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Medium Voltage Frequency Inverter from China Suppliers - High Reliability with 1700V IGBTs for 20-Year Lifespan
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Medium Voltage Frequency Inverter from China Suppliers - High Reliability with 1700V IGBTs for 20-Year Lifespan

Discover unparalleled reliability with our cutting-edge high-voltage IGBTs (Insulated Gate Bipolar Transistors) sourced from trusted suppliers in China. Designed for exceptional performance, these advanced components ensure an average fault-free operation period of 20 years, making them an ideal choice for factories seeking durable and long-lasting solutions. Experience peace of mind with our high-quality products that exemplify the best of Chinese manufacturing

    Model Meaning

    Model Meaning Diagram
    1. The dimensions and weight are for reference only; the exact dimensions and weight shall be as specified in the technical agreement.
    2. For standard series units, the input voltage is identical to the output voltage.
    3. The overall height does not include the height of the cooling fan; an additional 300 mm to 600 mm should be added for the fan height.
    4. The above overall dimensions and weight refer to the combined total of the control cabinet, power unit cabinet, and transformer cabinet excluding the line-frequency bypass cabinet.
    5. The minimum clearance requirements are as follows: at least 1500 mm from the front of the equipment to the wall, at least 1000 mm from the rear, at least 800 mm from either side, and at least 1000 mm from the top of the equipment to the ceiling.
    6. Standard overload capacity is 120% for 1 minute, allowed once every 10 minutes. Optional overload capacities of 125%, 150%, or 200% are available to meet different application requirements.
    7. The applicable motor power rating may vary depending on the motor type and construction, and is provided for reference only.

    Model Selection

    Model Motor Power (Kw) Frequency Converter Capacity (Kva) Weight (Kg) Cabinet Type Cabinet Dimensions (L×W×H)
    SHMV100-06-185kW 185 230 2650 Cabinet A1 1900X1500X2000
    SHMV100-06-220kW 220 275
    SHMV100-06-250kW 250 320
    SHMV100-06-280kW 280 350 2760
    SHMV100-06-315kW 315 400
    SHMV100-06-355kW 355 450 2930
    SHMV100-06-400kW 400 500
    SHMV100-06-450kW 450 560 3160
    SHMV100-06-500kW 500 630 3360
    SHMV100-06-560kW 560 700 3985 Cabinet B1 2700X1500X2000
    SHMV100-06-630kW 630 800 4042
    SHMV100-06-710kW 710 900 4160
    SHMV100-06-800kW 800 1000 4382
    SHMV100-06-900kW 900 1150 4590
    SHMV100-06-1000kW 1000 1250 4792
    SHMV100-06-1120kW 1120 1400 4985
    SHMV100-06-1250kW 1250 1600 5285
    SHMV100-06-1400kW 1400 1800 6120 Cabinet C1 3033X1650X2200
    SHMV100-06-1600kW 1600 2000 6390
    SHMV100-06-1800kW 1800 2250 6745
    SHMV100-06-2000kW 2000 2500 7090
    SHMV100-06-2250kW 2250 2800 9220 Cabinet D1 5400X1400X2400
    SHMV100-06-2500kW 2500 3200 9570
    SHMV100-06-2800kW 2800 3500 10070
    SHMV100-06-3200kW 3200 4000 10670
    SHMV100-06-3600kW 3550 4500 11240
    SHMV100-06-4000kW 4000 5000 12500 Cabinet F1 6850X1400X2400
    SHMV100-06-4500kW 4500 5650 13000
    SHMV100-06-5000kW 5000 6300 14000
    SHMV100-06-5600kW 5600 7000 17755 Cabinet G1 8200X1600X2400/2600
    SHMV100-06-6300kW 6300 8000 18795
    SHMV100-06-6600kW 7100 9000 19450
    SHMV100-10-185kW 185 230 2220 Cabinet A 2700X1500X2000
    SHMV100-10-220kW 220 275 2240
    SHMV100-10-250kW 250 320 2260
    SHMV100-10-280kW 280 350 2286
    SHMV100-10-315kW 315 400 2316
    SHMV100-10-355kW 355 450 2346
    SHMV100-10-400kW 400 500 2383
    SHMV100-10-450kW 450 560 2433
    SHMV100-10-500kW 500 630 2483
    SHMV100-10-560kW 560 700 2593
    SHMV100-10-630kW 630 800 2719
    SHMV100-10-710kW 710 900 2875
    SHMV100-10-800kW 800 1000 3062
    SHMV100-10-900kW 900 1150 3192 Cabinet B 3033X1650X2200
    SHMV100-10-1000kW 1000 1250 3258
    SHMV100-10-1120kW 1120 1400 3409
    SHMV100-10-1250kW 1250 1600 4390
    SHMV100-10-1400kW 1400 1800 4648
    SHMV100-10-1600kW 1600 2000 4948
    SHMV100-10-1800kW 1800 2250 5270
    SHMV100-10-2000kW 2000 2500 5604 Cabinet C 4000X1500X2200
    SHMV100-10-2250kW 2250 2800 5916
    SHMV100-10-2500kW 2500 3150 7990
    SHMV100-10-2800kW 2800 3500 8150
    SHMV100-10-3200kW 3200 4000 8700
    SHMV100-10-3600kW 3550 4500 8820 Cabinet D 6925X1500X2455
    SHMV100-10-4000kW 4000 5000 11990
    SHMV100-10-4500kW 4500 5600 12500
    SHMV100-10-5000kW 5000 6300 13300
    SHMV100-10-5500kW 5600 7000 13800
    SHMV100-10-6300kW 6300 8000 18410 Cabinet E 9100X1650X2455
    SHMV100-10-7100kW 7100 9000 19700
    SHMV100-10-8000kW 8000 10000 20400 Cabinet F 9200X1700X2800
    SHMV100-10-9000kW 9000 11250 22500
    SHMV100-10-10000kW 10000 12500 27120 Cabinet G 12200X1600X2455
    SHMV100-10-11000kW 11000 13750 28860

    Primary Circuit Diagram

    Primary Circuit Diagram

    Harmonic-Free Solution

    The secondary winding of the phase-shifting transformer employs an extended delta connection, altering the phase angle of each secondary winding per phase.

    • This mitigates the impact of harmonics generated by the unit on the power grid.
    • Taking two units connected in series as an example for analysis: the phase-shift angle θ = 60°/2 = 30°
    • The current is referred to the primary input side and expanded into a Fourier series:
    Fourier series current analysis formula

    The 5th, 7th, and 11th harmonic components have phase angles differing by 180°, and through phase-shifting rectification technology, these harmonics cancel each other out.

    Harmonic cancellation formula

    Take the input phase-shifting transformer of a 10kv variable frequency drive (VFD) as an example. Its primary winding is rated at 10kv, while the secondary side consists of 24 three-phase windings, each with an output voltage of 690v. Every winding adopts an extended delta connection and has a phase shift angle difference of 7.5°. This configuration can effectively eliminate harmonics below the 47th order, which means that 48-pulse rectification is capable of suppressing harmonics lower than the 47th order (calculated by the formula 6n-1, where n refers to the number of units per phase).

    Phase-shifting transformer harmonic suppression diagram

    Industry Applications

    Power Generation

    Induced draft fans, primary/secondary air fans, circulating water pumps, boiler feed pumps, condensate pumps, slurry circulation pumps, vertical coal mills

    Oil, Gas & Chemicals

    Electric submersible pumps (ESPs), injection pumps, crude oil transfer pumps, pipeline compressors, LNG compressors, air separation compressors, syngas compressors, ammonia refrigeration compressors "ice machines", product gas compressors, propylene compressors, carbon dioxide compressors

    Mining

    Conveyor belts, main mine ventilation fans, methane drainage pumps, slurry pumps, crushers, semi-autogenous grinding (SAG) mills, ball mill high-pressure roller mills

    Cement

    Raw mill circulating fans, coal mill exhaust fans, cement mill exhaust fans, kiln inlet exhaust fans, kiln outlet high-temperature fans, kiln tail exhaust fans, clinker cooler fans, coal mills, roller presses

    Metallurgy

    Dust collection fans, sintering main induced draft fans, blast furnace blowers, circulating water pumps, descaling pumps, slag granulation pumps, air separation compressors, grinding mills, stamping presses, bidirectional energy recovery compressors

    Municipal/Water Treatment

    Raw water intake pumps, water supply pumps, primary lift pumps, secondary clear water pumps, seawater desalination pumps, booster pumps, irrigation pumps

    Waste-to-Energy

    Various standard fans and pumps

    Main Features

    Low-voltage ride-through (LVRT)
    Auto-restart after power loss (within 20s)
    Power cell bypass function
    Flying-start (spin-start) capability
    Synchronous switching function
    Redundant control power supply (opt.)
    Redundant power unit design (N+1, opt.)
    Redundant cooling fans (opt.)
    Customizable functions per request
    Dedicated control module for mills
    Magnetizing inrush current cabinet
    One-drive-one manual bypass cabinet
    One-drive-two manual bypass cabinet
    One-drive-one automatic bypass cabinet
    One-drive-two automatic bypass cabinet
    One-drive-one synchronous switching
    Output reactor cabinet
    Isolation cabinet

    Frequently Asked Questions

    What are the clearance requirements for installing this equipment?
    The minimum clearance requirements are at least 1500 mm from the front of the equipment to the wall, at least 1000 mm from the rear, at least 800 mm from either side, and at least 1000 mm from the top of the equipment to the ceiling.
    Is the cooling fan height included in the overall cabinet dimensions?
    No, the overall height does not include the height of the cooling fan. An additional 300 mm to 600 mm should be added to calculate the total system height.
    What is the standard overload capacity for these models?
    The standard overload capacity is 120% for 1 minute, allowed once every 10 minutes. Optional overload capacities of 125%, 150%, or 200% are available to meet specific application requirements.
    How does the harmonic-free solution eliminate low-order harmonics?
    By utilizing an extended delta connection on the secondary winding of the phase-shifting transformer, the phase angle is shifted (e.g., 7.5° difference for 24 three-phase windings). This allows harmonics below the 47th order to cancel each other out via 48-pulse rectification.
    Can the system automatically restart if there is a sudden power loss?
    Yes, the system features an auto-restart after power loss capability, which allows it to resume operation within 20 seconds.