Diagonal pipe ends and a sealing member keep acoustic paths sealed during housing sliding, preserving sound transmission and movement stability.
Sparse maps let single-plane convolution hardware skip zero-value multiplications, cutting DNN power use while keeping flexible throughput.
A slide-out flexible display reveals a second app from a notification, keeping the current app visible on a separate display area.
Input data and weights are reordered for reuse across convolution cycles, cutting DNN memory bandwidth and power consumption.
A discharger placed between rolled panel portions reduces friction and provides a conductive path to release static electricity.
Motor speed is matched to app rendering time so a rollable display can expand or retract smoothly without frame drops.
Pivot shafts and interlinked sliding apertures let a deformable display change shape while keeping visible screen areas aligned with user interaction.
Labelled interface elements let a client device rebuild a suitable UI over short-range wireless links without video decoding.
A grooved hard layer reinforces the fold zone of a glass cover, improving impact resistance without sacrificing display foldability.
Snap-fit front and side coupling features let computing housings be reassembled without tools, improving reconfiguration, spacing, and cable management.
Preconfigured primary and secondary deployments replicate transfer state so cloud data ingestion can continue after failover without manual recovery.
Iterative feature and weight rescaling keeps bias quantization aligned in N-bit CNN accelerators, preventing saturation and accuracy loss.
Dual looped frames and gaskets create a sealed hyperbaric chamber that improves electronic cooling, lowers fan noise, and avoids leakage.
Varying flexural moduli and woven support lines help a foldable display absorb impact while limiting surface creases during repeated folding.
Dynamic DRAM efficiency calculation uses refresh, density, and temperature data to tune DDR frequency and LLC allocation for lower power.
Multi-valued basis matrices cut scaling-vector dimensions, reducing neural network computation on low-spec devices without re-training.
A dual-area touch interface streamlines multi-mode media editing by reducing inputs while improving navigation efficiency and power use.
Hollow and groove regions in a foldable display support plate smooth modulus transitions and reduce film peeling at bend boundaries.
A retractable flexible display adjusts visible content and audio output to match slide position, avoiding marginal areas and lost immersion.
Slit adhesive tape on a rolling hinge supports a sliding flexible display while preventing visible support bar transfer and stress buildup.
A prediction-based virtual HDM decoder sequence cuts CXL decoder count, area, and power while preserving efficient address translation.
A central reel and opposing magnets let a multiport dongle fully retract and enclose its cable connector, reducing storage issues and interference.
LSH bucketing and distributed joins cut distance-query overhead in graph-based clustering for large, high-dimensional datasets.
Delta-compressed weights in a compute-in-memory array cut memory accesses and processing load while improving power efficiency and capacity.
Bidirectional mapping links app content and web content through deep-link metadata, making application data discoverable to lookup services.
Thermal switches engage or decouple a battery heat sink by temperature threshold, improving heat dissipation without shortening battery cycle life.
Large-scale IMC SRAM macros plus a custom ISA and hardware loops cut memory-access overhead while supporting diverse low-precision DNN layers.
Combining copper and aluminum in airflow-exposed heat-rejecting media improves heat dissipation while cutting cooling weight and cost.
Waste heat from data center processors is transferred to LNG for regasification, cutting cooling energy use and external heating demand.
Power-use baselines help detect unhealthy or compromised edge devices and trigger service constraints or resets to keep services reliable.
A recessed chamber-and-flange heat spreader is welded into a support member to improve cooling in narrow electronic device spaces.
A rotating polarizer built into the privacy shutter filters display reflections on glasses, reducing videoconference distraction and privacy exposure.
A dual-buffer virtual display keeps background apps running during foreground use, improving resource allocation without extra screen updates.
A host agent relays internal sensor data from unmanaged components to the BMC, improving cooling accuracy, energy use, and uptime.
Waste heat from a data center is routed through a heat-transfer loop to regasify LNG, cutting cooling energy use and grid dependence.
Elastic side elements press a multi-joint support against the panel to resist bending forces and keep unfolded display surfaces flat.
Portable security units are added as sensors so a base station can cover yards or garages and trigger both local and central alarms.
Rendering widget subcomponents into a static image cuts memory use and power draw while preserving touch interaction areas.
A primer-linked hard coat and low-index layer reduce folding stress and cracks while preserving image clarity in foldable displays.
Varying heat-rejecting media depth behind multiple fan exhausts improves heat transfer and cooling in compact information handling systems.
Learn how expanded matrix-based rounding preserves ML model accuracy while cutting memory use and improving quantization expressivity.
An inward cutout lets a display protective sheet be lifted easily without a protruding tab, preserving adhesion, appearance, and removal stability.
A vaporization-condensation coolant module spreads heat laterally between the heat source and cold plate, lowering heat density and peak temperature.
Foreground highest-point detection enables personal photos to be cropped and displayed as depth-effect wallpapers on electronic devices.
Redirected exhaust airflow cools heat-rejecting media and downstream housing surfaces, lowering skin temperature without sacrificing cooling efficiency.
A comparator screens ambient microphone signals and wakes the processor only for out-of-range audio, cutting standby power without losing responsiveness.
A dual-path MAD circuit aligns FP outputs to fixed-point accumulation, doubling neural network throughput while cutting cycles, bandwidth, and power.
A multi-bar support with overlapping rails preserves antenna spacing while enabling a curved flexible display and larger screen area.
Connectors and traces on the flexible display module route signals across foldable housings without through-hinge links, saving space and preserving strength.
Multi-modulus coatings around ultra-thin glass improve flexible display rigidity, impact resistance, and edge protection without added thickness.