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TSB14C01A 数据表(PDF) 11 Page - Texas Instruments |
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TSB14C01A 数据表(HTML) 11 Page - Texas Instruments |
11 / 31 page TSB14C01A, TSB14C01AI, TSB14C01AM 5-V IEEE 1394-1995 BACKPLANE TRANSCEIVER/ARBITER SGLS107A – FEBRUARY 1999 – REVISED NOVEMBER 1999 11 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 PRINCIPLES OF OPERATION The TSB14C01A (phy) is designed to operate with a link such as the Texas Instruments TSB12C01A. These devices use an interface such as described in Annex J of the IEEE 1394-1995 standard. Details of how the TSB12C01A device operates are given in the TSB12C01A data manual (literature number SLLS219). For information on the operation of 1394, see the IEEE 1394-1995 standard. For more specific information on the backplane phy, see the following sections of IEEE 1394-1995 standard: Chapter 5, Backplane physical layer specification; Annex D, Backplane physical layer timing; Annex F, Backplane physical implementation example; Annex G, Backplane isochronous resource manager selection. The following paragraphs describe the operation of the phy-link interface. The TSB14C01A supports 100 Mbit/s data transfers and has two bidirectional data lines (D0 and D1) crossing the interface. In addition there are two bidirectional control lines (CTL0 and CTL1), the SCLK line from the phy to the link, and the link request line (LREQ) from the link to the phy. The TSB14C01A phy has control of all the bidirectional terminals. The link is allowed to drive these terminals only after it has been given permission by the phy. The dedicated LREQ request terminal is used by the link for any activity that it can initiate. There are four basic operations that can occur in the interface: request, status, transmit, and receive. All operations but request are initiated by the phy. The link uses the request operation to read or write an internal phy register or to ask the phy to initiate a transmit action. The phy initiates a receive action whenever a packet is received from the serial bus. When the phy has control of the bus, the CTL0 and CTL1 lines are encoded as shown in Table 4. Table 4. CTL0 and CTL1 Control Lines When the Phy Has Control CTL0 CTL1 Name Description of Activity 0 0 Idle No activity is occurring (this is the default mode). 0 1 Status Status information is being sent from the phy to the link. 1 0 Receive An incoming packet is being sent from the phy to the link. 1 1 Transmit The link has been given control of the bus to send an outgoing packet. When the link has control of the bus (only with phy permission) the CTL0 and CTL1 lines are encoded as shown in Table 5. Table 5. CTL0 and CTL1 Control Lines When the Link Has Control CTL0 CTL1 Name Description of Activity 0 0 Idle The link releases the bus (the transmission has been completed). 0 1 Hold The link is holding the bus while data is being prepared for transmission or sending another packet without arbitrating. 1 0 Transmit An outgoing packet is being sent from the link to the phy. 1 1 Reserved None When the link needs to request the bus or access a register that is located in the TSB14C01A phy, a serial stream of information is sent across the LREQ line. The length of the stream varies depending on whether the transfer is a bus request, a read command, or a write command (see Table 6). Regardless of the type of transfer, a start bit of 1 is required at the beginning of the stream, and a stop bit of 0 is required at the end of the stream. Bit 0 is the MSB, and is transmitted first. The LREQ line is required to idle low (logic level 0). |
类似零件编号 - TSB14C01A |
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类似说明 - TSB14C01A |
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