A chassis design uses a mid-plane power board to separate regions for networking modules and fan trays.
Segmented operative and connecting parts reduce handle volume above fan frames while maintaining operational ease through dynamic rotation.
Color-based locking mechanism resolves trade-off between quick insertion and electrical reliability in IT infrastructure.
Rotating levers engage grooves on expansion components to eliminate complex trays, reducing mechanical complexity while ensuring secure retention.
Segmented U-shaped plates maintain static pressure by restricting bypass air through modular cable pass-throughs.
Segmenting rack and utility batteries eliminates oversized diesel generators, reducing fuel waste and emissions while ensuring reliable data center uptime.
A modular device connector system uses interlocking rack-side and device-side support structures to join supply cables with electronic devices.
Patch panel uses linearly movable hooks and a lever arm to enable single-person installation in space-constrained racks without vertical clearance.
A rotatable latch and purchase system provides mechanical advantage for extracting information handling resources.
Liquid-liquid heat exchanger circulates dielectric oil to remove heat from computing equipment in an immersion tank.
Isolated power and signal units in each module prevent cross-module failure propagation, maintaining data communication reliability.
Nested rails in a slide rail assembly extend displacement distance for high-density server chassis mounting.
Segmented bezels with modular locks resolve the trade-off between hardware access and theft vulnerability.
Segmenting terminal connectors from inline blocks relocates hardware to chassis sides, reducing depth requirements while maintaining electrical connectivity.