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AN3114 датащи(PDF) 14 Page - STMicroelectronics |
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AN3114 датащи(HTML) 14 Page - STMicroelectronics |
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14 / 43 page ![]() LCD controller drive signals AN3114 14/43 Doc ID 16829 Rev 3 Discrimination ratio calculation for quadruplex mode: COM3 - SEG0 [ON] = (2VDD/3 - VDD/3) + (2VDD/3 - VDD/3) + (2VDD/3 - VDD/3) + (0 - VDD) + (VDD/3 - 2VDD/3) + (VDD/3 - 2VDD/3) + (VDD/3 - 2VDD/3) + (VDD - 0) => VDC = 0 COM3 - SEG0 [OFF] = (2VDD/3 - VDD/3) + (2VDD/3 - VDD/3) + (2VDD/3 - VDD/3) + (0 - 0) + (VDD/3 - 2VDD/3) + (VDD/3 - 2VDD/3) + (VDD/3 - 2VDD/3) + (0 - 0) => VDC = 0 2.4 Octaplex LCD drive In an octaplex LCD drive, eight backplanes are used. Each segment line is connected to eight LCD segments, which other side is connected to one, two, four or eight of the eight backplanes. Consequently, only (S/8)+8 MCU pins are necessary to drive an LCD with S LCD segments. This mode is available only in medium+ and high density STM8L152xx/STM8L162xx devices. For example, to drive an LCD with 320 LCD segments (40 ×8), only 48 I/O ports are required (40 I/O ports to drive the segment lines and 8 I/O ports to drive the backplanes). Five different voltage levels have to be generated on the common lines: 0, VDD/4, VDD/2, 3VDD/4 and VDD. The Segment line voltage levels are also 0, VDD/4, VDD/2, 3VDD/4 and VDD. The LCD segment is inactive if the RMS voltage is below the LCD threshold voltage Vth, and is active if the LCD RMS voltage applied is above the threshold. Figure 9 shows typical backplane, Segment lines and LCD waveforms. The intermediate voltages VDD/4, and 3VDD/4 are required for backplane voltages. When a backplane or COM is active (0 V during an odd frame and VDD during an even frame), the others are made inactive by applying to them 3VDD/4 during an odd frame and VDD/4 during an even frame. V ON RMS () VSi () 2 n ∑ n ------------------------ 3 VDD 3 ------------- ⎝⎠ ⎛⎞ 2 VDD () 2 3 VDD – 3 ---------------- ⎝⎠ ⎛⎞ 2 VDD – () 2 ++ + 8 ---------------------------------------------------------------------------------------------------------------------- 0,577VDD == = V OFF RMS () VSi () 2 n ∑ n ------------------------ 4 VDD 3 ------------- ⎝⎠ ⎛⎞ 2 4 VDD – 3 ---------------- ⎝⎠ ⎛⎞ 2 + 8 ------------------------------------------------------------ 0,333VDD == = D V ON RMS () V OFF RMS () ----------------------------- 0,395 0,176 --------------- · 1,732 == = |
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