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XTNETA1622DW Datasheet(PDF) 65 Page - Texas Instruments

No. de pieza XTNETA1622DW
Descripción Electrónicos  ATM SEGMENTATION AND REASSEMBLY DEVICE WITH INTEGRATED 64-BIT PCI-HOST INTERFACE
PDF  68 Pages
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Fabricante Electrónico  TI1 [Texas Instruments]
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XTNETA1622DW Datasheet(HTML) 65 Page - Texas Instruments

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TNETA1570
ATM SEGMENTATION AND REASSEMBLY DEVICE
WITH INTEGRATED 64BIT PCIHOST INTERFACE
SDNS033B − JUNE 1995 − REVISED MAY 1996
65
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
POST OFFICE BOX 1443
HOUSTON, TEXAS 77251−1443
PRINCIPLES OF OPERATION
TX FIFO maximum occupancy value (bits 11 −8), and RX FIFO maximum occupancy value (bits 4 −0)
These registers contain the maximum occupancy value for the TX and RX FIFOs experienced during operation.
An internal register keeps the current occupancy value of the FIFOs. If the value in the internal register is greater
than the value in the register for more than one consecutive cycle, the value is written into the register. The
values in the registers are used to measure the usage of the internal FIFOs to optimize a future revision of the
TNETA1570. The reset value is zero.
scheduler-table-size register
Reserved (bits 31 − 16)
Reserved (bits 15 − 12)
Scheduler-Table-Size Register (bits 11 − 0)
This register contains the size (in 32-bit words) of the scheduler table. It is initialized by the host. Maximum value
is 3100(dec), Minimum value is one. The reset value is zero. This register is programmed before the EN_TX
is set.
software reset
Reserved (bits 31 − 0)
A write to this address location forces the TNETA1570 into reset. The address is decoded and an internal reset
pulse with sufficient length is generated. The duration of reset is max ten clock cycles.
completion-ring address registers
TX completion ring WOI address (bits 31 − 0)
TX completion ring WI address (bits 31 − 0)
RX completion ring WOI address (bits 31 − 0)
RX completion ring WI address (bits 31 − 0)
The completion-ring address registers hold the addresses to the completion rings in host memory. The value
is set by the host. The address is aligned to the size of the ring to ensure that the first entry is always on an even
2^n address boundary.
counters
HEC-error counter
This 16-bit counter counts the number of cells dropped due to HEC errors. This rollover counter causes a bit
in the status register to be set on rollover. This counter is read only and is cleared when a hardware or software
reset occurs. This counter does not clear on a read by the host.
unknown-protocols counter
This 32-bit counter counts the number of cells whose header is posted in the RX unknown register. This rollover
counter causes a bit in the status register to be set on rollover. This counter is read only and is cleared when
a hardware or software reset occurs. This counter does not clear on a read by the host.
AAL5 CPCS PDU-discard counter
This 16-bit counter counts the number of receive-AAL5 packets that were discarded because no receive free
buffers are available. This rollover counter causes a bit in the status register to be set on rollover. This counter
is read only and is cleared when a hardware or software reset occurs. This counter does not clear on a read
by the host.



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