Klyvora Klyvora

Global Network Switch Manufacturer & Factory

OEM/ODM high-performance enterprise switches, data center core solutions, and robust computing interconnectivity frameworks optimized for high-bandwidth modern network payloads.

Pioneering High-Performance Compute & Network Architectures

Founded in 2016, Klyvora Node Technologies Ltd. has established itself as an industry leader in high-performance computing infrastructure. We specialize in AI GPU server systems, scalable compute clusters, and enterprise-grade data center networking systems. Headquartered in a state-of-the-art facility featuring a dedicated 320㎡ advanced testing and assembly block, we support fully integrated R&D, structural design, complex assembly, burn-in validation, and rigorous quality control operations.

Our commitment to excellence has powered our rapid growth, recording an annual export revenue between USD 8 million and USD 22 million. With over 6 years of direct export experience and 11 years of deep industry expertise, Klyvora provides highly optimized data routing, switching, and processing environments to global organizations looking to eliminate architectural bottlenecks.

By integrating physical layer intelligence, Layer 3 routing protocols, and custom high-density silicon platforms, we design hardware that does not just transmit data—it accelerates whole compute workflows. Our network switch systems are built to withstand the traffic density requirements of the modern cloud, ensuring continuous uptime and unthrottled throughput.

Klyvora Node Technologies Ltd. Facility and R&D Lab
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860+
Global Supply Partners
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180+
R&D System Engineers
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42
Quality Assurance Professionals
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86
New Infrastructure Releases

Macro-Level Networking and Computing Solutions

How high-density switching fabrics fuel artificial intelligence and cloud infrastructures globally

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AI and GPU Clustering Interconnects

Modern machine learning models, such as DeepSeek, require hundreds of GPU nodes to train efficiently. Standard network protocols generate latency bottlenecks. Klyvora designs custom L3 switches supporting RoCE v2 (RDMA over Converged Ethernet), allowing direct memory access between GPUs without CPU intervention, reducing training cycles and operational delays.

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Next-Gen Data Center Optimization

Enterprise data centers are migrating from legacy architectures to modular spine-leaf networking layouts. Our L3 optical switch solutions enable high-speed packet filtering, extensive MAC tables, and low-latency throughput to maintain high system throughput, preventing data queues and dropouts in large scale virtualization networks.

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Edge Computing and Telecommunications

As remote computational demands expand, industrial networks require localized edge devices with resilient networking architectures. Our switches feature wide thermal tolerance and robust packet scheduling, ensuring that remote telemetry, localized AI inferences, and IoT networks operate without latency bottlenecks.

Technology Roadmap & Future Outlook

The progression of high-bandwidth networking technologies towards next-generation systems

Standard 10G/40G Optic Implementations

Providing basic optical core frameworks, supporting legacy server structures with optimized Layer 3 switching and essential management features.

100G/200G RoCE v2 Acceleration

Deploying high-speed switching platforms utilizing silicon-optimized ASICs to meet the bandwidth challenges of early-stage AI clusters.

400G & 800G CPO Integration

Transitioning into Co-Packaged Optics (CPO) architectures. Integrating optical engines close to the switch silicon to minimize power usage and maximize port densities.

AI-Driven Congestion Scheduling

Implementing smart congestion control mechanisms (ECN/PFC) directly onto switch firmware, allowing real-time flow adjustment under massive workloads.

Quality Control Testing and Validation Area

R&D Rigor & Comprehensive Quality Assurance

At Klyvora, we recognize that a network switch is only as reliable as its weakest port. Our structured quality assurance system is powered by a team of 42 dedicated QC professionals. Using multi-stage diagnostic routines, we conduct thorough thermal performance profiling, hardware stress diagnostic sweeps, and packet-loss validation under maximum load environments to guarantee uninterrupted operation in real-world deployments.

Our R&D team consists of around 180 engineers focused on computing hardware optimization, advanced heat dissipation configurations, and specialized firmware adjustments. This deep engineering capability allows us to support custom chassis layouts, port positioning optimizations, and customized BIOS settings. Last year alone, we launched approximately 86 new products, reflecting our commitment to continuous development in AI infrastructure technologies.

Additionally, we work closely with an established global supply chain of over 860 partners. This vast supplier ecosystem ensures consistent availability of high-grade components—including advanced networking ASICs, enterprise motherboards, efficient power units, and liquid-cooling modules—allowing us to maintain fast production turnaround times even during global component shortages.

Global Deployments & Regulatory Compliance

Customizing hardware configurations to meet diverse regional requirements and application environments

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North American Enterprise Networks

Meeting strict FCC part 15 certifications and UL standards. We support enterprise financial networks with low-latency switching solutions optimized for high-frequency data transfers and dense virtual environments.

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European Digital Infrastructure

Fully compliant with CE, RoHS, and WEEE standards. We design energy-efficient hardware that matches the region's green energy objectives while maintaining robust security configurations for sensitive data handling.

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Asia-Pacific & Emerging Markets

Designing flexible hardware solutions built to perform in varying hot and humid deployment environments. We supply high-density optical switches that help scale telecom networks and cloud nodes across metropolitan areas.

Technical Questions & Integration Answers

Addressing core networking considerations and deployment scenarios for technical teams

What are the key benefits of using Layer 3 core switches over Layer 2 switches in AI compute architectures? +
Layer 2 switches forward traffic based on MAC addresses, which works well for small, local environments. However, in large compute environments and GPU clusters, Layer 3 switches manage routing decisions directly via IP addressing. This allows for path optimization (using ECMP - Equal-Cost Multi-Path), network segmentation to isolate traffic, and the mitigation of broadcast storms, ensuring efficient data routing between large processing clusters.
How does RoCE v2 (RDMA over Converged Ethernet) improve multi-node GPU compute workloads? +
RoCE v2 enables Remote Direct Memory Access (RDMA) over standard Ethernet networks, allowing network interfaces to copy data directly from one GPU's memory to another without routing it through the host operating system or CPU. This bypass reduces network latency, minimizes processor overhead, and provides high-throughput data transfers essential for large machine learning and neural network training workloads.
How does Klyvora ensure hardware reliability and low packet loss under heavy network loads? +
Our quality control team of 42 professionals subjects all network equipment to comprehensive diagnostics. This includes thermal chamber profiling to test component stability, packet-loss sweeps under maximum system load, and hardware diagnostics. Additionally, our switch firmware supports advanced flow-control features like Priority Flow Control (PFC) and Explicit Congestion Notification (ECN) to prevent network congestion and keep packet loss at zero.
Can Klyvora handle custom physical-layer configurations and OEM manufacturing? +
Yes. Backed by our R&D group of 180 engineers and a supply network of over 860 partners, we offer complete OEM/ODM options. We can customize port layouts (combining SFP+, QSFP28, and RJ45 ports), adapt the cooling solution (active fan, passive heatsinks, or liquid integration), and configure specialized management interfaces or pre-loaded configurations to match your network architecture.

Production Facility & Equipment Validation

Inside our testing laboratory, quality control department, and assembly lines

All Network Switch Products