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STA320 数据表(PDF) 4 Page - STMicroelectronics |
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STA320 数据表(HTML) 4 Page - STMicroelectronics |
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4 / 37 page ![]() STA320 4/37 3 ELECTRICAL CHARACTERISTCS (VDD3 = 3.3V ± 0.3V; VDDA = 3.3V ± 0.3V; TAMB = 0 TO 70 °C; UNLESS OTHERWISE SPECIFIED) Table 6. GENERAL INTERFACE ELECTRICAL CHARACTERISTICS Note 1: The leakage currents are generally very small, < 1na. The values given here are maximum after an electrostatic stress on the pin. Note 2: Human Body Model Table 7. DC ELECTRICAL CHARACTERISTICS: 3.3V BUFFERS 4I2C BUS SPECIFICATION The STA320 supports the I2C protocol via the input ports SCL and SDA_IN (Master to Slave) and the output port SDA_OUT (Slave to Master). This protocol defines any device that sends data on to the bus as a transmitter and any device that reads the data as a receiver. The device that controls the data transfer is known as the master and the other as the slave. The master always starts the transfer and provides the serial clock for synchronization. The STA320 is always a slave device in all of its communications. It supported up to 400KB/sec rate (fast-mode bit rate). 4.1 COMMUNICATION PROTOCOL 4.1.1 Data Transition or change Data changes on the SDA line must only occur when the SCL clock is low. SDA transition while the clock is high is used to identify a START or STOP condition. 4.1.2 Start Condition START is identified by a high to low transition of the data bus SDA signal while the clock signal SCL is stable in the high state. A START condition must precede any command for data transfer. Symbol Parameter Test Condition Min. Typ. Max. Unit Note Iil Low Level Input no pull-up Vi = 0V 1 µA1 Iih High Level Input no pull-down Vi = VDD3 2 µA1 IOZ Tristate output leakage without pullup/down Vi = VDD3 2 µA1 Vesd Electrostatic Protection Leakage < 1 µA2000 V 2 Symbol Parameter Test Condition Min. Typ. Max. Unit VIL Low Level Input Voltage 0.8 V VIH High Level Input Voltage 2.0 V VILhyst Low Level Threshold Input Falling 0.8 1.35 V VIHhyst High Level Threshold Input Rising 1.3 2.0 V Vhyst Schmitt Trigger Hysteresis 0.3 0.8 V Vol Low Level Output IoI = 100uA 0.2 V Voh High Level Output Ioh = -100uA Ioh = -2mA VDD3-0.2 2.4 V V |
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