A grooved heat sink and compressible filler confine thermal interface material to stop leakage and protect nearby components.
Random address sampling with active-count comparison improves target refresh accuracy and helps mitigate row hammering in memory.
Conduits are routed through a carriage bracket and shield to preserve PC chassis layout while maintaining liquid cooling and leak protection.
Oxide-semiconductor TFTs hold pixel voltage longer, letting touch-panel displays cut write frequency for still images and reduce power use.
Processors detect context and move a sliding flexible display to fit content size, expanding screen area without a bulkier closed housing.
Shared multiplication, addition, and comparison units let one AI circuit switch between integer and floating-point formats to balance speed, precision, and area.
Projecting portions and a grip portion secure a removable numeric keypad without long insertion pins, improving stability and saving internal space.
A memory controller detects sequential command patterns and lowers core frequency and voltage to cut flash power use and temperature.
An erasable writing surface, position sensing, and transmission control keep handwritten data linked, reusable, and protected from loss.
A motor-driven sliding frame and gear cover extend a flexible display while keeping it flat, durable, and protected from contaminants.
A variable-stiffness adjustment member lets a flexible display curl easily yet stay flat without hinges, motors, or added thickness.
Uniform vertical and horizontal slits in a foldable display reinforcing plate preserve stiffness while enabling accurate electromagnetic pen detection.
Coupling capacitance from a folding event lets a touch capacitance sensor detect screen state without extra Hall or infrared sensors, saving cost and space.
A height-actuated lock combines sliding and rotation to avoid body collisions, create rotation space, and support more usable device positions.
Recess patterns and a heat-dissipation coating expand support-member surface area to cool slim electronic devices without added bulk.
A settled cover layer in an etched support-plate groove helps foldable displays resist impact, reduce wrinkles, and preserve surface quality.
While biometric input is held, the interface surfaces selectable menus so authentication and function execution happen in one continuous interaction.
A reference table links SSD logical addresses to physical slots so only the needed fan responds, cutting cooling power use and noise.
Selective electrode disconnection areas and line widths reduce OLED color-area interference while preserving integrated touch sensing.
A hermetic sealed bag lets electronic assemblies use water immersion cooling, improving heat transfer while preventing corrosion and fluid exposure.
Shared input context lets mobile voice and keyboard recognizers learn new terms together, reducing redundant analysis and bandwidth use.
Multiple sliding policies adjust page motion by screen state, power mode, temperature, and content to balance smoothness and energy use.
Lockstep core comparison and firmware-based frequency lookup keep processor outputs aligned while improving error detection and consistency.
A controller uses a lookup table to execute common input commands locally, bypassing USB bottlenecks and enabling real-time control.
Slot-aware fan control matches server NIC position to the right cooling device, preventing overheating and post-startup shutdowns.
Scheduled power modes and traffic analysis let an access gateway cut idle energy use while preserving network availability.
Dedicated polling logic monitors I/O pin state changes while the CPU sleeps, cutting battery drain and waking it only when needed.
An integrated refrigerant and liquid loop replaces outdoor chillers, enabling controllable server cold-plate cooling with simpler deployment.
Shared normalization across dot product units cuts tensor hardware cost and power while preserving floating-point accumulation throughput.
A rotating handle locks a PCIe card frame to the server chassis, enabling tool-free removal while improving fixing stability and maintenance.
A water-blocking film in a vacuum two-phase cooling chamber prevents vapor ingress, stabilizes flow, and improves electronic heat dissipation.
Heating acidic lignin slurry to 65-95°C for 30-60 minutes cuts filtration and washing resistance while reducing chemical use.
Column-shared pixel circuits shrink transition-area wiring so light can reach under-screen cameras without notches or display cutouts.
Interface sections are split across nearby terminals, enabling more flexible collaborative display with synchronized content and lower development complexity.
A dual-path duct routes speaker sound around the display to preserve screen area, improve audio output, and support dustproof waterproof assembly.
Dynamic switching between self- and mutual-capacitance scans balances fast touch response with lower power consumption.
A single-pass multi-input floating-point adder aligns mantissas and combines sticky bits to cut chip area, power, and iteration count.
An internal fan and air duct drive forced airflow across a heat dissipation member to cool terminal hot spots under high-load use.
A dual-use case aligns the screen protector, removes dust, and applies pressure to prevent misalignment and air bubbles during installation.
Dual cover layers and lower-modulus outer optical adhesive keep the neutral layer stable during folding while improving scratch and impact resistance.
Sliding-speed-based refresh switching raises display smoothness during fast scrolling while cutting power use at lower speeds.
A wrapped dual-capillary structure combines high capillary pressure with high permeability to speed fluid return and improve heat transfer.
An asynchronous counter with a retention circuit replaces separate column memory, shrinking CMOS image sensor readout area and cost.
Maps gas concentration response into control-voltage resistance data, enabling accurate gas sensor calibration and in-field baseline drift correction.
Separate power domains and saved PHY state let a memory controller stay in deep low power while cutting wake-up delay from reconfiguration.
A biometric sensor integrated into a button combines authorization and navigation to cut redundant inputs, user time, and battery drain.
Real-time input event detection lets a terminal tune processor power preference faster and more accurately, reducing waste and extending battery life.
Physical power switching inside a TEE disables cameras or microphones against software bypass, reducing privacy leakage risk.
Fan cooling pauses when collected sound noise crosses a threshold, helping a mobile dialogue controller keep speech pickup accurate.
Moving sidewall cases and elastic members protect extendable display panel edges, preventing wrinkling and impact exposure during retraction.