參數(shù)資料
      型號(hào): ADV7300A
      廠商: Analog Devices, Inc.
      英文描述: Multiformat SD, Progressive Scan/HDTV Video Encoder with Six NSV⑩ 12-Bit DACs
      中文描述: 多格式統(tǒng)計(jì),逐行掃描/ HDTV視頻編碼器與六噪聲整形⑩12位DAC
      文件頁(yè)數(shù): 47/68頁(yè)
      文件大?。?/td> 1544K
      代理商: ADV7300A
      REV. A
      ADV7300A/ADV7301A
      –47–
      Table XXI. Adaptive Filter Control on Step Input Signal
      Address
      Register Setting
      00h
      01h
      02h
      10h
      11h
      15h
      20h
      38h
      39h
      3Ah
      3Bh
      3Ch
      3Dh
      FCh
      38h
      20h
      00h
      81h
      80h
      00h
      ACh
      9Ah
      88h
      28h
      3Fh
      64h
      All other register settings are 00h.
      When changing the Adaptive Filter Mode to Mode B
      [Address 15h, Bit 6], the output in Figure 67 can be obtained.
      : 674mV
      @: 446mV
      : 332ns
      @: 12.8ms
      Figure 67. Output Signal from Adaptive Filter Control
      The adaptive filter control can also be demonstrated using the
      internally generated crosshatch test pattern and toggling the Adap-
      tive Filter Control Bit [Address 15h, Bit 7], shown in Table XXII.
      Table XXII. Adaptive Filter Control on Internal Test Pattern
      Address
      Register Setting
      00h
      01h
      02h
      10h
      11h
      15h
      20h
      38h
      39h
      3Ah
      3Bh
      3Ch
      3Dh
      FCh
      38h
      20h
      00h
      85h
      80h
      00h
      ACh
      9Ah
      88h
      28h
      3Fh
      64h
      SD DIGITAL NOISE REDUCTION
      [Subaddresses 63h, 64h, and 65h]
      DNR is applied to the Y data only. A filter block selects the high
      frequency, low amplitude components of the incoming signal
      (DNR input select). The absolute value of the filter output is
      compared to a programmable threshold value (DNR threshold
      control). There are two DNR modes available: DNR Mode and
      DNR Sharpness Mode.
      In DNR Mode, if the absolute value of the filter output is smaller
      than the threshold, it is assumed to be noise. A programmable
      amount (coring gain border, coring gain data) of this noise signal
      will be subtracted from the original signal.
      In DNR Sharpness Mode, if the absolute value of the filter
      output is less than the programmed threshold, it is assumed to
      be noise, as before. Otherwise, if the level exceeds the threshold,
      now being identified as a valid signal, a fraction of the signal
      (coring gain border, coring gain data) will be added to the origi-
      nal signal in order to boost high frequency components and to
      sharpen the video image.
      In MPEG systems, it is common to process the video information
      in blocks of 8
      8 pixels for MPEG2 systems or 16
      MPEG1 systems (block size control). DNR can be applied to the
      resulting block transition areas that are known to contain noise.
      Generally, the block transition area contains two pixels. It is pos-
      sible to define this area to contain four pixels (border area.)
      It is also possible to compensate for variable block positioning
      or differences in YCrCb pixel timing with the use of the (DNR
      block offset.)
      16 pixels for
      BLOCK SIZE CONTROL
      BORDER AREA
      BLOCK OFFSET
      CORING GAIN DATA
      CORING GAIN BORDER
      GAIN
      DNR CONTROL
      FILTER
      OUTPUT
      > THRESHOLD
      INPUT FILTER
      BLOCK
      FILTER OUTPUT
      < THRESHOLD
      DNR OUT
      MAIN SIGNAL PATH
      ADD SIGNAL
      ABOVE THRESHOLD
      RANGE FROM
      ORIGINAL SIGNAL
      DNR
      SHARPNESS
      MODE
      NOISE
      SIGNAL PATH
      Y DATA
      INPUT
      BLOCK SIZE CONTROL
      BORDER AREA
      BLOCK OFFSET
      CORING GAIN DATA
      CORING GAIN BORDER
      GAIN
      DNR CONTROL
      FILTER
      OUTPUT
      < THRESHOLD
      INPUT FILTER
      BLOCK
      FILTER OUTPUT
      > THRESHOLD
      DNR OUT
      MAIN SIGNAL PATH
      SUBTRACT SIGNAL
      IN THRESHOLD
      RANGE FROM
      ORIGINAL SIGNAL
      DNR MODE
      NOISE
      SIGNAL PATH
      Y DATA
      INPUT
      Figure 68. DNR Block Diagram
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