CN106059311A - 一种基于过压保护电路的恒压输出电源 - Google Patents

一种基于过压保护电路的恒压输出电源 Download PDF

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CN106059311A
CN106059311A CN201610517253.5A CN201610517253A CN106059311A CN 106059311 A CN106059311 A CN 106059311A CN 201610517253 A CN201610517253 A CN 201610517253A CN 106059311 A CN106059311 A CN 106059311A
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Chengdu Presster Energy Saving Technology Co Ltd
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M3/00Conversion of dc power input into dc power output
    • H02M3/22Conversion of dc power input into dc power output with intermediate conversion into ac
    • H02M3/24Conversion of dc power input into dc power output with intermediate conversion into ac by static converters
    • H02M3/28Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac
    • H02M3/325Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal
    • H02M3/335Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal using semiconductor devices only
    • H02M3/33569Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal using semiconductor devices only having several active switching elements
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/10Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for converters; for rectifiers
    • H02H7/12Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for converters; for rectifiers for static converters or rectifiers
    • H02H7/1213Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for converters; for rectifiers for static converters or rectifiers for DC-DC converters
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M3/00Conversion of dc power input into dc power output
    • H02M3/22Conversion of dc power input into dc power output with intermediate conversion into ac
    • H02M3/24Conversion of dc power input into dc power output with intermediate conversion into ac by static converters
    • H02M3/28Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac
    • H02M3/325Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal
    • H02M3/335Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal using semiconductor devices only
    • H02M3/33507Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal using semiconductor devices only with automatic control of the output voltage or current, e.g. flyback converters
    • H02M3/33523Conversion of dc power input into dc power output with intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac using devices of a triode or a transistor type requiring continuous application of a control signal using semiconductor devices only with automatic control of the output voltage or current, e.g. flyback converters with galvanic isolation between input and output of both the power stage and the feedback loop
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M1/00Details of apparatus for conversion
    • H02M1/0003Details of control, feedback or regulation circuits
    • H02M1/0016Control circuits providing compensation of output voltage deviations using feedforward of disturbance parameters
    • H02M1/0022Control circuits providing compensation of output voltage deviations using feedforward of disturbance parameters the disturbance parameters being input voltage fluctuations

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Emergency Protection Circuit Devices (AREA)

Abstract

本发明公开了一种基于过压保护电路的恒压输出电源,其特征在于:主要由变压器T,二极管D1,三极管VT5,分别与变压器T的原边电感线圈L1和原边电感线圈L2相连接的基极触发电路,与变压器T的原边电感线圈L1的同名端相连接的过压保护电路等组成。本发明可以对输入的电压进行监测,并实时对电压进行调整,使电压维持在恒定的范围内,如此,即使市电出现波动,本发明也可以输出恒定的电压,使其能够更好的为电子设备供电。同时,本发明可以在输入电压出现过电压时自动断开电路,从而保护系统不被过电压损坏。

Description

一种基于过压保护电路的恒压输出电源
技术领域
本发明涉及电子领域,具体是指一种基于过压保护电路的恒压输出电源。
背景技术
随着电子技术的高速发展,电子设备的种类也越来越多,给人们的生活带来了很大的乐趣。任何电子设备都离不开可靠的电源,目前电子设备的功能越来越多样化,他们对电源的要求也越来越高。然而目前的电源稳定性较低,容易受到市电波动影响,导致其输出电压不稳定,严重影响电子设备的使用寿命。
发明内容
本发明的目的在于解决目前的电源稳定性较低的缺陷,提供一种基于过压保护电路的恒压输出电源。
本发明的目的通过下述技术方案现实:一种基于过压保护电路的恒压输出电源,主要由变压器T,二极管D1,三极管VT5,分别与变压器T的原边电感线圈L1和原边电感线圈L2相连接的基极触发电路,与变压器T的原边电感线圈L1的同名端相连接的过压保护电路,一端与基极触发电路相连接、另一端与二极管D1的P极共同形成输入端的电阻R1,正极与变压器T的副边电感线圈L2的非同名端相连接、负极经电阻R6后与三极管VT5的集电极相连接的电容C6,分别与三极管VT5和基极触发电路相连接的采样电路,以及与变压器T的副边电感线圈L3相连接的稳压输出电路组成;所述二极管D1的N极与过压保护电路相连接。
进一步的,所述过压保护电路由三极管VT6,三极管VT7,三极管VT8,三极管VT9,串接在三极管VT6的发射极和三极管VT7的集电极之间的电阻R8,N极与三极管VT8的基极相连接、P极经电容C8后与三极管VT6的集电极相连接的二极管D5,串接在三极管VT7的基极和三极管VT8的基极之间的电阻R9,串接在三极管VT6的发射极和三极管VT9的发射极之间的电阻R10,一端与三极管VT9的发射极相连接、另一端接地的电阻R11,以及P极与三极管VT9的集电极相连接、N极与三极管VT7的发射极相连接的二极管D6组成;所述三极管VT6的基极作为该过压保护电路的输入端并与二极管D1的N极相连接、其集电极接地;所述三极管VT8的集电极与三极管VT7的发射极相连接、其发射极与三极管VT9的基极相连接;所述三极管VT7的发射极作为该过压保护电路的输出端并与变压器T的原边电感线圈L1的同名端相连接。
所述基极触发电路由三极管VT1、三极管VT2,正极与过压保护电路的输出端相连接、负极经电阻R3后与三极管VT1的发射极相连接的极性电容C1,串接在过压保护电路的输出端和三极管VT1的集电极之间的电阻R2,N极与三极管VT1的基极相连接、P极与三极管VT2的发射极相连接的二极管D2,以及正极与过压保护电路的输出端相连接、负极与三极管VT2的集电极相连接的电容C2组成;所述三极管VT2的发射极与三极管VT1的发射极相连接、其集电极与变压器T的原边电感线圈L1的非同名端相连接、其基极则与采样电路相连接;所述变压器T的原边电感线圈L2的同名端与三极管VT2的发射极相连接;所述极性电容C1的负极与采样电路相连接。
所述采样电路由三极管VT3,三极管VT4,放大器P,正极与极性电容C1的负极相连接、负极与三极管VT3的基极相连接的电容C3,串接在三极管VT2的基极和三极管VT4的集电极之间的电阻R4,正极与三极管VT4的发射极相连接、负极与三极管VT3的发射极相连接的电容C4,串接在放大器P的正极和输出端之间的电阻R5,以及正极与放大器P的负极相连接、负极与三极管VT3的发射极相连接的同时接地的电容C5组成;所述三极管VT4的基极与三极管VT3的集电极相连接、其集电极与放大器P的正极相连接;所述三极管VT5的基极与放大器P的输出端相连接、其发射极与三极管VT3的发射极相连接。
所述稳压输出电路由P极与变压器T的副边电感线圈L3的非同名端相连接、N极与变压器T的副边电感线圈L3的同名端共同形成输出端的稳压二极管D3,正极与稳压二极管D3的N极相连接、负极经电阻R7后与变压器T的副边电感线圈L3的同名端相连接的电容C7,以及N极与稳压二极管D3的N极相连接、P极则与变压器T的副边电感线圈L3的同名端相连接的稳压二极管D4组成。
本发明与现有技术相比具有以下优点及有益效果:
(1)本发明可以对输入的电压进行监测,并实时对电压进行调整,使电压维持在恒定的范围内,如此,即使市电出现波动,本发明也可以输出恒定的电压,使其能够更好的为电子设备供电。
(2)本发明可以在输入电压出现过电压时自动断开电路,从而保护系统不被过电压损坏。
附图说明
图1为本发明的整体结构示意图。
图2为本发明的过压保护电路的结构图。
具体实施方式
下面结合实施例对本发明作进一步地详细说明,但本发明的实施方式并不限于此。
实施例
如图1所示,本发明主要由变压器T,二极管D1,三极管VT5,分别与变压器T的原边电感线圈L1和原边电感线圈L2相连接的基极触发电路,与变压器T的原边电感线圈L1的同名端相连接的过压保护电路,一端与基极触发电路相连接、另一端与二极管D1的P极共同形成输入端的电阻R1,正极与变压器T的副边电感线圈L2的非同名端相连接、负极经电阻R6后与三极管VT5的集电极相连接的电容C6,分别与三极管VT5和基极触发电路相连接的采样电路,以及与变压器T的副边电感线圈L3相连接的稳压输出电路组成;所述二极管D1的N极与过压保护电路相连接。
所述基极触发电路由三极管VT1、三极管VT2,电阻R2,电阻R3,极性电容C1,电容C2以及二极管D2组成。
其中,极性电容C1的正极与过压保护电路的输出端相连接、其负极经电阻R3后与三极管VT1的发射极相连接。电阻R2串接在过压保护电路的输出端和三极管VT1的集电极之间。二极管D2的N极与三极管VT1的基极相连接、其P极与三极管VT2的发射极相连接。电容C2的正极与过压保护电路的输出端相连接、其负极与三极管VT2的集电极相连接。
所述三极管VT2的发射极与三极管VT1的发射极相连接、其集电极与变压器T的原边电感线圈L1的非同名端相连接、其基极则与采样电路相连接。所述变压器T的原边电感线圈L2的同名端与三极管VT2的发射极相连接。所述极性电容C1的负极与采样电路相连接。
另外,所述采样电路由三极管VT3,三极管VT4,放大器P,电阻R4,电阻R5,电容C3,电容C4以及电容C5。
连接时,电容C3的正极与极性电容C1的负极相连接、其负极与三极管VT3的基极相连接。电阻R4串接在三极管VT2的基极和三极管VT4的集电极之间。电容C4的正极与三极管VT4的发射极相连接、其负极与三极管VT3的发射极相连接。电阻R5串接在放大器P的正极和输出端之间。电容C5的正极与放大器P的负极相连接、其负极与三极管VT3的发射极相连接的同时接地。
同时,所述三极管VT4的基极与三极管VT3的集电极相连接、其集电极与放大器P的正极相连接。所述三极管VT5的基极与放大器P的输出端相连接、其发射极与三极管VT3的发射极相连接。
所述稳压输出电路由稳压二极管D3,稳压二极管D4,电容C7以及电阻R7组成。连接时,稳压二极管D3的P极与变压器T的副边电感线圈L3的非同名端相连接、其N极与变压器T的副边电感线圈L3的同名端共同形成输出端。电容C7的正极与稳压二极管D3的N极相连接、其负极经电阻R7后与变压器T的副边电感线圈L3的同名端相连接。稳压二极管D4的N极与稳压二极管D3的N极相连接、其P极则与变压器T的副边电感线圈L3的同名端相连接。
如图2所示,所述过压保护电路由三极管VT6,三极管VT7,三极管VT8,三极管VT9,电阻R8,电阻R9,电阻R10,电阻R11,电容C8,二极管D5以及二极管D6组成。
连接时,电阻R8串接在三极管VT6的发射极和三极管VT7的集电极之间。二极管D5的N极与三极管VT8的基极相连接、其P极经电容C8后与三极管VT6的集电极相连接。电阻R9串接在三极管VT7的基极和三极管VT8的基极之间。电阻R10串接在三极管VT6的发射极和三极管VT9的发射极之间。电阻R11的一端与三极管VT9的发射极相连接、其另一端接地。二极管D6的P极与三极管VT9的集电极相连接、其N极与三极管VT7的发射极相连接。
同时,所述三极管VT6的基极作为该过压保护电路的输入端并与二极管D1的N极相连接、其集电极接地。所述三极管VT8的集电极与三极管VT7的发射极相连接、其发射极与三极管VT9的基极相连接。所述三极管VT7的发射极作为该过压保护电路的输出端并与变压器T的原边电感线圈L1的同名端相连接。
本发明可以对输入的电压进行监测,并实时对电压进行调整,使电压维持在恒定的范围内,如此,即使市电出现波动,本发明也可以输出恒定的电压,使其能够更好的为电子设备供电。同时,本发明可以在输入电压出现过电压时自动断开电路,从而保护系统不被过电压损坏。
如上所述,便可很好的实现本发明。

Claims (5)

1.一种基于过压保护电路的恒压输出电源,其特征在于:主要由变压器T,二极管D1,三极管VT5,分别与变压器T的原边电感线圈L1和原边电感线圈L2相连接的基极触发电路,与变压器T的原边电感线圈L1的同名端相连接的过压保护电路,一端与基极触发电路相连接、另一端与二极管D1的P极共同形成输入端的电阻R1,正极与变压器T的副边电感线圈L2的非同名端相连接、负极经电阻R6后与三极管VT5的集电极相连接的电容C6,分别与三极管VT5和基极触发电路相连接的采样电路,以及与变压器T的副边电感线圈L3相连接的稳压输出电路组成;所述二极管D1的N极与过压保护电路相连接。
2.根据权利要求1所述的一种基于过压保护电路的恒压输出电源,其特征在于:所述过压保护电路由三极管VT6,三极管VT7,三极管VT8,三极管VT9,串接在三极管VT6的发射极和三极管VT7的集电极之间的电阻R8,N极与三极管VT8的基极相连接、P极经电容C8后与三极管VT6的集电极相连接的二极管D5,串接在三极管VT7的基极和三极管VT8的基极之间的电阻R9,串接在三极管VT6的发射极和三极管VT9的发射极之间的电阻R10,一端与三极管VT9的发射极相连接、另一端接地的电阻R11,以及P极与三极管VT9的集电极相连接、N极与三极管VT7的发射极相连接的二极管D6组成;所述三极管VT6的基极作为该过压保护电路的输入端并与二极管D1的N极相连接、其集电极接地;所述三极管VT8的集电极与三极管VT7的发射极相连接、其发射极与三极管VT9的基极相连接;所述三极管VT7的发射极作为该过压保护电路的输出端并与变压器T的原边电感线圈L1的同名端相连接。
3.根据权利要求2所述的一种基于过压保护电路的恒压输出电源,其特征在于:所述基极触发电路由三极管VT1、三极管VT2,正极与过压保护电路的输出端相连接、负极经电阻R3后与三极管VT1的发射极相连接的极性电容C1,串接在过压保护电路的输出端和三极管VT1的集电极之间的电阻R2,N极与三极管VT1的基极相连接、P极与三极管VT2的发射极相连接的二极管D2,以及正极与过压保护电路的输出端相连接、负极与三极管VT2的集电极相连接的电容C2组成;所述三极管VT2的发射极与三极管VT1的发射极相连接、其集电极与变压器T的原边电感线圈L1的非同名端相连接、其基极则与采样电路相连接;所述变压器T的原边电感线圈L2的同名端与三极管VT2的发射极相连接;所述极性电容C1的负极与采样电路相连接。
4.根据权利要求3所述的一种基于过压保护电路的恒压输出电源,其特征在于:所述采样电路由三极管VT3,三极管VT4,放大器P,正极与极性电容C1的负极相连接、负极与三极管VT3的基极相连接的电容C3,串接在三极管VT2的基极和三极管VT4的集电极之间的电阻R4,正极与三极管VT4的发射极相连接、负极与三极管VT3的发射极相连接的电容C4,串接在放大器P的正极和输出端之间的电阻R5,以及正极与放大器P的负极相连接、负极与三极管VT3的发射极相连接的同时接地的电容C5组成;所述三极管VT4的基极与三极管VT3的集电极相连接、其集电极与放大器P的正极相连接;所述三极管VT5的基极与放大器P的输出端相连接、其发射极与三极管VT3的发射极相连接。
5.根据权利要求4所述的一种基于过压保护电路的恒压输出电源,其特征在于:所述稳压输出电路由P极与变压器T的副边电感线圈L3的非同名端相连接、N极与变压器T的副边电感线圈L3的同名端共同形成输出端的稳压二极管D3,正极与稳压二极管D3的N极相连接、负极经电阻R7后与变压器T的副边电感线圈L3的同名端相连接的电容C7,以及N极与稳压二极管D3的N极相连接、P极则与变压器T的副边电感线圈L3的同名端相连接的稳压二极管D4组成。
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CN106786466A (zh) * 2017-02-13 2017-05-31 深圳市沃特沃德股份有限公司 一种电源过压保护电路、电源模块及移动终端
CN108040399A (zh) * 2018-01-03 2018-05-15 欧普照明股份有限公司 一种过压保护电路和led恒流驱动电路

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CN106786466B (zh) * 2017-02-13 2019-04-05 深圳市沃特沃德股份有限公司 一种电源过压保护电路、电源模块及移动终端
CN108040399A (zh) * 2018-01-03 2018-05-15 欧普照明股份有限公司 一种过压保护电路和led恒流驱动电路
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