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ADV7341 数据表(PDF) 66 Page - Analog Devices |
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ADV7341 数据表(HTML) 66 Page - Analog Devices |
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66 / 108 page ![]() ADV7340/ADV7341 Data Sheet Rev. C | Page 66 of 108 Figure 72. Output Signal from ED/HD Adaptive Filter (Mode A) When the adaptive filter mode is changed to Mode B (Subaddress 0x35, Bit 6), the output shown in Figure 73 can be obtained. Figure 73. Output Signal from ED/HD Adaptive Filter (Mode B) SD DIGITAL NOISE REDUCTION Subaddress 0xA3 to Subaddress 0xA5 Digital noise reduction (DNR) is applied to the Y data only. A filter block selects the high frequency, low amplitude compo- nents 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 is 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. Otherwise, if the level exceeds the threshold, now identified as a valid signal, a fraction of the signal (coring gain border, coring gain data) is added to the original signal to boost high frequency components and sharpen the video image. In MPEG systems, it is common to process the video information in blocks of 8 pixels × 8 pixels for MPEG2 systems or 16 pixels × 16 pixels for 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 possible 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. The digital noise reduction registers are three 8-bit registers. They are used to control the DNR processing. Figure 74. SD DNR Block Diagram Coring Gain Border—Subaddress 0xA3, Bits[3:0] These four bits are assigned to the gain factor applied to border areas. In DNR mode, the range of gain values is 0 to 1 in increments of 1/8. This factor is applied to the DNR filter output that lies below the set threshold range. The result is then subtracted from the original signal. In DNR sharpness mode, the range of gain values is 0 to 0.5 in increments of 1/16. This factor is applied to the DNR filter output that lies above the threshold range. The result is added to the original signal. Coring Gain Data—Subaddress 0xA3, Bits[7:4] These four bits are assigned to the gain factor applied to the luma data inside the MPEG pixel block. In DNR mode, the range of gain values is 0 to 1 in increments of 1/8. This factor is applied 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 – + |
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