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USB2513 数据表(PDF) 43 Page - Microchip Technology |
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USB2513 数据表(HTML) 43 Page - Microchip Technology |
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43 / 63 page ![]() USB 2.0 Hi-Speed Hub Controller Datasheet SMSC USB251xB/xBi 43 Revision 2.2 (02-17-12) DATASHEET 5.3.2.1 Block Write/Read The block write begins with a slave address and a write condition. After the command code, the host issues a byte count which describes how many more bytes will follow in the message. If a slave had 20 bytes to send, the first byte would be the number 20 (14h), followed by the 20 bytes of data. The byte count may not be zero. A block write or read allows a transfer maximum of 32 data bytes. Note: For the following SMBus tables: Figure 5.1 Block Write 5.3.2.2 Block Read A block read differs from a block write in that the repeated start condition exists to satisfy the I2C specification’s requirement for a change in the transfer direction. Figure 5.2 Block Read 5.3.2.3 Invalid Protocol Response Behavior Note that any attempt to update registers with an invalid protocol will not be updated. The only valid protocols are write block and read block (described above), where the hub only responds to the 7-bit hardware selected slave address (0101100b). Also, the only valid registers for the hub are outlined in Section 5.1 on page 27. Attempts to access any other registers will return no response. 5.3.3 Slave Device Timeout Devices in a transfer can abort the transfer in progress and release the bus when any single clock low interval exceeds 25 ms (TTIMEOUT, MIN). The master must detect this condition and generate a stop condition within or after the transfer of the interrupted data byte. Slave devices must reset their communication and be able to receive a new START condition no later than 35 ms (TTIMEOUT, MAX). Note: Some simple devices do not contain a clock low drive circuit; this simple kind of device typically resets its communications port after a start or stop condition. The slave device timeout must be implemented. Denotes Master-to-Slave Denotes Slave-to-Master S Slave Address Register Address Wr A 171 18 A 1 ... 1 81 Byte Count = N A Data byte 1 A Data byte 2 A 81 1 1 88 Data byte N A P 1 S S Slave Address Register Address Wr 17 1 1 8 A 1 Slave Address Rd A 71 1 ... A 81 1 1 88 1 81 P A A A A Byte Count = N Data byte 2 Data byte 1 Data byte N |
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