JP6473569B2 - LED drive circuit - Google Patents

LED drive circuit Download PDF

Info

Publication number
JP6473569B2
JP6473569B2 JP2014041819A JP2014041819A JP6473569B2 JP 6473569 B2 JP6473569 B2 JP 6473569B2 JP 2014041819 A JP2014041819 A JP 2014041819A JP 2014041819 A JP2014041819 A JP 2014041819A JP 6473569 B2 JP6473569 B2 JP 6473569B2
Authority
JP
Japan
Prior art keywords
circuit
voltage
led
switch
drive
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
JP2014041819A
Other languages
Japanese (ja)
Other versions
JP2015167213A (en
Inventor
藤原 宗
宗 藤原
堅次 武渕
堅次 武渕
要典 境
要典 境
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
New Japan Radio Co Ltd
Original Assignee
New Japan Radio Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by New Japan Radio Co Ltd filed Critical New Japan Radio Co Ltd
Priority to JP2014041819A priority Critical patent/JP6473569B2/en
Publication of JP2015167213A publication Critical patent/JP2015167213A/en
Application granted granted Critical
Publication of JP6473569B2 publication Critical patent/JP6473569B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Description

本発明はLED駆動回路に関する。   The present invention relates to an LED driving circuit.

図9に従来のLED駆動回路を示す。51は電圧入力端子、52,53は複数個のLEDを直列接続したLED群、54はPWM信号が入力するPWM端子、55は駆動回路である。   FIG. 9 shows a conventional LED driving circuit. Reference numeral 51 is a voltage input terminal, 52 and 53 are LED groups in which a plurality of LEDs are connected in series, 54 is a PWM terminal to which a PWM signal is input, and 55 is a drive circuit.

電圧入力端子51の電圧VINが低電圧のときは、LED群52,53を並列接続した図9(a)に示す回路が使用され、電圧入力端子51の電圧VINが高電圧のときは、LED群52,53を直列接続した図9(b)に示す回路が使用されている。   When the voltage VIN of the voltage input terminal 51 is low, the circuit shown in FIG. 9A in which the LED groups 52 and 53 are connected in parallel is used. When the voltage VIN of the voltage input terminal 51 is high, the LED A circuit shown in FIG. 9B in which the groups 52 and 53 are connected in series is used.

しかし、この手法では2種類の回路が必要となる。あるいは配線が別になり、同一基板上で構成する場合にLED群が4個必要になるなど高価な部品の増大や基板面積の増大を招く。   However, this method requires two types of circuits. Or when wiring is different and it is configured on the same substrate, four LED groups are required, leading to an increase in expensive components and an increase in substrate area.

一方、特許文献1には、図10に示すように、LED群63,64のLEDの順方向電圧Vfが小さいときは、端子65を抵抗により接続して、端子61、62の間において、LED群63,64を直列接続し、LED群63,64のLEDの順方向電圧Vfが大きいときは、端子66,67をそれぞれ抵抗により接続して、LED群63,64を並列接続する構成が記載されている。   On the other hand, in Patent Document 1, as shown in FIG. 10, when the forward voltage Vf of the LEDs of the LED groups 63 and 64 is small, the terminal 65 is connected by a resistor, and the LED is connected between the terminals 61 and 62. A configuration is described in which the groups 63 and 64 are connected in series, and when the forward voltage Vf of the LEDs of the LED groups 63 and 64 is large, the terminals 66 and 67 are connected by resistors, and the LED groups 63 and 64 are connected in parallel. Has been.

しかし、これは使用するLEDの順方向電圧Vfの大きさに応じて、LED群63,64の直列接続と並列接続の一方を選択するものであり、ここには入力する電圧の変動に対してどのように接続するかについては明確でない。また、直列接続時のLED群63,64の各LEDの順方向電圧Vfを端子61の側から決めるのか端子62の側から決めるのかが明らかでない。さらに、端子65をトランジスタで接続する場合には、そのバイアス設定をどのようにして決めるのかが明らかでない。よって、輝度設計ができないなどの問題がある。   However, this selects one of the series connection and the parallel connection of the LED groups 63 and 64 according to the magnitude of the forward voltage Vf of the LED to be used. It is not clear how to connect. Further, it is not clear whether the forward voltage Vf of each LED of the LED groups 63 and 64 in series connection is determined from the terminal 61 side or from the terminal 62 side. Further, when the terminal 65 is connected by a transistor, it is not clear how to determine the bias setting. Therefore, there is a problem that luminance design cannot be performed.

また、特許文献2には、電圧入力端子と内部の電圧生成部との間に照明部を設けたビデオカメラ装置において、照明部を複数のLEDで構成し、電圧入力端子の電圧に応じてそのLEDの直列/並列接続を切り替えて、電圧生成部に入力する電圧が所定の範囲内となるようにする構成が記載されている。   Further, in Patent Document 2, in a video camera device in which an illumination unit is provided between a voltage input terminal and an internal voltage generation unit, the illumination unit is configured by a plurality of LEDs, and the illumination unit is configured according to the voltage of the voltage input terminal. A configuration is described in which the series / parallel connection of LEDs is switched so that the voltage input to the voltage generator is within a predetermined range.

しかし、この照明部は、照明の機能と同時にLEDの直列/並列切替による電圧調整を実現するものであり、LEDの輝度設定などについては特別の記載がない。   However, this illumination unit realizes voltage adjustment by switching LEDs in series / parallel at the same time as the illumination function, and there is no special description about LED brightness setting.

特開2009−059636号公報JP 2009-059636 A 特開2012−053144号公報JP 2012-053144 A

本発明の目的は、入力電圧に応じて2個のLED群の直列/並列の切り替えを自動化でき、また直列/並列のいずれであっても同じ輝度を設定できるようにしたLED駆動回路を提供することである。   SUMMARY OF THE INVENTION An object of the present invention is to provide an LED drive circuit that can automate the series / parallel switching of two LED groups in accordance with the input voltage, and can set the same brightness in either series / parallel. That is.

上記目的を達成するために、請求項1にかかる発明は、n個(nは1以上の整数)のLEDの直列回路からなり高電圧側が電圧入力端子に接続される第1のLED群と、第1の駆動電流を供給する第1の駆動部と、前記第1のLED群の低電圧側と前記第1の駆動部を接続する第1のスイッチ回路と、n個のLEDの直列回路からなる第2のLED群と、前記第2のLED群の高電圧側と前記電圧入力端子を接続する第2のスイッチ回路と、前記第1の駆動電流と同じ駆動電流を供給する第2の駆動部と、前記第2のLED群の低電圧側と前記第2の駆動部を接続する第3のスイッチ回路と、前記第1のLED群の低電圧側と前記第2のLEDの高電圧側を接続する第4のスイッチ回路と、前記電圧入力端子の電圧に応じて前記第1、第2、第3および第4のスイッチ回路をオン/オフする第1の制御回路とを備え、前記第1の制御回路は、前記電圧入力端子の電圧が低いときは、前記第1、第2および第3のスイッチ回路をオンし前記第4のスイッチ回路をオフして、前記第1のLED群と前記第1の駆動部の直列接続回路と前記第2のLED群と前記第2の駆動部の直列接続回路を前記電圧入力端子に対して並列接続し、前記電圧入力端子の電圧が高いときは、前記第1および第2のスイッチ回路をオフし前記第3および第4のスイッチ回路をオンして、前記第1および第2のLED群と前記第2の駆動部とを直列接続した回路を前記電圧入力端子に接続するよう動作し、前記第1のスイッチ回路は、コレクタが前記第1のLED群の低電圧側に接続され、エミッタが前記第1の駆動部に接続され、オンのときにベースに定電圧が印加される第1のNPNトランジスタで構成され、前記第3のスイッチ回路は、コレクタが前記第2のLED群の低電圧側に接続され、エミッタが前記第2の駆動部に接続され、オンのときにベースに定電圧が印加される第2のNPNトランジスタで構成されている、ことを特徴とする。
In order to achieve the above object, the invention according to claim 1 includes a first LED group including a series circuit of n (n is an integer of 1 or more) LEDs, and a high voltage side connected to a voltage input terminal; A first drive unit that supplies a first drive current, a first switch circuit that connects the low voltage side of the first LED group and the first drive unit, and a series circuit of n LEDs A second LED group, a second switch circuit connecting the high voltage side of the second LED group and the voltage input terminal, and a second drive for supplying the same drive current as the first drive current , A third switch circuit connecting the low voltage side of the second LED group and the second drive unit, a low voltage side of the first LED group, and a high voltage of the second LED group A fourth switch circuit for connecting the first side and the second input circuit according to the voltage of the voltage input terminal. A first control circuit that turns on and off the third and fourth switch circuits, and the first control circuit is configured to output the first, second, and third signals when the voltage at the voltage input terminal is low. The switch circuit is turned on, the fourth switch circuit is turned off, the series connection circuit of the first LED group and the first driving unit, the series of the second LED group and the second driving unit. A connection circuit is connected in parallel to the voltage input terminal, and when the voltage at the voltage input terminal is high, the first and second switch circuits are turned off, and the third and fourth switch circuits are turned on. The first and second LED groups and the second driver are connected in series to connect to the voltage input terminal, and the first switch circuit has a collector connected to the first LED. Connected to the low voltage side of the group, The third switch circuit is connected to the low-voltage side of the second LED group, and is configured by a first NPN transistor to which a constant voltage is applied to the base when turned on. The emitter is connected to the second driving unit, and is configured by a second NPN transistor in which a constant voltage is applied to the base when the emitter is turned on.

請求項2にかかる発明は、請求項1に記載のLED駆動回路において、前記電圧入力端子の電圧を安定化する電圧安定化回路を備え、該電圧安定化回路は前記第1および第2の駆動部に安定化電圧を供給し、且つ前記第3のスイッチ回路がオンのときに前記第2のNPNトランジスタのベースに前記安定化電圧を分圧した電圧を供給することを特徴とする。
According to a second aspect of the present invention, in the LED driving circuit according to the first aspect, a voltage stabilizing circuit that stabilizes a voltage at the voltage input terminal is provided, and the voltage stabilizing circuit includes the first and second driving circuits. And a voltage obtained by dividing the stabilization voltage is supplied to the base of the second NPN transistor when the third switch circuit is on .

請求項3にかかる発明は、請求項1又は2に記載のLED駆動回路において、前記第4のスイッチ回路は、前記第1のLED群の前記低電圧側にエミッタが接続され前記第2のLED群の前記高電圧側にコレクタが接続されたPNPトランジスタで構成され、前記第1のLED群と前記第2のLED群を直列接続する際に、前記PNPトランジスタのベースに前記電圧入力端子の電圧を分圧した電圧が印加されることを特徴とする。
According to a third aspect of the present invention, in the LED drive circuit according to the first or second aspect, the fourth switch circuit includes an emitter connected to the low voltage side of the first LED group, and the second LED. A PNP transistor having a collector connected to the high voltage side of the group, and when the first LED group and the second LED group are connected in series, the voltage of the voltage input terminal is connected to the base of the PNP transistor A voltage obtained by dividing the voltage is applied.

請求項4にかかる発明は、請求項1、2又は3に記載のLED駆動回路において、外部制御端子に接続される第2の制御回路を備え、該第2の制御回路は、前記外部制御端子から入力する制御信号に応じて、前記第1、第2、第3および第4のスイッチ回路のオン/オフ切り替えおよび前記第1および第2の駆動部の前記第1の駆動電流の値を制御することを特徴とする。
According to a fourth aspect of the present invention, in the LED drive circuit according to the first, second, or third aspect, the second drive circuit is connected to an external control terminal, and the second control circuit includes the external control terminal. On / off switching of the first, second, third and fourth switch circuits and the value of the first drive current of the first and second drive units according to a control signal input from It is characterized by doing.

請求項5にかかる発明は、請求項1、2、3又は4に記載のLED駆動回路において、前記第1および第2のLED群の前記並列接続と前記直列接続のいずれか一方以外の接続を回避する時間調整回路を前記第1の制御回路の出力側に設けたことを特徴とする。
According to a fifth aspect of the present invention, in the LED drive circuit according to the first, second, third, or fourth aspect, a connection other than one of the parallel connection and the serial connection of the first and second LED groups is provided. A time adjustment circuit to be avoided is provided on the output side of the first control circuit .

請求項6にかかる発明は、請求項1、2、3、4又は5に記載のLED駆動回路において、前記電圧入力端子に逆接続防止回路を接続したことを特徴とする。   According to a sixth aspect of the present invention, in the LED drive circuit according to the first, second, third, fourth, or fifth aspect, a reverse connection prevention circuit is connected to the voltage input terminal.

請求項1にかかる発明によれば、電圧入力端子の電圧に応じて第1、第2のLED群の直列/並列が第1の制御回路によって自動的に切り替えられ、直列接続の場合も並列接続の場合も、第1および第2のLED群に同じ電流を供給することができ、同じ輝度を実現できる。   According to the first aspect of the present invention, the series / parallel of the first and second LED groups is automatically switched by the first control circuit in accordance with the voltage of the voltage input terminal. In this case, the same current can be supplied to the first and second LED groups, and the same luminance can be realized.

請求項2にかかる発明によれば、電圧入力端子の電圧が変動しても安定した電圧を第1の制御回路や駆動回路に供給することができ、各LED群の輝度のばらつきを防ぐことができる。   According to the invention of claim 2, even if the voltage at the voltage input terminal fluctuates, a stable voltage can be supplied to the first control circuit and the drive circuit, and variation in luminance of each LED group can be prevented. it can.

請求項3にかかる発明によれば、第1のスイッチ回路の起動時の不安定化や逆流阻止が可能となる。   According to the third aspect of the invention, it becomes possible to destabilize the first switch circuit and prevent backflow.

請求項4にかかる発明によれば、電圧入力端子の電圧に関係なく、外部から第1、第2のLED群の直列/並列の切り替えが可能になり、そのときの電流も外部から設定することができるようになる。   According to the invention of claim 4, the first and second LED groups can be switched in series / parallel from the outside regardless of the voltage at the voltage input terminal, and the current at that time is also set from the outside. Will be able to.

請求項5にかかる発明によれば、第1、第2のLED群の直列/並列以外の接続状態を回避することができる。   According to the invention concerning Claim 5, connection states other than serial / parallel of the 1st, 2nd LED group can be avoided.

請求項6にかかる発明によれば、電源ラインに対して電圧入力端子を逆極性で接続したとしても、内部回路を保護することができる。   According to the sixth aspect of the present invention, the internal circuit can be protected even if the voltage input terminal is connected to the power supply line with the reverse polarity.

本発明の第1の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 1st Example of this invention. 本発明の第2の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 2nd Example of this invention. 本発明の第3の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 3rd Example of this invention. 本発明の第4の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 4th Example of this invention. 本発明の第5の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 5th Example of this invention. 本発明の第6の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 6th Example of this invention. 本発明の第7の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 7th Example of this invention. 本発明の第8の実施例のLED駆動回路の回路図である。It is a circuit diagram of the LED drive circuit of the 8th Example of this invention. 従来のLED駆動回路のの回路図である。It is a circuit diagram of the conventional LED drive circuit. 従来の別のLED駆動回路の回路図である。It is a circuit diagram of another conventional LED drive circuit.

以下、本発明について図を参照しながら説明する。なお、以下に説明する部材・配置等は本発明を限定するものではなく、本発明の趣旨の範囲内で種々改変することができるものである。図面において、同一番号は同等あるいは同一部分を示している。   The present invention will be described below with reference to the drawings. The members and arrangements described below do not limit the present invention, and various modifications can be made within the scope of the gist of the present invention. In the drawings, the same number indicates the same or the same part.

<第1の実施例>
図1に第1の実施例のLED駆動回路を示す。1は電圧入力端子、2はn個(nは1以上の整数)のLEDが直列接続された第1のLED群、3もn個のLEDが直列接続された第2のLED群、4はPWM端子である。5は第1の制御回路であり、電圧入力端子1に入力する電圧VINの高低を検出する電圧検知回路51と、その電圧検知回路51の検出結果に応じた制御信号を出力するスイッチ制御回路52を含む。6は駆動回路であり、LED群2を駆動する第1の駆動部61と、LED群3又はLED群2,3の直列回路を駆動する第2の駆動部62を含み、それらは所定の電流値を設定するとともに、PWM端子4に入力するPWM信号によって、電流のオン/オフを行う。7〜10はスイッチ制御回路52でオン/オフが個別的に制御されるスイッチ回路である。
<First embodiment>
FIG. 1 shows an LED driving circuit of the first embodiment. 1 is a voltage input terminal, 2 is a first LED group in which n (n is an integer of 1 or more) LEDs are connected in series, 3 is also a second LED group in which n LEDs are connected in series, 4 is PWM terminal. Reference numeral 5 denotes a first control circuit, a voltage detection circuit 51 that detects the level of the voltage VIN input to the voltage input terminal 1, and a switch control circuit 52 that outputs a control signal corresponding to the detection result of the voltage detection circuit 51. including. Reference numeral 6 denotes a drive circuit, which includes a first drive unit 61 for driving the LED group 2 and a second drive unit 62 for driving the LED group 3 or the series circuit of the LED groups 2 and 3, which have a predetermined current. A value is set and the current is turned on / off by a PWM signal input to the PWM terminal 4. Reference numerals 7 to 10 denote switch circuits whose ON / OFF is individually controlled by the switch control circuit 52.

さて、電圧入力端子1には、高い電圧あるいは低い電圧VINが入力する。このとき、入力電圧VINが、制御回路5の電源検知回路51において低い所望の電圧であると検知されたときは、スイッチ制御回路52によって、スイッチ回路7,8,10がオンに制御され、スイッチ回路9がオフに制御される。これにより、LED群2,3が電圧入力端子1に対して並列接続される。そして、駆動回路6の駆動部61,62が互いに同じ電流値に設定され且つ同じPWM信号で制御されることで、LED群2,3の各LEDがそのPWM制御に応じた同じ輝度で発光する。   A high voltage or a low voltage VIN is input to the voltage input terminal 1. At this time, when the input voltage VIN is detected as a low desired voltage in the power supply detection circuit 51 of the control circuit 5, the switch control circuit 52 controls the switch circuits 7, 8, and 10 to be turned on. The circuit 9 is controlled off. Thereby, the LED groups 2 and 3 are connected in parallel to the voltage input terminal 1. The drive units 61 and 62 of the drive circuit 6 are set to the same current value and controlled by the same PWM signal, so that the LEDs of the LED groups 2 and 3 emit light with the same brightness according to the PWM control. .

以上のように、入力電圧VINが低いときは、LED群2,3が並列接続される。このときは、電圧入力端子1に直列接続されるLEDの数が少なくなるので、回路のダイナミックレンジを大きくすることができて、大きな順方向電圧VfのLEDも使用できる。   As described above, when the input voltage VIN is low, the LED groups 2 and 3 are connected in parallel. At this time, since the number of LEDs connected in series to the voltage input terminal 1 is reduced, the dynamic range of the circuit can be increased, and an LED having a large forward voltage Vf can also be used.

一方、入力電圧VINが、制御回路5の電源検知回路51において高い所望の電圧であると検知されたときは、スイッチ制御回路52によって、スイッチ回路8,9がオンに制御され、スイッチ回路7,10がオフに制御される。これにより、LED群2,3が電圧入力端子1に対して直列接続される。このとき、駆動回路6の駆動部62がPWM制御されることで、LED群2,3がそのPWM制御に応じた輝度で発光する。   On the other hand, when the input voltage VIN is detected as a high desired voltage in the power supply detection circuit 51 of the control circuit 5, the switch circuits 8 and 9 are controlled to be turned on by the switch control circuit 52. 10 is controlled off. Thereby, the LED groups 2 and 3 are connected in series to the voltage input terminal 1. At this time, the drive unit 62 of the drive circuit 6 is PWM-controlled, so that the LED groups 2 and 3 emit light with luminance according to the PWM control.

以上のように、入力電圧VINが高いときは、LED群2,3が直列接続される。このとき、駆動部62の電流値を、スイッチ制御回路52によって、並列接続されていた際にLED群3に流れた電流値と同じ電流値に制御することで、LED群2,3が並列接続されていた際に入力したPWM信号と同じPWM信号が入力する際に、直列接続されたLED群2,3の各LEDの輝度レベルを並列接続時の輝度レベルと同程度にすることができる。   As described above, when the input voltage VIN is high, the LED groups 2 and 3 are connected in series. At this time, the current value of the drive unit 62 is controlled by the switch control circuit 52 to the same current value as the current value that has flowed to the LED group 3 when being connected in parallel, so that the LED groups 2 and 3 are connected in parallel. When the same PWM signal as the input PWM signal is input, the luminance level of each LED of the LED groups 2 and 3 connected in series can be set to the same level as the luminance level at the time of parallel connection.

<第2の実施例>
図2に第2の実施例のLED駆動回路を示す。本実施例は、図1のLED駆動回路において、新たに安定化電源回路11を設けるとともに、電圧入力端子1と安定化電源回路11との間に第1の電圧減衰回路12を挿入接続し、電圧入力端子1とLED群2,3との間に第2の電圧減衰回路13を挿入接続している。
<Second embodiment>
FIG. 2 shows an LED drive circuit according to the second embodiment. In the present embodiment, in the LED drive circuit of FIG. 1, a stabilized power supply circuit 11 is newly provided, and a first voltage attenuation circuit 12 is inserted and connected between the voltage input terminal 1 and the stabilized power supply circuit 11, A second voltage attenuation circuit 13 is inserted and connected between the voltage input terminal 1 and the LED groups 2 and 3.

入力電圧VINの値が安定しないとき、制御回路5や駆動回路6がその入力電圧VINの変動の影響を受け、LED群2,3で所定の輝度を実現することができなくなる。そこで本実施例では、安定化電源回路11を設け、ここで安定化された電圧VDDを生成して供給することにより、制御回路5や駆動回路6がその入力電圧VINの変動の影響を受けないようにする。また、電圧減衰回路12を挿入接続することにより、安定化電源回路11に印加する電圧を低下させ、その安定化電源回路11を構成する素子に耐圧不足が生じないようにする。さらに、電圧減衰回路13を挿入接続することにより、スイッチ回路7,8の両端間に印加する電圧を低下させ、それらスイッチ回路7,8を構成する素子に耐圧不足が生じないようにする。   When the value of the input voltage VIN is not stable, the control circuit 5 and the drive circuit 6 are affected by the fluctuation of the input voltage VIN, and the LED groups 2 and 3 cannot realize a predetermined luminance. Therefore, in this embodiment, the stabilized power supply circuit 11 is provided, and the stabilized voltage VDD is generated and supplied here, so that the control circuit 5 and the drive circuit 6 are not affected by the fluctuation of the input voltage VIN. Like that. Further, the voltage attenuating circuit 12 is inserted and connected, so that the voltage applied to the stabilized power supply circuit 11 is lowered so that the elements constituting the stabilized power supply circuit 11 do not have insufficient withstand voltage. Further, the voltage attenuating circuit 13 is inserted and connected, so that the voltage applied between the both ends of the switch circuits 7 and 8 is lowered, so that the elements constituting the switch circuits 7 and 8 do not have insufficient withstand voltage.

例えば、LED群2,3を並列接続した際に、スイッチ回路7,8にかかる電圧は、入力電圧がVINで、安定化電源回路11の出力電圧がVDDであるとすると、
スイッチ回路7の高圧側電圧=VIN−n・Vf
スイッチ回路7の低圧側電圧=VDDより低く、第1の駆動部61が動作できる所望の電圧
スイッチ回路8の高電圧側電圧=VIN−n・Vf
スイッチ回路8の低圧側電圧=VDDより低く、第2の駆動部62が動作できる所望の電圧
となる。
For example, when the LED groups 2 and 3 are connected in parallel, the voltage applied to the switch circuits 7 and 8 is that the input voltage is VIN and the output voltage of the stabilized power supply circuit 11 is VDD.
High voltage side voltage of switch circuit 7 = VIN−n · Vf
The low voltage of the switch circuit 7 is lower than VDD, and the desired voltage at which the first driver 61 can operate. The high voltage of the switch circuit 8 = VIN−n · Vf
The low-voltage side voltage of the switch circuit 8 is lower than VDD, and becomes a desired voltage at which the second drive unit 62 can operate.

一方、LED群2,3を直列接続した際に、スイッチ回路8にかかる電圧は、
スイッチ回路8の高電圧側電圧=VIN−2n・Vf
スイッチ回路8の低圧側電圧=VDDより低く、第2の駆動部62が動作できる所望の電圧
となる。
On the other hand, when the LED groups 2 and 3 are connected in series, the voltage applied to the switch circuit 8 is
High voltage side voltage of the switch circuit 8 = VIN-2n · Vf
The low-voltage side voltage of the switch circuit 8 is lower than VDD, and becomes a desired voltage at which the second drive unit 62 can operate.

したがって、入力電圧VINが高い場合、あるいはLEDの順方向電圧Vfが小さいときには、特にスイッチ回路7,8に大きな耐圧が要求されることになるが、上記のように電圧減衰回路13を挿入することにより、スイッチ回路7,8に要求される耐圧を低下させることができる。   Accordingly, when the input voltage VIN is high or when the forward voltage Vf of the LED is small, a large withstand voltage is particularly required for the switch circuits 7 and 8, but the voltage attenuation circuit 13 is inserted as described above. Thus, the breakdown voltage required for the switch circuits 7 and 8 can be reduced.

<第3の実施例>
図3に第3の実施例のLED駆動回路を示す。本実施例は、図1のLED駆動回路において、起動回路14と電圧印加回路15を追加したものである。
<Third embodiment>
FIG. 3 shows an LED driving circuit of the third embodiment. In this embodiment, an activation circuit 14 and a voltage application circuit 15 are added to the LED drive circuit of FIG.

LED群2,3を直列接続して使用するときは、スイッチ回路9がオンに制御されるが、入力電圧VINの立上り時(起動時)には、スイッチ回路9やLED群3に印加する電圧が不定となる。この不定時にスイッチ回路9がある状態に固定され動作不能状態に陥ることがある。また、LED群2の低圧側の電圧がLED群3の高圧側電圧として供給されるとき、スイッチ回路9の両端間には大きな電圧が印加されることになる。   When the LED groups 2 and 3 are used in series connection, the switch circuit 9 is controlled to be on, but the voltage applied to the switch circuit 9 and the LED group 3 when the input voltage VIN rises (starts up). Is undefined. At this indefinite time, the switch circuit 9 may be fixed to a certain state and become inoperable. In addition, when the low voltage side voltage of the LED group 2 is supplied as the high voltage side voltage of the LED group 3, a large voltage is applied across the switch circuit 9.

そこで、起動時にスイッチ回路9に所望の電圧を供給することで、LED群3の高圧側をLED群2の低圧側に接続するとともに、スイッチ回路9からLED群3の高圧側電圧として所望の電圧を供給することで電圧の不定や固着を防ぐ。また、スイッチ回路9からLED群3への供給電圧をLED群2,3の順方向電圧Vfとダイナミックレンジを考慮した電圧とする。   Therefore, by supplying a desired voltage to the switch circuit 9 at the time of startup, the high voltage side of the LED group 3 is connected to the low voltage side of the LED group 2, and the desired voltage is set as the high voltage side voltage of the LED group 3 from the switch circuit 9. To prevent voltage instability and sticking. Further, the supply voltage from the switch circuit 9 to the LED group 3 is a voltage that takes into consideration the forward voltage Vf and the dynamic range of the LED groups 2 and 3.

<第4の実施例>
図4に第4の実施例のLED駆動回路を示す。本実施例は、第1の実施例において、スイッチ回路9に直列に逆電流防止回路16を挿入したものである。
<Fourth embodiment>
FIG. 4 shows an LED driving circuit of the fourth embodiment. In this embodiment, a reverse current prevention circuit 16 is inserted in series with the switch circuit 9 in the first embodiment.

LED群2,3を直列接続したときは、スイッチ回路9はLED群2の側の電圧が高く、LED群3の側の電圧が低くなり逆電圧とはならない。しかし並列接続したときには、スイッチ回路9について、LED群3の側の電圧が高く、LED群2の側の電圧が低くなり、スイッチ回路9に逆電圧が印加して、電流が逆方向に流れ回路素子の劣化が発生することがあり得る。   When the LED groups 2 and 3 are connected in series, the voltage of the switch circuit 9 on the LED group 2 side is high, the voltage on the LED group 3 side is low, and the reverse voltage is not obtained. However, when connected in parallel, the voltage on the LED group 3 side of the switch circuit 9 is high, the voltage on the LED group 2 side is low, a reverse voltage is applied to the switch circuit 9, and the current flows in the reverse direction. Deterioration of the element may occur.

そこで、これを防ぐために、逆電流防止回路16を挿入している。なお、逆電流防止回路16は、スイッチ回路9とLED群3との間に挿入しても同様の効果が得られる。   In order to prevent this, a reverse current prevention circuit 16 is inserted. Note that the same effect can be obtained even if the reverse current prevention circuit 16 is inserted between the switch circuit 9 and the LED group 3.

<第5の実施例>
図5に第5の実施例のLED駆動回路を示す。本実施例は、図1の実施例において、外部制御端子17に接続され、制御回路5と駆動回路6を制御する第2の制御回路18を追加したものである。
<Fifth embodiment>
FIG. 5 shows an LED drive circuit of the fifth embodiment. In the present embodiment, a second control circuit 18 connected to the external control terminal 17 and controlling the control circuit 5 and the drive circuit 6 is added to the embodiment of FIG.

本実施例では、外部制御端子17に外部から入力する制御信号を制御回路18が受信することで、その制御回路18によって、制御回路5のスイッチ制御回路52を電圧検知回路51の検知結果に関係なく制御して、LED群2,3の直列接続や並列接続を切り替えたり、駆動回路6の駆動部61、62の電流値を切り替えたりすることができる。   In this embodiment, when the control circuit 18 receives a control signal input from the outside to the external control terminal 17, the switch circuit 52 of the control circuit 5 is related to the detection result of the voltage detection circuit 51 by the control circuit 18. Without being controlled, the series connection or parallel connection of the LED groups 2 and 3 can be switched, or the current values of the drive units 61 and 62 of the drive circuit 6 can be switched.

<第6の実施例>
図6に第6の実施例のLED駆動回路を示す。本実施例は、図1の実施例において、制御回路5のスイッチ制御回路52の出力側に、時間調整回路19を挿入したものである。
<Sixth embodiment>
FIG. 6 shows an LED drive circuit according to the sixth embodiment. In this embodiment, the time adjustment circuit 19 is inserted on the output side of the switch control circuit 52 of the control circuit 5 in the embodiment of FIG.

スイッチ制御回路52によってスイッチ回路7〜10を切替制御するとき、LED群2,3が直列/並列のいずれでもない時間領域、あるいは直列/並列が同時に発生する時間領域が存在し得る。そこで、スイッチ制御回路52によって、LED群2,3が直列/並列の切り替えを行う際に、時間調整回路19によってスイッチ回路7〜10を切替制御する際に切り替えに時間差を設けて、前記した直列/並列のいずれでもない時間領域および直列/並列が同時に発生する時間領域が発生することを回避する。この時間調整回路19によって、例えば、スイッチ回路7,10は必ず同時にオン/オフさせ、スイッチ回路9のオフ/オン、つまり逆動作と同期させる。なお、スイッチ8は常時オンにしておいてもよい。   When the switch circuits 7 to 10 are switched and controlled by the switch control circuit 52, there may be a time region in which the LED groups 2 and 3 are neither in series nor in parallel, or a time region in which series / parallel occurs simultaneously. Therefore, when the LED groups 2 and 3 are switched in series / parallel by the switch control circuit 52, a time difference is provided in the switching when the switch circuits 7 to 10 are switched by the time adjustment circuit 19, and the above-described series is provided. Avoid the occurrence of a time domain that is neither / parallel nor a time domain where serial / parallel occurs simultaneously. By the time adjustment circuit 19, for example, the switch circuits 7 and 10 are always turned on / off at the same time, and the switch circuit 9 is turned off / on, that is, synchronized with the reverse operation. The switch 8 may be always turned on.

<第7の実施例>
図7に第7の実施例のLED駆動回路を示す。本実施例は、図1の実施例において、電圧入力端子1に逆接続防止回路20を挿入接続したものである。
<Seventh embodiment>
FIG. 7 shows an LED drive circuit of the seventh embodiment. In this embodiment, the reverse connection prevention circuit 20 is inserted and connected to the voltage input terminal 1 in the embodiment of FIG.

LED群2,3の直列接続や並列接続を実現するLED駆動回路は、少ない素子で実現が可能であり、回路を構築するプリント基板などの基板サイズも小さくなり、ボードの向きの視認が難しくなる。こうした場合、組み立て作業中に電源ラインの逆接続が発生し易く、この逆接続が発生すると動作時に回路破壊に至る可能性がある。そこで、電圧入力端子1に逆接続防止回路20を挿入接続することで、電源ラインの逆接続が発生した場合であっても、回路破壊を防止する。   The LED drive circuit that realizes series connection or parallel connection of the LED groups 2 and 3 can be realized with a small number of elements, and the board size of a printed circuit board or the like for constructing the circuit becomes small, making it difficult to visually recognize the board orientation. . In such a case, reverse connection of the power supply line is likely to occur during assembly work, and if this reverse connection occurs, there is a possibility of circuit destruction during operation. Therefore, the reverse connection prevention circuit 20 is inserted and connected to the voltage input terminal 1 to prevent circuit destruction even when the reverse connection of the power supply line occurs.

<第8の実施例>
図8に第8の実施例のLED駆動回路を示す。本実施例は、図1〜図4および図7で説明した構成のすべてを備えた具体的な回路である。D1はダイオード、R1〜R19は抵抗、CP1,CP2はコンパレータ、Q1〜Q6はトランジスタ、C1はキャパシタである。
<Eighth embodiment>
FIG. 8 shows an LED drive circuit of the eighth embodiment. This embodiment is a specific circuit having all of the configurations described with reference to FIGS. D1 is a diode, R1 to R19 are resistors, CP1 and CP2 are comparators, Q1 to Q6 are transistors, and C1 is a capacitor.

前記した逆接続防止回路10はダイオードD1で、電圧減衰回路12は抵抗R1で、電圧減衰回路13は抵抗R2で、それぞれ構成されている。   The reverse connection prevention circuit 10 is composed of a diode D1, the voltage attenuation circuit 12 is composed of a resistor R1, and the voltage attenuation circuit 13 is composed of a resistor R2.

制御回路5の電圧検知回路51は、抵抗R3,R4で安定化電源回路11の出力電圧VDDを分圧して得た基準電圧Vrefと入力電圧VINを抵抗R5,R6で分圧して得た電圧VaとをコンパレータCP1で比較するよう構成されている。Va≧Vrefのとき、コンパレータCP1の出力電圧V1は“H”、Va<Vrefのとき、コンパレータCP1の出力電圧V1は“L”となる。   The voltage detection circuit 51 of the control circuit 5 includes a voltage Va obtained by dividing the reference voltage Vref obtained by dividing the output voltage VDD of the stabilized power supply circuit 11 by resistors R3 and R4 and the input voltage VIN by resistors R5 and R6. Are compared by a comparator CP1. When Va ≧ Vref, the output voltage V1 of the comparator CP1 is “H”, and when Va <Vref, the output voltage V1 of the comparator CP1 is “L”.

スイッチ制御回路52は、前記した基準電圧VrefとコンパレータCP1の出力電圧V1とをコンパレータCP2により比較するよう構成されている。V1=“H”のとき、コンパレータCP2の出力電圧V2はV2=“L”となり、V1=“L”のときV2=“H”となる。   The switch control circuit 52 is configured to compare the reference voltage Vref and the output voltage V1 of the comparator CP1 by the comparator CP2. When V1 = “H”, the output voltage V2 of the comparator CP2 is V2 = “L”, and when V1 = “L”, V2 = “H”.

スイッチ回路7はトランジスタQ1で、スイッチ回路8はトランジスタQ2で、スイッチ回路9はトランジスタQ3で、スイッチ回路10はトランジスタQ4で、それぞれ構成されている。   The switch circuit 7 includes a transistor Q1, the switch circuit 8 includes a transistor Q2, the switch circuit 9 includes a transistor Q3, and the switch circuit 10 includes a transistor Q4.

そして、入力電圧VINが低く、電圧V1=“L”のとき(電圧V2=“H”のとき)は、トランジスタQ1がオンし、またトランジスタQ6がオンすることでトランジスタQ4がオンする。トランジスタQ3はトランジスタQ5がオフすることでオフする。なお、トランジスタQ2は安定化電圧VDDを抵抗R18,R19で分圧したベース電圧によってオンしている。以上からこのときは、LED群2,3が並列接続される。   When the input voltage VIN is low and the voltage V1 = “L” (voltage V2 = “H”), the transistor Q1 is turned on, and the transistor Q6 is turned on to turn on the transistor Q4. The transistor Q3 is turned off when the transistor Q5 is turned off. The transistor Q2 is turned on by a base voltage obtained by dividing the stabilization voltage VDD by the resistors R18 and R19. Thus, at this time, the LED groups 2 and 3 are connected in parallel.

一方、入力電圧VINが高く、電圧V1=“H”のとき(電圧V2=“L”のとき)は、トランジスタQ1がオフし、またトランジスタQ6がオフすることでトランジスタQ4がオフする。トランジスタQ3はトランジスタQ5がオンすることでオンする。なお、トランジスタQ2は安定化電圧VDDを抵抗R18,R19で分圧したベース電圧によってオンしている。以上からこのときは、LED群2,3が直列接続される。   On the other hand, when the input voltage VIN is high and the voltage V1 = “H” (when the voltage V2 = “L”), the transistor Q1 is turned off, and the transistor Q6 is turned off to turn off the transistor Q4. The transistor Q3 is turned on when the transistor Q5 is turned on. The transistor Q2 is turned on by a base voltage obtained by dividing the stabilization voltage VDD by the resistors R18 and R19. From the above, at this time, the LED groups 2 and 3 are connected in series.

図3で説明した起動回路14と電圧印加回路15および図4で説明した逆流防止回路16は、トランジスタQ3と抵抗R15,R16により構成されている。起動時に入力電圧VINが高く、コンパレータCP1の出力電圧V1が“H”であるとき、トランジスタQ5がオンして、トランジスタQ3のベースに、抵抗R15,R16で入力電圧VINを分圧した電圧を印加させる。このため、そのトランジスタQ3が起動時であっても確実にオンする。トランジスタQ3はエミッタがLED群2の低電圧側に、コレクタがLED群3の高電圧側に接続されたPNP型であるため、LED群2,3の並列接続時であっても、LED群3の高圧側からLED群2の低圧側への逆流が発生することはない。   The starting circuit 14 and the voltage applying circuit 15 described with reference to FIG. 3 and the backflow prevention circuit 16 described with reference to FIG. 4 include a transistor Q3 and resistors R15 and R16. When the input voltage VIN is high at start-up and the output voltage V1 of the comparator CP1 is “H”, the transistor Q5 is turned on and a voltage obtained by dividing the input voltage VIN by the resistors R15 and R16 is applied to the base of the transistor Q3. Let For this reason, the transistor Q3 is reliably turned on even when it is activated. Since the transistor Q3 is a PNP type in which the emitter is connected to the low voltage side of the LED group 2 and the collector is connected to the high voltage side of the LED group 3, even when the LED groups 2 and 3 are connected in parallel, the LED group 3 No back flow from the high voltage side to the low voltage side of the LED group 2 occurs.

<その他の実施例>
なお、上記した図8では図5の制御回路18や図6の時間調整回路19を含めなかったが、当然ながら含めることもできることはもちろんである。つまり、第1〜第7の実施例に記載の構成をすべて含めたLED駆動回路を構成することもできる。
<Other examples>
8 does not include the control circuit 18 of FIG. 5 or the time adjustment circuit 19 of FIG. 6, it goes without saying that it can of course be included. That is, an LED drive circuit including all the configurations described in the first to seventh embodiments can be configured.

1:電圧入力端子、2,3:LED群、4:PWM端子、5:第1の制御回路、51:電圧検知回路、52:スイッチ制御回路、6:駆動回路、61:第1の駆動部、62:第2の駆動部、7〜10:スイッチ回路、11:安定化電源回路、12,13:電圧減衰回路、14:起動回路、15:電圧印加回路、16:逆流防止回路、17:外部制御端子、18:第2の制御回路、19:時間調整回路、20:逆接続防止回路   1: voltage input terminal, 2, 3: LED group, 4: PWM terminal, 5: first control circuit, 51: voltage detection circuit, 52: switch control circuit, 6: drive circuit, 61: first drive unit 62: second drive unit, 7-10: switch circuit, 11: stabilized power supply circuit, 12, 13: voltage attenuation circuit, 14: start-up circuit, 15: voltage application circuit, 16: backflow prevention circuit, 17: External control terminal, 18: second control circuit, 19: time adjustment circuit, 20: reverse connection prevention circuit

Claims (6)

n個(nは1以上の整数)のLEDの直列回路からなり高電圧側が電圧入力端子に接続される第1のLED群と、第1の駆動電流を供給する第1の駆動部と、前記第1のLED群の低電圧側と前記第1の駆動部を接続する第1のスイッチ回路と、n個のLEDの直列回路からなる第2のLED群と、前記第2のLED群の高電圧側と前記電圧入力端子を接続する第2のスイッチ回路と、前記第1の駆動電流と同じ駆動電流を供給する第2の駆動部と、前記第2のLED群の低電圧側と前記第2の駆動部を接続する第3のスイッチ回路と、前記第1のLED群の低電圧側と前記第2のLEDの高電圧側を接続する第4のスイッチ回路と、前記電圧入力端子の電圧に応じて前記第1、第2、第3および第4のスイッチ回路をオン/オフする第1の制御回路とを備え、
前記第1の制御回路は、前記電圧入力端子の電圧が低いときは、前記第1、第2および第3のスイッチ回路をオンし前記第4のスイッチ回路をオフして、前記第1のLED群と前記第1の駆動部の直列接続回路と前記第2のLED群と前記第2の駆動部の直列接続回路を前記電圧入力端子に対して並列接続し、前記電圧入力端子の電圧が高いときは、前記第1および第2のスイッチ回路をオフし前記第3および第4のスイッチ回路をオンして、前記第1および第2のLED群と前記第2の駆動部とを直列接続した回路を前記電圧入力端子に接続するよう動作し、
前記第1のスイッチ回路は、コレクタが前記第1のLED群の低電圧側に接続され、エミッタが前記第1の駆動部に接続され、オンのときにベースに定電圧が印加される第1のNPNトランジスタで構成され、
前記第3のスイッチ回路は、コレクタが前記第2のLED群の低電圧側に接続され、エミッタが前記第2の駆動部に接続され、オンのときにベースに定電圧が印加される第2のNPNトランジスタで構成されている、
ことを特徴とするLED駆動回路。
a first LED group consisting of a series circuit of n (n is an integer of 1 or more) LEDs, the high voltage side of which is connected to the voltage input terminal; a first drive unit for supplying a first drive current; A first switch circuit connecting the low voltage side of the first LED group and the first drive unit, a second LED group comprising a series circuit of n LEDs, and a high level of the second LED group A second switch circuit that connects the voltage side and the voltage input terminal; a second drive unit that supplies the same drive current as the first drive current; a low voltage side of the second LED group; A third switch circuit that connects two driving units, a fourth switch circuit that connects a low voltage side of the first LED group and a high voltage side of the second LED group , and a voltage input terminal A first for turning on / off the first, second, third and fourth switch circuits in accordance with a voltage; And a control circuit,
The first control circuit turns on the first, second and third switch circuits and turns off the fourth switch circuit when the voltage at the voltage input terminal is low, and turns off the first LED. A series connection circuit of a group and the first drive unit, a series connection circuit of the second LED group and the second drive unit are connected in parallel to the voltage input terminal, and the voltage of the voltage input terminal is high When the first and second switch circuits are turned off and the third and fourth switch circuits are turned on, the first and second LED groups and the second drive unit are connected in series . Operate to connect a circuit to the voltage input terminal;
The first switch circuit has a collector connected to the low voltage side of the first LED group, an emitter connected to the first driver, and a constant voltage applied to the base when turned on. Of NPN transistors,
In the third switch circuit, a collector is connected to the low voltage side of the second LED group, an emitter is connected to the second driving unit, and a constant voltage is applied to the base when turned on. Composed of NPN transistors
An LED drive circuit characterized by that.
請求項1に記載のLED駆動回路において、
前記電圧入力端子の電圧を安定化する電圧安定化回路を備え、
該電圧安定化回路は前記第1および第2の駆動部に安定化電圧を供給し、且つ前記第3のスイッチ回路がオンのときに前記第2のNPNトランジスタのベースに前記安定化電圧を分圧した電圧を供給することを特徴とするLED駆動回路。
The LED driving circuit according to claim 1,
A voltage stabilization circuit for stabilizing the voltage of the voltage input terminal ;
The voltage stabilization circuit supplies a stabilization voltage to the first and second drive units, and distributes the stabilization voltage to the base of the second NPN transistor when the third switch circuit is on. An LED driving circuit characterized by supplying a pressed voltage .
請求項1又は2に記載のLED駆動回路において、
前記第4のスイッチ回路は、前記第1のLED群の前記低電圧側にエミッタが接続され前記第2のLED群の前記高電圧側にコレクタが接続されたPNPトランジスタで構成され、
前記第1のLED群と前記第2のLED群を直列接続する際に、前記PNPトランジスタのベースに前記電圧入力端子の電圧を分圧した電圧が印加されることを特徴とするLED駆動回路。
The LED drive circuit according to claim 1 or 2,
The fourth switch circuit includes a PNP transistor having an emitter connected to the low voltage side of the first LED group and a collector connected to the high voltage side of the second LED group,
The LED driving circuit, wherein when the first LED group and the second LED group are connected in series, a voltage obtained by dividing the voltage of the voltage input terminal is applied to the base of the PNP transistor.
請求項1、2又は3に記載のLED駆動回路において、
外部制御端子に接続される第2の制御回路を備え、
該第2の制御回路は、前記外部制御端子から入力する制御信号に応じて、前記第1、第2、第3および第4のスイッチ回路のオン/オフ切り替えおよび前記第1および第2の駆動部の前記第1の駆動電流の値を制御することを特徴とするLED駆動回路。
In the LED drive circuit according to claim 1, 2, or 3,
A second control circuit connected to the external control terminal;
The second control circuit switches on / off of the first, second, third and fourth switch circuits and the first and second driving according to a control signal input from the external control terminal. An LED drive circuit that controls a value of the first drive current of the unit.
請求項1、2、3又は4に記載のLED駆動回路において、
前記第1および第2のLED群の前記並列接続と前記直列接続のいずれか一方以外の接続を回避する時間調整回路を前記第1の制御回路の出力側に設けたことを特徴とするLED駆動回路。
In the LED drive circuit according to claim 1, 2, 3, or 4,
An LED drive characterized in that a time adjustment circuit for avoiding connection other than one of the parallel connection and the series connection of the first and second LED groups is provided on the output side of the first control circuit. circuit.
請求項1、2、3、4又は5に記載のLED駆動回路において、
前記電圧入力端子に逆接続防止回路を接続したことを特徴とするLED駆動回路。
In the LED drive circuit according to claim 1, 2, 3, 4 or 5,
An LED drive circuit comprising a reverse connection prevention circuit connected to the voltage input terminal.
JP2014041819A 2014-03-04 2014-03-04 LED drive circuit Active JP6473569B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2014041819A JP6473569B2 (en) 2014-03-04 2014-03-04 LED drive circuit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2014041819A JP6473569B2 (en) 2014-03-04 2014-03-04 LED drive circuit

Publications (2)

Publication Number Publication Date
JP2015167213A JP2015167213A (en) 2015-09-24
JP6473569B2 true JP6473569B2 (en) 2019-02-20

Family

ID=54257953

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2014041819A Active JP6473569B2 (en) 2014-03-04 2014-03-04 LED drive circuit

Country Status (1)

Country Link
JP (1) JP6473569B2 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7009737B2 (en) * 2016-12-27 2022-01-26 株式会社新陽社 Control circuit for lighting equipment
JP7006866B2 (en) * 2017-08-08 2022-01-24 新日本無線株式会社 LED drive circuit
JP7287609B2 (en) * 2019-03-22 2023-06-06 株式会社新陽社 Control circuit for lighting equipment

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0878731A (en) * 1994-09-08 1996-03-22 Alps Electric Co Ltd Light emitting element driving circuit
JP2004119422A (en) * 2002-09-24 2004-04-15 Pioneer Electronic Corp Light emitting device drive circuit
JP2009272190A (en) * 2008-05-09 2009-11-19 Nippon Seiki Co Ltd Display device for vehicle
TWI442824B (en) * 2011-04-29 2014-06-21 Paragon Sc Lighting Tech Co Illuminating apparatus and method thereof
TWI439170B (en) * 2012-04-12 2014-05-21 Richtek Technology Corp Driver circuit for improving utilization rate of led device and related constant current regulator

Also Published As

Publication number Publication date
JP2015167213A (en) 2015-09-24

Similar Documents

Publication Publication Date Title
US8450943B2 (en) Illuminating device and controlling method thereof
JP4981464B2 (en) Light adjustment mode selection circuit and discharge lamp driving device
JP2007294969A (en) Led driving unit with overvoltage protective and duty control function
JP2008035594A (en) Semiconductor integrated circuit and electronic apparatus equipped with the same
JP6867228B2 (en) Luminous drive, vehicle lighting
JP6473569B2 (en) LED drive circuit
JP2011034547A (en) Constant current device and led device using the same
JP2016539465A (en) Driver with open output protection
JP2008277079A (en) Led lighting control device
JP2007004995A (en) Led lighting device
JP4971254B2 (en) LED lighting device
JP6951899B2 (en) Light emitting element drive device
JP6737458B2 (en) Protection circuit and LED drive circuit
JP2009231580A (en) Led driving module
JP5054236B1 (en) LED lighting device
JP5214047B1 (en) LED lighting device
KR20130014977A (en) Signal transfer circuit
JP6747657B2 (en) LED drive circuit
KR20110104819A (en) Light emitting diode array circuit
JP2010020481A (en) Reference voltage generation device
JP2019129050A (en) Light source device and projection type display device
JP2007280895A (en) Lighting control circuit
WO2012144178A1 (en) Backlight system
US11464095B2 (en) Cloned constant current LED drive circuit and method for use
JP4955026B2 (en) LED lighting protection circuit and LED lighting device

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20170203

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20170222

RD02 Notification of acceptance of power of attorney

Free format text: JAPANESE INTERMEDIATE CODE: A7422

Effective date: 20170222

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20171128

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20171204

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20180201

A711 Notification of change in applicant

Free format text: JAPANESE INTERMEDIATE CODE: A711

Effective date: 20180626

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20180822

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20180824

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20190107

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20190128

R150 Certificate of patent or registration of utility model

Ref document number: 6473569

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250