A curved battery, flexible PCB, and transparent potting pack sensing and wireless functions into a ring that stays comfortable for prolonged wear.
Programmable buttons, indicator screens, and a scroll dial let one vehicle controller adapt to many accessories without losing tactile feedback.
Thermally conductive material around memory components and the processor delays heat-triggered throttling and sustains data throughput.
Two thermally isolated heat sinks with opposing fans improve cooling by 21% while keeping noise and dimensions unchanged.
Placing the driver chip beside the TOF projection unit shortens wiring, improves pulse waveform quality, reduces thickness, and aids heat dissipation.
Interchangeable cooling modules and guided couplings expand cooling beyond the CPU while improving serviceability and assembly correctness.
Ion emitter and collector airflow uses vertical vent placement to cool processors quietly without conventional fan noise.
A floating sealing frame with dual elastic seal rings blocks rainwater at the wiring opening and helps prevent power box short circuits.
Ionized vapor flow inside a heatpipe boosts heat transfer for high-load electronics while avoiding fan noise and bulky cooling hardware.
A lead screw, slider, and gearbox coordinate stable panel winding and frame opening for flexible displays with compact storage.
Oxygen-rich inorganic adjusting layers shift stress in thin-film OLED packaging to prevent cracking or delamination during bending.
Axisymmetric connecting units balance bridge torque during stretching, keeping pixel island spacing uniform for more consistent display deformation.
Waterproof members between sliding frames and covers maintain sealing integrity in flexible-display housings despite changing internal space.
A grounded conductive layer turns the vapor chamber into both a heat spreader and EMI shield, cutting separate parts, weight, and packaging complexity.
Soft deformation frames absorb fold-induced dislocation between the display module and support plate, preventing edge interference and damage.
A metal substrate, shield plate, and separated drive board improve cooling of power semiconductors while reducing electromagnetic noise.
A fluid-filled cover under the circuit board forms a thin vapor chamber that pulls heat from stacked POP chips and lowers local temperatures.
Rotatable, vertically movable fasteners keep the cooling block aligned during mounting while allowing easier heatsink separation during unmounting.
A pivoting female connector rotates with the male plug to allow oblique insertion and reduce damage from misaligned plugging.
Asymmetric protrusions guide coolant and vapor in one direction, enabling pump-free two-phase chip cooling with lower power use.
Rotatable fasteners and positioning members keep cooling block alignment during mounting while enabling easier IC separation without damage.
Varying fin protrusions guide airflow vertically and laterally, cooling a CPU and nearby heat sources with one compact heat sink.
A removable front wall keeps seismic nodes electrically connected during transport, enabling mobile charging and data harvesting in remote survey areas.
Capillary wicking and boiling-enhancement features raise stacked-die heat transfer while releasing vapor bubbles and preventing immersion-cooling dryout.
Offset organic insulating layers and localized conductive contact reduce light reflection and preserve image quality in foldable displays.
An oxide conductive layer under a sealing layer reroutes touch sensor wiring to limit fracture and terminal damage in display panels.
Triboelectric generators harvest ambient or base-produced sound waves to safely charge phones through an integrated protective case.
A through-hole board link in a sliding flexible-display housing enables reliable antenna and coil connection to internal circuitry.
Magnetic grounding links sliding housings in rollable electronics to suppress parasitic resonance, improve antenna radiation, and reduce contact wear.
A spaced filling element reinforces the window-substrate gap while edge sealing blocks moisture and impact damage to the OLED.
A bidirectional converter shifts between charging and boost support to stabilize supply voltage when downstream power demand exceeds available input.
Straight heat pipes, grouped fins, and grooved vapor chambers increase contact area without pipe bending, preserving heat transfer efficiency.
Keeping the OS loaded in memory during a low-power off state cuts autonomous drone startup delay while limiting battery drain.
A door-cover stop element blocks module retraction during drops and collisions, preserving expansion functions while supporting waterproofing.
Reservoirs and capillary structures vary working fluid volume so one vapor chamber maintains low thermal resistance in steady-state and turbo modes.
A hooded MEMS cooling tile uses vibrating cells to direct airflow around hot components, improving heat dissipation with less noise and bulk.
Two pumping units drive fluid through separate heat exchange sections to cool multiple electronic components in less space with better heat transfer.
A drive motor, rack gear, and flexible PCB replace spring-assisted sliding in a rollable display to improve smooth travel and layout efficiency.
Monolithic integration of a driving layer with inorganic micro LEDs cuts subpixel size and boosts luminance for flexible high-resolution displays.
Predicted generation and load at each base guide VM moves to surplus-power time slots, reducing wasted renewable energy.
A dual-glass cover window uses crystallized and amorphous regions to balance impact resistance, thickness uniformity, and folding reliability.
Ad display output is reduced or paused by vehicle state, speed, fuel level, and destination distance to preserve cruising range.
A conductive metal layer between rolled panel portions releases friction-generated static charge and lowers ESD risk in rollable displays.
Minor fin structures partially cover through holes to boost coolant turbulence and heat transfer while keeping wider gaps that resist particle blockage.
A shield can opening, contact member, and heat transfer layers move PCB component heat to the cover while improving impact protection.
A recessed support groove embeds the drive chip to keep the flexible screen flat, preserve display quality, and simplify assembly.
An integrated water-cooling head, pump, and split-tube radiator remove pipe joints to cut leakage risk, size, and installation complexity.
A vertical switch board with orthogonal pluggable optics shortens 200 Gbps PCB signal paths and separates airflow for better cooling.
A bent rear heat dissipation member conducts heat from the display panel to the rear cover, limiting hot spots over control modules.
Randomized microstructures of three depths give a reflective display cover plate a more paper-like writing feel without losing visibility.
Attachable adhesive members let the display panel separate from the cover member without low-temperature damage, cutting rework time and reuse costs.
Bearings, side guides, and a central guide manage curved sliding to prevent bent display module deformation and damage.
ADAS event data and location aggregation reveal unreported hard braking and swerving hotspots for proactive road safety action.
Flexible oscillating heat pipes let servers be serviced quickly while the composite phase-change heat sink balances temperatures and lowers cooling risk.
Dynamic wallpaper previews match expanded and contracted rollable display states, improving image fit and wallpaper setting usability.
Separating private and non-private content into different screen areas speeds retrieval and prevents accidental exposure through authenticated access.
A stepped boss and phase-change heat pipes spread heat from power-dense chips to a larger cooling surface for more effective liquid cooling.
Selective sleep and wake detection lets multidrop Ethernet PHYs cut idle power while preserving bus responsiveness in shared networks.
Boot status drives asymmetric or symmetric authentication for each power domain, cutting secure wake power use and boot delay.
Dynamic-range quantization converts neural network weights, activations, and inputs to fixed point to cut compute load while preserving accuracy.
Nearby capture devices sync local space data offline before server reconnection, preventing mapping conflicts and preserving data integrity.
Runtime governor switching uses CPU frequency, utilization, cache, and battery inputs to improve power efficiency beyond static boot-time selection.
Parallel display power-on and AOD startup cut touch-to-display delay in screen-off devices by notifying the display driver immediately.
A tangential rotor-stator layout supports axial or radial drive in one cooling pump assembly, cutting volume while improving heat exchange.
An axial stator-rotor layout keeps the water chamber full-size while integrating the pump and impeller into a thinner, more reliable computer cooler.
Sensors trigger auto-framing only when a foldable device is within a set angle and a subject is detected, reducing manual input.
Communication load by port group is measured to power only needed storage interface ports, cutting energy use without hurting write performance.
A recessed thin center, thicker edges, and ion-exchanged compressive stress help foldable substrates keep a small fold radius without losing impact resistance.
Log-space charge pattern alignment improves top-down de novo sequencing accuracy when monoisotopic peaks are absent or misassigned.
Rotation sensing wakes a foldable device's sub-display only when needed, preserving battery life while keeping related app screens available.
A bracketed camera window with dual waterproof seals protects against water ingress and impact while supporting foldable device durability.
Intersecting load-bearing strips and support bars keep a stretchable flexible display flat while avoiding extra tensioning space.
Activity monitors estimate each device's power benefit so available power can be shifted to higher-efficiency blocks without uniform scaling.
A slit heat dissipation sheet spreads component heat while flexing through repeated rolling and bending in expandable display housings.
Vsync delay is adjusted to changing flexible display exposure so under-display optical sensing stays accurate during scan-line and refresh changes.
A ciphertext matrix transpose shifts row-based encrypted data for faster matrix multiplication, cutting homomorphic processing time and resource use.
A dynamic temperature limit tied to cumulative user heat exposure lets wearable devices stay usable longer without premature thermal shutdowns.
Corner grooves in a curved display backplane release bending stress, reducing rebound, peeling, bubbles, and wrinkles after lamination.
Openings in corrugated panel skin layers disperse manufacturing stress, preserving display appearance while keeping large panels rigid and light.
An AI model reconfigures FPAA computation elements through feedback to speed parallel computing while cutting power use.
Automated audio confidence scoring replaces manual annotation to measure wakeup and false wakeup rates with better monitoring efficiency.
Machine-readable smile and invisible ink codes speed device setup while strengthening user authentication through visible and IR sensing.
Inclined groove surfaces and covered protective-layer edges help foldable displays avoid impact damage and slipping in slim-bezel designs.
A trusted-user biometric database filters presence events to prevent spurious wakes, reduce power loss, and block unauthorized access.
Through portions connected to support plate openings create a hinge-like fold zone that reduces display stress while preserving protection and low weight.
Guide tubes and blocks steer tools to captive screws between tall heatsinks, speeding GPU board assembly while reducing component damage.
Input allocation, adder-tree multiply, and lightweight normalization speed mixed-data PIM accumulation with lower computational load.
Patterned support plates and guide elements keep a sliding display at constant curvature, preventing boundary damage and reducing light reflection.
A protective member between the display edge and housing wall reduces gap, absorbs folding shocks, and improves display positioning.
Application-specific lookup tables classify software activity on mobile devices, enabling responsive resource allocation and network optimization.
Parallel mixed-precision CNN computation cuts resource use and processing time while preserving output accuracy through selective precision modes.
A rigid protective structure with higher elastic modulus offsets rebound forces in curved foldable displays to prevent adhesive cracking.
By splitting encrypted matrices into square sub-matrices, SIMD homomorphic operations compute determinants with lower noise and overhead.
Patterned hollowed-out columns in a metal support disperse bend stress, improving flexible display rigidity and edge reliability.
A top-tube mounted monitor replaces complex bike displays with simple LEDs, protected connections, and wireless data links for durable use.
An extendable terminal and adjustable signal settings keep article transport vehicles reliably paired despite distance, obstacles, and nearby units.
Digital counters and an accumulator replace analog CIM paths to improve ML accuracy while cutting energy, area, and bus movement.
Paired sensors and rotation detection disable inactive sensing paths in hinged systems to prevent false activation and improve position control.
A conductive layer over housing through-holes creates passive heat-exchange regions that lower internal air and junction temperatures without extra fan noise.
Dual light guide plates with microstructures enable three emission modes, solving the trade-off between versatility and structural complexity.
Rotatable stator and rotor connect directly to axle shafts, eliminating complex differential gears while enabling independent wheel speed control.
A centralized network authentication system manages session tokens to verify user credentials across multiple applications.
A data processing device generates dimension-variable sub-vectors and applies X-means clustering to produce compressed codes from feature vectors.
An elastomeric signal transmission device extends and retracts a data connector via linked shafts and cam tracks.
Hardware accelerator uses fixed feature generators and programmable modules to reduce training time and energy consumption.
A processor-controlled routing module manages article flow across intersecting transfer conveyors to prevent system congestion.
Segmented sensor modules process motion data locally to reduce transmission load while enabling intuitive device interactions.
A service provider apparatus expands functions by sending requests to a second application on an external server.
Transaction components authenticate peers and reference control data to prevent unauthorized role assumptions in distributed systems.
A fan control circuit synthesizes weighted temperature signals to drive variable speed adjustments.
Replicating transaction and configuration data enables point-in-time database restoration without instantiating a standby node.
Sensors detect device orientation and movement to disable the touch input surface, preventing inadvertent inputs during carrying.
A virtual machine manager encrypts files using location-specific keys to secure data access.
A scope-centric access control model maintains an association graph to compute actor privileges based on client entity scopes.
Opaque metal mesh electrodes and multi-layer wiring lines in a flexible touch screen panel eliminate insulating layers, reducing cracking risks during bending.
Centralized correction circuitry reduces source driver area by replacing distributed NAND gates with shared switches and a charge sharing line.
A pressing pad with harder corner portions applies targeted pressure to attach films onto multi-curved cover glass surfaces.
A nonvolatile counter tracks secret data usage to trigger selective memory scrubbing upon system reboot.
An offset grid mechanism maps touch inputs to distinct image areas, improving selection precision on small displays.
A hydrogen enriched fuel system blends gas to optimize engine performance.
A navigation warning system identifies approved flight boundaries and alerts pilots when aircraft approach these limits.
History information tracks data item ancestry to resolve synchronization conflicts without relying on unreliable timestamps.
A knowledge graph parser structures raw log entries into entity trees, reducing manual effort in security monitoring.
A swept frequency microwave system determines object dimensions using time domain signal analysis.
A mobile information handling system predicts removal from a carrying bag using sensor readings to transition from standby power.