GE Power Conversion P110-6152 Advanced Micro Controller (AMC2)
GE Power Conversion P110-6152 Advanced Micro Controller (AMC2)
1. Product Introduction / Overview
The GE Power Conversion P110-6152 is a high-performance industrial controller belonging to the Advanced Micro Controller 2 (AMC2) series, originally developed by Converteam (now GE Power Conversion).
Designed to operate as a core processing engine in complex industrial automation, dynamic positioning (DP), high-availability drive systems, and power generation control, the P110-6152 integrates 5 high-speed Ethernet communication ports alongside an onboard Profibus Master interface. This model provides precise control execution, multi-network protocol routing, and fieldbus master control without requiring external interface converters.
2. Technical Table
| Parameter | Technical Specification |
| Manufacturer | GE Power Conversion / Converteam |
| Part Number / Model | P110-6152 (AMC2 Series) |
| Processor Core | Intel Celeron-M @ 600 MHz |
| System Memory (RAM) | 256 MB DRAM |
| Storage Memory | 256 MB CompactFlash (Solid-State Drive) |
| Operating System | Embedded RTOS / Windows XP Embedded |
| Power Supply Voltage | 24 V DC (±20% tolerance, range: 19.2 V DC to 28.8 V DC) |
| Nominal Current Consumption | ~ 0.9 A @ 24 V DC |
| Ethernet Interfaces | 5 × RJ45 Communication Ports (Integrated LANs) |
| Fieldbus Controller | 1 × Integrated Profibus Master Port |
| Serial Interfaces | 4 × RS-232 onboard ports |
| USB Interfaces | 2 × USB ports (with Yamaichi latching system) |
| Internal Expansion | 4 × PMC / PC104+ hardware expansion slots |
| Cooling Method | Fanless passive thermal dissipation |
| Enclosure Dimensions (W×H×D) | 234 mm × 206 mm × 120 mm |
3. Environmental Tolerance Conditions
Operating Temperature: Tested for passive cooling operation up to 70 °C inside industrial control panels.
Vibration & Mechanical Shock: Compliant with IEC 61131-2 / IEC 1131-2 standards, rated to withstand up to 15 g mechanical shock.
Relative Humidity: 5% to 95% non-condensing.
Cabinet Enclosure Standard: Requires installation inside a cabinet meeting at least an IP54 ingress protection rating.
Electromagnetic Immunity (EMC): Heavy industrial rating for fast transient immunity, surge protection, and high-frequency noise rejection.
4. Operating Instructions
Installation & Wiring
Mounting: Secure the controller using a flange-mount arrangement onto a grounded metal enclosure plate. Ensure a minimum of 50 mm clearance above and below the unit for heat convection.
Power Supply Connection: Connect a regulated 24 V DC power source to the input power terminal block. Connect a protective earth (PE) grounding cable to the main chassis earth stud.
Fieldbus & Ethernet Connectivity: Attach Profibus slave devices directly to the Profibus Master interface port. Route network control cables to the 5 RJ45 Ethernet ports.
Commissioning & Boot Procedure
Verify the system CompactFlash card is locked into place before turning on power.
Apply 24 V DC power. Observe system status indicators during the boot POST (Power-On Self-Test) routine.
Connect control configuration tools via the designated setup port or Ethernet subnet.
5. Fault Diagnosis
| Diagnostic Symptom | Potential Root Cause | Recommended Action / Solution |
| Power LED Off | No 24 V DC supply input or blown internal fuse. | Measure power terminals for valid 19.2 V–28.8 V DC range. Check primary wiring. |
| Boot Failed / Red Status | CompactFlash card unseated or corrupted image. | Isolate power, re-seat the CompactFlash card. Flash/restore system image if needed. |
| Profibus Master Bus Error | Incorrect termination resistor, loose cabling, or baud rate mismatch. | Inspect Profibus DB9 connections, verify active bus terminations, and review network node addresses. |
| Ethernet Port Inactive | Cable failure, IP subnet conflict, or network link dropped. | Check RJ45 link/activity LEDs. Confirm unique IP addresses on each of the 5 Ethernet ports. |
| Thermal Overheat Warning | Blocked airflow or panel ambient temperature > 70 °C. | Clear 50 mm clearance gaps around heat sink fins; install panel ventilation or air cooling. |
6. Related Models of the Same Series
| Model Code | CPU Architecture | Network & Expansion Slots | Primary Application |
| P110-6052 | 600 MHz Celeron-M | 5 × Ethernet Ports (Standard Base) | Standard Industrial Base Controller |
| P111-6052 | 600 MHz Celeron-M | 5 × Ethernet + 1 × Serial16+ Card | Multi-Serial Field Communication |
| P112-6052 | 600 MHz Celeron-M | 5 × Ethernet + 2 × Serial16+ Cards | High-Density Serial Marine Systems |
| P110-6152 | 600 MHz Celeron-M | 5 × Ethernet + 1 × Profibus Master | Profibus Fieldbus Master Automation |
| P112-6152 | 600 MHz Celeron-M | 5 × Ethernet + 1 × Profibus + 1 × Serial16+ | Combined Serial & Profibus Control |
| P121-6052 | 600 MHz Celeron-M | 5 × Ethernet + 1 × FIP Gateway Card | WorldFIP Network Field Controllers |
| P110-6053 | 1.40 GHz Pentium-M | 5 × Ethernet Ports (High-Speed Base) | Upgraded High-Performance Control |
7. Storage Conditions
To ensure long-term shelf life and prevent electronic hardware degradation:
Storage Ambient Temperature: $-40text{ }^circtext{C}$ to $+85text{ }^circtext{C}$.
Storage Relative Humidity: 5% to 95% non-condensing.
Atmospheric Protection: Keep stored inside original anti-static ESD packaging inside a dust-free environment.
Vibration/Shock During Transport: Pack using shock-absorbing foam. Avoid dropping or exposing the module to sudden mechanical impacts exceeding 15 g.
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