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PDF GS9028 Data sheet ( Hoja de datos )

Número de pieza GS9028
Descripción Cable Driver with Two Adjustable Outputs
Fabricantes ETC 
Logotipo ETC Logotipo



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No Preview Available ! GS9028 Hoja de datos, Descripción, Manual

GENLINX II GS9028 Cable Driver
with Two Adjustable Outputs
FEATURES
• SMPTE 259M compliant
• two complementary outputs, adjustable from 50 to
1000mVp-p into 75loads
• operational from DC to 622Mb/s
• nominal 470ps rise and fall times
• < ±7% output amplitude control
• 45% system power reduction over the GS9008
• no external pulldown resistors required
• input hysteresis
• operational down to 80mV input amplitude
• operates from a single +5 or -5 volt supply
• 8 pin SOIC
APPLICATIONS
4ƒsc, 4:2:2, and 4:4:4:4 serial digital video interfaces from
143Mb/s to 540Mb/s; general purpose high speed cable
driver applications.
DESCRIPTION
DATA SHEET
The GS9028 is a second generation bipolar integrated
circuit designed to drive two 75co-axial cables.
The GS9028 features two complementary outputs whose
amplitude is controlled within ± 7%. The output signal levels
are also adjustable from as low as 50mV to as high as
1000mV with little change in other performance parameters.
The output amplitude of the output stage is varied by
adjusting the RSET resistor value.
The GS9028 consumes 45% less system power than the
GS9008 and does not require external pulldown resistors
resulting in a smaller PCB footprint. Operational with input
amplitudes as low as 80mV, the GS9028 is a robust serial
interface device.
The GS9028 is packaged in an 8 pin SOIC and operates
from a single +5 or -5 volt supply.
ORDERING INFORMATION
PART NUMBER
PACKAGE
GS9028-CKA
8 pin SOIC
GS9028-CTA
8 pin SOIC Tape
TEMPERATURE
0°C to 70°C
0°C to 70°C
BANDGAP REFERENCE AND BIASING CIRCUIT
RSET
SDI INPUT
DIFFERENTIAL
PAIR WITH
SDI HYSTERESIS
OUTPUT STAGE
& RISE/FALL TIME
CONTROL CIRCUIT
SDO
SDO
BLOCK DIAGRAM
Revision Date: April 2000
Document No. 521 - 68 - 04
GENNUM CORPORATION P.O. Box 489, Stn. A, Burlington, Ontario, Canada L7R 3Y3
Tel. +1 (905) 632-2996 Fax. +1 (905) 632-5946 E-mail: [email protected]
www.gennum.com

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GS9028 pdf
DETAILED DESCRIPTION
INPUT INTERFACING
SDI/SDI are high impedance differential inputs. Two
conditions must be observed when interfacing to these
inputs:
1. The input signal amplitude must be between 80mV and
1000mV.
2. The common mode voltage range must be as specified
in the DC Characteristics Table (page 2). For 800mV
input amplitude signals, this corresponds to a common
mode voltage range between 2.8 and 4.6 volts.
Figures 6 and 7 illustrate two methods of interfacing the
GS9028 to the Gennum GS9024 (Cable Equalizer), GS9035
(Reclocker) or the GS9025 (Receiver).
Figure 6 illustrates the simplest interface and is
recommended when the trace lengths between the driver
and the GS9028 are less than 0.5in. The pull up resistors
should be placed near the GS9028 to serve as end
terminations.
VCC
10nF
75
+
_
GS9024 or
GS9035 or
GS9025
75
+
_
GS9028
Fig. 6
When trace lengths become longer than 0.5in and data
rates greater than 360Mb/s, electromagnetic reflections
begin to affect signal integrity. To minimize reflections,
controlled impedance traces and source and end
terminations should be used as shown in Figure 7. Although
terminations on both sides reduce the signal swing by a
factor of two, the GS9028 is designed to meet this need
with ultra low input amplitude requirements (as low as
80mV). This low input amplitude requirement also allows the
use of 50transmission lines (which are more robust and
easier to control in multilayer boards) to interconnect the
GS9024/25/35 and the GS9028.
VCC
100nF
10nF
75
+
7575
_
GS9024 or
GS9035 or
GS9025
75
+
_
GS9028
Fig. 7
The GS9028 can also be configured to accept ac coupled
input signals. In this case, the inputs must be dc biased as
illustrated in Figure 8.
VCC
10nF
R1
1µF
1µF
R2
R1
+
_
GS9028
R2
Fig. 8
The recommended values for R1 and R2 are:
R1 = 1.35ZO
R2 = 3.85ZO
where ZO is the transmission line characteristic impedance.
For 75cable, R1 = 100and R2 = 287.
OUTPUT INTERFACING
Figure 9 illustrates the recommended interface for ac
coupled outputs.
VCC
10nF
RT
+
GS9028
_
GS9028
RT
RT = R = ZO
R
L 1µF
L 1µF
R
Fig. 9
5
521 - 68 - 04

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