ZPE Systems NSC PLUS 96-Port All Models
The NSC PLUS 96-port intelligent power distribution unit is engineered for enterprise data centers requiring advanced power management, granular outlet control, and comprehensive security monitoring. This managed PDU delivers real-time power analytics, remote outlet switching, and environmental monitoring across all 96 ports, making it ideal for organizations managing complex infrastructure with strict uptime requirements and energy efficiency mandates.
Whether you're deploying high-density server environments, managing multi-tenant colocation facilities, or maintaining mission-critical applications, the NSC PLUS 96-port platform provides the visibility and control needed to optimize power utilization, reduce operational costs, and prevent unexpected downtime.
Key Features
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96-Port Configuration — Full-capacity outlet management with individual on/off switching and real-time power monitoring per port
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Intelligent Power Management — Advanced load balancing, circuit-level monitoring, and predictive alerts to prevent overload conditions
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Remote Management & Control — Web-based interface and API access for centralized monitoring across distributed data center locations
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Environmental Monitoring — Integrated temperature and humidity sensors with threshold-based alerting for optimal cooling efficiency
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Security & Access Control — Role-based user permissions, audit logging, and encrypted communications for enterprise compliance requirements
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Outlet-Level Metering — Granular power consumption tracking per outlet for accurate chargeback and capacity planning
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Redundant Connectivity — Dual network ports and optional serial console for reliable out-of-band management
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Scalable Architecture — Daisy-chain capability and modular design supporting multi-unit deployments in large-scale environments
Technical Specifications
| Specification |
Details |
| Manufacturer |
ZPE Systems Inc |
| Model |
NSC PLUS 96-Port All Models |
| Part Number |
NSCP-T96R-STND-ALL-ESAD |
| Outlet Count |
96 Individually Controlled Outlets |
| Metering Capability |
Outlet-Level Power Monitoring (Watts, Amps, Voltage) |
| Management Interface |
Web UI, REST API, SSH, Telnet |
| Network Connectivity |
Dual Gigabit Ethernet Ports |
| Environmental Sensors |
Temperature & Humidity Monitoring |
| Security Features |
Role-Based Access Control, Audit Logging, SSL/TLS Encryption |
| Typical Applications |
Data Centers, Colocation Facilities, Server Rooms, Enterprise Infrastructure |
Frequently Asked Questions
What is an intelligent PDU and how does the NSC PLUS 96-port improve data center operations?
An intelligent PDU (Power Distribution Unit) provides granular power management and monitoring at the outlet level. The NSC PLUS 96-port enables data center operators to remotely control individual outlets, monitor real-time power consumption, set load thresholds, and receive alerts before capacity limits are reached — reducing downtime risk and optimizing energy efficiency across your infrastructure.
Can I monitor and control the NSC PLUS 96-port remotely?
Yes. The NSC PLUS 96-port features a web-based management interface, REST API, and SSH access for complete remote control and monitoring. You can switch outlets on/off, view power metrics, configure alerts, and manage user permissions from any authorized location, with full audit logging for compliance.
Is the NSC PLUS 96-port suitable for colocation and multi-tenant environments?
Absolutely. The NSC PLUS 96-port is purpose-built for colocation facilities and multi-tenant data centers. Its outlet-level metering enables accurate power billing per customer, role-based access control ensures tenant isolation, and comprehensive monitoring provides the visibility needed for SLA compliance and capacity planning.
What security features does the NSC PLUS 96-port include?
The NSC PLUS 96-port includes role-based user access control, encrypted SSL/TLS communications, detailed audit logging of all management actions, and optional out-of-band serial console access for secure emergency management independent of network connectivity.