NOW CELEBRATING 60 YEARS IN THE SERVICE OF INDIAN ELECTRICAL INDUSTRY
 

CAPACITORS

 
 

Dhandapani Metallized Polypropylene Self - Healing Type LT Power Capacitors

Technology
Dhandapani Metallized Polypropylene Self - Healing type Power Capacitors feature most up-to-date technological developments in power factor improvement Capacitors, which have evolved considerably in recent years, worldwide. The manufacturing Plant consists of State-of-the-art imported & indigenous machinery and sophisticated testing instruments, backed by a team of qualified and highly skilled personnel, having vast experience in the industry. Strict control of the most sensitive processes winding, galvanization and encapsulation is ensured in an absolutely dust-free, highly automated system thus providing for a reliable product and huge production capacity

Reliability
Elements wound with superior quality zinc alloy three layer heavy edge metallized polypropylene film-same as being used by reputed capacitor manufacturers world over.

  • The elements are wound on imported state-of-the-art new generation fully automatic numerically controlled winding machine, and hence no corona discharge or ionization
  • All other inputs from reputed international/indigenous suppliers
  • Self - Healing type-no corona discharge or ionization
  • Very low watt losses (0.2 to 0.65 W/kVAr)
  • Low temperature rise, excellent thermal stability
  • Inrush and transient current control for Capacitors in 10 to 30 kVAr units using Inductor Coils
  • Terminated at Brass bolts made out of electrical grade lead free brass, ensures lowest contact losses & temperature rise

Power Capacitors Introduction
As the name suggests, are essential to improve the power factor of any electrical installation, resulting in:

  • Reduction in the cost of installation and possibility of increasing plant load
  • Reduced voltage drops, with consequent better output from the machines
  • Reduced feeder current, resulting in lower line losses, with the possibility of connecting more loads without increasing the feeder cross-section.
  • Improved capacity utilization and longer life of distribution equipments like transformer, switchgear and cable
  • Reduced cost of electrical energy by improved power factor (low power factor causes high kVAr demand)

 
 

 

 

 
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