point memory.