Brand: Eaton | Category: Rack PDUs
SKU: EATO-RPBGC030 | Part #: RPBGC030 | MPN: RPBGC030
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The Eaton Rack Power Module 30kW Three-Phase Busway from Eaton is enterprise-grade Rack PDUs hardware built for data centers. 30kW three-phase overhead busway system purpose-built for high-density GPU and AI rack deployments with modular power distribution architecture. Available in brand new condition. Eaton rack pdus products are trusted by enterprises and data centers worldwide. Available from Omnixon Global. Contact our sales team to request a quote.
| Brand | Eaton |
| Category | Rack PDUs |
| SKU | EATO-RPBGC030 |
| Part Number | RPBGC030 |
| Condition | New |
| Product Line | Rack Power Module |
| Model Type | 30kW Three-Phase Overhead Busway |
| Power Capacity | 30kW per busway section |
| Input Configuration | Three-phase, dual-source redundancy capable |
| Rated Voltage | 208V (Y/120V) or 380V (Y/220V) three-phase, 50/60Hz |
| Maximum Current Rating | 86.6A @ 208V three-phase; 45.6A @ 380V three-phase |
| Mounting Architecture | Overhead rail-mounted or in-frame integrated busway |
| Tap-off Points | Multiple configurable distribution points, 36-72 inch spacing standard |
| Conductor Material | Copper with tin plating for corrosion resistance |
| Distribution Method | Modular busway with individual circuit monitoring at each tap |
| Power Metering | Integrated per-tap real-time power monitoring with telemetry output |
| Outlet Configuration | C13/C19 or IEC 60309 tap-off connectors, tool-less or quick-connect options |
| Thermal Management | Open-frame design optimizes convective cooling in high-density environments |
| Redundancy | Dual independent busway runs supported for N+1 power path resilience |
| Monitoring & Control | SNMP/Modbus interface for datacenter management system integration |
| Certification | UL 6114-1, IEC 60439-1, RoHS/WEEE compliant |
| Environmental Operating Range | 0–55°C ambient; 5-95% non-condensing humidity |
| Installation Profile | Retrofit-compatible with standard 19-inch EIA rack structure; minimal floor space impact |
| Launch Quarter | Q2 2024 |