Reducing background app frame rates and delaying vsync cuts unnecessary drawing, lowers CPU waste, and saves terminal power.
A foldable device shows a QR code on the secondary screen while the main task stays visible, then hides it when scanned, locked, or unfolded.
Adaptive presence detection switches sensing modes and wait time to avoid false wakeups and cut standby power use.
Grooves aligned with internal heating components break heat paths in a battery cover, reducing local hotspots and improving touch comfort.
Touch-driven regional luminance raises brightness near the contact point while lowering blue output in peripheral areas to cut OLED power use.
Interconnected memory extension cards with graph access engines speed random GNN graph-data access beyond PCIe bandwidth limits.
A rotating magnet and displacement unit correct height differences between adjacent display panels to prevent distortion and avoid repeated detachment.
A split routing layout uses an inner terminal and a flexible bypass wire to avoid fold-zone breaks, cut resistance, and preserve display quality.
Varying cover-layer thickness between base and rollable regions preserves display strength while enabling flat-to-curved deformation.
When no host computer is connected, the docking station runs sandboxed network apps for reservations, diagnostics, and display output.
Batch mapping across multiple secure computation nodes improves sigmoid and logistic regression precision without the slowdown of complex polynomial approximation.
A spin-orbit coupling layer replaces the external magnetic field in SOT-MRAM, enabling deterministic switching, 3D integration, and higher density.
A metadata-driven API unifies diverse data stores into one asset search view, improving visualization and real-time insight across building systems.
Differential wiring and Wheatstone bridge sensing isolate common noise, enabling accurate biaxial hinge strain detection.
Boolean conditions are converted into arithmetic and bitwise expressions, removing comparator delays and enabling faster parallel conditional execution.
Batch-wise clustering reuses existing clusters for new samples, cutting memory and execution time while preserving clustering accuracy.
Digital activity sensing pinpoints the overheating core so thermal throttling is applied locally, preserving performance on unaffected cores.
CPU waste heat and mode switching keep the heat pipe above its dryout threshold, preserving fluid flow and cooling during power surges.
A trusted identity provider verifies users, presents consented identity attributes, and gives relying parties more consistent login verification.
Split EAP-TLS between the eUICC and mobile equipment to authenticate SIM-less devices securely on cellular networks.
A layered cover with offset adhesive edges balances folding stress and external-force protection to improve foldable display durability.
By switching between high and low detection thresholds, the controller distinguishes touch, hover, and housing grip on a portable device.
Adjusting Vsync frequency to match rendering activity cuts display power waste while preserving smoothness and device performance.
A laser-etched lattice of main and sub bridges lets foldable glass bend smoothly while limiting stress, distortion, and damage.
Localized fluid passages cool high-heat-flux zones in power modules, balancing flow to improve thermal control and component life.
Flexible heat sinks and coolant pathways cool both sides of a PCB, handling misalignment and uneven thermal loads in dense computing hardware.
Heat pipes routed with a vapor chamber form part of a grounded PCB EMI shield, cutting thickness while cooling integrated circuitry.
Audio and fan-speed analysis detects blockages and loose components in remotely managed computing devices without physical inspection.
Early memory access overlaps GEMM loads across iterations to use L2 cache better, cut latency, and sustain parallel throughput.
UV-cured resin stacking and bidirectional groove etching improve foldable window glass bending while maintaining thickness consistency and crack resistance.
Crack detection wiring around display module holes uses layered hole and detection wirings to catch layer cracks early and improve reliability.
Compiler-driven weight reordering cuts MAC switching activity in DNN accelerators, lowering dynamic power without harming model accuracy.
A control circuit detects slow charging and raises peak current so backup power stays ready to protect memory data during sudden power loss.
A voltage-responsive blocking layer changes thickness with slide movement to keep debris out while reducing friction and scratches on flexible displays.
Dynamic verification between the motherboard and chassis detects opening attempts and blocks bypass by replacement or cloning.
Artificial VSYNC pulses and dynamic buffer queue sizing reduce Android scroll jank by sustaining frame generation under heavy rendering load.
AI models detect screen expansion or contraction and reflow home, app, and lock screen layouts to keep slidable displays usable.
Dedicated circuit elements save and restore PE architecture state across hierarchical memories before power transitions to cut latency, power, and area.
By fusing eligible computation graph nodes into one table lookup, this case cuts homomorphic encryption overhead and avoids quantization errors.
Sequencing and rerouting circuits save PE architecture state to memory before state changes, cutting latency, power, and circuit area.
A pumped-and-recovered refrigerant loop cools high-heat components without immersing the whole device, cutting refrigerant use.
Separate key-setting screens for different controller input groups reduce confusion and prevent erroneous function assignments.
A memory system monitors host data rate changes and switches power profiles to balance throughput, latency, and power use.
A side-covering plate assembly with metal foam conducts heat outward and dissipates charges to protect foldable display panels.
Reusing GPU FMA hardware for exponent, mantissa, and scale instructions cuts branch code and speeds transcendental emulation in HPC.
An external capacitor holds memory supply voltage during low-power standby, cutting flash power use while preserving fast read wake-up.
Stacked FPC connecting bands and thinning grooves enable smooth screen rotation without cable damage, improving display reliability and power use.
Fold-state sensing blacks out non-visible display regions, cutting unnecessary power use while keeping images active on usable folded areas.
A separate ullage air chamber and channels keep PCB components immersed in coolant while limiting pressure buildup and coolant volume.
Multiple magnetic reference sets improve foldable hinge angle estimation by compensating for hysteresis and external magnetic interference.