IBM Voltage Module E880 Power 8 01AF563 00RR716 VRM-MIO-CJ
IBM POWER8 High-Density Voltage Regulator Module (VRM)
IBM POWER8 High-Density Voltage Regulator Module (VRM)
1. General Product Overview
The IBM 01AF543 / 01AF563 is an enterprise-class, heavy-duty Voltage Regulator Module (VRM) engineered exclusively for mission-critical IBM Power Systems built on the high-performance POWER8 processor architecture. This module drops directly into the specialized power plane sockets of IBM’s flagship enterprise-level computing nodes and expansion drawers. Its primary function is to deliver tightly regulated, low-ripple, high-amperage power to the multi-core processors and custom memory sub-systems, sustaining platform resilience across extreme virtualization and database workloads.
2. Technical Specifications
| Parameter | Specification |
| Brand | IBM |
| IBM Base Part Number (P/N) | 01AF563 |
| IBM FRU Part Number | 00RR716 |
| Component Type | Voltage Regulator Module (VRM) / Power Module Card |
| System Architecture Target | IBM POWER8 Enterprise Scale-Up Systems |
| Form Factor | Proprietary Hot-Plug Plug-in Card with integrated retention handles |
| Cooling Interface | Onboard high-density extruded aluminum pass-through heatsink |
| Pin Configuration | Multi-point heavy-duty power pins + dedicated low-voltage signaling logic row |
3. Hardware Compatibility & System Infrastructure
This high-capacity VRM is engineered specifically to align with high-end, heavy-density enterprise environments. It natively supports:
-
IBM Power System E880 / E880C (Machine Type-Models:
9119-MHE) -
IBM Power System E870 / E870C (Machine Type-Models:
9119-MME) -
IBM PCIe Gen3 I/O Expansion Drawer (Model:
EMX0/ Feature Code:EMX0)
Deployment Architecture Note: In the scale-up E870/E880 processor nodes and EMX0 expansion drawers, these VRMs are deployed in redundant ($N+1$) matrix banks. They are equipped with distinct blue mechanical retention clips that latch into the heavy backplane guides, ensuring clean contact pressure under continuous thermal cycles.










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