Specifications: Standards and Protocols: IEEE Std 802.3, 802.3ab, 802.3bz, 82.3an
Power Supply: 3.3V
Max. Cable Length:
- 100BASE-TX: UTP cat .5 or above (max. 100m)
- 1000BASE-T/2.5GBASE-T/5GBASE-T: UTP cat.5e or above (max. 100m)
- 10GBASE-T: UTP cat.6a or above (max. 30m)
Data Rate: 10.3 Gbps
Port Type: 1 x 10G RJ45 Port
Safety & Emission: FCC, CE, RoHS
Environment:
- Operating Temperature: 0 - 70 °C (32 - 158 °F)
- Storage Temperature: -40 - 85 °C (-40 - 185 °F)
Features: Support 10GBASE-T, 5GBASE-T, 2.5GBASE-T, 1000BASE-T, and 100BASE-TX
Transmit data up to 30m* at 10 Gbps (UTP cat.6a or above)
Support DDM (Temperature and Voltage)
Hot-Pluggable SFP+ Footprint Features
Support TX Disable function
Commercial Product Operating Temperature Range: 0-70°C
Fully Metallic Enclosure for Low EMI
Specifications: Ethernet:
Ethernet Ports: 5
Ethernet Speed: 10/100 Fast Ethernet
PoE: PoE+ 802.3at Type 2
Power:
Power Input: 44V - 57V DC Redundant DC Dual Power Inputs, reverse polarity protected
PoE Power Budget: 90W @ 70?
General:
Operating Temperature Range: -40°C to +70°C / -40°F to +158°F
Storage Temperature: -40°C to +85°C / -40°F to +185°F
Form Factor: Embedded
Power Consumption: 4 Watts Max : 91mAmps@+44VDC/70mAmps@+57VDC
Features: Allows power and data to be combined on the same Ethernet cable
Ports 1-4 PoE+ capable
Fully compliant to IEEE 802.3af/at
PoE Power Budget: 90W @ 70°C
Redundant dual power inputs: +44V to +57V DC
Industrial operating temp range -40°C to +70°C / -40°F to +176°F
Specifications: Adjustment range 10.63" to 14.63" / 254.00mm to 371.6mm.
Features: The Vertiv Geist SwitchAir- SA1-01002L is a passive 1U airflow management device 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 t...