TW202105895A - Power supply device - Google Patents

Power supply device Download PDF

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TW202105895A
TW202105895A TW108124876A TW108124876A TW202105895A TW 202105895 A TW202105895 A TW 202105895A TW 108124876 A TW108124876 A TW 108124876A TW 108124876 A TW108124876 A TW 108124876A TW 202105895 A TW202105895 A TW 202105895A
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coupled
potential
terminal
node
diode
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TW108124876A
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TWI699082B (en
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詹子增
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宏碁股份有限公司
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Abstract

A power supply device includes a bridge rectifier, a soft-start circuit, a transformer, a power switch element, a main output stage circuit, an auxiliary output stage circuit, and a controller. The bridge rectifier generates a rectifying voltage according to a first input voltage and a second input voltage. The soft-start circuit includes at least two charging paths. The soft-start circuit generates a start voltage according to the rectifying voltage and a compound control voltage. The transformer generates a first induction voltage and a second induction voltage according to the start voltage. The main output stage circuit generates an output voltage according to the first induction voltage. The auxiliary output stage circuit generates a feedback voltage according to the second induction voltage. The controller determines the compound control voltage and a clock voltage according to the feedback voltage.

Description

電源供應器Power Supplier

本發明係關於一種電源供應器(Power Supply Device),特別係關於一種具備軟啟動功能(Soft Start)之電源供應器。The present invention relates to a power supply device, and particularly relates to a power supply device with a soft start function.

一般電子裝置,例如:桌上型電腦或是筆記型電腦,通常具有較大之輸入電容(Input Capacitance)以搭配各種週邊裝置。然而,當電子裝置所耦接之電源供應器被啟動時,因為其電容性負載(Capacitive Load)之特性,往往會產生極大之湧浪電流(Inrush Current),導致電源供應器之內部電路發生損壞。有鑑於此,勢必要提出一種全新之解決方案,以克服先前技術所面臨之問題。General electronic devices, such as desktop computers or notebook computers, usually have a relatively large input capacitance to match various peripheral devices. However, when the power supply to which the electronic device is coupled is turned on, due to its capacitive load characteristics, a large inrush current is often generated, causing damage to the internal circuit of the power supply. . In view of this, it is necessary to propose a new solution to overcome the problems faced by the prior art.

在較佳實施例中,本發明提供一種電源供應器,包括:一橋式整流器,根據一第一輸入電位和一第二輸入電位來產生一整流電位;一軟啟動電路,包括至少二條充電路徑,其中該軟啟動電路係根據該整流電位和一複合控制電位來產生一啟動電位;一變壓器,包括一主線圈、一副線圈,以及一輔助線圈,其中該主線圈係用於接收該啟動電位,該副線圈係用於產生一第一感應電位,而該輔助線圈係用於產生一第二感應電位;一功率切換器,其中該主線圈係經由該功率切換器耦接至一接地電位,而該功率切換器係根據一時脈電位來進行切換操作;一主要輸出級電路,根據該第一感應電位來產生一輸出電位;一輔助輸出級電路,根據該第二感應電位來產生一回授電位;以及一控制器,偵測該回授電位,其中該控制器係根據該回授電位來決定該複合控制電位和該時脈電位;其中當該回授電位大於或等於一參考電位時,該控制器即針對該等充電路徑進行放電後再旁通該軟啟動電路。In a preferred embodiment, the present invention provides a power supply including: a bridge rectifier that generates a rectified potential according to a first input potential and a second input potential; a soft start circuit including at least two charging paths, The soft start circuit generates a start potential based on the rectified potential and a composite control potential; a transformer includes a main coil, a secondary coil, and an auxiliary coil, wherein the main coil is used to receive the start potential, The auxiliary coil is used to generate a first induced potential, and the auxiliary coil is used to generate a second induced potential; a power switch, wherein the main coil is coupled to a ground potential through the power switch, and The power switch performs switching operations based on a clock potential; a main output stage circuit generates an output potential based on the first induced potential; an auxiliary output stage circuit generates a feedback potential based on the second induced potential And a controller for detecting the feedback potential, wherein the controller determines the composite control potential and the clock potential according to the feedback potential; wherein when the feedback potential is greater than or equal to a reference potential, the The controller discharges the charging paths and then bypasses the soft start circuit.

為讓本發明之目的、特徵和優點能更明顯易懂,下文特舉出本發明之具體實施例,並配合所附圖式,作詳細說明如下。In order to make the purpose, features and advantages of the present invention more comprehensible, specific embodiments of the present invention are listed below, with the accompanying drawings, and detailed descriptions are as follows.

在說明書及申請專利範圍當中使用了某些詞彙來指稱特定的元件。本領域技術人員應可理解,硬體製造商可能會用不同的名詞來稱呼同一個元件。本說明書及申請專利範圍並不以名稱的差異來作為區分元件的方式,而是以元件在功能上的差異來作為區分的準則。在通篇說明書及申請專利範圍當中所提及的「包含」及「包括」一詞為開放式的用語,故應解釋成「包含但不僅限定於」。「大致」一詞則是指在可接受的誤差範圍內,本領域技術人員能夠在一定誤差範圍內解決所述技術問題,達到所述基本之技術效果。此外,「耦接」一詞在本說明書中包含任何直接及間接的電性連接手段。因此,若文中描述一第一裝置耦接至一第二裝置,則代表該第一裝置可直接電性連接至該第二裝置,或經由其它裝置或連接手段而間接地電性連接至該第二裝置。In the specification and the scope of patent application, certain words are used to refer to specific elements. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. This specification and the scope of patent application do not use differences in names as a way to distinguish elements, but use differences in functions of elements as a criterion for distinguishing. The terms "include" and "include" mentioned in the entire specification and the scope of the patent application are open-ended terms and should be interpreted as "including but not limited to". The term "approximately" means that within an acceptable error range, those skilled in the art can solve the technical problem within a certain error range and achieve the basic technical effect. In addition, the term "coupling" includes any direct and indirect electrical connection means in this specification. Therefore, if it is described in the text that a first device is coupled to a second device, it means that the first device can be directly electrically connected to the second device, or indirectly electrically connected to the second device through other devices or connection means. Two devices.

第1圖係顯示根據本發明一實施例所述之電源供應器100之示意圖。例如,電源供應器100可應用於桌上型電腦、筆記型電腦,或一體成形電腦。如第1圖所示,電源供應器100包括:一橋式整流器110、一軟啟動電路120、一變壓器130、一功率切換器140、一主要輸出級電路150、一輔助輸出級電路160,以及一控制器70。必須注意的是,雖然未顯示於第1圖中,但電源供應器100更可包括其他元件,例如:一穩壓器或(且)一負回授電路。FIG. 1 is a schematic diagram of a power supply 100 according to an embodiment of the invention. For example, the power supply 100 can be applied to a desktop computer, a notebook computer, or an integrated computer. As shown in Figure 1, the power supply 100 includes: a bridge rectifier 110, a soft start circuit 120, a transformer 130, a power switch 140, a main output stage circuit 150, an auxiliary output stage circuit 160, and a Controller 70. It should be noted that although not shown in Figure 1, the power supply 100 may further include other components, such as a voltage regulator or (and) a negative feedback circuit.

橋式整流器110係根據一第一輸入電位VIN1和一第二輸入電位VIN2來產生一整流電位VR。第一輸入電位VIN1和第二輸入電位VIN2皆可來自一外部電源,其中第一輸入電位VIN1和第二輸入電位VIN2之間可形成具有任意頻率和任意振幅之一交流電壓。例如,交流電壓之頻率可約為60Hz,而交流電壓之方均根值可約為110V或220V,但亦不僅限於此。軟啟動電路120包括至少二條充電路徑121、122,其中前述充電路徑121、122之每一者可各自包括一電容器以儲存電荷。軟啟動電路120係根據整流電位VR和一複合控制電位VC來產生一啟動電位VE。變壓器130包括一主線圈131、一副線圈132,以及一輔助線圈133,其中主線圈131和輔助線圈133皆可位於變壓器130之同一側,而副線圈132則可位於變壓器130之相對另一側。主線圈131係用於接收啟動電位VE,而作為對啟動電位VE之回應,副線圈132可用於產生一第一感應電位VS1,而輔助線圈133可用於產生一第二感應電位VS2。另外,主線圈131經由功率切換器140耦接至一接地電位VSS(例如:0V),其中功率切換器140係根據一時脈電位VA來進行切換操作。主要輸出級電路150係根據第一感應電位VS1來產生一輸出電位VOUT。輔助輸出級電路160係根據第二感應電位VS2來產生一回授電位VF。控制器170可以是一脈衝寬度調變積體電路。在一些實施例中,控制器170包括一偵測電路、一比較電路,以及一處理電路(未顯示)。控制器170可偵測回授電位VF,並將之與一參考電位VM互相比較,其中控制器170係根據回授電位VF來決定複合控制電位VC和時脈電位VA。大致而言,當回授電位VF大於或等於參考電位VM時,控制器170即針對前述充電路徑121、122進行放電後再旁通(Bypass)軟啟動電路120,使得電源供應器100進入一正常操作模式。根據實際量測結果,此種電路設計方式可防止電源供應器100因初始時之湧浪電流(Inrush Current)而發生損壞,從而能提升電源供應器100之可靠度。The bridge rectifier 110 generates a rectified potential VR according to a first input potential VIN1 and a second input potential VIN2. Both the first input potential VIN1 and the second input potential VIN2 can come from an external power source, wherein an AC voltage having any frequency and any amplitude can be formed between the first input potential VIN1 and the second input potential VIN2. For example, the frequency of the AC voltage may be about 60 Hz, and the root mean square value of the AC voltage may be about 110V or 220V, but it is not limited to this. The soft-start circuit 120 includes at least two charging paths 121, 122, wherein each of the aforementioned charging paths 121, 122 may each include a capacitor to store charges. The soft start circuit 120 generates a start potential VE according to the rectified potential VR and a composite control potential VC. The transformer 130 includes a main winding 131, a secondary winding 132, and an auxiliary winding 133. The primary winding 131 and the auxiliary winding 133 can be located on the same side of the transformer 130, and the secondary winding 132 can be located on the opposite side of the transformer 130. . The main coil 131 is used to receive the starting potential VE, and in response to the starting potential VE, the auxiliary coil 132 can be used to generate a first induced potential VS1, and the auxiliary coil 133 can be used to generate a second induced potential VS2. In addition, the main coil 131 is coupled to a ground potential VSS (for example, 0V) via the power switch 140, wherein the power switch 140 performs a switching operation according to a clock potential VA. The main output stage circuit 150 generates an output potential VOUT according to the first induced potential VS1. The auxiliary output stage circuit 160 generates a feedback potential VF according to the second induced potential VS2. The controller 170 may be a pulse width modulation integrated circuit. In some embodiments, the controller 170 includes a detection circuit, a comparison circuit, and a processing circuit (not shown). The controller 170 can detect the feedback potential VF and compare it with a reference potential VM. The controller 170 determines the composite control potential VC and the clock potential VA according to the feedback potential VF. Generally speaking, when the feedback potential VF is greater than or equal to the reference potential VM, the controller 170 discharges the aforementioned charging paths 121 and 122 and then bypasses the soft start circuit 120, so that the power supply 100 enters a normal state. Mode of operation. According to the actual measurement results, this circuit design method can prevent the power supply 100 from being damaged due to the initial inrush current (Inrush Current), thereby improving the reliability of the power supply 100.

以下實施例將介紹電源供應器100之詳細結構及操作方式。必須理解的是,這些圖式和敘述僅為舉例,而非用於限制本發明之範圍。The following embodiments will introduce the detailed structure and operation of the power supply 100. It must be understood that these drawings and descriptions are only examples, and are not used to limit the scope of the present invention.

第2圖係顯示根據本發明一實施例所述之電源供應器200之示意圖。在第2圖之實施例中,電源供應器200具有一第一輸入節點NIN1、一第二輸入節點NIN2,以及一輸出節點NOUT,並包括一橋式整流器210、一軟啟動電路220、一變壓器230、一功率切換器240、一主要輸出級電路250、一輔助輸出級電路260,以及一控制器270。電源供應器200之第一輸入節點NIN1和第二輸入節點NIN2可由一外部電源處分別接收一第一輸入電位VIN1和一第二輸入電位VIN2,而電源供應器200之輸出節點NOUT可用於輸出一輸出電位VOUT至一電子裝置(例如:一筆記型電腦)。FIG. 2 is a schematic diagram of the power supply 200 according to an embodiment of the invention. In the embodiment of Figure 2, the power supply 200 has a first input node NIN1, a second input node NIN2, and an output node NOUT, and includes a bridge rectifier 210, a soft start circuit 220, and a transformer 230 , A power switch 240, a main output stage circuit 250, an auxiliary output stage circuit 260, and a controller 270. The first input node NIN1 and the second input node NIN2 of the power supply 200 can receive a first input potential VIN1 and a second input potential VIN2 from an external power supply, respectively, and the output node NOUT of the power supply 200 can be used to output a The potential VOUT is output to an electronic device (for example: a notebook computer).

橋式整流器210包括一第一二極體(Diode)D1、一第二二極體D2、一第三二極體D3,以及一第四二極體D4。第一二極體D1具有一陽極(Anode)和一陰極(Cathode),其中第一二極體D1之陽極係耦接至第一輸入節點NIN1,而第一二極體D1之陰極係耦接至一第一節點N1以輸出一整流電位VR。第二二極體D2具有一陽極和一陰極,其中第二二極體D2之陽極係耦接至第一輸入節點NIN1,而第二二極體D2之陰極係耦接至一接地電位VSS。第三二極體D3具有一陽極和一陰極,其中第三二極體D3之陽極係耦接至第一節點N1,而第三二極體D3之陰極係耦接至第二輸入節點NIN2。第四二極體D4具有一陽極和一陰極,其中第四二極體D4之陽極係耦接至接地電位VSS,而第四二極體D4之陰極係耦接至第二輸入節點NIN2。The bridge rectifier 210 includes a first diode (Diode) D1, a second diode D2, a third diode D3, and a fourth diode D4. The first diode D1 has an anode (Anode) and a cathode (Cathode), wherein the anode of the first diode D1 is coupled to the first input node NIN1, and the cathode of the first diode D1 is coupled To a first node N1 to output a rectified potential VR. The second diode D2 has an anode and a cathode. The anode of the second diode D2 is coupled to the first input node NIN1, and the cathode of the second diode D2 is coupled to a ground potential VSS. The third diode D3 has an anode and a cathode. The anode of the third diode D3 is coupled to the first node N1, and the cathode of the third diode D3 is coupled to the second input node NIN2. The fourth diode D4 has an anode and a cathode. The anode of the fourth diode D4 is coupled to the ground potential VSS, and the cathode of the fourth diode D4 is coupled to the second input node NIN2.

軟啟動電路220包括一第五二極體D5、一第六二極體D6、一第七二極體D7、一電阻器R1、一第一電容器C1、一第二電容器C2、一第一電晶體M1、一第二電晶體M2,以及一第三電晶體M3。例如,第一電晶體M1、第二電晶體M2,以及第三電晶體M3之每一者可各自為一N型金氧半場效電晶體。第五二極體D5具有一陽極和一陰極,其中第五二極體D5之陽極係耦接至第一節點N1以接收整流電位VR,而第五二極體D5之陰極係耦接至一第二節點N2。電阻器R1具有一第一端和一第二端,其中電阻器R1之第一端係耦接至第二節點N2,而電阻器R1之第二端係耦接至一第三節點N3以輸出一啟動電位VE。第六二極體D6具有一陽極和一陰極,其中第六二極體D6之陽極係耦接至第一節點N1,而第六二極體D6之陰極係耦接至一第四節點N4。第一電容器C1具有一第一端和一第二端,其中第一電容器C1之第一端係耦接至第四節點N4,而第一電容器C1之第二端係耦接至第三節點N3。第七二極體D7具有一陽極和一陰極,其中第七二極體D7之陽極係耦接至第一節點N1,而第七二極體D7之陰極係耦接至一第五節點N5。第二電容器C2具有一第一端和一第二端,其中第二電容器C2之第一端係耦接至第五節點N5,而第二電容器C2之第二端係耦接至第三節點N3。必須注意的是,第六二極體D6和第一電容器C1可形成軟啟動電路220之一第一充電路徑221,而第七二極體D7和第二電容器C2可形成軟啟動電路220之一第二充電路徑222。The soft start circuit 220 includes a fifth diode D5, a sixth diode D6, a seventh diode D7, a resistor R1, a first capacitor C1, a second capacitor C2, and a first capacitor. Crystal M1, a second transistor M2, and a third transistor M3. For example, each of the first transistor M1, the second transistor M2, and the third transistor M3 can each be an N-type MOSFET. The fifth diode D5 has an anode and a cathode. The anode of the fifth diode D5 is coupled to the first node N1 to receive the rectified potential VR, and the cathode of the fifth diode D5 is coupled to a The second node N2. The resistor R1 has a first end and a second end. The first end of the resistor R1 is coupled to the second node N2, and the second end of the resistor R1 is coupled to a third node N3 for output A start potential VE. The sixth diode D6 has an anode and a cathode. The anode of the sixth diode D6 is coupled to the first node N1, and the cathode of the sixth diode D6 is coupled to a fourth node N4. The first capacitor C1 has a first terminal and a second terminal, wherein the first terminal of the first capacitor C1 is coupled to the fourth node N4, and the second terminal of the first capacitor C1 is coupled to the third node N3 . The seventh diode D7 has an anode and a cathode. The anode of the seventh diode D7 is coupled to the first node N1, and the cathode of the seventh diode D7 is coupled to a fifth node N5. The second capacitor C2 has a first terminal and a second terminal, wherein the first terminal of the second capacitor C2 is coupled to the fifth node N5, and the second terminal of the second capacitor C2 is coupled to the third node N3 . It must be noted that the sixth diode D6 and the first capacitor C1 can form one of the first charging paths 221 of the soft-start circuit 220, and the seventh diode D7 and the second capacitor C2 can form one of the soft-start circuits 220. The second charging path 222.

詳細而言,控制器270可偵測一回授電位VF,再藉由比較回授電位VF與一參考電位VM來產生一複合控制電位VC和一時脈電位VA,其中複合控制電位VC包括一第一控制電位VC1、一第二控制電位VC2,以及一第三控制電位VC3。第一電晶體M1具有一控制端(或一閘極)、一第一端(或一源極),以及一第二端(或一汲極),其中第一電晶體M1之控制端係用於接收第一控制電位VC1,第一電晶體M1之第一端係耦接至第四節點N4,而第一電晶體M1之第二端係耦接至第二節點N2。第二電晶體M2具有一控制端、一第一端,以及一第二端,其中第二電晶體M2之控制端係用於接收第二控制電位VC2,第二電晶體M2之第一端係耦接至第五節點N5,而第二電晶體M2之第二端係耦接至第二節點N2。第三電晶體M3具有一控制端、一第一端,以及一第二端,其中第三電晶體M3之控制端係用於接收第三控制電位VC3,第三電晶體M3之第一端係耦接至第三節點N3,而第三電晶體M3之第二端係耦接至第一節點N1。In detail, the controller 270 can detect a feedback potential VF, and then generate a composite control potential VC and a clock potential VA by comparing the feedback potential VF with a reference potential VM, wherein the composite control potential VC includes a first A control potential VC1, a second control potential VC2, and a third control potential VC3. The first transistor M1 has a control terminal (or a gate), a first terminal (or a source), and a second terminal (or a drain). The control terminal of the first transistor M1 is used Upon receiving the first control potential VC1, the first end of the first transistor M1 is coupled to the fourth node N4, and the second end of the first transistor M1 is coupled to the second node N2. The second transistor M2 has a control terminal, a first terminal, and a second terminal. The control terminal of the second transistor M2 is used to receive the second control potential VC2, and the first terminal of the second transistor M2 is It is coupled to the fifth node N5, and the second terminal of the second transistor M2 is coupled to the second node N2. The third transistor M3 has a control terminal, a first terminal, and a second terminal. The control terminal of the third transistor M3 is used to receive the third control potential VC3, and the first terminal of the third transistor M3 is It is coupled to the third node N3, and the second end of the third transistor M3 is coupled to the first node N1.

變壓器230包括一主線圈231、一副線圈232,以及一輔助線圈233,其中主線圈231和輔助線圈233皆可位於變壓器230之同一側,而副線圈232則可位於變壓器230之相對另一側。主線圈231具有一第一端和一第二端,其中主線圈231之第一端係耦接至第三節點N3以接收啟動電位VE,而主線圈231之第二端係耦接至一第六節點N6。副線圈232具有一第一端和一第二端,其中副線圈231之第一端係耦接至一第七節點N7以輸出一第一感應電位VS1,而副線圈232之第二端係耦接至接地電位VSS。輔助線圈233具有一第一端和一第二端,其中輔助線圈233之第一端係耦接至一第八節點N8以輸出一第二感應電位VS2,而輔助線圈233之第二端係耦接至接地電位VSS。The transformer 230 includes a main winding 231, a secondary winding 232, and an auxiliary winding 233. The primary winding 231 and the auxiliary winding 233 can be located on the same side of the transformer 230, and the secondary winding 232 can be located on the opposite side of the transformer 230. . The main coil 231 has a first end and a second end. The first end of the main coil 231 is coupled to the third node N3 to receive the activation potential VE, and the second end of the main coil 231 is coupled to a Six nodes N6. The auxiliary coil 232 has a first end and a second end. The first end of the auxiliary coil 231 is coupled to a seventh node N7 to output a first induced potential VS1, and the second end of the auxiliary coil 232 is coupled Connect to the ground potential VSS. The auxiliary coil 233 has a first end and a second end. The first end of the auxiliary coil 233 is coupled to an eighth node N8 to output a second induced potential VS2, and the second end of the auxiliary coil 233 is coupled Connect to the ground potential VSS.

功率切換器240包括一第四電晶體M4。例如,第四電晶體M4可為一N型金氧半場效電晶體。第四電晶體M4具有一控制端、一第一端,以及一第二端,其中第四電晶體M4之控制端係用於接收時脈電位VA,第四電晶體M4之第一端係耦接至接地電位VSS,而第四電晶體M4之第二端係耦接至第六節點N6。The power switch 240 includes a fourth transistor M4. For example, the fourth transistor M4 can be an N-type MOSFET. The fourth transistor M4 has a control terminal, a first terminal, and a second terminal. The control terminal of the fourth transistor M4 is used to receive the clock potential VA, and the first terminal of the fourth transistor M4 is coupled It is connected to the ground potential VSS, and the second end of the fourth transistor M4 is coupled to the sixth node N6.

主要輸出級電路250包括一第八二極體D8和一第三電容器C3。第八二極體D8具有一陽極和一陰極,其中第八二極體D8之陽極係耦接至第七節點N7以接收第一感應信號VS1,而第八二極體D8之陰極係耦接至輸出節點NOUT。第三電容器C3具有一第一端和一第二端,其中第三電容器C3之第一端係耦接至輸出節點NOUT,而第三電容器C3之第二端係耦接至接地電位VSS。The main output stage circuit 250 includes an eighth diode D8 and a third capacitor C3. The eighth diode D8 has an anode and a cathode. The anode of the eighth diode D8 is coupled to the seventh node N7 to receive the first sensing signal VS1, and the cathode of the eighth diode D8 is coupled To the output node NOUT. The third capacitor C3 has a first terminal and a second terminal. The first terminal of the third capacitor C3 is coupled to the output node NOUT, and the second terminal of the third capacitor C3 is coupled to the ground potential VSS.

輔助輸出級電路260包括一第九二極體D9和一第四電容器C4。第九二極體D9具有一陽極和一陰極,其中第九二極體D9之陽極係耦接至第八節點N8以接收第二感應信號VS2,而第九二極體D9之陰極係耦接至一第九節點N9以輸出回授電位VF。第四電容器C4具有一第一端和一第二端,其中第四電容器C4之第一端係耦接至第九節點N9,而第四電容器C4之第二端係耦接至接地電位VSS。The auxiliary output stage circuit 260 includes a ninth diode D9 and a fourth capacitor C4. The ninth diode D9 has an anode and a cathode. The anode of the ninth diode D9 is coupled to the eighth node N8 to receive the second sensing signal VS2, and the cathode of the ninth diode D9 is coupled To a ninth node N9 to output the feedback potential VF. The fourth capacitor C4 has a first terminal and a second terminal. The first terminal of the fourth capacitor C4 is coupled to the ninth node N9, and the second terminal of the fourth capacitor C4 is coupled to the ground potential VSS.

電源供應器200之操作原理可如下列所述。初始時,第一電晶體M1、第二電晶體M2、第三電晶體M3,以及第四電晶體M4皆處於關閉狀態(Turned Off,或不導通)。接著,電源供應器200可依序操作於一第一模式、一第二模式、一第三模式,以及一第四模式,之後再進入一正常操作模式以提供穩定之輸出電位VOUT給一電子裝置。前述之第一模式、第二模式、第三模式,以及第四模式皆可視為電源供應器200之一前置校正程序。The operating principle of the power supply 200 can be as follows. Initially, the first transistor M1, the second transistor M2, the third transistor M3, and the fourth transistor M4 are all turned off (turned off, or non-conductive). Then, the power supply 200 can sequentially operate in a first mode, a second mode, a third mode, and a fourth mode, and then enter a normal operation mode to provide a stable output potential VOUT to an electronic device . The aforementioned first mode, second mode, third mode, and fourth mode can all be regarded as a pre-calibration procedure of the power supply 200.

首先,在第一模式中,第一電晶體M1、第二電晶體M2、第三電晶體M3,以及第四電晶體M4仍皆維持於關閉狀態。橋式整流器210開始接收來自外部電源之第一輸入電位VIN1和第二輸入電位VIN2,使得軟啟動電路220中之第一電容器C1和第二電容器C2逐漸充電至其最大儲存電壓。此時,第一電容器C1和第二電容器C2可視一並聯電容組合,其再與電子裝置之一輸入電容器作串聯耦接。由於電子裝置之等效輸入電容值下降,故此種設計將可有效抑制進入電源供應器200之一湧浪電流(Inrush Current),達成所預期之軟啟動功效。First, in the first mode, the first transistor M1, the second transistor M2, the third transistor M3, and the fourth transistor M4 are still maintained in the off state. The bridge rectifier 210 starts to receive the first input potential VIN1 and the second input potential VIN2 from the external power supply, so that the first capacitor C1 and the second capacitor C2 in the soft start circuit 220 are gradually charged to their maximum storage voltage. At this time, the first capacitor C1 and the second capacitor C2 can be regarded as a parallel capacitor combination, which is then coupled in series with an input capacitor of the electronic device. Since the equivalent input capacitance value of the electronic device decreases, this design can effectively suppress an inrush current (Inrush Current) entering the power supply 200 and achieve the expected soft-start effect.

在第二模式中,功率切換器240之第四電晶體M4開始根據時脈電位VA來進行高頻之切換操作(亦即,交替地啟動及關閉)。此時,變壓器230可將輸入能量傳送至主要輸出級電路250以形成輸出電位VOUT並對第三電容器C3進行充電;另外,變壓器230更可將輸入能量傳送至輔助輸出級電路260以形成回授電位VF並對第四電容器C4進行充電。In the second mode, the fourth transistor M4 of the power switch 240 starts to perform high-frequency switching operations (that is, alternately turned on and off) according to the clock potential VA. At this time, the transformer 230 can transfer the input energy to the main output stage circuit 250 to form the output potential VOUT and charge the third capacitor C3; in addition, the transformer 230 can also transfer the input energy to the auxiliary output stage circuit 260 to form a feedback The potential VF charges the fourth capacitor C4.

在第三模式中,當偵測到回授電位VF已上升達到參考電位VM時,控制器270即輸出具有高邏輯位準之第一控制電位VC1和第二控制電位VC2至軟啟動電路220。此時,第一電晶體M1和第二電晶體M2皆被啟動(Turned On,或導通),使得第一電容器C1和第二電容器C2皆可透過電阻器R1進行放電。當第一電容器C1和第二電容器C2皆已無任何儲存電荷時(亦即,完全放電狀態),控制器270再輸出具有低邏輯位準之第一控制電位VC1和第二控制電位VC2以重新關閉第一電晶體M1和第二電晶體M2。In the third mode, when it is detected that the feedback potential VF has risen to the reference potential VM, the controller 270 outputs the first control potential VC1 and the second control potential VC2 with high logic levels to the soft start circuit 220. At this time, both the first transistor M1 and the second transistor M2 are turned on (turned on), so that both the first capacitor C1 and the second capacitor C2 can be discharged through the resistor R1. When the first capacitor C1 and the second capacitor C2 have no stored charge (that is, the fully discharged state), the controller 270 then outputs the first control potential VC1 and the second control potential VC2 with low logic levels to restart Turn off the first transistor M1 and the second transistor M2.

最後,在第四模式中,在第一電容器C1和第二電容器C2皆已完全放電後,控制器270再輸出具有高邏輯位準之第三控制電位VC3至軟啟動電路220。此時,第三電晶體M3被啟動並形成近似於短路之一旁通路徑(Bypass Path),其可將軟啟動電路220整體完全禁能。在此設計下,軟啟動電路220不再額外消耗電力,可確保電源供應器200於正常操作模式期間不會受到軟啟動電路220之負面影響。換言之,電源供應器200可於正常操作模式中提供預設之輸出規格給電子裝置,其已與軟啟動電路220無互相關聯。Finally, in the fourth mode, after the first capacitor C1 and the second capacitor C2 are completely discharged, the controller 270 then outputs the third control potential VC3 with a high logic level to the soft start circuit 220. At this time, the third transistor M3 is activated and forms a bypass path similar to a short circuit, which can completely disable the soft start circuit 220 as a whole. Under this design, the soft start circuit 220 no longer consumes additional power, which can ensure that the power supply 200 will not be negatively affected by the soft start circuit 220 during the normal operation mode. In other words, the power supply 200 can provide a preset output specification to the electronic device in the normal operation mode, and it has no correlation with the soft start circuit 220.

在一些實施例中,電源供應器200之元件參數可如下列所述。電阻器R1之電阻值(Resistance)可介於9kΩ至11kΩ之間,較佳為10kΩ。第一電容器C1之電容值(Capacitance)可介於17.6μF至26.4μF之間,較佳為22μF。第二電容器C2之電容值可介於37.6μF至56.4μF之間,較佳為47μF。第三電容器C3之電容值可介於544μF至816μF之間,較佳為680μF。第四電容器C4之電容值可介於37.6μF至56.4μF之間,較佳為47μF。主線圈231對副線圈232之匝數比值可介於1至10之間,較佳為5。副線圈232對輔助線圈233之匝數比值可介於1至20之間,較佳為10。以上參數範圍係根據多次實驗結果而得出,其有助於最佳化電源供應器200之轉換效率和軟啟動效果。In some embodiments, the component parameters of the power supply 200 may be as described below. The resistance of the resistor R1 can be between 9kΩ and 11kΩ, preferably 10kΩ. The capacitance of the first capacitor C1 can be between 17.6 μF and 26.4 μF, preferably 22 μF. The capacitance value of the second capacitor C2 can be between 37.6 μF and 56.4 μF, preferably 47 μF. The capacitance value of the third capacitor C3 can be between 544 μF and 816 μF, preferably 680 μF. The capacitance value of the fourth capacitor C4 can be between 37.6 μF and 56.4 μF, preferably 47 μF. The ratio of the number of turns of the primary coil 231 to the secondary coil 232 can be between 1 and 10, preferably 5. The ratio of the number of turns of the auxiliary coil 232 to the auxiliary coil 233 may be between 1 and 20, preferably 10. The above parameter range is based on the results of many experiments, which helps to optimize the conversion efficiency and soft start effect of the power supply 200.

第3圖係顯示根據本發明另一實施例所述之電源供應器300之示意圖。第3圖和第2圖相似。在第3圖之實施例中,複合控制電位VC更包括一第四控制電位VC4,而電源供應器300之一軟啟動電路320更包括一第十二極體D10、一第五電容器C5,以及一第五電晶體M5。第十二極體D10具有一陽極和一陰極,其中第十二極體D10之陽極係耦接至第一節點N1,而第十二極體D10之陰極係耦接至一第十節點N10。第五電容器C5具有一第一端和一第二端,其中第五電容器C5之第一端係耦接至第十節點N10,而第五電容器C5之第二端係耦接至第三節點N3。例如,第五電容器C5之電容值可介於54.4μF至81.6μF之間,較佳為68μF。必須注意的是,第十二極體D10和第五電容器C5可形成軟啟動電路320之一第三充電路徑223。例如,第五電晶體M5可為一N型金氧半場效電晶體。第五電晶體M5具有一控制端、一第一端,以及一第二端,其中第五電晶體M5之控制端係用於接收第四控制電位VC4,第五電晶體M5之第一端係耦接至第十節點N10,而第五電晶體M5之第二端係耦接至第二節點N2。相似地,在前述之第三模式中,當偵測到回授電位VF已達到參考電位VM時,控制器270更輸出具有高邏輯位準之第四控制電位VC4以啟動第五電晶體M5,使得第五電容器C5可透過電阻器R1進行放電。在第五電容器C5完全放電之後,控制器270再輸出具有低邏輯位準之第四控制電位VC4以重新關閉第五電晶體M5。根據實際量測結果,第三充電路徑223之加入可進一步降低電子裝置之等效輸入電容值同時再強化電源供應器300之軟啟動功效。第3圖之電源供應器300之其餘特徵皆與第2圖之電源供應器200相似,故此二實施例均可達成相似之操作效果。FIG. 3 is a schematic diagram of a power supply 300 according to another embodiment of the invention. Figure 3 is similar to Figure 2. In the embodiment of FIG. 3, the composite control potential VC further includes a fourth control potential VC4, and a soft start circuit 320 of the power supply 300 further includes a twelfth pole body D10, a fifth capacitor C5, and A fifth transistor M5. The twelfth polar body D10 has an anode and a cathode. The anode of the twelfth polar body D10 is coupled to the first node N1, and the cathode of the twelfth polar body D10 is coupled to a tenth node N10. The fifth capacitor C5 has a first terminal and a second terminal, wherein the first terminal of the fifth capacitor C5 is coupled to the tenth node N10, and the second terminal of the fifth capacitor C5 is coupled to the third node N3 . For example, the capacitance value of the fifth capacitor C5 may be between 54.4 μF and 81.6 μF, preferably 68 μF. It must be noted that the twelfth polar body D10 and the fifth capacitor C5 may form a third charging path 223 of the soft start circuit 320. For example, the fifth transistor M5 can be an N-type MOSFET. The fifth transistor M5 has a control terminal, a first terminal, and a second terminal. The control terminal of the fifth transistor M5 is used to receive the fourth control potential VC4, and the first terminal of the fifth transistor M5 is It is coupled to the tenth node N10, and the second terminal of the fifth transistor M5 is coupled to the second node N2. Similarly, in the aforementioned third mode, when it is detected that the feedback potential VF has reached the reference potential VM, the controller 270 further outputs the fourth control potential VC4 with a high logic level to activate the fifth transistor M5. The fifth capacitor C5 can be discharged through the resistor R1. After the fifth capacitor C5 is completely discharged, the controller 270 outputs a fourth control potential VC4 with a low logic level to turn off the fifth transistor M5 again. According to the actual measurement results, the addition of the third charging path 223 can further reduce the equivalent input capacitance value of the electronic device and at the same time enhance the soft-start function of the power supply 300. The remaining features of the power supply 300 in FIG. 3 are similar to those of the power supply 200 in FIG. 2. Therefore, the two embodiments can achieve similar operating effects.

本發明提出一種新穎之電源供應器,其包括一軟啟動電路。根據實際量測結果,使用前述軟啟動電路之電源供應器可具有更高之可靠度,以符合國際電工委員會(International Electro Technical Commission,IEC)之規範。大致而言,本發明之電源供應器不易受到初始時之湧浪電流之負面影響,故其很適合應用於各種各式之電子裝置當中。The present invention provides a novel power supply, which includes a soft start circuit. According to the actual measurement results, the power supply using the aforementioned soft-start circuit can have higher reliability to comply with the International Electro Technical Commission (IEC) specifications. Generally speaking, the power supply of the present invention is not susceptible to the negative effects of the initial surge current, so it is very suitable for application in various types of electronic devices.

值得注意的是,以上所述之電位、電流、電阻值、電感值、電容值,以及其餘元件參數均非為本發明之限制條件。設計者可以根據不同需要調整這些設定值。本發明之電源供應器並不僅限於第1-3圖所圖示之狀態。本發明可以僅包括第1-3圖之任何一或複數個實施例之任何一或複數項特徵。換言之,並非所有圖示之特徵均須同時實施於本發明之電源供應器當中。雖然本發明之實施例係使用金氧半場效電晶體為例,但本發明並不僅限於此,本技術領域人士可改用其他種類之電晶體,例如:接面場效電晶體,或是鰭式場效電晶體等等,而不致於影響本發明之效果。It is worth noting that the above-mentioned potential, current, resistance value, inductance value, capacitance value, and other component parameters are not the limiting conditions of the present invention. The designer can adjust these settings according to different needs. The power supply of the present invention is not limited to the state shown in Figures 1-3. The present invention may only include any one or more of the features of any one or more of the embodiments shown in FIGS. 1-3. In other words, not all the features shown in the figures need to be implemented in the power supply of the present invention at the same time. Although the embodiment of the present invention uses metal oxide half field effect transistors as an example, the present invention is not limited to this. Those skilled in the art can use other types of transistors, such as junction field effect transistors or fins. Type field effect transistors, etc., without affecting the effect of the present invention.

在本說明書以及申請專利範圍中的序數,例如「第一」、「第二」、「第三」等等,彼此之間並沒有順序上的先後關係,其僅用於標示區分兩個具有相同名字之不同元件。The ordinal numbers in this specification and the scope of the patent application, such as "first", "second", "third", etc., do not have a sequential relationship with each other, and they are only used to distinguish two having the same Different components of the name.

本發明雖以較佳實施例揭露如上,然其並非用以限定本發明的範圍,任何熟習此項技藝者,在不脫離本發明之精神和範圍內,當可做些許的更動與潤飾,因此本發明之保護範圍當視後附之申請專利範圍所界定者為準。Although the present invention is disclosed as above in the preferred embodiment, it is not intended to limit the scope of the present invention. Anyone who is familiar with the art can make some changes and modifications without departing from the spirit and scope of the present invention. Therefore, The scope of protection of the present invention shall be subject to those defined by the attached patent scope.

100、200、300:電源供應器 110、210:橋式整流器 120、220、320:軟啟動電路 121、122:充電路徑 130、230:變壓器 131、231:主線圈 132、232:副線圈 133、233:輔助線圈 140、240:功率切換器 150、250:主要輸出級電路 160、260:輔助輸出級電路 170、270:控制器 221:第一充電路徑 222:第二充電路徑 223:第三充電路徑 C1:第一電容器 C2:第二電容器 C3:第三電容器 C4:第四電容器 C5:第五電容器 D1:第一二極體 D2:第二二極體 D3:第三二極體 D4:第四二極體 D5:第五二極體 D6:第六二極體 D7:第七二極體 D8:第八二極體 D9:第九二極體 D10:第十二極體 M1:第一電晶體 M2:第二電晶體 M3:第三電晶體 M4:第四電晶體 M5:第五電晶體 N1:第一節點 N2:第二節點 N3:第三節點 N4:第四節點 N5:第五節點 N6:第六節點 N7:第七節點 N8:第八節點 N9:第九節點 N10:第十節點 NIN1:第一輸入節點 NIN2:第二輸入節點 NOUT:輸出節點 R1:電阻器 VA:時脈電位 VC:複合控制電位 VC1:第一控制電位 VC2:第二控制電位 VC3:第三控制電位 VC4:第四控制電位 VE:啟動電位 VF:回授電位 VIN1:第一輸入電位 VIN2:第二輸入電位 VM:參考電位 VOUT:輸出電位 VR:整流電位 VS1:第一感應電位 VS2:第二感應電位 VSS:接地電位100, 200, 300: power supply 110, 210: Bridge rectifier 120, 220, 320: soft start circuit 121, 122: charging path 130, 230: Transformer 131, 231: main coil 132, 232: secondary coil 133, 233: auxiliary coil 140, 240: power switch 150, 250: main output stage circuit 160, 260: auxiliary output stage circuit 170, 270: Controller 221: first charging path 222: Second charging path 223: Third charging path C1: The first capacitor C2: second capacitor C3: third capacitor C4: Fourth capacitor C5: Fifth capacitor D1: The first diode D2: The second diode D3: The third diode D4: The fourth diode D5: Fifth diode D6: The sixth diode D7: seventh diode D8: Eighth diode D9: Ninth Diode D10: Twelfth polar body M1: The first transistor M2: second transistor M3: third transistor M4: The fourth transistor M5: fifth transistor N1: the first node N2: second node N3: third node N4: Fourth node N5: fifth node N6: sixth node N7: seventh node N8: The eighth node N9: Ninth node N10: Tenth node NIN1: the first input node NIN2: second input node NOUT: output node R1: resistor VA: clock potential VC: compound control potential VC1: The first control potential VC2: second control potential VC3: Third control potential VC4: Fourth control potential VE: Starting potential VF: feedback potential VIN1: the first input potential VIN2: second input potential VM: Reference potential VOUT: output potential VR: Rectified potential VS1: First induction potential VS2: second induction potential VSS: Ground potential

第1圖係顯示根據本發明一實施例所述之電源供應器之示意圖。 第2圖係顯示根據本發明一實施例所述之電源供應器之示意圖。 第3圖係顯示根據本發明另一實施例所述之電源供應器之示意圖。Fig. 1 is a schematic diagram of a power supply according to an embodiment of the invention. FIG. 2 is a schematic diagram of the power supply according to an embodiment of the invention. FIG. 3 is a schematic diagram of a power supply according to another embodiment of the invention.

100:電源供應器 100: power supply

110:橋式整流器 110: Bridge rectifier

120:軟啟動電路 120: soft start circuit

121、122:充電路徑 121, 122: charging path

130:變壓器 130: Transformer

131:主線圈 131: main coil

132:副線圈 132: Secondary coil

133:輔助線圈 133: auxiliary coil

140:功率切換器 140: power switch

150:主要輸出級電路 150: Main output stage circuit

160:輔助輸出級電路 160: auxiliary output stage circuit

170:控制器 170: Controller

VA:時脈電位 VA: clock potential

VC:複合控制電位 VC: compound control potential

VE:啟動電位 VE: Starting potential

VF:回授電位 VF: feedback potential

VIN1:第一輸入電位 VIN1: the first input potential

VIN2:第二輸入電位 VIN2: second input potential

VM:參考電位 VM: Reference potential

VOUT:輸出電位 VOUT: output potential

VR:整流電位 VR: Rectified potential

VS1:第一感應電位 VS1: First induction potential

VS2:第二感應電位 VS2: second induction potential

VSS:接地電位 VSS: Ground potential

Claims (10)

一種電源供應器,包括: 一橋式整流器,根據一第一輸入電位和一第二輸入電位來產生一整流電位; 一軟啟動電路,包括至少二條充電路徑,其中該軟啟動電路係根據該整流電位和一複合控制電位來產生一啟動電位; 一變壓器,包括一主線圈、一副線圈,以及一輔助線圈,其中該主線圈係用於接收該啟動電位,該副線圈係用於產生一第一感應電位,而該輔助線圈係用於產生一第二感應電位; 一功率切換器,其中該主線圈係經由該功率切換器耦接至一接地電位,而該功率切換器係根據一時脈電位來進行切換操作; 一主要輸出級電路,根據該第一感應電位來產生一輸出電位; 一輔助輸出級電路,根據該第二感應電位來產生一回授電位;以及 一控制器,偵測該回授電位,其中該控制器係根據該回授電位來決定該複合控制電位和該時脈電位; 其中當該回授電位大於或等於一參考電位時,該控制器即針對該等充電路徑進行放電後再旁通該軟啟動電路。A power supply includes: A bridge rectifier that generates a rectified potential according to a first input potential and a second input potential; A soft start circuit including at least two charging paths, wherein the soft start circuit generates a start potential according to the rectified potential and a composite control potential; A transformer includes a main coil, a secondary coil, and an auxiliary coil, wherein the main coil is used to receive the starting potential, the secondary coil is used to generate a first induced potential, and the auxiliary coil is used to generate A second induced potential; A power switch, wherein the main coil is coupled to a ground potential via the power switch, and the power switch performs switching operations according to a clock potential; A main output stage circuit that generates an output potential according to the first induced potential; An auxiliary output stage circuit that generates a feedback potential based on the second induced potential; and A controller detecting the feedback potential, wherein the controller determines the composite control potential and the clock potential according to the feedback potential; When the feedback potential is greater than or equal to a reference potential, the controller discharges the charging paths and then bypasses the soft start circuit. 如申請專利範圍第1項所述之電源供應器,其中該橋式整流器包括: 一第一二極體,具有一陽極和一陰極,其中該第一二極體之該陽極係耦接至一第一輸入節點以接收該第一輸入電位,而該第一二極體之該陰極係耦接至一第一節點以輸出該整流電位; 一第二二極體,具有一陽極和一陰極,其中該第二二極體之該陽極係耦接至該第一輸入節點,而該第二二極體之該陰極係耦接至該接地電位; 一第三二極體,具有一陽極和一陰極,其中該第三二極體之該陽極係耦接至該第一節點,而該第三二極體之該陰極係耦接至一第二輸入節點以接收該第二輸入電位;以及 一第四二極體,具有一陽極和一陰極,其中該第四二極體之該陽極係耦接至該接地電位,而該第四二極體之該陰極係耦接至該第二輸入節點。The power supply described in item 1 of the scope of patent application, wherein the bridge rectifier includes: A first diode has an anode and a cathode, wherein the anode of the first diode is coupled to a first input node to receive the first input potential, and the first diode of the The cathode is coupled to a first node to output the rectified potential; A second diode having an anode and a cathode, wherein the anode of the second diode is coupled to the first input node, and the cathode of the second diode is coupled to the ground Potential A third diode has an anode and a cathode, wherein the anode of the third diode is coupled to the first node, and the cathode of the third diode is coupled to a second Input node to receive the second input potential; and A fourth diode having an anode and a cathode, wherein the anode of the fourth diode is coupled to the ground potential, and the cathode of the fourth diode is coupled to the second input node. 如申請專利範圍第2項所述之電源供應器,其中該軟啟動電路包括: 一第五二極體,具有一陽極和一陰極,其中該第五二極體之該陽極係耦接至該第一節點以接收該整流電位,而該第五二極體之該陰極係耦接至一第二節點; 一電阻器,具有一第一端和一第二端,其中該電阻器之該第一端係耦接至該第二節點,而該電阻器之該第二端係耦接至一第三節點以輸出該啟動電位; 一第六二極體,具有一陽極和一陰極,其中該第六二極體之該陽極係耦接至該第一節點,而該第六二極體之該陰極係耦接至一第四節點; 一第一電容器,具有一第一端和一第二端,其中該第一電容器之該第一端係耦接至該第四節點,而該第一電容器之該第二端係耦接至該第三節點; 一第七二極體,具有一陽極和一陰極,其中該第七二極體之該陽極係耦接至該第一節點,而該第七二極體之該陰極係耦接至一第五節點;以及 一第二電容器,具有一第一端和一第二端,其中該第二電容器之該第一端係耦接至該第五節點,而該第二電容器之該第二端係耦接至該第三節點。The power supply described in item 2 of the scope of patent application, wherein the soft start circuit includes: A fifth diode has an anode and a cathode, wherein the anode of the fifth diode is coupled to the first node to receive the rectified potential, and the cathode of the fifth diode is coupled Connected to a second node; A resistor having a first end and a second end, wherein the first end of the resistor is coupled to the second node, and the second end of the resistor is coupled to a third node To output the starting potential; A sixth diode having an anode and a cathode, wherein the anode of the sixth diode is coupled to the first node, and the cathode of the sixth diode is coupled to a fourth node; A first capacitor has a first terminal and a second terminal, wherein the first terminal of the first capacitor is coupled to the fourth node, and the second terminal of the first capacitor is coupled to the Third node A seventh diode having an anode and a cathode, wherein the anode of the seventh diode is coupled to the first node, and the cathode of the seventh diode is coupled to a fifth Node; and A second capacitor has a first terminal and a second terminal, wherein the first terminal of the second capacitor is coupled to the fifth node, and the second terminal of the second capacitor is coupled to the The third node. 如申請專利範圍第3項所述之電源供應器,其中該複合控制電位包括一第一控制電位、一第二控制電位,以及一第三控制電位,而該軟啟動電路更包括: 一第一電晶體,具有一控制端、一第一端,以及一第二端,其中該第一電晶體之該控制端係用於接收該第一控制電位,該第一電晶體之該第一端係耦接至該第四節點,而該第一電晶體之該第二端係耦接至該第二節點;以及 一第二電晶體,具有一控制端、一第一端,以及一第二端,其中該第二電晶體之該控制端係用於接收該第二控制電位,該第二電晶體之該第一端係耦接至該第五節點,而該第二電晶體之該第二端係耦接至該第二節點。The power supply described in item 3 of the scope of patent application, wherein the composite control potential includes a first control potential, a second control potential, and a third control potential, and the soft start circuit further includes: A first transistor has a control terminal, a first terminal, and a second terminal, wherein the control terminal of the first transistor is used to receive the first control potential, and the second terminal of the first transistor One end is coupled to the fourth node, and the second end of the first transistor is coupled to the second node; and A second transistor has a control terminal, a first terminal, and a second terminal, wherein the control terminal of the second transistor is used to receive the second control potential, and the first terminal of the second transistor One end is coupled to the fifth node, and the second end of the second transistor is coupled to the second node. 如申請專利範圍第4項所述之電源供應器,其中該軟啟動電路更包括: 一第三電晶體,具有一控制端、一第一端,以及一第二端,其中該第三電晶體之該控制端係用於接收該第三控制電位,該第三電晶體之該第一端係耦接至該第三節點,而該第三電晶體之該第二端係耦接至該第一節點。For the power supply described in item 4 of the scope of patent application, the soft-start circuit further includes: A third transistor has a control terminal, a first terminal, and a second terminal, wherein the control terminal of the third transistor is used to receive the third control potential, and the second terminal of the third transistor One end is coupled to the third node, and the second end of the third transistor is coupled to the first node. 如申請專利範圍第5項所述之電源供應器,其中該主線圈具有一第一端和一第二端,該主線圈之該第一端係耦接至該第三節點以接收該啟動電位,該主線圈之該第二端係耦接至一第六節點,該副線圈具有一第一端和一第二端,該副線圈之該第一端係耦接至一第七節點以輸出該第一感應電位,該副線圈之該第二端係耦接至該接地電位,該輔助線圈具有一第一端和一第二端,該輔助線圈之該第一端係耦接至一第八節點以輸出該第二感應電位,而該輔助線圈之該第二端係耦接至該接地電位。The power supply of claim 5, wherein the main coil has a first end and a second end, and the first end of the main coil is coupled to the third node to receive the start potential , The second end of the main coil is coupled to a sixth node, the auxiliary coil has a first end and a second end, and the first end of the auxiliary coil is coupled to a seventh node for output The first induced potential, the second end of the auxiliary coil is coupled to the ground potential, the auxiliary coil has a first end and a second end, and the first end of the auxiliary coil is coupled to a first end Eight nodes are used to output the second induced potential, and the second end of the auxiliary coil is coupled to the ground potential. 如申請專利範圍第6項所述之電源供應器,其中該功率切換器包括: 一第四電晶體,具有一控制端、一第一端,以及一第二端,其中該第四電晶體之該控制端係用於接收該時脈電位,該第四電晶體之該第一端係耦接至該接地電位,而該第四電晶體之該第二端係耦接至該第六節點。The power supply described in item 6 of the scope of patent application, wherein the power switch includes: A fourth transistor has a control terminal, a first terminal, and a second terminal, wherein the control terminal of the fourth transistor is used to receive the clock potential, and the first terminal of the fourth transistor The terminal is coupled to the ground potential, and the second terminal of the fourth transistor is coupled to the sixth node. 如申請專利範圍第7項所述之電源供應器,其中該主要輸出級電路包括: 一第八二極體,具有一陽極和一陰極,其中該第八二極體之該陽極係耦接至該第七節點以接收該第一感應信號,而該第八二極體之該陰極係耦接至一輸出節點以輸出該輸出電位;以及 一第三電容器,具有一第一端和一第二端,其中該第三電容器之該第一端係耦接至該輸出節點,而該第三電容器之該第二端係耦接至該接地電位。For the power supply described in item 7 of the scope of patent application, the main output stage circuit includes: An eighth diode having an anode and a cathode, wherein the anode of the eighth diode is coupled to the seventh node to receive the first sensing signal, and the cathode of the eighth diode Is coupled to an output node to output the output potential; and A third capacitor having a first terminal and a second terminal, wherein the first terminal of the third capacitor is coupled to the output node, and the second terminal of the third capacitor is coupled to the ground Potential. 如申請專利範圍第8項所述之電源供應器,其中該輔助輸出級電路包括: 一第九二極體,具有一陽極和一陰極,其中該第九二極體之該陽極係耦接至該第八節點以接收該第二感應信號,而該第九二極體之該陰極係耦接至一第九節點以輸出該回授電位;以及 一第四電容器,具有一第一端和一第二端,其中該第四電容器之該第一端係耦接至該第九節點,而該第四電容器之該第二端係耦接至該接地電位。The power supply as described in item 8 of the scope of patent application, wherein the auxiliary output stage circuit includes: A ninth diode having an anode and a cathode, wherein the anode of the ninth diode is coupled to the eighth node to receive the second sensing signal, and the cathode of the ninth diode Is coupled to a ninth node to output the feedback potential; and A fourth capacitor has a first terminal and a second terminal, wherein the first terminal of the fourth capacitor is coupled to the ninth node, and the second terminal of the fourth capacitor is coupled to the Ground potential. 如申請專利範圍第9項所述之電源供應器,其中該複合控制電位更包括一第四控制電位,而該軟啟動電路更包括: 一第十二極體,具有一陽極和一陰極,其中該第十二極體之該陽極係耦接至該第一節點,而該第十二極體之該陰極係耦接至一第十節點; 一第五電容器,具有一第一端和一第二端,其中該第五電容器之該第一端係耦接至該第十節點,而該第五電容器之該第二端係耦接至該第三節點;以及 一第五電晶體,具有一控制端、一第一端,以及一第二端,其中該第五電晶體之該控制端係用於接收該第四控制電位,該第五電晶體之該第一端係耦接至該第十節點,而該第五電晶體之該第二端係耦接至該第二節點。According to the power supply described in item 9 of the scope of patent application, the composite control potential further includes a fourth control potential, and the soft start circuit further includes: A twelfth polar body having an anode and a cathode, wherein the anode of the twelfth polar body is coupled to the first node, and the cathode of the twelfth polar body is coupled to a tenth node; A fifth capacitor has a first terminal and a second terminal, wherein the first terminal of the fifth capacitor is coupled to the tenth node, and the second terminal of the fifth capacitor is coupled to the The third node; and A fifth transistor has a control terminal, a first terminal, and a second terminal, wherein the control terminal of the fifth transistor is used to receive the fourth control potential, and the second terminal of the fifth transistor One end is coupled to the tenth node, and the second end of the fifth transistor is coupled to the second node.
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