throbber
E-Watch, Inc.
`Exhibit 2015
`Petitioner - Iron Dome LLC
`Patent Owner - E-Watch, Inc.
`IPR2014-00439
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`Page 1 of 58
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`l, Winston Ninh, pursuant to the provisions of 28 U.S.C. § 1746 and 37 C.F.R. §l.l3i,
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`declare:
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`1.
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`2.
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`3.
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`My name is Winston Ninh.
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`i am over the age of 21 years of age and am competent to make this declaration.
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`During the timeframe from about 1990 to about 1993,
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`I worked under the
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`direction of David Monroe with respect to several product development projects, which
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`included: 1.) a product development project
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`referred to as facsimile camera (“FAX-
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`CAM”) and sometimes also as “PhaxxCam” and FaxMan (hereinafter referred to as
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`FAX—CAM), 2.) a product development project referred to as camera remote image
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`transceiver (“CAM-RH”); and 3)
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`a product development project referred to as mini
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`remote image transceiver (“Mini-RIF”).
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`4.
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`The professional services that I performed for the project consisted of formalizing
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`content of block diagramsereatedbyrDavidrrrMenreeMandrrartic-ulatedrtormerverballyrrandlor~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ ,
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`in writing by David Monroe, designing circuit schematics for same, building breadboards
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`for same, and testing such breadboards.
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`5.
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`Apparatuses within the scope of the FAX-CAM, CAM-RIF, and Mini-RIT
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`product development projects related to various configurations of hand-held electronic
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`devices capable of capturing visual images and transmitting them to a remote receiving
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`station.
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`6.
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`Although I am not an inventor of the subject matter claimed in US. patent no.
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`7,365,871 (“the ‘871 patent”), based on my direct knowledge of the FAX—CAM, CAM~
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`RH, and Mini~RIT product development projects and my interactions with David
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`Monroe during the timeframe indicated above,
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`it is my testimony that David Monroe
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`disclosed to me the following subject matter on or prior to the date indicated.
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`a. As shown in page 1 l of this declaration (FAX~CAM apparatus conceptual
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`schematic; date of disclosure at
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`least by 03/05/1990), an apparatus
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`conceived in relation to the FAX—CAM product development project
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`included a procassor having memory coupled thereto, an electronic camera
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`(e.g., CCD chip) coupled thereto through an analog-to-digital conversion
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`device, a display coupled thereto with a user interface for affecting content
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`presented on the display, and a fax modem chip coupled thereto. The fax
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`modem chip is coupled between the processor and communications
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`interfaces (e.g., RJ-ll jack) such that signaling between the processor and
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`the communications interfaces is in a digital format. The processor
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`digitally processes signals generated by electronic components of the
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`apparatus. The memory enables visual images to be stored thereon. The
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`electronic camera generates a visual image signal and the analog-toudigital
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`conversion device outputs the visual image signal in a digital format. The
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`display enables information generated by the electronic components of the
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`apparatus to be viewed. The communications interfaces enable signals
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`generated by electronic components of the apparatus to be transmitted to a
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`remote receiving station.
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`. As shown in pages
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`12—15 of this declaration (FAX-CAM apparatus
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`conceptual schematic; date of disclosure at
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`least by 03/30f1990), an
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`apparatus conceived in relation to the FAXwCAM product development
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`project included a processor, various types of memory, an electronic
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`camera (e.g., CCD chip), image processing circuitry, a display, a keyboard
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`for enabling input of alphanumeric information, a user interface for
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`enabling image capture and transmission, a modem, a modem driver, a
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`data access arrangement, a digital—to-analog converter, and analog—to—
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`digital converter, and various communication interfaces for enabling 2-
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`way communication with a remote receiving station (e.g., RJ-1 1, RS—232).
`
`As shown in page 16 of this declaration (CCD Camera Module; date of
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`disclosure at least by July 20, 1990), an apparatus conceived in relation to
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`the FAX-CAM product development project included a camera module
`
`having a physical size allowing it
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`to be integrated into a hand—held
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`housing. The CCD camera module was the smallest size camera module
`
`that was identified by David Monroe in or shortly before July of 1990.
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`. As shown in pages 17-18 of this declaration (FAX—CAM apparatus
`
`processor board schematic; date of disclosure at least by 12/03/1990), an
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`apparatus conceived in relation to the FAX-CAM product develOpment
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`project included processor configured (e.g., with the use of software) for
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`providing the following functionality: control
`
`the electronics to allow
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`viewing of a live image to be framed, controi
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`the keypad/keyboard
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`electronics to allow input of commands, control
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`the keypad/keyboard
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`electronics to allow input of alpha or numeric data, run the operating
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`system software, run the applications software, control the internal RAM
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`memory, control the external memory, controi the display of video and
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`images, control the display of text, control the backlight of the display,
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`control the electronics to capture an image, provide one or more image
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`compression algorithms, perform gray scale to hit map conversion for
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`FAX machine compatibility, store the captured image in fixed RAM
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`memory, store the capture image in removable memory, recall a captured
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`image from RAM, recall a captured image from removable memory,
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`monitor the status of the memory card door (open/closed), control memory
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`based on memory card door, control the electronics to display a captured
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`image, select the means of transmission of the image, control the modern,
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`control dialing functions of the telephone and the cellular telephone,
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`control the telephone line communications, control the cellular telephone
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`communications, control
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`the serial channel communications, control
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`communications enc1yptionfdecryption functions, provide one or more
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`protocols for the telephone line, provide one or more protocols for the
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`cellular telephone, provide one or more protocols for the serial channel,
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`control sending of an image over the telephone line, control sending of an
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`image over the cellular telephone, control sending of an image over the
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`serial channel, control receiving of an image over the telephone line,
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`control receiving of an image over the cellular telephone, control receiving
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`of an image over
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`the serial channel, provide one or more image
`
`decompression algorithms, control the power supply system, control the
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`video parameters of the electronic camera, control the video parameters of
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`the A/D conversion, control the video parameters of the BIA conversion,
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`Page 5 of 58
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`control audio inputs, control the audio parameters of the microphone,
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`control the audio parameters of the audio line input, control audio outputs,
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`control the audio parameters of the speaker, control generation of tones
`
`for the speaker, provide Busy status (can’t capture an image), provide
`
`Main Battery Low status indication, provide Card Battery Low status
`
`indication, provide
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`card Write Protect status indication, provide Video
`
`Overlay Data, provide Strobe Light Control, provide a system debug
`
`facility, provide a Real—Time Clock, provide a Time/Date function,
`
`provide attachment of Time/Date to an image, and load instructions and
`
`data held in non-volatile storage (the EPROM).
`
`As shown in page 19 of this declaration (FAX—CAM apparatus keyboard
`
`schematic; date of disclosure at
`
`least by 12/03/1990), an apparatus
`
`conceived in relation to the FAX-CAM product development project
`
`included a keyboard for enabling alphanumeric information to be inputted
`
`by a user through use of a keyboard.
`
`As shown in pages 20-31 of this declaration (CAM—RIT apparatus
`
`hardware schematics; date of disclosure at
`
`least by 03/6/1992), an
`
`apparatus conceived in relation to the CAM-RIT product development
`
`project included circuitry interconnect for the following components and
`
`printed wiring assemblies: a viewfinder, a deflection yoke, a Micro
`
`Processor Unit (MPU), audio logic, one or more status indicators, a
`
`microphone, a speaker, a seriai connector, a power supply, video backend
`
`and frontend, a video interface, a liquid crystal display, audio logic, and a
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`
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`Page 6 of 58
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`Page 6 of 58
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`MPU, The MPU included a “Ii-8” micro controller chip with [VB D/A
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`and related circuitry, RAM memory chips and related circuitry, a 286 LC
`
`microprocessor chip and related circuitry,
`
`internal
`
`time-of—day clock,
`
`alarm, a 100 year calendar, a parallel Interface Memory Unit chip and
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`related circuitry, a CMOS Flash Memory chip and related circuitry, a
`
`RAMCARD connector to an image storage card, a RAMCARD controller
`
`chip and related circuitry, a RAMCARD power chip and related circuitly,
`
`various crystal oscillator/timebase components, various power supply
`
`chips and related circuitry, a microprocessor monitor chip and related
`
`circuitry “Main Reset”, a fax modem chip and related circuitry, image
`
`capture button interfaces, memory addressing decoder logic, a UART chip
`
`and related circuitly, a serial connector, a lithium battery for the internal
`
`real
`
`time clock and CMOS memory, a power switch connection and
`
`related circuitry, a cellular telephone data and clock interface for control
`
`of cell phone and data transfers a liquid crystal display module, a battery,
`
`power control and distribution circuitry, an electronic viewfinder, and
`
`video circuitry and logic.
`
`This hand—held,
`
`self—contained apparatus
`
`provided functionality for enabling a user to acquire and frame an image
`
`using the electronic viewfinder, capture the framed image to produce a
`
`digitized framed image, optionally input
`
`and View alphanumeric
`
`information, selectively recall the digitized framed image from memory,
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`and thereafter selectively transmit
`
`the digitized framed image and,
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`optionally, alphanumeric information for reception by a remote receiving
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`station.
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`As shown in page 32-37 of this declaration (Mini-RIT functionality
`
`summary sheet; date of disclosure at least by 03/1/1993), an apparatus
`
`conceived in relation to the Mini—RIT product development project
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`included a digital camera, video circuitry for processing information
`
`generated by the digital camera, PCMCIA circuitry, and a programmable
`
`sequence instruction unit.
`
`. As shown in page 38 of this declaration (digital camera functionality
`
`summary sheet; date of disclosure at least by 03/1/1993), an apparatus
`
`conceived in relation to the Mini-RIT product development project
`
`included a digital camera with digital signal processing, electronic light
`
`control, gain control, balance control,
`
`red/blue level control,
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`light
`
`compensation control, shutter speed control, tracing white control, etc.
`
`As shown in pages 39-44 of this declaration (CAM-RIT apparatus
`
`hardware schematics; date of disclosure at
`
`least by 08/20/1991), an
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`apparatus conceived in relation to the CAM—RIF product development
`
`project included a camera, processor, memory, keyboard, power supply,
`
`audio circuitry/logic, video circuitry/logic, an electronic viewfinder, a
`
`device
`
`for
`
`enabling alphanumeric
`
`input,
`
`and power
`
`control
`
`and
`
`distribution circuitIy. This hand-held, self—contained apparatus provided
`
`functionality for enabling a user to acquire and frame an image using the
`
`electronic viewfinder, capture the framed image to produce a digitized
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`Page 8 of 58
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`19
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`Ez;
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`i
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`
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`framed image, optionally input and view alphanumeric information,
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`selectively recall the digitized framed image from memory, and thereafter
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`selectively transmit
`
`the digitized
`
`framed image
`
`and,
`
`optionally,
`
`alphanumeric information for reception by a remote receiving station.
`
`As shown in pages 45~58 of this declaration (Mini-RJT apparatus
`
`hardware schematics; date of disclosure at
`
`least by 03/1/1993), an
`
`apparatus conceived in relation to the Mini-RH" product development
`
`project included a camera, audio circuitry/logic, video circuitry/logic, an
`
`electronic viewfinder, a device for enabling alphanumeric input, cellular
`
`telephone, and power supply. This hand~held, self—contained apparatus
`
`provided functionality for enabling a user to acquire and frame an image
`
`using the electronic viewfinder, capture the framed image to produce a
`
`digitized framed image, optionally input and view alphanumeric
`
`information, selectively recall the digitized framed image from memory,
`
`and thereafter selectively transmit
`
`the digitized framed image and,
`
`Optionally, alphanumeric information for reception by a remote receiving
`
`station.
`
`7.
`
`To the best of my knowledge and based on my experiences working with David
`
`Monroe, he is the sole inventor of the invention claimed in the “871 patent and conceived
`
`of the invention claimed therein by at least March of 1993.
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`8.
`
`Based on these dated documents and my multiple discussions with David Monroe
`
`during my involvement
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`in the FAXwCAM, CAM-RH",
`
`and Mini-RIT product
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`Page 9 of 58
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`development projects, I can and do corroborate that by at least March of 1993 David
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`Monroe had fully formed the complete and operative invention as recited in claims 1-15
`
`of the ‘871 patent.
`
`Date:
`
`IUOZ‘ZCJtZ 2919!.
`
`
` Name: Winston Ni
`
`Signature:
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`Page 10 of 58
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`Page 28 of 58
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`Page 29 of 58
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`CONFIDENTIAL - ATTORNEYS‘ EYES ONLY
`
`EW00004837
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`Page 31 of 58
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`

`

`Mini RIT Video (MRV) Features:
`
`mrit.doc
`
`Physical Dimensions:
`
`PCMCIA Type II Size (2 x 3 in)
`MINI-RIT Size (2.8 x 3 in)
`
`Input Types:
`
`NTSC Composite Video
`RGB and Sync Video
`Micro Digital Camera (MDC)
`15 Megabyte/Sec External Digital Input Port for video
`CODEC (JPEC etc.)
`
`16 Bit PCMCIA Port or ISA Host Bus
`
`Note: Real-time Programmable Sequence Instruction
`
`Unit (SIU) for
`Digital Data Routing between Host Port, MDC and
`Digitized Data
`
`Page 1
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`Page 32 of 58
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`Page 32 of 58
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`

`Output Types:
`
`mrit . doc
`
`NTSC Composite Video
`S-Vid Composite Video
`RGB and Sync Video
`15 Megabyte/Sec External Digital Output Port for video
`CODEC (JPEC etc.)
`
`Note: Real—time Programmable Sequence Instruction
`
`Unit (SIU) for
`Digital Data Routing between Host Port, Digitized
`Data and CODEC Port
`
`Capture Resolution Formats (5 Formats):
`
`512 x 512 Interlaced
`
`576 x 432 Interlaced
`
`640 x 480 Interlaced
`
`786 x 525 Interlaced
`
`1024 x 768 Interlaced
`
`Note: Support all AVON Capture Formats
`
`Page 2
`
`Page 33 of 58
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`Page 33 of 58
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`

`

`mrit.doc
`
`Display Resolution Formats (10 Formats):
`
`512 x 512 Interlaced
`
`576 x 432 Interlaced
`
`640 x 480 Interlaced
`
`786 x 525 Interlaced
`
`1024 x 768 Interlaced
`
`512 x 512 Non Interlaced
`
`576 x 432 Non Interlaced
`
`640 x 480 Non Interlaced
`
`786 x 525 Non Interlaced
`
`1024 x 768 Non Interlaced
`
`Note: Support all AVON Display Formats
`
`Video Digital Data Processing:
`
`8—Bit B/W with Tag
`16—Bit YUV 4:1:1 with Tag (Reduced Color)
`16-Bit YUV 4:2:2 (24 Bit RGB Equivalent)
`
`15-Bit RGB with Tag
`
`Page 3
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`Page 34 of 58
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`Page 34 of 58
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`

`mrit.doc
`
`16—Bit RGB with Tag
`
`24—Bit RGB
`
`32—Bit Direct Digital Synthesize (DDS) Capture
`
`Genlocking
`
`to R685, NTSC
`
`Programmable Display PLL for mutiple display formats
`
`Mini RIT Communication (MR6) Features:
`
`Sync Lookup and Cutover Stand-alone Processor
`Communication Protocol Digital Signal Processor: PTAC,
`
`SYNC, ASYNC up to
`1 Mega Bit/Sec
`ADPCM/LPC and Variable Format Voice Digital Processor
`(Approximately 15 Min of Recording time)
`Mil—188 Digital Interface
`Audio Input and Output (Handset Interface, Speaker
`and Microphone)
`
`Page 4
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`Page 35 of 58
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`Page 35 of 58
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`

`

`mrit.doc
`
`Mini-RIT Processor (MRP)
`
`8Mega Byte (4-DRAM using 16M Bit Chips)
`512K Byte Flash ROM for DOS Programs
`16-MHz MS—DOS Engine (Single Chip)
`
`PCMCIA Port (1 Port)
`
`[25-232 Serial (1 Port)
`
`Keyboard (1 Port/ 10 Keys)
`Graphic LCD Display (122 x 32 Pixels)
`
`Mini -RIT Battery Pack (MRB)
`6 NICAD AA-Size Rechargeable Batteries
`6 Lithium AA—Size Non-Rechargeable Batteries
`
`Built—in Mini-Rit Power Distribution and Recharging
`
`Circuits
`
`Power Input Type
`Battery Pack (7.2V NICAD or 19.2V Lithium)
`
`Page 5
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`Page 36 of 58
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`Page 36 of 58
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`

`

`mrit. doc
`
`Vehicle 12VDC
`
`28 VDC
`
`Charge Type
`
`Fast Charge
`Trickle Charge
`
`CODEC Digital Port Available Modules:
`
`Full Motion JPEC (30Mhz Pixel Rate)
`
`Micro Digital Camera Interface
`Variable Format CODEC Digital Signal Processor
`
`PCMCIA Available Modules:
`
`1-8 Mega Flash ROM for Image/Voice Additional
`
`Storage
`1-8 Mega DRAM for Image/Voice Additional Storage
`
`Ethernet CARD
`
`14.4 Fax/Modem CARD
`
`Page 6
`
`Page 37 of 58
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`Page 37 of 58
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`

`

`Digital Camera Features:
`
`dcam.doc
`
`Supper small, PCMCIA card size
`Lightweight, less than 802
`682 x 492 Resolution (430 Horizontal Lines)
`5 Lux Illumination
`
`Low power (+5V Only at ZOOmA)
`Remote CCD head (3 meters) with Micro Lens or
`standard C—mount
`
`Fully Digital Signal Processing (2 DSPs + 2 RISCs)
`Real-time Digital Output (16 Bit YUV Bus)
`Electronic Light Control (ELC) emulating Continuous Iris
`opening '
`Programmable Shutter Speeds (1/60 Sec. to 1/ 10,000
`Sec.)
`
`Automatic or Manual Gain Control.
`
`Automatic or Manual Tracing White Control.
`Automatic or Manual White Balance Control. Adjustable
`Red and Blue Levels
`
`Black light compensation. Maskable 1 to 25 areas on a
`full screen
`256 Overlay Characters (16x16) for On-Screen Display
`Electronic Variable Resistors for Calibrations and Setup
`
`Page 1
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`Pége 38 of 58
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`Page 38 of 58
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`I......8:32.55.—
`
`
`
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`
`
`
`
`
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`Page 39 of 58
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`Page 39 of 58
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`Page 40 of 58
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`Page 40 of 58
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`Page 41 of 58
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`Page 41 of 58
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`Page 42 of 58
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`Page 42 of 58
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`Page 43 of 58
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`Page 43 of 58
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`Page 44 of 58
`
`Page 44 of 58
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`Page 45 of 58
`
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`Page 45 of 58
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`Page 46 of 58
`
`Page 46 of 58
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`Page 47 of 58
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`Page 47 of 58
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`Page 48 of 58
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`Page 48 of 58
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`Page 49 of 58
`
`Page 49 of 58
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`Page 50 of 58
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`Page 50 of 58
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`Page 51 of 58
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`Page 51 of 58
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`Page 52 of 58
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`Page 52 of 58
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`Page 53 of 58
`
`Page 53 of 58
`
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`Page 54 of 58
`
`Page 54 of 58
`
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`Page 55 of 58
`
`Page 55 of 58
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`Page 56 of 58
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`Page 57 of 58
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`Page 58 of 58
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`Page 58 of 58
`
`

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