See how modular data pods combine segmented free-cooling with local mechanical trim to reduce e
See how a single articulating POS display with pivoting arm joints replaces separate merchant a
See how a collapsible stand uses segmented contact points and elevated arms to enable air circu
See how a thermoelectric cooler with thermal space transformer achieves sub-ambient processor t
See how an external thermoelectric cooler with separated cold and hot chambers delivers cooler
See how a narrowed elastic cuff integrates cleaning and protection, removing fingerprints durin
See how a heat pipe and thermoelectric cooler enable SSDs to operate at 70°C+ ambient temperatu
See how dual detectors distinguish seated from exiting occupants to maintain side support stabi
See how a modular self-feeding device uses sensors and a robotic arm to identify food types, tr
See how a nested friction hinge with telescoping linkage enables 180-degree kickstand rotation
See how a bristled brush device with an internal washing cavity isolates shoes and laces from t
A slidable elastic strip built into the housing adds support and protection without extra bulk, RF interference, or a bulky outer frame.
Locked product bays, customer verification, and item sensing enable unattended retail with broader product variety and lower theft.
A layered foldable stand uses a flexible hinge and angle-setting tongue to raise laptop or tablet screens without adding bulk or weight.
A flow restrictor and header-free vertical condenser keep a thin liquid film for efficient server-rack electronics cooling.
Curved, thicker-edge cover glass uses refraction to remove visible bezels, expand display area, and limit image distortion.
Multiple utensil pathways and adaptive feed-arm positioning make portable self-feeding easier for users with limited dexterity.
A parallel thermoelectric element and microchannel heat sink cut heat resistance, improve cooling, and recover waste heat as electric power.
Tracks fridge temperature recovery time from door-close logs to deliver maintenance alerts and performance trends with low data load.
A rotatable tablet stand with built-in card reading and hub connections replaces bulky POS components while simplifying setup and wiring.
An under-cabinet docking mount charges and connects a touchscreen controller while freeing counter space and simplifying cable routing.
Dew point forecasting shifts liquid-cooled computer tests to low-condensation time slots, preventing wet circuitry and test failures.
Pre-programmed ambiance presets let users adjust heat, jets, lighting, and audio together, cutting setup time while preserving customization.
Electrical current moves latent-heat phase domains through a solid-state material, enabling efficient microscale heat pumping without liquid-gas cycles.
Active heating and cooling keep a vehicle communication card holder within range to prevent card deformation from -20°C to +70°C.
A rotatable tablet stand integrates card reading and peripheral hub connections to simplify POS setup while reducing bulk, cost, and cabling.
By mounting the cooler controller inside the main enclosure with quick connectors, this case cuts footprint and simplifies secure installation.
An offset pivot lets a portable device support rotate 90° between portrait and landscape while keeping the viewing angle and device center stable.
A gateway translates diverse supermarket refrigeration controls into one format, enabling faster remote monitoring and energy management across sites.
Rotating a button actuates springs and taper locks so a mobile grip expands or collapses easily while staying comfortable and securely attached.
Mirrored sampling frequencies isolate furniture capacitive sensors, reducing cross-talk and false readings during continuous monitoring.
A layered laundry UI links fabric type and treatment choices to presets, expanding cycle variety without making selection harder.
A TEC pre-cools inlet air before it reaches heat-sensitive components, maintaining effective chassis cooling when intake air is already hot.
Segmented curved surfaces and molten-salt ion exchange help glass housings disperse stress and resist cracking after minor impacts.
A nested pivot-and-slide support uses friction and an elastic member to hold tablet viewing angles while reducing hand fatigue.
A bendable cover and magnetic engagement structure let an electronic device switch between stand and typing cradle angles with secure positioning.
A sealed docking housing protects a portable audio player from water and dust while improving connection stability and sound quality in vehicles.
Inclined corner and surrounding ribs stiffen large display backplates, improving curvature stability and reducing corner deformation at low cost.
A hinged layered stand raises laptops or tablets to a stable oblique angle while staying thin, lightweight, and easy to carry.
A pivoting POS display lets one screen face both merchant and customer, simplifying interface architecture and improving transaction ergonomics.
A tablet-based POS stand integrates card reading and hub-connected peripherals to cut bulk, wiring, and setup cost while keeping full transaction functions.
A positioning-pin inlet enables resin overmolding of a C-shaped frame on a composite base plate, adding stiffness without losing slimness.
Parallel conduits and blocking sections use gravity to distribute liquid refrigerant evenly across stacked heat receivers with less width and complexity.
Internal connectors and cable routing let a modular terminal support column stay easy to clean and resist bacterial buildup in food environments.
An articulated cover joint keeps a payment terminal housing closed during falls while reducing screws, thickness, and disassembly time.
Arc guide rails aligned with the display’s gravity center enable smooth electric forward and backward turning with stable speed and lower friction.
A headerless condenser and flow-restricted evaporator cut thermal resistance and flooding in space-limited server rack electronics cooling.
Predictive humidity and temperature feedback turns vehicle defrost on and off only when condensation forms or clears, cutting energy use and wear.
A seat controller locks swivel rotation when the vehicle moves and enables active suspension only in the driving position.
Perforated cooling panels attenuate fan-driven acoustic pressure while transferring heat, enabling stronger airflow without extra silencers.
A flexible display bends around the aerosol generator to save mounting space, limit droplet contamination, and support temperature-controlled heating.
Signal line reassignment and output voltage adjustment enable accurate charging-role reversal while preventing power conflicts between dual-role devices.
Magnetic reaction members hold a rollable display housing in slide-in and slide-out states, reducing gear play and impact-related damage.
A thin insulation layer enables capacitive coupling in mobile terminals, stabilizing grounding contact and reducing RSE without conductive coatings.
A concealed vent routed through the button structure improves airflow and heat dissipation while blocking moisture and preserving device aesthetics.
Hidden ferromagnetic locks and powered release secure a docked computing device against cutting or picking while enabling GUI unlocking.
Flexible PCB ring architecture improves comfort and body contact for accurate biometric sensing, gesture recognition, and wireless wearables.
Remote alerts, sensing, and control help users recognize breaker trips quickly and manage faults without panel access.
Groove-and-protrusion guide members stabilize a rollable display during bending, reducing vibration, stress, and durability loss.
Mounted display ID selects stored torque and speed settings, enabling smooth rotation across different sizes, weights, and centers of gravity.
Waste heat from power electronics is conducted through a mounting plate and heat sink into the suction tube refrigerant, improving cooling and reliability.
Dielectric liquid circulation cools submerged server racks at high heat density while cutting cooling energy and enabling heat rejection at elevated coolant temperature.
A one-piece draw bar and hook handle simplifies extraction, saves space, and avoids collision damage during device removal.
Sliding TIM pads and pedestal heatsinks cool dense DIMM arrays by 5°C to 15°C without higher airflow or liquid cooling.
Engagement-based structural columns let power supply sidewalls detach for easier maintenance, material variation, and component protection.
Sliding TIM pads and movable heatsink pedestals cool dense in-line memory modules 5°C to 15°C without higher airflow or liquid cooling.
Coordinated sliding support members speed flexible screen unfolding and storage while reducing tearing and wrinkling during rapid stretching.
Overlapping data and touch signal lines with angled pad layouts shrinks display panel peripheral wiring for narrower bezels.
Integrated current sensors and wireless links let circuit breakers detect faults, transmit electrical data, and support remote load management.
A pogo pin coupling lets a table-mounted display switch between mains and battery power while hiding cables and limiting battery heat transfer.
A sleep-wake authentication scheme cuts marine vessel power drain by waking access control only when a key input is needed.
Multiple input modules and jumper-linked outputs let one power distribution platform accept varied power types and scale device connections.
A reciprocating and rotating bending mechanism folds connection circuit boards to save internal space in compact display-based electronic devices.
A bent substrate layout protects the driver circuit and strengthens the FPC connection in flexible display panels.
Force and distance tracking during battery module pressing reveals gap and wetting quality, helping prevent poor heat transfer to the housing base.
A strip magnetic interface with side support portions keeps an auxiliary device support stable while allowing fast attachment and removal.
A recessed plate channel replaces bent copper tubes to preserve cooling efficiency while freeing internal space in electronic devices.
A widening confluence structure evens coolant flow across finned channels, improving chip temperature uniformity in liquid-cooled electronics.
Flow guide pillars and plates redistribute coolant at slot junctions to equalize flow and temperature and reduce bubbles in supercomputing cooling plates.
A flow guide and finned sub-channels spread coolant evenly across server chips, improving temperature uniformity and heat dissipation.
A conductive casing and lid tied to a larger conductor contain storage-medium noise leakage and preserve communication speed.
A low-conductivity layer between the heat spreader and glass cover cuts surface heat, enabling thinner electronic housings below 45°C.
A connector metal mask switches between floating sensing and grounding to save electrode space, protect antenna gain, and support SAR power control.
Internal CPU temperature sensing and load-pattern comparison detect overheating and cooling failures without extra sensor ICs.
A conductive lid and casing tied to a larger ground conductor suppress noise leakage at the media insertion opening and protect communication speed.
A shaped thermal conductor surrounds PCB electrical components to improve heat transfer in compact electronics and maintain stable operation.
Magnetic side coupling and planar-adjustable frame mounts keep adjacent display modules thin and tightly aligned despite heat or external force.
A two-part partition blocks gaps near the housing to stop broken semiconductor pieces from reaching adjacent components and disrupting operation.
An EBG wire layout uses a power conductor and vias to filter RF coupling on adjacent DC lines, cutting crosstalk without larger boards.
Elastic slot terminals, a heat radiator, and edge fixing correct chip warping while improving thermal contact and connection reliability.
An elastic foam and woven-fabric connector expands contact area between display and bracket to lower resistance and limit oxidation.
Laterally extended insulating-layer holes let connection electrodes wrap micro-LED sides, preventing disconnection and lighting defects in high-resolution panels.
A flexible PCB ring distributes sensors, LEDs, and photovoltaic charging to keep wearable monitoring accurate without bulky, intrusive form factors.
A sealed shielding cavity uses phase change and capillary return flow to spread heat from electronic components and improve cooling area.
A polar dielectric emissivity layer boosts thermal radiation from heat sinks, improving cooling in low-ventilation electronics without fans.
Magnetic front and rear access lets circuit cases detach from tiled display cabinets more easily, simplifying maintenance and repair.
Predictive cooling loops adjust fluid flow to ECU heat load, preventing autonomous vehicle computing overheating and failure.
A middle layer shields display pad sides and keeps encapsulation residue off pad surfaces for reliable inspection electrode connection.
Integrated PLC power control uses IEC 61850 device discovery and fast event handling to unify process and electrical control.
Curved friction members and elastic shafts help a foldable hinge hold set angles, resist slippage, and stay thin without structural damage.
A rotatable elastic member controls tensile stress and slip in a rollable display, protecting cover glass, flexible films, and PCB.
Swing arms with staggered push parts move the support member without springs, cutting foldable hinge thickness and complexity.
An inner roller reverse-rotates through an intermediate gear to limit cable motion and reduce EMI during display winding and unwinding.
A buffered rail and gear assembly moves a second housing smoothly while absorbing gear impact to improve foldable device durability.
A shifting rotation center and counterbalancing springs let large displays rotate smoothly with less cable interference and lower user effort.
Dynamic CPU-GPU power allocation uses acoustic and power feedback to reassign unused power and improve laptop performance.
A larger PCB through hole around the locking component enables three-axis alignment, improving connector contact and avoiding assembly damage.
Pullable supports and a built-in storage chamber protect detachable screens from shaking damage while fitting different laptop sizes.
A shaft-and-guide bending assembly lets a display switch smoothly between flat and curved shapes while preserving frame integrity.
A housing-mounted sweeper hides the foldable hinge in the closed state while avoiding interference with hinge motion and device thickness.
A BMC checks PSU fan airflow orientation so one server chassis can support cold- or hot-aisle power supply placement without separate builds.
A rotatable diverter manifold lets server cooling pipes be reoriented to shorten routing, reduce bending, and improve coolant flow.
A slider-cam and spring bracket create nonlinear hinge load to hold foldable enclosures firmly open and closed with fewer parts.
Elastic buffer pads and connectors absorb side impacts while keeping corners exposed for existing shock protection.
Sliding shielding members cover the foldable hinge shaft while staying easy to remove, reducing maintenance complexity and dust intrusion.
Movable attachment bodies and retention members let laptop accessories be placed securely in ergonomic positions without sacrificing display space.
A support, roller, links, and driver guide smooth rolling and unrolling to preserve display function, portability, and durability.
A biaxial hinge and controlled 1.5-5.0 mm fold radius reduce folding-area deformation and structural stress in flexible displays.
Caps excess processor frequency in shared workloads to cut unnecessary heat and ease data center cooling without hurting workload timing.
A snorkel pathway lets vapor exit from a submerged heat exchanger port, supporting two-phase dielectric cooling without water corrosion or residue.
Adaptive throttling uses multi-sensor feedback to cool semiconductor circuits, isolate abnormal sensors, and avoid unnecessary shutdowns.
A unified neural architecture search framework combines differentiable search and reinforcement learning to cut search cost and avoid overfitting.
A swing-arm hinge expands bending space during folding to prevent flexible display squeezing while enabling stable, gap-free closure.
Power regulation and timed low-power dwell obscure cryptographic power signatures in replaceable print components while cutting energy use.
A torsion spring and swinging member create compact unfolding and closing force for thinner foldable phones without losing hand feel.
Embedded sliding hinges let LED screen modules fold inward for easier transport, faster setup, and better protection from handling damage.
A simplified rotating shaft assembly synchronizes bending in foldable housings and screens to reduce gaps, displacement, and tolerance buildup.
A management controller detects LAAC failures and triggers workload migration or redundancy to keep GPU servers running.
Virtual peripherals and scheduled low-voltage links let control modules keep intrinsic safety while enabling fast data transfer and easier hardware changes.
Remote and local die telemetry enables virtual temperature sensing in stacked chips, improving thermal control with fewer sensors.
A thermoelectric cooler moves heat from a foldable device processor through the hinge path to lower surface temperature and protect components.
Gear-driven slider racks and arm plates let a flexible display hold uniform curvature and switch quickly between flat and curved shapes.
Coordinated actor and order robots use server-based path planning and obstacle avoidance to speed warehouse fulfillment with less interference.
Magnetic latch assemblies help large liquid-cooling couplings connect under pressure by reducing the manual force needed for engagement.
Constant-force springs and dual support surfaces keep a retractable flexible screen taut, reducing crease, crack, and fatigue risk.
Threaded meshing gears raise one-way rotational resistance, keeping a slim display module stable in vertical and horizontal modes.
Segmented window portions and a guiding bracket let flexible displays fold or roll while preserving window integrity and usable display area.
Magnetic locking between sliding and rotating hinge parts enables compact folding of flexible displays while avoiding complex mechanical locks.
By tracking power-system resonance, the DVFS controller adjusts voltage and frequency to limit droop, cut power use, and keep operation stable.
Non-circular guide grooves and synchronized support rotation reduce screen stress, pulling, and crease formation during inward folding.
A link-and-bracket bending module lets a display switch between flat and curved states while reducing irregular curvature, friction noise, and wear.
A recessed heat pipe window couples directly to the cold plate to expand contact area, cut thermal resistance, and reduce dryout risk.
A dual-locking-hole hinge lets a clevis pin hold folded and unfolded states with fewer parts, lowering cost and reducing screen stress.
An integrated ball-bearing accessory lets a mobile device spin without much added bulk, while extendable arms add grip, stand, and cord functions.
A slider-wing linkage with sensor feedback adjusts flexible display curvature for controlled bending and unfolding without losing structural support.
Multiple magnets on a display stand improve attachment strength while allowing smooth portrait-landscape rotation with electrical connectivity.
Current sensing guides clock frequency changes in an SoC to cut transition latency, reduce IR drops, and avoid performance interruptions.
A stop block in the swing arm sliding path limits overfolding and improves unfolded angle precision in foldable electronic devices.
Varying adhesive thickness lets wing and sub-wing plates overlap during bending, concealing bonding layers while preserving a clean display appearance.
A fused XNOR and population-count instruction streamlines neural-network computation with multi-bit inputs and one-bit weights.
One mobile application links to cloud-hosted programs and shared data, reducing separate installations and authentication effort.
Metal support columns and spaced openings distribute bending stress, preserving rigidity and reducing edge failure in flexible display modules.
Structured flow paths self-regulate vapor bubbles and fluid circulation, improving heat transfer while minimizing evaporation in immersion cooling.
Sensing lines measure substrate deformation while actuators correct shape changes, preserving image quality and structural stability in flexible displays.
A carry-save feedback path uses one shifter layer for significand carry and sum bits, helping maintain floating-point data flow during exception handling.
A curling-shaped support contacts the bent panel’s inner curve to limit deformation and reinforce narrow-bezel displays against external force.
Dynamic dispatch routes 16-bit and 32-bit floating-point work across specialized pipelines to balance throughput and dynamic power consumption.