A stabilized center bar guides vertical motion to keep foldable displays flat and avoid hinge collisions, reducing damage and noise.
Magnetic torque replaces cam-and-spring hinge parts to simplify foldable device structure while maintaining stable rotation and self-unfolding.
Pre-trained models map telemetry to temperature and altitude conditions, cutting data center setup time while improving CPU, I/O, and QoS.
Tapered friction assemblies and an elastic module boost hinge damping so foldable devices hold steady in folded, unfolded, and hover states.
Opposite-rotating members simplify foldable-screen hinges, cut parts and cost, and form a waterdrop fold that reduces creases and stress.
A limit part constrains the swing arm in the unfolded state to stop panel floating and keep the flexible screen flat without hindering folding.
Elastic buckling rods let a protective case turntable rotate and rebound into fixed angles, expanding handheld and travel use.
A unified neural architecture search framework combines differentiable and RL-based search to cut cost, reduce bias, and avoid overfitting.
An arcuate guide track and sliding connector let EGM monitors rotate and lower for easier removal, servicing, and reinstallation.
An elastic hinge and latch-equipped foldable stand lets large displays mount securely while opening, closing, and holding angle stably.
Elastic hinge elements reduce fitting gaps between rotating members, improving foldable device smoothness, stability, and noise control.
Distributed heat sensing and simulation guide fanless phase-change cooling in 5G terminals to limit overheating and protect throughput.
A nested hinge mechanism moves the connection plate through a compact 3D path to avoid screen bending while keeping foldable terminals thin.
Separate temperature control keeps motherboard peripheral circuits in range during cryogenic CPU, GPU, or memory overclocking.
Elastic structures in a foldable hinge reduce fitting gaps and abnormal rotation noise, improving smoothness and stability during folding.
Independent thermal zones keep motherboard peripheral circuits at target temperatures during extreme CPU, GPU, or memory overclocking.
Cryogenic cooling with insulation and temperature control improves electrical conductivity in components such as transformers and motors, cutting energy loss.
Embedded fasteners and a connector reinforce a foldable hinge cam assembly while wear-resistant cam materials reduce friction wear over time.
A sliding middle support plate meshed with gear rods simplifies foldable hinge structure, cutting bulk and weight while supporting display stability.
Trapezoidal support strips between the shaft and screen prevent warping, spread stress, and keep rollable displays uniformly flat.
A nested clamping and elastic hinge layout preserves damping and rotation stability in foldable devices where hinge space is limited.
A sliding assembly and spring-assisted clamp let users open and secure a streaming media player holder with one hand and less force.
Separate low-voltage logic power and 24V/48V conveyor power in one control unit to simplify cabling and enable fast shutdown and restart.
By overdriving the reference voltage during positive data steps, this circuit cuts ringing and undershoot to speed capacitive-load settling.
Sliding elements and elastic supports keep a foldable screen under tension during drops, limiting middle-frame deformation and poor display.
A drive belt and guide-groove lifting part supports an extended flexible display more flatly, improving stability and reducing damage risk.
An EMF-shielded case uses a pivoting animal-style support to block radiation while keeping an electronic device adjustable for display.
Swing arms and grooved support bodies replace springs to slim foldable phone hinges while supporting the flexible display and avoiding rounded corners.
Multi-direction rack gear support and bearing members cut sliding friction and improve impact resistance in rollable electronic housings.
A rotator-cam interlock replaces pins and clips in a foldable device hinge, simplifying assembly while maintaining stable synchronized rotation.
A recessed heat pipe window directly couples to the cold plate to expand transfer area, cut thermal resistance, and reduce dryout risk.
Balance connecting rods synchronize adjacent folding frames, preventing screen tilt and housing collisions in telescopic displays.
Segmented links with pin-slot motion keep a foldable display uniformly supported and limit bending radius to prevent compression and tension damage.
A male-female valve joint seals before opening flow channels, preventing leakage and docking failure in liquid cooling systems.
Selective coupling of driving members to guide rails prevents distortion, reduces friction, and keeps flexible displays aligned.
Rotatable linked support sections let one bendable display backing achieve multiple curvatures instead of relying on fixed-curvature supports.
A sliding and lifting jig supports a 55-pound GPU board, improving tray alignment, ergonomics, and damage-free installation.
Elastic members and dual pivot bars let a foldable display stand support heavier screens while keeping height, angle, and distance adjustment smooth.
A biaxial rotation shaft and support plates hold the folding area at a 1.5-5.0 mm radius to reduce deformation and creases.
An obround liquid disconnect boosts flow at lower pressure while fitting constrained computing spaces that round connectors cannot.
An elastic coupling portion with a spring-backed body replaces screws to enable secure fastening with quick repeated assembly and separation.
A staged wake-up path lets a detection circuit screen events before the main core starts, cutting surge current and unnecessary power use.
A parallel sweeper seals hinge-side gaps in a foldable display without touching the hinge assembly, blocking debris and preserving smooth folding.
A segmented hinge creates relief space for a flexible display while keeping foldable devices compact in the folded position.
Inner support surfaces and edge engagement let a stand hold curved electronic housings securely without adding a flat bottom.
Reactive power control lets processor IP run above legacy power limits, then drop nearly instantly on voltage violations to protect power delivery.
A carriage and arcuate guide track let heavy EGM monitors rotate and lower for easier servicing and removal.
Movable fixing parts and guide parts lock a bent flexible display in place without external mounts, improving usability and space use.
Thermal load estimation from liquid temperatures and flow data guides fan and pump control to improve datacenter cooling efficiency.
Elastic members preload hinge arms against a slide bracket to cut assembly deviation and improve foldable device opening feel.