Velorix
Scalable processing systems engineered for zero-trust workloads and deep packet analysis.
Decoding the technical requirements and compliance mandates driving global enterprise deployment.
The convergence of generative AI pipelines, microservice deployments, and zero-trust cloud architectures has necessitated a profound evolution in physical security hardware. Legacy appliances fail to handle multi-gigabit throughput combined with continuous SSL/TLS decryption. Today's network borders require high-density, multi-socket server nodes with integrated accelerators to defend critical assets without introducing data bottlenecks.
International trade, local security requirements, and data residency laws (such as GDPR, HIPAA, and federal mandates) demand local customization of security firmware. Network appliances must support customized hardware security modules (HSMs), specialized BIOS builds, and secure boot technologies. Velorix provides robust OEM/ODM pipelines designed to integrate third-party encryption keys directly into the hardware configuration phase.
As networks expand to hybrid cloud models, hardware-level optimization is paramount. OEM/ODM partnerships allow system integrators and service providers to customize specific physical footprints, selecting the precise balance of thermal efficiency, processor architecture, and interface options. Whether deploying x86 or ARM computing fabrics, having bespoke systems engineered to custom standards represents a significant operational advantage.
High-Performance Computing Infrastructure & Customized AI Solutions Manufacturer
Founded in 2016, Velorix Intelligent Technology Co., Ltd. is a professional manufacturer specializing in AI GPU servers, high-performance computing systems, GPU clusters, and customized AI infrastructure solutions. Operating from a specialized integration and prototyping facility of 380㎡, we provide highly reliable and scalable computing platforms designed for AI training, inference, deep learning, cloud computing, and next-generation enterprise data center operations.
Leveraging over a decade of domain expertise and 6 years of international trade history, Velorix has successfully delivered advanced GPU server and hardware solutions to system integrators and researchers worldwide. Quality stands at the absolute core of our business model: our operations are governed by a stringent quality management framework supported by 42 dedicated quality control inspectors. Every server module undergoes a comprehensive suite of hardware inspections, including physical component verification, high-load thermal burn-in, power stability matrices, interface and network link validation, and finalized application benchmarks to ensure uninterrupted performance in mission-critical deployments.
Through our vast global network, we collaborate with over 850 strategic hardware suppliers and supply-chain partners. This deep integration allows us to deliver high-performance equipment and customize systems with absolute agility. Our design and system-engineering division features 135 veteran engineers focused on server architecture optimization, thermal engineering, and specialized hardware customization. In the last fiscal year alone, our commitment to iterative R&D led to the release of 168 new product variations and customizable solutions, addressing the fast-evolving ecosystem of AI-driven cybersecurity and deep learning infrastructure.
Navigating hardware features built for dynamic encryption, deep data inspections, and high thermal workloads.
Offload virtualization, routing, and crypto-processing logic directly to specialized SmartNICs and DPUs. This ensures primary CPU cores remain dedicated to core platform operations and logic processing, maintaining stable throughput.
Double the system data transfer rates with PCIe Gen 5 compatibility. Facilitate ultra-low latency communication between CPUs, storage elements, and expansion slots for near-instantaneous security inspections.
Mitigate computational thermal throttling with high-efficiency liquid cooling capabilities. Engineered to maintain continuous high-capacity operations while reducing the overall cooling footprints of modern data centers.
Our OEM/ODM solutions offer integration at the component level, establishing a hardware-based root of trust. By incorporating secure cryptoprocessors (such as TPM 2.0 compliant chips) directly into the motherboards of custom rack servers, Velorix prevents malicious firmware tampering from compromising server integrity. This level of physical assurance is vital for hosting sensitive deployments, AI inferencing operations (such as localized DeepSeek applications), and massive multi-tenant virtualization clusters.
Adapting hardware designs for highly specialized enterprise and defense networks.
In high-frequency environments, packet delays translate to significant financial risks. Velorix custom security nodes feature specialized high-bandwidth connectivity and optimized kernel configurations. These minimize traversal latencies, allowing inline intrusion analysis to occur within microsecond ranges without degrading overall connection quality.
Telecom installations require carrier-grade reliability under fluctuating thermal and power conditions. Our hardware platforms comply with NEBS Level 3 directives, ensuring stability during seismic shifts, extreme temperatures, and electromagnetic interference. Additionally, hot-swappable redunant power modules ensure continuous uptime.
Deploying edge nodes in remote installations requires rugged chassis, vibration-absorbent layouts, and advanced dust filtration systems. Our OEM/ODM capabilities adapt x86 architectures to withstand rough locations, allowing manufacturing environments and remote offices to inspect data streams locally prior to synchronization.
Modern public sectors prioritize digital sovereignty. Velorix designs custom security servers with completely audited component supplies and secure, local firmware deployment protocols. This transparency satisfies stringent government oversight, ensuring your infrastructure is immune to unauthorized access vectors.
From conceptual PCB layouts to mass deployment of global hardware infrastructures.
Partnering with an OEM/ODM provider is not merely about sourcing components; it requires establishing a robust, repeatable workflow. We have structured a development lifecycle designed to guide clients through design phases without sacrificing timelines or validation checkpoints:
Our solutions cater to various computing fields, bridging the gap between high-density GPU accelerators (such as the FusionServer G8600 V7) and high-density network appliances (such as the HPE ProLiant Gen12 nodes). By streamlining this pipeline under one engineering umbrella, we minimize production delays and eliminate multi-vendor integration conflicts.
Authoritative answers on OEM/ODM partnerships, customization limits, and logistical support.
We provide custom designs at multiple hardware layers. This includes custom branding (chassis colors, faceplate silk screening, custom packaging), motherboard component choices, custom BIOS layouts (such as disable/enable PXE boot, customized secure keys), power input configs (AC/DC variations), and specialized thermal solutions optimized for your target rack environment.
Every integrated unit undergoes strict testing, overseen by our team of 42 QC personnel. This includes temperature-controlled thermal cycling, high-utilization power stability testing, and simulated packet inspection loads to confirm consistent bandwidth and verify hardware performance prior to bulk packaging and delivery.
Yes, our systems are built on open x86 and ARM platforms, ensuring compatibility with major virtualization layers (such as VMware ESXi, Proxmox, KVM) and standard network operating systems (including pfSense, OPNsense, VyOS, and custom Linux installations).
Depending on client requirements, we manufacture systems to comply with CE, FCC, RoHS, and CCC standards. For carrier-grade network environments, we design motherboards and chassis that adhere to specific NEBS standards, guaranteeing reliability in critical infrastructure environments.
High-throughput storage and compute infrastructure optimized for advanced model analysis and threat detection.