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S-35192A-I8T1G Datasheet(PDF) 6 Page - Seiko Instruments Inc |
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S-35192A-I8T1G Datasheet(HTML) 6 Page - Seiko Instruments Inc |
6 / 41 page 3-WIRE REAL-TIME CLOCK S-35192A Rev.1.2_00 Seiko Instruments Inc. 6 DC Electrical Characteristics Table 5 DC Characteristics (VDD = 3.0 V) (Ta = −40 to +85°C, VSS = 0 V, VT-200 crystal oscillator (CL = 6 pF, 32.768 kHz, Cg = 9.1 pF) manufactured by Seiko Instruments Inc.) Parameter Symbol Applicable Pin Conditions Min. Typ. Max. Unit Current consumption 1 IDD1 − Out of communication − 0.45 1.13 µA Current consumption 2 IDD2 − During communication ( SCK = 100 kHz) − 3.3 8 µA Input current leakage 1 IIZH SCK , SIO VIN = VDD −0.5 − 0.5 µA Input current leakage 2 IIZL SCK , SIO VIN = VSS −0.5 − 0.5 µA Input current 1 IIH1 CS VIN = VDD 2 6 16 µA Input current 2 IIH2 CS VIN = 0.4 V 40 100 300 µA Input current 3 IIH3 CS VIN = 1.0 V − 215 − µA Output current leakage 1 IOZH SIO, 32KO VOUT = VDD −0.5 − 0.5 µA Output current leakage 2 IOZL SIO, 32KO VOUT = VSS −0.5 − 0.5 µA Input voltage 1 VIH CS, SCK , SIO − 0.8 × VDD − VSS + 5.5 V Input voltage 2 VIL CS, SCK , SIO − VSS − 0.3 − 0.2 × VDD V Output current 1 IOL1 32KO VOUT = 0.4 V 3 5 − mA Output current 2 IOL2 SIO VOUT = 0.4 V 5 10 − mA Power supply voltage detection voltage VDET − − 0.65 1 1.35 V Table 6 DC Characteristics (VDD = 5.0 V) (Ta = −40 to +85°C, VSS = 0 V, VT-200 crystal oscillator (CL = 6 pF, 32.768 kHz, Cg = 9.1 pF) manufactured by Seiko Instruments Inc.) Parameter Symbol Applicable Pin Conditions Min. Typ. Max. Unit Current consumption 1 IDD1 − Out of communication − 0.6 1.4 µA Current consumption 2 IDD2 − During communication ( SCK = 100 kHz) − 6 14 µA Input current leakage 1 IIZH SCK , SIO VIN = VDD −0.5 − 0.5 µA Input current leakage 2 IIZL SCK , SIO VIN = VSS −0.5 − 0.5 µA Input current 1 IIH1 CS VIN = VDD 8 16 50 µA Input current 2 IIH2 CS VIN = 0.4 V 40 150 350 µA Input current 3 IIH3 CS VIN = 2.0V − 610 − µA Output current leakage 1 IOZH SIO, 32KO VOUT = VDD −0.5 − 0.5 µA Output current leakage 2 IOZL SIO, 32KO VOUT = VSS −0.5 − 0.5 µA Input voltage 1 VIH CS, SCK , SIO − 0.8 × VDD − VSS + 5.5 V Input voltage 2 VIL CS, SCK , SIO − VSS − 0.3 − 0.2 × VDD V Output current 1 IOL1 32KO VOUT = 0.4 V 5 8 − mA Output current 2 IOL2 SIO VOUT = 0.4 V 6 13 − mA Power supply voltage detection voltage VDET − − 0.65 1 1.35 V |
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