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Pulse transformer for driving isolated gate double-base transistor

A pulse transformer and insulating gate technology, applied in the field of transformers, can solve the problems of difficulty in reaching high creepage distance, inconsistent driving performance and waveform, unfavorable working state of IGBT, etc., to achieve good shielding effect, improve performance indicators, reduce noise wave effect

Inactive Publication Date: 2009-06-03
SHANGHAI HUGONG ELECTRIC WELDING MACHINE MFG
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the alternating magnetic field when the transformer is working, it is easy to generate electromagnetic interference and be interfered. In addition, the hierarchical relationship between the primary and secondary windings of the transformer is also difficult to deal with, resulting in differences in performance and waveforms between several groups of driving windings. The inconsistency of driving performance and waveform is very unfavorable to the working state of IGBT, and it will increase the power consumption of IGBT and damage IGBT. In addition, the dielectric strength and creepage distance between windings and between layers It is also difficult to meet the high standard requirements, so there are many deficiencies

Method used

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  • Pulse transformer for driving isolated gate double-base transistor

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Embodiment Construction

[0010] The specific embodiments of the present invention will be further described below in conjunction with the accompanying drawings.

[0011] figure 1 It is a structural schematic diagram of an IGBT drive transformer of the present invention, including a bracket 4 with supporting legs for supporting the pot-shaped magnetic core and windings, and a pot-shaped magnetic core 1 arranged on the bracket. Inside the pot-shaped magnetic core 1 It has a magnetic core skeleton on which more than two windings 2 are mixedly wound, and the pins of all windings 2 are drawn out from the pot-type magnetic core 1 through the winding lead wire 3 respectively, and are fixed on the support of the bracket 4 on feet. The wires of all the windings 2 of the transformer are twisted and then mixed and wound on the magnetic core bobbin. The wires of all the windings 2 are high-temperature wires, and wires of different colors are used to distinguish between the windings.

[0012] When the IGBT driv...

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Abstract

The pulse transformer for a driving an isolated gate double-base transistor in the invention changes layering and grouping coiling into mixing layer coiling, thus strengthening and deepening coupling degree, so that the parameters and functions such as impedance, inductance, coupling degree, waveform and the like of various secondary levels and windings are basically consistent, thus providing identical driving waveform and conditions for a bridge arm which needs to open and close simultaneously in the working process of IGBT, improving the working reliability of IGBT, reducing noise wave and spike, improving efficiency and reducing loss. The adoption of high-temperature lead can satisfy high-standard requirements, and the selection of a can-shaped magnetic core ensures excellent shielding effect and improves performance index of electromagnetic compatibility of the pulse transformer. Summarizing all the advantages, the IGBT driving transformer is an ideal transformer for driving IGBT.

Description

technical field [0001] The present invention relates to transformers, in particular to pulse transformers for driving insulated gate double base transistors. Background technique [0002] IGBT (Insulated Gate Double Base Transistor) is a new type of electric power device, which is widely used in switching power supply, frequency conversion power supply, inverter power supply, and inverter welding machine as a high-frequency and high-power switching device. Since IGBT is a voltage-type Control devices have high input impedance, large inter-electrode capacitance, high threshold voltage, and strict requirements for turn-on waveforms. Therefore, the requirements for driving are very high, and the driving performance directly affects IGBT. A series of issues such as work safety, reliability, power consumption, and efficiency. In general, there are two main ways to drive the IGBT, one is electronic optocoupler drive; the other is transformer drive. Since the electronic component...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01F27/30H01F27/28H01F27/29
Inventor 郁丽芳
Owner SHANGHAI HUGONG ELECTRIC WELDING MACHINE MFG
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