TWI425481B - Light emitting diode driving apparatus - Google Patents
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本發明是有關於一種發光二極體的驅動電路,且特別是有關於一種可利用資料信號與栓鎖信號或資料信號與致能信號的接腳來進行模式切換的驅動電路。The present invention relates to a driving circuit for a light emitting diode, and more particularly to a driving circuit capable of mode switching by using a data signal and a latch signal or a pin of a data signal and an enable signal.
發光二極體(Light Emitting Diode,LED)的體積小、省電且耐用,而且隨著製程的成熟,價格下降,近來以發光二極體做為光源之產品越來越普遍。此外,發光二極體工作電壓低、能主動發光且有一定亮度,亮度可用電壓或電流調節,同時具備耐衝擊、抗振動、壽命長之特點,是以,發光二極體在各種終端設備中被廣泛使用,從汽車前照燈、交通信號燈、文字顯示器、看板及大螢幕視頻顯示器,到普通及建築照明和LCD背光等領域。Light Emitting Diode (LED) is small, power-saving and durable, and as the process matures, the price drops. Recently, products using light-emitting diodes as light sources are becoming more and more popular. In addition, the light-emitting diode has a low working voltage, can actively emit light and has a certain brightness, and the brightness can be adjusted by voltage or current, and has the characteristics of impact resistance, vibration resistance and long life. Therefore, the light-emitting diode is in various terminal devices. Widely used, from automotive headlights, traffic lights, text displays, billboards and large screen video displays, to general and architectural lighting and LCD backlighting.
傳統技術中,發光二極體的驅動裝置,為了能夠彈性地改變操作設定,例如栓鎖信號控制、灰階數目設定、發光元件整體亮度控制(Global Brightness Control)、單點色階調整(Dot Correction)、致能信號控制(Enable)、影像更新頻率設定、省電模式或錯誤偵測模式等功能。驅動裝置會具有多組控制信號腳位,以便讓使用者依據不同的系統運用做出調整。In the conventional technology, the driving device of the light emitting diode is configured to elastically change operation settings, such as latch signal control, gray scale setting, global brightness control (Global Brightness Control), and single point color adjustment (Dot Correction). ), enable signal control (Enable), image update frequency setting, power saving mode or error detection mode. The drive unit will have multiple sets of control signal pins to allow the user to make adjustments based on different system usage.
然而,過多的接腳會增加晶片封裝成本與印刷電路板的線路複雜度,增加產品的開發時間與故障率。However, too many pins can increase the cost of the chip package and the circuit complexity of the printed circuit board, increasing product development time and failure rate.
本發明提供一種發光二極體的驅動裝置,可直接利用資料信號與栓鎖信號的波形組成來切換驅動裝置的工作模式,藉此降低驅動裝置的接腳數,讓傳遞資料信號與栓鎖信號的接腳具有模式切換的功能。The invention provides a driving device for a light-emitting diode, which can directly switch the working mode of the driving device by using the waveform composition of the data signal and the latching signal, thereby reducing the number of pins of the driving device, and transmitting the data signal and the latching signal. The pin has a function of mode switching.
本發明提供一種發光二極體的驅動裝置,可直接利用資料信號與致能信號的波形組成來切換驅動裝置的工作模式,藉此降低驅動裝置的接腳數,讓傳遞資料信號與致能信號的接腳具有模式切換的功能。The invention provides a driving device for a light emitting diode, which can directly switch the working mode of the driving device by using the waveform composition of the data signal and the enabling signal, thereby reducing the number of pins of the driving device and allowing the data signal and the enabling signal to be transmitted. The pin has a function of mode switching.
承上述,本發明提出一種發光二極體的驅動裝置,包括一移位暫存單元、一栓鎖單元、一驅動單元以及一模式切換單元。移位暫存單元經由一第一接腳接收一資料信號,栓鎖單元耦接於移位暫存單元並經由一第二接腳接收一栓鎖信號。驅動單元耦接於栓鎖單元用以驅動顯示元件,模式切換單元耦接於第一接腳與第二接腳,根據資料信號與栓鎖信號切換驅動裝置的工作模式。In view of the above, the present invention provides a driving device for a light emitting diode, comprising a shift register unit, a latch unit, a driving unit and a mode switching unit. The shift register unit receives a data signal via a first pin, and the latch unit is coupled to the shift register unit and receives a latch signal via a second pin. The driving unit is coupled to the latching unit for driving the display component, and the mode switching unit is coupled to the first pin and the second pin, and switches the working mode of the driving device according to the data signal and the latching signal.
在本發明一實施例中,其中當栓鎖信號處於一特定準位時,模式切換單元根據資料信號在栓鎖信號處於上述特定準位的期間中所產生的脈衝數切換驅動裝置的工作模式。In an embodiment of the invention, when the latch signal is at a certain level, the mode switching unit switches the operating mode of the driving device according to the number of pulses generated by the data signal during the period in which the latch signal is at the specific level.
在本發明一實施例中,其中驅動裝置的工作模式包括一灰階數目設定、一顯示元件點亮時間控制、一顯示元件整體亮度控制、一單點色階調整、一驅動輸出信號大小控制、一致能信號控制、一影像更新參考頻率設定、一驅動輸出信號反相設定、一驅動裝置狀態偵測、一顯示元件狀態偵測、一省電模式或一錯誤偵測模式。In an embodiment of the invention, the operating mode of the driving device includes a gray level setting, a display element lighting time control, a display element overall brightness control, a single point color level adjustment, a driving output signal size control, Consistent signal control, an image update reference frequency setting, a drive output signal inversion setting, a drive status detection, a display element status detection, a power saving mode, or an error detection mode.
在本發明一實施例中,其中上述驅動裝置更包括一第三接腳,移位暫存單元經由第三接腳接收一時脈信號。其中當模式切換單元根據資料信號與栓鎖信號切換驅動裝置的工作模式時,時脈信號失能。In an embodiment of the invention, the driving device further includes a third pin, and the shift register unit receives a clock signal via the third pin. When the mode switching unit switches the operating mode of the driving device according to the data signal and the latching signal, the clock signal is disabled.
在本發明一實施例中,上述驅動裝置更包括一多工器,具有兩個輸入端,分別耦接於移位暫存單元的輸出與傳遞資料信號的第一接腳。多工器的一輸出端耦接於一第四接腳,該多工器的一選擇端耦接於該模式切換單元或栓鎖信號。In an embodiment of the invention, the driving device further includes a multiplexer having two input ends coupled to the output pin of the shift register unit and the first pin for transmitting the data signal. An output end of the multiplexer is coupled to a fourth pin, and a select end of the multiplexer is coupled to the mode switching unit or the latch signal.
本發明另提出一種發光二極體的驅動裝置,包括一移位暫存單元、一栓鎖單元、一驅動單元以及一模式切換單元。移位暫存單元經由一第一接腳接收一資料信號,栓鎖單元耦接於移位暫存單元用以栓鎖資料。驅動單元耦接於栓鎖單元並經由一第五接腳接收一致能信號,模式切換單元耦接於第一接腳與第五接腳,根據資料信號與致能信號切換驅動裝置的工作模式。The invention further provides a driving device for a light emitting diode, comprising a shift temporary storage unit, a latching unit, a driving unit and a mode switching unit. The shift register unit receives a data signal via a first pin, and the latch unit is coupled to the shift register unit for latching data. The driving unit is coupled to the latching unit and receives the unifying signal via a fifth pin. The mode switching unit is coupled to the first pin and the fifth pin, and switches the operating mode of the driving device according to the data signal and the enabling signal.
基於上述,本發明藉由資料信號與特定信號(栓鎖信號或致能信號)的組合即可進行工作模式切換,讓驅動裝置進入不同的工作模式,例如省電模式或錯誤偵測模式。藉此,可減少驅動裝置的接腳數目以降低製程成本與設計複雜度。Based on the above, the present invention can perform the operation mode switching by combining the data signal with the specific signal (the latch signal or the enable signal), and the driving device can enter different working modes, such as the power saving mode or the error detection mode. Thereby, the number of pins of the driving device can be reduced to reduce the process cost and design complexity.
為讓本發明之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。The above described features and advantages of the present invention will be more apparent from the following description.
請參照圖1,圖1繪示本發明第一實施例之發光二極體的驅動裝置,驅動裝置100包括移位暫存單元110、栓鎖單元120、驅動單元130、模式切換單元140與多工器150。移位暫存單元110經由一第一接腳P1接收一資料信號DAT並經由第三接腳P3接收時脈信號CLK。栓鎖單元120則耦接於移位暫存單元110並經由第二接腳P2接收一栓鎖信號LAT。驅動單元130耦接於栓鎖單元120並經由第五接腳P5接收一致能信號EN。模式切換單元140耦接於第一接腳P1與第二接腳P2以接收資料信號DAT與栓鎖信號LAT。多工器150的輸入端分別耦接於移位暫存單元110的輸出與第一接腳P1所接收的資料信號DAT,多工器150的輸出端耦接於第四接腳P4,多工器150的選擇端則耦接於模式切換單元140,可受控於模式切換單元140或直接受控於栓鎖信號LAT。Referring to FIG. 1 , FIG. 1 illustrates a driving device for a light emitting diode according to a first embodiment of the present invention. The driving device 100 includes a shift register unit 110 , a latch unit 120 , a driving unit 130 , and a mode switching unit 140 . Worker 150. The shift register unit 110 receives a data signal DAT via a first pin P1 and receives a clock signal CLK via a third pin P3. The latch unit 120 is coupled to the shift register unit 110 and receives a latch signal LAT via the second pin P2. The driving unit 130 is coupled to the latch unit 120 and receives the coincidence signal EN via the fifth pin P5. The mode switching unit 140 is coupled to the first pin P1 and the second pin P2 to receive the data signal DAT and the latch signal LAT. The input end of the multiplexer 150 is coupled to the output signal of the shift register unit 110 and the data signal DAT received by the first pin P1, and the output end of the multiplexer 150 is coupled to the fourth pin P4. The selection end of the device 150 is coupled to the mode switching unit 140, and can be controlled by the mode switching unit 140 or directly controlled by the latch signal LAT.
移位暫存單元110可根據資料時脈信號CLK來儲存資料信號DAT,栓鎖單元120則根據栓鎖信號LAT來栓鎖移位暫存單元110所輸出的資料。驅動單元130根據致能信號EN來決定是否輸出驅動信號以驅動所連接的發光二極體。上述資料信號DAT、栓鎖信號LAT與時脈信號CLK分別經由不同的接腳傳送至驅動裝置100。驅動裝置100例如為一驅動晶片,其第四接腳P4為驅動裝置100的輸出接腳,可用來傳遞資料信號DAT至下一級的驅動晶片。這樣可以串接多個驅動裝置來驅動整個發光二極體顯示器。The shift register unit 110 can store the data signal DAT according to the data clock signal CLK, and the latch unit 120 latches the data output by the shift register unit 110 according to the latch signal LAT. The driving unit 130 determines whether to output a driving signal to drive the connected light emitting diode according to the enable signal EN. The data signal DAT, the latch signal LAT and the clock signal CLK are respectively transmitted to the driving device 100 via different pins. The driving device 100 is, for example, a driving chip, and the fourth pin P4 is an output pin of the driving device 100, and can be used to transmit the data signal DAT to the driving chip of the next stage. This allows multiple drive units to be cascaded to drive the entire LED display.
模式切換單元140耦接於第一接腳P1與第二接腳P2以接收資料信號DAT與栓鎖信號LAT,並藉由資料信號DAT與栓鎖信號LAT的波形組合來進行驅動裝置100的工作模式切換。驅動裝置100的工作模式例如為一灰階數目設定、一顯示元件點亮時間控制、一顯示元件整體亮度控制、一單點色階調整、一驅動輸出信號大小控制、一致能信號控制、一影像更新參考頻率設定、一驅動輸出信號反相設定、一驅動裝置狀態偵測、一顯示元件狀態偵測、一省電模式或一錯誤偵測模式等。The mode switching unit 140 is coupled to the first pin P1 and the second pin P2 to receive the data signal DAT and the latch signal LAT, and performs the operation of the driving device 100 by combining the waveform of the data signal DAT and the latch signal LAT. Mode switching. The working mode of the driving device 100 is, for example, a gray scale number setting, a display component lighting time control, a display component overall brightness control, a single dot color gradation adjustment, a driving output signal size control, a uniform energy signal control, and an image. The reference frequency setting, a driving output signal inversion setting, a driving device state detection, a display component state detection, a power saving mode or an error detection mode are updated.
依照不同的設計需求,栓鎖單元120可被栓鎖信號LAT的上升緣、下降緣、高準位或低準位觸發以栓鎖資料。當栓鎖單元120是屬於上升緣或下降緣觸發時,模式切換單元140可利用栓鎖信號LAT的高準位或低準位來進行模式切換。以高準位為例,當栓鎖信號LAT處於此一特定準位(即高準位)時,模式切換單元140會根據資料信號DAT在栓鎖信號LAT處於此特定準位的期間中所產生的脈衝數或其波形組合來切換驅動裝置100的工作模式。反之,也可以將特定準位設定為低準位,當模式切換單元140偵測到栓鎖信號LAT處於低準位時,便會偵測資料信號DAT的脈衝數或其波形組合,然後據以調整驅動裝置100的工作模式。因此,驅動裝置100不需要額外設置模式切換的接腳來進行工作模式切換,使用者可直接經由第一接腳P1與第二接腳P2來進行工作模式切換。According to different design requirements, the latch unit 120 can be triggered by the rising edge, the falling edge, the high level or the low level of the latching signal LAT to latch the data. When the latch unit 120 is triggered by a rising edge or a falling edge, the mode switching unit 140 may perform mode switching by using a high level or a low level of the latch signal LAT. Taking the high level as an example, when the latch signal LAT is at the specific level (ie, the high level), the mode switching unit 140 generates the signal according to the data signal DAT during the period in which the latch signal LAT is at the specific level. The number of pulses or a combination of their waveforms switches the mode of operation of the drive unit 100. Conversely, the specific level can also be set to a low level. When the mode switching unit 140 detects that the latch signal LAT is at a low level, it will detect the pulse number of the data signal DAT or its waveform combination, and then The operating mode of the drive unit 100 is adjusted. Therefore, the driving device 100 does not need to additionally set the mode switching pin to perform the working mode switching, and the user can directly perform the working mode switching via the first pin P1 and the second pin P2.
同理,當栓鎖單元120是屬於高準位或低準位觸發時,模式切換單元140可利用栓鎖信號LAT中未用於栓鎖的準位來進行模式切換。例如,若栓鎖單元120是屬於高準位觸發時,模式切換單元140可利用栓鎖信號LAT的低準位與資料信號DAT的波形組合來決定驅動裝置100的工作模式。換言之,當模式切換單元140偵測到栓鎖信號LAT處於模式切換的特定準位時,便會偵測資料信號DAT的波形,然後根據其波形組合切換驅動裝置100的模式。Similarly, when the latch unit 120 is in the high level or low level trigger, the mode switching unit 140 can perform mode switching by using the level of the latch signal LAT that is not used for latching. For example, if the latch unit 120 is a high level trigger, the mode switching unit 140 may determine the operating mode of the driving apparatus 100 by using a combination of the low level of the latch signal LAT and the waveform of the data signal DAT. In other words, when the mode switching unit 140 detects that the latch signal LAT is at a certain level of mode switching, the waveform of the data signal DAT is detected, and then the mode of the driving device 100 is switched according to the waveform combination.
多工器150具有將資料信號DAT傳遞至下一級的功能。多工器150可受控於模式切換單元140或直接受控於栓鎖信號LAT,當模式切換單元140在進行模式切換的偵測時,會將多工器150的通道切換至資料信號DAT,讓下一級的驅動裝置也可以接收到資料信號DAT以同步進行切換。當驅動裝置100中的移位暫存單元110正在接收資料時,模式切換單元140會將多工器150的通道切換至移位暫存單元110的輸出,讓下一級的驅動裝置可以接收到移位暫存單元110的輸出資料。The multiplexer 150 has a function of transferring the material signal DAT to the next stage. The multiplexer 150 can be controlled by the mode switching unit 140 or directly controlled by the latch signal LAT. When the mode switching unit 140 performs the mode switching detection, the channel of the multiplexer 150 is switched to the data signal DAT. The drive unit of the next stage can also receive the data signal DAT to switch synchronously. When the shift register unit 110 in the driving device 100 is receiving data, the mode switching unit 140 switches the channel of the multiplexer 150 to the output of the shift register unit 110 so that the driving device of the next stage can receive the shift. The output data of the bit buffer unit 110.
此外,值得注意的是,由於模式切換單元140是利用資料信號DAT與栓鎖信號LAT來偵測使用者所需設定的工作模式。因此,系統可在欲進行模式切換時,停止輸入時脈信號CLK(也就是使時脈信號CLK失能),這樣可避免移位暫存單元110所接收的資料錯誤。另外,在本實施例中,圖1中的第五接腳P5並非必要,驅動單元130也可以透過其他方式取得致能信號EN,例如根據栓鎖信號LAT來產生或是由驅動裝置100的內部電路所產生,本實施例並不受限。In addition, it is worth noting that the mode switching unit 140 uses the data signal DAT and the latch signal LAT to detect the operating mode that the user needs to set. Therefore, the system can stop inputting the clock signal CLK (that is, disable the clock signal CLK) when the mode switching is to be performed, so that the data error received by the shift register unit 110 can be avoided. In addition, in the present embodiment, the fifth pin P5 in FIG. 1 is not necessary, and the driving unit 130 can also obtain the enable signal EN by other means, for example, according to the latch signal LAT or by the inside of the driving device 100. This embodiment is not limited by the circuit.
圖2繪示本發明第二實施例之發光二極體的驅動裝置,驅動裝置200包括移位暫存單元110、栓鎖單元120、驅動單元130、模式切換單元140與多工器150。移位暫存單元110經由一第一接腳P1接收一資料信號DAT並經由第三接腳P3接收時脈信號CLK。栓鎖單元120則耦接於移位暫存單元110接收一栓鎖信號以栓鎖資料。驅動單元130耦接於栓鎖單元120並經由第五接腳P5接收致能信號EN。圖2與圖1主要差別在於模式切換單元140耦接於第一接腳P1與第五接腳P5以接收資料信號DAT與致能信號EN。2 is a driving device of a light emitting diode according to a second embodiment of the present invention. The driving device 200 includes a shift register unit 110, a latch unit 120, a driving unit 130, a mode switching unit 140, and a multiplexer 150. The shift register unit 110 receives a data signal DAT via a first pin P1 and receives a clock signal CLK via a third pin P3. The latch unit 120 is coupled to the shift register unit 110 to receive a latch signal to latch the data. The driving unit 130 is coupled to the latch unit 120 and receives the enable signal EN via the fifth pin P5. The main difference between FIG. 2 and FIG. 1 is that the mode switching unit 140 is coupled to the first pin P1 and the fifth pin P5 to receive the data signal DAT and the enable signal EN.
在本實施例中,以致能信號EN取代栓鎖信號LAT,模式切換單元140可根據致能信號EN的資料信號DATA的波形組合切換驅動裝置200的工作模式。由於致能信號EN一般是用於致能驅動單元130的輸出與否以調整發光二極體的灰階度。因此,若致能信號EN是以高準位來致能驅動單元130,則當致能信號EN處於低準位時便不會影響到驅動單元130的正常作動。模式切換單元140可將致能信號EN的低準位設定為特定準位,用來配合資料信號DAT以產生模式切換的信號來進行工作模式的切換。反之,模式切換單元140也可以將致能信號EN的高準位設定為特定準位,並配合資料信號DAT來達成工作模式切換的效果。In this embodiment, the enable signal EN is substituted for the latch signal LAT, and the mode switching unit 140 can switch the operating mode of the driving device 200 according to the waveform combination of the data signal DATA of the enable signal EN. Since the enable signal EN is generally used to enable the output of the driving unit 130 to adjust the gray scale of the light emitting diode. Therefore, if the enable signal EN is enabled at the high level to drive the unit 130, the normal operation of the driving unit 130 will not be affected when the enable signal EN is at the low level. The mode switching unit 140 can set the low level of the enable signal EN to a specific level for matching the data signal DAT to generate a mode switching signal for switching the working mode. On the contrary, the mode switching unit 140 can also set the high level of the enable signal EN to a specific level, and cooperate with the data signal DAT to achieve the effect of the operation mode switching.
由上述可知,第五接腳P5與第一接腳P1具有多重功能,不僅可用來傳遞正常的致能信號EN與資料信號DAT,也可以透過其波形組合來進行工作模式切換。藉此,可降低驅動裝置200的接腳數目以降低設計複雜度與製程成本。此外,上述圖2中的其餘元件與作動與圖1相同,在此不在累述。另外,在本實施例中,圖2中的第二接腳P2並非必要,栓鎖單元120也可以透過其他方式取得栓鎖信號LAT,例如根據致能信號EN來產生或是由驅動裝置200的內部電路所產生,本實施例並不受限。It can be seen from the above that the fifth pin P5 and the first pin P1 have multiple functions, and can be used not only to transmit the normal enable signal EN and the data signal DAT, but also to switch the operation mode through the waveform combination. Thereby, the number of pins of the driving device 200 can be reduced to reduce design complexity and process cost. In addition, the remaining components and operations in FIG. 2 above are the same as those in FIG. 1, and are not described here. In addition, in the present embodiment, the second pin P2 in FIG. 2 is not necessary, and the latch unit 120 can also obtain the latch signal LAT by other means, for example, according to the enable signal EN or by the driving device 200. The internal circuit is produced, and the embodiment is not limited.
接下來,進一步說明栓鎖信號LAT或致能信號EN與資料信號DAT的波形組合。請參照圖3,圖3繪示栓鎖信號LAT或致能信號EN與資料信號DAT的波形組合示意圖。首先,以栓鎖信號LAT的高準位作為偵測模式切換用的特定準位為例作為說明。請參照圖3(a)與圖3(b),其分別繪示兩種不同的波形組合,在圖3(a)中,資料信號DAT在栓鎖信號LAT處於高電位的期間T1中產生三個脈衝。在圖3(b)中,資料信號DAT在期間T1中產生四個脈衝。因此,圖3(a)與圖3(b)的波形組合可對應於兩種工作模式,例如省電模式與錯誤偵測模式。同理,致能信號EN與資料信號DAT也能產生相同的波形組合以進行工作模式切換。Next, the waveform combination of the latch signal LAT or the enable signal EN and the data signal DAT is further explained. Please refer to FIG. 3 , which illustrates a waveform combination of the latch signal LAT or the enable signal EN and the data signal DAT. First, the high level of the latch signal LAT is taken as a specific level for detecting the mode switching as an example. Referring to FIG. 3(a) and FIG. 3(b), respectively, two different waveform combinations are shown. In FIG. 3(a), the data signal DAT is generated in the period T1 during which the latch signal LAT is at a high potential. Pulses. In Fig. 3(b), the data signal DAT generates four pulses in the period T1. Therefore, the waveform combination of FIG. 3(a) and FIG. 3(b) can correspond to two operating modes, such as a power saving mode and an error detection mode. Similarly, the enable signal EN and the data signal DAT can also generate the same waveform combination for operating mode switching.
圖3(c)與圖3(d)則是以栓鎖信號LAT的低準位作為偵測模式切換用的特定準位為例作為說明,在圖3(c),資料信號DAT在期間T2中產生三個脈衝,在圖3(d),資料信號DAT在期間T2中產生四個脈衝。因此,圖3(c)與圖3(d)的波形組合可對應於兩種工作模式,例如省電模式與錯誤偵測模式。同理,致能信號EN與資料信號DAT也能產生相同的波形組合以進行工作模式切換,其信號波形如同圖3(a)~圖3(b)所示。3(c) and FIG. 3(d) show the low level of the latch signal LAT as a specific level for detecting mode switching. For example, in FIG. 3(c), the data signal DAT is in the period T2. Three pulses are generated in the middle, and in Fig. 3(d), the data signal DAT generates four pulses in the period T2. Therefore, the waveform combination of FIG. 3(c) and FIG. 3(d) can correspond to two operating modes, such as a power saving mode and an error detection mode. Similarly, the enable signal EN and the data signal DAT can also generate the same waveform combination for operation mode switching, and the signal waveform is as shown in FIG. 3(a) to FIG. 3(b).
在本發明另一實施例中,栓鎖信號LAT與資料信號DAT的波形組合或致能信號EN與資料信號DAT的波形組合並不限制於圖3。本技術領域具有通常知識者,在經由本發明之揭露後應可輕易推知其他波形組合,在此不加累述。此外,值得注意的是,由於本發明是使用傳遞資料信號DAT的第一接腳P1與另一接腳(P2或P5)來進行工作模式切換,因此不會有資料錯誤的情況發生。In another embodiment of the present invention, the waveform combination of the latch signal LAT and the data signal DAT or the waveform combination of the enable signal EN and the data signal DAT is not limited to FIG. Those skilled in the art will be able to easily infer other waveform combinations after the disclosure of the present invention, and will not be described herein. In addition, it is worth noting that since the present invention uses the first pin P1 of the transfer data signal DAT and the other pin (P2 or P5) to perform the operation mode switching, no data error occurs.
綜上所述,本發明使用傳遞資料信號與栓鎖信號的接腳組合或傳遞資料信號與致能信號的接腳組合來進行工作模式的切換,藉此可減少發光二極體驅動裝置的接腳數目,讓驅動裝置的設計成本與複雜度下降。In summary, the present invention uses a pin combination of a transfer data signal and a latch signal or a pin combination of a data signal and an enable signal to switch the operation mode, thereby reducing the connection of the LED driver. The number of feet reduces the design cost and complexity of the drive unit.
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,在不脫離本發明之精神和範圍內,當可作些許之更動與潤飾,故本發明之保護範圍當視後附之申請專利範圍所界定者為準。Although the present invention has been disclosed in the above embodiments, it is not intended to limit the invention, and any one of ordinary skill in the art can make some modifications and refinements without departing from the spirit and scope of the invention. The scope of the invention is defined by the scope of the appended claims.
100、200...驅動裝置100, 200. . . Drive unit
110...移位暫存單元110. . . Shift register unit
120...栓鎖單元120. . . Latch unit
130...驅動單元130. . . Drive unit
140...模式切換單元140. . . Mode switching unit
150...多工器150. . . Multiplexer
P1~P5...第一至第五接腳P1~P5. . . First to fifth pins
DAT...資料信號DAT. . . Data signal
CLK...時脈信號CLK. . . Clock signal
LAT...栓鎖信號LAT. . . Latch signal
EN...致能信號EN. . . Enable signal
T1、T2...特定準位的期間T1, T2. . . Period of specific level
圖1繪示本發明第一實施例之發光二極體的驅動裝置。1 is a diagram showing a driving device of a light emitting diode according to a first embodiment of the present invention.
圖2繪示本發明第二實施例之發光二極體的驅動裝置。2 is a diagram showing a driving device of a light emitting diode according to a second embodiment of the present invention.
圖3繪示栓鎖信號LAT或致能信號EN與資料信號DAT的波形組合示意圖。FIG. 3 is a schematic diagram showing the waveform combination of the latch signal LAT or the enable signal EN and the data signal DAT.
100...驅動裝置100. . . Drive unit
110...移位暫存單元110. . . Shift register unit
120...栓鎖單元120. . . Latch unit
130...驅動單元130. . . Drive unit
140...模式切換單元140. . . Mode switching unit
150...多工器150. . . Multiplexer
P1~P5...接腳P1~P5. . . Pin
DAT...資料信號DAT. . . Data signal
CLK...時脈信號CLK. . . Clock signal
LAT...栓鎖信號LAT. . . Latch signal
EN...致能信號EN. . . Enable signal
Claims (11)
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