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- Allen-Bradley MOX12/4U-P3509B 80026-173-23 Control Power Supply
SKU: MOX12/4U-P3509B 80026-173-23
Allen-Bradley MOX12/4U-P3509B 80026-173-23 Control Power Supply
The Allen-Bradley MOX12/4U-P3509B 80026-173-23 is a 350W industrial control power supply providing a stable 12V DC output. Designed for frequency converters and PLC systems, it features comprehensive overload protection and a high-efficiency, compact design.
The Allen-Bradley MOX12/4U-P3509B 80026-173-23 provides regulated DC power for high-voltage frequency converter systems. This high-efficiency unit generates a stable 12V DC output to support critical control electronics. It effectively manages energy conversion within complex PowerFlex or medium voltage drive assemblies. Furthermore, the 350W power rating ensures consistent performance for heavy-duty automation components. Reliable power delivery remains essential for maintaining the operational integrity of PLC processors. Consequently, this module prevents system errors caused by voltage instability or noise.
Energy Efficiency and Heat Regulation
The hardware architecture focuses on minimizing thermal output during continuous operation. High efficiency ratings ensure that the power supply reduces overall energy consumption. Moreover, the design features a low output ripple to protect sensitive semiconductor devices. This clean power signal improves the longevity of connected PLC boards and communication modules. The unit operates effectively across a broad industrial temperature spectrum without derating. Thus, facility managers can rely on this power source in non-ventilated control cabinets.
Advanced Circuit Protection Features
Built-in safety protocols safeguard the MOX12/4U-P3509B against common electrical faults. The module includes automated shut-down triggers for both overload and short-circuit events. Additionally, robust internal shielding minimizes electromagnetic interference with nearby Ethernet routers. This protection ensures that control signals remain accurate during high-current switching events. The hardware meets rigorous global standards for industrial power equipment safety. Therefore, it provides a secure foundation for building control and telecommunications infrastructure.
Installation and System Compatibility
The compact chassis design allows for flexible integration into standard ControlLogix-style environments. Users benefit from standardized terminal connections that facilitate rapid field replacement. Furthermore, the wide input voltage tolerance accommodates diverse global power standards. This versatility makes the module ideal for international machinery exports. Its rugged construction withstands the vibrations common in heavy manufacturing plants. By utilizing the 80026-173-23, operators ensure their automation systems remain online and productive.
Essential Technical Specifications
- Model Number:Â MOX12/4U-P3509B
- Order Number:Â 80026-173-23
- Output Voltage:Â 12V DC
- Maximum Power Output:Â 350 Watts
- Input Voltage Range:Â 100-240V AC
- Protection Features:Â Overload and Short Circuit Protection
- Module Weight:Â 0.9 kg
- Dimensions:Â 3.5 x 13 x 14.5 cm
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Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | 2094-BM02-S |
| Brand | Allen-Bradley |
| Origin | USA |
| Weight | 0.9 kg |
| Dimensions | 3.5 x 13 x 14.5 cm |
| Operating Temp | 0 to +50 deg C (Standard Industrial Range) |
| Power Consumption | 650 VDC nominal input / 115 Ohm internal shunt resistor |
| Module Type | Servo Drive (Axis Module) |
| Product Range | ControlLogix / Kinetix 6000 |
| System Classification | PLC Motion Control |
| Continuous Current | 10.3 A (RMS), 14.6 A (Sine Peak) |
| Velocity Loop Bandwidth | 500 Hz |
| Current Loop Frequency | 1300 Hz |
| Efficiency Rating | 98% |
Industrial Control & Deterministic Driving Network
The Allen-Bradley 2094-BM02-S interacts directly over backplane bus communication velocity networks to achieve microsecond-level synchronization across adjacent drive modules. The hardware features deterministic network compatibility, letting control processors command motion trajectories with minimal jitter. It supports peak enhancement technology, scaling the nominal inverter output profile from a standard 150% threshold up to 250% during peak torque demands. This scaling permits rapid rotor acceleration and deceleration profiles without triggering overcurrent trips. Integrated Safe-Torque Off (STO) hardware circuits provide independent physical galvanic control paths, disabling gating signals to the output power transistors to prevent unexpected motor rotation during active maintenance states.Frequently Asked Questions
Q: What are the backplane current and configuration limits when expanding axis modules on a single rail?A: The module must be inserted into an authorized Kinetix 6000 power rail, supporting up to seven axis modules alongside one master power module. The cumulative peak current draw must not exceed the structural rating of the shared copper backplane link.Q: Is this hardware compatible with live hot-swapping procedures?A: No. The shared 650 VDC bus lines pose arc-flash and component damage hazards. System DC bus voltage must be entirely drained and verified below safe thresholds before seating or unseating the module from the rail structure.Q: Can the internal 115 Ohm shunt resistor handle high-inertia braking loads?A: The internal shunt resistor is designed for short-duration thermal dissipation. High-inertia or cyclic deceleration applications require an external, isolated shunt module to prevent DC bus overvoltage faults.Field Installation Guidelines
- Enclosure Clearance & Thermal Profile: Maintain a minimum enclosure installation depth of 10.7 inches. Ensure unimpeded vertical ventilation spacing above and below the module chassis to prevent heat sink thermal saturation.
- Cable Separation Architecture: Physically isolate unshielded high-voltage power cables, including motor leads and shunt resistor lines, from low-level digital feedback encoder loops and communication wires to suppress cross-talk.
- Shielding and Ground Boundary: Terminate all motor cable shields at the designated grounding clamp on the power rail base. Maintain a low-impedance ground plane across the entire mounting subpanel.
- Overcurrent Protection: Install specified circuit breakers or high-speed semiconductor fuses upstream of the main power distribution block to guard the internal solid-state components against phase-to-phase short circuits.
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