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JP4684057B2 - Electronic camera - Google Patents

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JP4684057B2
JP4684057B2 JP2005270478A JP2005270478A JP4684057B2 JP 4684057 B2 JP4684057 B2 JP 4684057B2 JP 2005270478 A JP2005270478 A JP 2005270478A JP 2005270478 A JP2005270478 A JP 2005270478A JP 4684057 B2 JP4684057 B2 JP 4684057B2
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electronic camera
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JP2007079454A (en
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和彦 有井
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Sanyo Electric Co Ltd
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Description

本発明は、自動焦点調整機能と自動露出調節機能を備えた電子スチルカメラなどの電子カメラに関する。   The present invention relates to an electronic camera such as an electronic still camera having an automatic focus adjustment function and an automatic exposure adjustment function.

この種の電子カメラとして、自動焦点調整機能の動作が完了したことを使用者に通知するために、撮影映像信号を表示する表示部にフレーム枠を表示するものが、特許文献1に開示されている。
特開2000−92354号公報 さらに、この種の電子カメラとして、自動露出調整機能の動作が完了したことを使用者に通知するために、撮影映像信号を表示する表示部に露光時間であるシャッター速度スピードを表示するものが、特許文献2に開示されている。 特開2002−290800号公報 そして、昨今の電子カメラでは自動焦点調整機能と自動露出調整機能を共に具備するものが一般的である。焦点調節と露出調節を共に自動で行なうこの種の電子カメラでは、シャッターボタンの半押しに応じて撮影前の調整として焦点調整と露出調整が行なわれる。以下、具体的に説明する。
Patent Document 1 discloses an electronic camera of this type that displays a frame frame on a display unit that displays a captured video signal in order to notify the user that the operation of the automatic focus adjustment function has been completed. Yes.
JP, 2000-92354, A In addition, as an electronic camera of this type, in order to notify the user that the operation of the automatic exposure adjustment function has been completed, a shutter speed that is an exposure time on a display unit that displays a captured video signal A device for displaying the speed is disclosed in Patent Document 2. JP, 2002-290800, A In recent electronic cameras, what has both an automatic focus adjustment function and an automatic exposure adjustment function is common. In this type of electronic camera in which both focus adjustment and exposure adjustment are performed automatically, focus adjustment and exposure adjustment are performed as adjustments before photographing in response to a half-press of the shutter button. This will be specifically described below.

半押しと全押しの2段階を検出するスイッチを操作するシャッターボタンが半押しされると、先ず絞りを開放にし、被写体の輝度レベルを知るために測光処理を行ない、自動焦点調整に最適な露光時間(シャッター速度)や感度レベルを求め設定する。次にフォーカスレンズを光軸方向に無限端点から至近側へ段階的に移動させることによって撮像素子の撮像面とフォーカスレンズとの相対位置を段階的に変化させ、各フォーカスレンズの位置で得られた撮像映像信号の高域成分レベルである焦点評価値から、該焦点評価値が最大値となるフォーカスレンズの位置を検出する所謂山登り方式により自動焦点調整を行ないフォーカスレンズの位置を決定し設定する。次に、前記測光処理により求まっている輝度レベル、又は自動焦点調整完了後に改めて行なう測光処理により求まる輝度レベルを用いて撮影に最適な露出量が得られる絞り値と露光時間を計算し、実際の撮影に用いられる絞り値に設定した状態で再度測光処理を行ない露出量を確認する、所謂自動露出調整を行なう。そして、これらの処理が全て完了した時点で自動焦点調整機能と自動露出調整機能夫々に関する情報表示を行ない、使用者に撮影前の調整が完了したことを通知している。   When the shutter button that operates the switch that detects the two steps of half-press and full-press is pressed halfway, the aperture is first opened, photometry is performed to know the brightness level of the subject, and exposure is optimal for automatic focus adjustment. Obtain and set time (shutter speed) and sensitivity level. Next, by moving the focus lens stepwise in the direction of the optical axis from the infinite end point to the closest side, the relative position between the imaging surface of the image sensor and the focus lens was changed stepwise, and obtained at the position of each focus lens. From the focus evaluation value that is the high-frequency component level of the captured video signal, automatic focus adjustment is performed by a so-called hill-climbing method that detects the position of the focus lens where the focus evaluation value is the maximum value, and the position of the focus lens is determined and set. Next, using the brightness level obtained by the photometry process or the brightness level obtained by the photometry process performed again after completion of the automatic focus adjustment, an aperture value and an exposure time for obtaining an optimal exposure amount for photographing are calculated, and an actual value is calculated. A so-called automatic exposure adjustment is performed in which the photometric process is performed again in a state where the aperture value used for photographing is set to confirm the exposure amount. When all of these processes are completed, information regarding the automatic focus adjustment function and the automatic exposure adjustment function is displayed to notify the user that the adjustment before photographing has been completed.

しかしながら、上記のように、自動焦点調整が完了しているにも係らず自動露出調整が完了してからでないと使用者に通知しないようにすると、使用者に与える自動焦点調整完了までの体感速度が低下してしまうという課題がある。   However, as described above, if the user is not notified only after the automatic exposure adjustment is completed even though the automatic focus adjustment is completed, the perceived speed until the completion of the automatic focus adjustment given to the user. There is a problem that will be reduced.

これに対し、自動露出調整の動作に係らず自動焦点調整が完了したことを即通知するようにすることが対策の一つと考えられるが、そうした場合、撮影自体は自動焦点調整と自動露出調整が共に完了した後、すなわち自動露出調整が完了したことが通知された後で行なうので、被写体が暗くて自動露出調整に時間を要すると、自動焦点調整の完了を通知してから撮影可能となるまでに時間がかかり、使用者に違和感を与えてしまうという課題が生じる。   On the other hand, it is considered that one of the countermeasures is to immediately notify the completion of the automatic focus adjustment regardless of the operation of the automatic exposure adjustment. After both are completed, that is, after it is notified that the automatic exposure adjustment has been completed, if the subject is dark and it takes time to adjust the automatic exposure, it will be possible to take a picture after notifying the completion of the automatic focus adjustment. Takes a long time and causes the user to feel uncomfortable.

本発明は、上記課題を解決するために、電子カメラにおいて、撮像素子の撮像面とフォーカスレンズとの相対位置を変化させることによって合焦動作を行なう自動焦点調整手段と、前記自動焦点調整手段の動作が完了したことを使用者に通知する第1通知手段と、前記自動焦点調整手段の動作完了後に露出量の調整を行ない撮影前に確認測光として前記撮像素子を用いて測光し撮影時に所望の露出量が得られることを確認する自動露出調整手段と、前記自動露出調整手段の動作が完了したことを使用者に通知する第2通知手段と、前記第1通知手段の動作開始前に露出量を検出し検出された露出量を基に前記自動露出調整手段が行なう前記確認測光での露光時間が予め設定された基準時間よりも大きくなるか否かを判別する判別手段と、前記自動露出調整手段が行なう前記確認測光での露光時間が前記基準時間よりも大きくなると前記判別手段が判別した場合、前記第1通知手段の動作を前記自動露出調整手段の動作が完了するまで禁止し、大きくならないと前記判別手段が判別した場合、前記自動露出調整手段の動作完了に係らず前記第1通知手段を動作させる通知制御手段と、を具備した。   In order to solve the above-described problems, the present invention provides an automatic focus adjustment unit that performs a focusing operation by changing a relative position between an imaging surface of an imaging element and a focus lens in an electronic camera, and the automatic focus adjustment unit. A first notification means for notifying the user that the operation is completed, and an exposure amount adjustment after completion of the operation of the automatic focus adjustment means. An automatic exposure adjusting means for confirming that the exposure amount is obtained, a second notification means for notifying the user that the operation of the automatic exposure adjusting means is completed, and an exposure amount before the operation of the first notification means is started. Discriminating means for discriminating whether or not the exposure time in the confirmation photometry performed by the automatic exposure adjusting means based on the detected exposure amount is longer than a preset reference time; and When the determination means determines that the exposure time in the confirmation photometry performed by the dynamic exposure adjustment means is longer than the reference time, the operation of the first notification means is prohibited until the operation of the automatic exposure adjustment means is completed. And a notification control unit that operates the first notification unit regardless of completion of the operation of the automatic exposure adjustment unit when the determination unit determines that it does not increase.

本発明によれば、自動露出調整手段が行なう確認測光での露光時間が大きくなると判別した場合、自動焦点調整手段の動作完了通知が自動露出調整手段の動作が完了するまで禁止されるので、自動焦点調整の完了を通知してから撮影可能となるまでに時間がかかり使用者に違和感を与えてしまうということが防止される。一方、大きくならないと判別した場合、自動露出調整手段の動作完了に係らず自動焦点調整手段の動作完了通知が行なわれるので、使用者に与える自動焦点調整完了までの体感速度を向上させることができる。   According to the present invention, when it is determined that the exposure time in the confirmation metering performed by the automatic exposure adjustment unit is increased, the operation completion notification of the automatic focus adjustment unit is prohibited until the operation of the automatic exposure adjustment unit is completed. It is possible to prevent the user from feeling uncomfortable because it takes a long time from when notification of completion of focus adjustment to when shooting is possible. On the other hand, when it is determined that it does not increase, the completion of the operation of the automatic focus adjustment unit is notified regardless of the completion of the operation of the automatic exposure adjustment unit, so that the sensation speed until the completion of the automatic focus adjustment given to the user can be improved. .

以下図面に従い、本発明の実施の形態について説明する。
図1は、この発明の実施の形態による、電子カメラの機能ブロック図である。図1を参照して、フォーカスレンズ1、絞り機構2を介して入射された入射光は、CCD等の撮像素子3によって光電変換され、CDS/AGC回路4によって撮影画像信号が生成される。生成された撮影画像信号は、A/D変換器5によりデジタル信号に変換された後、信号処理回路6に与えられる。
Embodiments of the present invention will be described below with reference to the drawings.
FIG. 1 is a functional block diagram of an electronic camera according to an embodiment of the present invention. Referring to FIG. 1, incident light incident through a focus lens 1 and a diaphragm mechanism 2 is photoelectrically converted by an image pickup device 3 such as a CCD, and a photographed image signal is generated by a CDS / AGC circuit 4. The generated captured image signal is converted into a digital signal by the A / D converter 5 and then applied to the signal processing circuit 6.

信号処理回路6は、与えられたデジタルの撮影画像信号に、色分離処理などの周知の信号処理を施した後、周知の自動ホワイトバランス調整を施し、撮影画像信号のフィールドごと(1画面ごと)に画像データを順次形成してバッファメモリであるSDRAM7に与える。   The signal processing circuit 6 performs known signal processing such as color separation processing on a given digital photographed image signal, and then performs known automatic white balance adjustment for each field (one screen) of the photographed image signal. The image data is sequentially formed and supplied to the SDRAM 7 which is a buffer memory.

SDRAM7は、入力されたフィールド単位の画像データを次から次へと順次記憶し、記憶した各フィールドごとの画像データを信号処理回路6を介してモニター8に出力し表示する。また、シャッターボタン14を操作することによって行なわれる撮影動作では、SDRAM7に記憶された1画面分の画像データは信号処理回路6にてソフトウェア的に圧縮して、メモリカード9に記録される。   The SDRAM 7 sequentially stores the input field unit image data from one to the next, and outputs the stored image data for each field to the monitor 8 via the signal processing circuit 6 for display. In the photographing operation performed by operating the shutter button 14, image data for one screen stored in the SDRAM 7 is compressed by the signal processing circuit 6 in terms of software and recorded in the memory card 9.

なお、フォーカスレンズ1はドライバー1bによって駆動されるモータ1aによって駆動され、絞り機構2はドライバー2bによって駆動されるモータ2aによって駆動され、撮像素子3はTG回路(タイミングジェネレータ回路)3aによって駆動される。また、焦点評価回路10には撮影画像信号が信号処理回路6より入力され、撮影画像信号の高域成分レベルである焦点評価値を算出し制御回路12に与える。制御回路12では、該焦点評価値が最大値となるフォーカスレンズ1の位置を検出する所謂山登り方式により自動焦点調整を行ないフォーカスレンズ1の位置を検出しフォーカスレンズ1の位置を設定する。露出評価回路11には撮像画像信号が信号処理回路6より入力され、撮像画像信号の輝度レベルである露出評価値を算出し制御回路12に与える。制御回路12では、該露出評価値を用いて撮影に最適な露出量が得られる絞り値と露光時間を計算し、絞り機構2の絞り値、撮像素子3の露光時間、CDS/AGC回路4のゲインを設定する。   The focus lens 1 is driven by a motor 1a driven by a driver 1b, the diaphragm mechanism 2 is driven by a motor 2a driven by a driver 2b, and the image sensor 3 is driven by a TG circuit (timing generator circuit) 3a. . Further, the photographed image signal is input from the signal processing circuit 6 to the focus evaluation circuit 10, and a focus evaluation value that is a high frequency component level of the photographed image signal is calculated and supplied to the control circuit 12. In the control circuit 12, automatic focus adjustment is performed by a so-called hill-climbing method for detecting the position of the focus lens 1 at which the focus evaluation value becomes the maximum value, and the position of the focus lens 1 is detected and the position of the focus lens 1 is set. A captured image signal is input from the signal processing circuit 6 to the exposure evaluation circuit 11, and an exposure evaluation value that is a luminance level of the captured image signal is calculated and supplied to the control circuit 12. The control circuit 12 uses the exposure evaluation value to calculate an aperture value and an exposure time at which an optimum exposure amount for photographing is obtained. The aperture value of the aperture mechanism 2, the exposure time of the image sensor 3, and the CDS / AGC circuit 4 Set the gain.

また、スピーカー13は制御回路12によって制御され、使用者に音で情報を伝える機能を果たす。シャッターボタン14は半押しと全押しの2段階を検出するスイッチを操作し、その検出結果を制御回路12に与える。   The speaker 13 is controlled by the control circuit 12 and functions to convey information to the user with sound. The shutter button 14 operates a switch for detecting two stages of half-press and full-press, and gives the detection result to the control circuit 12.

次に、制御回路12を中心とする電子カメラのシャッターボタン14の半押し時の動作について図2ないし図4に示したフローチャートを用いて説明する。シャッターボタン14の半押しが検出されると絞り機構2を全開とし(S1)、撮像素子3より信号処理回路6を介して露出評価回路11に画像データに含まれる輝度データを取り込み、得られた輝度データを1画面分積算することにより被写体の輝度レベルである露出評価値を算出する(S3)。そして、後ほど行なわれる露出調整に時間を要するか否かを示すフラグFを設定する(S5)。   Next, an operation when the shutter button 14 of the electronic camera centering on the control circuit 12 is half-pressed will be described with reference to the flowcharts shown in FIGS. When half-pressing of the shutter button 14 is detected, the aperture mechanism 2 is fully opened (S1), and brightness data included in the image data is obtained from the image sensor 3 via the signal processing circuit 6 into the exposure evaluation circuit 11 and obtained. By integrating the luminance data for one screen, an exposure evaluation value that is the luminance level of the subject is calculated (S3). Then, a flag F indicating whether or not it takes time for exposure adjustment performed later is set (S5).

フラグFの設定処理は、図4に示すフローチャートに従って行なわれる。ステップS3によって得られた輝度データより算出された露出評価値Aと、撮像素子3における電子シャッター機能によって設定されていたステップS3実行時の露光時間Tを基に、撮像素子3のフレームレートにおいて最大となる露光時間L(例えばフレームレートが30fpsであれば露光時間Lは1/30秒)における露出量を示す露出評価値Bを式1を用いて計算により求める(S501)。   The flag F setting process is performed according to the flowchart shown in FIG. Based on the exposure evaluation value A calculated from the luminance data obtained in step S3 and the exposure time T at the time of execution of step S3 set by the electronic shutter function in the image sensor 3, the maximum frame rate of the image sensor 3 is obtained. An exposure evaluation value B indicating an exposure amount at an exposure time L (for example, if the frame rate is 30 fps, the exposure time L is 1/30 seconds) is calculated by using Formula 1 (S501).

Figure 0004684057
Figure 0004684057

そして、算出された露出評価値Bと目標とする最適露出量を示す最適露出評価値Sとを比較して100分率に変換したものを夜景率と定義し、式2を用いて夜景率Yを算出する(S503)。   Then, the calculated exposure evaluation value B and the optimum exposure evaluation value S indicating the target optimum exposure amount are converted into a 100-percentage rate and defined as a night view rate. Is calculated (S503).

Figure 0004684057
Figure 0004684057

露光時間Lで十分な露出量が確保できる場合、すなわち被写体が明るい場合、夜景率Yは0%よりも小さくなる。被写体が徐々に暗くなっていくにつれ、同じ露光時間Lでも確保できる露出量が減少していく。確保できなかった割合が夜景率である。 When a sufficient exposure amount can be ensured with the exposure time L, that is, when the subject is bright, the night view rate Y is smaller than 0%. As the subject gradually becomes darker, the amount of exposure that can be secured even with the same exposure time L decreases. The ratio that could not be secured is the night view rate.

次に、算出された夜景率Yが0%よりも大きいか否か、すなわち露光時間Lでは露出量が不足するか否かを判別する(S505)。絞り機構2が全開であるにもかかわらず露光時間Lでも露出量が不足するということは、最適露出を得るには1フレーム期間よりも長い露光時間を必要とするということであり、長い露光時間を必要とするのであれば撮影前の露出量の確認に時間を要し露出調整に係る時間が長くなるということである。従ってステップS505において、夜景率Yが0%よりも大きいと判別すれば撮影前の露出量の確認に時間を要することを示すようにフラグFの値を1とし(S507)、そうでなければフラグFの値を0とする(S509)。なお、1回の露光に必要な撮像素子3の駆動期間はフレーム期間単位で設定されるため、露光時間Lよりも長い露光時間にて撮影し信号を出力するために、撮像素子は2フレーム期間以上の時間を必要とする。露光時間Lよりも僅かに長い露光時間であっても撮像素子は2フレーム期間駆動させなければならない。   Next, it is determined whether or not the calculated night view rate Y is greater than 0%, that is, whether or not the exposure amount is insufficient in the exposure time L (S505). The fact that the exposure amount is insufficient even in the exposure time L even though the aperture mechanism 2 is fully open means that an exposure time longer than one frame period is required to obtain the optimum exposure, and a long exposure time. If it is necessary, it takes time to confirm the exposure amount before photographing, and the time for exposure adjustment becomes longer. Accordingly, in step S505, if it is determined that the night view rate Y is greater than 0%, the value of the flag F is set to 1 so as to indicate that it takes time to check the exposure before shooting (S507). The value of F is set to 0 (S509). Since the drive period of the image sensor 3 required for one exposure is set in units of frame periods, the image sensor has a two-frame period in order to shoot and output a signal with an exposure time longer than the exposure time L. It requires more time. Even if the exposure time is slightly longer than the exposure time L, the image sensor must be driven for two frame periods.

次に、図2に示すフローチャートに戻り、フォーカスレンズ1を光軸方向に無限端点から至近側へ段階的に移動させることによって撮像素子3の撮像面とフォーカスレンズ1との相対位置を段階的に変化させ、各フォーカスレンズの位置で焦点評価回路10にて算出された撮影画像信号の高域成分レベルである焦点評価値から、該焦点評価値が最大値となるフォーカスレンズ1の位置、すなわち合焦位置を検出する(S7)。そして、合焦位置を検出することができたならば該合焦位置にフォーカスレンズ1を設定し(S9、S11)、できなかったならば所定位置にフォーカスレンズ1を設定する(S9、S13)。所定位置とは被写体が存在する可能性が高い焦点位置として予め定められた位置であり、所定位置への設定はステップS7のエラー処理として実施される。   Next, returning to the flowchart shown in FIG. 2, the relative position between the imaging surface of the imaging device 3 and the focus lens 1 is changed stepwise by moving the focus lens 1 stepwise from the infinite end point in the optical axis direction. From the focus evaluation value that is the high-frequency component level of the photographed image signal calculated by the focus evaluation circuit 10 at the position of each focus lens, the position of the focus lens 1 at which the focus evaluation value becomes the maximum value, that is, the alignment value. A focal position is detected (S7). If the in-focus position can be detected, the focus lens 1 is set at the in-focus position (S9, S11). If not, the focus lens 1 is set at a predetermined position (S9, S13). . The predetermined position is a position determined in advance as a focal position where there is a high possibility that the subject exists, and the setting to the predetermined position is performed as error processing in step S7.

次にフラグFの値が0か否かを判別し(S15)、0であればステップS7〜S13による自動焦点調整が完了したことを使用者に通知するために、図*に示すように枠10aをモニター8上に表示すると共に、スピーカ13より音を発生させる(S17)。これによって、使用者に与える自動焦点調整完了までの体感速度を向上させるている。但し、0でなければステップ17は行わない。   Next, it is determined whether or not the value of the flag F is 0 (S15). If it is 0, a frame as shown in FIG. * Is used to notify the user that the automatic focus adjustment in steps S7 to S13 has been completed. 10a is displayed on the monitor 8 and a sound is generated from the speaker 13 (S17). This improves the sensation speed until completion of automatic focus adjustment given to the user. However, if it is not 0, step 17 is not performed.

そして、撮像素子3より信号処理回路6を介して露出評価回路11にて輝度データを取り込み、取り込んだ輝度データを1画面分積算することにより被写体の輝度レベルである露出評価値を改めて算出する(S19)。算出された露出評価値を基に電子カメラとして周知のプログラム線図処理を行ない、絞り値と露光時間を決定する(S21)。そして、決定された絞り値となるように絞り機構2を駆動して設定し(S23)、決定された露光時間となるように撮像素子3の電子シャッターや信号読み出しのタイミングを制御し露光を行ない、該露光によって得られた輝度データを取り込み露出評価値を算出する(S25)。得られた露出評価値により最適な露出量が得られたことが確認できたか否かを判別し(S27)、得られなかったと判断した場合、露光時間の調整を行ない(S29)、再度ステップS25の輝度データ取り込み、ステップS27の確認を行なう。   Then, the exposure evaluation circuit 11 captures the luminance data from the image sensor 3 via the signal processing circuit 6, and calculates the exposure evaluation value, which is the luminance level of the subject, by integrating the acquired luminance data for one screen ( S19). Based on the calculated exposure evaluation value, a program diagram process known as an electronic camera is performed to determine an aperture value and an exposure time (S21). Then, the aperture mechanism 2 is driven and set so as to achieve the determined aperture value (S23), and exposure is performed by controlling the electronic shutter of the image sensor 3 and the signal readout timing so as to achieve the determined exposure time. Then, the luminance data obtained by the exposure is taken in and an exposure evaluation value is calculated (S25). It is determined whether or not it has been confirmed that the optimum exposure amount has been obtained based on the obtained exposure evaluation value (S27). If it is determined that it has not been obtained, the exposure time is adjusted (S29), and step S25 is performed again. Luminance data is fetched and the confirmation in step S27 is performed.

ステップS27にて最適な露出量が得られたことが確認されると、次にフラグFの値が1か否かを判別し(S31)、1であればステップS7〜S13による自動焦点調整が完了したことを使用者に通知するために、図5に示すように枠10aをモニター8上に表示すると共に、スピーカ13より音を発生させる(S33)。1でなければ、自動焦点調整が完了したことの通知はステップS17で既に行われているため、ステップ33は行わない。   When it is confirmed in step S27 that the optimum exposure amount has been obtained, it is next determined whether or not the value of the flag F is 1 (S31), and if it is 1, automatic focus adjustment in steps S7 to S13 is performed. In order to notify the user of completion, a frame 10a is displayed on the monitor 8 as shown in FIG. 5, and a sound is generated from the speaker 13 (S33). If not 1, the notification that the automatic focus adjustment has been completed has already been performed in step S17, and therefore step 33 is not performed.

そして、調整された絞り量11aと露光時間(シャッター速度)11bを図6に示すようにモニター8上に表示して自動露出調整が完了したことを使用者に通知し(S35)、シャッターボタン14の半押し時の動作が完了する。なお、図6に示した絞り量11aと露光時間11bを示す数値は一例である。ステップS15、S31〜S35により、自動焦点調整の完了を通知してから撮影可能となるまでに時間がかかり使用者に違和感を与えてしまうということが防止されている。   Then, the adjusted aperture amount 11a and exposure time (shutter speed) 11b are displayed on the monitor 8 as shown in FIG. 6 to notify the user that automatic exposure adjustment has been completed (S35), and the shutter button 14 The operation when half-pressing is completed. The numerical values indicating the aperture amount 11a and the exposure time 11b shown in FIG. 6 are examples. Steps S15 and S31 to S35 prevent the user from feeling uncomfortable because it takes a long time from when the completion of automatic focus adjustment is notified until shooting is possible.

次に、図3に示すフローチャートに進む。シャッターボタン14の全押しが検出されると(S37)、設定済みの絞り量と調整済みの露光時間にて記録画像データを得るための本露光を行なう(S41)。そして撮像素子3より読み出しを行ない(S43)、信号処理回路6にて記録信号作成のための信号処理及び圧縮を行ない(S45)、メモリーカードに書き込み記録する(S47)。一方、ステップS37にてシャッターボタン14の全押しが検出されなければ、シャッターボタン14の半押しが解除されるまで待機し(S39)、シャッターボタン14の半押しが解除されると終了する。   Next, the process proceeds to the flowchart shown in FIG. When the full press of the shutter button 14 is detected (S37), the main exposure is performed to obtain the recorded image data with the set aperture amount and the adjusted exposure time (S41). Then, reading from the image pickup device 3 is performed (S43), signal processing and compression for creating a recording signal are performed by the signal processing circuit 6 (S45), and writing and recording on the memory card (S47). On the other hand, if full-pressing of the shutter button 14 is not detected in step S37, the process waits until the half-pressing of the shutter button 14 is released (S39), and ends when the half-pressing of the shutter button 14 is released.

以上、本発明の実施例について説明したが、自動露出調整手段が行なう確認測光での露光時間が長いか短いかの判断に用いる基準時間は、撮像素子のフレームレートにおいて最大となる露光時間に限定されるものではなく、任意に設定でき、例えば2フレーム期間を基準時間に設定しても良い。   Although the embodiments of the present invention have been described above, the reference time used for determining whether the exposure time in the confirmation photometry performed by the automatic exposure adjusting means is long or short is limited to the exposure time that is maximum at the frame rate of the image sensor. However, it can be arbitrarily set. For example, a two-frame period may be set as the reference time.

さらに、自動焦点調整が完了したことを使用者に通知するために表示される枠を、画面上で焦点評価値を抽出する領域を示すフレーム枠とすることもできる。また、完了を通知するための表示はモニター上ではなく別途発光体による発光を行なっても良い。   Furthermore, the frame displayed for notifying the user that the automatic focus adjustment has been completed can be a frame frame indicating a region for extracting a focus evaluation value on the screen. In addition, the display for notifying completion may be performed separately by the light emitter instead of on the monitor.

また、自動焦点調整は撮像素子から得られる撮影画像信号の高域成分レベルを焦点評価値として検出することにより焦点調整を行なう山登り方式の他に、赤外線や超音波を用いるものを採用することも可能である。   In addition to the hill-climbing method that performs focus adjustment by detecting the high-frequency component level of the captured image signal obtained from the image sensor as the focus evaluation value, automatic focus adjustment may employ an infrared or ultrasonic method. Is possible.

さらに、自動露出調整手段の動作が完了したことを使用者に通知するために、撮影時に設定する露光時間と絞り量の値そのものを表示する必要は無く、「露出調整完了」の文字や予め意味づけされたキャラクターやアイコン、若しくは図形を表示するようにしても良い。   Furthermore, in order to notify the user that the operation of the automatic exposure adjustment means has been completed, it is not necessary to display the exposure time and aperture value set at the time of shooting. You may make it display the attached character, an icon, or a figure.

また、自動露出調整手段の動作完了とは記録撮影時に用いる露光時間と絞り量の値が決定することである。そして、記録撮影時に行なう本露光ではそれまでとは異なる駆動方法で撮像素子を駆動するために、本露光時に露光時間や絞り量の値を改めて設定する必要があるものであっても、記録撮影時に用いる露光時間と絞り量の値が決定した状態となれば自動露出調整手段の動作完了である。本露光時に露光時間や絞り量の値を改めて設定する必要があるものであれば、図3に示したフローチャートのステップS37とステップS41の間に、露光時間と絞り量の最終設定を行なうことになる。


Further, the completion of the operation of the automatic exposure adjustment means is to determine the exposure time and aperture value to be used during recording photography. In the main exposure performed at the time of recording and shooting, since the image pickup device is driven by a driving method different from the conventional one, even if the exposure time and the aperture value need to be set again at the time of main exposure, the recording and shooting are performed. When the exposure time and aperture value used at times are determined, the operation of the automatic exposure adjusting means is completed. If it is necessary to newly set the exposure time and aperture value during the main exposure, the final setting of the exposure time and aperture amount is performed between step S37 and step S41 in the flowchart shown in FIG. Become.


本発明の実施例である電子カメラの機能ブロック図である。It is a functional block diagram of the electronic camera which is an Example of this invention. 本発明の実施例である電子カメラの動作を示すフローチャートである。It is a flowchart which shows operation | movement of the electronic camera which is an Example of this invention. 本発明の実施例である電子カメラの動作を示すフローチャートである。It is a flowchart which shows operation | movement of the electronic camera which is an Example of this invention. 本発明の実施例である電子カメラの動作を示すフローチャートである。It is a flowchart which shows operation | movement of the electronic camera which is an Example of this invention. 本発明の実施例である電子カメラの動作を示す説明図である。It is explanatory drawing which shows operation | movement of the electronic camera which is an Example of this invention. 本発明の実施例である電子カメラの動作を示す説明図である。It is explanatory drawing which shows operation | movement of the electronic camera which is an Example of this invention.

符号の説明Explanation of symbols

1 フォーカスレンズ
2 絞り機構
3 撮像素子
6 信号処理回路
8 モニター
10 焦点評価回路
11 露出評価回路
12 制御回路
13 スピーカ
14 シャッターボタン
DESCRIPTION OF SYMBOLS 1 Focus lens 2 Aperture mechanism 3 Image pick-up element 6 Signal processing circuit 8 Monitor 10 Focus evaluation circuit 11 Exposure evaluation circuit 12 Control circuit 13 Speaker 14 Shutter button

Claims (5)

撮像素子の撮像面とフォーカスレンズとの相対位置を変化させることによって合焦動作を行なう自動焦点調整手段と、
前記自動焦点調整手段の動作が完了したことを使用者に通知する第1通知手段と、
前記自動焦点調整手段の動作完了後に露出量の調整を行ない撮影前に確認測光として前記撮像素子を用いて測光し撮影時に所望の露出量が得られることを確認する自動露出調整手段と、
前記自動露出調整手段の動作が完了したことを使用者に通知する第2通知手段と、
前記第1通知手段の動作開始前に露出量を検出し検出された露出量を基に前記自動露出調整手段が行なう前記確認測光での露光時間が予め設定された基準時間よりも大きくなるか否かを判別する判別手段と、
前記自動露出調整手段が行なう前記確認測光での露光時間が前記基準時間よりも大きくなると前記判別手段が判別した場合、前記第1通知手段の動作を前記自動露出調整手段の動作が完了するまで禁止し、大きくならないと前記判別手段が判別した場合、前記自動露出調整手段の動作完了に係らず前記第1通知手段を動作させる通知制御手段と、
を具備することを特徴とする電子カメラ。
Automatic focus adjustment means for performing a focusing operation by changing the relative position between the imaging surface of the imaging element and the focus lens;
First notification means for notifying a user that the operation of the automatic focus adjustment means has been completed;
Automatic exposure adjustment means for adjusting the exposure amount after completion of the operation of the automatic focus adjustment means and performing photometry using the image sensor as photometry for confirmation before photographing and confirming that a desired exposure amount is obtained at the time of photographing;
Second notification means for notifying a user that the operation of the automatic exposure adjustment means has been completed;
Whether or not the exposure time in the confirmation photometry performed by the automatic exposure adjustment unit based on the detected exposure amount before the start of the operation of the first notification unit is longer than a preset reference time. Determining means for determining whether or not
When the determining means determines that the exposure time in the confirmation metering performed by the automatic exposure adjusting means is longer than the reference time, the operation of the first notification means is prohibited until the operation of the automatic exposure adjusting means is completed. And a notification control means for operating the first notification means regardless of completion of the operation of the automatic exposure adjustment means when the determination means determines that it does not increase,
An electronic camera comprising:
前記自動焦点調整手段は、前記撮像素子から得られる撮影画像信号の高域成分レベルを焦点評価値として検出することにより焦点調整を行うことを特徴とする請求項1記載の電子カメラ。   The electronic camera according to claim 1, wherein the automatic focus adjustment unit performs focus adjustment by detecting a high frequency component level of a captured image signal obtained from the image sensor as a focus evaluation value. 前記第1通知手段は、撮影画像信号を表示するモニター上にキャラクター若しくは図形を表示することによって前記自動焦点調整手段の動作が完了したことを使用者に通知することを特徴とする請求項1記載の電子カメラ。   2. The first notification means notifies a user that the operation of the automatic focus adjustment means is completed by displaying a character or a graphic on a monitor that displays a photographed image signal. Electronic camera. 前記第2通知手段は、前記自動露出調整手段が撮影時に設定する露光時間と絞り量の値を表示手段を用いて表示することによって前記自動露出調整手段の動作が完了したことを使用者に通知することを特徴とする請求項1記載の電子カメラ。   The second notifying unit notifies the user that the operation of the automatic exposure adjusting unit has been completed by displaying the exposure time and aperture value set by the automatic exposure adjusting unit at the time of shooting using the display unit. The electronic camera according to claim 1, wherein: 前記自動露出調整手段の動作完了とは撮影時に用いる露光時間と絞り量の値が決定することであることを特徴とする請求項1記載の電子カメラ。

2. The electronic camera according to claim 1, wherein the completion of the operation of the automatic exposure adjustment means is to determine an exposure time and an aperture value used at the time of photographing.

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Citations (4)

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Publication number Priority date Publication date Assignee Title
JPH02141071A (en) * 1988-11-21 1990-05-30 Fuji Photo Film Co Ltd Electronic still camera
JP2002023240A (en) * 2000-07-05 2002-01-23 Nikon Corp Display controller of camera
JP2004208122A (en) * 2002-12-26 2004-07-22 Sony Corp Image pickup device, method and program
JP2005215206A (en) * 2004-01-28 2005-08-11 Canon Inc Imaging unit, imaging method, program, and storage medium

Patent Citations (4)

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Publication number Priority date Publication date Assignee Title
JPH02141071A (en) * 1988-11-21 1990-05-30 Fuji Photo Film Co Ltd Electronic still camera
JP2002023240A (en) * 2000-07-05 2002-01-23 Nikon Corp Display controller of camera
JP2004208122A (en) * 2002-12-26 2004-07-22 Sony Corp Image pickup device, method and program
JP2005215206A (en) * 2004-01-28 2005-08-11 Canon Inc Imaging unit, imaging method, program, and storage medium

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