Specifications: Adjusts from 12.75" to 21" / 323.8mm to 533.4mm
Features: Network switches, load balancers, and routers typically sit at the top and back portion of the rack. This placement makes it difficult for cold air to travel from the front of the rack to the air intakes of the network switch equipment, increasing chances of failure over time. SwitchAir helps prevent failure by channeling cool air from the front of the rack to the air intakes regardless of where the equipment is mounted.
Benefits
- Reduces the chance of network switches overheating by directing cool air to device intakes.
- Reduces the likelihood of premature equipment failure due to high intake temperatures.
- Improves equipment efficiency by providing network equipment with the same cold aisle temperature as other devices in the rack.
- Decreases wrap around hot airflow from the hot aisl...
Computer Connections: Ports: 4
DP/HDMI Univ Video (1): 2
Keyboard and Mouse: 1 x USB 2.0 Type B
DPP - USB 2.0 Type B: 1
Analog Audio: 1 x 3.5mm Speaker
Video Resolution: UHD 4K (3840x2160) @ 60Hz
Console Connectors: DP/HDMI Univ Video (1): 2
Keyboard and Mouse: 2 x USB 2.0 Type A
DPP - USB 2.0 Type A: 1
Analog Audio: 1 x 3.5mm Speaker
Features: Quick, real-time view of parametric data and system statuses.
Prompt alarm notification for fast event resolution.
Know environmental conditions of your data center for informed, efficient decision making.
Flexible communication regardless of device protocol.
Peace of mind knowing data is transported in a secure manner.
Save time configuring and updating firmware on managed devices.
Specifications: Adjustment range 7.63" to 11.63" / 193.8mm to 295.4mm.
Features: The Vertiv Geist SwitchAir- SA1-01002 is a passive 1U airflow management device for switches with rear air intake (non-port side). Channels provide a dedicated path for cold aisle air to flow to the intake of the switch using the on-board fans of the network devices to pull cool air from the front of the cabinet. The SwitchAir also creates a barrier preventing recirculation of hot exhaust air from the hot aisle from entering switch intakes.
Reduces the chance of network switches overheating by directing cool air to device intakes.
Reduces the likelihood of premature equipment failure due to high intake temperatures.
Improves equipment efficiency by providing network equipment with the same cold aisle air temperature as other devices in the rack.
Decreases wraparound hot airflow fr...