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STUSB4700 데이터시트(PDF) 10 Page - STMicroelectronics |
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STUSB4700 데이터시트(HTML) 10 Page - STMicroelectronics |
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10 / 32 page ![]() Block descriptions STUSB4700 10/32 DocID030193 Rev 2 3 Block descriptions 3.1 CC interface The STUSB4700 controls the connection to the configuration channel (CC) pins, CC1 and CC2, through two main blocks, the CC lines interface block and the CC control logic block. The CC lines interface block is used to: Configure the termination mode on the CC pins relative to the power mode supported, i.e. pull-up for source power role Monitor the CC pin voltage values relative to the attachment detection thresholds Configure VCONN on the unconnected CC pin when required Protect the CC pins against over voltage The CC control logic block is used to: Execute the Type-C FSM relative to the Type-C power mode supported Determine the electrical state for each CC pins relative to the detected thresholds Evaluate the conditions relative to the CC pin states and VBUS voltage value to transition from one state to another in the Type-C FSM Detect and establish a valid source-to-sink connection Determine the attached mode: source, accessory Determine cable orientation to allow external routing of the USB super speed data Manage VBUS power capability: USB default, Type-C medium or Type-C high current mode Handle hardware faults The CC control logic block implements the Type- C FSM’s corresponding to source power role with accessory support. 3.2 BMC This block is the physical link between USB PD protocol layer and CC pin. In TX mode, it converts the data into biphase mark coding (BMC), and drives the CC line to correct voltages. In RX mode, it recovers BMC data from the CC line, and converts to baseband signaling for the protocol layer. 3.3 Protocol layer The protocol layer has the responsibility to manage the messages from/to the physical layer. It automatically manages the protocol receive timeouts, the message counter, the retry counter and the GoodCRC messages. It communicates with the internal policy engine. 3.4 Policy engine The policy engine implements the power negotiation with the connected device according to its source role, it implements all states machine that controls protocol layer forming and scheduling the messages. The policy engine uses the protocol layer to send/receive messages. |
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