An optical element filters light through the display to suppress wiring-layer diffraction, while image correction restores sharper, brighter photos.
A sealed liquid-metal mesh contacts the GPU die directly to prevent leakage under vibration while reducing thermal resistance and extra TIM layers.
A denser edge mesh restrains liquid metal leakage under vibration, while a looser center preserves impregnation and die heat transfer.
A sealed film-covered mesh retains liquid metal at the GPU die, preventing leakage under vibration while lowering thermal resistance.
Integrated sensing and clock control detect SoC voltage, current, or activity spikes and adjust frequency to curb transient power noise.
Air and liquid channels in one heat sink sustain electronics cooling during single-source failure while improving 24×7 energy use.
Avoiding holes, limiting columns, and elastic clamping secure the fan connector without tools while lowering insertion force and easing maintenance.
Multiple inlet passageways and a medial plate drive lateral coolant flow and turbulence for quieter, more uniform high-heat CPU cooling.
Priority-based V2X message filtering cuts processing load by preserving critical safety data and pausing lower-priority applications.
By integrating the photosensitive unit and wiring on the collimator, this case cuts module thickness and improves fingerprint signal strength.
A thin light-blocking barrier stops imaging-device light leakage at the OLED active area while preserving narrow borders and optical access.
Offset electrodes and a dielectric barrier create ionic wind cooling for thin laptops, cutting noise, dust buildup, and fan space.
Voltage-controlled electrostatic friction locks planar components at a detected hinge angle while reducing contact area versus magnetic clasps.
A curved battery, flexible PCB, and transparent potting let a smart ring stay comfortable on the finger while improving motion and temperature sensing.
A patterned protective layer shields exposed organic insulation in electronic panels, improving chemical resistance and process reliability.
A configurable back connector with alignment members lets mobile devices swap accessories quickly while reducing interface count, space use, and switching effort.
IED signal analysis identifies power disturbances and equipment restarts, enabling control actions that reduce stress and extend service life.
A bidirectional converter balances charging and discharge paths to stabilize battery voltage and maintain downstream power when demand exceeds supply.
A secondary control voltage keeps the switch on during MCU firmware updates, preventing power interruption to the connected system.
Preemptive port power reduction during no-idling restart protects the fuse while keeping smartphone USB charging and communication active.
Thinner annular weld channels let laser energy penetrate faster, cutting welding time and energy use while preserving cooling chamber performance.
Dual-axis magnetic sensing tracks flexible display state changes while correcting external field noise for more reliable hinge position detection.
A removable dock locks an electronic key in place, then enables controlled removal for vehicle access, charging, and key updates.
An angled reinforcing piece spans the antenna partition slot to cut stress concentration, reduce deformation, and improve housing bonding strength.
Dynamic tolerance curves from distributed metering points improve detection of non-periodic and long-duration power quality events.
A backside torsion loading mechanism helps retain large IC packages without tilting, while supporting automated insertion and thermal loading on compact PCBs.
A metal-layer notch and stress control member protect the bent pad region of a foldable display from impact damage and disconnection.
Radar reflective and absorptive layers help a soft collision partner match real vehicle signatures while limiting impact damage in GST testing.
A curved battery, flexible PCB, and transparent potting make a smart ring comfortable to wear while improving motion and health monitoring.
Segmented adhesive layers stabilize the non-display bend area, reducing stress concentration, wiring cracks, and asynchronous side movement.
Region-specific semiconductor patterning and post-insulator heat treatment improve TFT stability and OLED reliability in bending regions.
A mesh impregnated with liquid metal and fixed in a recessed copper plate limits leakage under shock while preserving GPU heat transfer.
Historical and environmental data predict when authentication is likely, so hardware wakes only when needed to cut power use without slowing access.
A recessed copper plate and fixed mesh retain liquid metal at the GPU die to preserve heat transfer and prevent leakage under vibration.
A switchable feedback path moves regulation to the USB-C output terminal to offset cable and switch voltage drop at high current.
A curved battery, semi-flexible PCB, and transparent potting help a smart ring stay comfortable for long wear while improving monitoring reliability.
Offset fins in a liquid cold plate target downstream heat buildup, lowering thermal resistance and improving chip temperature uniformity.
External pressure from a structural battery housing preserves Li-metal cycle life while stiffening the chassis of portable electronics.
A curved smart ring uses a flexible PCB and photovoltaic charging to improve monitoring accuracy without adding bulk or interrupting wear.
Angled, overlapping heat pipes and stacked fin groups spread uneven thermal loads more uniformly across multiple heat sources.
Scenario recognition adjusts processor power and sensor settings to balance autonomous driving reliability with lower energy and bandwidth use.
A two-direction lever and spring-held latch create finger clearance while preventing battery pack slide-out on inclined electronic devices.
Delaying shutdown lets a digital pathology scanner park slides and conveyors in known positions before power loss, avoiding manual restart.
A locally thinned glass recess with rough texture and polymer filling lets foldable displays bend at the hinge while limiting reflections and image artifacts.
Intersecting broken dummy wire segments cut coupling around display antennas, improving 5G radiation efficiency while keeping the mesh less visible.
Longer main support columns and a concave second substrate keep frame-area cell thickness uniform and reduce yellow display.
Passivation-layer openings create light paths in a display sensor area, enabling sensor integration without sacrificing resolution or durability.
A recessed side-surface pressure sensor in the lower bracket preserves display area while enabling compact button-free input.
Sensors detect opening intent and reduce hinge or magnetic resistance, making clamshell devices easier to open without losing closed-state protection.
State-based power policies let one wearable wirelessly charge another, extending runtime without manual docking or interrupting XR use.