Detachable optional modules with integrated fastening and connection features simplify inverter assembly, cut cost, and avoid rework.
A spring-loaded frame mounts a heat sink without PCB holes, equalizing pressure across varying bare-die heights in dense modules.
A fluid-based thermal diffusion member spreads heat from a side-mounted antenna module through the battery space without enlarging the device.
A finger-worn ring uses a flexible PCB, transparent windows, and integrated sensors to improve comfort, monitoring accuracy, and power management.
A finger-worn ring uses segmented sensors, flexible PCB layout, and transparent windows to keep health monitoring compact and comfortable.
A finger-worn ring uses segmented PCB layout, skin-contact sensor placement, and photovoltaic charging for comfortable, accurate long-term monitoring.
Curved flexible PCB placement in a finger-worn ring maintains skin contact for accurate health monitoring without bulky wearable form factors.
A phase-change metallic composite TIM lowers contact resistance on uneven interfaces while reducing the compressive pressure needed for heat transfer.
Flexible PCBs and adaptive ring sensor placement improve skin contact accuracy without the bulk that makes wearables uncomfortable.
A tuned window coating thickness and elastic modulus helps foldable displays resist impact while preserving stable folding and durability.
An integrated pump, cold head, and closed-loop channels cool the graphics card while avoiding external tubing, leakage risk, and bulky installation.
A dual-base heat pipe cooler draws heat from both DIMM sides, cutting thermal resistance and helping dense server memory stay within safe temperatures.
Segmented ring surfaces place skin-contact sensors inside and electronics outside to reduce bulk while maintaining accurate health monitoring.
Orthogonal 3D heat pipe sections and TIM improve uniform DIMM cooling at tight spacing, raising heat dissipation efficiency.
Selective electrode control creates local ER fluid stiffening, stabilizing flexible display support while cutting fixation power use.
Flexible PCB sections, curved ring geometry, and transparent windows maintain skin contact for accurate monitoring and light-based recharging.
Thermal conductive members route motor heat through the sliding display supports, reducing heat buildup, vibration, and noise.
A finger-worn ring uses segmented modules, transparent windows, and photovoltaic power to improve skin contact, monitoring accuracy, and runtime.
Flexible PCBs and optical windows help a finger-worn ring maintain skin contact for comfortable, accurate health monitoring over extended wear.
A flexible PCB ring with integrated windows improves long-wear comfort while supporting health sensing, data transmission, and battery recharge.
A one-piece draw bar and hook handle simplifies electronic module extraction, saves space, and avoids hook collision damage during release.
Partition walls and a frame opening isolate overlapping display FPCBs from battery fixation, preserving battery stability and slim device thickness.
Motor-driven housing movement extends or retracts a flexible display to increase screen area while keeping the device compact and portable.
A spring-biased heat receiver uses expandable fluid couplings to maintain thermal contact and cooling as optics modules move or expand.
A lead screw, moving block, and wing linkage let a flexible display panel switch between flat and curved states with lower power use.
An adapter bridges OCP modules and EDSFF drive bays, enabling front-panel installation without separate chassis designs or added logistics cost.
A conductive shield wall and overlapping shielding member isolate closely packed PCBs and connectors to reduce EMI and improve signal reliability.
Multiple radiator zones use local temperature sensing and fan speed control to cool hot areas more precisely while cutting wasted energy.
Rounded shell contours, stacked cooling plates, and guided airflow reduce hotspots and EMI in a compact signal hub.
A movable lever-actuated cold plate engages only during operation, improving heat transfer while avoiding insertion friction and module damage.
A spring-loaded locking mechanism secures computing modules to circuit boards without screws, reducing damage risk and installation errors.
A flexible PCB ring layout with transparent windows reduces bulk while supporting sensing, wireless data transfer, and battery recharge.
Pre-generated masks cut chiplet link toggling by matching bit patterns before transmission, lowering power use, heat, and crosstalk.
A pivoting clamp and snap-fit seat replace screws for quick M.2 card mounting, reducing wear, cost, and assembly effort.
A sliding clamp with an elastic return section secures M.2 cards without screws, cutting assembly time, cost, and surface wear.
Removable thermal connectors keep the coolant loop intact during component swaps, reducing leak risk and server downtime.
Buffer amplifiers and current mirrors enable precise current sensing with low node loading, preserving sense-node voltage across multiple domains.
A detachable relay connector lets damaged receptacle connectors be replaced without changing the main substrate, cutting cost and waste.
A flexible PCB ring distributes sensors, wireless links, and power functions to improve long-wear comfort without sacrificing biometric accuracy.
Flexible PCB ring architecture keeps sensors in steady skin contact for accurate biometric monitoring, wireless data transfer, and charging.
A multilayer laminate button integrates fingerprint sensing and switch input while protecting traces and circuitry in compact portable devices.
Inclined branch walls and ribs split airflow around downstream obstacles and between heat sink fins to sustain cooling in compact electronics.
Voltage-change timing on a USB Type-C CC pin is used to detect foreign-object shorts and cut power before corrosion damages plug-and-play function.
A hard-coated back plate and patterned plate bottom cut thickness while resisting dents and punctures during repeated folding.
Multiple docking bays, status lights, and one host connection automate device testing and reset steps to cut refurbishing errors and delays.
A flexible PCB ring with transparent windows and low-power sensing improves comfort, wear time, and accurate health monitoring.
A relay connector and surface-mount interface let failed receptacle connectors be replaced without re-soldering the main substrate.