JP3344588B2 - Display device - Google Patents
Display deviceInfo
- Publication number
- JP3344588B2 JP3344588B2 JP12526291A JP12526291A JP3344588B2 JP 3344588 B2 JP3344588 B2 JP 3344588B2 JP 12526291 A JP12526291 A JP 12526291A JP 12526291 A JP12526291 A JP 12526291A JP 3344588 B2 JP3344588 B2 JP 3344588B2
- Authority
- JP
- Japan
- Prior art keywords
- light emission
- brightness
- light emitting
- light
- temperature
- 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.)
- Expired - Lifetime
Links
- 238000001514 detection method Methods 0.000 claims description 16
- JEIPFZHSYJVQDO-UHFFFAOYSA-N iron(III) oxide Inorganic materials O=[Fe]O[Fe]=O JEIPFZHSYJVQDO-UHFFFAOYSA-N 0.000 claims 1
- 238000000034 method Methods 0.000 claims 1
- 238000004804 winding Methods 0.000 description 5
- 102000011424 Cofilin 2 Human genes 0.000 description 4
- 108010023936 Cofilin 2 Proteins 0.000 description 4
- 239000003990 capacitor Substances 0.000 description 3
- 238000010586 diagram Methods 0.000 description 2
- 230000008014 freezing Effects 0.000 description 1
- 238000007710 freezing Methods 0.000 description 1
- 238000005286 illumination Methods 0.000 description 1
- 239000004973 liquid crystal related substance Substances 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
Landscapes
- Liquid Crystal (AREA)
- Instrument Panels (AREA)
- Liquid Crystal Display Device Control (AREA)
- Devices For Indicating Variable Information By Combining Individual Elements (AREA)
Description
【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION
【0001】[0001]
【産業上の利用分野】本発明は表示装置に関し、例えば
自動車に搭載されるものに適用し得る。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a display device and can be applied to, for example, a device mounted on an automobile.
【0002】[0002]
【従来の技術】従来、自動車の車内に搭載される表示装
置は、ダツシユボード等に取り付ける必要性から、小型
かつ薄型で視認性の良いものが求められ、例えばバツク
ライト付のLCD(liquid crystal display)が用いられ
ている。2. Description of the Related Art Conventionally, a display device mounted in a car has been required to be small, thin, and highly visible because of the necessity of being mounted on a dashboard or the like. For example, an LCD (liquid crystal display) with a backlight is required. Used.
【0003】実際上このLCDのバツクライトとして、
例えば発光温度や明るさの点で有利な冷陰極管(CF
L)が使用され、ユーザである運転者がLCDの表示を
快適に見れるようになされている。[0003] In practice, as the backlight of this LCD,
For example, a cold-cathode tube (CF
L) is used so that a driver as a user can comfortably view the display on the LCD.
【0004】[0004]
【発明が解決しようとする課題】ところが上述のように
LCDのバツクライトとしてCFLを用いる場合、日中
周囲が明るいときには、最大の明るさで発光駆動すれば
LCDの表示を快適に見ることができるが、夜周囲が暗
くなつたときには、CFLが明るすぎて運転の妨げにな
るおそれがある。However, when the CFL is used as the backlight of the LCD as described above, when the surroundings are bright during the daytime, the display on the LCD can be viewed comfortably by driving to emit light at the maximum brightness. When the night environment becomes dark, the CFL may be too bright and hinder driving.
【0005】このような問題を解決するため、自動車の
スピードメータ等の表示と同様に、ヘツドライトやスモ
ールランプの点灯に同期してCFLの明るさを暗くした
り、調整用ボリユームによつてCFLの明るさを可変す
ることが考えられる。In order to solve such a problem, the brightness of the CFL is reduced in synchronism with the lighting of a headlight or a small lamp, as in the display of a speedometer or the like of an automobile, or the CFL is adjusted by an adjustment volume. It is conceivable to change the brightness.
【0006】ところが上述のようにCFLの明るさをヘ
ツドライト等の点灯に同期させる場合には、CFLの明
るさが2段階にしか可変できず、運転者によつては暗く
した際に暗すぎて見にくくなる問題がある。However, when the brightness of the CFL is synchronized with the lighting of a headlight or the like as described above, the brightness of the CFL can only be changed in two stages, and when the brightness is reduced by the driver, the brightness is too dark. There is a problem that it is difficult to see.
【0007】また調整用ボリユームによつてCFLの明
るさを可変する場合には、周囲の明るさが変わるたび
に、LCDの表示を見ながら調整用ボリユームを調整す
る煩雑な操作が必要になり、何れの場合も安全運転の点
で解決策としては未だ不十分であつた。When the brightness of the CFL is varied by the adjustment volume, a complicated operation of adjusting the adjustment volume while watching the LCD display is required every time the surrounding brightness changes. In each case, the solution was still insufficient in terms of safe driving.
【0008】さらにこれらの問題に加えてCFLでは、
例えば0℃〜50℃でなる常温の範囲で定格電圧を入力す
ることにより点灯が保証されている。このため自動車の
ように周囲の温度変化が激しい場合に、周囲の明るさに
応じてCFLを暗くすると、周囲の温度によつてはCF
Lが点灯しなくなるおそれがある。[0008] In addition to these problems, the CFL also:
For example, lighting is guaranteed by inputting a rated voltage in a normal temperature range of 0 ° C. to 50 ° C. For this reason, when the ambient temperature changes drastically as in a car, if the CFL is darkened in accordance with the ambient brightness, the CF may be reduced depending on the ambient temperature.
L may not be lit.
【0009】実際上寒冷等での夜間や早朝における自動
車の始動直後の状態が上述のような条件になり、この場
合車内の温度が0℃〜50℃の常温範囲まで上昇する間C
FLは点灯せず、ユーザの使い勝手の点で未だ不十分で
あつた。In practice, the condition immediately after the start of the vehicle at night or in the early morning in cold weather or the like is the above-described condition.
The FL did not light up, and was still insufficient in terms of user convenience.
【0010】本発明は以上の点を考慮してなされたもの
で、従来の問題を一挙に解決して周辺環境に最適に応動
して発光する背面照明を有する表示装置を提案しようと
するものである。SUMMARY OF THE INVENTION The present invention has been made in view of the above points, and aims at solving a conventional problem at a glance and proposing a display device having a backlight which emits light in response to the surrounding environment. is there.
【0011】[0011]
【課題を解決するための手段】かかる課題を解決するた
め本発明においては、所定の発光手段2を背面照明とし
て用いる表示装置において、発光手段2を発光させる発
光駆動手段3と、周囲の明るさを検出する明るさ検出手
段4と、発光手段2の発光の明るさを外部からの操作に
よつて調整するための操作手段6と、明るさ検出手段4
の検出結果及び操作手段6に対する操作に応じて、発光
駆動手段3を駆動して発光手段2の発光動作を制御する
制御手段7とを設け、制御手段7は、明るさ検出手段4
の検出結果に応じて、周囲が充分に明るいときには発光
駆動手段3を駆動して発光手段2の発光動作を制御し、
それ以外のときには明るさ検出手段4の検出結果及び操
作手段6に対する操作に応じて、発光駆動手段3を駆動
して発光手段2の発光動作を制御するようにした。According to the present invention, there is provided a display apparatus using a predetermined light emitting means as a back light, a light emitting drive means for causing the light emitting means to emit light, and a surrounding brightness. Brightness detecting means 4 for detecting the brightness, operating means 6 for adjusting the brightness of light emission of the light emitting means 2 by an external operation, and brightness detecting means 4
Control means 7 for controlling the light emission operation of the light emission means 2 by driving the light emission drive means 3 in accordance with the detection result of the light emission and the operation on the operation means 6, and the control means 7 comprises:
According to the detection result, when the surroundings are sufficiently bright, the light emission driving means 3 is driven to control the light emission operation of the light emission means 2,
In other cases, the light emission driving means 3 is driven to control the light emission operation of the light emission means 2 according to the detection result of the brightness detection means 4 and the operation on the operation means 6.
【0012】[0012]
【作用】明るさ検出手段4の検出結果に応じて、周囲が
充分に明るいときには発光駆動手段3を駆動して発光手
段2の発光動作を制御し、それ以外のときには明るさ検
出手段4の検出結果及び操作手段6に対する操作に応じ
て、発光駆動手段3を駆動して発光手段2の発光動作を
制御するようにしたことにより、周囲が充分に明るいと
き以外のときに、発光手段の発光の明るさを使用者の好
みに応じた明るさに調整することができる。According to the detection result of the brightness detecting means, when the surroundings are sufficiently bright, the light emitting driving means is driven to control the light emitting operation of the light emitting means. By driving the light emission driving means 3 to control the light emission operation of the light emission means 2 in accordance with the result and the operation on the operation means 6, the light emission of the light emission means can be controlled when the surroundings are not sufficiently bright. The brightness can be adjusted to a brightness according to the user's preference.
【0013】[0013]
【実施例】以下図面について、本発明の一実施例を詳述
する。BRIEF DESCRIPTION OF THE DRAWINGS FIG.
【0014】図1において、1は本発明による車載用の
LCDの背面照明に用いられるCFL駆動装置を示し、
CFL2とDC12〔V〕でなる車載電源よりCFL2の
駆動用電圧を発生する高電圧発生部としてのインバータ
回路3より構成されている。In FIG. 1, reference numeral 1 denotes a CFL driving device used for backlighting a vehicle-mounted LCD according to the present invention;
It comprises an inverter circuit 3 as a high voltage generator for generating a driving voltage for the CFL 2 from a vehicle-mounted power supply consisting of the CFL 2 and DC 12 [V].
【0015】この実施例の場合、インバータ回路3には
フオトトランジスタ構成で例えばフロントウインドウ周
辺の明るさを検出するフオトセンサ4、車内の温度を検
出し例えば温度が氷点下になるとオン状態になる正特性
サーミスタでなる温度スイツチ5及びCFL2の明るさ
調整用の可変抵抗6が取り付けられている。In this embodiment, the inverter circuit 3 has a phototransistor configuration, for example, a photosensor 4 for detecting the brightness around the front window, and a positive temperature coefficient thermistor for detecting the temperature inside the vehicle and, for example, turning on when the temperature falls below freezing. And a variable resistor 6 for adjusting the brightness of the CFL 2.
【0016】これによりインバータ回路3はフオトセン
サ4が検出したフロントウインドウ周辺の明るさや温度
スイツチ5が検出した車内の温度及びユーザが設定した
可変抵抗6の抵抗値に応じて駆動用電圧を制御し、CF
L2の明るさを調整し得るようになされている。Thus, the inverter circuit 3 controls the driving voltage according to the brightness around the front window detected by the photo sensor 4, the temperature inside the vehicle detected by the temperature switch 5, and the resistance value of the variable resistor 6 set by the user. CF
The brightness of L2 can be adjusted.
【0017】すなわちインバータ回路3は例えばTL4
94等のDIP16ピン構成の集積回路でなるインバータ
用PWM(pluse width modulation)回路7、NPN型
でなるスイツチングトランジスタQ1、PNP型でなる
駆動トランジスタQ2及びQ3、出力トランス8で構成
されている。That is, the inverter circuit 3 is, for example, TL4
The circuit comprises an inverter PWM (plus width modulation) circuit 7, which is an integrated circuit having a DIP 16-pin configuration such as 94, an NPN-type switching transistor Q1, PNP-type drive transistors Q2 and Q3, and an output transformer 8.
【0018】実際上このPWM回路7は、内部で発生し
た鋸歯状波信号を4番ピンに供給されるスレシホールド
電圧VSHと比較し、鋸歯状波信号がスレシホールド電圧
VSHより高い期間の間立ち上がるデユーテイのスイツチ
ングパルスSPWM を発生し、これがPWM回路7の8番
ピン及び11番ピンより出力され、抵抗R1を介してスイ
ツチングトランジスタQ1のベースに供給される。Actually, the PWM circuit 7 compares the internally generated sawtooth signal with the threshold voltage VSH supplied to the fourth pin, and compares the sawtooth signal with the threshold voltage VSH which is higher than the threshold voltage VSH. A switching pulse SPWM of a duty which rises during this period is generated, which is output from the 8th and 11th pins of the PWM circuit 7 and supplied to the base of the switching transistor Q1 via the resistor R1.
【0019】このトランジスタQ1のエミツタにはDC
12〔V〕でなる車載電源+Vが入力され、またこの車載
電源+Vが抵抗R2を介してトランジスタQ1のベース
に入力されている。The emitter of this transistor Q1 is DC
An onboard power supply + V of 12 [V] is input, and this onboard power supply + V is input to the base of the transistor Q1 via the resistor R2.
【0020】これに加えてPWM回路7の12番ピンには
車載電源+Vが駆動電源として供給され、また1番ピ
ン、7番ピン、9番ピン、10番ピン、13番ピン、16番ピ
ンはアースラインGNDに接続されて接地され、さらに
5番ピン及び6番ピンはそれぞれ外付け定数でなるコン
デンサC1及び抵抗R3を通じてアースラインGNDに
接続されて接地されている。In addition, the vehicle power supply + V is supplied as drive power to the twelfth pin of the PWM circuit 7, and the first, seventh, ninth, tenth, thirteenth, and sixteenth pins are provided as drive power. Is connected to the ground line GND and grounded, and the fifth and sixth pins are connected to the ground line GND via a capacitor C1 and a resistor R3 which are external constants, respectively, and are grounded.
【0021】さらにPWM回路7の2番ピン、14番ピン
及び15番ピンは共通接続され、また2番ピンが抵抗R4
を通じて4番ピンと接続されている。またPWM回路7
の4番ピンには、それぞれフオトセンサ4、サーミスタ
5及び可変抵抗6が接続されている。Further, the second pin, the 14th pin and the 15th pin of the PWM circuit 7 are commonly connected, and the second pin is connected to a resistor R4.
Through to the 4th pin. Also, the PWM circuit 7
The fourth pin is connected to a photo sensor 4, a thermistor 5, and a variable resistor 6, respectively.
【0022】またトランジスタQ1のコレクタは、アー
スラインGNDに一端が接続された逆方向ダイオードD
1の他端及びコイルL1を通じて、トランス8の第1の
1次巻線L10の中点タツプに供給されると共に、それ
ぞれ抵抗R5及びR6を通じエミツタがアースラインG
NDに接続されて接地された駆動トランジスタQ2、Q
3のベースに供給されている。The collector of the transistor Q1 is connected to a reverse diode D having one end connected to the ground line GND.
1 and the coil L1 are supplied to the center tap of the first primary winding L10 of the transformer 8, and the emitter is connected to the ground line G through resistors R5 and R6, respectively.
Drive transistors Q2, Q connected to ND and grounded
3 bases.
【0023】トランジスタQ2及びQ3のコレクタ間に
は、第1の1次巻線L10及びコンデンサC2を並列接
続してなる共振回路が接続され、またトランジスタQ2
及びQ3のベース間が第2の1次巻線L11の両端に接
続されている。A resonance circuit having a first primary winding L10 and a capacitor C2 connected in parallel is connected between the collectors of the transistors Q2 and Q3.
And Q3 are connected to both ends of the second primary winding L11.
【0024】これによりトランス8の2次巻線L12か
らは、トランジスタQ1のスイツチング動作に応じてD
C12〔V〕でなる車載電源+Vより、例えばAC1200
〔V〕の高電圧でなる駆動用電圧VCが出力され、これ
がコンデンサC3を通じてCFL2に供給され、この結
果CFL2が点灯される。As a result, the secondary winding L12 of the transformer 8 outputs D from the secondary winding L12 in accordance with the switching operation of the transistor Q1.
From the onboard power supply + V of C12 [V], for example, AC1200
A driving voltage VC having a high voltage of [V] is output and supplied to the CFL2 through the capacitor C3. As a result, the CFL2 is turned on.
【0025】ここでこの実施例のCFL駆動装置1の場
合、PWM回路7の4番ピンに供給するスレシホールド
電圧VSHを、フオトセンサ4、温度センサ5及び可変抵
抗6で制御するようになされている。Here, in the case of the CFL driving device 1 of this embodiment, the threshold voltage VSH supplied to the fourth pin of the PWM circuit 7 is controlled by the photo sensor 4, the temperature sensor 5, and the variable resistor 6. I have.
【0026】このうちフオトセンサ4は配置されたフロ
ントウインドウ周辺の明るさを検出し、明るくなるとス
レシホールド電圧VSHが低くなることにより、PWM回
路7から送出されるスイツチングパルスSPWM の立上り
パルス幅が広がり、この結果駆動用電圧VCが高くなり
CFL2がより明るく点灯される。The photo sensor 4 detects the brightness around the arranged front window, and when it becomes bright, the threshold voltage VSH becomes low. As a result, the driving voltage VC increases, and the CFL 2 is lighted more brightly.
【0027】逆にフロントウインドウ周辺の明るさが暗
くなると、スレシホールド電圧VSHが高くなることによ
り、PWM回路7から送出されるスイツチングパルスS
PWMの立上りパルス幅が狭まり、この結果CFL2が暗
く点灯される。実際上このように、フロントウインドウ
周辺の明るさを表す照度とCFL2の点灯照度との間に
はほぼ比例関係を有するようになされている。Conversely, when the brightness around the front window becomes dark, the threshold voltage VSH becomes high, and the switching pulse S sent from the PWM circuit 7 is sent.
The rising pulse width of the PWM is narrowed, and as a result, CFL2 is lit dark. Actually, as described above, the illuminance indicating the brightness around the front window and the lighting illuminance of the CFL 2 have a substantially proportional relationship.
【0028】なおフロントウインドウ周辺が充分に明る
い状態では、フオトセンサ4が導通状態となることによ
り可変抵抗6の抵抗値は無視し得るのに対し、フロント
ウインドウ周辺が暗い状態では、可変抵抗6の抵抗値に
よつてスレシホールド電圧VSHが変化し、この結果ユー
ザが好みに応じて可変抵抗6を制御すれば、CFL2の
点灯照度を調整することができる。When the periphery of the front window is sufficiently bright, the resistance value of the variable resistor 6 can be neglected because the photo sensor 4 is in a conductive state. On the other hand, when the periphery of the front window is dark, the resistance of the variable resistor 6 is small. The threshold voltage VSH changes depending on the value. As a result, if the user controls the variable resistor 6 as desired, the lighting illuminance of the CFL 2 can be adjusted.
【0029】またフロントウインドウ周辺が暗い状態
で、かつ車内の温度がCFL2の定格電圧入力で点灯保
証される常温(例えば0℃〜50℃でなる)より低いとき
には、温度スイツチ5がオン状態になる。これによりス
レシホールド電圧VSHが0〔V〕の最低値になり、従つ
て駆動用電圧VCが最高値を有し、この結果CFL2が
容易に点灯される。When the surroundings of the front window are dark and the temperature inside the vehicle is lower than the normal temperature (for example, between 0 ° C. and 50 ° C.) at which lighting is guaranteed by the rated voltage input of the CFL 2, the temperature switch 5 is turned on. . As a result, the threshold voltage VSH becomes the lowest value of 0 [V], and accordingly, the driving voltage VC has the highest value. As a result, CFL2 is easily turned on.
【0030】さらにこの温度スイツチ5は車内の温度が
常温まで上がるとオフ状態になり、この結果CFL2の
点灯照度は上述と同様にフオトセンサ4及び可変抵抗6
で制御される。Further, the temperature switch 5 is turned off when the temperature inside the vehicle rises to the normal temperature. As a result, the lighting illuminance of the CFL 2 becomes the photo sensor 4 and the variable resistor 6 in the same manner as described above.
Is controlled by
【0031】以上の構成によれば、フロントウインドウ
周辺の明るさをフオトセンサ4で検出し、この検出結果
に応じてインバータ回路3を制御してCFL2の点灯照
度を制御するようにしたことにより、背面照明をフロン
トウインドウ周辺の明るさに応動させてCFL2を発光
させることができ、かくするにつき車載用として最適な
バツクライトを有するLCDを実現できる。According to the above configuration, the brightness around the front window is detected by the photo sensor 4, and the lighting illuminance of the CFL 2 is controlled by controlling the inverter circuit 3 according to the detection result. The CFL 2 can emit light in response to the brightness of the surroundings of the front window, and thus an LCD having a backlight suitable for use in a vehicle can be realized.
【0032】さらに上述の構成によれば、フロントウイ
ンドウ周辺の明るさに応動してCFL2の点灯照度が暗
いとき、可変抵抗を操作して点灯照度を制御し得るよう
にしたことにより、ユーザの好みに応じた明るさを選択
でき、かくするにつきユーザの使い勝手をさらに一段と
向上し得る。Further, according to the above-mentioned configuration, when the lighting illuminance of the CFL 2 is dark in response to the brightness around the front window, the lighting illuminance can be controlled by operating the variable resistor. Can be selected according to the above, and thus the usability of the user can be further improved.
【0033】なお上述の実施例においては、フオトセン
サをフロントウインドウ周辺に配置し、フロントウイン
ドウ周辺の明るさに応動して、バツクライトの明るさを
制御する場合について述べたが、フオトセンサの配置は
これに限らず、例えば車内のダツシユボード周辺や他の
位置に配置するようにしても良い。In the above embodiment, the case where the photo sensor is arranged around the front window and the brightness of the backlight is controlled in response to the brightness around the front window has been described. However, the arrangement of the photo sensor is not limited to this. However, the present invention is not limited to this. For example, it may be arranged around the dashboard in the vehicle or at another position.
【0034】また上述の実施例においては、本発明を車
載用のLCDでなる表示装置に適用した場合について述
べたが、本発明はこれに限らず、例えばパーソナルコン
ピユータの表示装置等、要は背面照明を有する種々の表
示装置に広く適用して好適なものである。In the above-described embodiment, the case where the present invention is applied to a display device comprising an in-vehicle LCD has been described. However, the present invention is not limited to this. For example, a display device of a personal computer, etc. The present invention is suitable for being widely applied to various display devices having illumination.
【0035】[0035]
【発明の効果】以上のように本発明によれば、所定の発
光手段を背面照明として用いる表示装置において、発光
手段を発光させる発光駆動手段と、周囲の明るさを検出
する明るさ検出手段と、発光手段の発光の明るさを外部
からの操作によつて調整するための操作手段と、明るさ
検出手段の検出結果及び操作手段に対する操作に応じ
て、発光駆動手段を駆動して発光手段の発光動作を制御
する制御手段とを設け、制御手段は、明るさ検出手段の
検出結果に応じて、周囲が充分に明るいときには発光駆
動手段を駆動して発光手段の発光動作を制御し、それ以
外のときには明るさ検出手段の検出結果及び操作手段に
対する操作に応じて、発光駆動手段を駆動して発光手段
の発光動作を制御するようにしたことにより、周囲が充
分に明るいとき以外のときに、発光手段の発光の明るさ
を使用者の好みに応じた明るさに調整することができ、
かくしてユーザの使い勝手を格段的に向上し得る表示装
置を実現できる。As described above, according to the present invention, in a display device using predetermined light emitting means as back lighting, a light emission driving means for causing the light emitting means to emit light, and a brightness detecting means for detecting ambient brightness. Operating means for adjusting the brightness of light emission of the light emitting means by an external operation, and driving the light emitting driving means in accordance with the detection result of the brightness detecting means and the operation on the operating means. Control means for controlling the light emission operation, wherein the control means controls the light emission operation of the light emission means by driving the light emission drive means when the surroundings are sufficiently bright, according to the detection result of the brightness detection means, In the case of, the light emission driving means is driven in accordance with the detection result of the brightness detection means and the operation on the operation means to control the light emission operation of the light emission means, so that when the surroundings are not sufficiently bright Occasionally, it is possible to adjust the brightness in accordance with the user's preference the brightness of light emission of the light emitting means,
Thus, a display device that can significantly improve the user's convenience can be realized.
【図1】本発明による表示装置の一実施例のCFL駆動
装置を示すブロツク図である。FIG. 1 is a block diagram showing a CFL driving device according to one embodiment of a display device according to the present invention.
【図2】CFL駆動装置の回路構成を示す接続図であ
る。FIG. 2 is a connection diagram illustrating a circuit configuration of a CFL driving device.
1……CFL駆動装置、2……CFL、3……インバー
タ回路、4……フオトセンサ、5……温度スイツチ、6
……可変抵抗、7……インバータ用PWM回路、8……
トランス、Q1……スイツチングトランジスタ、Q2、
Q3……駆動トランジスタ。DESCRIPTION OF SYMBOLS 1 ... CFL drive device, 2 ... CFL, 3 ... Inverter circuit, 4 ... Photo sensor, 5 ... Temperature switch, 6
... variable resistor, 7 ... PWM circuit for inverter, 8 ...
Transformer, Q1, switching transistor, Q2,
Q3: A driving transistor.
───────────────────────────────────────────────────── フロントページの続き (56)参考文献 特開 平2−309316(JP,A) 特開 平1−179129(JP,A) 実開 昭63−187188(JP,U) 実開 平2−81524(JP,U) (58)調査した分野(Int.Cl.7,DB名) B60K 35/00 - 37/06 G02F 1/133 535 G09F 9/00 337 G09G 3/36 ──────────────────────────────────────────────────続 き Continuation of front page (56) References JP-A-2-309316 (JP, A) JP-A-1-179129 (JP, A) JP-A-63-187188 (JP, U) JP-A-2-187188 81524 (JP, U) (58) Fields investigated (Int. Cl. 7 , DB name) B60K 35/00-37/06 G02F 1/133 535 G09F 9/00 337 G09G 3/36
Claims (3)
示装置において、 上記発光手段を発光させる発光駆動手段と、 周囲の明るさを検出する明るさ検出手段と、 上記発光手段の上記発光の明るさを外部からの操作によ
つて調整するための操作手段と、 上記明るさ検出手段の検出結果及び上記操作手段に対す
る上記操作に応じて、上記発光駆動手段を駆動して上記
発光手段の発光動作を制御する制御手段とを具え、上記制御手段は、 上記明るさ検出手段の検出結果に応じて、上記周囲が充
分に明るいときには上記発光駆動手段を駆動して上記発
光手段の発光動作を制御し、それ以外のときには上記明
るさ検出手段の検出結果及び上記操作手段に対する上記
操作に応じて、上記発光駆動手段を駆動して上記発光手
段の発光動作を制御する ことを特徴とする表示装置。1. A table using a predetermined light emitting means as a backlight.
A light emission driving means for causing the light emission means to emit light, a brightness detection means for detecting ambient brightness, and an external operation for controlling the brightness of the light emission of the light emission means.
Operating means for adjusting the brightness, and the detection result of the brightness detecting meansas well asFor the above operation means
In response to the operation, the light emission driving unit is driven to
Control means for controlling the light emitting operation of the light emitting means,The control means includes: The surroundings are filled according to the detection result of the brightness detecting means.
When the light is bright enough, the light emission drive means is driven to
Controls the light emission operation of the light means, otherwise,
The detection result of the rust detection means and the
In response to an operation, the light emission driving unit is driven to drive the light emission
Control the light emission operation of the step A display device characterized by the above-mentioned.
さらに具え、 上記制御手段は、 上記周囲が上記充分に明るいとき以外のときであつて、
上記温度検出手段により上記周囲の温度が所定温度より
も低いことが検出された場合に、上記発光手段の点灯を
容易にするように上記発光駆動手段を駆動して、上記発
光手段の発光動作を制御することを特徴とする請求項1
に記載の表示装置。2. The apparatus according to claim 1, further comprising a temperature detecting means for detecting the temperature of the surroundings, wherein said controlling means is provided when the surroundings are not bright enough .
When the temperature detecting unit detects that the ambient temperature is lower than a predetermined temperature, the light emitting driving unit is driven to facilitate lighting of the light emitting unit, and the light emitting operation of the light emitting unit is performed. 2. The method according to claim 1, wherein the control is performed.
The display device according to claim 1.
入力で上記発光手段が点灯保証される温度であることを
特徴とする請求項2に記載の表示装置。3. The display device according to claim 2, wherein the predetermined temperature is a temperature at which lighting of the light emitting unit is guaranteed when a rated power of the light emitting unit is input.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP12526291A JP3344588B2 (en) | 1991-04-26 | 1991-04-26 | Display device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP12526291A JP3344588B2 (en) | 1991-04-26 | 1991-04-26 | Display device |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH04328030A JPH04328030A (en) | 1992-11-17 |
JP3344588B2 true JP3344588B2 (en) | 2002-11-11 |
Family
ID=14905732
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP12526291A Expired - Lifetime JP3344588B2 (en) | 1991-04-26 | 1991-04-26 | Display device |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP3344588B2 (en) |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR100391139B1 (en) * | 1996-09-05 | 2003-10-17 | 페어차일드코리아반도체 주식회사 | Lamp driving circuit for backlight unit of lcd panel |
KR100431335B1 (en) * | 1996-10-24 | 2004-10-08 | 페어차일드코리아반도체 주식회사 | Backlight inverter drive circuit for LCD panel |
KR100483382B1 (en) * | 1997-07-25 | 2005-08-29 | 삼성전자주식회사 | Dc-ac inverter for liquid crystal display |
KR19990056741A (en) * | 1997-12-29 | 1999-07-15 | 김영환 | Inverter Circuit for Backlight Drive |
JP2007219263A (en) * | 2006-02-17 | 2007-08-30 | Mitsubishi Electric Corp | Illumination method and image display device using the method |
-
1991
- 1991-04-26 JP JP12526291A patent/JP3344588B2/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
---|---|
JPH04328030A (en) | 1992-11-17 |
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