This server separates drives, fans, and host components into three spaces to increase density while supporting cooling and maintenance.
A translating bracket and alignment features move dense lower rack trays into a service position without removing upper components.
Separate backplane and trigger pathways let instrument modules coordinate directly while preserving low-latency data transfer.
A detachable server frame uses sliding blocks to align and secure expansion cards, reducing vibration detachment and cable interference.
Stackable frames with detachable rear covers broaden fan bracket compatibility across server cabinet sizes and layouts.
Modular interfaces align mechanical, electrical, and airflow connections for scalable assembly.
Bulk capacitors supplement peak loads, helping avoid shutdowns without oversized power supplies.
This case combines timber framing, layered floor panels, and fire protection to lower carbon while preserving strength and insulation.
This case combines renewable power, water cooling, fiber optics, and external cable sensors for subsea data processing.
A standardized chassis uses frames and longitudinal partitions to fit different drive sizes while reducing inventory and mold costs.
Spaced box bodies and baffles separate intake and exhaust paths, improving heat dissipation and data center space use.
Opposite-side adapter subsystems simplify mounting multiple 19-inch devices in wider 21-inch racks while reducing packaging waste.
This case routes cool air through slide rail channels to rear server components, limiting preheating in dense chassis layouts.
An adapter frame enables vertical electronic-device placement, routed power wiring, improved heat dissipation, and reduced coolant loss.
Liquid-liquid heat exchange creates cooling levels for IT racks, reducing overcooling.
Separate liquid and electronics regions support high-density cooling while containing leaks and preserving serviceable conduit connections.
A rotating frame and sliding rail move electronic components outside the chassis, reducing interference during installation and removal.
A fan and cooling coil beneath the raised floor draw hot rack air through a localized path, supporting modular service and lower energy use.
UFCSS 3-D frames integrate raised-floor support with localized cooling, reducing air movement and simplifying installation.
This case mounts network cards on a cold plate and uses cable connectors to ease placement, cooling, and maintenance.
This power module case uses partition openings to contain hot air, fit in-row cooling units, and maintain equipment access.
Partitioned DC power and adiabatic cooling reduce distribution and cooling losses while enabling scalable modular deployment.
Movable boards switch a server rack baffle between transport, foot protection, and wind blocking modes without removal.
A detachable cage uses side boards, partitions, and cables to ease card installation while maintaining motherboard connectivity.
This case uses layered metal panels with offset apertures to protect data center cabinets while preserving cooling airflow.
A locked pivot member drives tray extraction, supporting automated chassis assembly while reducing rail and handle complexity.
A movable management unit and mating connectors simplify network switch maintenance without disturbing fan or power modules.