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JPH01298878A - Automatic diaphragm - Google Patents

Automatic diaphragm

Info

Publication number
JPH01298878A
JPH01298878A JP63130569A JP13056988A JPH01298878A JP H01298878 A JPH01298878 A JP H01298878A JP 63130569 A JP63130569 A JP 63130569A JP 13056988 A JP13056988 A JP 13056988A JP H01298878 A JPH01298878 A JP H01298878A
Authority
JP
Japan
Prior art keywords
range
pick
level
photometric
signal
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.)
Pending
Application number
JP63130569A
Other languages
Japanese (ja)
Inventor
Hiroyuki Takenaga
武長 博之
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.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
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 Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP63130569A priority Critical patent/JPH01298878A/en
Publication of JPH01298878A publication Critical patent/JPH01298878A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To adjust the diaphragm automatically so as to always obtain a pick up signal of a proper level even if the pick up condition is subject to change by switching the photometric range in response to the pick up condition. CONSTITUTION:The 1st photometric range setting circuit 9 sets a photometric range 31 to a part nearly below the middle part of a pick up pattern 20 suitable for outdoor pick up where a light background such as the sky frequently comes around the center of pattern and outputs a photometric range indication signal S1 at an H level in the photometric range 31 and at an L level at other than the said range. Moreover, the 2nd photometric range setting circuit 10 eliminates an upper part of the pick up pattern 20 from a photometric range 32 so as to be suitable for the case of indoor pick up where a bright light source such as a fluorescent light exists only at the upper part of the pick up pattern 20 and outputs a photometric range indication signal S2 at an H level in the photometric range 32 and at an L level at other than the said range. Then a switch 11 is changed over depending whether the pick up condition is outdoor or indoor. Thus, a pick up signal with a proper level is always obtained.

Description

【発明の詳細な説明】 [産業上の利用分野] この発明は、ビデオカメラ等の撮像装置に使用される自
動絞り装置に関する。
DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to an automatic aperture device used in an imaging device such as a video camera.

[従来の技術] 第5図は、従来の自動絞り装置の1例を示すブロック回
路図である0図において(1)はレンズ、(2)は絞り
、(3)は撮像部、(7)は測光範囲設定回路、(4)
は測光回路で、測光範囲設定回路(7)で設定された測
光範囲の撮像信号を通過させる。(5)は検波回路で、
入力された撮像信号の平均用るさに相当するレベルの測
光信号を出力する。(6)は絞り制御回路で、測光信号
のレベルが、予め定めたレベルとなるように絞り(2)
を調節する。(8)はビデオ信号処理回路である。
[Prior Art] Fig. 5 is a block circuit diagram showing an example of a conventional automatic aperture device. In Fig. 0, (1) is a lens, (2) is an aperture, (3) is an imaging unit, and (7) is the photometry range setting circuit, (4)
is a photometry circuit that passes an imaging signal within the photometry range set by the photometry range setting circuit (7). (5) is a detection circuit,
A photometric signal of a level corresponding to the average usage of the input imaging signal is output. (6) is an aperture control circuit that controls the aperture (2) so that the level of the photometric signal becomes a predetermined level.
Adjust. (8) is a video signal processing circuit.

次に動作について説明する。レンズ(1)を通って入射
した像光は、絞り(2)を通って撮像部(3)の撮像面
上に結像し、入射しだ像光の明るさに応じたレベルの撮
像信号が出力される。他方、測光範囲設定回路(7)は
、第6図に示すように、撮像画面(20)上に予め定め
た測光範囲(30)を指示する信号Soを出力する。こ
の測光範囲指示信号SOは、第6図に示すように、測光
範囲(30)内は“H+tレベル、それ以外の範囲は“
L′°レベルとなる信号で、この例では、Il像画面(
20)の4一方の部分が除かれている。測光回路(4)
は、測光範囲指示信号Soが“H”レベルのときだけ撮
像部(3)より入力された撮像信号を通過させ、この撮
像信号は検波回路(5)で積分されて撮像信号の測光範
囲(30)の平均用るさに対応したレベルの測光信号と
なって絞り制御回路(6)に加えられ、入力される測光
信号が予め定めたレベルになるように絞り(2)を調節
する。この結果、適正なレベルの撮像信号がビデオ信号
処理回路(8)に入力されることになる。なお、測光範
囲(30)に撮像画面(20)の上方の部分を含めない
理由は、一般に撮影を行うとき、撮像画面(20)の上
方の部分に、空や電灯等の明るい背景が表われることが
多Z、この場合には、この部分を測光範囲(30)に含
めると。
Next, the operation will be explained. The image light that enters through the lens (1) passes through the aperture (2) and forms an image on the imaging surface of the imaging unit (3), and an imaging signal with a level corresponding to the brightness of the incident image light is generated. Output. On the other hand, the photometry range setting circuit (7) outputs a signal So indicating a predetermined photometry range (30) on the imaging screen (20), as shown in FIG. As shown in FIG. 6, this photometry range instruction signal SO is "H+t level" within the photometry range (30), and "H+t level" in other ranges.
This is a signal that becomes L'° level, and in this example, the Il image screen (
20) One part of 4 has been removed. Photometric circuit (4)
allows the imaging signal input from the imaging section (3) to pass only when the photometry range instruction signal So is at the "H" level, and this imaging signal is integrated by the detection circuit (5) to determine the photometry range (30 ) is applied to the aperture control circuit (6), and the aperture (2) is adjusted so that the input photometric signal reaches a predetermined level. As a result, an image signal of an appropriate level is input to the video signal processing circuit (8). The reason why the upper part of the imaging screen (20) is not included in the photometry range (30) is that when taking pictures, bright backgrounds such as the sky or electric lights generally appear in the upper part of the imaging screen (20). In this case, this part is included in the photometry range (30).

被写体の実際の明るさに相当するレベルより高いレベル
の測光信号が検出されるため絞り(2)が閉じられ、撮
像信号が適正なレベルより暗くなるので、これを避ける
ためである。
This is to avoid the situation where the diaphragm (2) is closed because a photometric signal at a level higher than the level corresponding to the actual brightness of the subject is detected, and the imaging signal becomes darker than the appropriate level.

[発明が解決しようとする課題] 従来の自動絞り装置は以上のように測光範囲が固定され
ているため、空などの明るい背景が画面の中心部付近ま
でくることが多い屋外撮影の場合に適合するように測光
範囲を定めると蛍光灯等の明るい光源が画面の上方にの
みあることが多い屋内撮影の場合には被写体の撮像信号
が暗くなり、逆に、屋内撮影の場合に適合するように測
光範囲を設定すると、屋外撮影の場合に明るくなりすぎ
るという問題点があり、測光範囲を屋外と屋内の中間に
設定すると、屋外、屋内とも、適正なレベルの撮像信号
が得られないという問題点があった。
[Problem to be solved by the invention] As the conventional automatic aperture device has a fixed metering range as described above, it is suitable for outdoor shooting where bright backgrounds such as the sky often come close to the center of the screen. If you set the metering range in such a way, the imaging signal of the subject will become darker when shooting indoors, where bright light sources such as fluorescent lights are often located only above the screen. If you set the metering range, there is a problem that the camera becomes too bright when shooting outdoors, and if you set the metering range between outdoors and indoors, you will not be able to obtain an appropriate level of imaging signal both outdoors and indoors. was there.

この発明は上記のような問題点を解消するためになされ
たもので、屋外撮影および屋内撮影など、撮影条件が変
った場合でも、常に適正なレベルの撮像信号が得られる
絞り調節を行うことができる自動絞り装置を得ることを
目的とする。
This invention was made to solve the above-mentioned problems, and it is possible to adjust the aperture so that an image signal of an appropriate level can always be obtained even when the shooting conditions change, such as when shooting outdoors or indoors. The purpose is to obtain an automatic squeezing device that can

[課題を解決するための手段] この発明に係る自動絞り装置は、撮像画面上に設定した
測光範囲を、各種の撮影条件に応じて、それぞれ適正な
レベルの撮像信号が得られるように切り換える手段を備
えた点を特徴とする。
[Means for Solving the Problems] The automatic diaphragm device according to the present invention has means for switching the photometry range set on the imaging screen so as to obtain imaging signals of respective appropriate levels according to various imaging conditions. It is characterized by the following.

[作用] この発明における測光範囲切換手段は、撮影条件に応じ
て測光範囲を切り換えるので、撮影条件が変っても、常
に適正なレベルの撮像信号が得られるように、絞りを自
動的に調節する。
[Function] The photometric range switching means of the present invention switches the photometric range according to the shooting conditions, so that even if the shooting conditions change, the aperture is automatically adjusted so that an image signal at an appropriate level is always obtained. .

[発明の実施例] 以下、この発明の一実施例を図について説明する。第1
図において、第5図と同一符号は、それぞれ同一部分を
示しているので説明を省略する。
[Embodiment of the Invention] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. 1st
In the figure, the same reference numerals as in FIG. 5 indicate the same parts, so the explanation will be omitted.

(9)は屋外撮影用の測光範囲指示信号slを出力する
第1の測光範囲設定回路、 (10)は屋内撮影用の測
光範囲指示信号S2を出力する第2の測光範囲設定回路
、(11)は、屋外撮影か屋内撮影かに応じて第1.第
2の測光範囲設定回路(9)  、 (10)の出力信
号を切り換えて測光回路(4)に入力するスイッチであ
る。
(9) is a first photometric range setting circuit that outputs a photometric range instruction signal sl for outdoor photography; (10) is a second photometric range setting circuit that outputs a photometric range instruction signal S2 for indoor photography; (11) ) is the first depending on whether you are shooting outdoors or indoors. This is a switch that switches the output signals of the second photometric range setting circuits (9) and (10) and inputs them to the photometric circuit (4).

次に、この実施例の動作のうち、第6図に示した従来例
と異なる部分を説明する。
Next, the parts of the operation of this embodiment that are different from the conventional example shown in FIG. 6 will be explained.

第1の測光範囲設定回路(9)は、空などの明るい背景
が画面中心付近までくることが多い屋外撮影の場合に適
合するように、第2図(a)に示すように撮像画面(2
0)の中心部付近以下の部分を゛側光範囲(31)とし
、その測光範囲(31)内は“H”レベル、それ以外の
範囲は“L 11レベルの測光範囲指示信号S1を出力
する。また、第2の測光範囲設定回路(10)は、蛍光
灯等の明るい光源が撮像画面(20)の上方にのみある
ことが多い屋内撮影の場合に適合するように、第2図(
b)に示すように撮像画面(20)の上方の一部分を測
光範囲(32)よりはずし、測光範囲(32)内は“H
”レベル、それ以外の範囲は“L”レベルの測光範囲指
示信号S2を出力する。そして、撮影条件が屋外か屋内
かに応じてスイッチ(11)を切り換え、屋外の場合は
第1の測光範囲設定回路(9)の出力信号Slを、屋内
の場合は第2の測光範囲設定回路(10)の出力信号S
2を測光回路(4)に与える。測光回路(4)は、入力
された測光範囲指示信号に従って撮像信号を通過させ、
検波回路(5)はこの撮像信号を積分して平均用るさに
応じたレベルの測光信号を出力する。絞り制御回路(6
)は、この入力される測光信号が予め定めたレベルにな
るように絞り(2)を調節し、この結果適正なレベルの
撮像信号がビデオ処理回路(8)に入力される。
The first photometry range setting circuit (9) is configured to set the imaging screen (2) as shown in FIG.
The area below the center of 0) is defined as the 'side light range (31), and the photometry range instruction signal S1 is output at "H" level within the photometry range (31) and at "L11 level" for the rest of the range. In addition, the second photometry range setting circuit (10) is configured as shown in FIG.
As shown in b), the upper part of the imaging screen (20) is removed from the photometry range (32), and the area within the photometry range (32) is “H”.
"level", and "L" level for other ranges.Then, the switch (11) is changed depending on whether the shooting conditions are outdoors or indoors, and if the shooting conditions are outdoors, the first photometry range is output. The output signal Sl of the setting circuit (9) is used as the output signal Sl of the second photometry range setting circuit (10) when indoors.
2 is given to the photometric circuit (4). The photometry circuit (4) passes the imaging signal according to the input photometry range instruction signal,
The detection circuit (5) integrates this imaging signal and outputs a photometric signal of a level corresponding to the average usage. Aperture control circuit (6
) adjusts the aperture (2) so that the input photometric signal reaches a predetermined level, and as a result, an image signal of an appropriate level is input to the video processing circuit (8).

なお、上記実施例では、第1および第2の測光範囲設定
回路(9)  、 (10)から出力される測光範囲指
示信号Sl、S2を、屋外撮影用および屋内撮影用にそ
れぞれ適合するように定めたが、第3図(a)に示すよ
うな中心部のみの測光範囲(33)を持つ人物撮影用、
および第3図(b)に示すような撮像画面の周辺部を除
いた測光範囲(34)をもつ風景撮影用にしてもよい、
この場合、測光範囲設定回路(9)  、 (10)の
出力は、水平方向測光範囲指示信号S3H,54Hと、
垂直方向測光範囲指示信号S3V、s4Vとの論理積と
なる。
In the above embodiment, the photometry range instruction signals Sl and S2 output from the first and second photometry range setting circuits (9) and (10) are adapted to suit outdoor photography and indoor photography, respectively. However, as shown in Fig. 3(a), it has a photometric range (33) only for the center, for photographing people.
It may also be used for landscape photography, having a photometry range (34) excluding the peripheral area of the imaging screen as shown in FIG. 3(b).
In this case, the outputs of the photometry range setting circuits (9) and (10) are horizontal photometry range instruction signals S3H, 54H,
This is the AND of the vertical direction photometry range instruction signals S3V and s4V.

また、上記実施例では、撮影対象による測光範囲の切り
換えを、2つの測光範囲設定回路を切り換えることで行
ったが、第4図に示したように、3以上の測光範囲指示
信号Siを出力でき可変測光範囲設定回路(12)を設
け、入力端子(13)から入力される測光範囲切換信号
Siに応じて3以上の測光範囲、例えば、第2図(a)
  、 (b)および第3図(a)  、 (b)に示
したものに切り換えるようにしてもよい。
Furthermore, in the above embodiment, the photometry range was switched depending on the subject to be photographed by switching between two photometry range setting circuits, but as shown in FIG. 4, it is possible to output three or more photometry range instruction signals Si. A variable photometry range setting circuit (12) is provided to set three or more photometry ranges according to the photometry range switching signal Si input from the input terminal (13), for example, as shown in FIG. 2(a).
, (b) and those shown in FIGS. 3(a) and (b).

[発明の効果] 以上のように、この発明によれば、撮影条件に応じて測
光範囲を切り換えるように構成したので、撮影条件が変
っても常に適正なレベルの撮像信号が得られるように、
自動的に絞りを調節することのできる自動絞り装置が得
られる効果がある。
[Effects of the Invention] As described above, according to the present invention, the photometry range is switched according to the shooting conditions, so that even if the shooting conditions change, an image signal of an appropriate level can always be obtained.
This has the effect of providing an automatic aperture device that can automatically adjust the aperture.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図はこの発明の一実施例のブロック回路図、第2図
はこの実施例の測光範囲を示す図。 第3図はこの発明の他の実施例の測光範囲を示す図、第
4図はこの発明の他の実施例のブロック回路図、第5図
は従来の自動絞り装置のブロック回路図、第6図はその
測光範囲を示す図である。 (1)・・・レンズ、(2)・・・絞り、(3)・・・
撮像部、(4)・・・測光回路、(5)・・・検波回路
、(8)・・・絞り制御回路、(9)  、 (10)
・・・測光範囲設定回路、(11)・・・スイッチ、 
(12)・・・可変測光範囲設定回路、 (20)・・
・撮像画面、(31) 、 (32) 、 (33) 
、 (34)・・・測光範囲。 なお、各図中、同一符号は同一、あまたは相当部分を示
す。
FIG. 1 is a block circuit diagram of an embodiment of the present invention, and FIG. 2 is a diagram showing the photometry range of this embodiment. FIG. 3 is a diagram showing the photometric range of another embodiment of the present invention, FIG. 4 is a block circuit diagram of another embodiment of the invention, FIG. 5 is a block circuit diagram of a conventional automatic aperture device, and FIG. The figure shows the photometric range. (1)...Lens, (2)...Aperture, (3)...
Imaging unit, (4)...photometering circuit, (5)...detection circuit, (8)...aperture control circuit, (9), (10)
...photometering range setting circuit, (11)...switch,
(12)...Variable photometry range setting circuit, (20)...
・Image screen, (31), (32), (33)
, (34)...Photometry range. In each figure, the same reference numerals indicate the same, corresponding parts.

Claims (1)

【特許請求の範囲】[Claims] (1)撮像部の撮像面に被写体の光像を結像させるレン
ズの絞りを、上記撮像部から出力される撮像信号のうち
、当該撮像信号によつて映出される撮像画面上に設定し
た測光範囲に該当する部分を抽出してその明るさに相当
するレベルの測光信号を検出し、この測光信号が予め定
めたレベルとなるように上記絞りを調節するように構成
された自動絞り装置において、上記測光範囲を複数の異
なる撮影条件ごとに予め定めた測光範囲に切り換える手
段を備えたことを特徴とする自動絞り装置。
(1) Photometry in which the aperture of the lens that forms the optical image of the subject on the imaging surface of the imaging unit is set on the imaging screen that is displayed by the imaging signal output from the imaging unit. In an automatic aperture device configured to extract a portion corresponding to a range, detect a photometric signal at a level corresponding to the brightness of the area, and adjust the aperture so that the photometric signal reaches a predetermined level, An automatic aperture device characterized by comprising means for switching the photometric range to a predetermined photometric range for each of a plurality of different photographing conditions.
JP63130569A 1988-05-26 1988-05-26 Automatic diaphragm Pending JPH01298878A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP63130569A JPH01298878A (en) 1988-05-26 1988-05-26 Automatic diaphragm

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP63130569A JPH01298878A (en) 1988-05-26 1988-05-26 Automatic diaphragm

Publications (1)

Publication Number Publication Date
JPH01298878A true JPH01298878A (en) 1989-12-01

Family

ID=15037380

Family Applications (1)

Application Number Title Priority Date Filing Date
JP63130569A Pending JPH01298878A (en) 1988-05-26 1988-05-26 Automatic diaphragm

Country Status (1)

Country Link
JP (1) JPH01298878A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0499953A2 (en) * 1991-02-18 1992-08-26 Firma Carl Zeiss Automatic contrast and brightness control for a built-in aircraft thermal-imaging apparatus
DE4211133C2 (en) * 1992-04-03 2003-03-13 Zeiss Carl Automatic contrast and brightness control for thermal imagers integrated in aircraft
WO2015008049A1 (en) * 2013-07-18 2015-01-22 Omg Plc Outdoor exposure control of still image capture

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0499953A2 (en) * 1991-02-18 1992-08-26 Firma Carl Zeiss Automatic contrast and brightness control for a built-in aircraft thermal-imaging apparatus
DE4211133C2 (en) * 1992-04-03 2003-03-13 Zeiss Carl Automatic contrast and brightness control for thermal imagers integrated in aircraft
WO2015008049A1 (en) * 2013-07-18 2015-01-22 Omg Plc Outdoor exposure control of still image capture
GB2533231A (en) * 2013-07-18 2016-06-15 Omg Plc Outdoor exposure control of still image capture

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