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STUSB1602 数据表(PDF) 19 Page - STMicroelectronics |
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STUSB1602 数据表(HTML) 19 Page - STMicroelectronics |
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19 / 55 page ![]() DocID028319 Rev 2 19/55 STUSB1602 Features description 55 3.5 Low power standby mode The STUSB1602 proposes a standby mode to reduce the device power consumption when no device is connected to the USB Type-C port. It is disabled by default and can be activated through NVM programming (see Section 6: Start-up configuration). When activated, the STUSB1602 enters standby mode at power up, after a reset, or after a disconnection. In this mode, the CC interface and the voltages monitoring blocks are turned off. Only a monitoring circuitry is maintained active on the CC pins to detect a connection. When the connection is detected, all the internal circuits are turned on to allow normal operation. Standby mode does not operate when the device is configured in sink power role with accessory support (see Section 6: Start-up configuration). Table 8. Fault management conditions Fault types Fault conditions Expected actions Short circuit CC output pin shorted to ground via very low resistive path causing rapid current surge Power switch limits the current and reduces the output voltage. I2C alert is asserted immediately thanks to VCONN_SW_OCP_FAULT bits. Overcurrent CC output pin connected to a load that sinks current above programmed limit Power switch limits the current and reduces the output voltage. I2C alert is asserted immediately thanks to VCONN_SW_OCP_FAULT bits. Overheating Junction temperature exceeding 145 °C due to any reason Power switch is disabled immediately until the temperature falls below 145 °C minus hysteresis of 15 °C. I2C alert is asserted immediately thanks to THERMAL_FAULT bit. STUSB1602 goes into transient error recovery state. Undervoltage VCONN input voltage drops below UVLO threshold minus hysteresis Power switch is disabled immediately until the input voltage rises above the UVLO threshold. I2C alert is asserted immediately thanks to VCONN_PRESENCE bit. Overvoltage CC output pin voltage exceeds maximum operating limit of 6.0 V Power switch is opened immediately until the voltage falls below the voltage limit. I2C alert is asserted immediately thanks to VCONN_SW_OVP_FAULT bits. Reverse current CC output pin voltage exceeds VCONN input voltage when the power switch is turned-off The reverse biased body diode of the back- to-back MOS switches is naturally disabled preventing current to flow from the CC output pin to the input. Reverse voltage CC output pin voltage exceeds VCONN input voltage of more than 0.35 V for 5 V when the power switch is turned-on Power switch is opened immediately until the voltage difference falls below the voltage limit. I2C alert is asserted immediately thanks to VCONN_SW_RVP_FAULT bits. |
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