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VSC8166 Datasheet(PDF) 3 Page - Vitesse Semiconductor Corporation

Part # VSC8166
Description  2.488 Gbit/sec 1:16 SONET/SDH Demux with Clock Recovery
PDF  16 Pages
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Manufacturer  VITESSE [Vitesse Semiconductor Corporation]
Direct Link  http://www.vitesse.com
Logo VITESSE - Vitesse Semiconductor Corporation

VSC8166 Datasheet(HTML) 3 Page - Vitesse Semiconductor Corporation

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© VITESSE SEMICONDUCTOR CORPORATION
Page 3
11/9/99
741 Calle Plano, Camarillo, CA 93012 • 805/388-3700 • FAX: 805/987-5896
VITESSE
SEMICONDUCTOR CORPORATION
Preliminary Datasheet
VSC8166
2.488 Gbit/sec
1:16 SONET/SDH Demux with Clock Recovery
G52252-0, Rev. 3.0
Low Speed Interface
The demultiplexed serial stream is made available by a 16 bit differential LVPECL interface D(15:0)+ with
accompanying differential LVPECL divide by 16 clock CLK16O± and divide by 32 clock CLK32O±. The low
speed LVPECL output drivers are designed to drive a 50
Ω transmission line. The transmission line can be DC
terminated with a split end termination scheme, see Figure 2, or DC terminated by 50
Ω to V
CC-2V on each line,
see Figure 3. At any time, the equivalent split-end termination technique can be substituted for the traditional
50
Ω to V
CC-2V on each line. AC coupling can be achieved by a number of methods. Figure 4 illustrates an AC
coupling method for the occasion when the downstream device provides the bias point for AC coupling. If the
downstream device were to have internal termination, the line to line 100
Ω resistor may not be necessary. The
divide by 32 output can be used to provide a reference clock for the clock multiplication unit on the VSC8163.
Figure 2: Split-end DC Termination of Low Speed LVPECL CLK16O, CLK32O, D[15:0] Outputs
Figure 3: Traditional DC Termination of Low Speed LVPECL CLK16O, CLK32O, D[15:0] Outputs
VSC8166
Zo
Zo
R2
R2
R1
R1
VEE
VCC
downstream
Split-end equivalent termination is Zo to VTerm
R1 = 125
Ω R2 = 83Ω, Zo=50Ω, V
Term= VCC-2V
VCCR2 + VEER1
R1+R2
= VTerm
R1||R2 = Zo
VCC-2V
R1 =50
VSC8166
Zo
VCC-2V
R1 =50
downstream



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