Spring and crankshaft biasing counterbalances display weight across rotation, reducing felt torque while holding position under touch.
A pivot shaft, pushing members, and elastic elements enable quick fastening and release in docking modules, simplifying device mounting and removal.
Sliding hinge members separate the substrate edges during folding to create bending space that protects the flexible display from damage.
Laminated friction plates replace damping cylinders and one-way clutches to deliver torque control in a smaller biaxial hinge.
A cam, bias member, and ejector let a device feature stow flush, then eject smoothly with minimal clearance gaps and panel interference.
Real-time task planning and hoist assignment automate container warehousing and distribution, cutting labor use while improving port handling safety.
Telemetry-based fan-speed profiling estimates cooling fan remaining life, enabling replacement before overheating, vibration, and downtime.
Electrical characteristic detection lets a composite cable manage power and bi-directional signals without dedicated control lines, reducing circuit complexity.
A lever-driven lock plate and springs let monitors engage securely and release from the front without lifting or removing adjacent screens.
A two-plate air shroud lets cables move above the cover, enabling memory card exchange without unplugging and keeping the machine functional.
A response-model-based look-ahead error lets reinforcement learning track target values faster while handling aging and non-linear control behavior.
Different grain sizes in punched and support areas balance elongation and hardness, reducing warpage, cracks, and yield loss.
A logistics robot slows before docking, detects a shelf mark point in motion, and aligns accurately without repeated stop-and-search delays.
A ball-bearing phone accessory adds spinning, retractable grip or stand arms, and app-linked motion features without making the device bulky.
Hinged display modules use controlled magnetic coupling to switch between compact folding and a seamless large screen with easier installation.
A convex controller jointly tunes CDU pump speed and rack fan speeds to cut cooling energy while keeping processor temperatures below target.
A curved protrusion and friction hinge reduce axis eccentricity, keeping displays stable at the desired viewing angle.
Multi-sensor drone detection, ID filtering, alerts, and countermeasures help individuals defend privacy from unauthorized nearby drones.
Active cooling and optional heating keep phones and tablets running in extreme temperatures while a magnetic mount supplies power hands-free.
A movable outer corner and torsional spring absorb drop impact without thick foam or rubber, preserving a compact case profile.
A sliding tab, hook, and screw interface secures a display arm to a mounting plate while allowing fast removal and interchangeability.
A variable-length support link, slide frame, and rollers keep a flexible display flat during extension while reducing stress concentration and sagging.
Online flap perturbation and aeroelastic model identification cut aircraft drag under changing flight conditions to reduce fuel use.
Mobile autonomous vehicles position inventory near demand, enabling fast local delivery while reducing fixed fulfillment center cost.
Motion-triggered sensor power switching lets an integrated multi-sensor unit cut energy use, size, and interface complexity.
A movable outer corner and torsional spring absorb impact energy, enabling slim electronic cases to resist drops without thick rubber bumpers.
A hinge and bending module let the screen switch between a flat touch surface and a curved viewing shape for better comfort and usability.
A hollowed support structure uses bendable, buffer, and rigid zones to improve flexible display impact resistance and bending stability.
Control logic sets rack coolant pump speed to balance processor temperature, cooling power, and machine-learning computing performance.
Cascode protection and staged control signals keep PLD I/O bus voltages within transistor limits during power-up while reducing leakage and heating.
A torque part placed between brackets and gears absorbs impact and spreads external force, protecting notebook hinge gears in a thinner layout.
Sensor-based drive correction keeps a linear motor carriage stable and accurately positioned when module spacing changes.
Temporary speed reduction and re-detection help a stacker crane avoid false article abnormality stops caused by films or labels.
Automatic parcel unloading is monitored across multiple apparatuses to detect exceptions, halt faults, and keep processing rates steady.
Rotating and sliding connecting rods keep adjacent flexible display panels aligned during bending, preventing visible gaps and reducing support complexity.
Direct on-board state reset and peer communication enable train turn-back with one vehicle device, improving success rate and efficiency.
A linked gear hinge changes shaft spacing during rotation, creating room for accessories such as a physical keyboard in portable devices.
A spring-loaded slider keeps the T-bolt protruding during rack release, preventing screw loss and simplifying removal and reassembly.
An uneven inner cavity with stepped microchannels uses capillary flow to improve heat transfer and heat storage in compact electronic cooling.
Touch-sensitive zones energize electromagnetic brakes at display arm pivots, adding friction for stable positioning and quick user-controlled release.
A handheld phone grip replaces bulky telescopic selfie sticks with a clamp, detachable remote, and charging module for compact one-handed shooting.
Ball-and-recess positioning keeps a tablet stand frame stable at set angles while a replaceable hand strap improves wear life and usability.
Dual planar baseplates and a flexible connector improve heat conduction for vehicle processor and coprocessor blades in dynamic conditions.
Stored calibration parameters are validated and reused across SoCs to cut external memory boot delay without risking invalid settings.
A spring-linkage display support keeps upward force nearly constant through vertical travel while adapting tool-free to different display weights.
Dynamic limit cascades prioritize control paths in fixed-point loops to prevent overflow and keep aircraft inceptor motor control stable.
Local and reference temperature feedback adjusts target temperature and power to balance electronic device performance with thermal stability.
Reduced-pressure dielectric immersion cooling lowers fluid boiling temperature, condenses vapor for reuse, and cuts energy use and contamination.
A lever, lock block, and removable cartridge let a display switch between secure fixed positions and easy portrait-landscape rotation.
A controller estimates LDO drop-out from load current and adjusts conversion voltage to cut power loss while preserving stable outputs.