Ubiquiti 25GBase Direct Attach Cable - SFP28 - 3m

Article-No.:
195357
Manufacturer-No.:
UACC-DAC-SFP28-3M
EAN/GTIN:
0810010077127
WEEE Nummer
DE46285170
Technical specifications

General

Packaged Quantity
1

Cable

Network Cable Type
25GBase direct attach cable
Left Connector Type
SFP+
Right Connector Type
SFP+
Right Connector Qty
1
Left Connector Qty
1
Jacket Material
PVC

Dimensions & Weight

Length
3 m
Diameter
5,2 mm

Miscellaneous

Color
Black
Color Category
Black
Description
The Ubiquiti UACC-DAC-SFP28-3M is a 25GBase direct attach cable designed for efficient and reliable network connectivity. With SFP+ connectors on both ends, it ensures a secure connection for high-speed data transmission. The passive cable design eliminates the need for external power, making it an energy-efficient choice for network setups. Designed to operate within a temperature range of 0°C to 70°C, this cable is suitable for various environments, providing flexibility and durability. Constructed with a PVC jacket and a 30 American Wire Gauge (AWG), it offers enhanced protection and optimal performance for reliable data transfer. Ideal for data centers and enterprise networks, this cable is an essential component for seamless connectivity.
  • Efficient connectivity
    The 25GBase direct attach cable provides high-speed data transfer capabilities, ensuring efficient connectivity for demanding network environments.
  • Versatile design
    Featuring SFP+ connectors on both ends, this cable is designed to integrate into existing network setups and equipment.
  • Energy-saving performance
    The passive cable design does not require external power, contributing to energy savings in network operations.
  • Robust environmental suitability
    Able to operate in temperatures ranging from 0°C to 70°C, this cable is suitable for a variety of environmental conditions, making it adaptable for different applications.
  • Strong construction
    The PVC jacket combined with a 30 AWG offers protection and durability, ensuring reliable performance over extended periods.
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