Elvantis Elvantis

Custom OEM Power Distribution Units Factories & Suppliers

High-Density Intelligent Rack PDUs Engineered for Global Enterprise Compute, AI Workloads, and Hyperscale Infrastructure

🌐The Global Landscape of High-Density Power Infrastructure

Adapting to the AI and HPC Power Demands

The rapid scale-up of Artificial Intelligence (AI), Large Language Model (LLM) training, and High-Performance Computing (HPC) environments has fundamentally changed the power requirements of modern data centers. Standard power configurations are no longer sufficient to handle high-density rack cabinets, which now regularly exceed 30 kW to 100 kW per rack. This transformation makes Custom OEM Power Distribution Units (PDUs) the essential backbone of reliable enterprise operations.

At Elvantis Mesh Systems Ltd., we recognize that off-the-shelf power strips cannot support these sophisticated environments. The coordination between high-density blade servers, redundant power supplies (PSUs), and cooling units requires rack PDUs equipped with intelligence, dynamic load balancing, and custom configuration interfaces to avoid costly downtime and optimize Power Usage Effectiveness (PUE).

  • Thermal Architecture Protection: Safeguard system components under high-density ambient temperatures.
  • Optimized Redundancy: Enable dual-feed A/B power configurations to guarantee zero-failover pathways.
  • Dynamic Power Monitoring: Get aggregate and outlet-level power utilization data in real-time.

The Industrial & Commercial Energy Challenge

Modern cloud providers and enterprise data center operators require strict adherence to national and global efficiency programs (such as Energy Star, EU Code of Conduct on Data Centre Energy Efficiency, and Green Grid standards). Inefficient power conversion or inadequate monitoring at the rack level leads to massive electricity leaks.

By integrating custom OEM PDUs tailored to the voltage profile of regional utilities (e.g., 208V in North America, 230V in Europe, or 415V three-phase configurations), operations can directly minimize line losses and harmonic distortion. This approach ensures maximum power delivery efficiency directly to the server input modules.

🛠️Custom OEM/ODM Engineering & Technical Customization

Every infrastructure deployment has unique space, voltage, and environment configurations. Discover how our engineering teams translate physical design challenges into functional, high-reliability PDU systems.

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Socket & Interface Topology

Configure layouts with variable IEC C13, IEC C19, or modern universal C39 outlets. Integrate high-retention lock systems to prevent accidental cord disconnection caused by vibration or maintenance activities.

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Intelligent Monitoring & Control

Choose from Basic, Metered, Monitored, or Switched topologies. Implement outlet-level power monitoring (kWh, kW, A, V) with +/- 1% billing-grade accuracy, enabling multi-tenant billing and detailed diagnostics.

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Circuit Protection & Safety

Equip custom PDUs with hydraulic-magnetic circuit breakers to prevent nuisance tripping in high-temperature racks. Add integrated surge protection devices (SPDs) and branch circuit monitoring for absolute safety.

Physical Form Factors

Whether your layout requires a 0U vertical PDU mounted in the rack's rear cable channel to save primary device space, or 1U/2U horizontal PDUs for localized distribution in compute nodes, our production systems can be customized to any physical form factor. Material selections include industrial-grade extruded aluminum chassis for optimal thermal dissipation and structural strength.

Hot-Swappable Controllers

For intelligent models, we use advanced hot-swappable Network Management Cards (NMC). This design allows operators to replace or upgrade network hardware and communication cards without interrupting power to the connected servers, eliminating scheduling difficulties for system maintenance.

2016
Established
$12M
Annual Export Revenue
850+
Supply Chain Partners
180+
R&D & Tech Staff
🏢Macro-Industry Custom Solutions

Providing reliable power solutions across multiple mission-critical sectors. Our custom OEM PDUs are designed for specialized applications.

AI Cluster & Supercomputer Centers

High-density clusters require three-phase 415V distribution to support server nodes configured with GPU matrices. Our custom PDUs manage phase balancing and feature fast-acting overcurrent protection to keep operations safe.

Hyperscale Cloud Data Centers

Engineered for high-volume deployment. These units feature lightweight chassis, rapid-connection busway integrations, and daisy-chained network monitoring. They help simplify infrastructure management while keeping costs under control.

Telecom & Edge Environments

Designed for compact enclosures. These space-saving 1U/2U configurations feature remote outlet switching, which allows operators to reboot locked equipment at remote tower sites without needing to dispatch local technicians.

🛡️Global Compliance & Localized Support

Strict Testing & Quality Benchmarks

Safety is the top priority for electrical distribution. Elvantis Mesh Systems Ltd. operates a robust quality assurance architecture. Our dedicated QC team of 35 professionals inspects all raw materials, sub-assemblies, and final products to ensure reliability under continuous high-load operations.

Every custom PDU undergoes rigorous factory testing, including full thermal cycling validation, high-voltage insulation tests, and network communication diagnostics. This structured approach helps ensure compliance with international standard regimes.

UL / cUL 62368-1
CE & RoHS
FCC Class A
TUV Rheinland

Regional Grid Integration

Power grids vary significantly across different regions. For example, North American deployments utilize split-phase or three-phase Wye configurations (120V, 208V, 480V), whereas EMEA regions rely on 230V/400V setups. APAC regions present their own unique grounding and surge requirements.

Our design teams analyze localized grid requirements to build custom PDUs that prevent load imbalances, handle voltage sags, and support regional electrical standards seamlessly.

This customized design approach reduces installation times and minimizes the risk of compliance failures during facility safety inspections.

🚀Technical Roadmap & Future Outlook

Adapting to Next-Generation Cooling & Power

As computing density increases, the industry is shifting toward direct-to-chip liquid cooling systems and immersive thermal environments. Standard power distribution methods must adapt. Our engineering team is currently developing specialized power blocks designed to integrate with liquid-cooled racks.

These advanced designs incorporate fluid-leak interlock safety triggers, enabling the PDU to automatically shut down power to specific server chassis if a coolant leak is detected. This feature helps protect expensive GPU infrastructure from water or coolant damage.

Smart Grid & AI-Driven Predictive Maintenance

The future of datacenter power lies in predictive maintenance. Our product roadmap includes integrating lightweight Machine Learning algorithms directly into the network management firmware of our intelligent PDUs.

By tracking tiny anomalies in current draw and micro-temperature shifts at the outlet level, the PDU can alert facility managers to potential power supply degradation inside the server. This allows team members to replace failing components before an actual service interruption occurs.

🏢About Elvantis Mesh Systems Ltd.

Elvantis Mesh Systems Ltd. (elvantismesh.com) is an industry-focused manufacturer of high-performance AI GPU servers, network equipment, and rack-level power integration designs. We specialize in building scalable compute and power infrastructure for artificial intelligence, high-performance computing (HPC), and enterprise data center deployments.

Established in 2016, we operate a specialized production and integration facility designed to maintain high quality control standards. With over 10 years of industry experience and 7 years of export history, we support enterprise clients across North America, Europe, the Middle East, and Southeast Asia.

Our dedicated R&D division of 180 engineers and technical professionals works on GPU server architectures, liquid cooling systems, and intelligent power distribution units. This focus on innovation is demonstrated by our rapid product development, including the release of approximately 120 new products over the past year.

Operational Quick Facts

  • Production Area: Approx. 380㎡ dedicated assembly & QA cleanrooms
  • Quality Control Team: 35 dedicated QC professionals
  • Supply Chain Capacity: 850 cooperative partners globally
  • Export Experience: 7+ Years serving global enterprise clients
  • Innovation Index: 120 New designs launched annually
Frequently Asked Questions (FAQ)
🔹What is the primary difference between basic, metered, and switched PDUs?
Basic PDUs provide standard electrical distribution without monitoring. Metered PDUs add a local LED/LCD screen to display current draw, helping to prevent overload conditions. Monitored PDUs feature a network interface for remote tracking, while Switched PDUs allow operators to turn individual outlets on or off remotely, facilitating remote server reboots.
🔹How do high-temperature ratings affect PDU performance?
The rear section of a server rack can reach temperatures exceeding 50°C (122°F), especially in high-density AI clusters. If a PDU is not rated for high temperatures, its internal circuit breakers may trip prematurely. Our custom OEM PDUs are engineered to operate reliably in environments up to 60°C (140°F) using thermal-resistant components and magnetic circuit breakers.
🔹Can you support custom input plug configurations and voltage standards?
Yes. We design and manufacture power distribution systems for regional electrical grids. We support IEC 60309 (16A, 32A, 63A) plug configurations, NEMA standard connections (L5, L6, L21), and terminal block designs. These options accommodate standard voltages ranging from single-phase 100-240V up to high-voltage three-phase 380-415V systems.
🔹How do custom locking outlets help reduce system downtime?
Accidental unplugging is a common cause of server downtime in crowded rack environments. Custom locking systems (such as high-retention sockets or integrated mechanical locks) secure standard IEC power cables in place, preventing them from being pulled out during maintenance.
🔹What remote communication protocols do your smart PDUs support?
Our intelligent units support industry-standard protocols including SNMP (v1, v2c, v3) for network monitoring systems, Modbus TCP/RTU for building management tools, HTTP/HTTPS for web-based access, and command-line interfaces (CLI) via SSH for automated script management.
🏭Our Assembly, QC, and Logistics Operations

A look inside our assembly operations, testing phases, and logistics systems, showing how we deliver infrastructure hardware to international markets.