See how a handle-operated locking mechanism uses segmented working members and blocking feature
See how a slide rail assembly replaces rotational unlocking with linear movement to improve ada
See how a pivotable anti-retraction locking member limits middle-section extension to reduce to
See how a dual-hinge door handle system enables bidirectional opening from confined spaces whil
See how a slide rail blocking mechanism uses segmented releasing and blocking members with mult
See how external wall-mounted HVAC units with thermal shields and false-ceiling air channels im
See how a three-rail slide assembly uses overlapping rail sections and nested structure to enha
See how an active suppression device with sensors, signal processor, and anti-noise generator r
See how a dehydrator unit uses desiccant cartridges, dual fans, and a humidity sensor to preven
See how a door indicator system and dual-hinge control prevent injury from heavy cabinet doors
See how aluminum extrusion replaces stamping to control slide rail thickness within ±0.05mm, en
See how segmented rail-and-slider assemblies enable standardized mounting across EDP equipment
See how a slide rail assembly replaces rotational unlocking with linear-motion locking to impro
See how a recessed structure on the first rail nests the rack side frame, enabling longer rails
See how a handle, auxiliary member, and elastic feature work together to enable easy slide rail
See how a handle-driven blocking mechanism controls slide rail extension and retraction using w
See how a vertical heat exchanger panel with angled fan assembly reduces datacenter footprint w
See how vertical heat exchanger orientation reduces datacenter footprint in urban areas while i
See how extruded edge seals with bulb-shaped portions and C-channel bases create sealed thermal
See how segmented threading with two distinct threaded portions eliminates full-rod rotation, r
See how cabinet clusters and thermal shields trap heated air in a central zone, enabling extern
See how a universal fitting device with self-locking mounting features adapts slide rail assemb
See how a transportable datacenter uses progressive ventilation through cold and hot air plenum
See how an extended supporting device and intermediary supporting member reduce frictional forc
See how an elastic locking member enables tool-free slide rail mounting and demounting from rac
See how a spring-biased safety pin assembly with camming surfaces prevents heavy battery module
See how an elastic locking part and operating part enable tool-free mounting and detachment of
See how a spring-loaded safety pin with stopping and camming surfaces prevents battery cabinet
See how a nested auxiliary rail member enables one slide rail mechanism to carry two objects in
See how a segmented supporting bracket enables independent slide rail mounting on racks, reduci
See how a modular supporting bracket with detachable slide rails and segmented components impro
See how a resilient member and intermediary engaging member enable easy termination of rail blo
See how a rolling supporting member with arced contour reduces frictional resistance in multi-r
See how an operating member drives an engaging member to overcome blocking resistance, enabling
See how pivotally connected operating members convert rotational input to linear vertical casin
See how ball-and-cup intermediary components isolate electronic cabinets from seismic forces, r
See how segmented fixed rails with longitudinally movable frames enable front or rear movable r
See how modular rack units with integrated cold and hot air plenums enable datacenter transport
See how a slide-and-detent rail assembly enables tool-free installation and adjustment on equip
See how elastic positioning and blocking members enable flexible locking control in slide rail
See how adjustable fixing columns and an elastic hook enable slide rail brackets to fit 438–444
See how a rotatable mounting member with integrated protrusions prevents incorrect rack mountin
See how modular rail-and-slider assemblies with adjustable positioning enable standardized moun
Exterior-mounted air handling units, wall penetrations, and a thermal shield improve data center cooling while simplifying service and cable routing.
See how asymmetric blocking and foolproof features prevent incorrect slide rail insertion in se
External condenser placement, hot-air containment, and separated cable routing improve data center cooling, airflow, and maintenance access.
See how a spring-biased slide lock with release lever replaces bolts for tool-free rack rail at
An integrated cooling unit uses side-wall plenums, air movers, and a heat exchanger to control heat in portable data center containers.
A multi-rail slide assembly adapts racks to shorter servers, enabling compact back-to-back mounting and full extension for maintenance.
Adjustable mounting members and struts vary rack spacing to securely fit computer modules of different sizes and heights.
Ergonomic snap-mount grips and resilient sealing skirts make rack blanking panels easier to handle while blocking airflow and stacking securely.
Prefabricated structural bays and a transportable power module reduce data center build time, duplication, and power distribution complexity.
An engaging rod, inclined planes, and dual springs enable cost-effective automatic retraction with steadier sliding and longer service life.
Permanent-magnet guide assemblies help server rails self-align with rack rails, reducing manual handling, misalignment, and installation hazards.
Horizontal engagement holes and a stop plate strengthen thin slide rails while supporting heavy chassis pull-out and installation.
Linking members, posts, and an L-shaped insert let rack frames be dismantled for maintenance without sacrificing structural strength.
Balanced fan-bank airflow in a closed-loop container data center maintains cooling continuity and supports rapid, portable deployment.
A thin pinned flange and pivoting clamp secure rack rails without wrapping the post, increasing usable width between rack posts.
Auxiliary pins and resilient fasteners let an ultrathin three-section slide rail mount quickly while preserving strength and saving chassis space.
A pivoted shelf and opposing tracks let rack-mounted electronics tilt down for service access without fully removing the module.
Clip-mounted rack rails latch into wall holes for tool-free height adjustment, secure support, and easy reconfiguration without rear access.
A gear rack and pinion latch replaces screws to open and secure removable covers quickly, without tools or lost fasteners.
Inward grips and flexible sealing skirts help a rack blanking panel mount comfortably, seal airflow reliably, stack stably, and pass cables.
A support rail with direct chassis-bottom contact improves rack mounting stability and adapts slide rails to different chassis shapes.
An offset multi-face stabilizer supports server rack rails at different heights to prevent dislodging and bending during shipping vibration.
A variable-width holder and offset slide rail fit six storage drives in a standard rack while preserving stable assembly and service access.
Stud-locked slide rail supports stabilize server chassis in cabinets, reducing hard disk damage risk while preserving stacking space.
Flexible sheets with tensioners seal empty rack slots to stop hot-cold air recirculation and cut data center cooling energy use.
A rotating tray and riser layout opens access to the motherboard in double-layer servers while simplifying cable routing and cooling.
Sliding rods, a cross rod, and elastic separators help connect and disconnect server rack power clips with less force and faster service.
By linking stacked power supplies directly to the motherboard, this connector assembly removes the power board, saves chassis space, and cuts cost.
A wearable battery pouch with flexible leads and a combined power-data hub improves access, low-profile comfort, and multi-device connectivity.
Decouplable wire harness sections let cooling systems replace only faulty wiring portions, cutting downtime and service labor.
A folding joint module detects coolant leakage and automatically disconnects server rack plugs to stop coolant ingress and protect the server.
A molded combination outlet uses asymmetrical cores and a biased latch to fit multiple plug types while cutting PDU complexity and SKU count.
A single-axis deployment mechanism connects and disconnects dense electronic assemblies without manual access, improving airflow and serviceability.
Curved fin passages redirect immersion cooling fluid to reduce blockage and turbulence between adjacent heat sinks and improve heat transfer.
A cold plate covers the transformer and rectifier together to cool windings, cores, and capacitors in high-power-density server supplies.
Countersunk mating recesses let casters be installed on upright electronic enclosures, avoiding damaged studs, rework, and scrap.
A dual-reservoir layout replaces complex manifolds and piping, improving dielectric liquid flow and flexible electronic device placement.
A waterproof housing isolates the server power plug and cable joint from coolant, preserving power delivery while avoiding costly waterproof parts.
A rack PDU case showing how one outlet accepts multiple plug types while adding cord locking and direct chassis grounding.
Synchronized tank movement opens maintenance access while preserving frame balance and dense vertical storage in immersion-cooled data centers.
Vertical stacking of power chips and output inductors shortens server power paths, cutting impedance, transmission loss, and board area.
A molded combination outlet uses a deflectable latch and biasing element to secure multiple plug types while cutting PDU outlet count and cost.
Shared controllers let one power distribution subrack manage mixed circuit breakers, cutting idle hardware, board space, and material cost.
Dedicated vapor channels and a top condenser let stacked battery packs use two-phase cooling for high power density without sacrificing thermal control.
Separate emergency limits for each rack PSU curb current spikes during grid loss, preventing breaker trips and chassis downtime.
Movable tabs and plungers let one PDU outlet securely accept both C14 and C20 plugs, reducing receptacle variety and installation complexity.
Direct PSU-to-board wiring removes PDB airflow blockage, cutting system cost and complexity while preserving redundant power options.
Pogo pins read conductive patterns on a backplane panel so cable modules can automatically identify drive bay locations despite flexible connector layouts.
A cabled OCP connector lets server modules mount in cooler, more accessible locations while keeping blind mating and one connector design.
Pre-positioned support members and quick-connect liquid adaptors align rack-mounted components while enabling reliable water cooling.
A wire-pulley cable carrier moves server-room cables across racks in one pull, cutting ladder repositioning, cable damage, and injury risk.
Short MOR switch links and an electrical-to-optical panel cut FEC demand, thermal load, and energy use while supporting higher rack bandwidth.
Integrated switching and identification circuits let cabinet-mounted devices report their installation position in real time without extra sensors.
Extendable modular supports in a containerized rack resolve monolithic structure limits, enabling flexible reconfiguration and space optimization.
Segmented power distribution board converts and routes electrical signals to server components.
An automated floor tile lift system raises tiles to a predetermined height, creating workspace under the raised floor without occupying valuable surface area.
Dual connectors on modular storage devices enable direct PCIe transfer, bypassing slow network bottlenecks in edge data centers.
Segmented conduits route cables through a dedicated structure, reducing clutter and improving airflow without occupying housing space.
A removable cover assembly provides a planar surface for vacuum hoists to securely lift heavy servers.
Longitudinal pushing motion of operating member guides engaging part to disengage from slide rail, enabling detachment in confined spaces.
Replaces manual configuration monitoring with automated ultrasonic detection to resolve real-time visibility bottlenecks during frequent equipment relocations.
Mounting frame accommodates battery box in idle disk drive space, resolving underutilized volume constraints.
Prefabricated unit structures roll along elevated support rails via carriage assemblies, reducing construction time and cost compared to stick build methods.
An elastic latch mechanism secures server modules by flexing independently under pressure, eliminating the need for screw fasteners during installation.
Adjustable flap seals in the column adapter close irregular gaps around pre-existing building columns to maintain hot and cold air separation.
Segmented side brackets and removable shelves with shovel lances accommodate varying rack depths without tools.
Ducted airflow guides cooling air through storage gaps, reducing structure-borne vibration and noise while improving server service life.
Segmented cooling circuits reduce power consumption by pre-cooling warm chimney air, lowering operational costs and energy usage.
Nested support portions pass through cover holes to prevent joint sagging and storage module jamming.
A pivotable housing box pivots away from the tray to expose hard disk drives.
Rack management controllers detect power receptacle connections to map equipment locations within server racks.
A pivotable lever mechanism with a spring-biased latch enables tool-less installation of node sleds into electronics chassis.
An elastic snap-fit carrier eliminates screw-based installation bottlenecks, enabling rapid tool-free assembly while maintaining connection stability.
A riser bracket uses sliding brackets to adjust height, resolving fit issues between full and half-size cards.
Modular cable cassettes replace PCB backplanes to eliminate trace distance limits and signal loss, enabling high-speed signal transmission.
Inclined shelf mechanism protects outdoor edge devices from rain and snow ingress during servicing.
Segmented sub storage units with local control circuits reduce communication cable distances to preserve signal quality while increasing storage capacity.
A fire-resistant server enclosure integrates a cold thermal storage device to maintain survivable temperatures during external heat events.
A cover interlock mechanism uses spring-loaded protrusions on a drawer to engage rack rails when the protective cover is installed.
Side-mounted locking components preserve panel area for high-power-density modules, resolving space conflicts through extraction and dimensionality change.
Segmented hinge and engagement mechanisms allow easy pivoting and removal of the door while preventing misplacement during limited visibility access.
Rotating the handle moves the sliding piece along chassis guide posts, resolving assembly complexity and reducing labor time.
Segmented air blocks manage varying cable sizes while maintaining airflow redirection, eliminating complex mechanical clips.
Standardized modular components allow universal integration into server computers of varying sizes, reducing design complexity and production costs.
Wave-powered generators supply direct current to a floating data center, eliminating shore-based infrastructure costs.
A leaf spring latch uses a wedge-shaped tooth to secure blade servers with minimal space.
Segmented latching mechanism enables tool-free internal component access, reducing maintenance time while maintaining cabinet stability.
Dynamic fan activation reduces power consumption and thermal footprint by cooling only occupied slots.
Orthogonal connectors reduce cable volume while two-phase immersion liquid cooling manages device temperature to lower total cost of ownership.