TWM365495U - Power supply unit - Google Patents

Power supply unit Download PDF

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Publication number
TWM365495U
TWM365495U TW98207557U TW98207557U TWM365495U TW M365495 U TWM365495 U TW M365495U TW 98207557 U TW98207557 U TW 98207557U TW 98207557 U TW98207557 U TW 98207557U TW M365495 U TWM365495 U TW M365495U
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TW
Taiwan
Prior art keywords
power
power supply
standby
main circuit
computer system
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Application number
TW98207557U
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Chinese (zh)
Inventor
Chun-Wei Pan
Original Assignee
Channel Well Technology Co Ltd
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Priority to TW98207557U priority Critical patent/TWM365495U/en
Publication of TWM365495U publication Critical patent/TWM365495U/en

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Abstract

A power supply unit is disclosed. The power supply unit can turn off a standby power system thereof after a computer system is turned on, whereby the power loss of the power supply unit is reduced, so as to improve the work efficiency of the power supply unit.

Description

-M365495 五、新型說明: 【新型所屬之技術領域】 本新型是有關於一種電子裝置,且特別是有關於一種 電源供應裝置。 【先前技術】 ^ 近年來由於工商發達、社會進步,相對提供之產品亦 Φ 主要針對便利、確實、經濟實惠為主旨,因此,當前開發 之產品亦比以往更加進步,而得以貢獻社會;在電子產品 方面,近年來業者不斷地開發出更經濟便利之電源供應器 以提供給電腦使用,使其作業與功效可達到事半功倍之運 作。 主機板、記憶體以及電源供應器是電腦穩定運作的三 項主要的元素,其中電源供應器用於為電腦提供電力。倘 若電源供應器的設計不符合標準,該電源供應器裝到電腦 _ 上時,很可能會造成電腦運作效能降低、耗電,更可能會 造成周邊零組件的損毀。因此在設計電源供應器方面,是 一門很重要的學問。 另外,現今各界非常重視節能環保,在這樣的條件下, 若電源供應器不斷損失額外電力,則相應地無法提高效 * 率。於是乎,電源供應器不能只是單純地設計成一般供電 的工具而已。 由此可見,上述現有的電源供應器,顯然仍存在有不 便與缺陷,而亟待加以進一步改進。爲了解決耗電的問題, 相關領域莫不費盡心思來謀求解決之道,但長久以來一直 3 • M365495 ' 未見適用的方式被發展完成。因此,如何能為電源供應器 上提高效率,實屬當前重要研發課題之一,亦成爲當前相 關領域極需改進的目標。 【新型内容】 因此,本新型之一態樣是在提供一種電源供應裝置, 其可減少電力損失,進而提升效率。 ' 依據本新型一實施例,一種電源供應裝置包括待機直 癱 流電源、常備電力糸統、主電路直流電源、主電路糸統控 制線路以及主電路控制器。待機直流電源電性連接於電腦 系統;常備電力系統,電性連接於待機直流電源,用以當 電腦系統處於待機模式時,啟動待機直流電源來供應電腦 系統待機電源;主電路直流電源電性連接於電腦系統,控 制線路電性連接於常備電力系統與主電路直流電源;主電 路系統,電性連接於主電路直流電源;主電路控制器,電 性連接於待機直流電源與主電路系統,用以在電腦系統開 ® 機以後,啟動主電路系統,使得主電路直流電源供電給電 腦系統,再經由控制線路切換關閉常備電力系統,進而關 閉待機直流電源。 * 依據本新型另一實施例,一種電源供應裝置包括輸入 * 端、待機直流電源、常備電力系統、主電路直流電源、主 電路系統、控制線路以及主電路控制器。輸入端用於取得 市電,待機直流電源電性連接於電腦系統,常備電力系統 電性連接於輸入端及待機直流電源,主電路直流電源電性 連接於電腦系統,控制線路電性連接於常備電力系統、待 4 • M365495 — 機直流電源與主電路直流電源,主電路系統電性連接於主 電路直流電源,主電路控制器電性連接於待機直流電源與 主電路系統。在電腦系統開機以後,主電路控制器啟動主 電路系統,使得主電路直流電源供電給電腦系統,讓電腦 系統運作,再經由控制線路切換關閉常備電力系統,進而 關閉待機直流電源;當電腦系統處於待機模式時,主電路 ' 系統關閉,則常備電力系統啟動待機直流電源來供應電腦 - 系統所需的待機電源。 • 依據本新型又一實施例,一種電源供應裝置包括輸入 端、待機直流電源、常備電力糸統、主電路直流電源、主 電路系統、控制線路以及主電路控制器。輸入端用於取得 市電,待機直流電源電性連接於電腦系統,常備電力系統 電性連接於輸入端及待機直流電源,主電路直流電源電性 連接於電腦系統,控制線路電性連接於常備電力系統、主 電路直流電源及電腦系統,主電路系統電性連接於主電路 直流電源,主電路控制器電性連接於待機直流電源與主電 • 路系統。當電腦系統處於待機模式時,主電路系統關閉, 控制線路停止工作,常備電力系統啟動待機直流電源來供 應電腦系統所需的待機電源;在電腦系統開機以後,主電 . 路控制器啟動主電路系統,使得主電路直流電源供電給電 腦系統,再經由控制線路切換關閉常備電力系統,進而關 閉待機直流電源,並透過控制線路供電給電腦系統,藉以 替代常備電力系統。 如此,應用各實施例所揭露之電源供應裝置,可在電 腦系統開機以後,關閉常備電力系統,藉以減少電力損失, • M365495 ' 進而提升效率。 綜上所述,本新型具有上述諸多優點及實用價值,其 不論在産品結構及功能上皆有較大的改進,在技術上有顯 著的進步,並産生了好用及實用的效果,且相較於現有的 電源供應器具有增進的突出多項功效,從而更加適於實 用,並具有産業的廣泛利用價值,誠爲一新穎、進步、實 用的新產品。 • 以下將以各種實施例,對上述之說明以及接下來的實 • 施方式做詳細的描述,並對本新型進行更進一步的解釋。 【實施方式】 為了使本新型之敘述更加詳盡與完備,可參照所附之 圖式及以下所述各種實施例,圖式中相同之號碼代表相同 或相似之元件。另一方面,眾所週知的元件並未描述於實 施例中,以避免對本新型造成不必要的限制。 本發明之技術態樣是一種電源供應裝置,其可適用於 • 電源供應器或類似裝置,或是廣泛地運用在相關之技術環 節。值得一提的是,此電源供應裝置可減少電力損失,進 而提升效率。以下將搭配第1圖來具體說明此電源供應裝 置之實施方式。 • 請參照第1圖,第1圖是依照本新型一實施方式的一 種電源供應裝置100的方塊圖。電源供應裝置100用於供 電給電腦系統200。 如第1圖所示,電源供應裝置100至少包括下列元件: 待機直流電源110、常備電力系統112、主電路直流電源 6 M365495 ⑽、主電路系統122、控制線^取及 於一實施例中,待機直、、*雪 '111 ° 統狐·常備電力系統 當電腦系統200處於待機模於待機直流電源no, n〇來供應電腦系統20。待 電性連接於電腦系統200,控 直机電源120 電力⑽m與主電路錢電源⑽;主電路^接 性連接於主電路直流電源12〇;主電路控制。電 接於待機直流電源U0與主電路系統H 在| = 統200開機以後,啟動主電Μ統 電源=供電給電«統_,再經由控 = 關閉常備電力系統112,進而_待機直流電源⑽。另切外換 主電:系統m可透過控制線路】3〇供另卜 藉以替代常備電力系統112。 岛系統200, 於另一實施例中,在έ士播t . 連接於電腦系統細,= ,待機直流電源_電性 ,主電路线連Μ電腦系統 130電性連接於常備電力系統112機二:^ 電路直流電源12〇,主電 ㈣m與主 電源110與主電路系統122"。’盗111電性連接於待機直流 :用時’在電腦系統開機· 111啟動主電路系統122 ^主電路控制器 電腦系統暮讓電腦^=電路=電㈣G供電給 切換關閉常備電力系統112,進 #:由控制線路i3〇 進而關閉待機直流電源1丨〇 . 7 M365495 當電腦系統2GG處於待機模切,主電路“丨 則常備電力系統m啟動待機直流電源u ^ 統200所需的待機電源。另外, 供應電細糸 主電路系統m可透過控制線路13〇供電;2:0:: 藉以替代常備電力系統112。 系、,先200, 於又-實施例中,在結構上,待機直流電源ιι〇電性 連接於電㈣統2GG’常備電力系統112電性連接 直流電源110,主電路直流電源12〇電性連二么 200,主電路线122電性連接於電腦系統2線= 別電会性連接於常備電力系統112、主電路直流電ςΐ2〇鱼 電腦系統200,主電路控制器U1電性連接於待機直济^ 110與主電路系統122。 '、 於使用時,當電腦系統2〇〇處於待機模式時,主電路 系統122關閉,控制線路130停止工作,常備電力系統ιι2 啟動待機直流電源110來供應電腦系統所需的待機電源·, 另一方面,在電腦系統200開機以後,主電路控制器^ • 啟動主電路系統122 ’使得主電路直流電源12〇供電給電 腦系統200,再經由控制線路13〇切換關閉常備電力系統 112,進而關閉待機直流電源110,並透過控制線路13〇供 - 電給電腦系統200 ’藉以替代常備電力系統112。 - 如此,應用電源供應裝置100,可在電腦系統2〇〇開 機以後,關閉常備電力112系統,藉以減少電力損失,進 而提升效率。 另外,待機直流電源110之電壓位準約為5伏特、12 伏特或3.3伏特。相似地,主電路直流電源12〇之電壓位 8 M365495 準約為5伏特、12伏特或3.3伏特。應瞭解到,「約係用 以修飾任何可些微變化的數量,但這種些微變化並^會改 變其本質。舉例來説’在不影響電腦系統2〇〇的前提下, 待機直流電源no之電壓位準可略大於5伏特戈略彳於$ 伏特。 、 如第1圖所示,電源供應裝置100亦包括輪入端14〇。 在結構上,輸入端140電性連接於常備電力系統112及主 -電路系統W2。於使用時,輸入端140用於取得市電3⑼, 私並轉換成直流電給常備電力系統112及主電路系統122 其中主電路系統122擁有較大功率,而常備電=金 擁有較小料。 m 請參照第2圖,第2圖是第1圖之輸入端14〇的方塊 圖。如圖所示,輸入端140可包括電磁干擾濾波器M2、 整流器144以及功率因數校正器146。 正机态144電性連接於功率因數校正器146。 至:’第2圖緣示的排列形式僅為例示’並非用以限^本 ^,熟習此項技藝者應視當時需要,彈性調 接關係。 〜者間的連 '在使用時’電磁干擾濾波器142用於防治 •整流器144用於將市電轉換成直流電,功率因數 ’ 用於調整功率因數。 仅止器146 雖然本新型已以實施方式揭露如上,然其並非用㈣ 1本新型任何熟習此技藝者,在不脫離本新型之精神^ 耗圍内,當可作各種之更動與潤飾,因此本新型之保護範 9 M365495 ' 圍當視後附之申請專利範圍所界定者為準。 【圖式簡單說明】 第1圖是依照本新型一實施方式的一種電源供應裝置 的方塊圖。 第2圖是第1圖之輸入端的方塊圖。 _ 【主要元件符號說明】 100 :電源供應裝置 110 :待機直流電源 111 :主電路控制器 112 :常備電力系統 120 :主電路直流電源 122 :主電路系統 130 :控制線路 • 140 :輸入端 142 :電磁干擾濾波器 144 :整流器 ' 146 :功率因數校正器 • 200 :電腦系統 300 :市電-M365495 V. New description: [New technical field] The present invention relates to an electronic device, and more particularly to a power supply device. [Prior Art] ^ In recent years, due to the development of industry and commerce and social progress, the products provided by Φ are mainly aimed at convenience, reliability, and economic benefits. Therefore, the products currently being developed are more advanced than before, and they can contribute to society; In terms of products, in recent years, operators have continuously developed more economical and convenient power supplies to provide them with computers, so that their operations and functions can be achieved with less effort. The motherboard, memory, and power supply are the three main elements of a stable computer operation, where the power supply is used to power the computer. If the power supply is not designed to meet the standard, when the power supply is installed on the computer _, it is likely to cause the computer to run poorly, consume power, and possibly cause damage to surrounding components. Therefore, it is an important knowledge in designing the power supply. In addition, today's people pay great attention to energy conservation and environmental protection. Under such conditions, if the power supply continues to lose additional power, the corresponding efficiency cannot be improved. As a result, the power supply can't just be designed as a general power supply tool. It can be seen that the above existing power supply device obviously has some inconveniences and defects, and needs to be further improved. In order to solve the problem of power consumption, the related fields do not bother to find a solution, but for a long time 3 • M365495 'The application has not been developed. Therefore, how to improve the efficiency of the power supply is one of the current important research and development topics, and it has become the goal of improvement in the current related fields. [New content] Therefore, one aspect of the present invention is to provide a power supply device that can reduce power loss and thereby improve efficiency. According to an embodiment of the present invention, a power supply device includes a standby direct current power supply, a standing power system, a main circuit DC power supply, a main circuit control circuit, and a main circuit controller. The standby DC power supply is electrically connected to the computer system; the standing power system is electrically connected to the standby DC power source, and is used to start the standby DC power supply to supply the standby power of the computer system when the computer system is in the standby mode; the main circuit DC power supply is electrically connected. In the computer system, the control circuit is electrically connected to the standby power system and the main circuit DC power supply; the main circuit system is electrically connected to the main circuit DC power supply; the main circuit controller is electrically connected to the standby DC power supply and the main circuit system, After the computer system is turned on, the main circuit system is started, so that the main circuit DC power is supplied to the computer system, and then the standby power system is turned off via the control line to turn off the standby DC power. According to another embodiment of the present invention, a power supply device includes an input terminal, a standby DC power supply, a standing power system, a main circuit DC power supply, a main circuit system, a control circuit, and a main circuit controller. The input terminal is used for obtaining the commercial power, the standby DC power source is electrically connected to the computer system, the standing power system is electrically connected to the input terminal and the standby DC power source, the main circuit DC power source is electrically connected to the computer system, and the control circuit is electrically connected to the standing power. System, standby 4 • M365495 — DC power supply and main circuit DC power supply, the main circuit system is electrically connected to the main circuit DC power supply, and the main circuit controller is electrically connected to the standby DC power supply and the main circuit system. After the computer system is turned on, the main circuit controller starts the main circuit system, so that the main circuit DC power supply is supplied to the computer system, the computer system is operated, and then the standby power system is turned off by the control line switching, thereby turning off the standby DC power supply; when the computer system is in In standby mode, when the main circuit 'system is off, the standby power system starts standby DC power to supply the computer - the standby power required by the system. According to still another embodiment of the present invention, a power supply device includes an input terminal, a standby DC power supply, a standing power system, a main circuit DC power supply, a main circuit system, a control circuit, and a main circuit controller. The input terminal is used for obtaining the commercial power, the standby DC power source is electrically connected to the computer system, the standing power system is electrically connected to the input terminal and the standby DC power source, the main circuit DC power source is electrically connected to the computer system, and the control circuit is electrically connected to the standing power. The system, the main circuit DC power supply and the computer system, the main circuit system is electrically connected to the main circuit DC power supply, and the main circuit controller is electrically connected to the standby DC power supply and the main electric circuit system. When the computer system is in the standby mode, the main circuit system is turned off, the control circuit stops working, and the standby power system starts the standby DC power supply to supply the standby power required by the computer system; after the computer system is turned on, the main circuit controller starts the main circuit. The system enables the main circuit DC power supply to the computer system, and then switches the standby power system through the control line, thereby turning off the standby DC power supply, and supplying power to the computer system through the control line, thereby replacing the standing power system. Thus, by applying the power supply device disclosed in the embodiments, the standby power system can be turned off after the computer system is turned on, thereby reducing power loss, and the M365495' improves efficiency. In summary, the present invention has many advantages and practical values as described above, and has significant improvements in product structure and function, and has significant advances in technology, and has produced useful and practical effects, and Compared with the existing power supply, it has many outstanding functions, which is more suitable for practical use and has extensive use value of the industry. It is a novel, progressive and practical new product. The above description and the following embodiments will be described in detail in various embodiments, and the present invention will be further explained. [Embodiment] In order to make the description of the present invention more complete and complete, reference is made to the accompanying drawings and the accompanying drawings. On the other hand, well-known elements are not described in the embodiments to avoid unnecessarily limiting the present invention. The technical aspect of the present invention is a power supply device which can be applied to a power supply or the like, or widely used in related technical loops. It is worth mentioning that this power supply device can reduce power loss and increase efficiency. The implementation of this power supply unit will be specifically described below with reference to FIG. • Referring to Fig. 1, a first diagram is a block diagram of a power supply device 100 in accordance with an embodiment of the present invention. The power supply device 100 is for supplying power to the computer system 200. As shown in FIG. 1, the power supply device 100 includes at least the following components: a standby DC power supply 110, a standing power system 112, a main circuit DC power supply 6 M365495 (10), a main circuit system 122, a control line, and in one embodiment, Standby straight, * snow '111 ° system Fox · standing power system When the computer system 200 is in standby mode on standby DC power no, n〇 to supply computer system 20. To be electrically connected to the computer system 200, the power supply of the direct control unit 120 (10) m and the main circuit money power supply (10); the main circuit is connected to the main circuit DC power supply 12 〇; the main circuit control. After being connected to the standby DC power supply U0 and the main circuit system H, after the system is turned on, the main power supply system is turned on. The power supply is turned on, and then the power supply is turned off, and then the standby power supply system 112 is turned off, and then the standby DC power supply (10) is turned off. Switching out the mains: The system m can be used to replace the standing power system 112 through the control line. The island system 200, in another embodiment, is connected to the computer system fine, =, standby DC power supply_electricity, the main circuit line is connected to the computer system 130 electrically connected to the standing power system 112 machine 2 : ^ Circuit DC power supply 12 〇, main power (four) m and main power supply 110 and main circuit system 122 ". 'Pirates 111 electrical connection to standby DC: when used' in the computer system boot · 111 start the main circuit system 122 ^ main circuit controller computer system 暮 let the computer ^ = circuit = electricity (four) G power supply to switch off the standby power system 112, into #: By controlling the line i3〇 and then turning off the standby DC power supply 1丨〇. 7 M365495 When the computer system 2GG is in standby die-cutting, the main circuit “丨” is the standby power supply required to start the standby DC power supply. In addition, the main circuit system m can be supplied with power through the control line 13; 2:0:: instead of the standing power system 112. Department, first 200, in the embodiment, in structure, standby DC power supply Ιι〇 electrically connected to the electricity (four) system 2GG' standing power system 112 is electrically connected to the DC power supply 110, the main circuit DC power supply 12〇 electrical connection 200, the main circuit line 122 is electrically connected to the computer system 2 line = other electricity The main circuit controller U1 is electrically connected to the standby circuit 110 and the main circuit system 122. ', when used, when the computer system 2〇 When the standby circuit is in the standby mode, the main circuit system 122 is turned off, the control circuit 130 is stopped, and the standby power system ιι 2 starts the standby DC power supply 110 to supply the standby power required by the computer system. On the other hand, after the computer system 200 is turned on, the main The circuit controller ^" activates the main circuit system 122' to cause the main circuit DC power supply 12 to supply power to the computer system 200, and then switches off the standby power system 112 via the control line 13 to turn off the standby DC power supply 110 and through the control line 13 The power supply to the computer system 200' replaces the standing power system 112. - Thus, the power supply device 100 can be used to turn off the standby power 112 system after the computer system 2 is turned on, thereby reducing power loss and thereby improving efficiency. The standby DC power supply 110 has a voltage level of about 5 volts, 12 volts, or 3.3 volts. Similarly, the main circuit DC power supply 12 电压 voltage level 8 M365495 is about 5 volts, 12 volts, or 3.3 volts. It should be understood that "About to modify the amount of any slight change, but this slight change will change its For example, the voltage level of the standby DC power supply no can be slightly greater than 5 volts at $ volt without affecting the computer system. As shown in Figure 1, the power supply device 100 is also Including the input terminal 140 is electrically connected to the standing power system 112 and the main-circuit system W2. In use, the input terminal 140 is used to obtain the mains 3 (9), and is converted into DC power to the standing power. System 112 and main circuit system 122, wherein main circuit system 122 has a relatively large amount of power, while conventional power = gold has a smaller material. m Refer to Figure 2, which is a block diagram of the input terminal 14〇 of Figure 1. As shown, input 140 can include an electromagnetic interference filter M2, a rectifier 144, and a power factor corrector 146. The positive state 144 is electrically coupled to the power factor corrector 146. To: The arrangement shown in the second figure is merely an illustration. It is not intended to limit the use of this. Those skilled in the art should adjust the relationship as needed. The connection between the 'in use' electromagnetic interference filter 142 is used for prevention and control. • The rectifier 144 is used to convert the commercial power into direct current, and the power factor ' is used to adjust the power factor. Although the present invention has been disclosed in the above embodiments, it is not intended to be used in any of the skilled artisans, and various modifications and retouchings can be made without departing from the spirit of the present invention. This protection type 9 M365495 is subject to the definition of the patent application scope. BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1 is a block diagram of a power supply device in accordance with an embodiment of the present invention. Figure 2 is a block diagram of the input of Figure 1. _ [Main component symbol description] 100: Power supply device 110: Standby DC power supply 111: Main circuit controller 112: Standby power system 120: Main circuit DC power supply 122: Main circuit system 130: Control line • 140: Input terminal 142: EMI Filter 144: Rectifier ' 146 : Power Factor Corrector • 200 : Computer System 300 : Mains

Claims (1)

M365495 六、申請專利範圍: 1. 一種電源供應裝置,至少包括: 一待機直流電源,電性連接於一電腦系統; 一常備電力系統,電性連接於該待機直流電源,用以 當該電腦系統處於待機模式時,啟動該待機直流電源來供 應該電腦糸統待機電源, 一主電路直流電源,電性連接於該電腦系統; 一控制線路,電性連接於常備電力系統與該主電路直 流電源; 一主電路系統,電性連接於該主電路直流電源;以及 一主電路控制器,電性連接於該待機直流電源與該主 電路系統,用以在該電腦系統開機以後,啟動該主電路系 統,使得該主電路直流電源供電給該電腦糸統’再經由該 控制線路切換關閉該常備電力系統,進而關閉該待機直流 電源。 2. 如請求項1所述之電源供應裝置,其中該主電路系 統透過該控制線路供電給該電腦系統,藉以替代該常備電 力系統。 3. 如請求項1所述之電源供應裝置,更包括: 一輸入端,用於取得市電,並電性連接於該常備電力 糸統及該主電路糸統。 11 M365495 4. 如請求項3所述之電源供應裝置,其中該輸入端包 括電磁干擾濾波器、整流器與功率因數校正器。 5. 如請求項1所述之電源供應裝置,其中該待機直流 電源之電壓位準為5伏特、12伏特或3.3伏特。 6. 如請求項1所述之電源供應裝置,其中該主電路直 流電源之電壓位準為5伏特、12伏特或3.3伏特。 7. —種電源供應裝置,用於供電給電腦系統,該電源 供應裝置至少包括: 一輸入端,用於取得市電; 一待機直流電源,電性連接於該電腦系統; 一常備電力系統,電性連接於該輸入端及該待機直流 • 電源; 一主電路直流電源,電性連接於該電腦系統; 一控制線路,電性連接於常備電力系統、待機直流電 . 源與該主電路直流電源;以及 . 一主電路系統,電性連接於該主電路直流電源;以及 一主電路控制器,電性連接於該待機直流電源與該主 電路系統, 其中在該電腦系統開機以後,該主電路控制器啟動該 主電路系統,使得該主電路直流電源供電給該電腦糸統5 12 M365495 讓該電腦系統運作,再經由該控制線路切換關閉該常備電 力系統,進而關閉該待機直流電源;當該電腦系統處於待 機模式時,該主電路系統關閉,該常備電力系統啟動該待 機直流電源來供應該電腦系統所需的待機電源。 8. 如請求項1所述之電源供應裝置,其中在該電腦系 統開機以後,該主電路系統透過該控制線路供電給該電 腦系統,藉以替代該常備電力系統。 9. 如請求項7所述之電源供應裝置,其中該輸入端包 括電磁干擾濾波器、整流器與功率因數校正器。 10. 如請求項7所述之電源供應裝置,其中該待機直 流電源之電壓位準為5伏特、12伏特或3.3伏特。 11. 如請求項7所述之電源供應裝置,其中該主電路 直流電源之電壓位準為5伏特、12伏特或3.3伏特。 12. —種電源供應裝置,用於供電給電腦系統,該電 源供應裝置至少包括: 一輸入端,用於取得市電; 一待機直流電源,電性連接於該電腦系統; 一常備電力系統,電性連接於該輸入端及該待機直流 電源; 13 M365495 M365495 主 一電路直流電源,電性連接於該電腦系統; 流 一控制線路,電性連接於常備 ’、、, 電源,並電性連接至該電腦系統;力系統與該主電路直 -主電路系統’電輯接於該 一主電路控制器,電性連接於=路直流電源;以及 電路系統, 、待機直流電源與該主 其中當該電腦㈣處於待機 閉’該控制線路停止工作,該常備士’該主電路系統關 流電源來供應該電腦系統所 系統啟動該待機直 開機以後’該主電路控制器啟動兮電源;在該電腦系統 電路直流電源供電給該電腦系絲 電路系統,使得該主 該常備電力系統,進而關閉該待機^由該控制線路關閉 制線路供電給該電腦系統,藉以 流電源,並透過該控 代讀常備電力系統。 认如請求項12所述之 包括電磁干擾_诂 、、屨裝置,其中該輸入端 皮'、整流器與功率因數校正器。 、ώ14.如請求項12所述之 〜電源之電壓位準為5 屬應裝置,其中該待機直 12伐'特或3.3伏特。 I5.如請求項12所 直流電源之電髮位 源供應|置’其中該主電路 伏特、以伏特或3.3伏特。M365495 VI. Patent Application Range: 1. A power supply device comprising at least: a standby DC power supply electrically connected to a computer system; a standing power system electrically connected to the standby DC power supply for use in the computer system When in the standby mode, the standby DC power supply is started to supply the standby power of the computer system, a main circuit DC power supply is electrically connected to the computer system; a control circuit is electrically connected to the standby power system and the main circuit DC power supply a main circuit system electrically connected to the main circuit DC power supply; and a main circuit controller electrically connected to the standby DC power supply and the main circuit system for starting the main circuit after the computer system is turned on The system causes the main circuit DC power supply to the computer system to switch off the standby power system via the control line, thereby turning off the standby DC power supply. 2. The power supply device of claim 1, wherein the main circuit system supplies power to the computer system via the control line, thereby replacing the standing power system. 3. The power supply device of claim 1, further comprising: an input terminal for obtaining a commercial power, and electrically connecting to the standing power system and the main circuit system. 11 M365495. The power supply device of claim 3, wherein the input comprises an electromagnetic interference filter, a rectifier, and a power factor corrector. 5. The power supply device of claim 1, wherein the standby DC power source has a voltage level of 5 volts, 12 volts, or 3.3 volts. 6. The power supply device of claim 1, wherein the main circuit DC power source has a voltage level of 5 volts, 12 volts, or 3.3 volts. 7. A power supply device for supplying power to a computer system, the power supply device comprising at least: an input terminal for obtaining utility power; a standby DC power source electrically connected to the computer system; a standing power system, electricity Connected to the input terminal and the standby DC power supply; a main circuit DC power supply, electrically connected to the computer system; a control circuit electrically connected to the standby power system, standby DC power. The source and the main circuit DC power supply; And a main circuit system electrically connected to the main circuit DC power supply; and a main circuit controller electrically connected to the standby DC power supply and the main circuit system, wherein after the computer system is powered on, the main circuit is controlled The main circuit system is activated, so that the main circuit DC power supply is supplied to the computer system 5 12 M365495 to operate the computer system, and then the standby power system is turned off by the control circuit, thereby turning off the standby DC power; When the system is in standby mode, the main circuit system is turned off, and the standing power system starts the DC power supply unit to the computer system required standby power. 8. The power supply apparatus of claim 1, wherein the main circuit system supplies power to the computer system through the control line after the computer system is turned on, thereby replacing the standing power system. 9. The power supply apparatus of claim 7, wherein the input comprises an electromagnetic interference filter, a rectifier, and a power factor corrector. 10. The power supply device of claim 7, wherein the standby DC power source has a voltage level of 5 volts, 12 volts, or 3.3 volts. 11. The power supply apparatus of claim 7, wherein the voltage level of the main circuit DC power source is 5 volts, 12 volts, or 3.3 volts. 12. A power supply device for supplying power to a computer system, the power supply device comprising at least: an input terminal for obtaining utility power; a standby DC power source electrically connected to the computer system; a standing power system, electricity Connected to the input terminal and the standby DC power supply; 13 M365495 M365495 main circuit DC power supply, electrically connected to the computer system; flow a control circuit, electrically connected to the standing ',,, power, and electrically connected to The computer system; the force system and the main circuit direct-main circuit system are electrically connected to the main circuit controller, electrically connected to the = way DC power supply; and the circuit system, the standby DC power supply and the main The computer (4) is in standby mode. The control circuit stops working. The standby system 'the main circuit system turns off the power supply to supply the computer system. The system starts the standby after the direct power-on. The main circuit controller starts the power supply; in the computer system The circuit DC power supply is supplied to the computer wire circuit system, so that the main standby power system, and then the ^ Closing machine by the control circuit to the power system line computer system, whereby the power flow, and read control the standing power system through generations. As claimed in claim 12, the electromagnetic interference _诂, 屦 device, wherein the input terminal, the rectifier and the power factor corrector are included. ώ 14. As described in claim 12, the voltage level of the power supply is 5 Dependent Devices, wherein the standby is straight or 3.3 volts. I5. The source of the DC power source of claim 12 is set to "where" the main circuit is volts, in volts or 3.3 volts.
TW98207557U 2009-05-04 2009-05-04 Power supply unit TWM365495U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102955551A (en) * 2011-08-19 2013-03-06 善元科技股份有限公司 Power supply device
CN104978005A (en) * 2014-04-02 2015-10-14 新巨企业股份有限公司 Power supply device and method for reducing energy consumption of same
CN106685246A (en) * 2016-09-14 2017-05-17 北京市九州风神科技有限公司 Turn-off extraction mutual inductance coupling type power supply system and method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102955551A (en) * 2011-08-19 2013-03-06 善元科技股份有限公司 Power supply device
CN102955551B (en) * 2011-08-19 2016-10-12 善元科技股份有限公司 Power supply device
CN104978005A (en) * 2014-04-02 2015-10-14 新巨企业股份有限公司 Power supply device and method for reducing energy consumption of same
CN106685246A (en) * 2016-09-14 2017-05-17 北京市九州风神科技有限公司 Turn-off extraction mutual inductance coupling type power supply system and method

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