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PCF8812U/2 bảng dữ liệu(PDF) 17 Page - NXP Semiconductors |
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PCF8812U/2 bảng dữ liệu(HTML) 17 Page - NXP Semiconductors |
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17 / 36 page ![]() 2000 Nov 22 17 Philips Semiconductors Product specification 65 × 102 pixels matrix LCD driver PCF8812 10.9 Temperature control Due to the temperature dependency of the liquid crystals viscosity the LCD controlling voltage VLCD must be increased with lower temperature to maintain optimum contrast. There are 4 different temperature coefficients available in the PCF8812 (see Fig.13). The coefficients are selected by bits TC1 to TC0. Table 6 shows the typical values of the different temperature coefficients. The coefficients are proportional to the programmed VLCD. 10.10 Set VOP value The operating voltage VLCD can be set by software. The generated voltage is dependent on temperature, programmed Temperature Coefficient (TC) and the programmed voltage at reference temperature (Tcut). (1) The voltage at reference temperature [VLCD(T = Tcut)] can be calculated as follows: (2) The parameters are explained in Table 6. The maximum voltage that can be generated is dependent on the VDD2 voltage and the display load current. Two overlapping VLCD ranges are selectable via the command ‘HV-gen control’. For the LOW (PRS = 0) range a = a1 and for the HIGH (PRS = 1) range a = a2 with steps equal to ‘b’ in both ranges. It should be noted that the charge pump is turned off if VOP 6 to 0 and the bit PRS are all set to zero (see Fig.14). For MUX 1 to 65 the optimum operating voltage of the liquid can be calculated as follows; (3) where Vth is the threshold voltage of the liquid crystal material used. Table 6 Typical values for parameters for the HV-generator programming As the programming range for the internally generated VLCD allows values above the maximum allowed VLCD (9 V) the user has to ensure, while setting the VOP register and selecting the Temperature Compensation (TC), that under all conditions and including all tolerances that VLCD remains below 9 V. handbook, halfpage MGS402 T VLCD Tcut Fig.13 Temperature coefficients. V LCD T () aV OP b × + () 1T T cut – () TC × + () = V LCD T = T cut () aV OP b × + () = SYMBOL VALUE UNIT a1 2.94 (PRS = 0) V a2 6.75 (PRS = 1) V b 0.03 V Tcut 27 °C V LCD 165 + 21 1 65 ---------- – × --------------------------------------- V th × 6.85 V th × == |
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