Acoustic sensing converts sounds from surface touches into spectrograms, enabling device control without capacitive or pressure-sensitive surfaces.
Dust entering through a notebook fan can foul heat dissipation fins; a detachable collector captures particles before they reach the cooling path.
Dynamic pixel states let one functional panel alternate display and photodiode imaging while correlated sampling helps reduce noise.
ASR and NLU identify user intent, then route speech responses to compatible, nearby, or recently used devices for consistent interactions.
Fingerprint function calls, callee data, and cryptographic hashes expose reused browser code used for cloaking and authentication bypass.
Static device settings overlook user behavior; ML adjusts display frame and refresh rates for personalized power, performance, and thermal management.
Existing vehicle networks often lack direct USB-C/PD control; this case uses LIN messaging between an ECU and port controller for charging and fault monitoring.
Flexible displays wrap from front surfaces onto device sidewalls, creating reconfigurable virtual buttons, switches, and supplemental information panels.
A bifurcated airflow passage sends synthetic-jet cooling across both heat-spreader surfaces, addressing compact-device heat and fan noise.
An ambient light sensor triggers the camera after a brightness change, reducing standby power while AI image detection enables fast response operations.
Application-based sensing keeps the active touch area responsive while disabling unused regions to reduce power consumption and extend standby time.
A processor compares content and display ratios, then slides the housing to adjust the visible area and reduce letterboxing.
A layered support plate uses rigid regions and overlapping openings to reinforce a sliding display without increasing housing thickness.
Ribs positioned inside housing embosses divide the air gap into segments, limiting recirculation while preserving clearance for fan wobble.
An antimicrobial, transparent wrap uses a tacky water-based adhesive and peel-away liner to shield smartphones from contaminant transfer.
Meta-learning selects and refines hybrid quantization vectors to compress deep neural networks while maintaining performance without expert tuning.
An organic-only boundary area removes pad height differences and stepped portions, improving bendability and display-touch reliability.
Partial compaction merges selected key ranges across LSM levels, reducing write amplification, rewrite time, and peak storage needs.
A movable suspender supports the door at the housing opening, preventing sagging and the step difference between the door and housing.
A dynamic fixed-point unit converts floating-point tensors for integer deep learning, adapting precision to improve GPU parallel processing.
Kernel microbatch reuse across direct and Winograd convolution paths helps edge CNN accelerators reduce power and improve computation efficiency.
Varying panel flatness can distort images after unfolding; nested reinforcing layers and a cushion layer support the foldable display.
Rolling and unrolling the display expands rear-surface visibility, while a back-cover conductive layer improves touch-input detection when closed.
Segmenting a wide input range across smaller lookup tables cuts memory and processing demands while range detection preserves accurate, high-throughput function results.
Folding the non-display region opposite the display area reduces visible borders while retaining circuits and wirings for a larger screen.
Quantization-aware training computes optimal clipping scalars online to reduce noise and preserve low-precision accuracy.
Camera-state logic changes proximity-sensor reading timing to avoid infrared interference while detecting device wear and reducing false wake-ups.
Local sensors and controllers let each computer fan adjust speed without an additional external interface, improving heat dissipation.
An interposed sliding member guides and limits hinge motion, avoiding elongated inclined rails while keeping flexible-device housings compact and slim.
A memory-backed detector switches between standard and high-precision face modes to support authentication when users turn away.
A casing coupling portion pulls the OLED module’s end region in the opposite direction, synchronizing folds to limit internal stress and delamination.
Wake-screen backgrounds change with selected focus modes, simplifying notification switching while the device remains in a low-power state.
Negative pressure is created by transferring fluid from the first space, reducing heat-dissipation medium leakage and maintenance costs.
A side-mounted sliding key moves the display panel over an under-panel light sensor, avoiding a drive motor and reducing power use.
Programmable resistor states change memory-cell weights electrically, avoiding extra masks while enabling flexible product computation.
A single recovery bookmark tracks batch transaction state so target databases can resume after faults without reloading tables.
Capillary forces draw bonding paste through divergent wall gaps, forming a hermetic joint without damaging internal wick structures.
An intermediary security broker validates FPGA instructions and restricts unauthorized access to privileged system components.
Monitoring network traffic lets server processor cores lower clock rates during light loads while reserving capacity for traffic spikes.
Partitioned main and secondary flow channels direct more coolant to high-power components, reducing unnecessary pump work in immersed servers.
Grip sensors detect how the user holds a flexible device and set one-handed screen expansion direction for easier control.
Dual outlets direct air toward the chassis and electronic components, mitigating adjacent hot spots while preserving airflow velocity in thin devices.
An exterior actuation mechanism disengages tab-and-hook connectors, enabling repeated screen removal without damage or adhesive tools.
Near-infrared treatment removes unreacted photoinitiator and photosensitizer compounds, limiting coating-window deformation under external light.
When screen content remains unchanged, the device lengthens refresh and measurement periods, then restores fast monitoring for urgent processor events.
Bottom-plate apertures vent bubbles during lamination and dissipate heat during operation, reducing screen defects and adhesive degradation.
Empirical spacing and angle formulas distribute bend stress to prevent adhesive peeling and inorganic-film fracture in foldable displays.
Hierarchical carry-lookahead gates combine generate and propagate signals to speed large-bit additions while reducing circuit area and power.
Branching programs and fully homomorphic encryption secure set intersection while keeping communication overhead independent of server dataset size.
A header-and-footer arrangement uses PMOS and NMOS control with multiple voltage rails to improve power-management efficiency in integrated circuits.