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PCF8813 датащи(PDF) 10 Page - NXP Semiconductors |
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PCF8813 датащи(HTML) 10 Page - NXP Semiconductors |
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10 / 72 page ![]() 2004 Mar 05 10 Philips Semiconductors Product specification (67 + 1) × 102 pixels matrix LCD driver PCF8813 7.9 DDRAM addressing handbook, full pagewidth MGU622 0 10 8 0 101 X address icon data Y address MSB LSB MSB LSB MSB LSB Fig.4 Sequence of writing data bytes into the RAM. Data is downloaded in bytes into the RAM matrix of the PCF8813 as indicated in Fig.4. The display data RAM has a matrix of 68 by 102 bits. The columns are addressed by the X address pointer whilst the rows are addressed in groups of 8 by the Y address pointer. However, there are only three rows in bank 8 and one row in bank 10. There is no bank 9. Thus the address ranges are: X = 0 to 101 (1100101) and Y = 0 to 8 and then 10 (1010). The PCF8813 is limited to 102 columns by 68 rows, addressing the RAM outside this area is not allowed. Two different addressing modes are possible; horizontal addressing and vertical addressing. In the horizontal addressing mode (V = 0) the X address increments after each byte. After the last X address (X = 101), x wraps-around to 0 and Y increments to address the next row (see Fig.5) until bank 8 is filled. In the vertical addressing mode (V = 1) the Y address increments after each byte. After the Y address (Y = 8), there is Y wraparound to 0 and X increments to address the next column (see Fig.6). After the very last address (X = 101 and Y = 8) the address pointers wraparound to address X = 0 and Y = 0 in both addressing modes. Addressing in bank 10 is a special case as these RAM locations are not automatically accessed. Bank 10 is reserved for icons. Icon locations must be addressed explicitly by setting the Y address pointer to 10. The Y address pointer does not auto-increment when the X address overflows or underflows (it stays in set to bank 9). Writing icon data is independent of the horizontal or vertical addressing (V-bit) but is affected by the Mirror X (MX) and Mirror Y (MY) bits. MX and MY are described in Sections 7.11 and 7.12. |
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