Optimised for Multi-Access Edge Computing (MEC), Network Function Virtualisation, (NFV), Artificial Intelligence (AI) on Edge. 2x PCI-E 3.0 x16, 2x 10GBase-T ports with Intel X722 + X557.
NEBS Level 3 certified for Telecommunication. Ideal for Telecom Central Office and Data Center, 5G Core and Edge Computing, AI Inference and Machine Learning.
Configure Supermicro SuperServer 2029U-MTNRV-NEBS, optimised for 5G Core and Edge Computing, Cloud Computing, AI Inference and Machine Learning. Flexible LAN options.
Ideal for AI, Machine Learning, Cloud Computing, Edge and Network Function Virtualisation. Up to 2x PCI-E 5.0 x16 FHHL slots, 2x PCI-E 5.0 x8 HHHL slots. Redundant 800W Power Supply, 2x 2.5" hot-swap NVMe drive bays
Optimised for 5G Core and Edge, AI Inference and Machine Learning. Ultra short depth. 3rd Gen Intel Xeon SP. Redundant power.
Ideal for AI, Machine Learning, Cloud Computing, Edge and Network Function Virtualisation. Up to 2x PCI-E 5.0 x16 FHHL slots, 2x PCI-E 5.0 x8 HHHL slots. Redundant DC 800W Power Supply, 2x 2.5" hot-swap NVMe drive bays
NEBS Level 3 certified for Telecommunication. Ideal for Telecom Central Office and Data Centre, 5G Core and Edge Computing, AI Inference and Machine Learning, Network Functions, Virtualisation, Cloud Computing.
Configure Supermicro SuperServer 2029U-MTNRV-NEBS-DC, optimised for Cloud Computing, AI Inference and Machine Learning. Flexible LAN options.
Ideal for AI Inference and Machine Learning Network Functions, Virtualisation, Cloud Computing. Dual 10GBase-T LAN ports. Redundant power option.
Configure Supermicro SuperServer 1029GQ-TRT-NEBS-DC, optimised for Cloud Computing, AI Inference and Machine Learning. Dual 10GBase-T LAN ports.
Optimised for Multi-Access Edge Computing and AI Artificial Intelligence. 2 PCI-E 3.0 x16 (FHFL) slots. 9 GbE (1 port for management), 4x 10G SFP+, and 1 Dedicated IPMI LAN.
Optimised for Multi-Access Edge Computing (MEC), Network Function Virtualisation (NFV), Edge Computing and more. 2 PCI-E 3.0 x16. 9 GbE (one for Ethernet management), 4x 10G SFP+, 1 Dedicated IPMI LAN port.
Optimised for Multi-Access Edge Computing (MEC), Network Function Virtualisation (NFV) and Edge Computing. 9 GbE (one for Ethernet management), 4x 10G SFP+, 1 Dedicated IPMI LAN port.
Optimised for Multi-Access Edge Computing (MEC), Network Function Virtualisation (NFV) and Artificial Intelligence (AI). 2 PCI-E 3.0 x16 (FHFL) slots. 9 GbE (1 port for management), 4x 10G SFP+, and 1 Dedicated IPMI LAN.
Dual 4th Gen Intel Xeon Scalable processors, Ideal for AI, Machine Learning, Cloud Computing, Edge and Network Function Virtualisation. Up to 6x PCI-E 5.0 x16 FHFL slots, 2x PCI-E 5.0 x16 FHHL slots. Redundant 1300W Power Supply, 6x 2.5" hot-swap NVMe/SATA/SAS drive bays
Dual 4th Gen Intel Xeon Scalable processors, Ideal for AI, Machine Learning, Cloud Computing, Edge and Network Function Virtualisation. Up to 6x PCI-E 5.0 x16 FHFL slots, 2x PCI-E 5.0 x16 FHHL slots. Redundant 2000W Power Supply, 6x 2.5" hot-swap NVMe/SATA/SAS drive bays
Ideal for AI, Machine Learning, Cloud Computing, Edge and Network Function Virtualisation. Up to 6x PCI-E 5.0 x16 FHFL slots, 2x PCI-E 5.0 x16 FHHL slots. Redundant 1300W Power Supply, 6x 2.5" hot-swap NVMe/SATA/SAS drive bays
Ideal for AI, Machine Learning, Cloud Computing, Edge and Network Function Virtualisation. Up to 6x PCI-E 5.0 x16 FHFL slots, 2x PCI-E 5.0 x16 FHHL slots. Redundant 2000W Power Supply, 6x 2.5" hot-swap NVMe/SATA/SAS drive bays
Optimised for 5G Radio Access Network (RAN), Multi-Access Edge Computing (MEC) and Edge AI Inferencing, GR-487-CORE compliant, tamperproof design, 71 dBA noise.
IP65 enclosure for harsh outdoor environments. GR-3108-CORE / GR-487-CORE compliant. High-efficiency heat exchanger and 300W heater. Cabinet intrusion detection and self-diagnosis.
The massive advancements in broadband speed and reduction of latency in 5G networks, boosted by Edge computing, will change the ways in which we get around, work, play and interact with the world around us.
Open Hardware Platforms Will Enable Virtualised 5G Networks
5G networks are designed to leverage virtualisation and containers on open hardware platforms, causing a reduction in the dependence on legacy proprietary hardware.
The Radio Access Network (RAN) will be centralised and virtualised into server-based Centralised Units (CUs) and Distributed Units (DUs), minimising fixed-function hardware into Remote Radio Units (RRUs). Intelligent Edge servers will be able to support real-time applications with computing and AI inferencing.
4G Evolved Pocket Core (EPC) function will be replaced by 5G Core components running as virtualised network functions (VNFs) within data centres and in the cloud.
5G is the 5th generation of mobile networks, a big jump and evolution from its predecessor 4G. 5G has been designed deal with the exponential growth in data and connectively in todays world. 5G will begin working in conjunction with the existing 4G networks before evolving to completely standalone network in following releases and expansion.
5G enables faster speed, allowing you to access files, programs and remote applications directly. This will lead to an enhanced use of the cloud and all devices will depend less and less on internal memory. It will no longer be necessary to install a multitude of processors on some objects as computing will be able to be done on the Cloud.
Latency refers to the amount time between the moment you give an order on your device and the moment the action occurs. 5G will reduce latency to 10% of the latency currently experienced with 4G. Lowered latency will open up new opportunities. For example, surgical operations in which the surgeon can intervene a patient on the side of the world with the aid of precision instruments manage remotely will become possible.
5G allows for the number of devices that can be connected to the network to increase massively. Every connected device will have access to instant connection to the internet, exchanging information with each other in real time. The increased number of connected devices will allow for smart cities and autonomous vehicles.
5G enables the implementation of virtual networks (network slicing), create subnets, to deliver connectivity more adjusted to specific needs and significantly improve efficiency. The creation of subnetworks gives a part of the network specific characteristics, prioritising certain connections or varying latencies so they aren’t affected by possible network overloads.
Disaggregated servers based on Resource-Saving Architecture support data centres in the cloud and the virtualised 5G Core.
Multi-node Twin architecture and high-density Blade systems for reduced TCO and PUE
Extensive experience with virtualisation and container solutions
Highest-performing GPU servers for data centre machine learning/AI training
High-performance servers – powered by 2nd Gen Intel® Xeon® Scalable Processors – can be configured with FPGA accelerators for virtual RAN (vRAN), including O-RAN
Edge AI inferencing with GPU card options improves local decision-making for time-critical applications
Telecom-standard features including NEBS compliance, AC/DC power, and short-depth servers for central offices and micro data centres, plus IP65 ruggedized enclosures for outdoor installations
Compact Edge servers and gateways to manage IoT device deployments from the Cloud
Easily reconfigurable networking options to support virtually any installation
Wide range of VNFs for SD-WAN, uCPE and other solutions supported with software partners
Alle Broadberry Server- und Storage-Lösungen durchlaufen vor dem Versand aus unserem Lagerhaus einen 48-stündigen Testlauf. In Kombination mit diesem Prüfverfahren sowie den hochqualitativen, branchenführenden Komponenten stellen wir sicher, dass all unsere Server- und Storage-Lösungen den strengsten Qualitätsrichtlinien entsprechen, die an uns gestellt werden.
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