A recessed back-face docking cavity uses magnetic and electrical contacts to hold multiple flush accessories without enlarging device edges.
Microsphere-based scattering layers hide photovoltaic cells or sensors from one side while transmitting usable electromagnetic energy from the other.
Electromagnetic bending with a ferromagnetic layer forms curved display areas while reducing panel damage during flexible display manufacturing.
Optical waveguides and power delivery substrates replace long conductive traces, scaling die-to-memory bandwidth without parasitic impedance.
Dummy patterns between bend-area wirings help flexible displays resist oxidation and stress while enabling a narrower inactive area.
Guide film openings support bent display sections during lamination, improving window bonding completeness and preventing damage.
Transparent sphere layers with tunable refractive index conceal sensors or PV cells while selectively scattering light and passing usable energy.
Distributed IEDs use dynamic tolerance curves to detect power disturbances, quantify restart risk, and trigger actions that reduce equipment stress.
Variable-potential scan driving enables batch output across multiple scan lines to shorten data writing time, cut flicker, and lower power use.
A tank-and-liner layout creates sealed flow paths and curved down-flow channels to cut air entrainment and improve dielectric liquid cooling.
A conductive layer linked to the circuit board and receiving member creates dual static discharge paths that reduce display damage.
Vibration-driven fluid cooling cells spread heat across a phone housing, reducing hot spots while sustaining thermal control at higher power.
An accelerometer rotates companion module menus to match load center position, preventing inverted screens and ambiguous slot identification.
A regulating plate redirects airflow into the capacitor-substrate gap to cool semiconductor memories hidden beneath the capacitor.
Glass-based enclosure composites use localized nanoparticles to add impact resistance and color while preserving wireless charging and signal compatibility.
A monolithic cooling housing with integrated fluid channels and separate end caps cuts seals, assembly steps, and heat sink cost.
A single UI control routes inputs between primary and secondary processors, keeping mission-critical radio functions prioritized with clear user feedback.
Parallel k-nearest point patches in spherical coordinates cut LiDAR normal estimation cost for low-power autonomous platforms without GPUs.
Segmented cooling chambers with independent pumps improve electronic heat dissipation while balancing device complexity and production cost.
Edge heat pipes and a supported planar vapor chamber improve cooling in ultra-thin electronics while limiting buckling and pressure loss.
Inactive-area loading structures add capacitance to short-row gate lines, reducing luminance variation in non-rectangular displays.
Positioning signal lines in the neutral plane of a bent inactive region cuts bending stress and preserves conductivity at small bend radii.
Asymmetric USB Type-C and Type-A connector depths improve cable alignment, prevent wrong insertion, and stabilize printer connections.
Distributed vehicle sensors and controllers capture occupant biometrics in real time, enabling synchronized stimulus-response analysis across fleets.
A heat sink coupled with resistive heating or cooling keeps PCB components within their operating range in harsh environments.
A modular coupling links coolant passages and signal interfaces to expand fluid cooling layouts, simplify service, and support larger radiators.
A polar-array wire harness consolidates PC power leads to cut cable bulk, improve airflow, and simplify internal power routing.
A confined phase-change metal path improves heat transfer while preventing leakage and short-circuit risk during movement or idle cooling.
An adjustable support with integrated facial lighting keeps laptops, tablets, and phones aligned, well lit, and ergonomic during video sessions.
A remote press button and multi-axis linkage let users rotate an obstructed PCIe connector latch and remove expansion cards more easily.
An edge-covering resin layer protects ultra-thin foldable display glass from cracking, dust scattering, and light leakage.
A dual primary loop sends colder, faster flow through chip cold plates to overcome immersion-cooling impedance in dense board spaces.
A peripheral thickening pattern preserves photoresist on inclined regions, preventing organic leakage, touch-line defects, and layer delamination.
A discharger placed between rolled panel sections releases friction-generated charge and helps prevent electrostatic damage.
A protruding upper surround redirects diagonal head impact away from the cover glass edge, reducing Hertz fracture without widening the bezel.
A nested surface-mounted heat sink cools high-density POL modules through PGND-linked conduction and airflow without increasing PCB footprint.
A sliding frame and moving battery keep an extended flexible display flat, balanced, and better protected from foreign material ingress.
Grooved, variable-thickness substrate regions ease edge bending stress, protecting TFT and LED layers while enabling a zero-bezel display.
Liquid adhesive with location-specific thickness improves battery bonding on curved edges, reducing deformation risk and tape shaping cost.
Layered upper and lower signal lines cut resistance and scan delay in large high-resolution displays while supporting a narrow bezel.
A pin-and-hook holding frame secures heatsinks with fewer steps, avoiding fastener or frame damage while allowing repeated removal and reuse.
A recessed back-surface cavity enables secure multi-accessory docking with power and data links while keeping mobile devices compact.
Parallel basic circuits and a main series circuit cut neural network computation load and power through floating-point and fixed-point conversion.
A recessed back-face docking cavity lets mobile devices attach multiple flush accessories securely without bulky edge openings.
Mixed floating-point and fixed-point processing cuts neural network compute load, power use, and data transfer across chip circuits.
Balanced die and power module placement with stiffening members limits substrate warpage in dense electronic assemblies.
Alternating inorganic and organic encapsulation layers improve moisture blocking while limiting stress cracks in bent display structures.
Segmented conductive layers and an inorganic protective layer relieve bending stress to prevent cracks and wiring disconnection.
A pivot-coupled support redistributes anchor-spring loads to keep heat sink contact pressure uniform despite spring and anchor variation.
Curved lead routing with a flexible substrate portion shrinks the non-display region while easing stress and precision limits in display panels.
A vision chip independently processes under-display camera data and drives on-screen state symbols, preserving bezel space while showing camera activity.
Selective sub-multiplier activation preserves full precision while reducing energy use in deep-learning accelerator MAC units.
Auxiliary shroud intake vents supplement front airflow, helping compact electronic-device chassis cool components without higher fan noise.
Touch-area detection runs alongside LCD initialization to reduce fingerprint unlocking delay and unnecessary backlight illumination.
An LSB handler and parallel near/far paths bypass reductive-OR delay, accelerating subnormal-aware floating-point addition.
This finite-state adder addresses propagation delay and complexity growth using iterative logic, registers, and linear circuit scaling.
A drainage section guides casting liquid parallel to battery-chamber walls, reducing sand holes and improving middle-frame strength.
A stepped roller and segmented supports create clearance beneath a flexible panel, reducing set-cover interference during sliding.
A narrower bent panel section faces the rear surface for circuit-board connection, helping fit components within foldable displays.
Targeted excitation of region-specific sensing lines reduces power and reading time while supporting efficient touch input detection.
Localized shield-can openings route component heat into a graphite diffusion layer, reducing thickness while maintaining EMI protection.
A detachable sidewall shields connector ports during shocks and vibrations, then opens access for keyboards and other peripherals.
A phase-change material in the liquid-cooling plate absorbs latent heat and spreads it laterally, addressing localized hot spots without immersion cooling.
Segmented housing spaces separate intake and exhaust airflow, while a fan, heat sink, and cushion rubbers limit leakage during cooling.
A locally variable-thickness support stabilizes a sliding flexible display while preserving battery mounting space during movement.
Binary shifters and adder trees replace digital multipliers in FP4 neural-network training, reducing energy use and chip area with minimal accuracy loss.
Staged attribute comparisons narrow candidate records before full matching, reducing processing time and computational cost while preserving criteria flexibility.
Grooves in the support plate reduce display assembly weight while maintaining impact resistance for a flexible screen.
A mobile device checks local storage first, then downloads missing files from a server before sending them to another device.
Host settings guide low-voltage selection during DVFSC operations, helping memory devices reduce power without degrading operating reliability.
Fixed-angle tablet keyboard support is replaced by rotatable joints and a sliding fastening member for flexible support angles.
Time- and location-based modes reduce tedious input through touchscreen overrides, helping mobile devices switch contexts faster and conserve battery power.
An electronic device shifts inactive app screens into low-power mode while preserving active content as a flexible display folds or moves.
Resin-filled grooves in pattern glass use inclined surfaces to reduce folding stress and make material boundaries less visible.
The half-ring shaft uses local thickness variation plus groove-and-protrusion fastening to limit winding stress and reduce display defects.
Battery-aware scheduling checks update resource needs and estimated duration before software or firmware updates, deferring them when runtime is insufficient.
Static GPU scaling tables can waste power across workloads; toggle-rate feedback selects voltage and frequency settings for better efficiency.
An electronically controlled lens cover blocks the telemedicine camera’s field of view when session or authorization conditions require local privacy.
Side-by-side heat pipes inside the cold plate improve heat conduction to fins and coolant, helping manage rising CPU heat.
During contactless charging, a phase-change fluid moves through wick structures to dissipate heat and protect the mobile device from thermal damage.
Grooves filled with metal fiber disperse folding stress in a flexible display back plate, reducing thickness while improving reliability and appearance.
See how PRE-SOF timing indicators synchronize dynamic FPS with DRV clock and voltage scaling to prevent image drops and hardware hangs.
An onboard CPLD and two buck chips lower DC voltages for the control device and power module, reducing transmission and conversion power consumption.
An aligned test tray and angle sensor guide automated memory module insertion, reducing dislocation and damage during socket testing.
Sliding inner and outer housings adjust outlet overlap to match flexible display widths, reducing cold-air waste and overheating.
Microchannel blocks and distributed conduits spread coolant across multiple chipsets, improving heat transfer at lower volumetric flow rates.
A single fixed dataflow limits diverse neural layers; layer-specific pipelined cores improve throughput and reduce latency.
Actuators replace cam structures in a foldable display hinge, enabling smooth folding and stable holding at varied angles while limiting wear and dust.
A compressible elastic member supplements the motor during display sliding, lowering peak force and absorbing impacts in the housing.
Multiple temperature sensors feed one closed loop that selects the lowest-margin reading to regulate air-mover speed and reduce computational complexity.
By covering the lens image circle with the sensor, the assembly enables flexible aspect-ratio cropping without rotating the device.
Quick-connect thermal connectors separate replaceable heat-transfer devices from the coolant loop, enabling hot-swappable components without system shutdown.
Harvested PMU voltage keeps GPIOs high-impedance during retention modes, reducing power use while blocking unintended signal propagation.
Uneven airflow across server chips causes temperature imbalance, dust buildup, and noise; inclined heat-sink guides address all three.
Thermally isolated conductive members route PCB and transceiver heat to one liquid cooler, protecting sensitive components in a single PCIe slot.
Steel support plates resist ultrasonic transmission; alternating carbon-fiber layers improve flexible-screen fingerprint recognition.
An integrated FPC connects the force sensor and controller while detecting frame-gap capacitance, reducing parts, cost, and display thickness.
A closed-loop fluid circuit moves heat from the XR headset front to the rear harness, easing facial heat and balancing weight.
Parallel adders process operand bit sections, then shift intermediate results into position to improve neural-network addition throughput.
Partitioning layers across heterogeneous processors lets compression and quantization fit embedded hardware while balancing accuracy, latency, and power.
An encrypted user certificate enables secure remote access to storage media through server-based verification.
Segmented flexible display modules on transparent films resolve weight and yield contradictions, enabling 100-inch rollable displays.
Machine learning trains a thermal reduced order model to cut simulation time and computational resources for dynamic thermal mitigation testing.
Segmenting session data across distinct storage areas reduces retrieval latency and enables near real-time quality of service measurements.
Enhanced heat transfer assemblies use surface fins and microslot matrices to increase effective cooling surface area.
Grooves in the fixed member constrain liquid metal volume, eliminating paste application and reducing production time.
Intermediary server validates digital signatures and authentication tokens to prevent spoofed notifications from reaching users.
A detachable finger cuff integrates photoplethysmography and micro dynamic light scattering sensors to measure multiple vital signs.
Segmented elastic corner shields absorb impact forces while preserving the original sleek design of portable mobile devices.
A stowable docking module uses a translation housing and pivotable station to secure electronic devices.
A transistor string merges storage and computation by encoding data in threshold voltage and resistance to generate a product current.
A social networking system generates connection suggestions for user-defined groups using similarity analysis of existing members.
A pointer-based recycle bin copies data objects to an intermediary repository upon blocking events.
A display control unit moves a background object to indicate device status changes through visual cues.
Dynamic actuation adjusts flexible display shape in response to user inputs, resolving static control limitations.
A graphics subsystem generates connection state signatures to authenticate content path integrity before display output delivery.
Segmented MAC circuit groups with dummy calculations prevent sharp current consumption variations during neural network processing.
Processor segments equipment and travel data to generate customized strategies that reduce operational costs and carbon output.
A geospatial unique part identifier encodes two-dimensional coordinates into linear strip-based indexes.
Localizing data storage near composite hashes eliminates multiple index seeks, resolving the trade-off between distributed integrity and restore performance.
Computer design models bridge business and technology gaps by automating executable program generation from high-level specifications.
Condenser positioned above the dielectric liquid surface floats leaked fluid away from submerged power distribution units, preventing electrical arching.
A user interface rotates independently of device orientation using accelerometer or clip-based inputs.
Automated messaging system relays device identification to administrators, eliminating manual password entry and reducing administrative time burden.
A control circuit manages power delivery to multiple peripheral devices through a single pin, reducing design costs and heat generation.
A vibration sensor activates a microcontroller to pre-configure a data transmission module, reducing power supply volume while maintaining fast response speed.
A display chip verifies interface compatibility before switching between Always On Display and non-AOD states.
A program verification system detects execution functions and attack defenses to sign safe software.
A wireless docking center uses proxy links to establish single hop communication between dockee and peripheral devices.
A secure USB flash drive integrates digital rights management for encrypted media storage.
An active heat transfer system moves thermal energy from a portable computing device to a docking unit via a thermoelectric cooler and heat pipe.
A delegation server verifies user identity to deliver authenticated widgets, enabling secure social graph access without third-party integration.
Bent flexible substrate connects display panel and driving circuit board to minimize assembly tension.
A semantic document analysis framework segments content and generates representations to identify meaningful updates.
A biometric authentication system uses mobile push notifications to verify user identity through fingerprint validation.
Central authentication server consolidates user credentials to enable single sign-on across multiple internet services.
Throttling mechanisms adjust flow resistance to match cooling needs, reducing central fan power consumption in data centers.
A mobile authentication module captures voice streams or images to verify user identity without keyboard input.
One-time programmable memory stores secure data to authenticate external software, preventing unauthorized execution and tampering during the boot process.
Hardware forwarding elements and dynamic load balancing resolve CPU bottlenecks in XML routing.