🌐 ZNYX Networks ZX5000 Modular Ethernet Switch
The ZNYX Networks ZX5000 is a high-performance modular Ethernet switch designed for mission-critical network environments. Built with industrial-grade reliability and flexibility, it delivers scalable connectivity for telecom, defense, and industrial automation applications. The ZX5000 combines advanced Layer 2 and Layer 3 switching functions with low-latency performance, making it an essential backbone solution for high-speed, data-intensive infrastructures.
The modular design allows network architects to customize port configurations, optimize throughput, and integrate redundant components for maximum uptime. It supports both copper and fiber modules, ensuring seamless integration across diverse industrial networks and data centers.
📊 Technical Data / Datasheet
| Parameter | Specification |
|---|---|
| Manufacturer | ZNYX Networks |
| Model | ZX5000 |
| Device Type | Modular Gigabit Ethernet Switch |
| Switching Capacity | Up to 320 Gbps non-blocking |
| Forwarding Rate | 240 Mpps |
| Ports | Up to 64 × 10/100/1000 Mbps or 16 × 10GbE |
| Expansion Slots | 4 modular interface slots |
| Power Supply | Dual redundant hot-swappable units (AC or DC options) |
| Input Voltage | 100–240 VAC / -48 VDC |
| Cooling | Redundant front-to-back airflow fans |
| Operating Temperature | 0°C to +55°C |
| Storage Temperature | -40°C to +85°C |
| Relative Humidity | 5%–95% non-condensing |
| Management Interfaces | Console, SSH, SNMPv3, Web GUI |
| VLAN Support | IEEE 802.1Q, 4K VLANs |
| Routing Protocols | OSPF, RIP, BGP, VRRP |
| QoS Support | IEEE 802.1p, DiffServ |
| Dimensions | 440 mm × 310 mm × 44 mm (1U) |
| Weight | Approx. 8.5 kg |
| Compliance | CE, FCC Class A, NEBS Level 3 |
| MTBF | >150,000 hours |
⚙️ Product Description
The ZNYX ZX5000 delivers superior networking performance through its modular, high-speed architecture. Each slot supports swappable interface modules, enabling engineers to design network topologies tailored to application requirements. The system’s robust backplane ensures non-blocking throughput for demanding real-time data transfer, essential for critical control networks and data aggregation layers.
Advanced Quality of Service (QoS) and VLAN segmentation allow fine-grained traffic management across multiple domains. With support for Layer 3 routing protocols such as OSPF and BGP, the ZX5000 can function as a core routing platform or as an intelligent edge switch. The integrated redundancy mechanisms—dual power inputs and failover fan systems—provide the resilience required in continuous industrial operation.
Built from high-durability components, the ZX5000 maintains stability even in harsh electrical or thermal conditions. Its intelligent management suite enables administrators to monitor link health, throughput, and latency in real time, ensuring proactive fault handling and optimal network utilization.
🛠️ Installation and Maintenance
Installation of the ZX5000 switch is straightforward, supporting both rack-mounted and chassis configurations. Each module can be inserted or replaced without powering down the system, enabling non-disruptive maintenance.
To maintain peak performance, regular firmware updates and configuration backups are recommended. Cleaning air filters and verifying power supply health every six months will extend the switch’s service life. Network engineers can monitor system parameters through SNMP traps, Syslog data, or the intuitive web interface.
Periodic testing of redundant modules ensures failover efficiency remains optimal. LED indicators on each port provide immediate status visibility for link, activity, and speed.
🏭 Industrial Application News
In today’s rapidly evolving industrial automation landscape, high-speed Ethernet switching has become the cornerstone of Industry 4.0 connectivity. The ZNYX ZX5000 aligns with this shift by supporting deterministic data transmission across automation and control systems.
As industries move toward edge computing and real-time data analytics, switches like the ZX5000 play a vital role in maintaining synchronization between field devices and supervisory control systems. The growing adoption of 10GbE in factories, energy plants, and transportation hubs reflects the demand for resilient and scalable network backbones.
Leading manufacturers are also integrating advanced cybersecurity protocols in network hardware, and the ZX5000’s support for SSH and SNMPv3 ensures secure communication in sensitive environments. Its flexible architecture makes it a preferred solution in defense communications, oil & gas control systems, and large-scale automation projects.
💡 Key Features
- ✅ Modular and scalable port configuration
- ✅ High switching capacity up to 320 Gbps
- ✅ Dual hot-swappable power supplies for redundancy
- ✅ Intelligent QoS and VLAN traffic control
- ✅ Secure management via SSH and SNMPv3
- ✅ Layer 3 routing capability for flexible deployment
- ✅ Redundant cooling design for 24/7 uptime
📦 Applications
- Data center backbone and aggregation layers
- Industrial automation and control systems
- Energy distribution and smart grid infrastructure
- Transportation communication networks
- Military-grade and defense communication platforms
🔗 Similar Product Recommendations
| Model | Description | Manufacturer | Link |
|---|---|---|---|
| ZNYX ZX2000 | Compact 24-port Gigabit Ethernet switch | ZNYX Networks | https://www.dcsplcsystem.com/ |
| ZNYX ZX3000 | Layer 3 managed Ethernet switch | ZNYX Networks | https://www.dcsplcsystem.com/ |
| ZNYX ZX7000 | Advanced 10GbE modular network core switch | ZNYX Networks | https://www.dcsplcsystem.com/ |
| ZNYX ZX10000 | Carrier-grade high-capacity network switch | ZNYX Networks | https://www.dcsplcsystem.com/ |
| ZNYX ZX2100 | Compact industrial edge switch | ZNYX Networks | https://www.dcsplcsystem.com/ |
📘 Conclusion
The ZNYX Networks ZX5000 embodies strength, scalability, and intelligence in modern Ethernet switching. Designed for enterprise and industrial-grade networks, it provides exceptional throughput, robust redundancy, and flexible configuration. Its reliability under pressure and future-ready design make it an excellent choice for network engineers seeking uncompromising performance in mission-critical operations.

