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PCF8813 датащи(PDF) 32 Page - NXP Semiconductors |
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PCF8813 датащи(HTML) 32 Page - NXP Semiconductors |
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32 / 72 page ![]() 2004 Mar 05 32 Philips Semiconductors Product specification (67 + 1) × 102 pixels matrix LCD driver PCF8813 11.4 Display Control Bits D and E (see Table 8) select the display mode. When bit MX = 0, the display RAM is written from left to right (X = 0 is on the left side and X = 101 is on the right side of the display). When bit MX = 1, the display RAM is written from right to left (X = 0 is on the right side and X = 101 is on the left side of the display). The bit MX has an impact on the way the RAM is written. So if horizontal mirroring of the display is required, the RAM must first be rewritten. When bit MY = 1, the display is mirrored vertically. A change of bit MY has an immediate effect on the display. When bitV=0, horizontal addressing is selected and data is written into the DDRAM as shown in Fig.5. When bit V = 1, vertical addressing is selected, then data is written into the DDRAM as shown in Fig.6. 11.5 Set Y address of RAM Bits Y[3:0] define the Y address vector address of the display RAM. Table 11 Range of Y address and allowable X range In bank 8 only three bits are accessed, and in bank 10 only one bit is accessed. 11.6 Set X address of RAM The X address points to the columns. The range of X is 0 to 101 (65H). 11.7 Set maximum X address or Y address These two commands (Xmax[6:0] and Ymax[3:0]) set the maximum address for wraparound to occur for the columns. The range of Xmax is 0 to 101. The maximum Y address also sets the Y address for wraparound to occur. The range of Ymax is 0 to 8. By design, the maximum Y setting cannot access bank 10. Xmax and Ymax together also define when wraparound-to-zero takes place. These two commands are effective only when writing to the RAM. 11.8 Set display start line, initial start row and row 0 Set display start line L[6:0] allows the display line address of the display RAM to be chosen. The range is from line 0 to line 66 inclusive. The RAM address line 67 is not available for this command as it is reserved for icons. This command has an effect on the mapping between the data of the RAM and the display. The L address specifies which rows of the RAM are output to which row outputs of the display. The value of the L address defines which row of the RAM will be row 0. Row 0 of the display can in turn be set by the set initial row command C[6:0]. Figure 33 shows an example of how RAM data is mapped onto the display. In this example, the L command sets the data on line 8 of the RAM to be displayed. This data is displayed on a row set by the C command (16). When L and C are set to 8 and 16 respectively, data from RAM lines 4 to 7 is displayed on display rows 12 to 15 and RAM data from lines 15 to 18 is displayed on display lines 23 to 26. When MY is active (MY = 1), the data from Fig.33 is mapped from the RAM to the display as shown in Fig.34. Note the ‘new’ location of C after MY. 11.9 Set normal or partial display mode When N/P = 1, the PCF8813 can operate only as a 67 + 1 row driver operating with a 1 : 68 multiplex rate. When N/P = 0, the driver is used in free programmable multiplex rate where up to eight different multiplex rates can be selected in steps of 8, depending on the mask register value M[7:0]. When the PCF8813 is operating in FPMR mode, only the first 64 rows plus the icon row are available to the user. Table 12 Normal or partial mode display Y ADDRESS RAM CONTENT ALLOWED X RANGE 3210 0 0 0 0 bank 0 (display RAM) 0 to 101 0 0 0 1 bank 1 (display RAM) 0 to 101 0 0 1 0 bank 2 (display RAM) 0 to 101 0 0 1 1 bank 3 (display RAM) 0 to 101 0 1 0 0 bank 4 (display RAM) 0 to 101 0 1 0 1 bank 5 (display RAM) 0 to 101 0 1 1 0 bank 6 (display RAM) 0 to 101 0 1 1 1 bank 7 (display RAM) 0 to 101 1 0 0 0 bank 8 (display RAM) 0 to 101 1 0 1 0 bank 10 (display RAM) 0 to 101 N/P ACTION 0 partial mode display: 65 rows available 1 normal mode display: 68 rows available |
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