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HW300-P04150 high current non-mercury slip ring

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HW300-P04150  high current non-mercury slip ring

product details

Description

The HW300-P04150 high current non-mercury slip ring features compact size, robust conductivity, high temperature adaptability, and environmental friendliness. It inherits the product characteristics of traditional mercury slip rings while eliminating the environmental concerns associated with mercury. The series represents a high-cost-effective solution small footprint and high-current conductivity.

 


Electrical Characteristics

  1. Rated Current: 4 circuits, 150A

  2. Cable Terminals: M12 terminal blocks

  3. Operating Voltage: 0–380 VAC/VDC

  4. Dielectric Strength: ≥1500 V @ 50 Hz between circuits

  5. Insulation Resistance: 800 MΩ @ 800 VDC

  6. Dynamic Resistance Variation: ≤10 mΩ

  7. Operating Speed: 0–10 rpm

  8. Protection Rating: IP65

  9. Operating Temperature: 0°C to +200°C

  10. Contact Material: Copper-graphite

  11. Housing Material: Aluminium alloy + stainless steel

  12. Maintenance: Regular maintenance

 


Drawing

HW300-P04150.png

 

 

 

Features

  1. Over 80 million revolutions

  2. Environmentally friendly, non-toxic, non-polluting

  3. Compact size, high precision, easy to install

  4. High reliability, stability and cost effectiveness


 

Main Applications

  1. Automated machinery

  2. Cable reels

  3. Horizontal copper plating production lines

  4. Rotating silver plating production lines

  5. Rotating light boxes

  6. Semiconductor production lines

  7. Heated spinners

 

 

Customizable Options

  1. Housing Material: Customize the housing material to suit specific environmental or operational requirements

  2. Binding Post Specifications: Tailor the binding post specifications to accommodate different connection needs

  3. Working Speed: Adjust the working speed to meet operational demands, ranging from low-speed to high-speed applications

  4. Working Temperature: Customize the working temperature range to ensure optimal performance in varied environmental conditions, from extreme cold to high heat