TWI754380B - Display device - Google Patents

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TWI754380B
TWI754380B TW109132177A TW109132177A TWI754380B TW I754380 B TWI754380 B TW I754380B TW 109132177 A TW109132177 A TW 109132177A TW 109132177 A TW109132177 A TW 109132177A TW I754380 B TWI754380 B TW I754380B
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light
emitting diodes
controller
display device
light emitting
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TW109132177A
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TW202103518A (en
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楊宜勳
謝祥圓
莊錦棠
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友達光電股份有限公司
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Abstract

A display device is provided. The display device includes a controller and a plurality of first light emitting diodes. The plurality of first light emitting diodes are arranged alternately with a plurality of second light emitting diodes, and the first light emitting diodes are respectively coupled to the second light emitting diodes. Each of the second light emitting diodes receives a driving current. When each of the second light emitting diodes is disconnected, the driving current corresponding to each of the second light emitting diodes is transmitted to the corresponding each of the first light emitting diodes.

Description

顯示裝置display device

本發明是有關於一種顯示裝置及其驅動方法,且特別是有關於一種具有元件損壞補償功能以提升可靠度的顯示裝置及其驅動方法。The present invention relates to a display device and a driving method thereof, and more particularly, to a display device and a driving method thereof having a component damage compensation function to improve reliability.

在顯示裝置的系統中,無論是主動式矩陣(Active matrix)的控制器或是受控元件,例如發光二極體(light emitting diode, LED),都難以避免的可能會發生故障,導致顯示裝置出現缺陷。因此,要如何修復補償這些缺陷以提高顯示裝置可靠度,並避免造成元件成本大量增加,則成為一個重要的課題。In a display device system, whether it is an active matrix (Active matrix) controller or a controlled element, such as a light emitting diode (LED), it is unavoidable that failures may occur, resulting in display device failures. A defect occurs. Therefore, how to repair and compensate these defects so as to improve the reliability of the display device and avoid a substantial increase in the cost of components has become an important issue.

本發明提供一種顯示裝置及其驅動方法,其具有元件損壞補償功能,可提升顯示裝置的可靠度。The present invention provides a display device and a driving method thereof, which have a component damage compensation function and can improve the reliability of the display device.

本發明的顯示裝置包括控制器、多個第一發光二極體以及多個第二發光二極體。多個第一發光二極體耦接至控制器的第一側邊,分別與多個第二發光二極體交錯配置,多個第一發光二極體分別耦接至多個第二發光二極體,其中各第二發光二極體接收驅動電流,在當各第二發光二極體斷路時,各第二發光二極體對應的驅動電流被傳送至對應的各第一發光二極體。The display device of the present invention includes a controller, a plurality of first light emitting diodes, and a plurality of second light emitting diodes. A plurality of first light emitting diodes are coupled to the first side of the controller, and are respectively arranged alternately with a plurality of second light emitting diodes, and the plurality of first light emitting diodes are respectively coupled to the plurality of second light emitting diodes Each second light emitting diode receives a driving current, and when each second light emitting diode is disconnected, the corresponding driving current of each second light emitting diode is transmitted to each corresponding first light emitting diode.

基於上述,本發明的顯示裝置藉由第一控制器來驅動第一發光二極體,而當第一發光二極體斷路(例如是損壞狀態)時,則可透過第二控制器來驅動第二發光二極體,以對因第一發光二極體損壞而產生的缺陷進行亮度補償,藉此達到元件損壞補償功能之目的,並能提升顯示裝置的可靠度。Based on the above, the display device of the present invention uses the first controller to drive the first light-emitting diode, and when the first light-emitting diode is disconnected (eg, in a damaged state), the second controller can be used to drive the first light-emitting diode. The second light-emitting diode is used to compensate the brightness of the defect caused by the damage of the first light-emitting diode, thereby achieving the purpose of compensating for element damage and improving the reliability of the display device.

為讓本發明的上述特徵和優點能更明顯易懂,下文特舉實施例,並配合所附圖式作詳細說明如下。In order to make the above-mentioned features and advantages of the present invention more obvious and easy to understand, the following embodiments are given and described in detail with the accompanying drawings as follows.

在附圖中,為了清楚起見,放大了層、膜、面板、區域等的厚度。在整個說明書中,相同的附圖標記表示相同的元件。應當理解,當諸如層、膜、區域或基板的元件被稱為在另一元件”上”或”連接到”另一元件時,其可以直接在另一元件上或與另一元件連接,或者中間元件可以也存在。相反,當元件被稱為”直接在另一元件上”或”直接連接到”另一元件時,不存在中間元件。如本文所使用的,”連接”可以指物理及/或電性連接。再者,”電性連接”或”耦合”係可為二元件間存在其它元件。In the drawings, the thickness of layers, films, panels, regions, etc., are exaggerated for clarity. The same reference numerals refer to the same elements throughout the specification. It will be understood that when an element such as a layer, film, region or substrate is referred to as being "on" or "connected to" another element, it can be directly on or connected to the other element, or Intermediate elements may also be present. In contrast, when an element is referred to as being "directly on" or "directly connected to" another element, there are no intervening elements present. As used herein, "connected" may refer to a physical and/or electrical connection. Furthermore, "electrically connected" or "coupled" refers to the existence of other elements between the two elements.

請參照圖1,圖1繪示本發明一實施例的顯示裝置的電路方塊示意圖。顯示裝置100包括發光二極體LED1~LED2以及控制器110、120。控制器110中具有電流源SOU1,電流源SOU1與發光二極體LED1的陰極串聯耦接,發光二極體LED1的陽極則接收系統電壓VLED。控制器120中則具有電流源SOU2,電流源SOU2的一端與發光二極體LED2的陰極串聯耦接,電流源SOU2的另一端則耦接至參考接地電壓GND,發光二極體LED2的陽極則同樣接收系統電壓VLED,其中發光二極體LED1與發光二極體LED2的發光波長相同,並且發光二極體LED1會與發光二極體LED2彼此交錯配置。此外,電流源SOU1並會耦接至電流源SOU2與發光二極體LED2的耦接點(例如是節點CE1)。Please refer to FIG. 1 , which is a schematic block diagram of a circuit of a display device according to an embodiment of the present invention. The display device 100 includes light emitting diodes LED1 to LED2 and controllers 110 and 120 . The controller 110 has a current source SOU1, the current source SOU1 is coupled in series with the cathode of the light emitting diode LED1, and the anode of the light emitting diode LED1 receives the system voltage VLED. The controller 120 has a current source SOU2, one end of the current source SOU2 is coupled in series with the cathode of the light-emitting diode LED2, the other end of the current source SOU2 is coupled to the reference ground voltage GND, and the anode of the light-emitting diode LED2 is The system voltage VLED is also received, wherein the light-emitting diodes LED1 and LED2 have the same emission wavelength, and the light-emitting diodes LED1 and the light-emitting diodes LED2 are arranged alternately with each other. In addition, the current source SOU1 is also coupled to the coupling point (eg, the node CE1 ) of the current source SOU2 and the light emitting diode LED2 .

據此,當發光二極體LED1為正常狀態(即並未發生損壞的狀態)時,控制器120會使電流源SOU2汲取電流源SOU1的電流,以使電流源SOU1提供驅動電流Idr1來導通發光二極體LED1。需要注意的是,在本實施例中,電流源SOU1與電流源SOU2的電流大小相同,故依據克希荷夫電流定律(Kirchhoffs Current Law,KCL),此時流入節點CE1的電流(即電流源SOU1提供的驅動電流Idr1)與流出節點CE1的電流(即電流源SOU2的電流)實質上相同,因此,發光二極體LED2並不會有電流流過(即驅動電流Idr2的電流值例如為零或趨近於零),亦即在發光二極體LED1為正常狀態時,作為備援發光二極體的發光二極體LED2並不會發光。Accordingly, when the light-emitting diode LED1 is in a normal state (ie, a state where no damage has occurred), the controller 120 causes the current source SOU2 to draw the current of the current source SOU1 , so that the current source SOU1 provides the driving current Idr1 to turn on light emission Diode LED1. It should be noted that, in this embodiment, the currents of the current source SOU1 and the current source SOU2 are the same, so according to the Kirchhoffs Current Law (KCL), the current flowing into the node CE1 at this time (ie the current source The driving current Idr1 provided by SOU1 is substantially the same as the current flowing out of the node CE1 (that is, the current of the current source SOU2 ), therefore, the light-emitting diode LED2 does not have a current flowing (that is, the current value of the driving current Idr2 is, for example, zero or approaching zero), that is, when the light-emitting diode LED1 is in a normal state, the light-emitting diode LED2 serving as a backup light-emitting diode does not emit light.

另一方面,當發光二極體LED1發生損壞而斷路時,會使驅動電流Idr1的電流路徑被斷開,電流源SOU1便會停止提供驅動電流Idr1。此時,電流源SOU2會提供驅動電流Idr2以導通發光二極體LED2,使發光二極體LED2可以補償發光二極體LED1未能提供的發光亮度。如此一來,本發明在發光二極體LED1為斷路狀態時,便可藉由相同發光波長的發光二極體LED2作為備援的發光二極體,以補償顯示裝置100因發光二極體LED1損壞而產生的缺陷,達到提升可靠度之目的。On the other hand, when the light emitting diode LED1 is damaged and disconnected, the current path of the driving current Idr1 is disconnected, and the current source SOU1 stops providing the driving current Idr1. At this time, the current source SOU2 will provide the driving current Idr2 to turn on the light-emitting diode LED2, so that the light-emitting diode LED2 can compensate the light-emitting brightness that the light-emitting diode LED1 cannot provide. In this way, in the present invention, when the light-emitting diode LED1 is in an open-circuit state, the light-emitting diode LED2 with the same light-emitting wavelength can be used as a backup light-emitting diode to compensate the display device 100 due to the light-emitting diode LED1 . Defects caused by damage to achieve the purpose of improving reliability.

附帶一提的,在本實施例的顯示裝置100中,當控制器110發生損壞時,控制器110無法提供驅動電流Idr1時。控制器120則可使電流源SOU2提供驅動電流Idr2來驅動發光二極體LED2,以補償因控制器110損壞而使發光二極體LED1無法發光之缺陷。Incidentally, in the display device 100 of this embodiment, when the controller 110 is damaged, the controller 110 cannot provide the driving current Idr1. The controller 120 enables the current source SOU2 to provide the driving current Idr2 to drive the light-emitting diode LED2 to compensate for the defect that the light-emitting diode LED1 cannot emit light due to the damage of the controller 110 .

請參照圖2A,圖2A繪示本發明另一實施例的顯示裝置的示意圖。本實施例的顯示裝置200包括移位暫存器SR、發光二極體R1~ R2、G1~G2、B1~B2、電晶體T1~T6以及多個控制器(例如是控制器210)。需要注意的是,本發明的顯示裝置200包括多個相互耦接的控制器(例如是多組如圖1所繪示的控制器110以及控制器120的耦接方式的架構),並且顯示裝置200中各控制器可分別耦接多個發光二極體以及多個電晶體,在此為簡化說明,圖2A僅繪示控制器210及耦接至控制器210的發光二極體R1~ R2、G1~G2、B1~B2及電晶體T1~T6,以作為示範性實施例,然本發明實際上並未對控制器、發光二極體及電晶體的數量有加以限制,本領域具通常知識者可依據實際應用情況調整控制器、發光二極體及電晶體的數量。Please refer to FIG. 2A . FIG. 2A is a schematic diagram of a display device according to another embodiment of the present invention. The display device 200 of this embodiment includes a shift register SR, light emitting diodes R1 ˜ R2 , G1 ˜ G2 , B1 ˜ B2 , transistors T1 ˜ T6 , and a plurality of controllers (eg, the controller 210 ). It should be noted that the display device 200 of the present invention includes a plurality of controllers that are coupled to each other (for example, a structure of a coupling manner of a plurality of sets of controllers 110 and 120 as shown in FIG. 1 ), and the display device Each controller in 200 can be respectively coupled to a plurality of light-emitting diodes and a plurality of transistors. For the sake of simplicity, FIG. 2A only shows the controller 210 and the light-emitting diodes R1-R2 coupled to the controller 210. , G1-G2, B1-B2, and transistors T1-T6, as an exemplary embodiment, but the present invention does not actually limit the number of controllers, light-emitting diodes and transistors. The knowledgeable person can adjust the number of controllers, light-emitting diodes and transistors according to the actual application.

此外,在本實施例中,發光二極體R1、G1、B1作為控制器210的主要發光二極體,發光二極體R2、G2、B2則作為下一級的控制器中主要發光二極體的備援發光二極體,然本發明並不以此為限。In addition, in this embodiment, the light-emitting diodes R1, G1, and B1 are used as the main light-emitting diodes of the controller 210, and the light-emitting diodes R2, G2, and B2 are used as the main light-emitting diodes in the next-level controller. the backup light-emitting diode, but the present invention is not limited to this.

值得注意的是,在本實施例中,發光二極體R1、R2的發光波長相同,並且可例如是紅光發光二極體。發光二極體G1、G2的發光波長相同,並且可例如是綠光發光二極體。發光二極體B1、B2的發光波長相同,並且可例如是藍光發光二極體。也就是說,發光二極體R1、R2的發光波長可以與發光二極體G1、G2的發光波長不同,並且發光二極體R1、R2的發光波長可以與發光二極體B1、B2的發光波長不同。需要注意的是,在本發明其他實施例中,發光二極體R1、R2的發光波長也可以是與發光二極體G1、G2、B1、B2相同的,本發明對此並不加以限制,本領域具通常知識者可依據實際應用情況對發光二極體R1~R2、G1~G2、B1~B2的發光波長進行調整。It should be noted that, in this embodiment, the light-emitting diodes R1 and R2 have the same light-emitting wavelength, and may be, for example, red light-emitting diodes. The light-emitting diodes G1, G2 have the same emission wavelength and may be, for example, green light-emitting diodes. The light emitting diodes B1, B2 have the same emission wavelength and may be, for example, blue light emitting diodes. That is, the light-emitting wavelengths of the light-emitting diodes R1, R2 may be different from the light-emitting wavelengths of the light-emitting diodes G1, G2, and the light-emitting wavelengths of the light-emitting diodes R1, R2 may be different from the light-emitting wavelengths of the light-emitting diodes B1, B2 different wavelengths. It should be noted that, in other embodiments of the present invention, the light-emitting wavelengths of the light-emitting diodes R1 and R2 may also be the same as those of the light-emitting diodes G1, G2, B1, and B2, which are not limited in the present invention. Those with ordinary knowledge in the art can adjust the light-emitting wavelengths of the light-emitting diodes R1-R2, G1-G2, and B1-B2 according to the actual application.

控制器210包括控制信號產生器211a~211b、電流控制器212a~212b、開關S1~S6以及電流源SOU21~SOU29。控制器210接收掃描信號Scan、資料信號Data以及時脈信號CLK,以依據掃描信號Scan決定是否接收資料信號Data。附帶一提的,掃描信號Scan、資料信號Data以及時脈信號CLK可例如是由一時序控制器所提供,然本發明並不以此為限。另一方面,移位暫存器SR用以接收前級掃描信號,並提供後級掃描信號,以使顯示裝置200的各列畫素能依序進行掃描。詳細來說明,移位暫存器SR會提供多個依序致能的控制信號MR1_1、MG1_1、MB1_1,以導通電晶體T1~T3,使發光二極體R1、G1、B1接收系統電壓VLED。此外,移位暫存器SR下一級的移位暫存器則會提供多個依序致能的控制信號MR1_2、MG1_2、MB1_2,以導通電晶體T4~T6,使發光二極體R2、G2、B2接收系統電壓VLED,請依此類推。The controller 210 includes control signal generators 211a-211b, current controllers 212a-212b, switches S1-S6, and current sources SOU21-SOU29. The controller 210 receives the scan signal Scan, the data signal Data and the clock signal CLK to determine whether to receive the data signal Data according to the scan signal Scan. Incidentally, the scan signal Scan, the data signal Data, and the clock signal CLK can be provided by, for example, a timing controller, but the invention is not limited thereto. On the other hand, the shift register SR is used for receiving the scanning signal of the previous stage, and providing the scanning signal of the subsequent stage, so that the pixels of each column of the display device 200 can be scanned in sequence. To be described in detail, the shift register SR provides a plurality of sequentially enabled control signals MR1_1 , MG1_1 , and MB1_1 to turn on the transistors T1 ˜ T3 , so that the light emitting diodes R1 , G1 , and B1 receive the system voltage VLED. In addition, the shift register at the next stage of the shift register SR will provide a plurality of control signals MR1_2, MG1_2, and MB1_2 that are enabled in sequence to turn on the transistors T4-T6, so that the light-emitting diodes R2 and G2 are turned on. , B2 receives the system voltage VLED, and so on.

此外,在控制器210中,開關S1耦接在發光二極體R1與電流源SOU21之間,並依據控制信號SR1而被導通或斷開。開關S2耦接在發光二極體G1與電流源SOU22之間,並依據控制信號SG1而被導通或斷開。開關S3耦接在發光二極體B1與電流源SOU23之間,並依據控制信號SB1而被導通或斷開。開關S4耦接在發光二極體R2與電流源SOU24之間,並依據控制信號SR2而被導通或斷開。開關S5耦接在發光二極體G2與電流源SOU25之間,並依據控制信號SG2而被導通或斷開。開關S6耦接在發光二極體B2與電流源SOU26之間,並依據控制信號SB2而被導通或斷開。需要注意的是,本實施例的電晶體T1~T6可例如是採用P型電晶體或N型電晶體來實施,本發明在此以P型電晶體來實施以作為示範性實施例,然本發明並不以此為限。此外,本實施例的開關S1~S6同樣可例如是採用P型電晶體或N型電晶體來實施,本發明並不加以限制。In addition, in the controller 210, the switch S1 is coupled between the light-emitting diode R1 and the current source SOU21, and is turned on or off according to the control signal SR1. The switch S2 is coupled between the light emitting diode G1 and the current source SOU22, and is turned on or off according to the control signal SG1. The switch S3 is coupled between the light emitting diode B1 and the current source SOU23, and is turned on or off according to the control signal SB1. The switch S4 is coupled between the light emitting diode R2 and the current source SOU24, and is turned on or off according to the control signal SR2. The switch S5 is coupled between the light emitting diode G2 and the current source SOU25, and is turned on or off according to the control signal SG2. The switch S6 is coupled between the light emitting diode B2 and the current source SOU26, and is turned on or off according to the control signal SB2. It should be noted that the transistors T1 to T6 in this embodiment may be implemented by, for example, P-type transistors or N-type transistors. The present invention is implemented by using P-type transistors as an exemplary embodiment. Inventions are not limited to this. In addition, the switches S1 to S6 in this embodiment can also be implemented by, for example, a P-type transistor or an N-type transistor, which is not limited in the present invention.

另一方面,在本實施例中,控制信號產生器211a用以提供控制信號SR1、SG1、SB1來分別控制開關S1~S3。控制信號產生器211b則用以提供控制信號SR2、SG2、SB2來分別控制開關S4~S6。附帶一提的,本實施例的控制信號SR1~SR2、SG1~SG2、SB1~SB2可例如是脈波寬度調變(PWM)信號,然本發明並不以此為限。電流控制器212a用以提供電流控制信號IR1_1、IG1_1、IB1_1來分別控制電流源SOU21~SOU23的電流大小(例如是控制電流源SOU21~SOU23輸出電流值的比例值)。電流控制器212b用以提供電流控制信號IR1_2、IG1_2、IB1_2來分別控制電流源SOU24~SOU26的電流大小(例如是控制電流源SOU24~SOU26輸出電流值的比例值)。附帶一提,電流源SOU27~SOU29為控制器210的下一級的控制器中的電流源,需要注意的是,本實施例的控制器210與下一級的控制器之間的元件耦接方式及元件損壞補償方式與前述圖1實施例相類似,在此不重複贅述。On the other hand, in this embodiment, the control signal generator 211a is used for providing the control signals SR1, SG1, SB1 to control the switches S1-S3 respectively. The control signal generator 211b is used for providing control signals SR2, SG2, SB2 to control the switches S4-S6 respectively. Incidentally, the control signals SR1 ˜SR2 , SG1 ˜ SG2 , and SB1 ˜SB2 in this embodiment may be, for example, pulse width modulation (PWM) signals, but the present invention is not limited thereto. The current controller 212a is used for providing the current control signals IR1_1, IG1_1, and IB1_1 to control the currents of the current sources SOU21-SOU23 respectively (for example, controlling the proportional value of the output current values of the current sources SOU21-SOU23). The current controller 212b is used for providing the current control signals IR1_2, IG1_2, and IB1_2 to control the currents of the current sources SOU24-SOU26 respectively (for example, controlling the proportional value of the output current values of the current sources SOU24-SOU26). Incidentally, the current sources SOU27 to SOU29 are current sources in the next-stage controller of the controller 210 . It should be noted that the element coupling method between the controller 210 and the next-stage controller in this embodiment and the The compensation method for component damage is similar to that of the aforementioned embodiment in FIG. 1 , and details are not repeated here.

接著,請同步參照圖2A及圖2B,圖2B繪示本發明圖2A實施例的顯示裝置的信號波形示意圖。在時間區間TA中,顯示裝置200會執行資料存取操作,掃描信號Scan會從禁能電壓準位轉態為致能電壓準位,此時控制器210接收切換頻率為時脈信號Clk_data的時脈信號CLK,並依據時脈信號CLK對資料信號Data進行資料存取動作。需要注意的是,時脈信號Clk_data的切換頻率高於時脈信號Clk_PWM的切換頻率,並且時脈信號Clk_data及時脈信號Clk_PWM同樣可例如是由一時序控制器發送。如此一來,本實施例的顯示裝置200可藉由切換頻率較高的時脈信號Clk_data來進行資料存取操作,進而加速資料的收集與存取。另一方面,在時間區間TA中控制信號SR1、SG1、SB1以及控制信號MR1_1、MG1_1、MB1_1均為禁能電壓準位(亦及此時電晶體T1~T3以及開關S1~S3為斷開狀態)。此外,在本實施例中,控制信號SR2、SG2、SB2以及控制信號MR1_2、MG1_2、MB1_2的電壓準位則會與下一級的控制器中主要發光二極體的多個開關及多個電晶體的控制信號相同。Next, please refer to FIG. 2A and FIG. 2B synchronously. FIG. 2B is a schematic diagram of signal waveforms of the display device according to the embodiment of FIG. 2A of the present invention. During the time interval TA, the display device 200 performs a data access operation, the scan signal Scan changes from the disable voltage level to the enable voltage level, and the controller 210 receives the time when the switching frequency is the clock signal Clk_data The pulse signal CLK is used, and the data access operation is performed on the data signal Data according to the clock signal CLK. It should be noted that the switching frequency of the clock signal Clk_data is higher than the switching frequency of the clock signal Clk_PWM, and the clock signal Clk_data and the clock signal Clk_PWM can also be sent by a timing controller, for example. In this way, the display device 200 of this embodiment can perform data access operations by switching the clock signal Clk_data with a higher frequency, thereby accelerating data collection and access. On the other hand, in the time interval TA, the control signals SR1, SG1, SB1, and the control signals MR1_1, MG1_1, and MB1_1 are all disabled voltage levels (and also the transistors T1~T3 and the switches S1~S3 are turned off at this time. ). In addition, in this embodiment, the voltage levels of the control signals SR2, SG2, SB2, and the control signals MR1_2, MG1_2, and MB1_2 are related to the switches and transistors of the main light-emitting diodes in the next-stage controller. control signals are the same.

而在時間區間TA之後的時間區間TB中,顯示裝置200會執行驅動顯示操作,掃描信號Scan會從致能電壓準位轉態為禁能電壓準位,此時控制器210會接收切換頻率為時脈信號Clk_PWM的時脈信號CLK,提供轉態為致能電壓準位的控制信號SR1、SG1、SB1導通開關S1~S3,並提供依序致能控制信號MR1_1、MG1_1、MB1_1以導通電晶體T1~T3,以使上一級的控制器中的多個電流源,分別對電流源SOU21、SOU22、SOU23汲取電流以分別產生驅動電流IR1_out、IG1_out、IB1_out來驅動發光二極體R1、G1、B1。In the time interval TB after the time interval TA, the display device 200 will perform a driving display operation, and the scan signal Scan will change from the enable voltage level to the disable voltage level. At this time, the controller 210 receives the switching frequency as The clock signal CLK of the clock signal Clk_PWM provides the control signals SR1, SG1, and SB1 whose states are turned to enable voltage levels to turn on the switches S1-S3, and provides the enable control signals MR1_1, MG1_1, and MB1_1 in sequence to turn on the transistors T1~T3, so that the multiple current sources in the controller of the upper stage draw current from the current sources SOU21, SOU22, SOU23 respectively to generate the driving currents IR1_out, IG1_out, IB1_out to drive the light-emitting diodes R1, G1, B1 .

附帶一提,當下一級的控制器中的主要發光二極體損壞而斷路(或下一級的控制器發生損壞)時,下一級的控制器中的電流源SOU27、SOU28、SOU29停止提供驅動電流(例如是驅動電流IR2_in、IG2_in、IB2_in),則控制器210會使電流源SOU24、SOU25、SOU26分別提供與電流源SOU27、SOU28、SOU29相同電流大小的驅動電流來驅動發光二極體R2、G2、B2。附帶一提,顯示裝置200中發光二極體R1、G1、B1會與上一級的控制器中的備援發光二極體交錯配置,發光二極體R2、G2、B2則會與下一級的控制器中的主要發光二極體交錯配置。Incidentally, when the main light-emitting diode in the next-level controller is damaged and the circuit is broken (or the next-level controller is damaged), the current sources SOU27, SOU28, SOU29 in the next-level controller stop providing driving current ( For example, driving currents IR2_in, IG2_in, IB2_in), the controller 210 makes the current sources SOU24, SOU25, and SOU26 respectively provide driving currents with the same current size as the current sources SOU27, SOU28, and SOU29 to drive the light-emitting diodes R2, G2, B2. Incidentally, the light-emitting diodes R1, G1, and B1 in the display device 200 are arranged in a staggered manner with the backup light-emitting diodes in the upper-level controller, and the light-emitting diodes R2, G2, and B2 are arranged with the lower-level controller. The main LEDs in the controller are staggered.

此外,在本發明的其他實施例中另有提到,可以開關S1~S6來替代電晶體T1~T6的功能,亦即本實施例的顯示裝置200在執行驅動顯示操作時,控制器210會提供依序致能的控制信號SR1、SG1、SB1以導通開關S1~S3,使電流源SOU21、SOU22、SOU23能分別提供驅動電流IR1_out、IG1_out、IB1_out來驅動發光二極體R1、G1、B1。In addition, as mentioned in other embodiments of the present invention, the switches S1-S6 can be used to replace the functions of the transistors T1-T6, that is, when the display device 200 of the present embodiment performs the display driving operation, the controller 210 will Provide sequentially enabled control signals SR1, SG1, SB1 to turn on the switches S1-S3, so that the current sources SOU21, SOU22, SOU23 can respectively provide driving currents IR1_out, IG1_out, IB1_out to drive the light-emitting diodes R1, G1, B1.

請參照圖3,圖3繪示本發明另一實施例的顯示裝置的電路方塊示意圖。本實施例的顯示裝置300包括控制器310、多個第一發光二極體(例如是發光二極體r31、g31、b31)以及多個第二發光二極體(例如是發光二極體R32、G32、B32)。多個第一發光二極體(即發光二極體r31、g31、b31)耦接至控制器310的第一側邊(例如圖3中控制器310的下側邊)。發光二極體r31、g31、b31分別與發光二極體R32、G32、B32交錯配置,並且發光二極體r31、g31、b31會分別耦接至發光二極體R32、G32、B32。值得一提的是,各發光二極體R32、G32、B32會接收驅動電流,在當各發光二極體R32、G32、B32斷路時,各發光二極體R32、G32、B32對應的驅動電流會被傳送至對應的各發光二極體r31、g31、b31。需要注意的是,在本實施例中,發光二極體R32、G32、B32作為控制器310的下一級的控制器的主要發光二極體,而控制器310的發光二極體r31、g31、b31則作為下一級的控制器中主要發光二極體(即發光二極體R32、G32、B32)的備援發光二極體,然本發明並不以此為限。Please refer to FIG. 3 , which is a schematic block diagram of a circuit of a display device according to another embodiment of the present invention. The display device 300 of this embodiment includes a controller 310 , a plurality of first light-emitting diodes (eg, light-emitting diodes r31 , g31 , b31 ) and a plurality of second light-emitting diodes (eg, light-emitting diodes R32 ) , G32, B32). A plurality of first light-emitting diodes (ie, light-emitting diodes r31 , g31 , b31 ) are coupled to the first side of the controller 310 (eg, the lower side of the controller 310 in FIG. 3 ). The light emitting diodes r31 , g31 and b31 are arranged alternately with the light emitting diodes R32 , G32 and B32 respectively, and the light emitting diodes r31 , g31 and b31 are respectively coupled to the light emitting diodes R32 , G32 and B32 . It is worth mentioning that each light-emitting diode R32, G32, B32 will receive the driving current. When each light-emitting diode R32, G32, B32 is disconnected, the driving current corresponding to each light-emitting diode R32, G32, B32 will be transmitted to the corresponding light-emitting diodes r31, g31, b31. It should be noted that, in this embodiment, the light-emitting diodes R32, G32, and B32 are used as the main light-emitting diodes of the next-level controller of the controller 310, while the light-emitting diodes r31, g31, b31 is used as a backup light-emitting diode for the main light-emitting diodes (ie, the light-emitting diodes R32, G32, B32) in the next-level controller, but the present invention is not limited to this.

此外,在本發明的其他實施例中另有提到,顯示裝置300更包括多個第三發光二極體(例如是發光二極體R31、G31、B31),發光二極體R31、G31、B31耦接至控制器310的第二側邊(例如圖3中控制器310的上側邊),其中第一側邊(即下側邊)與第二側邊(即上側邊)相對,並且發光二極體R31、G31、B31與發光二極體r31、g31、b31交錯配置。換句話說,本實施例的控制器310也可包括主要發光二極體(即發光二極體R31、G31、B31),並且發光二極體R31、G31、B31會與發光二極體r31、g31、b31呈現不對稱的配置方式。In addition, as mentioned in other embodiments of the present invention, the display device 300 further includes a plurality of third light-emitting diodes (eg, light-emitting diodes R31, G31, B31), light-emitting diodes R31, G31, B31 is coupled to the second side of the controller 310 (eg, the upper side of the controller 310 in FIG. 3 ), wherein the first side (ie the lower side) is opposite to the second side (ie the upper side), And the light-emitting diodes R31, G31, B31 and the light-emitting diodes r31, g31, b31 are arranged alternately. In other words, the controller 310 of this embodiment may also include main light-emitting diodes (ie, the light-emitting diodes R31, G31, B31), and the light-emitting diodes R31, G31, B31 will be connected with the light-emitting diodes r31, g31 and b31 present an asymmetric configuration.

由上述的說明不難得知,本發明的顯示裝置300可以一個控制器(例如是控制器310)來同時控制主要發光二極體(即發光二極體R31、G31、B31)與備援發光二極體(即發光二極體r31、g31、b31)。如此一來,本發明便可減少額外設置僅用以控制備援發光二極體的控制器,可增加控制器的使用效率,並降低元件成本。It is not difficult to know from the above description that the display device 300 of the present invention can control the main light-emitting diodes (ie the light-emitting diodes R31, G31, B31) and the backup light-emitting diodes simultaneously by one controller (eg, the controller 310). Polar body (ie light-emitting diodes r31, g31, b31). In this way, the present invention can reduce the additional setting of a controller only for controlling the backup light-emitting diode, thereby increasing the use efficiency of the controller and reducing the cost of components.

需要注意的是,本實施例的控制器310中發光二極體的驅動方式與前述圖2A實施例相類似,在此不重複贅述。此外,本實施例的控制器310與下一級的控制器之間的元件耦接方式及元件損壞補償方式與前述圖1實施例相類似,在此不重複贅述。It should be noted that, the driving manner of the light-emitting diodes in the controller 310 of this embodiment is similar to that of the aforementioned embodiment of FIG. 2A , and details are not repeated here. In addition, the element coupling method and the element damage compensation method between the controller 310 of the present embodiment and the controller of the next stage are similar to those of the aforementioned embodiment in FIG. 1 , and details are not repeated here.

接著,請同步參照圖3及圖4,圖4繪示本發明另一實施例的顯示裝置的電路方塊示意圖。本實施例的顯示裝置400包括多個控制器(例如是控制器410~450)、時序控制器Tcon以及各控制器所對應的多個發光二極體(即發光二極體R42~R43、G42~G43、B42~B43、r41~r42、g41~g42、b41~b42、R51、G51、B51、r44、g44、b44)。時序控制器Tcon耦接至控制器410~450,並且時序控制器Tcon用以提供如圖2A實施例所述的掃描信號、資料信號以及時脈信號至控制器410~450,在此不重複贅述。需要注意的是,為簡化說明,本發明圖4僅繪示五個控制器及相對應的發光二極體,然本發明實際上並未對控制器與其相對應的發光二極體的數量有加以限制,圖4的繪示並不用以限制本發明。Next, please refer to FIG. 3 and FIG. 4 synchronously. FIG. 4 is a schematic block diagram of a circuit of a display device according to another embodiment of the present invention. The display device 400 of this embodiment includes a plurality of controllers (eg, controllers 410 to 450 ), a timing controller Tcon, and a plurality of light-emitting diodes (ie, light-emitting diodes R42 to R43 , G42 ) corresponding to each controller ~G43, B42~B43, r41~r42, g41~g42, b41~b42, R51, G51, B51, r44, g44, b44). The timing controller Tcon is coupled to the controllers 410-450, and the timing controller Tcon is used to provide the scan signal, the data signal and the clock signal to the controllers 410-450 as described in the embodiment of FIG. 2A, which will not be repeated here. . It should be noted that, in order to simplify the description, only five controllers and corresponding light-emitting diodes are shown in FIG. To be limited, the illustration in FIG. 4 is not intended to limit the present invention.

值得一提的是,在本實施例中,控制器410~450可例如是由多個圖3的控制器310所構成,並且位於圖4的顯示裝置400最上側邊的控制器(例如是控制器410)僅包括備援發光二極體(即發光二極體r41、g41、b41),而位於圖4的顯示裝置400最下側邊的控制器(例如是控制器450)則僅包括主要發光二極體(即發光二極體R51、G51、B51)。需要注意的是,各控制器410~450之間的元件耦接方式及元件損壞補償方式皆與前述圖1實施例相類似,在此同樣不重複贅述。It is worth mentioning that, in this embodiment, the controllers 410 to 450 may be constituted by, for example, a plurality of the controllers 310 in FIG. The controller 410) only includes the backup LEDs (ie, the LEDs r41, g41, b41), and the controller (eg, the controller 450) located at the lowermost side of the display device 400 in FIG. 4 only includes the main Light-emitting diodes (ie, light-emitting diodes R51, G51, B51). It should be noted that the element coupling method and the element damage compensation method between the controllers 410 to 450 are similar to the aforementioned embodiment in FIG.

由上述的說明不難得知,在本實施例的顯示裝置400中,當控制器的主要發光二極體的至少其中之一斷路時,可藉由相鄰的控制器的相同發光波長的備援發光二極體來進行補償。舉例來說,當控制器420的主要發光二極體R42、G42、B42中的發光二極體G42、B42斷路時,則可藉由驅動相鄰的控制器410中相同發光波長的發光二極體g41、b41來進行補償。而當控制器430損壞時,發光二極體R43、G43、B43可能因控制器430的損壞而無法發光,則此時可藉由驅動相鄰的控制器420中相同發光波長的發光二極體r42、g42、b42來進行補償,請依此類推。It is not difficult to know from the above description that in the display device 400 of the present embodiment, when at least one of the main light-emitting diodes of the controller is disconnected, the backup of the same light-emitting wavelength of the adjacent controller can be used. Light-emitting diodes are used to compensate. For example, when the main light-emitting diodes R42, G42, B42 of the controller 420 are disconnected, the light-emitting diodes of the same light-emitting wavelength in the adjacent controller 410 can be driven by driving the light-emitting diodes G42, B42 body g41, b41 to compensate. When the controller 430 is damaged, the light-emitting diodes R43, G43, and B43 may not be able to emit light due to the damage of the controller 430. At this time, the light-emitting diodes with the same light-emitting wavelength in the adjacent controllers 420 can be driven. r42, g42, b42 to compensate, and so on.

請參照圖5,圖5繪示本發明一實施例的顯示裝置操作方法的流程圖。首先,在步驟S510中,提供第一電流源,使第一電流源與第一發光二極體串聯耦接,並使第一電流源耦接至第一節點。在步驟S520中,提供第二電流源,使第二電流源與第二發光二極體串聯耦接,並使第二電流源耦接至第一節點。接著,在步驟S530中,當第一發光二極體正常時,使第一電流源提供第一驅動電流以驅動第一發光二極體。於步驟S540中,當第一發光二極體斷路時,第一電流源停止提供第一驅動電流,第二電流源提供第二驅動電流以驅動第二發光二極體。Please refer to FIG. 5 , which is a flowchart illustrating a method for operating a display device according to an embodiment of the present invention. First, in step S510, a first current source is provided, the first current source is coupled in series with the first light emitting diode, and the first current source is coupled to the first node. In step S520, a second current source is provided, the second current source is coupled in series with the second light emitting diode, and the second current source is coupled to the first node. Next, in step S530, when the first light-emitting diode is normal, the first current source is made to provide a first driving current to drive the first light-emitting diode. In step S540, when the first light-emitting diode is disconnected, the first current source stops providing the first driving current, and the second current source provides the second driving current to drive the second light-emitting diode.

需要注意的是,關於步驟S510至步驟S540的實施細節在前述的實施例及實施方式都有詳盡的說明,在此不重複贅述。It should be noted that, the implementation details of steps S510 to S540 have been described in detail in the foregoing embodiments and implementation manners, and will not be repeated here.

綜上所述,本發明的顯示裝置以第一控制器驅動第一發光二極體,並在當第一發光二極體損壞而斷路(或第一控制器損壞)時,透過第二控制器來驅動第二發光二極體,以藉由第二發光二極體來對因第一發光二極體損壞所產生的缺陷,進行亮度補償,藉此達到元件損壞補償功能之目的,並有效提升顯示裝置的可靠度。To sum up, the display device of the present invention uses the first controller to drive the first light-emitting diode, and when the first light-emitting diode is damaged and the circuit is broken (or the first controller is damaged), the second controller is used to drive the first light-emitting diode. To drive the second light-emitting diode, to use the second light-emitting diode to compensate for the defects caused by the damage of the first light-emitting diode, so as to achieve the purpose of component damage compensation and effectively improve the Display device reliability.

雖然本發明已以實施例揭露如上,然其並非用以限定本發明,任何所屬技術領域中具有通常知識者,在不脫離本發明的精神和範圍內,當可作些許的更動與潤飾,故本發明的保護範圍當視後附的申請專利範圍所界定者為準。Although the present invention has been disclosed above by the embodiments, it is not intended to limit the present invention. Anyone with ordinary knowledge in the technical field can make some changes and modifications without departing from the spirit and scope of the present invention. Therefore, The protection scope of the present invention shall be determined by the scope of the appended patent application.

100、200、300、400:顯示裝置 110、120、210、310、410~450:控制器 211a、211b:控制信號產生器 212a、212b:電流控制器 CE1:節點 CLK、Clk_PWM、Clk_data:時脈信號 Data:資料信號 GND:參考接地電壓 Idr1、Idr2、IR1_out、IG1_out、IB1_out、IR2_in、IG2_in、IB2_in:驅動電流 IR1_1 、IG1_1、IB1_1、IR1_2、IG1_2、IB1_2:電流控制信號 LED1、LED2、R1~R2、G1~G2、B1~B2、R31~R32、r31、G31~G32、g31、B31~B32、b31、r41~r42、g41~g42、b41~b42、R42~R43、G42~G43、B42~B43、r44、g44、b44、R51、G51、B51:發光二極體 MR1_1、MG1_1、MB1_1、MR1_2、MG1_2、MB1_2:控制信號 S1~S6:開關 S510~S530:顯示裝置驅動方法的步驟流程 Scan:掃描信號 SOU1、SOU2、SOU21~ SOU 29:電流源 SR:移位暫存器 SR1、SG1、SB1、SR2、SG2、SB2:控制信號 T1~T6:電晶體 TA、TB:時間區間 Tcon:時序控制器 VLED:系統電壓100, 200, 300, 400: Display device 110, 120, 210, 310, 410~450: Controller 211a, 211b: control signal generator 212a, 212b: Current controller CE1: Node CLK, Clk_PWM, Clk_data: clock signal Data: data signal GND: Reference ground voltage Idr1, Idr2, IR1_out, IG1_out, IB1_out, IR2_in, IG2_in, IB2_in: drive current IR1_1, IG1_1, IB1_1, IR1_2, IG1_2, IB1_2: Current control signal LED1, LED2, R1~R2, G1~G2, B1~B2, R31~R32, r31, G31~G32, g31, B31~B32, b31, r41~r42, g41~g42, b41~b42, R42~R43, G42~G43, B42~B43, r44, g44, b44, R51, G51, B51: LEDs MR1_1, MG1_1, MB1_1, MR1_2, MG1_2, MB1_2: Control signals S1~S6: switch S510~S530: the step flow of the display device driving method Scan: scan signal SOU1, SOU2, SOU21~ SOU 29: Current source SR: shift register SR1, SG1, SB1, SR2, SG2, SB2: Control signal T1~T6: Transistor TA, TB: time interval Tcon: Timing Controller VLED: system voltage

圖1繪示本發明一實施例的顯示裝置的電路方塊示意圖。 圖2A繪示本發明另一實施例的顯示裝置的電路方塊示意圖。 圖2B繪示本發明圖2A實施例的顯示裝置的信號波形示意圖。 圖3繪示本發明另一實施例的顯示裝置的電路方塊示意圖。 圖4繪示本發明另一實施例的顯示裝置的電路方塊示意圖。 圖5繪示本發明一實施例的顯示裝置驅動方法的流程圖。FIG. 1 is a schematic block diagram of a circuit of a display device according to an embodiment of the present invention. FIG. 2A is a schematic circuit block diagram of a display device according to another embodiment of the present invention. FIG. 2B is a schematic diagram of signal waveforms of the display device according to the embodiment of FIG. 2A of the present invention. FIG. 3 is a schematic block diagram of a circuit of a display device according to another embodiment of the present invention. FIG. 4 is a schematic circuit block diagram of a display device according to another embodiment of the present invention. FIG. 5 is a flowchart illustrating a method for driving a display device according to an embodiment of the present invention.

300:顯示裝置 300: Display device

310:控制器 310: Controller

R31、R32、G31、G32、B31、B32、r31、g31、b31:發光二極體 R31, R32, G31, G32, B31, B32, r31, g31, b31: LEDs

Claims (8)

一種顯示裝置,包括:一控制器;以及多個第一發光二極體,耦接至該控制器的一第一側邊,分別與多個第二發光二極體交錯配置,該些第一發光二極體分別透過該控制器耦接至該些第二發光二極體,其中,當各該第二發光二極體為正常狀態時,一驅動電流被提供至各該第二發光二極體,並且該控制器同步地汲取該驅動電流,在當各該第二發光二極體斷路時,各該第二發光二極體對應的該驅動電流透過該控制器被傳送至對應的各該第一發光二極體。 A display device, comprising: a controller; and a plurality of first light emitting diodes, coupled to a first side of the controller, and are respectively staggered with a plurality of second light emitting diodes, the first light emitting diodes The light-emitting diodes are respectively coupled to the second light-emitting diodes through the controller, wherein when each of the second light-emitting diodes is in a normal state, a driving current is provided to each of the second light-emitting diodes and the controller synchronously draws the driving current, when each of the second light-emitting diodes is disconnected, the driving current corresponding to each of the second light-emitting diodes is transmitted to the corresponding each of the second light-emitting diodes through the controller the first light emitting diode. 如請求項1所述的顯示裝置,其中該第一控制器更包括:一第一開關,耦接至該些第一發光二極體;一第一控制信號產生器,用以提供一第一控制信號來控制該第一開關被導通或斷開;以及一第一電流控制器,用以提供一第一電流控制信號來控制該驅動電流的電流大小。 The display device of claim 1, wherein the first controller further comprises: a first switch coupled to the first light emitting diodes; a first control signal generator for providing a first a control signal to control the first switch to be turned on or off; and a first current controller to provide a first current control signal to control the current size of the driving current. 如請求項2所述的顯示裝置,其中當各該第二發光二極體斷路時,該第一開關依據該第一控制信號被導通,各該第二發光二極體對應的該驅動電流被傳送至對應的各該第一發光二極體。 The display device of claim 2, wherein when each of the second light-emitting diodes is disconnected, the first switch is turned on according to the first control signal, and the driving current corresponding to each of the second light-emitting diodes is sent to the corresponding first light emitting diodes. 如請求項1所述的顯示裝置,更包括:多個第三發光二極體,耦接至該控制器的一第二側邊,其中該第一側邊與該第二側邊相對。 The display device of claim 1, further comprising: a plurality of third light emitting diodes coupled to a second side of the controller, wherein the first side is opposite to the second side. 如請求項4所述的顯示裝置,其中該些第三發光二極體與該些第一發光二極體交錯配置。 The display device of claim 4, wherein the third light emitting diodes and the first light emitting diodes are arranged in a staggered manner. 如請求項4所述的顯示裝置,其中該第一控制器更包括:一第二開關,耦接至該些第三發光二極體;以及一第二控制信號產生器,用以提供一第二控制信號來控制該第二開關被導通或斷開。 The display device of claim 4, wherein the first controller further comprises: a second switch coupled to the third light emitting diodes; and a second control signal generator for providing a first Two control signals to control the second switch to be turned on or off. 如請求項6所述的顯示裝置,其中當該些第三發光二極體正常時,該第二開關依據該第二控制信號被導通,以使該控制器驅動該些第三發光二極體。 The display device of claim 6, wherein when the third light-emitting diodes are normal, the second switch is turned on according to the second control signal, so that the controller drives the third light-emitting diodes . 如請求項1所述的顯示裝置,其中該些第一發光二極體與該些第二發光二極體交錯配置。The display device of claim 1, wherein the first light emitting diodes and the second light emitting diodes are arranged in a staggered manner.
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