WO2005043892A1 - 撮像装置 - Google Patents
撮像装置 Download PDFInfo
- Publication number
- WO2005043892A1 WO2005043892A1 PCT/JP2004/008184 JP2004008184W WO2005043892A1 WO 2005043892 A1 WO2005043892 A1 WO 2005043892A1 JP 2004008184 W JP2004008184 W JP 2004008184W WO 2005043892 A1 WO2005043892 A1 WO 2005043892A1
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- setting
- unit
- automatic switching
- imaging
- imaging device
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/60—Control of cameras or camera modules
- H04N23/667—Camera operation mode switching, e.g. between still and video, sport and normal or high- and low-resolution modes
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/60—Control of cameras or camera modules
- H04N23/63—Control of cameras or camera modules by using electronic viewfinders
- H04N23/631—Graphical user interfaces [GUI] specially adapted for controlling image capture or setting capture parameters
- H04N23/632—Graphical user interfaces [GUI] specially adapted for controlling image capture or setting capture parameters for displaying or modifying preview images prior to image capturing, e.g. variety of image resolutions or capturing parameters
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/60—Control of cameras or camera modules
- H04N23/63—Control of cameras or camera modules by using electronic viewfinders
- H04N23/633—Control of cameras or camera modules by using electronic viewfinders for displaying additional information relating to control or operation of the camera
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/70—Circuitry for compensating brightness variation in the scene
- H04N23/73—Circuitry for compensating brightness variation in the scene by influencing the exposure time
Definitions
- the present invention relates to an imaging apparatus used in the field of an imaging system for production where image creation is important.
- the imaging unit 1 includes a CCD driving unit 7 and a frame rate conversion unit 8.
- the CCD driving section 7 can realize various frame rates according to the driving pulse.
- the frame rate conversion section 8 converts various frame rates output from the CCD drive section 7 into predetermined frame rates.
- Reference numeral 9 denotes a frame mode control setting unit in the control setting unit 3 for setting a frame mode or a shooting parameter of the imaging unit 1, and controls the CCD driving unit 7 and the frame rate conversion circuit 8.
- Reference numeral 2 denotes a camera signal processing unit which performs basic processing such as gamma correction and matrix processing of the imaging device.
- 10 is a recording unit.
- Reference numeral 4 denotes a system control unit, which controls the operation of the entire imaging device by specifying a use state by an operation switch 6.
- the conventional imaging device thus configured can change the frame rate as shown in FIG.
- a case is shown in which the frame rate is varied and a slow-motion image signal and a fast-forward image signal are obtained as film signals (signals at 24 frames per second).
- the delay caused by the processing in the frame rate conversion section 8 is ignored in the figure.
- the frame rate should be described as "24 P (progressive) frame rate" because progressive scanning is used, but in the following, the progressive is omitted and simply described as 24 frames etc. Will be explained.
- step 1 When a slow motion image is obtained In this case, operation is performed in step 1, step 2, and step 3 in Fig. 20.
- step 1 the photographer operates the camera and selects the frame rate of the image pickup apparatus at 60 frame rates with the menu switch of the operation switch 6.
- the system control unit 4 instructed by the operation of the operation switch 6 causes the CCD driving unit 7 to set the frame rate of the imaging device during image capturing to 60 frame rate in step 2 as shown in (a). And a control signal is also output to the frame rate conversion section 8 to convert the output signal to the camera signal processing section 2 so as to have a 60 frame rate as shown in FIG.
- the purpose is to obtain a slow-motion image from the 60 frame rate of the output signal of the frame rate conversion unit 8.
- the output signal of the frame rate conversion section 8 also outputs a flag of an effective frame indicating which frame (frame) is valid at the time of reproduction.
- the output signal of the frame rate conversion section 8 is a camera.
- the signal processing unit 2 performs basic processing of the imaging device such as gamma correction and matrix correction, and the recording unit 10 records a flag signal of an effective frame on a recording medium together with the imaging signal.
- Step 3 the effective frame is extracted by another device and reproduced in 24 frames, and as shown in FIG. 20 (c), the reproduced signal whose time axis is extended by a factor of 2.5, ie, 0.4. A double-speed slow motion signal is obtained. In this case, extraction of the effective frame will extract all frames.
- step 4 the operation is performed in step 4, step 5, and step 6 in FIG.
- step 4 the photographer operates the camera, and selects the frame rate of the imaging device by the menu switch of the operation switch 6 to 12 frame rate.
- the system control unit 4 instructed by the operation of the operation switch 6 sets the frame rate of the imaging device during shooting to 12 frame rates (12 frames per second) as shown in (d) in step 5.
- the subsequent processing of the frame rate conversion unit 8 is the same as the case where the frame rate of the CCD drive unit 7 is 60 frames since the frame rate is converted to 60 frames, and the recording unit 10 Then, the signal shown in Fig. 20 (e) is recorded.
- Step 6 (f) When the recording medium on which the image signal of 60 frames per second is recorded by the recording unit 10 in this way is reproduced by another device to confirm the reproduction of the double-speed fast-forward video, as shown in Step 6 (f).
- another device extracts a valid frame and reproduces it in 24 frames, so that a 2x fast-forward signal whose time axis is reduced to 0.5 times can be obtained.
- the conventional imaging device can perform variable-speed shooting, and can realize image creation similar to that of a film camera.
- the photographer's manual operation may affect the image, and the intended image cannot be created.
- the present invention provides an imaging device that can change a frame rate or the like as intended in the middle of shooting in an imaging device for producing a movie material or the like, and has improved operability in creating an image. It is aimed at. Disclosure of the invention
- An image pickup apparatus is a control setting section for setting a frame mode of an image pickup section or a photographing parameter of the image pickup section, and setting contents for automatically switching the control setting section, and executing the contents.
- An automatic switching setting section for setting a set time, and a system control section for automatically switching setting contents of the control setting section based on the setting of the automatic switching setting section upon detecting that an operation switch is operated. It is characterized by having provided.
- the system control unit detects that the operation switch has been operated, and switches to the frame mode based on the setting of the automatic switching setting unit.
- the control unit is configured to control at least one of the photographing parameters to be switched.
- the imaging device is the imaging device according to claim 1, wherein the system control unit detects that the operation switch has been operated, and switches to the frame mode based on the setting of the automatic switching setting unit.
- the control setting section is controlled so as to switch at least one of the photographing parameters, and the automatic switch setting section is detected by detecting that the operation switch has been operated again within the set time of the setting being executed. It is configured to forcibly and automatically switch to the next setting.
- the system control unit detects the operation of the operation switch and sets the frame mode and the shooting parameter to a predetermined value. It is characterized in that it is configured to switch automatically in time series in order.
- the imaging device described in claim 5 of the present invention can In item 3, the system control unit is configured to detect that the operation switch has been operated, and to automatically switch the frame mode and the photographing parameters in time parallel based on the setting contents of the automatic switching setting unit. It is characterized by the following.
- the system control unit detects that the operation switch has been operated, and based on the setting of the automatic switching setting unit, sets the frame mode and the imaging parameter.
- the control setting unit is controlled so as to switch at least one of the lame setting and the control setting unit detects that the operation switch has been re-operated within the set time of the setting being executed and changes the setting being executed.
- the automatic switching setting unit is configured to extend automatically without ending at the set time.
- An imaging apparatus is characterized in that, in the first aspect, a display unit that displays a state of a currently executed frame mode or a shooting parameter is provided.
- the imaging device is characterized in that, in claim 3 or claim 6, a memory unit is provided for storing a history of a correction operation of a set time when the operation switch is re-operated. I do.
- the imaging device according to claim 9 of the present invention is the imaging device according to claim 3 or 6, further comprising: a memory unit that stores a history of a correction operation of a set time when the operation switch is re-operated;
- the present invention is characterized in that the setting time of the automatic switching setting section can be replaced based on the record in the memory section.
- the imaging device according to claim 10 of the present invention is the imaging device according to claim 3 or claim 6, wherein the set time during which the operation switch is operated again is corrected.
- a memory section for storing a history of actions is provided, a recording / reproducing section for recording / reproducing an image signal is provided, and the system control section is configured so that the set time of the automatic switching setting section can be replaced based on the record in the memory section.
- the recording and reproducing unit records the history information of the memory unit together with the image pickup signal.
- An image pickup apparatus is a control setting section for setting a frame mode of an image pickup section or a photographing parameter of the image pickup section, and setting contents to be automatically switched by the control setting section and executing the same.
- An automatic switching setting section in which a setting time is set; a system control section for automatically switching setting contents of the control setting section based on the setting of the automatic switching setting section; and an imaging output from the imaging section
- An imaging signal state determination unit that determines an image state of a signal system, wherein the system control unit detects a change point of an image state based on a determination signal of the imaging signal state determination unit, and the control setting unit
- the automatic switching setting section is configured to automatically switch the setting contents to another state specified by the setting contents of the automatic switching setting section.
- the imaging signal state determination unit performs another determination of a moving image Z still image from an image state of an imaging signal system.
- the system control unit is configured to detect a state in which the determination signal of the imaging signal state determination unit has changed from a still image to a moving image, and to change the setting content of the control setting unit to the content of the automatic switching setting unit. It is configured to be able to switch automatically so that the dynamic resolution is higher than specified by.
- the imaging device is the imaging device according to claim 11, wherein the imaging signal state determination unit is configured to reduce a noise amount of an imaging signal of an imaging signal system. Or the system control unit is configured to determine a frequency characteristic, and the setting contents of the control setting unit are set by the automatic switching setting unit based on the determination signal of the imaging signal state determination unit.
- the configuration is such that the setting is automatically switched to a setting suitable for the state of the imaging signal rather than being specified.
- the respective imaging devices of the present invention it is possible to realize an imaging device capable of automatically changing a frame rate or the like as intended during shooting.
- FIG. 1 is a block diagram of an imaging apparatus according to (first embodiment) of the present invention.
- FIG. 2 is an explanatory diagram of a variable frame rate operation according to the first embodiment.
- FIG. 3 is a conceptual diagram of the inside of the automatic switching setting unit 5 of the embodiment.
- FIG. 4 is an image diagram of an image when the image pickup apparatus of the embodiment is used.
- FIG. 5 is a block diagram of the image pickup apparatus in (Embodiment 2) of the present invention.
- FIG. 6 is a view of a shutter speed of the embodiment. Operation explanation diagram
- FIG. 7 is an image diagram of an image when the imaging device of the embodiment is used.
- FIG. 8 is a setting example and a switching sequence diagram of the automatic switching setting unit 5 of the imaging device in (Embodiment 3) of the present invention.
- FIG. 9 is a setting example and a switching sequence diagram of the automatic switching setting unit 5 of the imaging device according to (Embodiment 4) of the present invention.
- FIG. 10 is a setting example and a switching sequence diagram of the automatic switching setting unit 5 in the embodiment.
- FIG. 11 is a block diagram of an imaging apparatus according to (Embodiment 5) of the present invention.
- FIG. 12 is a conceptual diagram showing a display example of the display unit 12 in the embodiment.
- FIG. 13 is a block diagram of an imaging device according to (Embodiment 6) of the present invention.
- FIG. 14 is a block diagram of an imaging apparatus according to (Embodiment 7) of the present invention.
- FIG. 15 is a conceptual diagram showing a display example at the time of reproduction of the display unit 12 in the embodiment.
- FIG. 16 is a block diagram of an imaging apparatus according to (Embodiment 8) of the present invention.
- Fig. 17 is a conceptual diagram showing how to automatically switch the frame rate in this embodiment.
- FIG. 18 is a block diagram of an imaging signal state determination unit 15 in the embodiment.
- FIG. 19 is a block diagram showing a configuration of a conventional imaging device.
- FIG. 20 is an operation explanatory diagram showing a variable frame rate in a conventional imaging device.
- FIG. 1 shows an imaging device according to (Embodiment 1) of the present invention.
- the system control unit 4 sets the setting mode registered in the automatic switching setting unit 5 before photographing and the setting time of the set value. Are sequentially read and supplied to the frame mode control setting unit 9.
- the frame mode control setting unit 9 includes the CCD driving unit 7 and the frame The circuit conversion circuit 8 is operated in a state specified by the system control unit 4.
- the frame mode is an item related to the specifications of the shooting method such as frame rate, aspect ratio, and inter- z / progressive.
- the case of automatic switching of the frame rate, which is one of them, is taken as an example. I will explain it.
- the CCD drive section 7 realizes various frame rates by using drive pulses.
- the frame rate conversion section 8 converts various frame rates output from the CCD drive section 7 into predetermined frame rates.
- the frame mode control setting section 9 is provided as the control setting section 3 for setting the frame mode of the imaging section 1 or the shooting parameters.
- the camera signal processing unit 2 performs basic processing such as gamma correction and matrix processing of the output signal of the frame rate conversion unit 8. 10 is a recording unit.
- This (Embodiment 1) is also an imaging device capable of obtaining a film imaging signal of 24 frames, as in the conventional example of FIG. 19, except that an automatic switching setting section 5 is added. is there.
- FIG. 2 shows a case of slow reproduction and a case of fast forward similarly to the operation explanatory diagram of the variable frame rate of FIG. 20 showing a conventional example.
- the case of slow playback as shown in (a), 60 frames (60 frames per second) were shot and recorded in the recording unit 10, and an image signal of 60 frames per second was recorded.
- the time axis is increased by a factor of 2.5 by playing back each frame in 24 frames as shown in (b). Stretched 0.4 times A slow signal to speed is obtained.
- Fig. 3 shows a specific example of the automatic switching setting unit 5, where the frame rate 24P is 5 seconds, 24P is 5 seconds, and 28P is 4 seconds, corresponding to order 1 to order 14.
- 32 P are set for 4 seconds
- 36 P is set for 4 seconds
- 40 P is set for 3 seconds, ⁇ before shooting.
- the system controller constituted by a microcomputer or the like only needs to give a trigger signal to the imaging device by performing a one-touch operation of a specific switch among the operation switches 6 after the photographing is started.
- the unit 4 recognizes the setting signal of the operation switch 6 and reads out the settings preset in the order 1 to order 14 of the automatic switching setting unit 5 at every frame rate setting time.
- the frame rate during shooting can be switched automatically from 24 frames to 60 frames in 4 frame steps and increased at the set time shown in Fig. 3. Can be.
- FIGS. 3 and 4 show slow playback, the same applies to fast-forward playback.
- fast-forward playback as shown in FIG. 2 (c). 12 frames (12 frames per second) are captured and recorded in the recording unit 10, and the recording medium on which the 12 frames per second imaging signal is recorded is played back by another device, and each frame is reproduced as shown in (d).
- a 2x fast-forward signal with the time axis reduced to 0.5 times can be obtained. Therefore, by automatically switching the frame rate of the automatic switching setting section 5 and the set time of each set frame rate at a predetermined frame step, the fast-forward speed is faster than the conventional one. Fast-forward playback that can smoothly change over time.
- the frame rate is the automatic switch setting unit 5, according to (Embodiment 1) of the course c
- the present invention can be also freely set the order can set their respective set time freely, the frame rate
- the frame rate By providing the automatic switching setting unit 5 that holds the setting data for switching the setting to a predetermined time unit, the frame rate can be automatically switched for each setting time, and various image creations can be realized. it can.
- FIG. 5 shows an imaging device according to (Embodiment 2) of the present invention.
- the system control unit 4 automatically switches the frame mode during shooting based on the settings of the automatic switching setting unit 5, but in this (Embodiment 2), only the frame mode is used. It shows the case where the setting of the shooting parameter is changed automatically.
- the shooting parameters are related to shooting conditions such as shutter speed, CCD gain (bright / dark), zoom / zoom lens control, aperture, etc. One of them is the shutter speed. -The case where the code is automatically changed is shown.
- the automatic switching setting section 5 holds the shutter speed setting in addition to the frame mode frame rate setting, and when the operation switch 6 is operated during the shooting, the one-time switch operation is performed.
- the system control unit 4 automatically switches the frame rates of the CCD driving unit 7 and the frame rate conversion unit 8 via the frame mode control setting unit 9 at set time intervals according to the settings of the automatic switching setting unit 5. Accordingly, the shutter speed of the CCD drive unit 7 is controlled to a set value via the shutter speed control setting unit 11.
- FIG. 6 is an explanatory diagram of the shirt evening speed operation.
- the frame rate is 24 frames
- the shirt evening speed is fixed at 50% (1 / 8th of a second)
- every three frames of 24 frames The figure shows a case where the shutter speed gradually increases from 100% (1/2/4 seconds) to 80%, 60%, etc.
- FIG. 8 is an image diagram of a video showing an example of a captured image when the imaging device of this embodiment is used.
- Figure 6 (a) shows the time interval of one frame (charge storage time 1Z24 seconds) when the frame rate is 24 frames.
- the CCD driver 7 outputs the read pulse shown in FIG.
- the shirt pulse output from the shirt evening speed control setting section 11 is almost 50% of the frame time interval as shown in FIG.
- the charge storage time in the CCD is 50%, and an imaging signal with a shutter speed of 50% (1Z48 seconds) can be obtained. In this way, the shutter speed can be changed by outputting the shutter speed pulse to a predetermined position.
- the shutter speed is A set value indicating the position of the shutter pulse to be determined is provided in the time setting in units of three frames.
- the set value is set to the speed-speed circuit 11 every set time.
- the read pulse (f) in FIG. (G)) operates so that the position changes every three frames.
- the charge storage time is as shown in Fig. 7 (h).
- Figures 6 (e) to 6 (h) show the same state every three frames.
- the automatic switching setting section 5 can freely set the frame rate and the setting time of the shutter speed for each shooting parameter, and the order can be set freely.
- (Embodiment 2) of the present invention by providing the automatic switching setting unit 5 for holding the setting data for switching the setting values of the frame rate and the shooting parameters to a predetermined time unit, The camera can automatically switch between the frame rate and shooting parameters for each set time, enabling the creation of a wide variety of images. (Embodiment 3)
- the system control unit 4 executes automatic switching of the frame rate at the time of shooting via the frame mode control setting unit 9, or as shown in FIG.
- the system control unit 4 automatically switched not only the frame rate at the time of shooting but also the shirt night speed of the shooting parameters through the frame mode control setting unit 9 and the shutter speed control setting unit 11
- the automatic switching setting section 5 sets the shutter speed of the shooting parameters in the order of "Setting 1" to "Setting 10" in pairs with the respective setting times.
- the system control unit 4 detects a trigger caused by one-touch operation of the operation switch 6, and the setting set in the automatic switching setting unit 5 without changing the frame rate at the time of shooting. Between every shirt evening can be configured a system control unit 4 and the automatic switch setting unit 5 to automatically switch the order of one speed "set 1" to "Set 1 0".
- FIG. 8A shows a specific example of the automatic switching setting unit 5 described in (Embodiment 1), in which the frame rate is set in the order of “Mode 1” to “Mode 10” and the set time and As shown in Fig. 8 (c), the system control unit 4 detects the trigger caused by the one-touch switch operation of the operation switch 6, and the automatic switch setting unit 5 keeps the shutter speed at the time of shooting.
- the system control unit 4 and the automatic switching setting unit 5 can be configured so that the frame rate is automatically switched in the order of "Mode 1" to "Mode 10" at each set time. .
- the system control unit 4 automatically switches between the camera mode setting and the multiple shooting parameter settings according to the frame rate and the multiple shooting parameter settings. .
- the system control unit 4 detects a trigger by a one-touch operation of the operation switch 6, the photographing parameters are fixed and the frame rate is switched every set time as described in FIG.
- the system control unit 4 sets the shutter speed (indicated as function 1 here), which is one of the shooting parameters, to“ order 1 ”to“ order ”as shown in FIG.
- the order is switched to “10”, and when this is completed, the CCD gain (shown as function 2), which is one of the shooting parameters, is changed from “order 1” to “order 10” as shown in Fig. 8 (d).
- the lens control (indicated here as function 3), one of the shooting parameters, is switched from “order 1" to "order 10" as shown in Fig. 8 (d).
- Fig. 8 (c) As described above, the shooting parameters are fixed and the frame rate is switched at set time intervals.
- the system control unit 4 is one of the shooting parameters. As shown in Fig. 8 (d), the aperture (indicated as function 4) is switched from “order 1" to "order 10" as shown in Fig. 8 (d).
- the system control unit 4 can also be configured to execute a sequence of automatically switching to another.
- the frame rate and the shooting parameter are not automatically switched in order, but instead, as shown in FIG. 9, the frame rate and the shooting parameter are signaled at the start of the operation switch 6.
- Shooting The system control unit 4 can also be configured so that the setting of each of the above-described functions of the lame is automatically switched in parallel in order.
- the automatic switching setting unit 5 for holding the setting data for switching the setting values of the frame rate and the shooting parameters in a predetermined time unit, the setting time can be reduced.
- the frame rate and shooting parameters can be switched automatically every time, and a wide variety of images can be created.
- the system control unit 4 sets the frame rate, the shooting parameters, and the like to the automatic switching setting unit 5 only by giving a trigger by the one-touch operation of the operation switch 6.
- the system control unit 4 of this (Embodiment 4) performs the one-touch operation of the operation switch 6 without rewriting the set time of the automatic switching setting unit 5.
- the system is configured so that by detecting a retrigger, it is possible to execute shooting with a shorter set time for automatic switching.
- FIG. 10 shows a case in which the frame rate is automatically switched
- FIG. 10 (a) shows a case where the one-touch switch of the operation switch 6 is operated as in (Embodiment 1).
- the frame rate is set to 24P for the set time of 10 seconds, and then switched to 30P, the shooting is performed for 10 seconds, and then 36P is set.
- the camera switches automatically to shoot for 8 seconds.
- FIG. 10 shows a case in which the frame rate is automatically switched
- FIG. 10 (a) shows a case where the one-touch switch of the operation switch 6 is operated as in (Embodiment 1).
- the system control unit 4 detects the first trigger by one-touch operation of the operation switch 6, executes the frame rate 24P shooting, and is set in the automatic switching setting unit 5.
- the set time is 10 seconds
- the camera switches to shooting with the frame rate of 30 P set in the automatic switching setting section 5 as “order 2” even though has not elapsed.
- the system control unit 4 changes the frame rate to "Order 2". 3), but in this example, the frame was not retriggered within 10 seconds of the “No. 2” setting time. The shooting has been implemented.
- system control unit 4 is configured to detect the occurrence of a re-trigger within each set time and to forcibly terminate even within the set time and to automatically switch to the next setting. Thereby, the operability is further improved.
- FIGS. 11 and 12 show an imaging apparatus according to (Embodiment 5) of the present invention.
- FIG. 1 showing (Embodiment 1) differs from FIG. 1 in that a display section 12 is added to a camera processing section 2. Only the point is different, and the others are exactly the same as (Embodiment 1).
- the display unit 12 is, for example, an electronic viewfinder that displays an image being captured.
- the display unit 12 displays the image being captured, and also displays the frame mode set by the system control unit 4 and its setting. Time is displayed on-screen as shown in Figure 12. This allows the photographer to check the set frame mode, set shooting parameters, and the set time.
- the set time display may be any display as long as the switching timing is known, such as displaying the remaining time or displaying the ratio to the set time.
- the display unit 12 may be provided with a display unit separately from the electronic view finder without using the electronic view finder for displaying the image being shot.
- FIG. 13 shows an imaging device according to (Embodiment 6) of the present invention
- FIG. 1 showing (Embodiment 1) is that a memory unit 13 is added.
- the difference is exactly the same as (Embodiment 1).
- the system control unit 4 of the above (Embodiment 4) detects the re-trigger by the operation switch 6 without rewriting the set time of the automatic switching setting unit 5 as shown in FIG.
- the system control unit 4 stores the history of the actual set time by the re-triggering operation of the operation switch 6 in the memory unit 1 described above. 3 is configured to record.
- the history of the actual set time due to the retriggering of the operation switch 6 can be recorded in the memory unit 13. Recording of this history can be performed as many times as desired until the desired setting can be made, and the information of the determined history can be replaced with data of the automatic switching setting section 5. This is performed by exchanging data between the automatic switch setting unit 5 and the memory unit 13 by the system control unit 4.
- the set time can be adjusted as many times as needed, and the value of the automatic switch setting section 5 can be replaced with the value of the memory section 13 so that sophisticated data can be used as data for automatic function switching. Improved operability can be expected.
- FIG. 14 shows an imaging device according to (Embodiment 7) of the present invention. 13 is different from (Embodiment 6) only in the following point.
- the system control unit 4 of this (Embodiment 7) controls the recording / reproducing unit 14 to record the history information of the memory unit 13 on the recording medium together with the imaging signal output from the camera signal processing unit 2. At the time of reproduction, the history information of the memory unit 13 is displayed on the display unit 12 as shown in FIG.
- the set time display is not limited to a display such as displaying the remaining time or displaying the ratio to the set time as in (Embodiment 5), as long as the display shows the switching time. Needless to say,
- the display unit 12 may be provided with another simple display unit without using the electronic viewfinder for displaying the image being shot.
- the history information in the memory unit 13 can be recorded together with the image pickup signal based on the setting, and the history information can be reproduced and displayed together with the reproduced signal. You can check the changes in the frame mode and shooting parameters according to the settings. (Embodiment 8)
- FIG. 16 shows an imaging apparatus according to (Embodiment 8) of the present invention, and is different from FIG. 1 showing (Embodiment 1) in that an imaging signal state determination unit 15 for determining the state of an imaging signal is added. Only the differences are present, and the rest is exactly the same as (Embodiment 1).
- the imaging signal state determination unit 15 determines the imaging signal based on the imaging signal system image state.
- the system control section 4 is configured to determine its own state, and recognize the determination signal of the imaging signal state determination section 15 to control the automatic function switching function.
- the imaging signal state determination unit 15 is configured so that the content of the imaging signal performs another determination of a moving image / still image based on the imaging signal generated at the output of the camera signal processing unit 2, and when it is determined that the image is a moving image.
- the system control unit 4 switches to another setting content irrespective of the setting content specified by the automatic switching setting unit 5.
- the frame rate is switched so that the dynamic resolution is higher than before.
- Figure 17 shows how the frame rate is automatically switched when the imaging device is used for a surveillance camera or the like.
- a frame rate and a set time are set as shown in FIGS. 17 (a) and 17 (b), and the frame rate is set to 5 per second from 0:00 to 6:00.
- the system control section 4 executes the automatic switching of the frame rate by operating the frame control, 10 frames per second from 6 o'clock to 18 o'clock, and 5 frames per second from 18 o'clock to 24 o'clock. You.
- the image signal state starts from the 100th frame of the setting of 10 frames per second at the frame rate specified by the automatic switching setting section 5. If the determination unit 15 determines that the image has changed from a still image to a moving image, even if the frame rate specified by the automatic switching setting unit 5 is 10 frames per second, the system control unit 4 proceeds to FIG. As shown in 17 (c), (d), (e), and (f), the frame rate is changed to 60 frames per second, and a signal having a large number of frames per second is output. As a result, the number of imaging frames of the subject determined to be in the moving image state can be increased, and the dynamic resolution can be increased.
- a specific configuration example of the automatic switching setting unit 5 in this case is configured as shown in FIG. 16 is a frame memory for outputting a delayed signal including one frame or several frames before the imaging signal, and 17 is a difference detection circuit, which is occasionally taken with the imaging signal and stored and read out in the frame memory 16. The difference from the video signal is detected.
- a comparison circuit 18 compares the output signal of the difference detection circuit 17 with a set threshold level, and determines that the image is a still image if the threshold level is not exceeded and a moving image if the threshold level is exceeded. .
- (Embodiment 8) of the present invention in addition to the automatic switching setting unit 5 that holds the setting data for switching the frame mode of the imaging device or the setting value of each function in a predetermined time unit, by further providing an imaging signal state determination unit 15 for determining the state of the imaging signal, the state of the moving image and still image can be determined. With this determination signal, the state of the automatic setting that has been set in advance can be changed. The automatic setting can be changed to a setting suitable for the state of the imaging signal.
- the determination signal of the imaging signal state determination unit 15 not only the determination of a moving image still image, but also the noise amount and frequency characteristics are determined, and various setting values are changed to appropriate values in accordance with the determination. It goes without saying that you can do so.
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- Multimedia (AREA)
- Signal Processing (AREA)
- Human Computer Interaction (AREA)
- Studio Devices (AREA)
- Television Signal Processing For Recording (AREA)
Abstract
Description
Claims
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US10/552,439 US20060238620A1 (en) | 2003-10-31 | 2004-06-04 | Imaging apparatus |
| EP04736141A EP1679883A4 (en) | 2003-10-31 | 2004-06-04 | ILLUSTRATION DEVICE |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2003371370A JP3926316B2 (ja) | 2003-10-31 | 2003-10-31 | 撮像装置 |
| JP2003-371370 | 2003-10-31 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2005043892A1 true WO2005043892A1 (ja) | 2005-05-12 |
Family
ID=34543950
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2004/008184 Ceased WO2005043892A1 (ja) | 2003-10-31 | 2004-06-04 | 撮像装置 |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US20060238620A1 (ja) |
| EP (1) | EP1679883A4 (ja) |
| JP (1) | JP3926316B2 (ja) |
| KR (1) | KR100725459B1 (ja) |
| CN (1) | CN100364317C (ja) |
| WO (1) | WO2005043892A1 (ja) |
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| JP5234119B2 (ja) * | 2011-01-20 | 2013-07-10 | カシオ計算機株式会社 | 撮像装置、撮像処理方法及びプログラム |
| JP5202713B2 (ja) * | 2011-11-04 | 2013-06-05 | キヤノン株式会社 | 撮像装置及びその制御方法 |
| JP5695728B2 (ja) * | 2013-12-25 | 2015-04-08 | オリンパスイメージング株式会社 | 撮影装置および撮影方法 |
| KR102143618B1 (ko) * | 2014-01-17 | 2020-08-11 | 삼성전자주식회사 | 프레임률 제어 방법 및 그 전자 장치 |
| JP2015186235A (ja) * | 2014-03-26 | 2015-10-22 | ソニー株式会社 | イメージセンサ、および電子装置 |
| JP6341815B2 (ja) * | 2014-09-08 | 2018-06-13 | キヤノン株式会社 | 撮像装置、その制御方法、及びプログラム |
| US10812854B2 (en) * | 2015-05-19 | 2020-10-20 | Sony Corporation | Image processing device, image processing method, reception device, and transmission device |
| CN106375646B (zh) * | 2015-07-21 | 2020-01-10 | 腾讯科技(深圳)有限公司 | 一种信息处理方法及终端 |
| JP6819042B2 (ja) * | 2016-01-14 | 2021-01-27 | ソニー株式会社 | 撮像制御装置、撮像制御方法、プログラム |
| JP6249078B2 (ja) * | 2016-11-10 | 2017-12-20 | カシオ計算機株式会社 | 再生制御装置、再生制御方法及びプログラム |
| CN108566527A (zh) * | 2018-03-30 | 2018-09-21 | 青岛海信移动通信技术股份有限公司 | 一种录像方法及装置 |
| CN109005351A (zh) * | 2018-09-05 | 2018-12-14 | 深圳市万普拉斯科技有限公司 | 拍摄方法、装置、计算机设备和存储介质 |
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- 2004-06-04 WO PCT/JP2004/008184 patent/WO2005043892A1/ja not_active Ceased
- 2004-06-04 EP EP04736141A patent/EP1679883A4/en not_active Withdrawn
- 2004-06-04 CN CNB2004800070009A patent/CN100364317C/zh not_active Expired - Lifetime
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Also Published As
| Publication number | Publication date |
|---|---|
| KR100725459B1 (ko) | 2007-06-07 |
| CN100364317C (zh) | 2008-01-23 |
| JP2005136754A (ja) | 2005-05-26 |
| CN1762151A (zh) | 2006-04-19 |
| US20060238620A1 (en) | 2006-10-26 |
| JP3926316B2 (ja) | 2007-06-06 |
| EP1679883A4 (en) | 2010-05-26 |
| KR20060041156A (ko) | 2006-05-11 |
| EP1679883A1 (en) | 2006-07-12 |
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