Zyqora Zyqora

Custom OEM Network Interface Card Supplier & Suppliers

Next-Generation Ethernet Controllers, Interface Adaptors, & Customized NIC Fabrications for Modern AI Data Centers and Hyper-Scale Networks

High-Performance Connectivity Modules

Premium Ethernet connectors, high-speed transceivers, and optical modules integrated directly into custom Network Interface Card (NIC) assemblies.

Vertical RJ45 Jack without Magnetics

SS-7188VS-A-NF-50 HL-5202-88-111xxx XRJV-S-01-8-8-2 Vertical RJ45 Jack without Magnetics

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Low Profile RJ45 Connector With Leds

1368398-6 1368398-4 1368398-2 Tab up 10/100/1000 Base-t Ethernet Low Profile RJ45 Connector With Leds

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Low Profile Magnetic RJ45 Socket

Tab up Low Profile Magnetic RJ 45 Socket Shielded 1 Port 10G Female RJ45 Jack

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1G SFP Module 80km

SFP-GE-Z Compatible 1000BASE-ZX Optical Transceiver SMF Duplex LC Single Mode 1550nm 1G SFP Module 80km

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SMT RJ45 Connector

SMT RJ45 Male to Female Connector with LED 7498010210A

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Low Profile RJ45 Ethernet Connector

LPJK7001AGNL 100 Base-T Magnetics Modules Low Profile RJ45 Ethernet Connector

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10G SFP+ Transceiver

10GBASE-LRM SFP+ 1310nm 220m Duplex LC MMF Fiber Optical Transceiver Module

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10/100/1000 Base-T RJ45

J0G-0001NL 10/100/1000 Base-t Tab up Ethernet Low Profile RJ45 Connector With Leds

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Understanding Modern Network Interface Card (NIC) Design

In modern data-intensive ecosystems, the Network Interface Card (NIC) is no longer a simple physical-layer bridge. It is the core hardware layer responsible for line-rate data processing, offloading critical CPU calculations, and securing inter-server communications.

As virtualized workloads, containerized orchestration (Kubernetes), and artificial intelligence model training dominate enterprise datacenters, standard off-the-shelf NICs often fall short. They lack the thermal profiles, tailored firmware parameters, and dynamic routing capabilities required for highly specialized hardware environments.

Our custom OEM network interface card development answers this gap. By utilizing elite controller architectures (including chipsets from Intel, Broadcom, and Realtek) and marrying them to custom-configured physical interfaces—including vertical magnetic RJ45 jacks, SFP+ configurations, and high-density QSFP-DD interconnects—we engineer cards built for specific low-latency, high-availability missions.

  • Hardware-Level Customization: Tailoring layout architectures (PCIe Gen 3, Gen 4, and Gen 5) to fit custom chassis, blade servers, and space-constrained industrial appliances.
  • Firmware Lock-In Protection: Modifying EEPROM layouts, PXE boot configurations, MAC address pools, and subsystem IDs to guarantee absolute hardware compatibility and prevent vendor lockout.
  • Integrated Thermal Management: Engineering robust active-cooling or custom passive heat sinks to maintain performance profiles in high-density environments.
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Form-Factor Adaptability

From standard full-height PCIe host boards to Open Compute Project (OCP) 3.0 SFF cards, our OEM engineering team optimizes dimensional parameters to align with modern server form factors.

Offloading & Acceleration

Our custom NIC configurations support robust hardware offloads, including TCP/IP Checksum, Large Send Offload (LSO), Receive Side Scaling (RSS), and SR-IOV virtualization protocols to maximize throughput.

Future Trends in Network Interface Card Manufacturing

Hardware infrastructure is transitioning. The convergence of AI, 5G, and high-frequency transactions dictates the next decade of NIC technology.

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The SmartNIC & DPU Transition

Traditional NICs are evolving into SmartNICs and DPUs (Data Processing Units). Modern NIC architectures increasingly embed onboard processor cores (such as ARM or FPGA arrays) to execute SDN stacks, network security protocols (IPsec/TLS), and storage virtualization (NVMe-oF) directly on the interface card, freeing host CPUs for primary application compute.

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PAM4 & 800G Line-Rates

High-speed serial links are rapidly migrating from traditional NRZ signaling to multi-level PAM4 modulation. The demand for bandwidth in generative AI clusters is forcing the development of 400Gbps and 800Gbps network cards. Standard layout topologies must handle extreme signal integrity challenges and cross-talk mitigation over ultra-fine copper traces.

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Thermal Performance & Co-Packaged Optics

As power densities climb, thermal management on PCIe cards is paramount. The integration of Co-Packaged Optics (CPO) and silicon photonics directly onto the NIC PCB represents the future path, replacing traditional transceivers to reduce power loss and signal attenuation across standard board tracks.

Addressing Global Enterprise Sourcing Challenges

Procuring network interface cards for tier-one telecom operators, hyperscale datacenters, or defense-grade system integration requires navigating rigid operational variables. Our OEM business model minimizes risks through transparent engineering and high-velocity supply lines.

10+
Years Industry Experience
860+
Supply Chain Partners
168+
New Products Launched
18M+
Annual Export USD

Procurement Checklist We Fulfill:

  • Long-Term Lifecycle Stability: Guarantees on part-number availability for up to 7-10 years, avoiding the disruption of forced design modifications mid-deployment.
  • Vendor Interoperability validation: Pre-testing NIC compatibility across various hypervisor platforms (VMware ESXi, Proxmox, Microsoft Hyper-V) and physical host configurations (Dell PowerEdge, HPE ProLiant, Inspur servers).
  • Custom Firmware Profiles: Tailoring subsystem IDs and PCIe Class Codes to match legacy operating system requirements or proprietary orchestration software stacks.
  • Component Traceability: Strict quality control showing supply verification for every PHY, oscillator, controller chip, and PCB substrate layer.

Custom NIC Solutions for Every Vertical

Different markets demand different performance parameters. We optimize our network interface cards to deliver maximum performance where it is needed most.

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Hyperscale Cloud & Datacenters

High density is the primary constraint. We deliver customized OCP 3.0 Network Cards designed for low thermal footprints and high efficiency. They feature multi-port 25G SFP28/50G/100G interfaces with advanced hardware acceleration protocols like RoCE v2 (RDMA over Converged Ethernet) and VXLAN offloads to maximize tenant VM density.

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Telecom & Edge Orchestration

Industrial temperature ranges and strict synchronization are vital. For carrier networks, our NICs integrate high-precision IEEE 1588v2 PTP (Precision Time Protocol) and SyncE (Synchronous Ethernet) clock modules. This ensures microsecond precision synchronization across cell tower connections and edge computing devices, packaged in a hardened enclosure.

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High-Frequency Trading (HFT)

Every nanosecond counts. For financial trade desks, standard TCP/IP stacks introduce unacceptable latency. Our customized network adapters offer bypass kernels (DPDK compatibility) and customized hardware processing units. This reduces host-to-wire transit latency down to sub-microsecond scales, giving proprietary algorithms an essential speed advantage.

Rigorous Testing, Local Support & Compliance

Every batch of network interface cards and integrated connectivity adapters undergoes rigorous evaluation protocols before leaving our facility.

Our dedicated quality assurance framework spans multiple checkpoints. With 42 quality control professionals, we ensure that both standard connectors and custom OEM network interface boards perform reliably in stressful operational contexts. We conduct comprehensive layout diagnostics, impedance matching validation, signal integrity simulations, and thermal profiling.

Whether exporting to North America, Europe, or the Asia-Pacific region, compliance remains a key pillar. All components adhere to RoHS, REACH, CE, and FCC guidelines, guaranteeing seamless importation, compliance with local green initiatives, and trouble-free operations inside public or enterprise telecom networks.

🛡️ Hardware Verification Pipeline

  • Incoming Material Inspection (IQC): Validating PHY chips, multi-layer PCBs, oscillators, and copper alloy pins.
  • Impedance & Signal Integrity Testing: High-bandwidth oscilloscope validation to verify PCIe lane speeds and trace noise margins.
  • Thermal Stress Testing: Operating the network adapters in elevated ambient temperature chambers under full load for extended periods.
  • Multi-Vendor Interoperability: Testing the adapters in live network setups with switches from Cisco, Juniper, Arista, and Huawei.

High-Capacity Connectivity Interfaces

Discover our comprehensive collection of optical modules, high-frequency SFP+ units, and magnetic jacks engineered for seamless OEM system design.

25G SFP28 SR 100m

Duplex LC MMF Optical Transceiver Module Multimode 850nm 25G SFP28 SR 100m

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Dual Ports RJ45 Magnetic Jack

62F-1204GYD2NL JX80-0037NL 1x2 Dual Ports 10/100 Base-t Ethernet RJ45 Magnetic Jack With Leds

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25G SFP28 LR 10km

Single Mode 1310nm 25G SFP28 LR 10km Duplex LC SMF Optical Transceiver Module

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400G DR4 QSFP-DD

400G DR4 QSFP-DD PAM4 1310nm 500m MTP/MPO-12 APC SMF Optical Transceiver Module

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10G SFP+ Copper RJ45

SFP-10G-T-X 10GBASE-T 10G SFP+ Copper RJ45 30m Transceiver Module

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Cisco Compatible 10/25G SFP28

Cisco SFP-10/25G-CSR-S Compatible 10/25G CSR SFP28 850nm 400m Duplex LC MMF Optical Transceiver Module

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Low Profile Female RJ45 Connector

L8AL-1X1T-32A 10/100/1000 Base-t Magnetic Ethernet Low Profile Female RJ45 Connector Without Leds

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2.5G SFP Transceiver

2.5GBASE-LX Single Mode 1310nm SFP 2.5G 2km Dual LC Optic Transceiver Module

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Future-Ready Custom NIC Roadmap

We design interface cards designed to seamlessly scale with the upcoming generation of computing buses and network speeds.

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PCIe Gen 6 Integration

With bandwidth reaching 64 GT/s per pin and utilizing PAM4 signaling, PCIe Gen 6 is the next key architectural upgrade. We are designing custom NIC layouts to manage this high transmission density while maintaining low trace losses.

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Co-Packaged Optics & Silicon Photonics

To combat heat build-up and optical conversion losses in external transceivers, our long-term R&D path includes mounting optical engines directly on the network board, providing a direct optical pathway to the ASIC.

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Enhanced MACSec Security

As threat vectors target physical backplanes, line-rate encryption is crucial. We are integrating hardware-level MACSec (IEEE 802.1AE) engines into our custom layouts to encrypt data in transit without reducing line-rate throughput.

Frequently Asked Questions

Get answers to critical design, architectural, and supply-related questions regarding our custom OEM Network Interface Cards.

What customization options are available for OEM Network Interface Cards?

We offer extensive customization across multiple levels: physical layout modification (standard PCIe, low-profile, OCP 3.0, or custom proprietary dimensions), connector selectability (vertical or horizontal RJ45, SFP+, SFP28, SFP56, QSFP28, or QSFP-DD), custom firmware parameter coding (Vendor and Device IDs, MAC address block allocation, Subsystem ID settings), thermal sink optimization, and custom logo branding and packaging.

Do your custom network cards support SR-IOV and DPDK capabilities?

Yes, all our high-performance enterprise and datacenter network adapters built on Intel or Broadcom controller architectures fully support Single Root I/O Virtualization (SR-IOV). This bypasses the hypervisor layer for virtual machine communications, and the Data Plane Development Kit (DPDK) for high-speed packet processing, minimizing host overhead.

How do you ensure compatibility with standard third-party hardware vendors?

Our engineering labs maintain a diverse matrix of enterprise servers (including Dell, HPE, Cisco, Lenovo, and Inspur) running various operating systems and hypervisors. We verify each NIC configuration through regression testing to ensure that PCIe initialization, driver loading, and packet transfer metrics operate correctly.

What is the typical lead time for a custom OEM/ODM NIC engineering run?

For basic configurations (such as firmware modification, customized brackets, and branding), engineering validation can be completed within 2 to 3 weeks. For complex layout revisions (involving customized multi-layer PCB design or custom thermal sinks), design validation, prototyping, and pilot production runs typically take 6 to 10 weeks, depending on complexity.

Are the network adapters compatible with both fiber and copper cabling standards?

Yes. Depending on the physical ports configured, our adapters support traditional copper RJ45 links, SFP+ active/passive Direct Attach Copper (DAC) cables, or optical transceiver links (such as SFP28 SR/LR, QSFP28, and QSFP-DD) over single-mode or multi-mode fiber runs, depending on distance and bandwidth requirements.

Zyqora Optical Technologies Co., Ltd.

Founded in 2016, Zyqora Optical Technologies Co., Ltd. is a professional manufacturer and supplier of high-performance optical transceivers and fiber connectivity solutions for global data center, telecom, enterprise network, and cloud computing applications.

With a modern production facility covering 386 square meters, Zyqora specializes in the design, development, manufacturing, and testing of optical communication products, including SFP, SFP+, SFP28, QSFP28, QSFP-DD, OSFP, AOC, and DAC solutions. Our products are engineered to deliver reliable performance, scalability, and seamless compatibility with mainstream networking platforms.

Over the years, Zyqora has established a strong international presence, achieving annual export revenue exceeding USD 18 million. Backed by 8 years of export experience and 10 years of industry expertise, we serve customers across North America, Europe, Southeast Asia, the Middle East, and Latin America.

Quality is at the core of everything we do. Our manufacturing process is supported by comprehensive quality assurance procedures, including incoming material inspection, optical performance testing, aging tests, compatibility verification, and final product inspection. A dedicated team of 42 quality control professionals ensures that every product meets international standards and customer expectations.

As a company with both manufacturing and international trading capabilities, Zyqora has built a reliable supply network with more than 860 supply chain partners, enabling efficient sourcing, stable production, and flexible delivery schedules.

Our primary customers include telecom operators, data center providers, system integrators, network equipment distributors, and enterprise IT solution providers worldwide. To support evolving market demands, we maintain a strong research and development team focused on innovation and product optimization.

Zyqora offers comprehensive OEM and ODM services, including customized labeling, firmware coding, packaging design, and product specification development. Last year alone, the company successfully launched 168 new products to meet the growing requirements of next-generation network infrastructures.

Our R&D department consists of 65 experienced engineers specializing in optical communication technologies, high-speed transmission systems, and network interoperability solutions. Through continuous innovation and strict quality management, Zyqora remains committed to providing cost-effective, reliable, and future-ready optical networking products for customers around the world.

Zyqora – Connecting Networks with Speed, Reliability, and Innovation.

Corporate Strengths

  • R&D Excellence: 65 engineers focused on high-speed transmission dynamics and device optimization.
  • Global Scale: Exporting to North America, Europe, Southeast Asia, the Middle East, and Latin America.
  • Agility & Reach: Direct relationships with 860+ supply chain nodes for stable manufacturing output.
  • Strict Quality Control: 42 QC professionals executing comprehensive inspection and aging tests.
Zyqora Production Facility
Zyqora High-Speed Testing
Zyqora Quality Control Laboratory
Zyqora Assembly & Packaging Center