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Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

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Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

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Brand Name :INOMAX
Model Number :MAX500
Certification :ISO9001,CE,EAC,CCS
Place of Origin :SHENZHEN,CHINA
MOQ :1
Price :USD200-USD150000
Payment Terms :T/T, L/C, Western Union
Supply Ability :5-500PCS depending on power
Delivery Time :3-30days depending on quantity
Packaging Details :carton box, wooden box
Voltage :220V,380V,400V,415V,440V,460V,480V
Power :0.75KW-710KW
Protection level :IP21
Substitution :Schneider ATV320,ATV61,Danfoss FC202,FC51
Control mode :VF control, vector control,SVC
Over load ability :150% over load for 60s,200% over load for 2s
Torque ability :150% torque in 0HZ
Accuracy :0.5% for VF application
Output frequency :0-3200HZ
Communication protocol :Modbus Tcp, Profibus,Profinet,EtherCat,EtherNet IP,Canopen
Encoder Card :differential,ABZ, Rotary
Application :Pumps,fans,compresors,conveyors,Crane
Protection :overload, overheat, over speed, phase lost
Warranty :24 months
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Why choose Inomax VFD?

  1. As the leading Chinese VFD manufacturer, INOMAX provides high , medium and low voltage frequency drives, so that it meets request of different applications.
  2. INOMAX has 380V 690V 3.3KV 6KV 10KV regenerative variable frequency drives, liquid variable speed drives and multi-module drive, power supply module, single-axis motor inverter drive ,Multi-axis mtor inverter drive module (multimachine drive industrial drive/common DC bus), DC-DC bidirectional DC power module combination drive (DC conversion Module).
  3. INOMAX is a very competitive supplier and manufacturer for electeric produces like DV/DT filters, passive filters, EMC filters, AC input and AC output reactors in China.
  4. INOMAX provides professional and competitive AC drive VFD solutions for tower crane, top drive system, oil drilling pumps, mud pump, screw pump, centrifugal pump, CNC servo injections machines, marine winch, metallurgy rolling mill machine, wooden machine, stone process machine, etc.

Variable Frequency Drive (VFD) – AC Drive Manufacturers-Inomax Technology

As the leading VFD manufacturer in China and frequency drive supplier in China,Inomax Technology focus on Low voltage variable frequency drive(VFD),Middle Voltage frequency drives ,High Voltage AC drive, Servo drives, solar pumping inverters and motor soft starters.

Inomax general purpose VFD MAX500 seris AC drive features

Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem PumpsInomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

High performance general purpose inverter MAX500 series,Excellent control performance for motor at 0.25hz with
150% output torque and Excellent torque control in open loop and close loop in winding and rewinding,
widely applicaton for pumps,fans,compressors,conveyors,plastic machines,wooden machines,general machines...

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INOMAX variable speed drive MAX500 series specifications:

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MAX500 VFD technical specifications

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INOMAX low voltage variable speed drive MAX500 series AC VFD application :

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Inomax have enough stocks ,can do fast delivery

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RFQ of VFDs

What is a Variable Frequency Drive?

A Variable Frequency Drive (VFD) is a type of motor controller that drives an electric motor by varying the frequency and voltage supplied to the electric motor. Other names for a VFD are variable speed drive, adjustable speed drive, adjustable frequency drive, AC drive, microdrive, and inverter.

Frequency (or hertz) is directly related to the motor’s speed (RPMs). In other words, the faster the frequency, the faster the RPMs go. If an application does not require an electric motor to run at full speed, the VFD can be used to ramp down the frequency and voltage to meet the requirements of the electric motor’s load. As the application’s motor speed requirements change, the VFD can simply turn up or down the motor speed to meet the speed requirement.

How does a variable frequency drive work?

The first stage of a Variable Frequency AC Drive, or VFD, is the Converter. The converter is comprised of six diodes, which are similar to check valves used in plumbing systems. They allow current to flow in only one direction; the direction shown by the arrow in the diode symbol. For example, whenever A-phase voltage (voltage is similar to pressure in plumbing systems) is more positive than B or C phase voltages, then that diode will open and allow current to flow. When B-phase becomes more positive than A-phase, then the B-phase diode will open and the A-phase diode will close. The same is true for the 3 diodes on the negative side of the bus. Thus, we get six current “pulses” as each diode opens and closes. This is called a “six-pulse VFD”, which is the standard configuration for current Variable Frequency Drives.

Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

Let us assume that the drive is operating on a 480V power system. The 480V rating is “rms” or root-mean-squared. The peaks on a 480V system are 679V. As you can see, the VFD dc bus has a dc voltage with an AC ripple. The voltage runs between approximately 580V and 680V.

Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

We can get rid of the AC ripple on the DC bus by adding a capacitor. A capacitor operates in a similar fashion to a reservoir or accumulator in a plumbing system. This capacitor absorbs the ac ripple and delivers a smooth dc voltage. The AC ripple on the DC bus is typically less than 3 Volts. Thus, the voltage on the DC bus becomes “approximately” 650VDC. The actual voltage will depend on the voltage level of the AC line feeding the drive, the level of voltage unbalance on the power system, the motor load, the impedance of the power system, and any reactors or harmonic filters on the drive.

The diode bridge converter that converts AC-to-DC, is sometimes just referred to as a converter. The converter that converts the dc back to ac is also a converter, but to distinguish it from the diode converter, it is usually referred to as an “inverter”. It has become common in the industry to refer to any DC-to-AC converter as an inverter.

Note that in a real VFD, the switches shown would actually be transistors.

When we close one of the top switches in the inverter, that phase of the motor is connected to the positive dc bus and the voltage on that phase becomes positive. When we close one of the bottom switches in the converter, that phase is connected to the negative dc bus and becomes negative. Thus, we can make any phase on the motor become positive or negative at will and can thus generate any frequency that we want. So, we can make any phase be positive, negative, or zero.

Inomax AC Low Voltage VFD Distributor For Grundfos Pumps And Xylem Pumps

The blue sine-wave is shown for comparison purposes only. The drive does not generate this sine wave.

Notice that the output from the VFD is a “rectangular” wave form. VFD’s do not produce a sinusoidal output. This rectangular waveform would not be a good choice for a general purpose distribution system, but is perfectly adequate for a motor.

If we want to reduce the motor frequency to 30 Hz, then we simply switch the inverter output transistors more slowly. But, if we reduce the frequency to 30Hz, then we must also reduce the voltage to 240V in order to maintain the V/Hz ratio (see the VFD Motor Theory presentation for more on this). How are we going to reduce the voltage if the only voltage we have is 650VDC?

This is called Pulse Width Modulation or PWM. Imagine that we could control the pressure in a water line by turning the valve on and off at a high rate of speed. While this would not be practical for plumbing systems, it works very well for VFD’s. Notice that during the first half cycle, the voltage is ON half the time and OFF half the time. Thus, the average voltage is half of 480V or 240V. By pulsing the output, we can achieve any average voltage on the output of the VFD.

Why should i use a VFD?

1 - Reduce Energy Consumption and Energy Costs

If you have an application that does not need to be run at full speed, then you can cut down energy costs by controlling the motor with a variable frequency drive, which is one of the benefits of Variable Frequency Drives. VFDs allow you to match the speed of the motor-driven equipment to the load requirement. There is no other method of AC electric motor control that allows you to accomplish this.

Electric motor systems are responsible for more than 65% of the power consumption in industry today. Optimizing motor control systems by installing or upgrading to VFDs can reduce energy consumption in your facility by as much as 70%. Additionally, the utilization of VFDs improves product quality, and reduces production costs. Combining energy efficiency tax incentives, and utility rebates, returns on investment for VFD installations can be as little as 6 months.

2 - Increase Production Through Tighter Process Control

By operating your motors at the most efficient speed for your application, fewer mistakes will occur, and thus, production levels will increase, which earns your company higher revenues. On conveyors and belts you eliminate jerks on start-up allowing high through put.

3 - Extend Equipment Life and Reduce Maintenance

Your equipment will last longer and will have less downtime due to maintenance when it’s controlled by VFDs ensuring optimal motor application speed. Because of the VFDs optimal control of the motor’s frequency and voltage, the VFD will offer better protection for your motor from issues such as electro thermal overloads, phase protection, under voltage, overvoltage, etc.. When you start a load with a VFD you will not subject the motor or driven load to the “instant shock” of across the line starting, but can start smoothly, thereby eliminating belt, gear and bearing wear. It also is an excellent way to reduce and/or eliminate water hammer since we can have smooth acceleration and deceleration cycles.

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