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GS1528A(2006) データシートの表示(PDF) - Gennum -> Semtech

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GS1528A
(Rev.:2006)
Gennum
Gennum -> Semtech Gennum
GS1528A Datasheet PDF : 16 Pages
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5. Detailed Description
GS1528A / GS9068A Data Sheet
5.1 Input Interfacing
SDI/SDI are high impedance differential inputs. The equivalent input circuit is shown
in Figure 4-1.
Several conditions must be observed when interfacing to these inputs:
• The differential input signal amplitude must be between 300 and 2000mVpp.
• The common mode voltage range must be as specified in the DC Electrical
Characteristics table.
• For input trace lengths longer than approximately 1cm, the inputs should be
terminated as shown in the Typical Application Circuit.
The GS1528A/9068A inputs are self-biased, allowing for simple AC coupling to the
device. For serial digital video, a minimum capacitor value of 4.7µF should be used
to allow coupling of pathological test signals. A tantalum capacitor is
recommended.
SD/HD Input Pin (GS1528A only):
The GS1528A SDO rise and fall times can be set to comply with both SMPTE
259M/344M and SMPTE 292M. For all SMPTE 259M standards, or any data rate
that requires longer rise and fall time characteristics, the SD/HD pin must be set
HIGH by the application layer. For SMPTE 292M standards and signals which
require faster rise and fall times, this pin should be set LOW.
5.2 Output Interfacing
The GS1528A/9068A outputs are current mode, and will drive 800mV into a 75Ω
load. These outputs are protected from accidental static damage with internal static
protection diodes.
The SMPTE 292M, SMPTE 344M and SMPTE 259M standards require that the
output of a cable driver have a source impedance of 75Ω and a return loss of at
least 15dB between 5MHz and 1.485GHz.
In order for an SDI output circuit using the GS1528A/9068A to meet this
specification, the output application circuit shown in Section 6.2 is recommended.
The value of LCOMP will vary depending on the PCB layout, with a typical value of
5.6nH. A 4.7µF capacitor is used for AC coupling the output of the device. This
value is chosen to ensure that pathological signals can be coupled without a
significant DC component occurring. Please see Section 6.0 for more details.
30953 - 4 January 2006
9 of 16

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