A wake-up system uses a sound transducer and keyword detection logic to identify speech energy profiles for remote device activation.
Processor configures login device wake-up support by state to reduce power consumption and prevent false touch events.
A server storage unit supplies backup power to maintain control module operation during power loss events.
An embedded controller monitors battery charge and cuts off power to active devices during standby mode.
Periodic idle characters trigger synchronization only when needed, eliminating continuous signaling to reduce electromagnetic interference.
A method configures processor throughput based on neural network execution metrics to manage power consumption.
Electronic device calculates average touch operation time periods to set screen timeout duration.
IMU firmware manages CPU power parameters directly after boot firmware notification, reducing OS interaction latency.
A dynamic voltage source in series with a battery maintains minimum system voltage during high-power turbo events, extending support time by up to 64%.
Detects carrying case insertion using orientation sensor patterns and processor logic without rare earth magnets.
An input module control program issues command signals to a processing unit, maintaining active computer status through automated response feedback.
A sensor coprocessor enters a dormant state when the mobile terminal screen is off, shifting data processing to a lower-power touch screen coprocessor.
A modular server power management system monitors supply capacity to trigger reduced consumption states.
A computer system uses an embedded controller to manage power states via a switch circuit.
Voltage droop detection triggers compute die throttling to prevent VR over-current shutdowns, enabling smaller power supply designs.
A power saving module controls a switch to disconnect the battery from the OS system.
A priority-based system allocates energy budgets to applications based on user importance scores for consistent battery drain rates.
A processor adjusts backup protocols based on contextual situations to protect unsaved data.
A memory circuit reconfigures image data distribution across channels to enable selective power management.
A power switch arbiter sequences domain activation to manage instantaneous current draw across shared voltage supplies.
A processor power management system adjusts core voltage and clock rate based on actual junction temperature measurements.
A wearable mode switching method introduces a fake sleep state to optimize power usage and monitoring accuracy.
Mobile terminal downloads and transmits firmware updates through charging port data lines, eliminating manual recalls for power adapters.
Dynamic mode switching allows the power supply unit to act as a mastering end, resolving limited application scope in traditional master-slave models.
Local power multiplexers dynamically route supply voltages to cores, reducing power delivery network area while maintaining full DCVS adaptability.
Voltage supply circuit regulates power to real-time clock and oscillation circuits, preventing data corruption during power down transitions.
An operation display apparatus selectively transmits user input data to connected devices via dedicated interfaces.
Separating the power supply circuit from communication semiconductors prevents improper interruptions caused by semiconductor failures.
A function-specific power supply control unit manages electric power to constituent units based on user-defined settings.
A touch panel uses a second sensing electrode with distinct sensitivity in the inactive area to detect object approach.
A time series model updates user profiles using battery measurements and operational data to adjust consumption.
An input power monitor module detects total harmonic distortion on the power supply input and sends an indication signal to a baseboard management controller.
A telecommunication node routes traffic to a general purpose CPU for processing instead of standard components.
A failover switch controller manages AC and DC power sources to ensure continuous energy delivery.
A charge management system calculates predicted lockout dates to notify users before battery depletion.
Power management subsystem dynamically adjusts current limits across multiple transducers to optimize energy distribution.
A battery module controller adjusts CPU clock frequency based on temperature and current sensor data to manage power delivery.
Bridge device generates access signal pulses within reference clock cycles to reduce power consumption and improve synchronization in data access systems.
Predicting incoming workloads via command buffer analysis synchronizes GPU operating levels with fluctuating demands, eliminating synchronization delays.
A method iteratively calculates simple linear regression coefficients by modifying existing components based on previous calculations.
Dynamic adjustment of reference clock signals based on training parameters resolves fixed delay inefficiencies in PCIe state transitions.
A matching server scores similarity between load and source activity data to automatically assign connections.
A rack server battery backup unit detects power supplier output voltage drops to activate lithium storage, preventing data loss from AC-grid instability.
Segments total server power into application shares to resolve inaccurate charge-back mechanisms in cloud computing.