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Four-Quadrant Phase-Shifting Rectifier Transformer(images 1)

Four-Quadrant Phase-Shifting Rectifier Transformer

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Four-Quadrant Phase-Shifting Rectifier Transformer(images 4)

Ultimate harmonic mitigation through active control and the superposition of multiple passive phase-shifting offsets, achieving top-tier harmonic performance.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 5)

Extremely high power factor, eliminating the need for additional power factor compensation devices.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 6)

Enables 100% regenerative energy feedback to the grid, delivering remarkable energy-saving performance.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 7)

The high-voltage winding adopts a split structure, while the low-voltage winding is designed by optimizing amplitude, phase angle, and axial width. Combined with extensive simulation and measured data verification, the impedance of each unit is controlled within standard limits.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 8)

Widely used in high-end mining heavy equipment, port heavy-duty cranes, large-scale experimental testing platforms, marine electric propulsion systems, and high-performance energy systems.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 9)

Ultimate harmonic mitigation through active control and the superposition of multiple passive phase-shifting offsets, achieving top-tier harmonic performance.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 10)

Extremely high power factor, eliminating the need for additional power factor compensation devices.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 11)

Enables 100% regenerative energy feedback to the grid, delivering remarkable energy-saving performance.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 12)

The high-voltage winding adopts a split structure, while the low-voltage winding is designed by optimizing amplitude, phase angle, and axial width. Combined with extensive simulation and measured data verification, the impedance of each unit is controlled within standard limits.

Four-Quadrant Phase-Shifting Rectifier Transformer(images 13)

Widely used in high-end mining heavy equipment, port heavy-duty cranes, large-scale experimental testing platforms, marine electric propulsion systems, and high-performance energy systems.

InstallationIndoor/Outdoor(with enclosure)
Rated CapacityAs required
Primary VoltageUp to 36kV
Secondary VoltageAs required
Frequency50 / 60 Hz
Tap RangeAs required
Impedance VoltageAs required
Insulation ClassF (155°C) / H (180°C)
Cooling MethodAN / AF
Vector GroupAs required
Winding MaterialCopper / Aluminium
Degree of ProtectionIP00–IP56
StandardsIEC / IEEE
Four-Quadrant Phase-Shifting Rectifier Transformer(images 14)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 15)
PRE-SALES SUPPORT
PRE-SALES SUPPORT
Four-Quadrant Phase-Shifting Rectifier Transformer(images 16)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 17)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 18)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 19)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 20)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 21)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 22)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 23)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 24)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 25)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 26)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 27)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 28)
Four-Quadrant Phase-Shifting Rectifier Transformer(images 29)