USRE37342E1 - Dual format digital video production system - Google Patents

Dual format digital video production system Download PDF

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Publication number
USRE37342E1
USRE37342E1 US09/016,777 US1677798A USRE37342E US RE37342 E1 USRE37342 E1 US RE37342E1 US 1677798 A US1677798 A US 1677798A US RE37342 E USRE37342 E US RE37342E
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Prior art keywords
video
program
editing
digital
removable
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US09/016,777
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Kinya Washino
Barry H. Schwab
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Multi Format Inc
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Multi Format Inc
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First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=23567794&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=USRE37342(E1) "Global patent litigation datasetā€ by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Priority claimed from US08/050,861 external-priority patent/US5450140A/en
Priority to US09/016,777 priority Critical patent/USRE37342E1/en
Application filed by Multi Format Inc filed Critical Multi Format Inc
Priority to US09/900,784 priority patent/USRE42020E1/en
Publication of USRE37342E1 publication Critical patent/USRE37342E1/en
Application granted granted Critical
Priority to US11/003,580 priority patent/USRE42657E1/en
Priority to US11/003,579 priority patent/USRE42709E1/en
Priority to US11/003,576 priority patent/USRE42160E1/en
Priority to US11/003,834 priority patent/USRE41968E1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Definitions

  • This invention relates generally to video recording systems associated with the editing of program materials, and, more particularly, to a system that takes advantage of a PC-based platform for performing non-linear editing functions.
  • Linear editing systems are generally integrated with tape-based program storage, while non-linear editing systems are associated more closely with disk-based storage media, wherein random-access storage more easily may be implemented.
  • the typical linear editing system is implemented with one of the many ā€œbroadcast qualityā€ videotape recording formats.
  • analog recorders include, among others, 1ā€²ā€² C-format, Betacam, Betacam-SP, 3 ā‡ 4ā€²ā€² U-matic, U-matic-SP, S-VHS, and Hi-8.
  • digital recorders include, among others, D-1, D-2, D-3, D-5, DCT, and Digital Betacam.
  • Each of these recording formats is incompatible with any other format, and all require sophisticated system facilities, including synchronization systems, edit controllers, audio and video switchers and processors, digital video effects (DYE) (DVE) systems, character generators, and other equipment.
  • DVE digital video effects
  • This in turn, requires extensive physical plant facilities for electric power, air conditioning and air filtration, storage space, and maintenance equipment.
  • large operational and maintenance staffs are required to keep the equipment in good working order.
  • recording duration capacity for these types of videotape recorders ranges up to three hours or more, making them uniquely valuable for many applications, such as program distribution, archival storage, and as master program sources for mass duplication of videos for the home video market.
  • non-linear systems are based on optical discs, or alternatively, on magnetic or magneto-optical disks. Because of the relatively high cost of these storage media when long-duration recording periods are required, such systems are relegated to use as off-line editing systems applied to the preparation of edit decision lists (EDLs) for use in edit suites incorporating linear editing systems.
  • EDLs edit decision lists
  • a further object of the invention is to provide extended playback of 40 hours or more of digital video programming, for cable television or other uses.
  • the present invention achieves these and other objectives by providing a PC-based audio/video production system which addresses the problem of providing inexpensive alternatives to the large, expensive edit suites currently in common use.
  • Digital program source material produced by specially modified cameras or other sources, provide data-compressed audio and video program materials in two formats having matched edit-time-code identification.
  • a first format having a higher data-compression ratio and intended for use in an off-line editing system is used to develop an edit decision list, and a second format having a lower data-compression ratio is used in an on-line editing system for the production of a final representation of the program.
  • off-line editing decisions may be developed on a PC, including a portable PC, using removable storage media, and final representations of the programs may be implemented on a stationary-head or rotary-head digital-tape-based format, such as DAT, 6-mm or 8-mm.
  • a method of producing a final video program therefore includes the steps of providing program source materials in the first and second digital formats, the first format being characterized in having a higher data compression ratio than the second; recording the materials in the first and second formats, respectively, onto first and second removable storage media along with correlated edit-time-code information in each case; interfacing the first storage medium to an off-line video editing system to develop an edit decision list: interfacing the second storage medium to an on-line video editing system; transferring the edit decision list developed in conjunction with the off-line video editing system to the on-line video editing system; and editing the materials in the second formal format on the second storage medium, in accordance with the edit decision list, to produce a final video program.
  • FIG. 1 is a schematic drawing of a portable dual-format digital video recorder optionally implemented as part of a camcorder system
  • FIG. 2 is a functional block diagram of a dual-format digital video recorder
  • FIG. 3 is an oblique representation of an off-line digital video editing system implemented with a PC-based edit controller having provisions for accepting removable storage media;
  • FIG. 4 is a block diagram of an on-line digital video editing system implemented with a PC-based edit controller having provisions for accepting removable storage media.
  • FIG. 1 shows a portable dual-format digital video recorder according to the invention, optionally implemented as part of a camcorder system.
  • a lens 2 and viewfinder 4 are mounted on the body of a camera frame.
  • the usual optical-splitter, CCD sensors and driver circuitry, and digital signal processing circuitry are located at 6 , with optional battery-pack capability being shown at 10 .
  • the various analog and digital output signals and any input audio, video, or control signals, all shown generally at 16 are interfaced through appropriate connectors disposed on the rear-panel 12 and sub-panel 14 . Provisions are included as shown for the input of analog audio signals, and for the output of both analog and digital audio signals.
  • fiber-optic cabling is employed as a signal-carrying medium.
  • the internal video recording facilities are comprised of two parts.
  • a lower data-compression-ratio digital audio/video signal is recorded on a stationary-head or rotary-head digital data tape recorder (such as quarter-inch cartridge, half-inch cartridge, DAT, 6-mm or 8-mm) in the removable-tape transport 18 , intended for utilization in an off-line video editing system, described herein below.
  • a second digital audio/video signal having a higher data-compression ratio is recorded on a removable storage media unit 20 .
  • This removable storage medium is intended for utilization in an off-line video editing system, also described herein below.
  • this removable storage medium may be implemented by any of several well known technologies, such as magnetic or magneto-optical disks, optical discs, or semiconductor memory modules.
  • the two signal recording media implemented in the two parts of the internal video recording facilities may record the audio and video signals in separated form, or alternatively may be implemented by any of several well-known systems for interleaved audio/video data, such as the audio/video interleave (ā€œAVIā€) system of Microsoft Corporation, the ā€œM-Powerā€ technique offered by Hewlett-Packard, or other systems.
  • AVI audio/video interleave
  • Microsoft Corporation the audio/video interleave
  • M-Power technique offered by Hewlett-Packard
  • removable storage media examples include PCMCIA-based removable disk drives (currently available with capacities of 420 MBytes, and soon to be available with capacities as high as 1 GByte) and 8-mm tape cassettes (currently available with capacity of 20 GB, and soon to be available with capacities as high as 80 GB).
  • PCMCIA-based removable disk drives currently available with capacities of 420 MBytes, and soon to be available with capacities as high as 1 GByte
  • 8-mm tape cassettes currently available with capacity of 20 GB, and soon to be available with capacities as high as 80 GB.
  • 420 MBytes will store approximately 75 minutes of program material (in NTSC format using an image dimension in pixels of 320 ā‡ 240 for off-line editing), and at a data-compression ratio of 5:1, 20 GB also will store approximately 60 minutes of program material.
  • FIG. 2 is a functional diagram of a storage-device-based digital recorder according to the invention, either employed in a video camera, or implemented separately in editing and production facilities.
  • a removable hard disk drive 70 and a digital tape drive 88 are interfaced through an interface bus controller 72 .
  • Such a system achieves data transfer rates of 10 MB/sec, and higher rates on these or other data storage devices, such as high-capacity removable memory modules, is anticipated.
  • alternative methods of storage such as optical or magneto-optical drives could be utilized, preferably based on various interface bus standards such as SCSI-2 or PCMCIA.
  • both of the removable media for drives 70 and 88 should be recorded with identical or at least correlated edit-time-code information, so that edit lists developed from one storage medium will produce the same results when applied to the program material recorded simultaneously on the other storage medium.
  • Microprocessor 74 through user interface provisions 75 (such as keyboards, touch-screens, etc.) controls the 64-bit or wider data bus 80 , which integrates the various components.
  • user interface provisions 75 such as keyboards, touch-screens, etc.
  • microprocessors include the Alpha 21064 by Digital Equipment Corporation, and the MIPS R4400 by MIPS Technologies, Inc. Future implementations might rely on the already announced P6 by Intel Corp. or the PowerPC 620.
  • An alternative architecture may be implemented using multiple processors working in parallel to increase the effective frame rate.
  • the PCI data bus for example, is capable of sustained data transfer rates of 100 MB/sec.
  • a ROM 76 is used for fixed program storage.
  • the RAM 78 preferably has the capacity to function as a buffer, representing 25 seconds or more of live NTSC video in 4:2:2 format, to enable ā€œhot-swappingā€ of removable media without interruption of the input video signal during recording or alternatively the output video signal during playback.
  • Graphics processor 82 represents dedicated hardware which performs the various manipulations required to process input video signals 84 and to output the video signals 86 . Although shown as Y/R-Y/B-Y format, either the inputs or outputs, or both, may be configured in alternative formats, such as RGB, YIQ, YUV or other commonly used alternatives.
  • a hardware-based implementation is preferred, with the system employing, for the tape-based drives, a data-compression ratio of 5:1 for conventional signals (NTSC/PAL) and a 10:1 data-compression ratio for HDTV signals.
  • a data-compression ratio of 50:1 is preferably utilized.
  • Examples of the many available options for this data compression function include the currently available Apple QuickTime system, fractal compression, MPEG-1 (for off-line applications) and Motion-JPEG (for on-line applications). In many applications, MPEG-2 data compression will be suitable for on-line editing.
  • Audio signals may be included within the data stream, as proposed in the several systems for digital television transmission already under evaluation by the Federal Communications Commission, or by one of the methods available for integrating audio and video signals used in multi-media recording schemes, such as the Microsoft ā€œ.AVIā€ Audio/Video Interleave (Audio/Video Interleave) file format.
  • an independent system for recording audio signals may be implemented either by employing separate digital recording provisions controlled by the same system and electronics, or by implementing completely separate equipment external to the camera system described above.
  • FIG. 3 shows an off-line digital video editing system, implemented with a PC-based edit controller having provisions for accepting materials in the form of removable storage media.
  • the controller 102 is preferably of conventional design, but operates at least at the level of current Intel Pentium or high-level ā€œ486ā€ processors.
  • the unit is equipped with a color display, and preferably includes a PCI internal bus structure, and provisions for interfacing with a removable PCMCIA storage card 104 .
  • this card 104 is implemented with magnetic or magneto-optical disks, or with an optical disc unit.
  • a stand-alone external data storage unit could be interfaced through the PCMCIA facilities, or by way of an SCSI-type interface.
  • a PCMCIA expansion adapter 106 may be provided, so that a plurality of PCMCIA cards or PCMCIA devices 108 may be accessed conveniently through a single PCMCIA slot on the PC, as shown.
  • This expansion adapter is provided with internal selection and multiplexing circuitry, so that each plug-in card or device may be accessed independently and without interference with any other card or device in [he the expansion adapter. The selection may be performed by employing techniques well-known in the art, such as the addressing schemes utilized for SCSI or GPIB data busses.
  • an expansion adapter equipped with ten PCMCIA slots and plug-in cards is capable of providing ten hours of original program material, and this programming capacity is capable of being further expanded with other types of PCMCIA-compatible devices.
  • a custom-designed PC could be provided with multiple PCMCIA slots to accept a plurality of storage devices without the need for an external expansion adapter.
  • the off-line digital video editing system PC is used to edit and combine the materials stored on various data-storage devices, producing an edit decision list which then may be utilized by an on-line editing system.
  • the availability of multiple storage devices enables the operator to rehearse and then confirm ā€œA/B-rollā€ edits with only two storage devices, and ā€œA/B/C-rollā€ edits with three storage devices.
  • the system is capable of controlling the various storage devices so as to produce highly complicated sequences in a convenient and timely manner.
  • the off-line editing system described herein below is capable of producing the final edited version of the program with high-quality results in accordance with the preferred embodiment.
  • the versatility of the system may be further enhanced if planning for the program is begun by providing script and staging information to the computer in advance of editing, or even in advance of filming or taping the original production.
  • the script may be provided as a simple text file, or as a formatted word processor file, such as used in ā€œWordPerfectā€ or ā€œWord for Windowsā€.
  • the file may be of a custom format, as is commonly used by professional scriptwriters.
  • This script and staging information is then reformatted to include specific commands, such as when to switch camera coverage to a particular actor, or the choice of a particular camera angle.
  • the modified script file is then used to guide the operator of the off-line editing system in making edit decisions to match the program materials to the script, to make any modifications to the script that are necessitated by the circumstances of the taping, or to take advantage of any unforeseen artistic opportunities presented by the actual taped materials.
  • the staging information described herein above is identified by special camera-remote-control software, and the camera control operator is provided with a graphical interface which depicts the layout of the set and the ā€œblockedā€ positions of the actors and props for a given scene.
  • This system preferably also includes a user interface (such as a touch-screen or a mouse) to enable the camera control operator to program the cameras to be in the correct location, and to have the correct zoom-lens and pan-tilt positions, to capture the scene as desired, as described in co-pending application U.S. Ser. No. 08/050,861.
  • the operator optionally may add information to control automated lighting systems, which are well-known in the are art of the film, video and stage production.
  • This enhanced version of the modified script file is then used to direct camera actions during the actual taping of the scenes, and is further modified as part of the off-line editing process as the EDL is developed, as described above, in accordance with the invention.
  • FIG. 4 An on-line digital video editing system is depicted in block-diagram form in FIG. 4 .
  • the functional operation of the editing system follows that of the digital video editing system disclosed in FIG. 2, or in an alternative embodiment, may be implemented in a more sophisticated form, as described in our co-pending application ā€œMulti-Format Audio/Video Production System,ā€ U.S. application Ser. No. 08/298,104 filed Aug. 30, 1994.
  • This system is implemented with a PC-based edit controller 206 having separate provisions for accepting removable storage media.
  • the digital video tapes recorded by the system of FIG. 2 are installed in a tape-storage ā€œjukeboxā€ 208 for easy access during editing.
  • Such tape cassette handling devices are well-known in the art of computer data storage, and are generally utilized for data back-up applications or for archival storage.
  • the edits incorporated into the edit decision list are utilized to sequence the various digital tapes so as to assemble a recording of the desired program materials into a final finished product, which is then recorded on the videotape recorder 202 .
  • This video recorder may be implemented as any of the commonly used choices for analog recorders, including, among others, 1ā€²ā€² C-format, Betacam, Betacam-SP, U-matic-SP, and Hi-8. If implemented as a digital recorder, the available choices include, among others, D-1, D-2, D-3, D-5, DCT, and Digital Betacam.
  • the final format could be another digital data tape such as the type used for program source material or any other removable storage media.
  • the video monitor 204 is used to manipulate the windows-based edit system control software, and to view the program materials as the edit process proceeds. This process will be essentially automatic, as all of the necessary decisions already have been made in the off-line editing process as described above. In addition, this is an appropriate time for adding digital video effects to the program or to implement any special effects included in the program script.
  • the invention may be used for other applications limited to record/playback, without implementing the full range of editing features.
  • applications such as master playback for video duplication
  • the program master nape tape must be played, rewound to the beginning, and then restarted, on a repeating cycle.
  • this represents a great deal of physical stress on the program master tape, thereby requiring a large number of copies of this master tape when many production runs are required to complete an order.
  • some production time is lost due to the rewinding process itself.
  • the invention may also be employed as a playback unit for cable television usage or other extended-playing time applications.
  • the versatility of the Digital Video Production System may be enhanced further, if planning for the program is begun by providing script and staging information to the computer in advance of editing, or even in advance of filming or taping the original production.
  • Computer software having access to the script materials will enable the operator to match the scenes to the recorded video materials quickly, thereby speeding the editing process.
  • it is common practice in broadcast-television news studios to use remotely-controlled cameras to telecast the live programs. By coupling the software script materials to instructions for control of the camera movements, the capabilities of all of these systems will be optimized.

Abstract

An audio/video production system is implemented on a PC-based platform, preferably utilizing various forms of removable magnetic, optical, or magneto-optical storage media. Specially modified cameras or other sources provide digitally data-compressed audio and video program materials in two formats, a first format having a higher data-compression ratio and intended for use in off-line systems to develop edit decision lists, and a second format having a lower data-compression ratio and intended for use in on-line editing and to produce the final representations of the programs. Off-line editing decisions may thus be developed on a PC using removable storage media, and final representations of the programs may be produced on-line in accordance with stationary-head or rotary-head digital-tape-based formats, such as DAT, 6-mm or 8-mm tapes. In an alternative embodiment, automatic and unattended editing, or extended program playback of more than 40 hours duration of digital video, is available.

Description

REFERENCE TO RELATED APPLICATIONS
This is a continuation-in-part of U.S. application Ser. No. 08/298,104, filed Aug. 30, 1994, now U.S. Pat. No. 5,537,157, and U.S. application Ser. No. 08/050,861, filed Apr. 21, 1993, now patented, U.S. Pat. No. 5,450,140.
FIELD OF THE INVENTION
This invention relates generally to video recording systems associated with the editing of program materials, and, more particularly, to a system that takes advantage of a PC-based platform for performing non-linear editing functions.
BACKGROUND OF THE INVENTION
Traditional video editing systems are generally divided into two categories: linear and non-linear. Linear editing systems are generally integrated with tape-based program storage, while non-linear editing systems are associated more closely with disk-based storage media, wherein random-access storage more easily may be implemented. The typical linear editing system is implemented with one of the many ā€œbroadcast qualityā€ videotape recording formats. The choices for analog recorders include, among others, 1ā€³ C-format, Betacam, Betacam-SP, Ā¾ā€³ U-matic, U-matic-SP, S-VHS, and Hi-8. The choices for digital recorders include, among others, D-1, D-2, D-3, D-5, DCT, and Digital Betacam. Each of these recording formats is incompatible with any other format, and all require sophisticated system facilities, including synchronization systems, edit controllers, audio and video switchers and processors, digital video effects (DYE) (DVE) systems, character generators, and other equipment. This, in turn, requires extensive physical plant facilities for electric power, air conditioning and air filtration, storage space, and maintenance equipment. Furthermore, large operational and maintenance staffs are required to keep the equipment in good working order. However, recording duration capacity for these types of videotape recorders ranges up to three hours or more, making them uniquely valuable for many applications, such as program distribution, archival storage, and as master program sources for mass duplication of videos for the home video market.
In contrast, non-linear systems are based on optical discs, or alternatively, on magnetic or magneto-optical disks. Because of the relatively high cost of these storage media when long-duration recording periods are required, such systems are relegated to use as off-line editing systems applied to the preparation of edit decision lists (EDLs) for use in edit suites incorporating linear editing systems. However, the rapid random-access features and editing ease are valuable for short programs.
As currently implemented by many manufacturers (such as AVID and videoCube), PC-based hard disk storage is very expensive. If equipped with 10 GB of storage capacity, the system, in practice, is utilized in a two-step process. First, the original unedited program material is digitized at a high data-compression ratio to provide representative pictures for use in an off-line editing environment, whereby the operator may develop an EDL. This EDL then is used to perform the required editing, using program materials that have been digitized and stored at much lower data-compression ratios. Because these two digitizing steps must be performed in real time, this is an expensive, time-consuming process which requires well-drained and expensive operational and engineering personnel.
SUMMARY OF THE INVENTION
It is an object of the invention to integrate the most valuable features of linear and non-linear editing system approaches.
It is another object of the invention to provide capabilities for automatic unattended editing from edit decision lists developed on an off-line editing system.
It is yet another object of the invention to provide a PC-based digital video recorder for applications such as broadcast television playback, video duplication source-master playback, or other related applications.
A further object of the invention is to provide extended playback of 40 hours or more of digital video programming, for cable television or other uses.
The present invention achieves these and other objectives by providing a PC-based audio/video production system which addresses the problem of providing inexpensive alternatives to the large, expensive edit suites currently in common use. Digital program source material, produced by specially modified cameras or other sources, provide data-compressed audio and video program materials in two formats having matched edit-time-code identification. A first format having a higher data-compression ratio and intended for use in an off-line editing system is used to develop an edit decision list, and a second format having a lower data-compression ratio is used in an on-line editing system for the production of a final representation of the program. As such, off-line editing decisions may be developed on a PC, including a portable PC, using removable storage media, and final representations of the programs may be implemented on a stationary-head or rotary-head digital-tape-based format, such as DAT, 6-mm or 8-mm.
By employing one of several new, small, inexpensive storage media such as PCMCIA-based disk drives, and by utilizing data-compression technology, the off-line editing capabilities are achieved in an economical system, with the digital-tape-based formats providing broadcast-quality required even for demanding applications. Recording duration capacity for these media is 60 to 120 minutes or longer for conventional NTSC or PAL video formats, and a natural extension to HDTV formats (with comparable program duration capacity) is achieved as commercial availability of storage media having higher recording densities becomes economically practical. Where compatibility to film materials is desirable, operation of the various system components at 24 frames-per-second is implemented.
A method of producing a final video program according to the invention therefore includes the steps of providing program source materials in the first and second digital formats, the first format being characterized in having a higher data compression ratio than the second; recording the materials in the first and second formats, respectively, onto first and second removable storage media along with correlated edit-time-code information in each case; interfacing the first storage medium to an off-line video editing system to develop an edit decision list: interfacing the second storage medium to an on-line video editing system; transferring the edit decision list developed in conjunction with the off-line video editing system to the on-line video editing system; and editing the materials in the second formal format on the second storage medium, in accordance with the edit decision list, to produce a final video program.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a schematic drawing of a portable dual-format digital video recorder optionally implemented as part of a camcorder system;
FIG. 2 is a functional block diagram of a dual-format digital video recorder;
FIG. 3 is an oblique representation of an off-line digital video editing system implemented with a PC-based edit controller having provisions for accepting removable storage media; and
FIG. 4 is a block diagram of an on-line digital video editing system implemented with a PC-based edit controller having provisions for accepting removable storage media.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
FIG. 1 shows a portable dual-format digital video recorder according to the invention, optionally implemented as part of a camcorder system. A lens 2 and viewfinder 4 are mounted on the body of a camera frame. The usual optical-splitter, CCD sensors and driver circuitry, and digital signal processing circuitry are located at 6, with optional battery-pack capability being shown at 10. The various analog and digital output signals and any input audio, video, or control signals, all shown generally at 16, are interfaced through appropriate connectors disposed on the rear-panel 12 and sub-panel 14. Provisions are included as shown for the input of analog audio signals, and for the output of both analog and digital audio signals. Preferably fiber-optic cabling is employed as a signal-carrying medium.
The internal video recording facilities are comprised of two parts. First, a lower data-compression-ratio digital audio/video signal is recorded on a stationary-head or rotary-head digital data tape recorder (such as quarter-inch cartridge, half-inch cartridge, DAT, 6-mm or 8-mm) in the removable-tape transport 18, intended for utilization in an off-line video editing system, described herein below. Simultaneously, a second digital audio/video signal having a higher data-compression ratio is recorded on a removable storage media unit 20. This removable storage medium is intended for utilization in an off-line video editing system, also described herein below. In practice, this removable storage medium may be implemented by any of several well known technologies, such as magnetic or magneto-optical disks, optical discs, or semiconductor memory modules. The two signal recording media implemented in the two parts of the internal video recording facilities may record the audio and video signals in separated form, or alternatively may be implemented by any of several well-known systems for interleaved audio/video data, such as the audio/video interleave (ā€œAVIā€) system of Microsoft Corporation, the ā€œM-Powerā€ technique offered by Hewlett-Packard, or other systems.
Examples of removable storage media include PCMCIA-based removable disk drives (currently available with capacities of 420 MBytes, and soon to be available with capacities as high as 1 GByte) and 8-mm tape cassettes (currently available with capacity of 20 GB, and soon to be available with capacities as high as 80 GB). At a data-compression ratio of 50:1, 420 MBytes will store approximately 75 minutes of program material (in NTSC format using an image dimension in pixels of 320Ɨ240 for off-line editing), and at a data-compression ratio of 5:1, 20 GB also will store approximately 60 minutes of program material. When the newer 50 GB or 80 GB tapes become available, these tapes will be capable of storing either four hours of programming NTSC or PAL format, or two hours in an HDTV format, making them practical for use in those applications currently allocated to linear editing equipment, as described above. Alternatively, using the currently available MPEG-2 data compression with a ratio of 20:1, a 20 GB tape will accommodate four hours of NTSC or PAL recording (or one hour of HDTV); an 80 GB tape will accommodate 16 hours of NTSC or PAL recording (or four hours for HDTV). Where compatibility to film materials is desirable, operation of the various system components at 24 frames-per-second is implemented.
FIG. 2 is a functional diagram of a storage-device-based digital recorder according to the invention, either employed in a video camera, or implemented separately in editing and production facilities. As shown, a removable hard disk drive 70 and a digital tape drive 88 are interfaced through an interface bus controller 72. Such a system achieves data transfer rates of 10 MB/sec, and higher rates on these or other data storage devices, such as high-capacity removable memory modules, is anticipated. In practice, alternative methods of storage such as optical or magneto-optical drives could be utilized, preferably based on various interface bus standards such as SCSI-2 or PCMCIA. In all cases, however, in order to ensure compatability with downstream editing facilities, both of the removable media for drives 70 and 88 should be recorded with identical or at least correlated edit-time-code information, so that edit lists developed from one storage medium will produce the same results when applied to the program material recorded simultaneously on the other storage medium.
Microprocessor 74, through user interface provisions 75 (such as keyboards, touch-screens, etc.) controls the 64-bit or wider data bus 80, which integrates the various components. Currently available microprocessors include the Alpha 21064 by Digital Equipment Corporation, and the MIPS R4400 by MIPS Technologies, Inc. Future implementations might rely on the already announced P6 by Intel Corp. or the PowerPC 620. An alternative architecture may be implemented using multiple processors working in parallel to increase the effective frame rate. The PCI data bus, for example, is capable of sustained data transfer rates of 100 MB/sec. A ROM 76 is used for fixed program storage. The RAM 78 preferably has the capacity to function as a buffer, representing 25 seconds or more of live NTSC video in 4:2:2 format, to enable ā€œhot-swappingā€ of removable media without interruption of the input video signal during recording or alternatively the output video signal during playback. Graphics processor 82 represents dedicated hardware which performs the various manipulations required to process input video signals 84 and to output the video signals 86. Although shown as Y/R-Y/B-Y format, either the inputs or outputs, or both, may be configured in alternative formats, such as RGB, YIQ, YUV or other commonly used alternatives.
While a software-based implementation of the data compression is possible, a hardware-based implementation is preferred, with the system employing, for the tape-based drives, a data-compression ratio of 5:1 for conventional signals (NTSC/PAL) and a 10:1 data-compression ratio for HDTV signals. For the hard-disk drive, a data-compression ratio of 50:1 is preferably utilized. Examples of the many available options for this data compression function include the currently available Apple QuickTime system, fractal compression, MPEG-1 (for off-line applications) and Motion-JPEG (for on-line applications). In many applications, MPEG-2 data compression will be suitable for on-line editing. Audio signals may be included within the data stream, as proposed in the several systems for digital television transmission already under evaluation by the Federal Communications Commission, or by one of the methods available for integrating audio and video signals used in multi-media recording schemes, such as the Microsoft ā€œ.AVIā€ Audio/Video Interleave (Audio/Video Interleave) file format. As an alternative, an independent system for recording audio signals may be implemented either by employing separate digital recording provisions controlled by the same system and electronics, or by implementing completely separate equipment external to the camera system described above.
FIG. 3 shows an off-line digital video editing system, implemented with a PC-based edit controller having provisions for accepting materials in the form of removable storage media. The controller 102 is preferably of conventional design, but operates at least at the level of current Intel Pentium or high-level ā€œ486ā€ processors. The unit is equipped with a color display, and preferably includes a PCI internal bus structure, and provisions for interfacing with a removable PCMCIA storage card 104. In one embodiment this card 104 is implemented with magnetic or magneto-optical disks, or with an optical disc unit. Alternatively, a stand-alone external data storage unit (not shown) could be interfaced through the PCMCIA facilities, or by way of an SCSI-type interface.
As an optional feature, a PCMCIA expansion adapter 106 may be provided, so that a plurality of PCMCIA cards or PCMCIA devices 108 may be accessed conveniently through a single PCMCIA slot on the PC, as shown. This expansion adapter is provided with internal selection and multiplexing circuitry, so that each plug-in card or device may be accessed independently and without interference with any other card or device in [he the expansion adapter. The selection may be performed by employing techniques well-known in the art, such as the addressing schemes utilized for SCSI or GPIB data busses. Since a single 420 MByte PCMCIA card module is capable of holding 75 minutes of programming material with image dimensions in pixels of 320Ɨ240, 4:2:2 sampling and a 50:1 data compression ratio, an expansion adapter equipped with ten PCMCIA slots and plug-in cards is capable of providing ten hours of original program material, and this programming capacity is capable of being further expanded with other types of PCMCIA-compatible devices. As a further option, a custom-designed PC could be provided with multiple PCMCIA slots to accept a plurality of storage devices without the need for an external expansion adapter.
In operation, the off-line digital video editing system PC is used to edit and combine the materials stored on various data-storage devices, producing an edit decision list which then may be utilized by an on-line editing system. The availability of multiple storage devices enables the operator to rehearse and then confirm ā€œA/B-rollā€ edits with only two storage devices, and ā€œA/B/C-rollā€ edits with three storage devices. When equipped with expansion provisions or additional SCSI-bus devices, the system is capable of controlling the various storage devices so as to produce highly complicated sequences in a convenient and timely manner. While the lower-quality (higher data-compression ratio) program materials are utilized only for determining the edit points (edit decision list) for the program, the off-line editing system described herein below is capable of producing the final edited version of the program with high-quality results in accordance with the preferred embodiment.
The versatility of the system may be further enhanced if planning for the program is begun by providing script and staging information to the computer in advance of editing, or even in advance of filming or taping the original production. The script may be provided as a simple text file, or as a formatted word processor file, such as used in ā€œWordPerfectā€ or ā€œWord for Windowsā€. As an alternative, the file may be of a custom format, as is commonly used by professional scriptwriters. This script and staging information is then reformatted to include specific commands, such as when to switch camera coverage to a particular actor, or the choice of a particular camera angle. Further details may now be included, such as the ability to identify close-up camera coverage, or points at which specific visual special effects (such as split-screen views or chroma-keyed backgrounds) or sound effects are to be incorporated. The modified script file is then used to guide the operator of the off-line editing system in making edit decisions to match the program materials to the script, to make any modifications to the script that are necessitated by the circumstances of the taping, or to take advantage of any unforeseen artistic opportunities presented by the actual taped materials.
In addition, it is common practice in broadcast-television news studios to use remotely-controlled cameras to telecast the live programs. These cameras are mounted on motorized bases which are capable of moving the cameras to any desired position on the stage, within the physical limits imposed by the stage itself (such as the length of the camera cables or the clearance available for cameras to move relative to each other on the stage). The zoom-lenses, pan-tilt mounts, and camera electronic control settings are manipulated through the camera remote-control facilities, which may include either separate electronic control panels or alternatively computer interfaces with appropriate control software, such as the unit described by washino Washino, U.S. Pat. No. 5,325,202. By coupling the software script materials to instructions for control of the camera movements, the capabilities of all of these systems may be optimized. The modified script file must be prepared before the actual taping occurs, however, and should include the physical layout of the sets and props for each scene.
The staging information described herein above, is identified by special camera-remote-control software, and the camera control operator is provided with a graphical interface which depicts the layout of the set and the ā€œblockedā€ positions of the actors and props for a given scene. This system preferably also includes a user interface (such as a touch-screen or a mouse) to enable the camera control operator to program the cameras to be in the correct location, and to have the correct zoom-lens and pan-tilt positions, to capture the scene as desired, as described in co-pending application U.S. Ser. No. 08/050,861. At this time, the operator optionally may add information to control automated lighting systems, which are well-known in the are art of the film, video and stage production. This enhanced version of the modified script file is then used to direct camera actions during the actual taping of the scenes, and is further modified as part of the off-line editing process as the EDL is developed, as described above, in accordance with the invention.
An on-line digital video editing system is depicted in block-diagram form in FIG. 4. The functional operation of the editing system follows that of the digital video editing system disclosed in FIG. 2, or in an alternative embodiment, may be implemented in a more sophisticated form, as described in our co-pending application ā€œMulti-Format Audio/Video Production System,ā€ U.S. application Ser. No. 08/298,104 filed Aug. 30, 1994. This system is implemented with a PC-based edit controller 206 having separate provisions for accepting removable storage media. In the preferred embodiment, the digital video tapes recorded by the system of FIG. 2 are installed in a tape-storage ā€œjukeboxā€ 208 for easy access during editing. Such tape cassette handling devices are well-known in the art of computer data storage, and are generally utilized for data back-up applications or for archival storage.
The edits incorporated into the edit decision list are utilized to sequence the various digital tapes so as to assemble a recording of the desired program materials into a final finished product, which is then recorded on the videotape recorder 202. This video recorder may be implemented as any of the commonly used choices for analog recorders, including, among others, 1ā€³ C-format, Betacam, Betacam-SP, U-matic-SP, and Hi-8. If implemented as a digital recorder, the available choices include, among others, D-1, D-2, D-3, D-5, DCT, and Digital Betacam. Furthermore, the final format could be another digital data tape such as the type used for program source material or any other removable storage media. Since the time-code identification numbers on the removable media of the off-line system correlate with those utilized in the on-line system, no conversion or adaptation of the edit decision list is needed. The video monitor 204 is used to manipulate the windows-based edit system control software, and to view the program materials as the edit process proceeds. This process will be essentially automatic, as all of the necessary decisions already have been made in the off-line editing process as described above. In addition, this is an appropriate time for adding digital video effects to the program or to implement any special effects included in the program script.
The invention may be used for other applications limited to record/playback, without implementing the full range of editing features. For example, in applications such as master playback for video duplication, the program master nape tape must be played, rewound to the beginning, and then restarted, on a repeating cycle. In facilities employing a conventional video tape recorder, this represents a great deal of physical stress on the program master tape, thereby requiring a large number of copies of this master tape when many production runs are required to complete an order. In addition, some production time is lost due to the rewinding process itself. In a disk-based application of the system disclosed herein, there is no significant deterioration of the master program even in repeated usage, and it is possible to begin playing a program at any point desired, with essentially no delay due to cueing the program media to the physical location containing that part of the recorded program. In order to provide the necessary recording time duration, additional hard-disk drives would be added to achieve the required playback duration. Based on an MPEG-2 data-compression ratio of 20:1 (with a 4:2:2 recording system for NTSC signals), two hours of digital video would require approximately 8 GB of disk storage capacity. Disk-drives offering capacity of 9 GB are currently available, and until removable media achieve comparable levels, a program would accordingly be loaded into internal or external disk-storage units from the required number of removable media units.
The invention may also be employed as a playback unit for cable television usage or other extended-playing time applications. By adding as many ā€œjuke-boxā€ units as desired, it is a simple matter to extend the playback time capability of the system, with each ā€œjuke-boxā€ providing approximately 40 hours of digital video playback. By fully utilizing the RAM-based audio/video buffering capabilities discussed with reference to FIG. 2, it is possible to supply digital video playback on a continuous basis by changing the tape storage cassettes or cartridges ā€œon-the-flyā€ while video playback proceeds. If provided with computer-readable identification codes on each cassette or cartridge, the computer is able to locate the ā€œjuke-boxā€ and the particular physical storage slot containing program materials that previously have be scheduled for playback. Identification and library management systems of this type are well-known in the art, and are in common usage implemented as ā€œcart-machinesā€ employed for playback of commercial advertisements or other program materials at broadcast stations. In addition, playback at any frame rate or television system standard would be available, in accordance with our co-pending U.S. application Ser. No. 08/298,104 filed Aug. 30, 1994.
The versatility of the Digital Video Production System may be enhanced further, if planning for the program is begun by providing script and staging information to the computer in advance of editing, or even in advance of filming or taping the original production. Computer software having access to the script materials will enable the operator to match the scenes to the recorded video materials quickly, thereby speeding the editing process. In addition, it is common practice in broadcast-television news studios to use remotely-controlled cameras to telecast the live programs. By coupling the software script materials to instructions for control of the camera movements, the capabilities of all of these systems will be optimized.

Claims (50)

Having thus described the system, we claim:
1. A digital audio/video production system adapted for use with an on-line video editing facility, the production system comprising:
a digital video recorder capable of simultaneously recording information representative of the same program source material, including correlated edit-time-code information, onto first and second removable storage media in first and second formats, respectively, the information in the first format being data-compressed relative to the information in the second format;
a programmed personal computer configured to receive the first removable storage medium, enabling an operator to edit the information representative of the program source material in the first format in off-line fashion so as to develop an edit decision list; and
means to transfer the edit decision list to an on-line video editing facility, the on-line editing facility being further configured to receive the second removable storage medium, whereby an operator of the on-line facility may edit the program source material in the second format using the edit decision list to create a final video production.
2. The digital video production system of claim 1, wherein the information in the second format is non-compressed.
3. The digital video production system of claim 1, wherein the digital video recorder forms part of a camcorder.
4. The digital video production system of claim 1, wherein the first removable medium is a magnetic hard disk.
5. The digital video production system of claim 1, wherein the first removable medium is an optical disk.
6. The digital video production system of claim 1, wherein the first removable medium is a magneto-optical disk.
7. The digital video production system of claim 1, wherein the second removable medium is a tape drive.
8. The digital video production system of claim 1, including digital audio and video program data which are interleaved.
9. The digital video production system of claim 1, the means to transfer the edit decision list to the on-line video editing facility including means to record the edit decision list onto a third removable storage medium.
10. The method of producing a final video program, comprising the steps of:
providing video program source material in first and second digital formats, the material in the first format being compressed relative to the material in the second format;
recording the material in the first and second formats, respectively, onto first and second removable storage media along with correlated edit-time-code information;
interfacing the first storage medium to an off-line video editing system to develop edit decision information;
transferring the edit decision list to an on-line video editing system;
accessing the program material in the second storage medium using the on-line video editing system; and
editing the material in the second format on the second storage medium in accordance with the edit decision list to produce a final video program.
11. The method of claim 10, the second format being a non-compressed format.
12. A digital video production system adapted to deliver program material and an accompanying edit decision list to an on-line video editing facility for the purpose of creating a final program, the system comprising:
digital video recording apparatus, including:
an input to receive a video program,
means to digitally compress the program in accordance with more than one compression ratio,
an interface to a first removable storage medium,
an interface to a second removable storage medium, and
means no to simultaneously record the video program onto the first removable storage medium at a first compression ratio and onto the second removable storage medium at a second compression ratio, the first compression ratio being greater than the second; and
an off-line digital video editing system, including:
an interface co to receive the first removable storage medium,
a display to review portions of the video program, enabling a user to make edit decisions concerning the program, and
an interface to third removable storage medium to store a list of the edit decision,
whereby an on-line video editing facility, upon receiving the second and third storage medium, may be used to produce a final, edited version of the program in accordance with the decision list.
13. The digital video production system of claim 12, wherein the second compression ratio is zero.
14. The digital video production system of claim 12, wherein the off-line digital video editing system forms part of a programmed personal computer.
15. The digital video production system of claim 12, wherein the digital video recorder forms part of a camcorder.
16. The digital video production system of claim 12, wherein the first removable medium is a magnetic disk drive.
17. The digital video production system of claim 12, wherein the first removable medium is an optical disk.
18. The digital video production system of claim 12, wherein the first removable medium is a magneto-optical disk.
19. The digital video production system of claim 12, wherein the second removable medium is a tape drive.
20. The digital video production system of claim 12, including interleaved digital audio and video program data are interleaved.
21. The digital video production system of claim 12, wherein the program includes separately recorded audio and video portions.
22. A digital video recording apparatus adapted or for use with an on-line video editing facility and a personal computer configured to perform off-line editing, including edit-list development, the apparatus comprising:
a camera outputting information representative of a video program;
means to digitally compress the program information at a plurality of compression ratios ;
a removable disk to store a highly compressed randomly addressable version of the program information suitable for off-line editing using the personal computer; and
a removable tape drive to store a less compressed serially addressable version of the program information suitable for on-line editing;
both versions of the program being stored with correlated edit-time-code information, thereby enabling the on-line editing to use the edit list developed during off-line editing.
23. The digital video recording apparatus of claim 22, wherein the camera, means to digitally compress the programat a plurality of compression ratios, removable , disk drive, and removable tape drive are all integral to a camcorder.
24. A digital audio/video production system, comprising:
(a) digital video recording apparatus, including:
an input to receive a video program,
first and second removable digital storage media, and
means to simultaneously record the program, including correlated edit-time-code information, onto the first and second removable storage media in first and second formats, respectively, the first format being data-compressed relative to the information in the second format;
(b) a first video editing system, including:
means to receive the first removable storage medium; and
controls enabling an operator to edit the program in the first format and develop a set of edit decision directives; and
(c) a second video editing system, including:
means to receive the second removable storage medium,
means to receive the edit decision directives, and
means to edit the program information in the second format in accordance with the edit decision directives to create a final video production.
25. The digital audio/video production system of claim 24, wherein the digital video recording apparatus includes means to receive a plurality of the first removable storage media.
26. The digital audio/video production system of claim 24, wherein the second video editing system includes means to receive a plurality of the second removable storage media, wherein the edit decision directive being applicable to all of the second removable storage media received.
27. The digital audio/video production system of claim 26, wherein the digital video recording apparatus forms part of a camcorder.
28. The digital audio/video production system of claim 26, wherein the first video editing system forms part of a programmed personal computer.
29. The digital audio/video production system of claim 26, wherein the first removable digital storage medium is a magnetic disk.
30. The digital audio/video production system of claim 26, wherein the first removable digital storage medium is an optical disk.
31. The digital audio/video production system of claim 26, wherein the first removable digital storage medium is a magneto-optical disk.
32. The digital audio/video production system of claim 26, wherein the first removable digital storage medium is a semiconductor memory.
33. The digital audio/video production system of claim 24, wherein the second removable digital storage medium is a magnetic tape.
34. A video production method, comprising the steps of:
simultaneously recording information representative of a video program, such material being characterized in having a multitude of sequential frames used to portray motion imagery plus correlated edit-time-code information, onto first and second removable digital storage media in first and second formats, respectively, the pro,ram information in the first format being data-compressed relative to the program information in the second format both formats including information representative of each frame characterizing the program;
receiving the program in the first removable storage medium format at a first video editing facility and editing the program information at the first facility in the first format to develop a see set of edit decision directives based upon the edit-mime time-code information; and
receiving the program in the second removable storage medium and format with edit decision directives at a second video editing facility and editing the program information at the second facility in the second format in accordance with the edit decision directives so as to create a final video production.
35. The video production method of claim 34, further including the step of recording the final video production onto a third removable storage medium at the second video editing facility.
36. The video production method of claim 34, further including the step of outputting the final video production as the program information is edited in the second format in accordance with the edit decision directives.
37. The video production method of claim 34, wherein the step of editing the program information at the second facility further includes the step of adding audio special effects in the final video production.
38. The video production method of claim 34, wherein the step of editing the program information at the second facility further includes the step of adding video special effects in the final video production.
39. The video production method of claim 38, wherein the step of adding video special effects includes the step of adding titling.
40. Video recording apparatus, comprising:
an input for receiving video program source material, such material being characterized in having a plurality of sequential frames representative of motion imagery;
a video recorder in communication with the input for simultaneously recording information representative of the video program source material, including correlated edit-time-code information, onto first and second storage media, wherein the first storage medium is used to store the sequential frames in a randomly addressable manner, and the second storage medium is used to store the sequential frames in a serially addressable manner, such that each frame stored on one medium is associated with a time code correlated to a corresponding frame stored on the other medium.
41. The apparatus of claim 40, wherein the second storage medium is a video tape.
42. The apparatus of claim 40, wherein the video recorder forms part of a camcorder.
43. The apparatus of claim 40, further including means for receiving scripting information.
44. The apparatus of claim 43, wherein the means for receiving the scripting information forms part of the video recorder.
45. The apparatus of claim 43, further including an editing facility for receiving the recorded video program, and wherein the means for receiving the scripting information forms part of the editing facility.
46. The apparatus of claim 40, further including means for receiving camera-control information.
47. The apparatus of claim 46, wherein the means for receiving the camera-control information forms part of the video recorder.
48. The apparatus of claim 46, further including an editing facility for receiving the recorded video program, and wherein the means for receiving the camera-control information forms part of the editing facility.
49. The apparatus of claim 40, further including a first editing facility enabling an operator to edit the recorded video program and develop an edit decision list therefor.
50. The apparatus of claim 49, further including a second editing facility for editing the video program source material in accordance with the edit decision list.
US09/016,777 1993-04-21 1998-01-30 Dual format digital video production system Expired - Lifetime USRE37342E1 (en)

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US09/016,777 USRE37342E1 (en) 1993-04-21 1998-01-30 Dual format digital video production system
US09/900,784 USRE42020E1 (en) 1993-04-21 2001-07-06 Dual compression format digital video production system
US11/003,834 USRE41968E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,580 USRE42657E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,579 USRE42709E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,576 USRE42160E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system

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US08/050,861 US5450140A (en) 1993-04-21 1993-04-21 Personal-computer-based video production system
US08/298,104 US5537157A (en) 1993-04-21 1994-08-30 Multi-format audio/video production system
US08/396,574 US5488433A (en) 1993-04-21 1995-03-01 Dual compression format digital video production system
US09/016,777 USRE37342E1 (en) 1993-04-21 1998-01-30 Dual format digital video production system

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US08/050,861 Continuation-In-Part US5450140A (en) 1993-04-21 1993-04-21 Personal-computer-based video production system
US08/298,104 Continuation-In-Part US5537157A (en) 1993-04-21 1994-08-30 Multi-format audio/video production system
US08/396,574 Reissue US5488433A (en) 1993-04-21 1995-03-01 Dual compression format digital video production system

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US09/900,784 Continuation USRE42020E1 (en) 1993-04-21 2001-07-06 Dual compression format digital video production system

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US09/016,777 Expired - Lifetime USRE37342E1 (en) 1993-04-21 1998-01-30 Dual format digital video production system
US09/900,784 Expired - Lifetime USRE42020E1 (en) 1993-04-21 2001-07-06 Dual compression format digital video production system
US11/003,579 Expired - Lifetime USRE42709E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,576 Expired - Lifetime USRE42160E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,834 Expired - Lifetime USRE41968E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
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US11/003,576 Expired - Lifetime USRE42160E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,834 Expired - Lifetime USRE41968E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system
US11/003,580 Expired - Lifetime USRE42657E1 (en) 1993-04-21 2004-12-03 Dual compression format digital video production system

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Cited By (27)

* Cited by examiner, ā€  Cited by third party
Publication number Priority date Publication date Assignee Title
US20020031756A1 (en) * 2000-04-12 2002-03-14 Alex Holtz Interactive tutorial method, system, and computer program product for real time media production
US20020054244A1 (en) * 2000-03-31 2002-05-09 Alex Holtz Method, system and computer program product for full news integration and automation in a real time video production environment
US20020109710A1 (en) * 1998-12-18 2002-08-15 Parkervision, Inc. Real time video production system and method
US6658196B2 (en) * 1997-11-05 2003-12-02 Sony Corporation Editing technique merging video signals recorded on the same optical disk
US20040008220A1 (en) * 1998-12-18 2004-01-15 Parkervision, Inc. Director interface for production automation control
US20040027368A1 (en) * 2002-05-09 2004-02-12 Parkervision, Inc. Time sheet for real time video production system and method
US20040057697A1 (en) * 2002-09-19 2004-03-25 Peter Renzi Streaming digital recording system
US20040133737A1 (en) * 2003-01-06 2004-07-08 International Business Machines Corporation Deferred writing of data to be synchronized on magnetic tape employing a non-volatile store
US20040146274A1 (en) * 2003-01-15 2004-07-29 Matsushita Electric Industrial Co., Ltd. Digital video recorder, method of driving the video recorder and program
US6804300B1 (en) * 1999-12-27 2004-10-12 Kabushiki Kaisha Toshiba Television audiovisual, recording and reproducing apparatus using personal computer, method of supplying power to PC card, and PC card
US20050039211A1 (en) * 2002-09-17 2005-02-17 Kinya Washino High-quality, reduced data rate streaming video production and monitoring system
US6952221B1 (en) * 1998-12-18 2005-10-04 Thomson Licensing S.A. System and method for real time video production and distribution
US7024677B1 (en) 1998-12-18 2006-04-04 Thomson Licensing System and method for real time video production and multicasting
US7386218B2 (en) 2002-04-17 2008-06-10 Dell Products L.P. Method and apparatus for automatic video CD authoring
US20080291319A1 (en) * 2007-04-11 2008-11-27 Red.Com, Inc. Video camera
US20090013252A1 (en) * 2005-02-14 2009-01-08 Teresis Media Management, Inc. Multipurpose media players
US20090198719A1 (en) * 2005-02-12 2009-08-06 Teresis Media Management, Inc. Methods and appartuses for assisting the production of media works and the like
US20100013963A1 (en) * 2007-04-11 2010-01-21 Red.Com, Inc. Video camera
US7830413B2 (en) * 1995-02-23 2010-11-09 Avid Technology, Inc. Combined editing system and digital moving picture recording system
USRE41968E1 (en) * 1993-04-21 2010-11-30 Multi-Format, Inc. Dual compression format digital video production system
US8560951B1 (en) * 1998-12-18 2013-10-15 Thomson Licensing System and method for real time video production and distribution
US8577683B2 (en) 2008-08-15 2013-11-05 Thomas Majchrowski & Associates, Inc. Multipurpose media players
US9123380B2 (en) 1998-12-18 2015-09-01 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for automated real-time execution of live inserts of repurposed stored content distribution, and multiple aspect ratio automated simulcast production
US9521384B2 (en) 2013-02-14 2016-12-13 Red.Com, Inc. Green average subtraction in image data
US10499091B2 (en) 2002-09-17 2019-12-03 Kinya Washino High-quality, reduced data rate streaming video production and monitoring system
US11109114B2 (en) 2001-04-18 2021-08-31 Grass Valley Canada Advertisement management method, system, and computer program product
US11503294B2 (en) 2017-07-05 2022-11-15 Red.Com, Llc Video image data processing in electronic devices

Families Citing this family (85)

* Cited by examiner, ā€  Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06312593A (en) 1993-04-28 1994-11-08 Toshiba Corp External memory, external memory unit and manufacture of the external memory
US5887145A (en) * 1993-09-01 1999-03-23 Sandisk Corporation Removable mother/daughter peripheral card
US7137011B1 (en) * 1993-09-01 2006-11-14 Sandisk Corporation Removable mother/daughter peripheral card
JP3383398B2 (en) * 1994-03-22 2003-03-04 ę Ŗ式会ē¤¾ę±čŠ Semiconductor package
US5564055A (en) * 1994-08-30 1996-10-08 Lucent Technologies Inc. PCMCIA slot expander and method
JP3388921B2 (en) * 1994-11-29 2003-03-24 ę Ŗ式会ē¤¾ę±čŠ Manufacturing method of integrated circuit card
USRE38997E1 (en) * 1995-02-03 2006-02-28 Kabushiki Kaisha Toshiba Information storage and information processing system utilizing state-designating member provided on supporting card surface which produces write-permitting or write-inhibiting signal
JP3660382B2 (en) 1995-02-03 2005-06-15 ę Ŗ式会ē¤¾ę±čŠ Information storage device and connector portion used therefor
US6471130B2 (en) 1995-02-03 2002-10-29 Kabushiki Kaisha Toshiba Information storage apparatus and information processing apparatus using the same
US5999406A (en) * 1995-02-23 1999-12-07 Avid Technology, Inc. Dockable electronic equipment container
US6977673B1 (en) * 1995-02-23 2005-12-20 Avid Technology, Inc. Portable moving picture recording device including switching control for multiple data flow configurations
JP3536423B2 (en) * 1995-04-07 2004-06-07 ć‚½ćƒ‹ćƒ¼ę Ŗ式会ē¤¾ Broadcast equipment operation system and method
JP4174083B2 (en) * 1995-05-01 2008-10-29 ć‚­ćƒ¤ćƒŽćƒ³ę Ŗ式会ē¤¾ Image processing method and apparatus
JPH0964240A (en) 1995-08-25 1997-03-07 Toshiba Corp Semiconductor device and manufacture thereof
US5917545A (en) * 1995-08-31 1999-06-29 Nikon Corporation Electronic still camera that can be directly inserted in an external device
US5781435A (en) * 1996-04-12 1998-07-14 Holroyd; Delwyn Edit-to-it
JP4456675B2 (en) * 1996-04-17 2010-04-28 ę Ŗ式会ē¤¾ę—„ē«‹č£½ä½œę‰€ Video recording / reproducing apparatus and video recording / reproducing method
TW332334B (en) * 1996-05-31 1998-05-21 Toshiba Co Ltd The semiconductor substrate and its producing method and semiconductor apparatus
JPH09327990A (en) * 1996-06-11 1997-12-22 Toshiba Corp Card type storing device
US6088053A (en) * 1996-07-15 2000-07-11 Hammack; Jack C. Digital record and replay binoculars
US6628303B1 (en) 1996-07-29 2003-09-30 Avid Technology, Inc. Graphical user interface for a motion video planning and editing system for a computer
JPH10302030A (en) * 1997-02-28 1998-11-13 Toshiba Corp Connection device and information processor
US6038573A (en) * 1997-04-04 2000-03-14 Avid Technology, Inc. News story markup language and system and process for editing and processing documents
JP3741299B2 (en) * 1997-04-06 2006-02-01 ć‚½ćƒ‹ćƒ¼ę Ŗ式会ē¤¾ Video signal processing apparatus and video signal processing method
JPH10285536A (en) * 1997-04-06 1998-10-23 Sony Corp Video signal processor
US5999220A (en) * 1997-04-07 1999-12-07 Washino; Kinya Multi-format audio/video production system with frame-rate conversion
CA2205796A1 (en) * 1997-05-22 1998-11-22 Discreet Logic Inc. On-line editing and data conveying media for edit decisions
US6374039B1 (en) * 1997-07-25 2002-04-16 Canon Kabushiki Kaisha Image pickup apparatus
GB9716248D0 (en) * 1997-08-01 1997-10-08 Discreet Logic Inc Editing image data
AR016812A1 (en) * 1997-08-14 2001-08-01 Samsung Electronics Co Ltd METHOD FOR TRANSMITTING COMPRESSED VIDEO INFORMATION, COMPRESSION AND VIDEO RECORDING PROVISIONS AND VIDEO PLAYBACK
JP4336396B2 (en) * 1997-08-29 2009-09-30 ć‚­ćƒ¤ćƒŽćƒ³ę Ŗ式会ē¤¾ Recording / reproducing apparatus, file conversion apparatus, digital signal file conversion prohibition system, and digital signal processing method
WO1999018728A1 (en) * 1997-10-02 1999-04-15 General Datacomm, Inc. Interconnecting multimedia data streams having different compressed formats
JPH11213174A (en) * 1998-01-28 1999-08-06 Hitachi Denshi Ltd Animation editing method
TW407364B (en) * 1998-03-26 2000-10-01 Toshiba Corp Memory apparatus, card type memory apparatus, and electronic apparatus
WO1999065238A1 (en) * 1998-06-12 1999-12-16 Panavision, Inc. Remote video assist recorder box
US7558472B2 (en) * 2000-08-22 2009-07-07 Tivo Inc. Multimedia signal processing system
US6233389B1 (en) 1998-07-30 2001-05-15 Tivo, Inc. Multimedia time warping system
US8380041B2 (en) * 1998-07-30 2013-02-19 Tivo Inc. Transportable digital video recorder system
US8577205B2 (en) * 1998-07-30 2013-11-05 Tivo Inc. Digital video recording system
TW444495B (en) * 1998-10-15 2001-07-01 Winbond Electronics Corp Digital video process method and multi-purpose data process method
JP2000236510A (en) * 1999-02-16 2000-08-29 Sony Corp Image processing device, its method and served medium
WO2000072186A2 (en) * 1999-05-25 2000-11-30 Swtv Production Services, Inc. Method and apparatus for creating digital archives
US6714724B1 (en) * 1999-08-05 2004-03-30 Bradley Steven Cook Portable device for capturing image and sound data including compact memory and board arrangement
AU7488900A (en) * 1999-09-13 2001-04-17 Seagate Technology Llc Multimedia data shuttle and archive
US6934467B1 (en) 1999-09-13 2005-08-23 Seagate Technology, Llc Transcoding multimedia data shuttle and archive
EP1214842B1 (en) 1999-09-20 2010-11-17 TiVo, Inc. Closed caption tagging system
KR100378739B1 (en) * 1999-10-08 2003-04-07 ė””ź²Œģ“ķŠø ģ£¼ģ‹ķšŒģ‚¬ Media container for storage system
EP1102271B8 (en) * 1999-11-05 2016-12-07 Sony Europe Limited Method of generating audio and/or video signals and apparatus therefore
DE60139750D1 (en) * 2000-02-08 2009-10-15 Sony Corp METHOD AND DEVICE FOR RECORDING VIDEO DATA
US7725812B1 (en) 2000-03-31 2010-05-25 Avid Technology, Inc. Authoring system for combining temporal and nontemporal digital media
US7555557B2 (en) * 2000-04-07 2009-06-30 Avid Technology, Inc. Review and approval system
JP2002074853A (en) * 2000-08-31 2002-03-15 Toshiba Corp Information recording device, information recording method, information reproducing device, information reproducing method, information recording medium and electronic distribution system
US20020188628A1 (en) * 2001-04-20 2002-12-12 Brian Cooper Editing interactive content with time-based media
US7930624B2 (en) * 2001-04-20 2011-04-19 Avid Technology, Inc. Editing time-based media with enhanced content
US20030135470A1 (en) * 2002-01-16 2003-07-17 Beard Robert E. Method and system for credit card purchases
US7254268B2 (en) * 2002-04-11 2007-08-07 Arcsoft, Inc. Object extraction
US20040208490A1 (en) * 2003-04-16 2004-10-21 Hitachi, Ltd. Image data recording/reproducing apparatus and image data recording/reproducing method
KR20040104237A (en) * 2003-06-03 2004-12-10 ģ‚¼ģ„±ģ „ģžģ£¼ģ‹ķšŒģ‚¬ Photograping apparatus and method which sets compression format automatically
US20060206677A1 (en) * 2003-07-03 2006-09-14 Electronics And Telecommunications Research Institute System and method of an efficient snapshot for shared large storage
JP4218029B2 (en) * 2003-09-30 2009-02-04 ę—„ęœ¬ćƒ“ć‚Æć‚æćƒ¼ę Ŗ式会ē¤¾ Video recording device
US20050166255A1 (en) * 2004-01-06 2005-07-28 Hallberg Bryan S. Operation modes for a personal video recorder
JP4647329B2 (en) * 2004-02-16 2011-03-09 ćƒ‘ćƒŠć‚½ćƒ‹ćƒƒć‚Æę Ŗ式会ē¤¾ Equipment management device
JP2005348228A (en) * 2004-06-04 2005-12-15 Hitachi Ltd Moving image editing system
JP4563125B2 (en) * 2004-09-16 2010-10-13 ę± äøŠé€šäæ”ę©Ÿę Ŗ式会ē¤¾ Video camera equipment
US7813620B2 (en) 2004-10-14 2010-10-12 Panasonic Corporation Recording apparatus, editing apparatus, digital video recording system, and file format
AU2005306361B2 (en) 2004-11-19 2011-02-10 Tivo Inc. Method and apparatus for secure transfer of previously broadcasted content
DE102005037282A1 (en) * 2005-08-08 2007-02-15 Arnold & Richter Cine Technik Gmbh & Co. Betriebs Kg Method for transmitting a data stream of digital images and digital image acquisition unit
JP4311404B2 (en) * 2006-01-23 2009-08-12 ć‚½ćƒ‹ćƒ¼ę Ŗ式会ē¤¾ Optical disc apparatus and camera system
EP2059928A1 (en) * 2006-07-25 2009-05-20 Robert Bosch GmbH Recording apparatus and method for a storage medium exchange during recording
US9158439B2 (en) * 2006-12-01 2015-10-13 Production Resource Group, Llc Remote focusing unit
US9083938B2 (en) 2007-02-26 2015-07-14 Sony Computer Entertainment America Llc Media player with networked playback control and advertisement insertion
US9183753B2 (en) * 2007-02-26 2015-11-10 Sony Computer Entertainment America Llc Variation and control of sensory work playback
WO2010006063A1 (en) * 2008-07-08 2010-01-14 Sceneplay, Inc. Media generating system and method
US20110035667A1 (en) * 2009-08-05 2011-02-10 Bjorn Michael Dittmer-Roche Instant Import of Media Files
US8464304B2 (en) 2011-01-25 2013-06-11 Youtoo Technologies, LLC Content creation and distribution system
US20120192225A1 (en) * 2011-01-25 2012-07-26 Youtoo Technologies, LLC Administration of Content Creation and Distribution System
US8559793B2 (en) 2011-05-26 2013-10-15 Avid Technology, Inc. Synchronous data tracks in a media editing system
US9319161B2 (en) 2012-04-09 2016-04-19 Youtoo Technologies, LLC Participating in television programs
US9083997B2 (en) 2012-05-09 2015-07-14 YooToo Technologies, LLC Recording and publishing content on social media websites
CA3001480C (en) * 2015-10-16 2019-06-18 Tribune Broadcasting Company, Llc Video-production system with dve feature
CN105721932A (en) * 2016-01-20 2016-06-29 ę­å·žē±³äøŗē§‘ęŠ€ęœ‰é™å…¬åø Video editing method, video editing device, and unmanned plane video editing system
US10966001B2 (en) * 2018-04-05 2021-03-30 Tvu Networks Corporation Remote cloud-based video production system in an environment where there is network delay
US11463747B2 (en) 2018-04-05 2022-10-04 Tvu Networks Corporation Systems and methods for real time control of a remote video production with multiple streams
US11212431B2 (en) 2018-04-06 2021-12-28 Tvu Networks Corporation Methods and apparatus for remotely controlling a camera in an environment with communication latency
KR102267477B1 (en) 2020-02-20 2021-06-22 ģ‚¼ģ„±ģ „ģžģ£¼ģ‹ķšŒģ‚¬ Storage device and operating method of the same

Citations (5)

* Cited by examiner, ā€  Cited by third party
Publication number Priority date Publication date Assignee Title
US5164839A (en) * 1988-12-27 1992-11-17 Explore Technology, Inc. Method for handling audio/video source information
US5218672A (en) * 1990-01-19 1993-06-08 Sony Corporation Of America Offline editing system with user interface for controlling edit list generation
US5459582A (en) * 1989-12-04 1995-10-17 Canon Kabushiki Kaisha Video signal processing system for taking into a memory a specified picture extracted from moving images
US5572499A (en) * 1991-04-10 1996-11-05 Canon Kabushiki Kaisha Image processing apparatus for storing image data in storage medium and/or for reproducing image stored in storage medium
US5649046A (en) * 1992-12-07 1997-07-15 Quantel Limited Video processing system with random access framestore for video editing

Family Cites Families (37)

* Cited by examiner, ā€  Cited by third party
Publication number Priority date Publication date Assignee Title
GB330020A (en) * 1929-03-12 1930-06-05 Ernest Metcalfe Improvements in clips or holders for sheets of paper and the like
US4198656A (en) 1975-10-24 1980-04-15 Pelco Sales Video sequencer-processor
US4148069A (en) 1977-02-14 1979-04-03 Harris Corporation Automatic cable loss compensator for use in a television camera system
US4205346A (en) 1978-06-09 1980-05-27 Ross Video Limited Video transition circuitry including transition previewing means
JPS5844856A (en) 1981-09-11 1983-03-15 Nippon Telegr & Teleph Corp <Ntt> Editing and instructing device for facsimile picture information
US4477896A (en) 1981-10-02 1984-10-16 Aker Eric M Single-wire data transmission system having bidirectional data synchronization, and D.C. power for remote units
JPS58114672A (en) 1981-12-28 1983-07-08 Hideaki Shinpo Video centralized control system
US4516156A (en) 1982-03-15 1985-05-07 Satellite Business Systems Teleconferencing method and system
JPS59217206A (en) 1983-05-25 1984-12-07 Canon Inc Information processor
US4633293A (en) 1983-09-26 1986-12-30 Rca Corporation High definition television signal for film-television standards conversion system
DE3737581A1 (en) 1987-11-05 1989-05-18 Grundig Emv DEVICE FOR AUTOMATICALLY APPLYING THE BALANCING VOLTAGE TO THE TUNABLE SWITCHING ELEMENTS OF THE ZF AMPLIFIER OF A TELEVISION RECEIVER
US4868687A (en) * 1987-12-21 1989-09-19 International Business Machines Corporation Audio editor display interface
US5128770A (en) 1988-03-25 1992-07-07 Fuji Photo Film Co., Ltd. Video camera
US4907085A (en) 1988-09-22 1990-03-06 Thomson Consumer Electronics, Inc. Television system user-accessible component display apparatus
US5045932A (en) 1989-06-29 1991-09-03 Eastman Kodak Company Method and apparatus for generating a high definition electronic signal from a line scan of a color original
US4949169A (en) 1989-10-27 1990-08-14 International Business Machines Corporation Audio-video data interface for a high speed communication link in a video-graphics display window environment
US5012334B1 (en) 1990-01-29 1997-05-13 Grass Valley Group Video image bank for storing and retrieving video image sequences
JPH03266566A (en) 1990-03-15 1991-11-27 Alps Electric Co Ltd Radio operation device for camera and two-direction simultaneous controller for electric apparatus
JPH05101609A (en) * 1990-09-28 1993-04-23 Digital Fx Inc System and method for editing vedeo tape
GB2251704B (en) 1991-01-10 1994-07-20 Sony Broadcast & Communication Video camera control apparatus
JPH04108246U (en) 1991-03-01 1992-09-18 ä½å‹é›»ę°—å·„ę„­ę Ŗ式会ē¤¾ mouse device
JP2701571B2 (en) * 1991-03-08 1998-01-21 ćƒ†ć‚£ć‚¢ćƒƒć‚Æę Ŗ式会ē¤¾ Signal recording / reproducing device
US5428399A (en) 1991-04-15 1995-06-27 Vistek Electronics Limited Method and apparatus for image translation with improved motion compensation
EP0526064B1 (en) 1991-08-02 1997-09-10 The Grass Valley Group, Inc. Video editing system operator interface for visualization and interactive control of video material
JPH05159536A (en) 1991-12-09 1993-06-25 Matsushita Electric Ind Co Ltd Video editor
US5243433A (en) 1992-01-06 1993-09-07 Eastman Kodak Company Digital image interpolation system for zoom and pan effects
GB2264417B (en) 1992-02-17 1995-12-06 Sony Broadcast & Communication Video standards conversion
JPH05244556A (en) 1992-02-28 1993-09-21 Matsushita Electric Ind Co Ltd Video signal recording and reproducing device and field thinning method for video signal
JPH077715A (en) * 1993-01-29 1995-01-10 Immix A Division Of Carton Internatl Corp Method of storing and deriving video signal into/from disk
JPH06292116A (en) 1993-04-06 1994-10-18 Matsushita Electric Ind Co Ltd Camcorder
US5488433A (en) * 1993-04-21 1996-01-30 Kinya Washino Dual compression format digital video production system
EP0702832B1 (en) 1993-06-10 1998-03-04 Lightworks Editing Systems Ltd Video editing systems
JPH087535A (en) 1994-06-24 1996-01-12 Max World:Kk Method and device for editing video
GB2296601B (en) 1994-08-12 1998-10-21 Sony Corp Video signal recording device and editing device
WO1996005695A1 (en) * 1994-08-12 1996-02-22 Sony Corporation Portable av editing device
JPH08292100A (en) 1995-04-20 1996-11-05 Matsushita Electric Ind Co Ltd Noncontact thermometer
JP4975919B2 (en) 1999-07-16 2012-07-11 ć‚¦ć‚£ćƒŖć‚¢ćƒ ćƒ»ćƒžćƒ¼ć‚·ćƒ„ćƒ»ćƒ©ć‚¤ć‚¹ćƒ»ćƒ¦ćƒ‹ćƒćƒ¼ć‚·ćƒ†ć‚£ Thermosensitive polymer / nanoshell composite for photothermally controlled drug administration

Patent Citations (5)

* Cited by examiner, ā€  Cited by third party
Publication number Priority date Publication date Assignee Title
US5164839A (en) * 1988-12-27 1992-11-17 Explore Technology, Inc. Method for handling audio/video source information
US5459582A (en) * 1989-12-04 1995-10-17 Canon Kabushiki Kaisha Video signal processing system for taking into a memory a specified picture extracted from moving images
US5218672A (en) * 1990-01-19 1993-06-08 Sony Corporation Of America Offline editing system with user interface for controlling edit list generation
US5572499A (en) * 1991-04-10 1996-11-05 Canon Kabushiki Kaisha Image processing apparatus for storing image data in storage medium and/or for reproducing image stored in storage medium
US5649046A (en) * 1992-12-07 1997-07-15 Quantel Limited Video processing system with random access framestore for video editing

Non-Patent Citations (1)

* Cited by examiner, ā€  Cited by third party
Title
Panasonic NAB 95 Catalog. No Date. *

Cited By (69)

* Cited by examiner, ā€  Cited by third party
Publication number Priority date Publication date Assignee Title
USRE41968E1 (en) * 1993-04-21 2010-11-30 Multi-Format, Inc. Dual compression format digital video production system
USRE42020E1 (en) * 1993-04-21 2011-01-04 Multi-Format, Inc. Dual compression format digital video production system
USRE42160E1 (en) * 1993-04-21 2011-02-22 Multi-Format, Inc. Dual compression format digital video production system
US7830413B2 (en) * 1995-02-23 2010-11-09 Avid Technology, Inc. Combined editing system and digital moving picture recording system
US6658196B2 (en) * 1997-11-05 2003-12-02 Sony Corporation Editing technique merging video signals recorded on the same optical disk
US8560951B1 (en) * 1998-12-18 2013-10-15 Thomson Licensing System and method for real time video production and distribution
US9558786B2 (en) 1998-12-18 2017-01-31 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for multiple aspect ratio automated simulcast production
US9711180B2 (en) 1998-12-18 2017-07-18 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for automated real-time execution of live inserts of repurposed stored content distribution
US10056111B2 (en) 1998-12-18 2018-08-21 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for multiple aspect ratio automated simulcast production
US9123380B2 (en) 1998-12-18 2015-09-01 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for automated real-time execution of live inserts of repurposed stored content distribution, and multiple aspect ratio automated simulcast production
US20020186233A1 (en) * 1998-12-18 2002-12-12 Alex Holtz Real time video production system and method
US7835920B2 (en) 1998-12-18 2010-11-16 Thomson Licensing Director interface for production automation control
US20040008220A1 (en) * 1998-12-18 2004-01-15 Parkervision, Inc. Director interface for production automation control
US8006184B2 (en) 1998-12-18 2011-08-23 Thomson Licensing Playlist for real time video production
US20020175931A1 (en) * 1998-12-18 2002-11-28 Alex Holtz Playlist for real time video production
US6952221B1 (en) * 1998-12-18 2005-10-04 Thomson Licensing S.A. System and method for real time video production and distribution
US7024677B1 (en) 1998-12-18 2006-04-04 Thomson Licensing System and method for real time video production and multicasting
US20020109710A1 (en) * 1998-12-18 2002-08-15 Parkervision, Inc. Real time video production system and method
US7302644B2 (en) 1998-12-18 2007-11-27 Thomson Licensing Real time production system and method
US6804300B1 (en) * 1999-12-27 2004-10-12 Kabushiki Kaisha Toshiba Television audiovisual, recording and reproducing apparatus using personal computer, method of supplying power to PC card, and PC card
US20020054244A1 (en) * 2000-03-31 2002-05-09 Alex Holtz Method, system and computer program product for full news integration and automation in a real time video production environment
US20020031756A1 (en) * 2000-04-12 2002-03-14 Alex Holtz Interactive tutorial method, system, and computer program product for real time media production
US6909874B2 (en) 2000-04-12 2005-06-21 Thomson Licensing Sa. Interactive tutorial method, system, and computer program product for real time media production
US11109114B2 (en) 2001-04-18 2021-08-31 Grass Valley Canada Advertisement management method, system, and computer program product
US7386218B2 (en) 2002-04-17 2008-06-10 Dell Products L.P. Method and apparatus for automatic video CD authoring
US10360944B2 (en) 2002-05-09 2019-07-23 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for multiple aspect ratio automated simulcast production
US10546612B2 (en) 2002-05-09 2020-01-28 Gvbb Holdings S.A.R.L. Systems, methods, and computer program products for automated real-time execution of live inserts of repurposed stored content distribution
US20040027368A1 (en) * 2002-05-09 2004-02-12 Parkervision, Inc. Time sheet for real time video production system and method
US11395017B2 (en) 2002-09-17 2022-07-19 Hawk Technology Systems, L.L.C. High-quality, reduced data rate streaming video production and monitoring system
US20050039211A1 (en) * 2002-09-17 2005-02-17 Kinya Washino High-quality, reduced data rate streaming video production and monitoring system
US10499091B2 (en) 2002-09-17 2019-12-03 Kinya Washino High-quality, reduced data rate streaming video production and monitoring system
US10945004B2 (en) 2002-09-17 2021-03-09 Hawk Technology Systems, L.L.C. High-quality, reduced data rate streaming video production and monitoring system
US20040057697A1 (en) * 2002-09-19 2004-03-25 Peter Renzi Streaming digital recording system
US20040133737A1 (en) * 2003-01-06 2004-07-08 International Business Machines Corporation Deferred writing of data to be synchronized on magnetic tape employing a non-volatile store
US7266636B2 (en) 2003-01-06 2007-09-04 International Business Machines Corporation Deferred writing of data to be synchronized on magnetic tape employing a non-volatile store
US6839801B2 (en) 2003-01-06 2005-01-04 International Business Machines Corporation Deferred writing of data to be synchronized on magnetic tape employing a non-volatile store
US7437053B2 (en) * 2003-01-15 2008-10-14 Matsushita Electric Industrial Co., Ltd. Digital video recorder, method of driving the video recorder and program
US20040146274A1 (en) * 2003-01-15 2004-07-29 Matsushita Electric Industrial Co., Ltd. Digital video recorder, method of driving the video recorder and program
US8819087B2 (en) 2005-02-12 2014-08-26 Thomas Majchrowski & Associates, Inc. Methods and apparatuses for assisting the production of media works and the like
US10210254B2 (en) 2005-02-12 2019-02-19 Thomas Majchrowski & Associates, Inc. Methods and apparatuses for assisting the production of media works and the like
US11657103B2 (en) 2005-02-12 2023-05-23 Thomas Majchrowski & Associates, Inc. Methods and apparatuses for assisting the production of media works and the like
US20090198719A1 (en) * 2005-02-12 2009-08-06 Teresis Media Management, Inc. Methods and appartuses for assisting the production of media works and the like
US10514815B2 (en) 2005-02-14 2019-12-24 Thomas Majchrowski & Associates, Inc. Multipurpose media players
US8204750B2 (en) 2005-02-14 2012-06-19 Teresis Media Management Multipurpose media players
US20090013252A1 (en) * 2005-02-14 2009-01-08 Teresis Media Management, Inc. Multipurpose media players
US11467706B2 (en) 2005-02-14 2022-10-11 Thomas M. Majchrowski & Associates, Inc. Multipurpose media players
US9864478B2 (en) 2005-02-14 2018-01-09 Thomas Majchrowski & Associates, Inc. Multipurpose media players
US8174560B2 (en) 2007-04-11 2012-05-08 Red.Com, Inc. Video camera
US8872933B2 (en) 2007-04-11 2014-10-28 Red.Com, Inc. Video camera
US9596385B2 (en) 2007-04-11 2017-03-14 Red.Com, Inc. Electronic apparatus
US9436976B2 (en) 2007-04-11 2016-09-06 Red.Com, Inc. Video camera
US20080291319A1 (en) * 2007-04-11 2008-11-27 Red.Com, Inc. Video camera
US9787878B2 (en) 2007-04-11 2017-10-10 Red.Com, Llc Video camera
US9792672B2 (en) 2007-04-11 2017-10-17 Red.Com, Llc Video capture devices and methods
US9245314B2 (en) 2007-04-11 2016-01-26 Red.Com, Inc. Video camera
US9230299B2 (en) 2007-04-11 2016-01-05 Red.Com, Inc. Video camera
US9019393B2 (en) 2007-04-11 2015-04-28 Red.Com, Inc. Video processing system and method
US8878952B2 (en) 2007-04-11 2014-11-04 Red.Com, Inc. Video camera
US20100013963A1 (en) * 2007-04-11 2010-01-21 Red.Com, Inc. Video camera
US20100265367A1 (en) * 2007-04-11 2010-10-21 Red.Com, Inc. Video camera
US8358357B2 (en) 2007-04-11 2013-01-22 Red.Com, Inc. Video camera
US7830967B1 (en) 2007-04-11 2010-11-09 Red.Com, Inc. Video camera
US8237830B2 (en) 2007-04-11 2012-08-07 Red.Com, Inc. Video camera
US8577683B2 (en) 2008-08-15 2013-11-05 Thomas Majchrowski & Associates, Inc. Multipurpose media players
US10582168B2 (en) 2013-02-14 2020-03-03 Red.Com, Llc Green image data processing
US9521384B2 (en) 2013-02-14 2016-12-13 Red.Com, Inc. Green average subtraction in image data
US9716866B2 (en) 2013-02-14 2017-07-25 Red.Com, Inc. Green image data processing
US11503294B2 (en) 2017-07-05 2022-11-15 Red.Com, Llc Video image data processing in electronic devices
US11818351B2 (en) 2017-07-05 2023-11-14 Red.Com, Llc Video image data processing in electronic devices

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DE69621782T2 (en) 2003-02-20
USRE42160E1 (en) 2011-02-22
USRE42020E1 (en) 2011-01-04
JPH11507184A (en) 1999-06-22
USRE41968E1 (en) 2010-11-30
EP0812509A4 (en) 1999-08-18
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US5488433A (en) 1996-01-30
WO1996027263A1 (en) 1996-09-06

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