Cable Fault locator DC capacitor
25,000 - 70,000 Per piece
1 piece (MOQ)
Surge Capacitor
10,000 - 25,000 Per Piece
3 Piece (MOQ)
Best Deals from Passive Components
Capacitor Bank
100,000 Per Set
running capacitor
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The capacitor start motor is the most widely used among various types of single phase motors. Connecting a capacitor in series with the starting winding achieves the starting torque with a lower starting current leading to a torque that is higher than other types of single phase motors like the shaded pole type. Thus, for machines which have a heavy starting duty, these capacitors are ideal. A capacitor – start motor comes with a centrifugal switch which automatically disconnects the auxiliary winding when motor attains a pre – determined speed. Hence, it works only with the help of the main winding. A capacitor connected to a motor develops a higher voltage across it than that applied to the motor. Hence, designing the Motor start capacitor is more important.
Surge Capacitors
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Located in Maharashtra(India), the company has carved a niche for itself in the market with its flawless range. Development of modular control inside our warehouse helps in proper organization of the products and ensure complete safety while storage. The entire system is properly managed by our warehousing experts.
High Voltage Capacitor
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We are producing power compensation capacitors since 20 years with fully technically & Experienced workmanship, new advanced machinery & well equipped testing & quality Control Laboratory Power compensation Capacitors reduces transmission & distribution Sub-stations and line feeders losses, improves efficiency. Benefit of High Voltage capacitor : • High Di electric strength • Easy handling • High current handling capacity • Strong & economical design • Excellent performance For increasing Electrical supply system efficiency of distribution, transmission, Substation &on line Feeders also reducing cost of electricity.Coal field, mines, water work systems, Power generation Company etc.
Low Voltage Capacitors
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Features • Bi-axially oriented both side hazy(rough) polypropylene film to ensure good oil impregnation• Capacitor grade aluminum foil for high current carrying capacity• No reduce in output• Low Losses < 0.3 watts per kVAr• Suitable for flexi banking• High peak inrush current withstand capability• Specially vacuum processed, oil impregnated design • Suitable for frequent switching operation Applicable standards IS 13585 (Part 1) : 2012 IEC 60931-1 :1998 1Ø/3Ø APP (Film + Foil) type Heavy Duty Capacitor for Power Factor Improvement& Harmonic Filtering. Principles of Power Factor Correction A vast majority of electrical loads in low voltage industrial installations are inductive in nature. Typical examples are motors, transformers, drives & fluorescent lighting. Such loads consume both active and reactive power. The active power is used by the load to meet its real output requirements whereas reactive power is used to meet its magnetic field requirements.The reactive power (inductive) is always 90° lagging with respect to active power as shown in figure 1. Figure 2 & 3 show the flow of kW, kVAr and kVA in a network before and after installation of Capacitors. Active and Reactive power always flow in every electrical installation. This means that the supply system has to be capable of supplying both active and reactive power. The supply of reactive power from the system results in reduced efficiency due to• Increased current flow for a given load • Higher voltage drops in the system• Increase in the losses of Transformers, Switchgear and Cables • Higher KVA demand from supply system as given in figure 2 • Higher electricity cost due to levy of penalties / loss of incentives It is therefore necessary to reduce & manage the flow of reactive power to achieve higher efficiency of the electrical system and reduction in cost of electricity consumed. The quick & cost effective method of reducing and managing reactive power is through improvement of power factor by installing Power Capacitors. Concept of reduction in kVA demand from the system is shown in figure 3. Application PF correction in LV network LV Dynamic Automatic power factor correction panels (APFC) (Contactor / Thyristor switched) Fixed power factor correction Tuned and detuned Harmonic filters Safety Internal element fuse design Non polluting, nonhazardous NPCB Capacitor fluid Externally fitted Discharge resistors Steel enclosure for protection from live terminals Standard ratings of Capacitors Output: 5, 7.5, 10, 12.5, 15,20,25 KVAr / 41 S and 440 Volts with 151 and CE marking Higher ratings can be supplied on request. Effect of temperature rise Every Capacitor is designed for a specific lowest and highest ambient temperature. Life of Capacitor decreases when operated beyond the limits. Capacitor should not be exposed to heat and must be kept in a well- ventilated position to avoid overheating. Capacitors used in conjunction with series reactor in detuned filter application, the location of reactor affects the surrounding air temperature, Since the reactor radiates heat, it should be placed always above the Capacitor or in a separate column in order to protect capacitors from excessive heating. It is always recommended to adopt forced air cooling in detuned reactor filter panels. Effect of over currentThe maximum allowed RMS current is given in technical data ofthe Capacitor. Operating the Capacitor beyond, will reduce the life of the Capacitor. Higher current drawn by Capacitor means increased losses. This results in heating of the Capacitor, thereby, reducing its life. Effect of over voltage Operating the Capacitor beyond permissible limits of over voltage will damage the Capacitor. Some levels of over voltages are accepted only for a short duration but they reduce the life of the Capacitor. Such levels must not occur for more than 200 times in the life time of a Capacitor. Protection of Capacitors Capacitors have to be protected against short circuit currents by using external fuses having adequate current rating. It is recommended to use HRC fuses, having current rating of 2 -2.5 times the rated current of Capacitor. Switching of Capacitors When the Capacitor is switched in to the network, high inrush currents flow. Fast acting contactors which are capable of handling the high current level should be used. Capacitor duty contactors (connected with resistors) are better suited, since they damp the inrush currents. Contactor / switch gear ratings should be minimum 1.5 times of the rated current of Capacitors. Discharging Capacitors Capacitor must be discharged before it is re-energized to avoid superimposition of voltage over residual voltage. This helps to increase the life of Capacitor. The Capacitor voltage must reduce to less than 75V within 3 minutes. This is achieved by connecting an external discharge resistor across the Capacitor terminals. No disconnecting device be connected between the Capacitor and discharge resistor. Earthing of Capacitor An Earthing terminal has been provided on the body of the Capacitor to be used for earthing. It is recommended to earth the Capacitor for safety purpose. Resonance Capacitors connected in harmonic rich environment are prone to resonance related problems, leading to failure of Capacitors. Under such conditions detuned reactors in series with Capacitors are preferred. Maintenance The Capacitors should be kept in a well- ventilated area, free from any corrosive medium. Terminal connections should be tightened as recommended and cleaned regularly for better performance and enhanced life De-tuned Harmonic Reactor Iron Cored Reactors are used along with Capacitors in De-tuned harmonic filter applications. RatingDetuned Reactors are available in 5%, 6%, 7% and 14 % ratings.Features • Linearity up to 200% • Compact size and convenient mounting • Low losses • Low noise level • Tested as per IS 5553 and IEC 60076 - 6 Safety • Thermal switch provided to protect the Reactor from overheating. • E class insulation
Linear motion potentiometer
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LINEAR MOTION POTENTIOMETER, We also manufacture the equipments and control systems for sugar industries mainly mill automation, boiler instrumentation, prd stations and embibition water control system.
Dynamic Braking Resistor
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APPLICATIONS : Motor Control, VFD's, Oil Rig & Ship, Lifts & Elevators, Cranes & Winches, Conveyors AC variable frequency drives are commonly used with a general purpose induction motor to form a reliable variable speed drive system. Applications that require factor deceleration rates where Motor speed is exceeding the synchronous speed set up by the output frequency of the drives a braking resistor required. Breaking Resistor increase the Braking torque capacity of variable frequency drives. The resistor dissipates regenerated power to keep the bus voltage form exceeding the rated unit of the drives. Electrical drive system are being used more and more application as on ships, oil rigs, crane barges and vessels of all types for every type of powered application. Main propellers and bow thrusters driving winches and windlasses. Cranes, Lifts, conveyors and jacks, cable laying and tensioning. OM Make resistor are wide range resistor technologies and long experience in this field means that we have suitable braking resistor designed for all of the above applications. With braking powers form a few KW up to many MW (needed for example for some crane and main propulsion brakes) and cooling methods which include forced air and natural convection. We have standard products of all types. OM Make resistor use high grade ferritic alloy (feCrAl) or Nical - chromium resistor element. The resistance value changes uttle over the temperature range of element. Element temperature will typically not exceed them 600° degree centigrade. TYPES : Aluminum case encapsulated Punch grids Type (HRP grids) PRODUCT RANGE: Aluminum Case Type: 300 Watt to 4 Kw Punch Grid Type: 5 KW to 2000 KW air forced enclosure type
High Voltage Capacitor 1 Phase
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Sharda is producing power compensation capacitors since 20 years with fully technically & Experienced workmanship, new advanced machinery & well equipped testing & quality Control Laboratory Power compensation Capacitors reduces transmission & distribution Sub-stations and line feeders losses, improves efficiency. Here we are meeting just for introducing appearance of our SHARDA capacitors.Benefit of High Voltage capacitor :• High Di electric strength• Easy handling• High current handling capacity• Strong & economical design• Excellent performance
mica capacitor
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mica capacitor, Capacitor, Edm Wire, Electrical Capacitor, Film Capacitor
Low Voltage Shunt capacitors
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We are offering low voltage shunt capacitors, which is used for power factor improvement and harmonic filters.
Electrical Capacitors
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Electrical Capacitors, printing machines spares, Garden Tools
capacitors for lighting fixtures
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capacitors for lighting fixtures, mpp capacitors, capacitors for motors
Battery Discharge Resistor
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Battery Discharge Resistor, Electrical Surface Box, lightning protectors
Power Capacitors
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1 Set(s) (MOQ)
We are offering power capacitors, apfc panels etc. lt,ht,power capacitors,automati power factor control panels,repairs of all type of capacitors with three years guarantee
capacitor banks
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capacitor banks, Reactors, Transformers, line traps, Harmonic Filters
water cooled capacitors
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water cooled capacitors, Surge Capacitors, Energy Storage Capacitors
Capacitor
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Capacitor, cans, Textile Products
Surge Protection Capacitors
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Surge Protection Capacitors
Electronic Resistors
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Electronic Resistors, Electronic Components, Electronic Diodes
Low Voltage Shunt capacitors
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Low Voltage Shunt capacitors, Medium Voltage Shunt capacitors
Heavy Duty Capacitors,
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Heavy Duty Capacitors, Cables, Digital, Automatic Power Factor Panel
capacitor boxes
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capacitor boxes