A recessed ultra-thin glass cover with flexible and reinforcing layers balances foldability, impact resistance, and crease reduction.
Controlled in-plane current and magnetic field drive stochastic MTJ switching to produce tunable true random bits with lower power.
Opposed helical gears and a damping member improve foldable hinge transmission stability, lowering shock, vibration, and gear breakage risk.
An extension support structure reinforces the interval beside a bent display module to prevent cover sagging and protect electrical connectors.
A synchronization assembly links left and right housing seats to keep foldable display supports rotating symmetrically and reduce damage risk.
A water droplet-shaped wedge bend reduces shear stress and film-layer debonding in foldable display panels, extending fold life.
Dual decoupled read ports and always-linear bit-line discharge cut digital steps while sustaining low-voltage IMC parallelism.
Tagged context from prior conversation sessions lets conversational search continue partial queries with less user input and faster responses.
Piezoelectric vibration drives fluid over hot components and toward cooler internal structures, delaying throttling in compact open or closed devices.
A preview onboarding mode tests added cloud service endpoints, disables faulty collection, and expands monitoring without disrupting existing data flows.
By moving mainboard interconnects behind the display instead of through the hinge, this case improves fold reliability and supports thinner devices.
A shaft-wound thermal diffusion member spreads out during slide-out to move heat away from mobile components and lower surface temperature.
Duplicate control objects are moved to reachable display regions based on grip and fold state, reducing finger travel on large flexible screens.
Temperature-activated metal anchors tune flexible display curvature for multi-user viewing while preserving reliable shape recovery.
Flat-plate heat pipes and natural coolant circulation improve heat removal, cut pump energy use, and help suppress vapor film buildup.
A sensor-driven movable optical module lets laptops adjust camera angle automatically, avoiding manual repositioning during online meetings.
A segmented support plate with a flexible folding section and link bars enables compact extension while preserving display stability.
An angled speaker pipeline shifts resonance away from 3-4 kHz and lowers 2-5 kHz sound pressure to reduce call noise.
Dynamic switching between normal and power-saving voltage levels cuts display power use while avoiding image defects under risky conditions.
A rotating linkage guides housing motion to maintain a neutral display surface during folding, preventing stretching, squeezing, and damage.
A movable hinge cover protects foldable devices from drops and impact while preserving hinge motion and full display visibility.
Sensor and load analysis estimates residual stress in foldable displays to flag fatigue, cracking, and delamination risk early.
Shared DSP processing lets multi-panel display sensors switch analog front ends by mode, cutting IC count, cost, and power use.
Extending the adhesive layer beyond the buffer layer increases lamination area, lowers pressure, and prevents visible adhesive prints in narrow-bezel displays.
A 1D systolic array with detached core units cuts Winograd matrix multiplication footprint while sustaining high speed and multi-precision support.
Segmented strip-shaped slots in a foldable display support plate spread bending stress more evenly and prevent crack-like visual marks.
A secure access module is disabled until a tag is detected, cutting battery drain while enabling fast RFID or NFC security disarmament.
Pre-encoding stationary weights and compensation bits cuts repeated Booth work, lowering DNN accelerator energy and area overhead.
A master control device uses a pointer array to synchronize page switching, addition, and deletion across connected screens.
A reference flash cell array tracks PVT shifts and aging to stabilize current output and preserve analog operation accuracy.
A high-modulus transparent support layer keeps the mirror structure flat in flexible displays, reducing wrinkles, orange peel, and brightness loss.
Individual drivers switch SoC components on only when needed, cutting idle power, avoiding thundering herd wakeups, and preserving responsiveness.
Nested reinforcing layers with open areas support a foldable panel to keep the unfolded display flat and reduce visible image distortion.
Detachable foldable modules add cameras, batteries, or GPS while keeping the main display unit portable and usable on its own.
A CAN bus and 12 VDC wake network keeps marine powered devices asleep until authenticated activation, cutting standby power while preserving function.
Bit-line processors merge multiplication and accumulation in memory, cutting chip area while speeding parallel pipelined MAC operations.
A low-modulus second colloid buffers impact stress between the display and middle frame, improving bond reliability and sealing against dust or vapor.
Floating-point instruction throttling keeps multi-core processor power within limits during DVFS without adding power supply pins.
A planarization layer spanning the display and open areas suppresses waviness, preserving display quality around embedded electro-optical devices.
Temperature and server position data fine-tune an AI model to choose server start or shutdown actions with lower data center power use.
Rising refrigerant bubbles spin a turbine above an immersed heat sink, recovering cooling energy as electricity while allowing orientation adjustment.
Opposite-side pipe routing in stacked cold plates cuts fragmented space while preserving condenser size and heat dissipation efficiency.
Grouped bit recoding shares partial products in dot product hardware, reducing adder complexity, latency, and hardware area.
Selectable sharing controls simplify health data permissions, cutting key presses, user effort, and battery drain on electronic devices.
A Bloom filter bit array cuts cache use and back-to-source traffic while keeping user operation checks on entities above 99% accurate.
Adaptive touch thresholds across display regions improve input recognition consistency when a foldable screen is bent or folded.
By moving the ambient light sensor to the device side, this case avoids black masking and complex matting while preserving full-screen display area.
A three-stage automatic partitioner generates, scores, and validates table partition schemes to improve query performance without expert tuning.
A memory controller cuts self-refresh exit latency by sending the exit command on a slow clock path while the PHY powers up in parallel.
Decomposing non-binarized arrays into weighted binary vectors lets XNOR logic compute inner products with precision and no extra hardware.
Stepwise plane surfaces on a curved base allow driver circuit mounting while reducing volume and weight compared to flat panels.
Normalizing policy expressions into a complete list of alternatives resolves compatibility determination difficulties across diverse web service endpoints.
Dual ramps with distinct thermal expansion coefficients compensate for housing mismatches, preventing vibration damage.
A processor determines vehicle motor temperature using a first-order decay function with prior ignition-off boundary conditions.
A search system ranks results using development context metadata to improve precision.
A file type association module allocates processing tasks between client and server devices during remote sessions.
Sequentially connected computation modules reduce interconnect complexity and improve resource utilization for neural network inference.
Full power test signals and inverse Vandermonde matrix inversion separate linear response from nonlinear distortions for accurate measurement.
Interval layer equalizes optical distances between display and touch panel to resolve out-of-focus floating images.
A steering override detection system adjusts torque thresholds based on vehicle speed to enable precise driver control transitions.
A laminated film with a silicon oxygen carbon thin layer provides high impact resistance for flexible electronics.
A dynamic data protection module creates reply queue policies at runtime to encrypt messages without pre-configured certificates.
A mobile device management agent monitors state information and enforces policies on mobile devices.
A hard drive removable enclosure uses a primary positioning pin and hook to secure the drive without tools.
Integrating the fan controller and tachometer into the SOC eliminates external hardware, reducing manufacturing costs and signal propagation latency.
Random Partial Digitized Path Recognition authenticates servers via out-of-band grid challenges, preventing phishing attacks while maintaining user engagement.
Segmenting the metal chassis into tiers creates an unobstructed path for antennas, resolving signal impedance issues in thin-profile designs.
Segmenting passwords across multiple servers prevents offline dictionary attacks and server compromise while reducing computational overhead for mobile clients.
A segmented power control system manages independent operational states for the image forming unit and external digital front end.
A telematics system gathers occupant profile data from paired mobile devices to enable rapid emergency identification.
A work optimization module compares task tags to identify duplications across users.
A persistent authorized server address space hosts components using a generic XML message protocol for cross-address communication.
A detection system extracts platform-independent behavioral traits to authenticate legitimate users across devices.
Apertures in the keyboard carrier allow air to flow through, resolving the trade-off between thermal management and liquid spill resistance.
A system generates action candidates from interactive history between sender and recipient.
Compresses multiple images for memory storage, eliminating real-time processor activity and reducing energy consumption during screen-off states.
Control apparatus manages motor rotation position feedback for automatic transmission shift range changeover.
A context-based configuration management system displays project activity status through intuitive icons and metadata for quick recognition.
Segmented heat dissipation films use exhaust passages to release trapped gas pressure, preventing thermal expansion defects in under-screen modules.
A graphical authentication system aligns modified base and overlay image points to verify user identity.
Distributes encoded user identity across various application views to prevent circumvention by privileged users and enable leak source detection.
System detects unauthorized wireless devices by analyzing connection logs and MAC addresses, eliminating false positives from physical signal interference.
Modular solid-state connector loops enable remote active phase-change cooling, preventing fluid exposure risks while maintaining high thermal capacity.
A patterned base layer with reduced modulus decouples stress in rollable display adhesive units, preventing cracks and adhesive leakage during repeated rolling.
Unique watermark stored in a trusted security zone verifies mobile device operation, preventing unauthorized access to confidential information.
Hierarchical intermediary data structure assigns unique multi-character expressions to entities, attributes, and occurrences across diverse database models.
A waterproof assembly uses a heater to remove water from the display gap.
A product feeding device uses detection sensors to adjust launch positions for precise alignment.
A node network guides text design choices, reducing rule volume while resolving lengthy learning periods.
Selective word line activation enables in-memory multiplication of weight values, reducing energy consumption and eliminating external processor reliance.
Database triggers maintain transitive closure data structures by performing delta operations on hierarchy bridge tables.
A server generates faux authentication responses with legitimacy artifacts to hide username validity from attackers.
Dynamic torque converter clutch control increases slip during low-speed throttle tip-in events to enable torque multiplication before engaging the lockup.
Dynamic timer control adapts interrupt frequencies to CPU load, balancing response time against system overhead.
A mixed shooting method partitions parameters and boundary conditions to determine control trajectories.
Planar electrode configuration reduces parasitic capacitance and interconnection resistance within the display panel.
A digital project log system selects records using observer and receiver identifiers to automate data capture.
A vehicle safety system activates autonomous partial braking and passenger belt tightening to reduce crash energy before impact.