TW202350016A - Led switching system and control method thereof - Google Patents
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本申請係關於一種開關切換系統及其控制方法,尤指一種LED (light-emitting diode,發光二極體) 切換系統及其控制方法。The present application relates to a switch switching system and its control method, in particular to an LED (light-emitting diode, light-emitting diode) switching system and its control method.
於傳統集魚燈的應用中,為針對各種魚類的習性發出對應光色以誘捕該種魚類,須安裝多種不同光色的燈泡,方能根據實際需求變換光色。而在燈光切換控制方面,須為每一個燈泡對應設置一個控制開關,導致接線較為複雜,在控制上亦較為繁複;且控制開關實際上須流經驅動燈泡的電流,需選用較大額定電流規格的開關,因此所占用之空間較大。In the application of traditional fish gathering lights, in order to emit corresponding light colors according to the habits of various fish to trap them, a variety of light bulbs with different light colors must be installed to change the light color according to actual needs. In terms of light switching control, a control switch must be set for each light bulb, which makes the wiring more complicated and the control more complicated. In addition, the control switch must actually flow the current that drives the light bulb, so a larger rated current specification must be selected. switch, so it takes up a lot of space.
因此,如何發展一種可改善上述習知技術問題之LED切換系統及其控制方法,實為目前迫切之需求。Therefore, how to develop an LED switching system and its control method that can improve the above-mentioned conventional technical problems is currently an urgent need.
本申請之目的在於提供一種LED切換系統及其控制方法,其以較少量的開關實現對多個LED串的切換導通,接線上較為簡易,較易於控制;且開關僅用於訊號的驅動,可選擇額定電流規格較小的開關,所佔據之空間小,成本亦較低。The purpose of this application is to provide an LED switching system and its control method, which uses a smaller number of switches to switch and conduct multiple LED strings. The wiring is simpler and easier to control; and the switches are only used for driving signals. You can choose a switch with a smaller rated current, which takes up less space and is less expensive.
為達上述目的,本申請提供一種LED切換系統,電連接於三相供電裝置,其中三相供電裝置包含分別提供三個相電壓的第一相位端、第二相位端及第三相位端。LED切換系統包含控制單元及發光模組。控制單元電連接於三相供電裝置的第一相位端,且包含N個控制開關,其中N為正整數。發光模組包含發光單元,發光單元包含相互電連接的電源電路、(N+1) 個LED串及切換電路。電源電路還電連接於三相供電裝置之三個相位端中的任兩個,並提供一供電電壓至 (N+1) 個LED串。切換電路還電連接於三相供電裝置之第二或第三相位端,且切換電路還電連接於控制單元,以根據控制開關的開關狀態進行切換而使對應的LED串導通。To achieve the above objectives, the present application provides an LED switching system that is electrically connected to a three-phase power supply device, wherein the three-phase power supply device includes a first phase terminal, a second phase terminal, and a third phase terminal that respectively provide three phase voltages. The LED switching system includes a control unit and a lighting module. The control unit is electrically connected to the first phase terminal of the three-phase power supply device, and includes N control switches, where N is a positive integer. The light-emitting module includes a light-emitting unit, and the light-emitting unit includes a power circuit, (N+1) LED strings and a switching circuit that are electrically connected to each other. The power circuit is also electrically connected to any two of the three phase terminals of the three-phase power supply device, and provides a supply voltage to the (N+1) LED strings. The switching circuit is also electrically connected to the second or third phase terminal of the three-phase power supply device, and the switching circuit is also electrically connected to the control unit to switch according to the switching state of the control switch to turn on the corresponding LED string.
為達上述目的,本申請另提供一種LED切換系統的控制方法。LED切換系統電連接於三相供電裝置,其中三相供電裝置包含分別提供三個相電壓的第一相位端、第二相位端及第三相位端。LED切換系統包含控制單元及發光模組。控制單元電連接於三相供電裝置的第一相位端,且包含N個控制開關,其中N為正整數。發光模組包含發光單元,發光單元包含相互電連接的電源電路、(N+1) 個LED串及切換電路。電源電路還電連接於三相供電裝置之三個相位端中的任兩個,並提供一供電電壓至 (N+1) 個LED串。切換電路還電連接於三相供電裝置之第二或第三相位端,且切換電路還電連接於控制單元。控制方法包含:(a) 控制N個控制開關均關斷,以使第1個LED串導通;以及 (b) 控制第n個控制開關導通,使切換電路還經由第n個控制開關電連接於第一相位端,並控制切換電路進行切換而使第 (n+1) 個LED串導通,其中n為小於等於N的正整數。To achieve the above purpose, this application also provides a control method for an LED switching system. The LED switching system is electrically connected to a three-phase power supply device, where the three-phase power supply device includes a first phase terminal, a second phase terminal, and a third phase terminal that respectively provide three phase voltages. The LED switching system includes a control unit and a lighting module. The control unit is electrically connected to the first phase terminal of the three-phase power supply device, and includes N control switches, where N is a positive integer. The light-emitting module includes a light-emitting unit, and the light-emitting unit includes a power circuit, (N+1) LED strings and a switching circuit that are electrically connected to each other. The power circuit is also electrically connected to any two of the three phase terminals of the three-phase power supply device, and provides a supply voltage to the (N+1) LED strings. The switching circuit is also electrically connected to the second or third phase terminal of the three-phase power supply device, and the switching circuit is also electrically connected to the control unit. The control method includes: (a) controlling all N control switches to turn off, so that the first LED string is turned on; and (b) controlling the nth control switch to turn on, so that the switching circuit is also electrically connected to the nth control switch through the nth control switch. The first phase end, and controls the switching circuit to switch to turn on the (n+1)th LED string, where n is a positive integer less than or equal to N.
體現本申請特徵與優點的一些典型實施例將在後段的說明中詳細敘述。應理解的是本申請能夠在不同的態樣上具有各種的變化,其皆不脫離本申請之範圍,且其中的說明及圖示在本質上係當作說明之用,而非用以限制本申請。Some typical embodiments embodying the features and advantages of the present application will be described in detail in the following description. It should be understood that the present application can have various changes in different aspects without departing from the scope of the present application, and the descriptions and illustrations are essentially for illustrative purposes rather than limiting the scope of the present application. Apply.
第1圖為本申請第一實施例之LED切換系統的電路結構示意圖。如第1圖所示,LED切換系統1電連接於三相供電裝置2,其中三相供電裝置2包含三個相位端L1、L2及L3,三個相位端L1、L2及L3分別提供相位依序相差120度的三個相電壓。於此實施例中,以相位端L1、L2及L3分別作為第一相位端、第二相位端及第三相位端 (即第一相位端L1、第二相位端L2及第三相位端L3)。然並不以此為限,於另一些實施例中,亦可以相位端L1、L3及L2分別作為第一、第二及第三相位端,抑或是以相位端L2、L1及L3分別作為第一、第二及第三相位端。Figure 1 is a schematic circuit structure diagram of an LED switching system according to the first embodiment of the present application. As shown in Figure 1, the
LED切換系統1包含控制單元11及發光模組12。控制單元11電連接於三相供電裝置2的第一相位端L1,且包含N個控制開關SW1、SW2、…、SWN,其中N為正整數。發光模組12包含發光單元13,其中發光單元13包含相互電連接的電源電路14、(N+1) 個LED串LED1、LED2、…、LED(N+1) 以及切換電路15。電源電路14還電連接於三相供電裝置2之三個相位端L1、L2及L3中的任兩個,並提供一供電電壓至LED串LED1、LED2、…、LED(N+1)。每一LED串LED1、LED2、…、LED(N+1) 可例如但不限於包含串聯連接的複數個LED,其中同一LED串的複數個LED以具有相同光色為佳,但亦不以此為限。切換電路15還電連接於三相供電裝置2之第二相位端L2或第三相位端L3(後續的圖式及說明皆以第三相位端L3為例),且切換電路15還電連接於控制單元11,以根據控制開關SW1、SW2、…、SWN的開關狀態進行切換而使對應的LED串導通。具體而言,當所有控制開關SW1、SW2、…、SWN均關斷時,第1個LED串LED1導通;而當第n個控制開關SWn導通時,切換電路15還經由第n個控制開關SWn電連接於第一相位端L1,並進行切換而使第 (n+1) 個LED串LED(n+1) 導通,其中n為小於等於N的正整數。The
藉此,即可用比傳統集魚燈架構較為少量的控制開關實現對多個LED串的切換導通,接線上較為簡易,較易於控制;且控制開關僅用於訊號的驅動,可選擇額定電流規格較小的開關,所佔據之空間小,成本亦較低。In this way, a smaller number of control switches can be used to switch on multiple LED strings than in a traditional fish lamp structure. The wiring is simpler and easier to control; and the control switch is only used for signal drive, and a larger rated current specification can be selected. Small switches take up little space and have low cost.
實際上,同時處於導通狀態之控制開關的數量不受限制。舉例而言,於一些實施例中,在任一時刻,至多僅有一個控制開關處於導通狀態;於另一些實施例中,可有複數個控制開關同時處於導通狀態。In fact, there is no limit to the number of control switches that can be on at the same time. For example, in some embodiments, at most one control switch is in the conductive state at any time; in other embodiments, a plurality of control switches may be in the conductive state at the same time.
此外,於本申請之LED切換系統1中,發光單元13的數量不受限制,例如於第1圖所示的實施例中,每一發光模組12包含三個發光單元13,其中每一發光單元13各自電連接於控制單元11及三相供電裝置2。每一發光單元13中的(N+1) 個LED串LED1、LED2、…、LED(N+1) 以相同的光色順序排列為佳,但亦不以此為限。此外,於本申請之LED切換系統1中,控制單元11及發光模組12的數量相同且不受限制,舉例而言,LED切換系統1可包含相互一一對應的複數個控制單元11及複數個發光模組12,每一發光模組12中的LED串可以相同或不同的光色順序進行排列。藉此,當本申請之LED切換系統1應用於集魚燈時,所有控制單元11可集中設置於同一空間中,發光模組12則可設置於漁船上的不同區域,藉此,使用者可集中控制各區域的LED光色。In addition, in the
另外,每一LED串具有相對之第一端及第二端,在LED串包含串聯連接的複數個LED的情況下,LED串的第一端連接於第1個LED的陽極,而後每一LED的陰極依序連接於次一LED的陽極,最後一個LED的陰極連接於LED串的第二端。In addition, each LED string has an opposite first end and a second end. When the LED string includes a plurality of LEDs connected in series, the first end of the LED string is connected to the anode of the first LED, and then each LED The cathode of the LED is connected to the anode of the next LED in sequence, and the cathode of the last LED is connected to the second end of the LED string.
於一些實施例中,電源電路14包含兩個交流端AC1和AC2、第一直流端DC+及第二直流端DC-。兩個交流端AC1和AC2電連接於三相供電裝置2的任兩個相位端,於第1圖所示的實施例中,第1個發光單元13中之電源電路14的兩個交流端AC1和AC2分別電連接於第一及第二相位端L1及L2,第2個發光單元13中之電源電路14的兩個交流端AC1和AC2分別電連接於第二及第三相位端L2及L3,第3個發光單元13中之電源電路14的兩個交流端AC1和AC2分別電連接於第一及第三相位端L1及L3,但亦不以此為限,實際應用時可依需求調整各發光單元13中之電源電路14所連接的相位端。第一直流端DC+用以提供供電電壓,第二直流端DC-接地,其中第一直流端DC+上的電壓準位高於第二直流端DC-上的電壓準位。In some embodiments, the
本申請之LED切換系統1的切換電路15有多種可能實施態樣,以下將具體例示並說明。The switching
於本申請之第一實施例中,如第1圖所示,切換電路15包含分別電連接於N個控制開關SW1、SW2、…、SWN的N個繼電器RY1、RY2、…、RYN。每一繼電器 (RY1、RY2、…、RYN) 包含線圈151及切換開關152,線圈151的兩端分別電連接於對應的控制開關 (SW1、SW2、…、SWN) 及第三相位端L3。切換開關152包含第一接點P1、第二接點P2及第三接點P3,第三接點P3在線圈151通電及不通電時分別電連接於第二接點P2及第一接點P1。In the first embodiment of the present application, as shown in Figure 1, the switching
所有 (N+1) 個LED串LED1~LED(N+1)的第一端均電連接於第一直流端DC+,第1個LED串LED1的第二端電連接於第1個繼電器RY1的第一接點P1,第2個至第 (N+1) 個LED串LED2~LED(N+1) 的第二端分別電連接於第1個至第N個繼電器RY1~RYN的第二接點P2。第2個至第N個繼電器RY2~RYN的第一接點P1分別電連接於第1個至第 (N-1) 個繼電器RY1~RY(N-1) 的第三接點P3,第N個繼電器RYN的第三接點P3接地。The first terminals of all (N+1) LED strings LED1~LED(N+1) are electrically connected to the first DC terminal DC+, and the second terminal of the first LED string LED1 is electrically connected to the first relay RY1 The first contact P1, the second end of the second to (N+1) LED strings LED2~LED(N+1) are electrically connected to the second terminals of the first to Nth relays RY1~RYN respectively. Contact P2. The first contact point P1 of the second to Nth relays RY2~RYN is electrically connected to the third contact P3 of the first to (N-1)th relays RY1~RY(N-1) respectively, and the Nth The third contact P3 of relay RYN is grounded.
當所有控制開關SW1~SWN均關斷時,所有繼電器RY1~RYN中的第三接點P3均電連接於第一接點P1,使第1個LED串LED1導通。而當第n個控制開關SWn導通時,第n個繼電器RYn中的第三接點P3改為電連接於第二接點P2,使第n+1個LED串LED(n+1)導通。When all control switches SW1 ~ SWN are turned off, the third contacts P3 in all relays RY1 ~ RYN are electrically connected to the first contact P1, causing the first LED string LED1 to be turned on. When the nth control switch SWn is turned on, the third contact P3 in the nth relay RYn is electrically connected to the second contact P2, causing the n+1th LED string LED(n+1) to be turned on.
第2圖為第1圖之LED切換系統在N=1時的電路結構示意圖。如第2圖所示,在N=1時,控制開關及每一發光單元13中的繼電器的數量皆等於1。繼電器RY1的第一接點P1、第二接點P2及第三接點P3分別電連接於第1個LED串LED1的第二端、第2個LED串LED2的第二端及接地端。兩LED串LED1及LED2的第一端均電連接於第一直流端DC+。Figure 2 is a schematic diagram of the circuit structure of the LED switching system in Figure 1 when N=1. As shown in Figure 2, when N=1, the number of control switches and relays in each light-emitting
於本申請之第二實施例中,如第3圖所示,切換電路15包含分別電連接於N個控制開關SW1、SW2、…、SWN的N個繼電器RY1、RY2、…、RYN。每一繼電器 (RY1、RY2、…、RYN) 包含線圈151及切換開關152,各線圈151的兩端分別電連接於各繼電器 (RY1、RY2、…、RYN) 所對應的控制開關 (SW1、SW2、…、SWN) 及第三相位端L3。切換開關152包含第一接點P1、第二接點P2及第三接點P3,第三接點P3在線圈151通電及不通電時分別電連接於第二接點P2及第一接點P1。In the second embodiment of the present application, as shown in Figure 3, the switching
第1個繼電器RY1的第三接點P3電連接於第一直流端DC+,第2個至第N個繼電器RY2~RYN的第三接點P3分別電連接於第1個至第 (N-1) 個繼電器RY1~RY(N-1) 的第一接點P1,第N個繼電器RYN的第一接點P1電連接於第1個LED串LED1的第一端。第2個至第 (N+1) 個LED串LED2~LED(N+1) 的第一端分別電連接於第1個至第N個繼電器RY1~RYN的第二接點P2,所有 (N+1) 個LED串LED1~LED(N+1) 的第二端均接地。The third contact point P3 of the first relay RY1 is electrically connected to the first DC terminal DC+, and the third contact point P3 of the second to Nth relays RY2~RYN is electrically connected to the first to (N- 1) The first contact point P1 of the relays RY1~RY(N-1) and the first contact point P1 of the Nth relay RYN are electrically connected to the first end of the first LED string LED1. The first ends of the second to (N+1) LED strings LED2~LED(N+1) are electrically connected to the second contacts P2 of the first to Nth relays RY1~RYN respectively, and all (N The second terminals of +1) LED strings LED1~LED(N+1) are all connected to ground.
當所有控制開關SW1~SWN均關斷時,所有繼電器RY1~RYN中的第三接點P3均電連接於第一接點P1,使第1個LED串LED1導通。而當第n個控制開關SWn導通時,第n個繼電器RYn中的第三接點P3改為電連接於第二接點P2,使第 (n+1) 個LED串LED(n+1)導通。When all control switches SW1 ~ SWN are turned off, the third contacts P3 in all relays RY1 ~ RYN are electrically connected to the first contact P1, causing the first LED string LED1 to be turned on. When the nth control switch SWn is turned on, the third contact P3 in the nth relay RYn is electrically connected to the second contact P2, so that the (n+1)th LED string LED(n+1) conduction.
第4圖為第3圖之LED切換系統在N=1時的電路結構示意圖。如第4圖所示,在N=1時,控制開關及每一發光單元13中的繼電器的數量皆等於1。繼電器RY1的第一接點P1、第二接點P2及第三接點P3分別電連接於第1個LED串LED1的第二端、第2個LED串LED2的第二端及第一直流端DC+。兩LED串LED1及LED2的第二端均接地。Figure 4 is a schematic diagram of the circuit structure of the LED switching system in Figure 3 when N=1. As shown in FIG. 4 , when N=1, the number of control switches and relays in each light-emitting
於本申請之第三實施例中,如第5圖所示,電源電路14還包含第一供電端VCC1及第二供電端VCC2,其中第一供電端VCC1及第二供電端VCC2分別用以提供第一電壓及第二電壓。切換電路15包含N個繼電器RY1、RY2、…、RYN、N個隔離器OC1、OC2、…、OCN、內部控制器153及 (N+1) 個驅動開關Q1、Q2、…、Q(N+1)。N個繼電器RY1~RYN分別電連接於N個控制開關SW1~SWN,N個隔離器OC1~OCN分別電連接於N個繼電器RY1~RYN。每一繼電器 (RY1~RYN) 包含線圈154及切換開關155,各線圈154的兩端分別電連接於各繼電器 (RY1~RYN) 所對應的控制開關 (SW1~SWN) 及第三相位端L3,各切換開關155的兩端分別電連接於第一供電端VCC1及各繼電器 (RY1~RYN) 所對應的隔離器 (OC1~OCN) 的發射器156。切換開關155在線圈154通電時導通,且在線圈154不通電時關斷。每一隔離器 (OC1~OCN) 的接收器157的兩端分別電連接於第二供電端VCC2及內部控制器153,且當接收器157所對應的發射器156透過切換開關155的導通而接收到第一電壓時,接收器157傳輸第二電壓至內部控制器153。內部控制器153電連接於所有 (N+1) 個驅動開關Q1~Q(N+1),並用以控制所有 (N+1) 個驅動開關Q1~Q(N+1) 的開關狀態。所有 (N+1) 個LED串LED1~LED(N+1) 的第一端均電連接於第一直流端DC+,所有 (N+1) 個LED串LED1~LED(N+1) 的第二端分別電連接於所有 (N+1) 個驅動開關Q1~Q(N+1)。本申請之隔離器 (OC1~OCN) 可為例如但不限於光電耦合元件或數位隔離器。舉例而言,當隔離器 (OC1~OCN) 為光電耦合元件時,發射器156及接收器157分別為光發射器及光接收器,其中光發射器及光接收器可分別為光源及光感測器,例如分別為LED及光電晶體,但亦不以此為限,僅需在光發射器接收到第一電壓時可觸發光接收器導通即可。In the third embodiment of the present application, as shown in Figure 5, the
當所有控制開關SW1~SWN均關斷時,所有繼電器RY1~RYN的切換開關155均關斷,內部控制器153未收到任一隔離器 (OC1~OCN) 所傳輸的第二電壓,因此控制第1個驅動開關Q1導通,使第1個LED串LED1導通。而當第n個控制開關SWn導通時,第n個繼電器RYn的切換開關155導通而傳輸第一電壓至第n個隔離器OCn的發射器156,第n個隔離器OCn的接收器157被觸發而傳輸第二電壓至內部控制器153,內部控制器153對應控制第 (n+1) 個驅動開關Q(n+1) 導通,使第 (n+1) 個LED串LED(n+1) 導通。When all control switches SW1~SWN are turned off, the
第6圖為第5圖之LED切換系統在N=1時的電路結構示意圖。如第6圖所示,在N=1時,控制開關、每一發光單元13中的繼電器及隔離器的數量皆等於1,驅動開關的數量等於2。繼電器RY1的切換開關155的兩端分別電連接於第一供電端VCC1及隔離器OC1的發射器156。隔離器OC1的接收器157的兩端分別電連接於第二供電端VCC2及內部控制器153。內部控制器153連接於驅動開關Q1及Q2。LED串LED1及LED2的第一端均電連接於第一直流端DC+,LED串LED1及LED2的第二端分別電連接於驅動開關Q1及Q2。Figure 6 is a schematic diagram of the circuit structure of the LED switching system in Figure 5 when N=1. As shown in Figure 6, when N=1, the number of control switches, relays and isolators in each light-emitting
於本申請之第四實施例中,如第7圖所示,其中與第5圖所示之第三實施例中具有相似結構及功能之元件以相同標號表示,且其對於LED串的控制方式與第5圖所示之第三實施例相同。惟相較於第5圖所示之第三實施例,在第7圖所示之第四實施例中,所有 (N+1) 個LED串LED1~LED(N+1) 的第一端分別經由所有 (N+1) 個驅動開關Q1~Q(N+1) 電連接於第一直流端DC+,所有 (N+1) 個LED串LED1~LED(N+1) 的第二端均接地。In the fourth embodiment of the present application, as shown in Figure 7, components with similar structures and functions as in the third embodiment shown in Figure 5 are represented by the same reference numerals, and their control method for the LED string Same as the third embodiment shown in Figure 5. However, compared with the third embodiment shown in Figure 5, in the fourth embodiment shown in Figure 7, the first ends of all (N+1) LED strings LED1~LED(N+1) are respectively Through all (N+1) drive switches Q1~Q(N+1) are electrically connected to the first DC terminal DC+, the second terminals of all (N+1) LED strings LED1~LED(N+1) are Ground.
第8圖為第7圖之LED切換系統在N=1時的電路結構示意圖。如第8圖所示,在N=1時,控制開關、每一發光單元13中的繼電器及隔離器的數量皆等於1,驅動開關的數量等於2。繼電器RY1的切換開關155的兩端分別電連接於第一供電端VCC1及隔離器OC1的發射器156。隔離器OC1的接收器157的兩端分別電連接於第二供電端VCC2及內部控制器153。內部控制器153連接於驅動開關Q1及Q2。LED串LED1及LED2的第一端分別經由驅動開關Q1及Q2電連接於第一直流端DC+,LED串LED1及LED2的第二端均接地。Figure 8 is a schematic diagram of the circuit structure of the LED switching system in Figure 7 when N=1. As shown in Figure 8, when N=1, the number of control switches, relays and isolators in each light-emitting
於本申請之第五實施例中,如第9圖所示,電源電路14還包含第一供電端VCC1及第二供電端VCC2,其中第一供電端VCC1及第二供電端VCC2分別用以提供第一電壓及第二電壓。切換電路15包含內部控制電路158及 (N+1) 個驅動開關Q1、Q2、…、Q(N+1)。內部控制電路158電連接於所有N個控制開關SW1~SWN、第三相位端L3及所有 (N+1) 個驅動開關Q1~Q(N+1)。所有 (N+1) 個LED串LED1~LED(N+1) 的第一端均電連接於第一直流端DC+,所有 (N+1) 個LED串LED1~LED(N+1) 的第二端分別電連接於所有 (N+1) 個驅動開關Q1~Q(N+1)。In the fifth embodiment of the present application, as shown in Figure 9, the
當所有控制開關SW1~SWN均關斷時,內部控制電路158控制第1個驅動開關Q1導通,使第1個LED串LED1導通。而當第n個控制開關SWn導通時,第一相位端L1及第三相位端L3所提供之交流電輸入至內部控制電路158,內部控制電路158控制第 (n+1) 個驅動開關 Q(n+1) 導通,使第 (n+1) 個LED串LED(n+1) 導通。When all control switches SW1 ~ SWN are turned off, the
第10圖為第9圖之LED切換系統在N=1時的電路結構示意圖。如第10圖所示,在N=1時,控制開關的數量等於1,每一發光單元13中的驅動開關的數量等於2。內部控制電路158電連接於控制開關SW1、第三相位端L3及兩個驅動開關Q1和Q2。兩個LED串LED1及LED2的第一端均電連接於第一直流端DC+,兩個LED串LED1及LED2的第二端分別電連接於兩個驅動開關Q1及Q2。Figure 10 is a schematic diagram of the circuit structure of the LED switching system in Figure 9 when N=1. As shown in Figure 10, when N=1, the number of control switches is equal to 1, and the number of driving switches in each light-emitting
於本申請之第六實施例中,如第11圖所示,其中與第9圖所示之第五實施例中具有相似結構及功能之元件以相同標號表示,且其對於LED串的控制方式與第9圖所示之第五實施例相同。惟相較於第9圖所示之第五實施例,在第11圖所示之第六實施例中,所有 (N+1) 個LED串LED1~LED(N+1) 的第一端分別經由所有 (N+1) 個驅動開關Q1~Q(N+1) 電連接於第一直流端DC+,所有 (N+1) 個LED串LED1~LED(N+1) 的第二端均接地。In the sixth embodiment of the present application, as shown in Figure 11, components with similar structures and functions as in the fifth embodiment shown in Figure 9 are represented by the same reference numerals, and their control methods for the LED strings are Same as the fifth embodiment shown in Figure 9. However, compared with the fifth embodiment shown in Figure 9, in the sixth embodiment shown in Figure 11, the first ends of all (N+1) LED strings LED1~LED(N+1) are respectively Through all (N+1) drive switches Q1~Q(N+1) are electrically connected to the first DC terminal DC+, the second terminals of all (N+1) LED strings LED1~LED(N+1) are Ground.
第12圖為第11圖之LED切換系統在N=1時的電路結構示意圖。如第10圖所示,在N=1時,控制開關的數量等於1,每一發光單元13中的驅動開關的數量等於2。內部控制電路158電連接於控制開關SW1、第三相位端L3及兩個驅動開關Q1和Q2。兩個LED串LED1及LED2的第一端分別經由驅動開關Q1及Q2電連接於第一直流端DC+,兩個LED串LED1及LED2的第二端均接地。Figure 12 is a schematic diagram of the circuit structure of the LED switching system in Figure 11 when N=1. As shown in Figure 10, when N=1, the number of control switches is equal to 1, and the number of driving switches in each light-emitting
於第5至12圖所示之實施例中,驅動開關可為例如但不限於金屬氧化物半導體場效電晶體 (MOSFET,metal-oxide-semiconductor field-effect transistor)。In the embodiments shown in Figures 5 to 12, the driving switch may be, for example but not limited to, a metal-oxide-semiconductor field-effect transistor (MOSFET).
在實際應用中,可根據需求選擇適當之切換電路實施態樣。舉例而言,當應用在千瓦以上的超高功率LED燈具時,若採用第一或第二實施例中之切換電路,則須選用高耐壓的繼電器,將導致成本大幅上升,故於此情況下以採用第三至第六實施例中之切換電路為佳。In practical applications, the appropriate switching circuit implementation can be selected according to needs. For example, when applied to ultra-high-power LED lamps above kilowatts, if the switching circuit in the first or second embodiment is used, a high-voltage relay must be used, which will lead to a significant increase in cost. Therefore, in this case It is better to use the switching circuits in the third to sixth embodiments.
此外,第9至12圖所示之實施例中的內部控制電路158包含多種可能實施態樣,以下以第10圖中之內部控制電路158進行例示說明,且為使圖面簡潔,圖中僅示出內部控制電路158及驅動開關Q1和Q2。In addition, the
如第13A圖所示,於一些實施例中,內部控制電路158包含繼電器RY1、隔離器OC1及內部控制器153。繼電器RY1包含線圈154及切換開關155,其中線圈154的兩端154a及154b分別電連接於控制開關SW1及第三相位端L3,切換開關155的兩端分別電連接於第一供電端VCC1及隔離器OC1的發射器156。切換開關155在線圈154通電時導通,且在線圈154不通電時關斷。隔離器OC1的接收器157的兩端分別電連接於第二供電端VCC2及內部控制器153,且當接收器157所對應的發射器156透過切換開關155的導通而接收到第一電壓時,接收器157傳輸第二電壓至內部控制器153。內部控制器153電連接於驅動開關Q1及Q2,並用以控制驅動開關Q1及Q2的開關狀態。As shown in Figure 13A, in some embodiments, the
如第13B圖所示,於一些實施例中,可將第13A圖中之繼電器RY1替換為驅動器159。驅動器159的兩端159a及159b分別電連接於控制開關SW1及第三相位端L3,且驅動器159還電連接於第一供電端VCC1及隔離器OC1的發射器156。驅動器159架構於控制隔離器OC1。As shown in Figure 13B, in some embodiments, the relay RY1 in Figure 13A can be replaced by a
如第13C圖所示,於一些實施例中,內部控制電路158包含繼電器RY1及內部控制器153。繼電器RY1包含線圈154及切換開關155,其中線圈154的兩端154a及154b分別電連接於控制開關SW1及第三相位端L3,切換開關155的一端電連接於第一供電端VCC1及內部控制器153的一端,切換開關155的另一端電連接於內部控制器153的另一端。切換開關155在線圈154通電時導通,且在線圈154不通電時關斷。內部控制器153還電連接於驅動開關Q1及Q2,並用以控制驅動開關Q1及Q2的開關狀態。As shown in Figure 13C, in some embodiments, the
如第13D圖所示,於一些實施例中,內部控制電路158包含內部控制器153。內部控制器153的第一端153a、第二端153b、第三端153c及第四端153d分別電連接於控制開關SW1、第三相位端L3、驅動開關Q1及驅動開關Q2,且內部控制器153的第五端153e接地。內部控制器153架構於控制驅動開關Q1及Q2的開關狀態。As shown in Figure 13D, in some embodiments, the
可以理解的是,在第13A至13D圖中所例示之第10圖的內部控制電路158的各種可能實施態樣亦適用於第9、11及12圖中的內部控制電路158。在控制開關的數量為N的情況下,驅動開關及LED串的數量為N+1,而在採用第13A圖所示之實施態樣時,繼電器及隔離器的數量為N,內部控制器的數量為1;在採用第13B圖所示之實施態樣時,驅動器及隔離器的數量為N,內部控制器的數量為1;在採用第13C圖所示之實施態樣時,繼電器的數量為N,內部控制器的數量為1;在採用第13D圖所示之實施態樣時,內部控制器的數量為1。It can be understood that the various possible implementations of the
綜上所述,本申請提供一種LED切換系統及其控制方法,其以較少量的開關實現對多個LED串的切換導通,接線上較為簡易,較易於控制;且開關僅用於訊號的驅動,可選擇額定電流規格較小的開關,所佔據之空間小,成本亦較低。此外,可依實際需求採用適當之切換電路實施態樣,使得LED切換系統之適用性提升。To sum up, this application provides an LED switching system and its control method, which uses a smaller number of switches to switch and conduct multiple LED strings. The wiring is simpler and easier to control; and the switches are only used for signals. For driving, you can choose a switch with a smaller rated current, which takes up less space and has lower cost. In addition, appropriate switching circuit implementation patterns can be adopted according to actual needs, which improves the applicability of the LED switching system.
須注意,上述僅是為說明本申請而提出之較佳實施例,本申請不限於所述之實施例,本申請之範圍由如附專利申請範圍決定。且本申請得由熟習此技術之人士任施匠思而為諸般修飾,然皆不脫如附專利申請範圍所欲保護者。It should be noted that the above are only preferred embodiments proposed to illustrate the present application. The present application is not limited to the described embodiments. The scope of the present application is determined by the scope of the appended patent application. Furthermore, this application may be modified in various ways as desired by those skilled in the art, without departing from the intended protection within the scope of the appended patent application.
1:LED切換系統 2:三相供電裝置 L1、L2、L3:相位端 11:控制單元 12:發光模組 SW1、SW2、SWN:控制開關 13:發光單元 14:電源電路 LED1、LED2、LED3、LED (N+1):LED串 15:切換電路 AC1、AC2:交流端 DC+:第一直流端 DC-:第二直流端 RY1、RY2、RYN:繼電器 151:線圈 152:切換開關 P1:第一接點 P2:第二接點 P3:第三接點 VCC1:第一供電端 VCC2:第二供電端 OC1、OC2、OCN:隔離器 153:內部控制器 Q1、Q2、Q3、Q(N+1):驅動開關 154:線圈 155:切換開關 156:發射器 157:接收器 158:內部控制電路 159:驅動器 1:LED switching system 2: Three-phase power supply device L1, L2, L3: phase terminal 11:Control unit 12:Light-emitting module SW1, SW2, SWN: control switch 13:Light-emitting unit 14:Power circuit LED1, LED2, LED3, LED (N+1): LED string 15:Switching circuit AC1, AC2: AC terminal DC+: first DC terminal DC-: Second DC terminal RY1, RY2, RYN: relay 151: coil 152:toggle switch P1: first contact P2: Second contact P3: The third contact VCC1: first power supply terminal VCC2: second power supply terminal OC1, OC2, OCN: Isolator 153: Internal controller Q1, Q2, Q3, Q(N+1): drive switch 154:Coil 155:toggle switch 156:Transmitter 157:Receiver 158: Internal control circuit 159:drive
第1圖為本申請第一實施例之LED切換系統的電路結構示意圖。Figure 1 is a schematic circuit structure diagram of an LED switching system according to the first embodiment of the present application.
第2圖為第1圖之LED切換系統在N=1時的電路結構示意圖。Figure 2 is a schematic diagram of the circuit structure of the LED switching system in Figure 1 when N=1.
第3圖為本申請第二實施例之LED切換系統的電路結構示意圖。Figure 3 is a schematic circuit structure diagram of an LED switching system according to the second embodiment of the present application.
第4圖為第3圖之LED切換系統在N=1時的電路結構示意圖。Figure 4 is a schematic diagram of the circuit structure of the LED switching system in Figure 3 when N=1.
第5圖為本申請第三實施例之LED切換系統的電路結構示意圖。Figure 5 is a schematic circuit structure diagram of an LED switching system according to the third embodiment of the present application.
第6圖為第5圖之LED切換系統在N=1時的電路結構示意圖。Figure 6 is a schematic diagram of the circuit structure of the LED switching system in Figure 5 when N=1.
第7圖為本申請第四實施例之LED切換系統的電路結構示意圖。Figure 7 is a schematic circuit structure diagram of an LED switching system according to the fourth embodiment of the present application.
第8圖為第7圖之LED切換系統在N=1時的電路結構示意圖。Figure 8 is a schematic diagram of the circuit structure of the LED switching system in Figure 7 when N=1.
第9圖為本申請第五實施例之LED切換系統的電路結構示意圖。Figure 9 is a schematic circuit structure diagram of an LED switching system according to the fifth embodiment of the present application.
第10圖為第9圖之LED切換系統在N=1時的電路結構示意圖。Figure 10 is a schematic diagram of the circuit structure of the LED switching system in Figure 9 when N=1.
第11圖為本申請第六實施例之LED切換系統的電路結構示意圖。Figure 11 is a schematic circuit structure diagram of an LED switching system according to the sixth embodiment of the present application.
第12圖為第11圖之LED切換系統在N=1時的電路結構示意圖。Figure 12 is a schematic diagram of the circuit structure of the LED switching system in Figure 11 when N=1.
第13A、13B、13C及13D圖例示出第10圖中之內部控制電路的各種可能實施態樣。Figures 13A, 13B, 13C and 13D illustrate various possible implementations of the internal control circuit in Figure 10.
1:LED切換系統 1:LED switching system
2:三相供電裝置 2: Three-phase power supply device
L1、L2、L3:相位端 L1, L2, L3: phase terminal
11:控制單元 11:Control unit
12:發光模組 12:Light-emitting module
SW1、SW2、SWN:控制開關 SW1, SW2, SWN: control switch
13:發光單元 13:Light-emitting unit
14:電源電路 14:Power circuit
LED1、LED2、LED3、LED(N+1):LED串 LED1, LED2, LED3, LED(N+1): LED string
15:切換電路 15:Switching circuit
AC1、AC2:交流端 AC1, AC2: AC terminal
DC+:第一直流端 DC+: first DC terminal
DC-:第二直流端 DC-: Second DC terminal
RY1、RY2、RYN:繼電器 RY1, RY2, RYN: relay
151:線圈 151: coil
152:切換開關 152:toggle switch
P1:第一接點 P1: first contact
P2:第二接點 P2: Second contact
P3:第三接點 P3: The third contact
Claims (15)
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CN102455389A (en) * | 2010-10-22 | 2012-05-16 | 鸿富锦精密工业(深圳)有限公司 | Three-phase AC (alternating current) power supply phase sequence detection device |
CN102045925B (en) * | 2010-11-02 | 2013-11-27 | 华南理工大学 | LED centralized direct-current power supply system and operating method thereof |
CN204231697U (en) * | 2014-08-14 | 2015-03-25 | 合肥云杉光电科技有限公司 | A kind of three-phase electricity rectification LC height PF filtering high direct voltage directly drives LED circuit |
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WO2018227328A1 (en) * | 2017-06-12 | 2018-12-20 | The University Of Hong Kong | Passive three-phase light-emitting diode drivers |
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