HBLXT9785HC.A4 Intel, HBLXT9785HC.A4 Datasheet - Page 166
HBLXT9785HC.A4
Manufacturer Part Number
HBLXT9785HC.A4
Description
Manufacturer
Intel
Datasheet
1.HBLXT9785HC.A4.pdf
(234 pages)
Specifications of HBLXT9785HC.A4
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LXT9785 and LXT9785E Advanced 8-Port 10/100 Mbps PHY Transceivers
5.2.4.1
5.2.5
Table 50. Magnetics Requirements
Magnetic Requirements
The LXT9785/LXT9785E requires a 1:1 ratio for both the receive transformers and the transmit
transformers. The transmit isolation voltage should be rated at 1.5 kV to protect the circuitry from
static voltages across the connectors and cables. The LXT9785/LXT9785E is a current driven
transceiver that requires an external voltage (center tap) to drive the transmit signal. In order to
support the Auto-MDIX functionality of the LXT9785/LXT9785E, the magnetic must provide a
center tap for both the transmit and receive magnetic winding, with both connected to VCCT. See
the LXT9785/LXT9785E Design and Layout Guide (249509-001) for magnetic testing with the
LXT9785/LXT9785E. Before committing to a specific component, designers should contact the
manufacturer for current product specifications, and validate the magnetics for the specific
application.
The Fiber Interface
The fiber interface consists of an LVPECL transmit and receive pair to an external fiber
transceiver. Both 3.3 V fiber transceivers and 5 V fiber transceivers can be used with the LXT9785/
LXT9785E. See the 100BASE-FX Fiber Optic Transceivers-Connecting a PECL/LVPECL
Interface Application Note (document number 250781) for detailed information on fiber interface
designs and recommendations for Intel PHYs.
The following should occur in 3.3 V fiber transceiver applications as shown in
Rx turns ratio
Tx turns ratio
Insertion loss
Primary inductance
Transformer isolation
Differential to common mode
rejection
Return Loss
•
•
•
•
•
•
•
Place the magnetics as close as possible to the LXT9785/LXT9785E.
Keep transmit pair traces as short as possible; both traces should have the same length.
Avoid vias and layer changes as much as possible.
Keep the transmit and receive pairs apart to avoid cross-talk.
Route the transmit pair adjacent to a ground plane. The optimum arrangement is to place the
transmit traces two to three layers from the ground plane, with no intervening signals.
Improve EMI performance by filtering the TPO center tap. A single ferrite bead rated at 400
mA may be used to supply center tap current to all ports.
The transmit pair should be AC-coupled with 2.5 V supplies and re-biased to 3.3 V LVPECL
levels
Parameter
Table 50
provides the magnetics requirements.
Min
350
-16
-10
0.0
40
35
–
–
–
Nom
1:1
1:1
0.6
–
2
–
–
–
–
Max
1.1
–
–
–
–
–
–
–
–
Units
μH
dB
kV
dB
dB
dB
dB
–
–
Revision Date: 30-May-2006
Document Number: 249241
Figure
Test Condition
60 to 100 MHz
Revision Number: 010
.1 to 60 MHz
30 MHz
80 MHz
36:
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