Sensors, valves, and on-demand filtration enable localized immersion cooling while maintaining dielectric fluid quality and temperature control.
A softer spacer buffer region cushions external forces over display driving circuitry, reducing bending damage in foldable displays.
Layered weight grouping improves analog MAC accuracy while lowering energy use in non-volatile memory neural computing.
Area-specific touch processing and hover-based position estimation improve input detection on foldable display hinge regions.
Individual usage models set printer sleep timing from employee attendance and device history, cutting power waste in remote work settings.
A GNN trained on parallel RIC simulation data predicts KPI and energy savings outcomes without repeated, time-intensive test simulations.
Multiple watertight parts and a locking frame create a sealed mobile terminal case that blocks moisture ingress under pressure and impact.
An independent accelerator handles memory access and write-back, cutting bus occupation and processor overhead in AI data computing.
Utilization- and priority-aware frequency scaling cuts interface power use while protecting latency and packet loss for higher priority workloads.
Angled vapor diffusers and micro-condensers redirect and condense coolant vapor to prevent dryout and stabilize immersion cooling.
Adapter input/output circuits and location processing let one ML accelerator handle sparse and dense tensors with less time, power, and bandwidth.
Stress dispersion patterns over supporter openings reduce shearing during folding, protecting encapsulation layers and extending display life.
Integrated support bars, through-hole elastic sections, and curved guides simplify slidable display assembly and prevent detachment over time.
Row-column hybrid grouping improves in-memory computing by reducing inactive cells and computing cycles while preserving multi-bit precision.
Splitting digital multipliers into MSB and LSB partial sums improves AIMC signal-to-noise ratio for accurate, low-power DNN matrix operations.
A 3D thermal path across stacked circuit boards uses air gaps and conductive assemblies to lower junction temperature and improve reliability.
Power-binned chip pairing balances voltage and thermal limits across equal-performance processors to cut failures and reduce cluster variability.
Resilient U-shaped heat bridges transfer heat from adjacent DIMMs to a conductive member, improving cooling with less airflow blockage and fan power.
A recessed display window with a transparent cover and shock-absorbing structure protects trading cards while keeping a mobile case usable.
Different sensing frequencies and integrated electrodes cut foldable display thickness while preserving accurate pen and touch detection.
Blending recycled PET with amorphous polymer improves molding speed and adhesion, enabling thinner display bezels with smoother housing surfaces.
A thermoelectric module and liquid loop regulate server chassis temperature across wide ambient ranges without increasing enclosure size.
When one folded screen is out of view, the device shows the answer button on the target screen and guidance on the other to reduce missed calls.
Memory-array portions let computational SSDs search and process stored data locally, reducing processor use, bus bandwidth demand, and transfer latency.
Critical-path monitoring tailors processor frequency to each application instead of worst-case limits, improving resource utilization and power efficiency.
A chain plate, rotating shaft, and stepping motor let a flexible display expand continuously, giving users freely adjustable screen size.
Adaptive measurement frequency tracks fluid-flow variation, preserving accuracy while reducing power use and extending battery life.
Inclined bezel grooves recess protective-layer edges to prevent slip and housing collision during folding or external impact.
Limited touch areas and crowded touch keys are addressed by showing operational-state icons on an external display with tactile hard-key input.
Selecting an alternative circuit reduces signal-delay effects in differential-equation computing and helps maintain accurate calculation results.
Controllers compare current and predicted energy use to switch cooling-unit counts and operating modes while maintaining cooling capacity.
Integrating the optical filter into the collimator layer reduces display thickness and manufacturing cost while preserving selective light blocking for biometric sensing.
A tension belt and elastic member keep a sliding flexible display taut, preventing lifting and surface-quality loss during operation.
Dynamic rear-surface tiles classify user gestures and map them to display functions when front touch input is unreliable.
A spring-coupled spine cover plate retracts during folding to reduce width while limiting dust and liquid ingress.
Thermosetting and photo-curable resin members secure the display fingerprint sensor against fabrication dislodgement and accuracy loss.
An MCU receives out-of-band I2C requests and directly controls cameras or microphones without OS drivers across platforms.
The arc-shaped display wraps onto the side frame, expanding display coverage while preserving obverse-side display area.
Always-on wake logic can waste power in active states; OSPM selectively gates SoC IP-block wake circuits to reduce idle consumption.
Grooves or holes in the support plate increase air contact around the driver circuit, improving convection-based heat dissipation.
A polarization-selective lens stack time-multiplexes optical power for virtual images at varied depths while preserving clear real-world viewing.
Acceleration, gyroscope, and ambient-light data identify pocket mode before the terminal enters screen-off state to block false touches.
Through-holes segment the support behind a rollable display panel, enabling compact winding while limiting sagging and dead space.
Finger proximity enables the embedded controller to load firmware before button depression, shortening boot time during information handling system power-on.
A single sensor and command-based map tables predict storage temperature, enabling thermal throttling without deploying multiple physical sensors.
An elasticity control layer matches the folding area to preserve robustness and reduce wrinkles in flexible displays.
Programmable threshold transistors store weights while charge packets are summed and read out as voltages, reducing energy lost to off-chip data transfers.
Separate data-unit and project-metadata containers automate CAD and data-sheet transfers, reducing manual compilation and supporting secure validation.
Nested control circuitry inside the lifting assembly reduces the reel curling radius, supporting a large expanded screen in a compact rolled form.
Different elongation rates across display regions keep pixel intervals and densities uniform as a stretchable panel conforms to irregular surfaces.