WO1998008337A1 - Appareil de prise de vues electronique a afficheur a cristaux liquides - Google Patents
Appareil de prise de vues electronique a afficheur a cristaux liquides Download PDFInfo
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- WO1998008337A1 WO1998008337A1 PCT/JP1997/002886 JP9702886W WO9808337A1 WO 1998008337 A1 WO1998008337 A1 WO 1998008337A1 JP 9702886 W JP9702886 W JP 9702886W WO 9808337 A1 WO9808337 A1 WO 9808337A1
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- image signal
- liquid crystal
- crystal display
- unit
- compression
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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
- H04N23/50—Constructional details
- H04N23/53—Constructional details of electronic viewfinders, e.g. rotatable or detachable
- H04N23/531—Constructional details of electronic viewfinders, e.g. rotatable or detachable being rotatable or detachable
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/222—Studio circuitry; Studio devices; Studio equipment
- H04N5/262—Studio circuits, e.g. for mixing, switching-over, change of character of image, other special effects ; Cameras specially adapted for the electronic generation of special effects
- H04N5/2621—Cameras specially adapted for the electronic generation of special effects during image pickup, e.g. digital cameras, camcorders, video cameras having integrated special effects capability
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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
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00127—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture
- H04N1/00129—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a display device, e.g. CRT or LCD monitor
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/0035—User-machine interface; Control console
- H04N1/00405—Output means
- H04N1/00408—Display of information to the user, e.g. menus
- H04N1/0044—Display of information to the user, e.g. menus for image preview or review, e.g. to help the user position a sheet
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/21—Intermediate information storage
- H04N1/2104—Intermediate information storage for one or a few pictures
- H04N1/2112—Intermediate information storage for one or a few pictures using still video cameras
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/21—Intermediate information storage
- H04N1/2104—Intermediate information storage for one or a few pictures
- H04N1/2112—Intermediate information storage for one or a few pictures using still video cameras
- H04N1/2137—Intermediate information storage for one or a few pictures using still video cameras with temporary storage before final recording, e.g. in a frame buffer
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/21—Intermediate information storage
- H04N1/2104—Intermediate information storage for one or a few pictures
- H04N1/2158—Intermediate information storage for one or a few pictures using a detachable storage unit
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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
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/222—Studio circuitry; Studio devices; Studio equipment
- H04N5/262—Studio circuits, e.g. for mixing, switching-over, change of character of image, other special effects ; Cameras specially adapted for the electronic generation of special effects
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/222—Studio circuitry; Studio devices; Studio equipment
- H04N5/262—Studio circuits, e.g. for mixing, switching-over, change of character of image, other special effects ; Cameras specially adapted for the electronic generation of special effects
- H04N5/272—Means for inserting a foreground image in a background image, i.e. inlay, outlay
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00127—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture
- H04N1/00281—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a telecommunication apparatus, e.g. a switched network of teleprinters for the distribution of text-based information, a selective call terminal
- H04N1/00283—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a telecommunication apparatus, e.g. a switched network of teleprinters for the distribution of text-based information, a selective call terminal with a television apparatus
- H04N1/00291—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a telecommunication apparatus, e.g. a switched network of teleprinters for the distribution of text-based information, a selective call terminal with a television apparatus with receiver circuitry
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00127—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture
- H04N1/00281—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a telecommunication apparatus, e.g. a switched network of teleprinters for the distribution of text-based information, a selective call terminal
- H04N1/00307—Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a telecommunication apparatus, e.g. a switched network of teleprinters for the distribution of text-based information, a selective call terminal with a mobile telephone apparatus
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N2101/00—Still video cameras
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N2201/00—Indexing scheme relating to scanning, transmission or reproduction of documents or the like, and to details thereof
- H04N2201/32—Circuits or arrangements for control or supervision between transmitter and receiver or between image input and image output device, e.g. between a still-image camera and its memory or between a still-image camera and a printer device
- H04N2201/3201—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title
- H04N2201/3212—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title of data relating to a job, e.g. communication, capture or filing of an image
- H04N2201/3214—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title of data relating to a job, e.g. communication, capture or filing of an image of a date
Definitions
- the present invention relates to an electronic camera with a liquid crystal display. Background art
- a camera with a liquid crystal display configured to record an image captured by a camera on a magnetic recording medium and display the image on a liquid crystal display screen has been known.
- An object of the present invention is to provide an electronic camera with a liquid crystal display having a pocket size that can be put in and taken out of a pocket, has low power consumption, is strong against vibration, and has high computational power and high speed. It is to provide.
- Another object of the present invention is to provide an electronic camera with a liquid crystal display, which can be easily taken in and out of a pocket and can be easily held with one hand.
- the present invention provides a camera unit that captures an image of a subject, an image signal generation unit that has an ADC that converts an image signal captured by the camera unit into a digital image signal, and a conversion unit that converts the image signal.
- Compression encoding section for compressing and encoding the compressed digital image signal
- a memory for storing the image signal compressed and encoded by the compression encoding section
- a decompression decoding of the compressed and encoded image signal stored in the memory
- a display image signal generation unit having a decompression decoding unit that performs conversion, and a DAC that converts the image signal decompressed and decoded by the decompression decoding unit into an analog signal, the compression encoding unit, storage in the memory, and decompression
- a circuit having a microcomputer that controls a decoding unit; and a liquid crystal display unit that displays an analog image signal obtained from a display image signal generation unit (such as a DAC) of the circuit.
- An electronic camera with a liquid crystal display configured to be capable of mounting an IC card formed by arranging a plurality of stacked flash memories in parallel on the back side opposite to the liquid crystal display section in order to store the image signal compressed and encoded by It is.
- the image is a moving image.
- the present invention provides a camera unit for imaging a subject, an image signal generation unit having an ADC for converting an image signal captured by the camera unit into a digital image signal, and a digital signal converted by the image signal generation unit (ADC or the like).
- a compression encoding unit for compressing and encoding the image signal
- a memory for storing the captured image signal compressed and encoded by the compression encoding unit in association with the compression-encoded background image signal, and storing in the memory
- a decompression decoding unit for decompressing the compressed coded image signal and the compressed coded background image signal, and a local image signal decompressed and decoded with respect to the background image signal decompressed and decoded by the decompression decoding unit.
- a display image signal generating unit having a DAC for converting an image signal synthesized by the image signal synthesizing unit into an analog signal, the compression encoding unit, the decompression decoding unit, and the image signal synthesizing unit.
- a microcomputer that controls a section and edits and controls the compression-encoded captured image signal with respect to the compression-encoded background image signal so that the image signal is stored in the memory; and a display of the circuit.
- a liquid crystal display for displaying an analog image signal obtained from an image signal generator (e.g., a DAC); and a liquid crystal display for storing the image signal compressed and encoded by the compression encoder of the circuit.
- the background image is a still image
- the local image is a moving image.
- the present invention is characterized in that in the electronic camera with a liquid crystal display, the camera unit is rotatably supported back and forth on the left side when viewed from the front side including the liquid crystal display unit.
- the memory of the circuit is constituted by a stacked memory module formed by arranging a plurality of stacked flash memories in parallel.
- the invention is characterized in that in the electronic camera with a liquid crystal display, a mode in which the analog image signal is displayed on the liquid crystal display unit is performed by a software board.
- the present invention also provides the electronic camera with a liquid crystal display, wherein the circuit is mounted on two or one substrate.
- the present invention also provides a main body case, a camera section configured to be supported on the left side of the main body case on the left side when viewed from the front side and to be able to rotate back and forth, and an image signal captured by the camera section.
- a camera section configured to be supported on the left side of the main body case on the left side when viewed from the front side and to be able to rotate back and forth, and an image signal captured by the camera section.
- Image signal generator having DC and converted by the image signal generator (ADC, etc.)
- Compression encoding section for compressing and encoding the obtained digital image signal
- a memory for storing the image signal compressed and encoded by the compression encoding section
- a decompression for expanding and decoding the compressed and encoded image signal stored in the memory.
- a display image signal generation unit and a compression encoding unit including a decoding unit and a DAC for converting the image signal decompressed and decoded by the decompression decoding unit into an analog signal, storage in the memory, and the decompression decoding unit
- a liquid crystal display section for displaying a signal, wherein the image signal compressed and encoded by the compression encoding section of the circuit is stored on the opposite side of the liquid crystal display section with respect to the main body case. Laminated on the back side
- the IC power once the formation of the flash memory with plural juxtaposed a electronic camera with a liquid crystal display having the structure can be mounted.
- the present invention also provides a main body case, a camera section configured to be supported on the left side of the main body case on the left side when viewed from the front side and to be able to rotate back and forth, and an image signal captured by the camera section.
- Image signal generation unit having an ADC for converting a digital image signal into a digital image signal, a compression encoding unit for compressing and encoding the digital image signal converted by the image signal generation unit (such as an ADC), and a compression code for the compression encoding unit.
- Memory for associating the encoded captured image signal with the compression-encoded background image signal and storing the compressed encoded image signal and the compression-encoded background image signal stored in the memory.
- a decoding unit for synthesizing a local image signal expanded and decoded with the background image signal expanded and decoded by the expansion decoding unit, and an image signal synthesized by the image signal synthesizing unit. Controlling a display image signal generation unit, a compression encoding unit, a decompression decoding unit, and an image signal synthesis unit having a DAC for converting the compression-encoded background image signal into the compression-encoded background image signal.
- a liquid crystal display unit that is installed on the front side of the main body case and that displays an analog image signal obtained from a display image signal generation unit (DAC or the like) of the circuit;
- DAC display image signal generation unit
- a plurality of stacked flash memories are arranged side by side on the back side opposite to the liquid crystal display unit with respect to the main body case. This is an electronic camera with a liquid crystal display that can be mounted with an IC card.
- a back surface of the main body case is formed in a wavy shape in a left-right direction.
- a slide lens cap for protecting a lens of a camera portion is provided on an upper surface of the main body case.
- a power switch, a camera recording button, and a voice recording switch are provided on an upper surface of the main body case.
- the present invention also provides the electronic camera with a liquid crystal display, wherein the circuit is mounted on two or one substrate.
- the IC card in the electronic camera with a liquid crystal display, is configured to be attachable from an upper surface side of the main body case. Further, according to the present invention, in the electronic camera with a liquid crystal display, the size of the display portion is 3.2 to 4 inches.
- the present invention distinguishes between a background image and a local image and stores them in a memory, and incorporates the local image in or on the background image using the background image and the local image stored in the memory. Is output.
- an electronic camera with a liquid crystal display having a pocket size that can be taken in and out of the pocket, having low power consumption, being resistant to vibration, and having high computational performance and high speed is realized. It is a thing. Further, according to the above configuration, it is possible to realize an electronic camera with a liquid crystal display, which can be easily taken in and out of the pocket and easily held by one hand.
- FIG. 1 is a perspective view showing an appearance of an embodiment of an electronic camera with a liquid crystal display according to the present invention.
- FIG. 2 is a diagram showing the appearance of an embodiment of the electronic camera with a liquid crystal display according to the present invention.
- FIG. 3 is a diagram showing an embodiment of the internal configuration of the electronic camera with a liquid crystal display according to the present invention.
- FIG. 4 is a diagram showing an embodiment of a color TFT liquid crystal module connected to the developed flexible printed wiring according to the present invention.
- FIG. 5 is a diagram showing an embodiment of the first wiring board mounting structure provided inside the electronic force cell with a liquid crystal display according to the present invention.
- FIG. 6 is a diagram showing an embodiment of the second wiring board mounting structure provided inside the electronic camera with a liquid crystal display according to the present invention.
- FIG. 7 is a diagram showing an embodiment of a circuit configuration of an electronic camera with a liquid crystal display according to the present invention.
- FIG. 8 is a view showing a screen displayed on the TFT liquid crystal for mode selection in the electronic camera with a liquid crystal display according to the present invention.
- FIG. 9 is a diagram showing a screen edited and displayed on the TFT liquid crystal in the electronic camera with a liquid crystal display according to the present invention.
- FIG. 10 is a diagram showing an embodiment of a system configuration using the electronic camera with a liquid crystal display according to the present invention.
- FIG. 11 is a perspective view from the front side (liquid crystal panel side) showing an embodiment in which the electronic camera with a liquid crystal display according to the present invention is mounted on an adapter.
- FIG. 12 is a perspective view, viewed from the rear side, showing an embodiment in which an electronic camera with a liquid crystal display according to the present invention is mounted on an adapter.
- FIGS. 1A and 1B are perspective views showing the appearance of an embodiment of an electronic camera with a liquid crystal display according to the present invention.
- FIG. 1A is a perspective view from the front side (liquid crystal panel side), and FIG. Card (CF (Compact Flash) card) and a perspective view from the back
- FIG. 2A and 2B are views showing an appearance of an electronic camera with a liquid crystal display according to an embodiment of the present invention, wherein FIG. 2A is a top view as viewed from above, and FIG.
- (C) is a right side view
- (d) is a left side view
- (e) is a bottom view as viewed from below.
- the overall size of the electronic camera 1 with a liquid crystal display is about 90 mm in length, about 114 mm in width, and about 21 mm in thickness including a waveform formed on the back side. 2 is 3.2
- Reference numeral 3 denotes a camera unit composed of a lens system 4, a light receiving element 5, and a microphone 6, which pivotally support the lower side as shown in FIG. It is installed so that it can be used. Note that the camera unit 3 is configured such that the shaft to be supported can slide slightly upward when rotating back and forth around the shaft. The lower part of the camera unit 3 is configured so that the battery 7 can be stored.
- Reference numeral 8 denotes a battery cover.
- Reference numeral 9 denotes a slide lens cap that takes into consideration robustness, and is configured to be slidable left and right in FIG. 2 (a). 10 is a camera recording button. 1 1 is a power switch. 1 and 2 are audio recording switches.
- the headphone 86 that outputs audio is connected to the connector 21.
- An IC card (CF (Compact Flash) card) 14 has an external dimension of about 36.4 x 42.8 x 3.3mm3, and a flash memory chip of, for example, 16 Mb or 32 Mb is mounted on a thin substrate. Three, four, four, four, six, and eight stacked 14a are arranged side by side, and a lead / write control LSI 14b is installed and resin-sealed. It will be between 36MB and 128MB.
- Reference numeral 15 denotes an operation switch, which includes a play mode for play, fast forward, rewind, pause, stop, mode selection including an edit mode, and an IC drive read. These operation switches may be realized by operation on a liquid crystal panel, that is, by a software keyboard.
- the back side (the back side as seen by the operator) 16 has a corrugated shape to improve the operability as a portable device, and the flexible strip 17 with a good touch is embedded in the left and right ridges. .
- the back side 16 By forming the back side 16 in a corrugated shape in this way, it is easy to get in and out of the pocket, and it is easy to hold it with one hand. Also, by embedding a flexible band-like member 17, it is easier to hold by hand.
- the color TFT LCD panel 2 has a height of 48.768 mm and a width of 65.024 mm when the screen size is 3.2 inches.
- the size of one dot is 0.2032 mm in height and 0.2032 mm in width from R, G, B.
- the entire screen is 240 dots high and 320 dots wide.
- One character is displayed at 16 dots vertically and 12 dots horizontally.
- the size of one character is 3.225 mm in length and 2.4384 mm in width. Therefore, the entire screen can display 15 vertical lines and 20 horizontal characters.
- FIG. 3 is a diagram showing an embodiment of the internal configuration of the electronic device with a liquid crystal display according to the present invention, in which (a) is a front view seen from the liquid crystal panel side (front side),
- FIG. 7 is a diagram showing an embodiment of a color TFT liquid crystal module 41 connected to a developed flexible printed wiring, wherein (a) is a front view from the liquid crystal panel side (front side), and (b) is a bottom side view thereof. is there.
- FIG. 5 is a diagram showing an embodiment of the first wiring board mounting structure 51 on which an LSI or the like arranged on the inner rear side is mounted, wherein (a) is an MPEG (Moving Picture coding).
- FIG. 2 is a diagram showing the back side of the first wiring board mounting structure 51
- (b) is a side view thereof
- (c) is a diagram showing the front side of the first wiring board mounting structure 51
- FIG. 6 shows an embodiment of the second wiring board mounting structure 61 on which an LSI or the like is mounted between the color TFT liquid crystal module 41 and the first wiring board mounting structure 51.
- (A) shows the second model in which an LSI such as a microcomputer, a stacked memory module, a transformer for a DC-DC converter, and a connector for connecting the flexible wiring of the color TFT liquid crystal module 41 are mounted (mounted).
- FIG. 7 is a diagram showing the back side of the wiring board mounting structure 61, (b) is a side view thereof, and (c) is a diagram showing the front side of the second wiring board mounting structure 61.
- the color TFT LCD module 41 includes a color TFT liquid crystal 2, a gate driver LSI chip 42 mounted on the liquid crystal substrate, and a drain driver LSI chip 4 mounted on the liquid crystal substrate. 3; a gate-side flexible printed wiring 44 connected to the gate-side driver LSI chip 42; and a drain-side flexible printed wiring 45 connected to the drain-side driver LSI chip 43.
- Reference numeral 44a denotes a gate-side flexible printed wiring terminal connected to the connector 62 mounted on the second wiring board mounting structure 61.
- 45a is a drain connected to the connector 63 mounted on the second wiring board mounting structure 61. This is the terminal of the flexible printed wiring on the side.
- FIG. 4 shows a state where both the gate-side flexible printed wiring 44 and the drain-side flexible printed wiring 45 are developed.
- the first wiring board mounting structure 51 includes a first wiring board 52 and an MPEG (Moving Picture coding Experts Group) (digital signal) mounted on the first wiring board 52. (For processing) It is composed of LSI 53 and C 1 00, etc. In addition to the first wiring board mounting structure; body 51, an LSI for a JPEG (Joint Photogaraphic coding Experts Group) may be mounted. Further, the LSI 53 for MPE G and the LSI 54 for CODEC may be constituted by one LSI.
- MPEG Motion Picture coding Experts Group
- a video signal captured by the light receiving element of the camera unit 3 is captured at a predetermined sampling cycle, and a luminance signal and a color difference signal are converted from the captured video signal.
- the extracted luminance signal and color difference signal are converted to digital signals by an AZD conversion circuit, and are sequentially stored in the frame memory for one screen.
- compression processing by in-screen (spatial) correlation is performed on digital image signals sequentially stored in the frame memory.
- T Discrete cosine transform
- the returned image signal is compared with the image signal sequentially stored in the frame memory to detect a motion vector (a portion where motion has occurred) and to perform a compression process based on an inter-screen (temporal) correlation.
- Temporal (between screens) information compression Osamu: Extract only time difference information I do. ) And perform compression processing (entropy coding or variable length coding) on these compressed data by biasing the code appearance probabilities (entropy coding or variable length coding) (Statistical information compression processing: short codes for high frequency data, low codes Assign a long code to the frequency data.)) And store it in the stacked memory module 65 according to the address. As shown in FIG.
- the stacked memory module 65 is configured by arranging, for example, 2 ⁇ 4 flash memory chips in a stack of about 4 to 8 stages. High-speed writing is enabled by writing (storing) the data into each flash memory chip in a parallel state or near parallel state.
- an encoder (encoder) for audio in the MPEG LSI 53 and the CODEC LSI 54 the digital audio signal converted by the ADC 79 is subjected to frequency domain information compression processing (which is sensitive to the human ear). ), Then perform time domain information compression processing (extract only the time difference), and further perform statistical information compression processing (short code for high frequency data, low frequency Assign a long code to the frequency data.)), Perform encoding, and store it in the stacked memory module 65. Writing to the stacked memory module 65 is performed in a parallel state or near parallel state with respect to each flash memory chip, thereby realizing high-speed writing.
- the information compression compressed luminance signal and compressed color difference signal
- the information compression compressed luminance signal and compressed color difference signal
- inverse quantization and inverse DCT are performed by an inverse quantization unit and an inverse DCT unit, and a reproduced digital image is generated by a motion vector based on the information compression and stored in the frame memory.
- the decoded image stored in the frame memory is converted into an analog image signal by a DZA converter and output to the gate driver LSI chip 42 and the drain driver LSI chip 43.
- decoder for audio in the I53 and CODEC LSI54, it is decoded in the same way as video, converted to an analog audio signal in the DAC84, and supplied to the headphone through the amplifier85. Output from 8 6.
- the second wiring board mounting structure 61 is the second wiring board mounting structure.
- the stacked memory module 65 is configured by arranging, for example, 2 ⁇ 4 flash memory chips in which about 4 to 8 flash memory chips are stacked on the second wiring board 65.
- the LSI 64 such as a microcomputer, consists of an arithmetic unit 74, a control unit 75, and a register unit 76, and is connected to the stacked memory module 65 and the mounted IC card 14 via a non-line 87. It controls the memory controller 89, the MPEC LSI 53 and the CODEC LSI 54, the gate driver LSI chip 42, and the drain driver LSI chip 43.
- the electronic camera 1 with the liquid crystal display can be made thin by being configured with the first and second wiring board mounting structures 51 and 61.
- the microcomputer 73 stores an arithmetic unit 74, a control unit 75, and a processing program, and stores the memory unit 77 and the stacked memory module (for example, Formed from flash. It consists of a register section 76 that writes and reads to and from 65 via the bus.
- the control unit 75 includes an arithmetic unit 74, a register unit 76, a compression encoding unit 80, a decompression decoding unit 81, an image synthesis unit 82, a gate driver LSI chip 42, and a drain driver LSI chip 43 It also controls a memory control unit 89 connected to the mounted IC card 14 and the like.
- Reference numeral 78 denotes an image signal generation unit having an ADC (A / D converter) that performs A / D conversion on a video signal (composed of a luminance signal and a color difference signal) captured by the image sensor of the camera unit 3.
- Reference numeral 79 denotes an ADC (A / D converter) that performs AZD conversion of the sound obtained by the microphone 6.
- Reference numeral 80 denotes a compression encoding unit for compressing and encoding digital image signals and digital audio signals.
- the image is sequentially stored in a frame memory, and is compressed by an in-screen (spatial) correlation (DCT : discrete cosine conversion). ), And the value after this DCT operation is divided by a certain value (QSTEP-quantization width) by a quantizer (Q) to perform a quantization process.
- the compression processing based on the intra-screen correlation is returned by the inverse DCT unit, and the returned image signal is compared with the image signals sequentially stored in the frame memory to determine the motion vector (the portion where the motion occurred).
- the digital audio signal converted by the ADC 79 is subjected to the frequency domain information compression processing, the time domain information compression processing is further performed, the statistical information compression processing is further performed, and the encoded data is transmitted to the bus line 87.
- the decompression decoding unit that decompresses and decodes the compressed and coded digital image signal and digital audio signal received from the bus line 87.
- Luminance signal and compression The color difference signal) is subjected to entropy decoding, the inverse quantization and inverse DCT are performed on the inverse quantization and inverse DCT, and the reproduced digitized image is reproduced by the motion vector based on the above information compression. It is generated and stored in the frame memory, and information compression related to audio is decoded in the same way as video.
- the image synthesizing unit that outputs the moving image captured by the camera unit 3 output to the frame memory of the decompression decoding unit 81 as it is, or the background image received from the bus line 87 (For example, a still image) at a desired position, thinning out the moving image captured by the camera unit 3 output to the frame memory of the decompression decoding unit 81, reducing it to a desired size, and fitting it.
- Reference numeral 83 denotes a display image signal generator having a DAC (DZA converter) for DZA conversion for reproducing a video signal to be displayed on the color TFT liquid crystal 2.
- Reference numeral 91 denotes an interface unit for inputting various data by displaying a menu screen and icons for mode selection on the color TFT liquid crystal 2.
- 84 is a DAC that converts the decoded audio digital signal into an audio analog signal.
- Reference numeral 85 denotes an amplifier, which amplifies an audio analog signal and outputs the amplified signal to the head horn 86. 8 8 indicates information obtained by the software keyboard.
- Reference numeral 89 denotes a memory control unit connected to the mounted IC card 14, which is connected to the bus line 87. That is, the memory control unit 89 is for connecting the mounted IC card 14 to the bus line 87. 90 decompresses and decodes still images as background images It is connected to a bus line 87 and inputs its output to an image synthesizing unit 82 and a display image signal generating unit 83.
- the multi-media information processed by the electronic camera 1 with a liquid crystal display includes, for example, coded information such as characters (for example, titles and messages), synthesized sounds, and figures, and a microphone 9 provided in the camera unit 3.
- coded information such as characters (for example, titles and messages), synthesized sounds, and figures
- microphone 9 provided in the camera unit 3.
- There are natural information such as obtained audio, still images (background images such as travel guides, maps, clippings of advertisements, etc.), and moving images captured by the camera unit 3.
- Characters eg, titles, messages, etc.
- coded information such as synthesized sounds, figures, etc.
- still images from natural information eg, background images, eg, travel guides, maps, clippings of advertisements, etc.
- compression encoding is input and stored in the memory unit 77, thereby reducing the memory capacity of the memory unit 77, the stacked memory module 65, and the IC card 14. Can be achieved.
- the compression encoding may be performed by the compression encoding unit 80 and stored in the memory unit 77 via the register unit 76.
- the imaging element of the unit 3 captures an image of a subject and outputs a video signal composed of a sequentially moving image.
- the output video signal (consisting of a luminance signal and a color difference signal) is A / D-converted by an image signal generation unit 78, compression-encoded as a moving image by a compression encoding unit 80, and is converted to a bus line 8. Sent to 7 It is stored at high speed in the stacked memory module 65 via the register section 76 of the icon 73.
- the electronic camera 1 with the liquid crystal display When the electronic camera 1 with the liquid crystal display is used as a videophone and the subject is an operator or the like, it is necessary to turn the camera unit 3 forward to face the subject.
- the power switch 11 is turned on, and the microcomputer 73 reads the menu screen stored in the memory section 77 by operating the software board, and the color TFT liquid crystal 2 is read through the interface section 91.
- the various modes stored in the memory unit 76 are read out by operating the mode selection switch 15 f and displayed on the screen of the TFT (Thin Film Transister) liquid crystal 2 as shown in FIG. Select “3.
- Various editing modes” from among the various modes, and further specify “(1) Full image (video, still image)” and “(2) Background image (still image, video) + local image (video) , Still image) ").
- This selection result 8 8 is sent to the microcomputer 73, and when “(1) Full image (moving surface, still image)” is selected and the play operation switch 15 for playback using the software keyboard is operated,
- the microcomputer 73 sequentially reads out the compression-encoded moving images sequentially stored in the stacked memory module 65, decompresses and decodes them in the decompression decoding unit 81, stores the decompressed moving images in the frame memory, and stores the data in the decompression decoding unit 81.
- the image synthesizing unit 82 is controlled so that the digital image (moving image) output to and stored in the frame memory is output as it is. Therefore, the moving image itself of the subject captured by the camera unit 3 is displayed on the screen of the color TFT LCD 2.
- the operation switches 15 using the software keyboard include fast forward, rewind, pause, and stop. By operating these, fast forward, rewind, pause, and stop are performed.
- FIG. 9 shows a case where a travel album is created and a still image including a map of a travel destination and a travel guide captured by the camera unit 3 is selected as a background image.
- Setting the size and position (frame) of the local image and set the desired background image displayed on the screen of the TFT LCD 2 ( Figure 9 shows a still image consisting of a map of the travel destination).
- the local image (moving image) picked up by the camera unit 3 is inserted (inserted) into the unit.
- the size and position are set, and the set information is transmitted to the microcomputer 73.
- “b. Setting the size and position (frame) of the local image” means that the local image (moving image) captured by the camera unit 3 is inserted (inserted) into the desired background image. Not required if specified. However, the microcomputer 73 needs to obtain information on the size and position where the local image (moving image) captured by the camera unit 3 is inserted (inserted) with respect to the desired background image.
- the date and time when the image was captured by the camera unit 3 can be obtained from a timer built in the microcomputer 73. Also, text information or graphic information such as the title and the relationship between the background image and the local image is stored in the software. It can also be input by operating the hardware board and recorded in the memory unit 77 via the register unit 76.
- the microcomputer 73 includes the selected desired background image (compression-coded still image) and the local image (compression-coded moving image) for the desired background image (compression-coded still image). Since the setting information of the size and position of the image and the character information or graphic information such as the title to be inserted into the background image and the relationship between the background image and the local surface image can be obtained, the memory unit 7 7 The desired background image (compressed and coded still image) is read from the memory module 65, and the local image (compressed and coded moving image) is read from the stacked memory module 65.
- Information such as the size and position of the partial image (compressed coded video) and character information or graphic information such as the title to be inserted into the background image and the relationship between the background image and the local image are added.
- the desired background image and the local image are edited and written to the stacked memory module 65 via the register section 76, so that the stacked memory module 65 is in a compression-encoded state,
- the desired background image and the local image can be stored in association with the character information or the graphic information.
- the editing result is displayed on the TFT liquid crystal by operating the software keyboard so that the microcomputer 73 reads out the menu screen stored in the memory unit 77 and outputs the color image to the TFT panel via the interface unit 91.
- the various modes stored in the memory section 76 are read out by operating the mode selection switch 15 ⁇ on the liquid crystal 2 and displayed on the screen of the TF ⁇ liquid crystal 2 as shown in FIG. It can also be activated by specifying "4. Displaying the edited result on the TFT LCD".
- the editing result is displayed on the TFT LCD using a software keyboard, etc.
- the microcomputer 73 reads the local image (compression-coded moving image) captured and compressed by the camera unit 3 from the stacked memory module 65 and reads it out via the bus line 87. It is transmitted to the decompression decoding unit 81.
- the expansion decoding unit 81 expands the received local image (compressed and coded moving image) so as to conform to the set local image size obtained from the control unit 75 of the microcomputer. (Decrease the rate) and decode and output to frame memory for storage.
- the microcomputer 73 reads out the selected desired background image (compression-coded still image) from the memory unit 77 and transmits it to the decompression decoding unit 90 via the bus line 87.
- the expansion decoding unit 90 expands and decodes the received desired background image (compressed and coded still image), outputs the decoded image to a frame memory, and stores the image.
- the image synthesizing unit 82 based on the setting information of the size and position of the local image with respect to the desired background image obtained from the control unit 75 of the microcomputer 73, the image is stored in the frame memory of the decompression decoding unit 90.
- the decompressed decoded local image (moving image) stored in the frame memory of the decompressed decoding unit 81 is combined with the decompressed decoded background image (still image) and synthesized, and output to the frame memory for storage. .
- the display image signal generation unit 83 the relation between the title background image and the local image to be inserted into the background image obtained via the interface unit 91 is added to the synthesized image stored in the frame memory. It describes by adding character information or graphic information such as the person in charge and the date and time when the image was captured by the camera unit 3, converts it to an analog image signal by the DAC, and converts the gate driver, one LSI chip 42 and the drain driver one LSI. By transmitting the image to the chip 43, the moving image taken by the camera unit 3 can be displayed as a local image on the screen of the color TFT LCD 2 with the edited background image (still image). As a result,
- a still image consisting of a travel destination map and travel guide The moving image captured by the camera unit 3 is placed on the camera, and the date and time of the shooting and the travel destination are indicated by a figure such as an arrow if the background image is a map, and comments such as titles, travel destinations, and comments on the subject are written.
- a travel album can be created. You can also create a photo book (for example, a graduation album, an entrance memorial album, a wedding memorial album, etc.) by selecting a title or background that matches the photo book.
- the compression-encoded voice stored in the stacked memory module 65 is also decompressed and decoded by the decompression and decoding unit 81, converted to an analog voice signal by the DAC 84, and amplified by the amplifier 85. The sound can be heard by the head horn 86.
- the microcomputer 73 reads the menu screen stored in the memory section 77 and reads the menu screen.
- 9 Displayed on the TFT LCD 2 via 1 and various modes stored in the memory section 76 are read out by operating the mode selection switch 15 f, and as shown in FIG.
- the image information stored (stored) in the stacked memory module 65 by specifying “2. Write to IC card” in the various modes. Will be written to.
- several IC cards are required to write all the image information stored in the stacked memory module 65 into the IC card 14. Therefore, the image information stored in the stacked memory module 65 is partially written in the IC card 14. Therefore, it is necessary to select the image information to be written in the Ic force 14. That is, the image information stored in the stacked memory module 65 is stored in the color TFT LCD as described above.
- the desired image information from the image information stored in the stacked memory module 65 by the microcomputer 73 is stored in the IC card 14. It is possible to write to.
- the stacked memory module 65 also stores the compressed and encoded voice information, so that this voice information can also be written to the IC card 14.
- the IC card 14 is also composed of approximately 3 to 4 flash memory chips stacked in 4 to 8 layers, so that writing to the IC card 14 can be performed in the stacked memory module 65. High-speed writing can be realized by specifying addresses in the same manner as writing, by performing the operations in parallel or near-parallel on each flash memory chip.
- the edited image information stored in the stacked memory module 65 can be deedited, captured by the camera unit, and only the compressed and encoded moving image can be written to the IC card 14.
- the connector 71 connected to the bus line 87 via the I / O control unit 72 has a personal computer 101, a work station, a TV 102, a PHS
- a communication device 103 such as a cellular wireless device and a printer
- coded information such as characters, synthetic sounds, and figures, and still images from natural information, etc.
- stacked memory module 6 For example, the image information stored in 5 can be directly output.
- the IC card 14 can be attached to the personal computer 101, workstation, TV 102, and simple video database terminal 104 connected to the printer.
- the simple video data base terminal 104 may be configured so that a hard disk or a DVD can be mounted.
- FIGS. 11 and 12 show one embodiment of the case where the electronic camera 1 with a liquid crystal display is mounted on an adapter 111 which has a built-in battery with a large power capacity and can mount a hard disk or the like, for example.
- the form is shown.
- the battery is connected to a power supply line of the electronic camera 1 with a liquid crystal display using, for example, a connector.
- Reference numeral 1 12 denotes a portion where a hard disk or the like is mounted.
- the rear surface of the adapter 111 has a protruding portion 113 for easy grasping by hand, and a flexible band-like member 114 with a superior touch is embedded therein.
- an electronic camera with a liquid crystal display having a pocket size that can be taken in and out of a pocket, has low power consumption, is strong against vibration, and has high computational performance and high speed. To play.
- an electronic camera with a liquid crystal display that can be easily taken in and out of a pocket and easily held with one hand can be realized. Further, according to the present invention, there is an effect that an electronic camera with a liquid crystal display that can easily and easily edit an image such as inserting a local image into a background image can be realized.
Landscapes
- Engineering & Computer Science (AREA)
- Multimedia (AREA)
- Signal Processing (AREA)
- Human Computer Interaction (AREA)
- Television Signal Processing For Recording (AREA)
- Studio Devices (AREA)
- Liquid Crystal (AREA)
Description
Claims
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR1019980710795A KR100314516B1 (ko) | 1996-08-21 | 1997-08-20 | 액정표시기능을갖는전자카메라 |
EP97935835A EP0917359A4 (en) | 1996-08-21 | 1997-08-20 | ELECTRONIC PHOTOGRAPHY APPARATUS WITH LIQUID CRYSTAL DISPLAY |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8220163A JPH1065948A (ja) | 1996-08-21 | 1996-08-21 | 液晶表示付き電子カメラ |
JP8/220163 | 1996-08-21 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO1998008337A1 true WO1998008337A1 (fr) | 1998-02-26 |
Family
ID=16746880
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP1997/002886 WO1998008337A1 (fr) | 1996-08-21 | 1997-08-20 | Appareil de prise de vues electronique a afficheur a cristaux liquides |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP0917359A4 (ja) |
JP (1) | JPH1065948A (ja) |
KR (1) | KR100314516B1 (ja) |
WO (1) | WO1998008337A1 (ja) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2000042615A2 (en) * | 1999-01-14 | 2000-07-20 | Agate Semiconductor, Inc. | Array architecture and operating methods for digital multilevel nonvolatile memory integrated circuit system |
US6285598B1 (en) | 1997-03-06 | 2001-09-04 | Silicon Storage Technology, Inc. | Precision programming of nonvolatile memory cells |
US6396742B1 (en) | 2000-07-28 | 2002-05-28 | Silicon Storage Technology, Inc. | Testing of multilevel semiconductor memory |
US6462986B1 (en) | 1995-10-06 | 2002-10-08 | Silicon Storage Technology, Inc. | Integrated circuit for storage and retrieval of multiple digital bits per nonvolatile memory cell |
US6487116B2 (en) | 1997-03-06 | 2002-11-26 | Silicon Storage Technology, Inc. | Precision programming of nonvolatile memory cells |
Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
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JP3169888B2 (ja) | 1998-03-25 | 2001-05-28 | エヌイーシービューテクノロジー株式会社 | ディジタル画像再生装置および画像再生方法ならびに画像再生プログラムが格納された記録媒体 |
GB2378074B (en) * | 2001-07-27 | 2005-08-24 | Hewlett Packard Co | Image capturing device |
CA2698281C (en) | 2007-07-30 | 2016-08-16 | Twenty20, Inc. | Components of a portable digital video camera |
US8319833B2 (en) | 2009-06-23 | 2012-11-27 | Sentrus, Inc. | Video surveillance system |
CN103210639B (zh) | 2010-09-13 | 2019-05-07 | 康道尔知识产权控股有限责任公司 | 配置用于远程图像采集控制和观看的便携式数字视频摄像机 |
JP6756602B2 (ja) | 2016-12-15 | 2020-09-16 | 富士フイルム株式会社 | プリンター付きデジタルカメラ |
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JP2797159B2 (ja) * | 1992-03-02 | 1998-09-17 | カシオ計算機株式会社 | 画像データ圧縮装置及び画像データ圧縮方法 |
JP3392967B2 (ja) * | 1994-12-27 | 2003-03-31 | ペンタックス株式会社 | スチルビデオカメラ |
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- 1996-08-21 JP JP8220163A patent/JPH1065948A/ja active Pending
-
1997
- 1997-08-20 KR KR1019980710795A patent/KR100314516B1/ko not_active IP Right Cessation
- 1997-08-20 WO PCT/JP1997/002886 patent/WO1998008337A1/ja not_active Application Discontinuation
- 1997-08-20 EP EP97935835A patent/EP0917359A4/en not_active Withdrawn
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JPH02172382A (ja) * | 1988-12-26 | 1990-07-03 | Casio Comput Co Ltd | 画像処理システムおよび電子カメラ |
JPH02291784A (ja) * | 1989-05-01 | 1990-12-03 | Olympus Optical Co Ltd | 情報記録装置 |
JPH05336421A (ja) * | 1991-09-05 | 1993-12-17 | Canon Inc | スチルビデオカメラ |
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Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6462986B1 (en) | 1995-10-06 | 2002-10-08 | Silicon Storage Technology, Inc. | Integrated circuit for storage and retrieval of multiple digital bits per nonvolatile memory cell |
US6285598B1 (en) | 1997-03-06 | 2001-09-04 | Silicon Storage Technology, Inc. | Precision programming of nonvolatile memory cells |
US6487116B2 (en) | 1997-03-06 | 2002-11-26 | Silicon Storage Technology, Inc. | Precision programming of nonvolatile memory cells |
WO2000042615A2 (en) * | 1999-01-14 | 2000-07-20 | Agate Semiconductor, Inc. | Array architecture and operating methods for digital multilevel nonvolatile memory integrated circuit system |
WO2000042615A3 (en) * | 1999-01-14 | 2000-11-30 | Agate Semiconductor Inc | Array architecture and operating methods for digital multilevel nonvolatile memory integrated circuit system |
US6282145B1 (en) | 1999-01-14 | 2001-08-28 | Silicon Storage Technology, Inc. | Array architecture and operating methods for digital multilevel nonvolatile memory integrated circuit system |
US7471581B2 (en) | 1999-01-14 | 2008-12-30 | Silicon Storage Technology, Inc. | Wide dynamic range and high speed voltage mode sensing for a multilevel digital non-volatile memory |
US7848159B2 (en) | 1999-01-14 | 2010-12-07 | Silicon Storage Technology, Inc. | Non-volatile memory systems and methods including page read and/or configuration features |
US9640263B2 (en) | 1999-01-14 | 2017-05-02 | Silicon Storage Technology, Inc. | Non-volatile memory systems and methods |
US6396742B1 (en) | 2000-07-28 | 2002-05-28 | Silicon Storage Technology, Inc. | Testing of multilevel semiconductor memory |
Also Published As
Publication number | Publication date |
---|---|
EP0917359A1 (en) | 1999-05-19 |
EP0917359A4 (en) | 2000-12-27 |
KR100314516B1 (ko) | 2002-01-17 |
KR20000065254A (ko) | 2000-11-06 |
JPH1065948A (ja) | 1998-03-06 |
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