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TNETE2004PGJ датащи(PDF) 28 Page - Texas Instruments

номер детали TNETE2004PGJ
подробное описание детали  MDIO-MANAGED QuadPHY FOUR 10BASE-T PHYSICAL-LAYER INTERFACES
PDF  47 Pages
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домашняя страница  http://www.ti.com
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TNETE2004PGJ датащи(HTML) 28 Page - Texas Instruments

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TNETE2004
MDIO-MANAGED QuadPHY
FOUR 10BASE-T PHYSICAL-LAYER INTERFACES
SPWS023D – OCTOBER 1996 – REVISED OCTOBER 1997
28
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
timing characteristics
reset and power up
At initial power up, the TNETE2004 performs an internal reset. No external reset circuitry is required. However,
operation of the TNETE2004 is not specified for 50 ms after power up.
During operation, a full reset of the device can be performed by taking RESET low for a duration of not less than
50
ms. Operation of the device is not ensured for a duration of 5 ms after reset.
receive-data timing
The TNETE2004 buffers have received data in an elastic first-in, first-out (FIFO) buffer so that it can be
synchronous to the TNETE2004 10-MHz clock. At the start of packet reception on the RCVP/RCVN pair, no
more than five bits can be received and not be forwarded to RXD.
The selected compatibility mode (see Table 2) of the PHY affects on which clock edge (rising or falling) the
received data is valid. Figure 18 through Figure 21 show the receive timing for compatibility modes of operation,
and the respective receive-data timing tables show the setup and hold timings. The only differences between
modes are the polarity changes in RXCLK, CRS, and RXD during idle periods.
mode 1 receive-data timing
MIN
TYP
MAX
UNIT
tRDLAT
Receive-data latency
500
ns
tPD
Receive data
40
60
ns
tCRSHO
Time from receiver idle to carrier sense off
200
ns
RCVP/
RCVN
RXCLK
(see Note A)
CRS
tRDLAT
tCRSHO
tPD
RXD
(see Note B)
NOTES: A. RXCLK is continuous.
B. During a collision, the data output on RXD is not valid received data (or looped-back transmit data) since the digital PLL is acquiring
lock to a different source of incoming data.
Figure 18. Mode 1 Receive Timing



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