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Mechanical Vector VFD Variable Frequency Controller Converter ODM

Mechanical Vector VFD Variable Frequency Controller Converter ODM

Standard Packaging: Carton and plywood box packaging
Delivery Period: 3 Days
Payment Method: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Capacity: 500-10000 per Month
Detail Information
Brand Name
ZFeng
Certification
CE、CB、CCC、ISO9001、ISO14001、ISO45001、EN61439、EN61000
Model Number
Zfeng900 Series
Control Mode:
SVC/VF/FVC
Matching Motor Power:
450kW
Rated Output Power:
527kW
Rated Output Current:
800A
Nominal Voltage:
380V
Power Phase Number:
Three Phase
Working Temperature:
-10 ~ 50℃
Overload Capacity:
150%
Highlight:

mechanical Vector VFD

,

ODM Vector VFD

,

ODM variable frequency controller

Product Description

ZFeng 900 Series 450Kw-T-G General Vector Variable Frequency Drive

 

Frequency converters and motors are two core components closely related to modern industrial automation and power transmission systems. Variable Frequency Drive (VFD) is a power control device that can regulate the power frequency and voltage of an AC motor, thereby achieving precise control of motor speed and torque. Electric motors are devices that convert electrical energy into mechanical energy and are widely used in various industrial and civilian applications.

 

The advantages of combining frequency converter and motor

  1. Improve system efficiency
    By precise speed and torque control, the system operates at the optimal efficiency point and reduces energy consumption.
  2. Extend equipment lifespan
    Soft start and soft stop reduce mechanical impact and equipment wear.
    The protection function of the frequency converter extends the service life of motors and mechanical equipment.
  3. Improve production quality
    Stable speed and torque control ensure consistency in product quality.
  4. Simplify system design
    The frequency converter has replaced traditional mechanical speed control devices, simplified the system structure, and reduced maintenance costs.

 

Precautions for the combination of frequency converter and motor

  1. Harmonic effects
    Problem: The PWM (Pulse Width Modulation) waveform output by the frequency converter contains a large number of high-order harmonics, which may have an impact on the motor and power grid.
    measures:
    Install an output reactor or sine wave filter at the output end of the frequency converter.
    Using 12 pulse or 18 pulse rectifier frequency converters to reduce harmonic content.
  2. Common Mode Voltage
    Problem: The common mode voltage generated by the frequency converter may cause insulation breakdown of the motor winding and electrical corrosion of the bearings.
    measures:
    Use common mode reactors or filters.
    Use a frequency converter with common mode voltage suppression function.
  3. Cable Length
    Problem: Long distance cables may cause reflected waves and increase voltage stress at the motor end.
    measures:
    Limit the cable length, generally not exceeding 50 meters (depending on the frequency converter model and motor capacity).
    Install dv/dt filter or sine wave filter at the end of the cable.
  4. Grounding
    Requirement: The frequency converter and motor should be reliably grounded to ensure safety and reduce electromagnetic interference.

 

The frequency converter and motor have a complementary relationship. The frequency converter provides flexible and efficient speed regulation and control methods for motors, improving their performance and application range; The selection and design of motors also need to consider the characteristics of the frequency converter to ensure the stability and reliability of the system.


In practical applications, frequency converters and motors should be selected reasonably based on specific working conditions and requirements, and corresponding measures should be taken to solve problems such as harmonics and common mode voltage, in order to fully leverage the advantages of the combination of frequency converters and motors and achieve energy-saving, efficient, and stable operation.

 

If you have any doubts about selection and technology, you can directly contact us for help and support!

products
PRODUCTS DETAILS
Mechanical Vector VFD Variable Frequency Controller Converter ODM
Standard Packaging: Carton and plywood box packaging
Delivery Period: 3 Days
Payment Method: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Capacity: 500-10000 per Month
Detail Information
Brand Name
ZFeng
Certification
CE、CB、CCC、ISO9001、ISO14001、ISO45001、EN61439、EN61000
Model Number
Zfeng900 Series
Control Mode:
SVC/VF/FVC
Matching Motor Power:
450kW
Rated Output Power:
527kW
Rated Output Current:
800A
Nominal Voltage:
380V
Power Phase Number:
Three Phase
Working Temperature:
-10 ~ 50℃
Overload Capacity:
150%
Packaging Details:
Carton and plywood box packaging
Delivery Time:
3 Days
Payment Terms:
L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability:
500-10000 per Month
Highlight

mechanical Vector VFD

,

ODM Vector VFD

,

ODM variable frequency controller

Product Description

ZFeng 900 Series 450Kw-T-G General Vector Variable Frequency Drive

 

Frequency converters and motors are two core components closely related to modern industrial automation and power transmission systems. Variable Frequency Drive (VFD) is a power control device that can regulate the power frequency and voltage of an AC motor, thereby achieving precise control of motor speed and torque. Electric motors are devices that convert electrical energy into mechanical energy and are widely used in various industrial and civilian applications.

 

The advantages of combining frequency converter and motor

  1. Improve system efficiency
    By precise speed and torque control, the system operates at the optimal efficiency point and reduces energy consumption.
  2. Extend equipment lifespan
    Soft start and soft stop reduce mechanical impact and equipment wear.
    The protection function of the frequency converter extends the service life of motors and mechanical equipment.
  3. Improve production quality
    Stable speed and torque control ensure consistency in product quality.
  4. Simplify system design
    The frequency converter has replaced traditional mechanical speed control devices, simplified the system structure, and reduced maintenance costs.

 

Precautions for the combination of frequency converter and motor

  1. Harmonic effects
    Problem: The PWM (Pulse Width Modulation) waveform output by the frequency converter contains a large number of high-order harmonics, which may have an impact on the motor and power grid.
    measures:
    Install an output reactor or sine wave filter at the output end of the frequency converter.
    Using 12 pulse or 18 pulse rectifier frequency converters to reduce harmonic content.
  2. Common Mode Voltage
    Problem: The common mode voltage generated by the frequency converter may cause insulation breakdown of the motor winding and electrical corrosion of the bearings.
    measures:
    Use common mode reactors or filters.
    Use a frequency converter with common mode voltage suppression function.
  3. Cable Length
    Problem: Long distance cables may cause reflected waves and increase voltage stress at the motor end.
    measures:
    Limit the cable length, generally not exceeding 50 meters (depending on the frequency converter model and motor capacity).
    Install dv/dt filter or sine wave filter at the end of the cable.
  4. Grounding
    Requirement: The frequency converter and motor should be reliably grounded to ensure safety and reduce electromagnetic interference.

 

The frequency converter and motor have a complementary relationship. The frequency converter provides flexible and efficient speed regulation and control methods for motors, improving their performance and application range; The selection and design of motors also need to consider the characteristics of the frequency converter to ensure the stability and reliability of the system.


In practical applications, frequency converters and motors should be selected reasonably based on specific working conditions and requirements, and corresponding measures should be taken to solve problems such as harmonics and common mode voltage, in order to fully leverage the advantages of the combination of frequency converters and motors and achieve energy-saving, efficient, and stable operation.

 

If you have any doubts about selection and technology, you can directly contact us for help and support!