A two-part wick layout in a vapor chamber spreads heat across compact electronics while balancing dissipation coverage and structure complexity.
Maintains reading layout during flexible screen resizing, then adapts new content placement for scrolling and text input.
Sensor-guided cooling modules shift toward hotter components to match changing XPU workloads, improving thermal control while cutting energy use.
Timed activation of split memory cells maps high-bit weights in IMC arrays with better accuracy, density, and low power.
Sensor-driven UI stabilization counters device motion in real time, reducing discomfort and improving accessibility with user-specific settings.
Elastic portions in a multi-joint display support press the panel during unfolding to keep side and center areas flat and wrinkle-free.
A compliant gap pad and protective cover create a removable thermal link for liquid-cooled pluggable modules with low insertion force.
A two-phase ALU computation cuts repeated complex dot product operations, reducing multiplication energy use and processing time.
A type-first sort setup screen exposes priority image sort items first, cutting input overload while keeping full condition creation available.
Vibration in the heat exchanger disrupts the liquid boundary layer, boosting rack cooling while reducing pump and piping burden.
A torsion-spring hinge with rotary damping lets dock-bay cameras swing away from parcel impacts and return smoothly to the viewing position.
Residual airflow from front-cooled racks is redirected to rear-cooled racks, improving mixed liquid and air cooling without extra infrastructure.
A management controller checks peripheral power ratings against platform limits before activation to prevent overload, instability, and hardware failure.
Power measurements across CPU, memory, and I/O identify workload type and guide server load shifts to cut data center energy use.
Distinct drag-and-drop screen icons help users identify the right display area, improving multi-screen window placement and reducing selection errors.
Movement sensing switches a cart-mounted scanner between active, reduced-power, and sleep states to preserve battery life without hurting checkout usability.
A pulley-guided rear shading film opens and closes a transparent display while balancing left-right tension to protect the belt and film.
Selective predictor power-up avoids incomplete branch decisions, then repredicts with more relevant structures to improve accuracy and cut power.
Integrated touch and stylus sensing with EM shielding and a slotted support plate keeps foldable displays thin without losing flexibility.
A compliant gap pad and protective cover create a removable liquid-cooling interface for pluggable modules without high insertion force or material damage.
Channel-wise feature map displacement plus 1×1 convolution cuts repeated DNN convolutions while preserving spatial and channel aggregation.
Dynamic PCIe link speed scaling in a discrete USB4 host cuts PHY and controller power draw while preserving needed bandwidth and battery life.
By intercepting screen-on, the interface is drawn to the current orientation before display, avoiding rotation animation delays after wakeup.
Reduced color filter thickness and a backlight through hole let an under-screen camera capture light without sacrificing full-screen LCD display.
Selective bonding in fold-area PCB layers lets adjacent circuits slide, reducing folding stress, path loss, and shape distortion.
Audio direction-of-arrival detection rotates on-screen visuals to stay aligned with the user's viewpoint when the device is tilted.
A dedicated battery-threshold pin triggers direct processor voltage and frequency throttling, cutting transition delay and decoupling capacitor needs.
A low-power DSP monitors voice keywords while the host processor sleeps, cutting energy use without losing wake-up responsiveness.
A pivoting removable fan tray enables top or rear replacement in rackmount network chassis, cutting service delays and downtime.
Parallel spring stacking aligns elastic force with display sliding to cut force loss, extend stroke, and reduce spring deformation.
On-demand liquid cooling uses die temperature thresholds to prevent processor resets while reducing immersion fluid loss and service burden.
A single protective layer with black pigment and polymer beads preserves thin display stacks while improving impact resistance and visibility.
A rope-driven sliding support extends a flexible screen to increase display area without the bulky folded structure of large-screen devices.
A shared scratchpad with DMA-fed atomic accumulation removes multi-core synchronization overhead in neural network vector reductions.
Orthogonal convolution and pooling windows reduce CNN processing load by reusing intermediate data in temporary memory.
Dynamic side-screen interfaces adapt to active tasks on curved and foldable displays, improving visual flexibility and intuitive interaction.
Through grooves and local plating help a foldable support plate cut bending stress, resist extrusion, and reduce weight in flexible displays.
An on-panel touch and stylus sensor paired with an EM shield and slotted support plate cuts foldable display thickness while preserving flexibility.
A unified drag-and-overlap icon entry simplifies cross-device services by reducing scattered controls and intelligently selecting the interaction.
A state machine detects USB role reversal and switches termination resistors to preserve high-speed signal integrity and reduce bit errors.
A multiplexer and one isolation component detect multiple fan fault signals at once, cutting circuit cost and control-system interference.
Sequential wake-word and follow-up command recognition cuts false power-on events in displays while keeping remote voice control responsive.
A separate ECA enclosure and counterflow heat exchanger simplify large-display cooling, cut hot spots, and reduce ducting complexity.
Bit-line sense-amplifier buffers relay page data across memory sections to raise prefetch capability with lower power and no larger block area.
Segmented sensing regions and asymmetrical signal inputs improve hinge durability and keep signal transmission stable in foldable displays.
Verifies certificate content and update settings across network devices to prevent expiration risk and reduce manual security checks.
Overlap bits across significance lanes let accumulation stay within one selected lane, cutting buffer access, overflow risk, and power use.
Acceleration sensing and ML switch UWB power and ranging intervals to cut mobile battery drain while keeping nearby appliance control responsive.
Event-triggered command mapping lets paired devices sync calls, media, and privacy states without continuous monitoring or excess battery drain.
Movable locking blocks between separate support strips stabilize flexible display curling and deployment despite machining and assembly errors.