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DS92UT16 Datasheet, PDF (8/111 Pages) Texas Instruments – DS92UT16TUF UTOPIA-LVDS Bridge for 1.6 Gbps Bi-directional Data Transfers
DS92UT16
OBSOLETE
SNOS992E – JANUARY 2002 – REVISED APRIL 2013
www.ti.com
The PDU fields are configured as shown in Table 1. The total PDU cell length must be in the range of 52 to 64
bytes. In addition, variable length fields must be programmed to an even number of bytes because the
DS92UT16 operates with an internal 16 bit data path. The total number of bytes defined for User Prepend plus
UDF1/2 and User Append must not exceed 12 bytes to maintain the maximum PDU cell length of 64 bytes.
Table 1. PDU Cell Format Options
Field
User Prepend
Cell Header
UDF1/2
Payload
User Append
Fixed/
Variable
Variable
Fixed
Variable
(On/Off)
Fixed
Variable
Bytes
0, 2, 4, 6, 8, 10, 12
4
2, 0 in 16 bit mode
1, 0 in 8 bit mode
48
0, 2, 4, 6, 8, 10, 12
Although the UDF1/2 bytes will always be present, the DS92UT16 can be programmed to either transport these
bytes or ignore them. If they are to be ignored, then the TCS strips them out in the down-bridge direction and the
UTOPIA up-bridge section inserts a HEC byte in UDF 1. Otherwise, they can be transported transparently the
same as any other PDU byte.
Figure 6. PDU and Link Transport Container Format
Each link TC has an MPHY address byte, two Flow Control (F) Channel bytes, and a HEC byte in addition to the
PDU cell. The two F1 and F2 bytes per TC constitute the F Channel, which is used for flow control and OAM
purposes over the link. The TCS uses the HEC byte for container delineation, frame delineation, and cell header
error detection.
MPHY Tagging and Routing
In the down-bridge direction, the DS92UT16 adds an additional byte (MPHY byte) to each PDU. It contains the
MPHY port address associated with that PDU, as shown in Table 2.
Bit
Function
Table 2. MPHY Byte
7
6
5
4
3
2
1
0
MPHY Port Address 0–31
Reserved
At the other end of the link, this byte is used to route the incoming PDU from the LVDS interface to the
appropriate MPHY port queue.
8
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