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440V 40kvar Power Factor Correction Capacitor for Power Super Capacitor
| Price | $50.00 |
|---|---|
| Min Order | 10 Pieces |
| Availability | In Stock |
| Shipping From | Zhejiang, China |
| Popularity | 474 people viewed |
Model NO.:
BSMJ0.44-40KVAR-3
Type:
Polypropylene Capacitor
Application:
General Purpose, Power
Packaging Type:
Surface Mount
Capacitance:
50-100uf
Structure:
Fixed Capacitor
Manufacturing Material:
Polypropylene
Electrolyte:
Electrolytic
Usage:
Low Frequency Coupling, Tuning, Filter, Low Frequency Bypass
Tuning:
Polystyrene Capacitor
Filter:
Composite Paper Capacitor
Compensate:
Reactive Energy
Power Transformer:
Prove Transmission Power Factor
Trademark:
OEM
Transport Package:
Wooden
Specification:
CE ROHS
Origin:
Zhejiang Yueqing
HS Code:
85321000
Product Description
Wax type dielectrical shunt Power capacitor
What is reactive power
How does reactive power come into being? The AC system provides two forms of electric energy, active power and passive power.
Active power: All inductive devices operating in the AC system convert electrical energy from the power supply system into mechanical energy and thermal energy, which is called active power.
Reactive power: In order to achieve this transformation, it is necessary to establish magnetic fields in the equipment, and these magnetic fields are related to another form of electrical energy provided in the power supply system, which is called reactive power energy.
The existing forms of reactive power are as follows:
Reactive Power (Transformer, Motor, etc.) Required by Inductance Circuit
Reactive Power (Cable, etc.) Required by Capacitance Circuit
Active power KW = P, reactive power KVAR = Q, inductance reactive power + Q, capacitor reactive power - Q
Apparent power KVA = S
As long as the user has electric load such as motor transformer on site, he will consume reactive power, so the demand for reactive power is just needed for the user.
What is the power factor?
The power factor is the active power KW. The closer the power factor is to the maximum value of 1, the more favorable PF = P (KW)/S (KVA) is for users and power supply departments.
For example, if the power factor is only 0.7, if the power factor is not up to the standard, there will be a penalty for the electricity charge. The power factor reaches 0.95. If the power factor exceeds the assessment index, the power supply bureau will award a calendar.
Increase of efficiency
Correction of Power Factor to Improve Equipment Efficiency
What is reactive power
How does reactive power come into being? The AC system provides two forms of electric energy, active power and passive power.
Active power: All inductive devices operating in the AC system convert electrical energy from the power supply system into mechanical energy and thermal energy, which is called active power.
Reactive power: In order to achieve this transformation, it is necessary to establish magnetic fields in the equipment, and these magnetic fields are related to another form of electrical energy provided in the power supply system, which is called reactive power energy.
The existing forms of reactive power are as follows:
Reactive Power (Transformer, Motor, etc.) Required by Inductance Circuit
Reactive Power (Cable, etc.) Required by Capacitance Circuit
Active power KW = P, reactive power KVAR = Q, inductance reactive power + Q, capacitor reactive power - Q
Apparent power KVA = S
As long as the user has electric load such as motor transformer on site, he will consume reactive power, so the demand for reactive power is just needed for the user.
What is the power factor?
The power factor is the active power KW. The closer the power factor is to the maximum value of 1, the more favorable PF = P (KW)/S (KVA) is for users and power supply departments.
For example, if the power factor is only 0.7, if the power factor is not up to the standard, there will be a penalty for the electricity charge. The power factor reaches 0.95. If the power factor exceeds the assessment index, the power supply bureau will award a calendar.
Increase of efficiency
Correction of Power Factor to Improve Equipment Efficiency
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