A floating tray and hook assembly let users release storage trays from a slidable lock, enabling hard disk access without opening the cabinet.
A support plate's embossed recesses tune cross-sectional moment of inertia to improve bending resistance while limiting material use.
Replacing heavy drawer slides with rolling assemblies helps computing nodes move smoothly, resist wear, and remain stable on a desk.
A liquid-liquid heat exchanger adds a second cooling circuit, matching temperatures to IT component demands and reducing wasted energy.
Modular server devices distribute CPU/GPU workloads and separate switch modules to reduce thermal density and simplify replacement.
This cabinet uses a movable, self-locking bracket to expose space under the support and simplify access to upper and lower devices.
A light-transmitting sealing assembly reveals operating status without compromising liquid-cooling enclosure integrity.
Isolated GPU servers and insertable switch modules distribute heat and let operators replace failed units without replacing an entire rack.
This case segments CPUs, GPUs, and switching hardware to address heat dissipation and replace failed nodes without replacing racks.
Flexible busway segments connect server rows to multiple PDUs, balancing loads and recovering up to 99% of stranded power.
A resilient retaining member and actuator lock computing devices in compact racks while allowing quick release for maintenance.
Parallel guide rails let liquid-cooled computing and power units be removed independently, preserving cooling while simplifying maintenance.
An integrated riser cage bracket supports the server top cover during transport, easing rack insertion and protecting components.
The chassis uses a fixed bracket and movable mounting bracket to expose expansion assemblies during accurate, efficient installation.
To address inefficient recycled-air cooling, this case uses open-loop heat removal with louver closure, exhaust control, and sprinklers.
Relocating the graphics assembly toward the chassis front preserves motherboard space for full-length display cards.
When server PSUs fail, a local BMC scales power consumption to available units and helps prevent circuit breaker trips.
Planar alignment features let a three-member handle accommodate heat sinks up to 20 mm longer without restricting assembly.
Integrated channels accept connectors, panels, seals, supports, and lighting, easing customized air-containment assembly in data centers.
Separate storage, expansion-card, and PSU modules extend AI and cloud-computing capacity without enlarging the host rack.
Modular storage, card, and PSU expansion eases PCIe limits in AI systems.
A pressure-resistant cabin combines hydraulic lifting, internal access, and monitoring for scalable underwater server maintenance.
Tight server storage engagement demands force; a pivoting handle and dual fixing elements simplify installation and ejection.
A telescoping network rack uses modular sub-racks, rails, and electronic access control to reduce wasted space and retrofit costs.
This case combines horizontal and vertical line boards to simplify air paths, reduce duct parts, and improve heat distribution.
This equipment rail uses pressed-in beads and a finger mounting bracket to replace welded gussets and bulb seals while routing cables.
This case uses prefabricated IT and cooling containers with hybrid air-liquid cooling to speed deployment and improve cooling efficiency.
Removing front vertical supports increases rack density, improves airflow, and lets chassis slide out for two-sided servicing.
A standardized floor track with multiple mounting-hole sets supports varied IT racks and utility components without redesign.
Alignment features and a planar cover give vacuum hoists a stable sealing interface for lifting servers with seams and embossing.
Angled channels redirect samples from multiple fan air columns to fewer detectors while bypass air preserves enclosure cooling efficiency.
Each sled bridges cold and hot water networks in the chassis, allowing one node to be serviced while others operate.
A fixed supporter and detachable spacer accommodate 1U and 2U server cases, reducing the need for separate boards and supports.
Modular plates, power bus bars, and liquid manifolds support EIA 19-inch and OCP 21-inch racks with blind-mated modules.
A handle-driven tray transmission moves connectors in perpendicular directions, simplifying rapid electronic device assembly and disassembly.
Separating power units into a utility space preserves IT rack volume and supports wall, ceiling, or floor mounting.
Variable coolant flow limits cooling power while protecting server temperatures.
A fan-driven external module routes container air through a liquid-linked heat exchanger, preserving sealing and reducing pollution.
Preconfigured bus segments let new power devices connect during expansion, avoiding dense cables and reducing downtime.
A recessed chassis-ear latch preserves front-side space while enabling easy detachment.
A slidable component and guiding-ramp plungers engage rack holes securely while enabling rapid, tool-free device removal.
This case integrates flip-chip substrates, metal sheets, and water-tight enclosures to cool dense server components with lower space use.
Movable frames and elastic fasteners adapt cabinet mounting spaces to varied server chassis sizes for quick, smooth access.
This case separates protected container space from heat removal through an external module, fan, and liquid-connected heat exchanger.
A dynamic rack coupling mechanism secures multi-RU devices across adjacent 1RU housings, reducing deployment complexity and rail waste.
Vertical slots and latches reposition the cable arm, clearing blocked rack slots during network device servicing.
This case uses a movable, directional service light in the chassis ear to improve hardware visibility while preserving access.
Adjustable straps and apertures secure varying cable counts, flatten the clip, and reduce vertical space.
This case shows how a cabinet controller consolidates PDU data, RFID identification, and single-IP access for rack assets.
Modular rack cartridges use discrete cable paths to connect appliances while reducing cable complexity and preserving rack space.