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PCF8813 数据表(PDF) 39 Page - NXP Semiconductors |
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PCF8813 数据表(HTML) 39 Page - NXP Semiconductors |
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39 / 72 page ![]() 2004 Mar 05 39 Philips Semiconductors Product specification (67 + 1) × 102 pixels matrix LCD driver PCF8813 15 DC CHARACTERISTICS VDD1 = 1.7 to 3.3 V; VSS =0V; VLCD = 3.0 to 9.0 V; Tamb = −40 to +85 °C; unless otherwise specified. Notes 1. VDD2 and VDD3 are always equal. 2. The maximum possible VLCD voltage that may be generated depends on voltage, temperature and load (display). 3. Valid for the temperature, VPR and TC values used at calibration. 4. Normal mode and internal clock. 5. Conditions: VDD1 = 1.8 V; VDD2 = 2.70 V; VLCD = 7.6 V; voltage multiplier = 4 × VDD2; bias system 1/9; inputs at VDD1 or VSS; VLCD generation = internal; VLCD output loaded by 10 µA; Tamb =25 °C. 6. fINTCLK = 0 (no data bus clock). 7. Power-down mode; during Power-down all static currents are switched off. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VDD1 supply voltage (logic circuits) 1.7 − 3.3 V VDD2, VDD3 supply voltage (voltage multiplier) note 1 2.4 − 4.5 V VLCDIN LCD supply voltage input 3.0 − 9.0 V VLCDOUT generated LCD supply voltage note 2 4.5 − 9.0 V VLCD(tol) tolerance of generated LCD supply voltage note 3 −70 −+70 mV IDD(tot) total supply current (IDD1 +IDD2 +IDD3) normal mode; notes 4, 5, 6 − 100 300 µA Power-down mode; note 7 − 0.5 10 µA IDD1 supply current external VLCD; notes 4, 6, 8 − 10 35 µA ILCD LCD supply current external VLCD; notes 4, 6, 8 − 30 −µA Logic circuits VOL LOW-level output voltage IOL = 0.5 mA VSS − 0.2VDD V VOH HIGH-level output voltage IOH = −0.5 mA 0.8VDD − VDD V VIL LOW-level input voltage VSS − 0.2VDD V VIH HIGH-level input voltage 0.8VDD − VDD V IL leakage current VI =VDD or VSS −1 − +1 µA Column and row outputs Rcol column output resistance C0 to C101 VLCD = 7.6 V; note 9 − 520 k Ω Rrow row output resistance R0 to R67 VLCD = 7.6 V; note 9 − 520 k Ω Vcol(tol) bias tolerance C0 to C101 note 9 −100 0 +100 mV Vrow(tol) bias tolerance R0 to R67 note 9 −100 0 +100 mV LCD supply voltage generator TC VLCD temperature compensation VLCD(nom) = 8.6 V temperature coefficient 0 − 0.00 − mV/K temperature coefficient 1 −−0.23 − mV/K temperature coefficient 2 −−0.48 − mV/K temperature coefficient 3 −−0.64 − mV/K |
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