Preset voltage type high voltage frequency transformer power unit by-pass circuit for transformer

A technology of preset voltage and bypass circuit, which is applied to bypass circuit and power unit bypass circuit of transformer preset voltage type high-voltage frequency conversion device, can solve the problem of increased bypass circuit volume, low qualification rate and increased resistance power consumption. and other issues to achieve the effect of ensuring safety and reliability

Active Publication Date: 2011-02-09
BEIJING LEADER & HARVEST ELECTRIC TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

9); but there are certain problems in this bypass circuit in practical applications; because it uses resistors R2 and R3 to connect the anode and cathode of the thyristor to the positive and negative of the DC bus respectively, so that the controllable The voltage value at both ends of the silicon is equal to the bus voltage, so that when the inverter bridge starts to work, the PWM voltage output by it will not reach both ends of the thyristor, but in practical applications, since the thyristor is not an ideal switching element, in the thyristor In the case of non-conduction, a certain DC voltage is applied between the anode and the cathode, and the thyristor will have a leakage current; usually the thyristor itself has a leakage current index, and the general manufacturer stipulates that the leakage current below 5mA is qualified. Therefore, due to the existence of leakage current, a certain current flows through the resistors R2 and R3, which leads to a certain voltage drop on the resistors R2 and R3, so the actual voltage applied to both ends of the thyristor is less than the DC bus voltage , for example, when the DC bus voltage is 1000 volts, the actual measured voltage across the thyristor only reaches 800 volts, which is caused by this reason; dv / dt; there are two ways to solve this problem: first, the resistance value of resistors R2 and R3 can be reduced, but this will increase the power consumption of the resistor and the volume of the bypass circuit; second, select the drain Thyristors with small currents will cause many thyristors with large leakage currents to be unusable in the actual production process, the room for selecting models becomes smaller, and the pass rate is low

Method used

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  • Preset voltage type high voltage frequency transformer power unit by-pass circuit for transformer
  • Preset voltage type high voltage frequency transformer power unit by-pass circuit for transformer
  • Preset voltage type high voltage frequency transformer power unit by-pass circuit for transformer

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Embodiment Construction

[0021] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0022] image 3 It is the schematic circuit diagram of the first embodiment of the present invention. Such as image 3 As shown, the power unit includes a bypass circuit for the H inverter bridge 1 composed of a diode rectifier bridge 2 , a thyristor 3 and a preset voltage circuit 4 . Wherein the diode rectifier bridge 2 and the silicon controlled rectifier 3 are prior art, and will not be described in detail here. The preset voltage circuit 4 includes: three-phase isolation step-up transformer TC1, three-phase full-wave rectifier bridge RD1-RD6, DC filter capacitor C2, current limiting resistor R2, relay KC1, fuse FU1, charging resistor R1, charging capacitor C1.

[0023] The input terminal of the three-phase isolation step-up transformer TC1 is connected to the three-phase AC input of the power unit. After the isolated AC voltage is rectified by ...

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Abstract

The invention provides a bypass circuit for a power unit of the preset voltage type high voltage inverters of a transformer. The bypass circuit comprises a diode rectification bridge connected in parallel beside an H inversion bridge, and a controlled silicon, and is characterized in that a preset voltage circuit is further arranged; the preset voltage circuit comprises a transformer, a rectifier, at least one relay, and at least one charge resistor, a current-limiting resistor and a charging capacitor; the AC output by the transformer is converted into DC by rectification of the rectifier; aDC filter capacitor is in bridge connection with the DC output terminal of the rectifier; the relay and the current-limiting resistor are connected in series between at least one terminal of the anode and the cathode of the DC output terminal of the rectifier and the controlled silicon; the charge resistor and the charging capacitor are connected in parallel beside the controlled silicon after being connected in series.

Description

technical field [0001] The invention relates to a bypass circuit, in particular to a power unit bypass circuit of a transformer preset voltage type high-voltage frequency conversion device, which belongs to the technical field of electrical automation equipment. Background technique [0002] With the rapid development of modern power electronics technology and microelectronics technology, high-voltage and high-power frequency conversion speed control devices continue to mature; especially when the reliability of high-voltage device applications is not too high and the price is high, in recent years people This problem has been well solved by means of unit series connection, so the field and scope of application of unit series multi-level high-voltage inverters are becoming wider and wider, which makes efficient and reasonable use of energy (especially electric energy) ) became possible. [0003] During the operation of the series-connected multi-level high-voltage inverter,...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02M1/32H02M7/521H02M7/5387
Inventor 朱燕华宋海涛
Owner BEIJING LEADER & HARVEST ELECTRIC TECH
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