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◆ Electrical performance and standards:
1, to reduce the inverter and DC governor work on other equipmentinterference (harmonic interference, waveform distortion);
2, reduce the motor working noise, eddy current loss, reduce the motortemperature rise;
3, protection due to low resistance caused by the peak capacitive current onthe drive rectifier module and related components of the damage (power supplycapacity is greater than 5 times the capacity of the inverter);
4, to improve the power factor of the power supply to reduce the inverter powersupply harmonic current content;
5, reduce the current and voltage waveform distortion rate, improve the qualityof the power supply, smooth inverter output voltage and current waveform,reduce the transient voltage dv / dt impact on the motor insulation system toextend the motor life;
6, input and output reactor installed in the inverter or governor input andoutput. Its main function is to suppress 3 or 5 harmonics into the grid, canreduce the leakage current caused by high and low harmonics to reduce theinterference of peripheral equipment;
7, to limit the abnormal voltage fluctuations and the impact of the gridcurrent, and to suppress the power grid harmonic damage to the inverter.
8, for the load from the main power distribution far, plus the reactor can beextended to the inverter motor to extend the effective distance; reduce thecapacitive current cable to protect the inverter internal power switchingdevices, the power factor to enhance a certain role, And can improve the wholereactive power compensation coefficient and quality.
◆ Technical parameters:
1, rated working voltage: AC380V ~ 1140V (conventional voltage 3 ∮ 380V, specialto be customized) Rated operating frequency: 50HZ / 60HZ
2, the rated voltage drop: 1% -6% (conventional reactance input 2% output 4%)
3, the working pressure: the core of the winding 3000VAC / 50HZ / 5MA / 60S noarcing no breakdown (factory test humidity <55%
4, insulation resistance: core on the winding 1000VDC ≥ 100M;
5, the working temperature: core <80K (temperature calculation, the coretemperature minus the ambient temperature) Coil winding temperature <95K (DCresistance test method)
6, working noise: ≤ 60dB (1M away from the reactor level test);
7, the implementation of standards: GB19212.1-2008 GB1094.6-2011
◆ Invertersupporting the use of input and output reactor:
Governor inverter power (KW) | Rated Current (A) | Input Reactor Model | L*W*H (mm) | Mounting Dimension(mm) | Output Reactor Model | L*W*H (mm) | Mounting Dimension (mm) |
0.75 | 2.5 | AKSG-0.75KW/5V | 140*85*140 | 75*55Φ6 | AKSG-0.75KW/9V | 140*85*140 | 75*55Φ6 |
1.5 | 5 | AKSG-1.5KW/5V | 140*85*140 | 75*55Φ6 | AKSG-1.5KW/9V | 140*85*140 | 75*55Φ6 |
2.5 | 7.5 | AKSG-2.2KW/5V | 140*85*140 | 75*55Φ6 | AKSG-2.2KW/9V | 140*85*140 | 75*55Φ6 |
3.7 | 10 | AKSG-3.7KW/5V | 140*85*140 | 75*55Φ6 | AKSG-3.7KW/9V | 140*85*140 | 75*55Φ6 |
5.5 | 15 | AKSG-5.5KW/5V | 140*85*140 | 75*55Φ6 | AKSG-5.5KW/9V | 140*85*140 | 75*55Φ6 |
7.5 | 20 | AKSG-7.5KW/5V | 175*130*140 | 82*75Φ6 | AKSG-7.5KW/9V | 140*85*140 | 75*55Φ6 |
11 | 30 | AKSG-11KW/5V | 175*130*140 | 82*75Φ6 | AKSG-11KW/9V | 210*165*170 | 110*85Φ8 |
15 | 40 | AKSG-15KW/5V | 210*120*190 | 110*70Φ8 | AKSG-15KW/9V | 210*165*170 | 110*85Φ8 |
18.5 | 50 | AKSG-18.5KW/5V | 210*120*190 | 110*70Φ8 | AKSG-18.5KW/9V | 210*165*170 | 110*85Φ8 |
22 | 60 | AKSG-22KW/5V | 210*165*170 | 110*85Φ8 | AKSG-22KW/9V | 210*165*170 | 110*85Φ8 |
30 | 80 | AKSG-30KW/5V | 210*165*170 | 110*85Φ8 | AKSG-30KW/9V | 270*190*230 | 155*100Φ10 |
37 | 110 | AKSG-37KW/5V | 210*165*170 | 110*85Φ8 | AKSG-37KW/9V | 270*190*230 | 155*100Φ10 |
45 | 125 | AKSG-45KW/5V | 210*165*170 | 110*85Φ8 | AKSG-45KW/9V | 270*190*230 | 155*100Φ10 |
55 | 150 | AKSG-55KW/5V | 270*170*220 | 155*85Φ10 | AKSG-55KW/9V | 290*200*230 | 170*115Φ10 |
75 | 200 | AKSG-75KW/5V | 290*190**255 | 170*85Φ10 | AKSG-75KW/9V | 300*230*230 | 173*135Φ10 |
93 | 250 | AKSG-93KW/5V | 290*190*230 | 170*105Φ10 | AKSG-93KW/9V | 330*230*230 | 190*130Φ10 |
110 | 275 | AKSG-110KW/5V | 290*190*230 | 170*105Φ10 | AKSG-110KW/9V | 330*230*230 | 190*130Φ10 |
132 | 330 | AKSG-132KW/5V | 320*240*230 | 193*130Φ10 | AKSG-132KW/9V | 340*230*230 | 212*130Φ10 |
160 | 450 | AKSG-160KW/5V | 330*210*290 | 193*130Φ10 | AKSG-160KW/9V | 330*220*290 | 193*140Φ10 |
185 | 500 | AKSG-185KW/5V | 330*210*290 | 193*130Φ10 | AKSG-185KW/9V | 330*220*290 | 193*140Φ10 |
200 | 510 | AKSG-200KW/5V | 330*210*290 | 193*130Φ10 | AKSG-200KW/9V | 330*220*290 | 193*140Φ10 |
220 | 540 | AKSG-220KW/5V | 330*210*290 | 193*130Φ10 | AKSG-220KW/9V | 330*220*290 | 193*140Φ10 |
250 | 625 | AKSG-250KW/5V | 330*220*290 | 193*140Φ10 | AKSG-250KW/9V | 350*280*290 | 193*150Φ10 |
315 | 800 | AKSG-315KW/5V | 330*240*290 | 193*150Φ10 | AKSG-315KW/9V | 350*280*290 | 193*150Φ10 |
375 | 1000 | AKSG-375KW/5V | 350*280*290 | 193*150Φ10 | AKSG-375KW/9V | 400*300*350 | 240*200Φ10 |
400 | 1100 | AKSG-400KW/5V | 350*280*290 | 193*150Φ10 | AKSG-400KW/9V | 400*300*350 | 240*200Φ10 |
600 | 1600 | AKSG-600KW/5V | 420*380*560 | 220*185Φ10 | AKSG-600KW/9V | 420*380*560 | 220*185Φ10 |
◆ Product Features:
Iproduced the AKSG series inverter, DC governor for the input and outputreactor, the use of imported silicon steel and high-quality wire, after ascientific process
High linearity, high overload current capacity, small size, stable performance,low temperature rise, low noise, low loss and other characteristics. Availablewith Siemens ABB, Panasonic, Yasukawa, Pu Chuan, Danfoss, Fuji, Continental,LG, Omron, Hyundai, Schneider, Lenz Emerson, Kangwo and other domestic andforeign brands
Frequency converter supporting for wind power, water conservancy, lifting,metallurgical automation and control industries.
◆Ordering Information (order must specify the following)
1. Adapt the inverter or adjust the power (KW)
2. Inverter rated power supply voltage: V or more for the Division of thestandard product parameters for reference, other parameters and size can becustomized
3. Used in the line end or outlet;
4. Can also be based on the maximum frequency converter
For the current and inductance, the recommended selection;
5. Can also be based on the rated supply voltage of the inverter
And reactance rate, the recommended selection;
6, whether there is a special size requirements;
7. Delivery cycle.