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    MSN4700-WS2FC, NVIDIA® Mellanox Spectrum-3 Based 32-Port Ethernet L3 Data Center Switch, 32 x 400Gb QSFP-DD, Cumulus Linux™ Support for 1 Year, P2C Airflow

    MSN4700-WS2FC switch is the 4th generation of Spectrum switches, purpose-built for leaf/spine/super-spine data center applications. It provides port speeds spanning from 1GbE to 400GbE, enables connectivity to endpoints at varying speeds and carries a throughput of 12.8Tb/s, with a landmark 8.4Bpps processing capacity. It comes pre-installed with NVIDIA Cumulus Linux, a powerful open network operating system that enables advanced automation, customization, and scalability using web scale, making it ideal for web scale IT, cloud, hyperconverged storage, and data analytics applications.

    MSN4410-WS2RC, NVIDIA® Mellanox Spectrum-3 Based 24-Port Ethernet L3 Data Center Switch, 24 x 100Gb QSFP28-DD, with 8 x 400Gb QSFP-DD Uplinks, Cumulus Linux™ Support for 1 Year, C2P Airflow

    MSN4410-WS2RC switch is the 4th generation of Spectrum switches, purpose-built for leaf/spine/super-spine data center applications, ideal for building wire-speed and cloud-scale layer-2 and layer-3 networks. It provides port speeds spanning from 1GbE to 400GbE, enables connectivity to endpoints at varying speeds and carries a throughput of 8Tb/s, with a landmark 8.4Bpps processing capacity.

    MSN4410-WS2FC, NVIDIA® Mellanox Spectrum-3 Based 24-Port Ethernet L3 Data Center Switch, 24 x 100Gb QSFP28-DD, with 8 x 400Gb QSFP-DD Uplinks, Cumulus Linux™ Support for 1 Year, P2C Airflow

    MSN4410-WS2FC switch is the 4th generation of Spectrum switches, purpose-built for leaf/spine/super-spine data center applications, ideal for building wire-speed and cloud-scale layer-2 and layer-3 networks. It provides port speeds spanning from 1GbE to 400GbE, enables connectivity to endpoints at varying speeds and carries a throughput of 8Tb/s, with a landmark 8.4Bpps processing capacity.

    The Edgecore DCS240 is spine switch for high-performance data centers. The switch provides line-rate L2 and L3 switching across the 32 x QSFP56-DD ports, each supporting 1 x 400 GbE or 1 x 100 GbE, or via breakout cables 2 x 200GbE, 4 x 100 GbE, or 4 x 25 GbE. The DCS240 can be deployed as a spine switch supporting 100/400 GbE spine interconnects. This open network switch is loaded with the Open Network Install Environment (ONIE), which supports the installation of compatible Network Operating System soſtware, including the open source options, plus commercial NOS offerings.

    The Edgecore DCS510 is a spine switch for high-performance data centers. The switch provides line-rate L2 and L3 switching across the 32 x QSFP-DD ports, each supporting 1 x 400 GbE or 1 x 100 GbE, or via breakout cables 4 x 100 GbE or 4 x 25 GbE. The DCS510 can be deployed as a spine switch supporting 100/400 GbE spine interconnects. This open network switch is loaded with the Open Network Install Environment (ONIE), which supports the installation of compatible Network Operating System soſtware, including the open source options, plus commercial NOS offerings.

    The Edgecore DCS520 is a spine switch for high-performance data centers. The switch provides line-rate L2 and L3 switching across the 64 x QSFP56-DD ports, each supporting 1 x 400G QSFP56-DD, 1 x 100G QSFP28, 1 x 40G QSFP+, or via breakout cables 2 x 200G (2 x 4 lanes 50G PAM4), 4 x 100G (4 x 2 lanes 50G PAM4), 2 x 50G (2 x 2 lanes 25G NRZ), 4 x 25G NRZ, or 4 x 10G NRZ. The DCS520 can be deployed as a spine switch supporting 100/400 GbE spine to spine or spine to leaf interconnects. This open network switch is loaded with the Open Network Install Environment (ONIE), which supports the installation of compatible Network Operating System soſtware, including the open source options Open Network Linux, plus commercial NOS offerings.

    The Edgecore DCS560 is a high-performance, low-latency switch for high-performance data centers.

    Application Scenarios:

    • Spine Switch

     A next-generation, highest-capacity switch for data center spine use case. Breakout options include 2 x 400G, 4 x 200G, and 8 x 100G 

     per port, with a maximum of 320 logical ports. Offers reduced cost and power per bit.Scalable and enables migration to 400G leaf 

     connectivity in data centers.

    • AI/ML Clusters

     Standards-based (Ethernet) networking for AI/ML training, leveraging low latency and high-throughput RoCEv2.Reduces Job 

     Completion Time (JCT) using the cognitive routing and congestion management capabilities of the switch.Fully programmable 

     telemetry enables sophisticated on-chip applications for heightened network insight and efficient network management.

    The Edgecore DCS810 switch is a programmable leaf or spine switch for large scale data centers. In a 1RU form factor, the switch provides line-rate L2 switching and L3 routing, deep packet inspection, and traffic load balancing etc, across the 32 x QSFP-DD ports that support up to 32 x 400 GbE connections. The DCS810 can be deployed as a leaf switch supporting 25/50/100 GbE to servers, routers etc. with 100/400 GbE uplinks, or as a spine switch supporting 100/400 GbE leaf and spine interconnects. This open network switch is loaded with the Open Network Install Environment (ONIE), which supports the installation of compatible Network Operating System (NOS) soſtware, including open source options and commercial NOS offerings.

    R450C is a data center air cooling system used to increase the efficiency and productivity of servers and IT equipment. Its cooling capacity is up to 30 kW. It has a main power supply with a voltage of 380 V and a frequency of 50 Hz. You can select the water inlet and outlet temperature from 7 to 12 °C to 15 to 20 °C. This model of air conditioning is of the blue In Row type (chiller), meaning it is placed inside the row of servers and transfers cool air to the servers directly. R450C air conditioning system is designed for use in high-power data centers. You can connect it to thermal management systems. It is also possible to use communication tools such as modbus and lan for optimal control and management under BMS in this system. Its advanced functionality has made it an excellent choice in data center projects.

    The R900C is an advanced data center cooling device designed for use in large data centers. It benefits from water air conditioning technology (like in chiller) to cool the ambient air. It can cool down large and spacious corridors, thanks to its 60 kW capacity. The R900C has a flexible design allowing it to be installed in any location. It has a powerful ventilation system that uses cold air inlet and outlet to cool down the environment optimally.

    In addition, it has an intelligent control that allows the user to change the settings to optimize the performance and energy consumption remotely in the BAS. It works with a three-phase input of 380 V and a frequency of 50 Hz. The water inlet and outlet temperature can be adjusted in the ranges of 7-12 °C, 10-15 °C, 12-18 °C and 15-20 °C respectively.

    ColdLogik CL80 InRow Coolers ensure efficient thermal and energy performance by removing the heat generated by active equipment, preventing hot exhaust air entering space where it is not permitted.

    The InRow solution works in conjunction with racks in aisle containment and is available to suit both CAC and HAC configurations. Warm exhaust air passes over the InRow heat exchanger matrix, either by its own velocity or being pulled through via EC centrifugal fans mounted in the CL80. Heat is rejected to fluid and chilled air is passed back into the ambient space at predetermined temperature.

    ColdLogik CL80 InRow Coolers ensure efficient thermal and energy performance by removing the heat generated by active equipment, preventing hot exhaust air entering space where it is not permitted.

    The InRow solution works in conjunction with racks in aisle containment and is available to suit both CAC and HAC configurations. Warm exhaust air passes over the InRow heat exchanger matrix, either by its own velocity or being pulled through via EC centrifugal fans mounted in the CL80. Heat is rejected to fluid and chilled air is passed back into the ambient space at predetermined temperature.