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0102030405
Schneider LXM62PD84A1100 DC Power Supply Module
Schneider LXM62PD84A1100
1. General Overview
The LXM62PD84A11000 is a core power supply unit belonging to Schneider Electric’s Lexium 62 series, specially designed for high-performance industrial applications. Its primary function is to convert alternating current (AC) power into precise, stable direct current (DC) power, supporting an output current range of 42A to 84A to meet diverse high-power operational needs. Adopting a dual power redundancy design, this product features outstanding reliability and durability, and is widely deployed in modern automated manufacturing plants and critical industrial power supply scenarios to ensure uninterrupted power delivery.
The LXM62PD84A11000 is a core power supply unit belonging to Schneider Electric’s Lexium 62 series, specially designed for high-performance industrial applications. Its primary function is to convert alternating current (AC) power into precise, stable direct current (DC) power, supporting an output current range of 42A to 84A to meet diverse high-power operational needs. Adopting a dual power redundancy design, this product features outstanding reliability and durability, and is widely deployed in modern automated manufacturing plants and critical industrial power supply scenarios to ensure uninterrupted power delivery.
2. Key Technical Specifications
Parameter Item
Detailed Value
Model
LXM62PD84A11000
Output Current Range
42 A – 84 A
Rated Power
25 kW (Continuous) / 50 kW (Peak)
Input Voltage
Three-Phase 208 VAC – 480 VAC (Standard Industrial Voltage)
Control Voltage
24 V DC (Typical), Power Consumption < 4W
DC Bus Voltage
270 VDC – 700 VDC
Peak Output Current
84 A
Output Voltage Accuracy
±0.5% (Typical)
Brake Resistor
Built-In Brake Resistor with Overload Protection
Protection Degree
IP30
Dimensions
132 mm × 105 mm × 52 mm
Net Weight
Approx. 800 g
Installation Method
35mm DIN Rail Mounting
| Parameter Item | Detailed Value |
|---|---|
| Model | LXM62PD84A11000 |
| Output Current Range | 42 A – 84 A |
| Rated Power | 25 kW (Continuous) / 50 kW (Peak) |
| Input Voltage | Three-Phase 208 VAC – 480 VAC (Standard Industrial Voltage) |
| Control Voltage | 24 V DC (Typical), Power Consumption < 4W |
| DC Bus Voltage | 270 VDC – 700 VDC |
| Peak Output Current | 84 A |
| Output Voltage Accuracy | ±0.5% (Typical) |
| Brake Resistor | Built-In Brake Resistor with Overload Protection |
| Protection Degree | IP30 |
| Dimensions | 132 mm × 105 mm × 52 mm |
| Net Weight | Approx. 800 g |
| Installation Method | 35mm DIN Rail Mounting |
3. Core Product Features
- Dual Power Redundancy Design: Built with dual power inputs, enabling automatic switching when the main power supply fails, which guarantees continuous power supply and avoids production interruptions for industrial equipment.
- Integrated Brake Resistor: Equipped with a built-in brake resistor that provides a dedicated path for energy dissipation during motor braking, effectively protecting motors and supporting equipment from damage caused by excess regenerative energy.
- High Efficiency & Low Power Consumption: Adopts advanced power conversion technology to achieve high-efficiency energy conversion, reducing energy loss and cutting down long-term operating costs for industrial users.
- Eco-Friendly Design: Manufactured using low-environmental-impact materials, in line with global sustainable development goals and supporting enterprises in achieving net-zero emission targets.
- Anti-Interference Performance: Fully complies with international EMC standards, featuring excellent electromagnetic compatibility to ensure stable operation in complex industrial electromagnetic environments.
- Dual Power Redundancy Design: Built with dual power inputs, enabling automatic switching when the main power supply fails, which guarantees continuous power supply and avoids production interruptions for industrial equipment.
- Integrated Brake Resistor: Equipped with a built-in brake resistor that provides a dedicated path for energy dissipation during motor braking, effectively protecting motors and supporting equipment from damage caused by excess regenerative energy.
- High Efficiency & Low Power Consumption: Adopts advanced power conversion technology to achieve high-efficiency energy conversion, reducing energy loss and cutting down long-term operating costs for industrial users.
- Eco-Friendly Design: Manufactured using low-environmental-impact materials, in line with global sustainable development goals and supporting enterprises in achieving net-zero emission targets.
- Anti-Interference Performance: Fully complies with international EMC standards, featuring excellent electromagnetic compatibility to ensure stable operation in complex industrial electromagnetic environments.
4. Product Structure & Components
The LXM62PD84A11000 consists of five core functional modules, working together to deliver stable and reliable power conversion:
- Rectification & Filtering Module: Converts input AC power to smooth DC voltage and filters out high-frequency noise, ensuring pure power output for subsequent modules.
- Power Conversion Module: The core component responsible for precise regulation of output voltage and current, matching the power demands of connected industrial equipment.
- Brake Resistor Module: Built-in brake resistor dedicated to dissipating excess energy during motor braking, preventing voltage surges and safeguarding internal components.
- Control & Monitoring Module: Monitors real-time operating status, including overload protection, temperature monitoring, and voltage/current tracking, with automatic fault protection functions.
- Relay Output Module: Provides alarm signals for fiber optic link failures and power supply faults, facilitating quick fault detection and maintenance.
The LXM62PD84A11000 consists of five core functional modules, working together to deliver stable and reliable power conversion:
- Rectification & Filtering Module: Converts input AC power to smooth DC voltage and filters out high-frequency noise, ensuring pure power output for subsequent modules.
- Power Conversion Module: The core component responsible for precise regulation of output voltage and current, matching the power demands of connected industrial equipment.
- Brake Resistor Module: Built-in brake resistor dedicated to dissipating excess energy during motor braking, preventing voltage surges and safeguarding internal components.
- Control & Monitoring Module: Monitors real-time operating status, including overload protection, temperature monitoring, and voltage/current tracking, with automatic fault protection functions.
- Relay Output Module: Provides alarm signals for fiber optic link failures and power supply faults, facilitating quick fault detection and maintenance.
5. Typical Application Scenarios
This product is widely applied in multiple high-power industrial fields that require stable DC power supply, covering major scenarios such as:
- Industrial Automation: Industrial production lines, industrial robots, CNC machine tools, automated assembly systems, and precision processing equipment.
- New Energy Sector: Power management systems for wind power generation, photovoltaic power generation, and other renewable energy power distribution equipment.
- Rail Transit: Power supply systems for subways, light rails, and urban rail transit control and operation equipment.
- Other High-Power Applications: High-power servo drives, power frequency converters, and various industrial equipment with strict power stability requirements.
This product is widely applied in multiple high-power industrial fields that require stable DC power supply, covering major scenarios such as:
- Industrial Automation: Industrial production lines, industrial robots, CNC machine tools, automated assembly systems, and precision processing equipment.
- New Energy Sector: Power management systems for wind power generation, photovoltaic power generation, and other renewable energy power distribution equipment.
- Rail Transit: Power supply systems for subways, light rails, and urban rail transit control and operation equipment.
- Other High-Power Applications: High-power servo drives, power frequency converters, and various industrial equipment with strict power stability requirements.
6. Installation & Maintenance Guidelines
Installation Instructions
- Installation Environment: Select a well-ventilated location, avoid direct sunlight, moisture, dust accumulation, and corrosive gases to maintain optimal operating conditions.
- Wiring Specification: Strictly follow the wiring diagram in the official product manual, ensure correct phase sequence and firm wiring to prevent equipment damage caused by improper wiring.
- Fixation Requirement: Use a standard 35mm DIN rail for installation, fix the product stably to avoid displacement or poor contact.
- Safety Grounding: Conduct reliable grounding in accordance with industrial safety standards to prevent electric shock and enhance anti-interference capability.
- Installation Environment: Select a well-ventilated location, avoid direct sunlight, moisture, dust accumulation, and corrosive gases to maintain optimal operating conditions.
- Wiring Specification: Strictly follow the wiring diagram in the official product manual, ensure correct phase sequence and firm wiring to prevent equipment damage caused by improper wiring.
- Fixation Requirement: Use a standard 35mm DIN rail for installation, fix the product stably to avoid displacement or poor contact.
- Safety Grounding: Conduct reliable grounding in accordance with industrial safety standards to prevent electric shock and enhance anti-interference capability.
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