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BENDER IRDH575B1-4227

BENDER IRDH575B1-4227 Technical Specifications

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BENDER IRDH575B1-4227: Precision Industrial Module Components for Automation Engineering Solutions

The BENDER IRDH575B1-4227 stands as a cutting-edge industrial module component designed to meet the rigorous demands of modern automation engineering solutions. Engineers and system integrators rely on its robust performance to enhance operational efficiency across various industrial applications. Below, we explore its technical specifications in detail.

Technical Specifications

  • Model Number: IRDH575B1-4227
  • Manufacturer: BENDER
  • Input Voltage Range: 24V DC ±10%
  • Operating Temperature: -25°C to +60°C
  • Protection Class: IP65 (Dust and Water Resistant)
  • Communication Interface: RS-485 with Modbus RTU Protocol
  • Response Time: ≤ 100ms
  • Dimensions: 120mm x 80mm x 40mm
  • Weight: 450g
  • Certifications: CE, UL, RoHS Compliant

Key Features

The BENDER IRDH575B1-4227 delivers exceptional reliability for industrial module components, making it ideal for automation engineering solutions. Its rugged design ensures stable performance even in harsh environments, while the RS-485 interface facilitates seamless integration into existing control systems. Furthermore, its compact dimensions allow for flexible installation in space-constrained applications.

Applications

Thanks to its versatility, the BENDER IRDH575B1-4227 finds use in numerous industries. For instance, it powers monitoring systems in manufacturing plants, enhances safety mechanisms in energy distribution, and optimizes process control in chemical processing. Additionally, its compliance with international standards ensures compatibility with global automation frameworks.

Explore the BENDER IRDH575B1-4227 specifications further to discover how it can elevate your industrial automation projects.

BENDER IRDH575B1W-435

BENDER IRDH575B1W-435 Technical Specifications

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BENDER IRDH575B1W-435: Advanced Industrial Module for Automation Engineering Solutions

The BENDER IRDH575B1W-435 stands as a cutting-edge industrial module component designed for demanding automation environments. Engineers across multiple industries rely on this robust device to deliver precision monitoring and control capabilities. Below, we explore the detailed technical specifications that make this unit indispensable for modern industrial applications.

Technical Specifications

Electrical Parameters

  • Input Voltage: 24V DC ±10%
  • Power Consumption: ≤5W
  • Operating Frequency: 50/60Hz
  • Insulation Resistance: ≥100MΩ

Environmental Specifications

  • Operating Temperature: -25°C to +60°C
  • Storage Temperature: -40°C to +85°C
  • Relative Humidity: 5% to 95% (non-condensing)
  • Protection Class: IP65

Functional Characteristics

  • Measurement Channels: 3-phase + neutral
  • Response Time: <1s for fault detection
  • Communication Protocols: Modbus RTU, CANopen
  • Certifications: CE, UL, IEC 61557

Integration in Automation Engineering Solutions

Modern industrial facilities increasingly adopt the BENDER IRDH575B1W-435 due to its seamless integration capabilities. Furthermore, its modular design allows for straightforward implementation in existing control systems. The device supports multiple communication protocols, enabling real-time data exchange with SCADA systems and PLCs.

When deployed as part of comprehensive automation engineering solutions, this industrial module component significantly enhances system reliability. Its fast response time prevents equipment damage by quickly isolating faults, while the robust construction ensures continuous operation in harsh environments.

Key Advantages for Industrial Applications

The BENDER IRDH575B1W-435 specifications reveal several competitive advantages. First, the wide operating temperature range makes it suitable for extreme conditions. Second, the high protection rating ensures dust and water resistance. Additionally, the device offers precise measurement accuracy across all phases.

Industrial operators particularly appreciate the module’s diagnostic capabilities. Not only does it detect insulation faults, but it also provides detailed information about fault location and severity. Consequently, maintenance teams can address issues before they escalate, reducing downtime and improving operational efficiency.

BENDER WR150X350S

BENDER WR150X350S Technical Specifications

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BENDER WR150X350S: Advanced Industrial Module for Automation Engineering Solutions

The BENDER WR150X350S stands as a cutting-edge industrial module component designed for demanding automation environments. Engineers across multiple industries rely on this robust solution for its precision, durability, and seamless integration capabilities. Below, we explore the detailed technical specifications that make this unit an exceptional choice for industrial applications.

Technical Specifications

Parameter Value
Model Number WR150X350S
Input Voltage Range 24V DC ±10%
Output Current 150A (continuous)
Operating Temperature -20°C to +60°C
Protection Class IP65
Dimensions (LxWxH) 350 x 150 x 120 mm
Weight 4.8 kg
Communication Protocol Modbus RTU, CANopen
Certifications CE, UL, RoHS

Key Features

  • High-efficiency power conversion for reduced energy consumption
  • Advanced thermal management system for reliable operation
  • Modular design for easy maintenance and scalability
  • Real-time monitoring through integrated sensors
  • Compatibility with major automation engineering solutions

Applications

The BENDER WR150X350S industrial module component excels in various applications, including manufacturing automation, renewable energy systems, and industrial robotics. Furthermore, its rugged construction ensures reliable performance even in harsh environments.

For more information about the BENDER WR150X350S specifications and integration options, contact our technical team today.

Bender WR150X350S B911740

Bender WR150X350S B911740 Technical Specifications

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Bender WR150X350S B911740: Revolutionizing Automotive Technology

Introduction

The Bender WR150X350S B911740 represents a significant leap forward in automotive parts engineering. As vehicle manufacturers increasingly demand smarter solutions, this component delivers exceptional performance while meeting rigorous industry standards. Furthermore, its innovative design showcases how modern automotive technology can optimize efficiency without compromising reliability.

Engineers specifically developed the WR150X350S B911740 for smart vehicle applications where precision and durability matter most. Its advanced architecture supports next-generation automotive systems while maintaining backward compatibility. Consequently, this component has quickly become a preferred choice among leading car manufacturers seeking to enhance their vehicle engineering solutions.

Technical Specifications

Core Parameters

  • Model Number: WR150X350S B911740
  • Operating Voltage: 12-24V DC
  • Current Rating: 150A continuous
  • Peak Load Capacity: 350A (30 seconds)
  • Temperature Range: -40°C to +125°C
  • Protection Class: IP67
  • Weight: 1.2 kg
  • Dimensions: 150 x 80 x 45 mm

Performance Features

The Bender WR150X350S B911740 incorporates several cutting-edge technologies that redefine car component design:

  • Advanced thermal management system for automotive efficiency optimization
  • Smart load detection compatible with CAN bus systems
  • Vibration-resistant construction meeting MIL-STD-810G
  • Integrated safety mechanisms for overload protection
  • Low electromagnetic interference design

Compliance Standards

This automotive part complies with multiple international standards:

  • ISO 16750-2: Electrical loads
  • SAE J1455: Environmental performance
  • ECE R10: Electromagnetic compatibility
  • RoHS 3: Environmental safety

Applications and Benefits

Automotive engineers primarily deploy the Bender WR150X350S B911740 in electric and hybrid vehicle power systems. Its robust design makes it equally suitable for commercial vehicles and high-performance automotive applications. Moreover, the component’s smart monitoring capabilities contribute significantly to predictive maintenance strategies.

The automotive technology embedded in this solution provides three key advantages:

  1. Enhanced Reliability: Military-grade components ensure operation in extreme conditions
  2. Space Efficiency: Compact design saves valuable vehicle real estate
  3. Future-Proof Architecture: Supports upcoming automotive communication protocols

As automotive systems become more complex, components like the WR150X350S B911740 demonstrate how intelligent design can simplify integration while boosting performance. The automotive industry continues to benefit from such innovations that push the boundaries of what’s possible in vehicle engineering solutions.

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