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GS9068 数据表(PDF) 6 Page - Gennum Corporation

部件名 GS9068
功能描述  SD SDI Cable Driver
PDF  11 Pages
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制造商  GENNUM [Gennum Corporation]
网页  http://www.gennum.com
标志 GENNUM - Gennum Corporation

GS9068 数据表(HTML) 6 Page - Gennum Corporation

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GS9068 SD SDI Cable Driver
Data Sheet
22213 - 4
August 2010
6 of 11
3. Detailed Description
3.1 Serial Digital Input
SDI/SDI are high-impedance differential inputs. Several conditions must be observed
when interfacing to these inputs:
1. The differential input signal amplitude must be between 300 and 2000mVpp.
2. For DC-coupling to the device, the common mode voltage must be between
1.6+ΔVSDI(DIFF) and VCC-ΔVSDI(DIFF).
3. For input trace lengths longer than approximately 1cm, the inputs should be
terminated as shown in the Typical Application Circuit.
The GS9068 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.
3.2 Serial Digital Output
The GS9068 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 259M standard requires that the output of a cable driver have a source
impedance of 75Ω and a return loss of at least 15dB between 5MHz and 540MHz. In order
for an SDI output circuit using the GS9068 to meet this specification, the output circuit
shown in the Typical Application Circuit 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 GS9068. This value is chosen
to ensure that pathological signals can be coupled without a significant DC component
occurring (see Section 4. Application Reference Design, for more details).
When measuring return loss at the GS9068 output, it is necessary to take the
measurement for both a logic high and a logic low output condition. This is because the
output protection diodes act as a varactor (voltage controlled capacitor) as shown in
Figure 3-1. Consequently, the output capacitance of the GS9068 is dependent on the
logic state of the output.
Figure 3-1: Static Protection Diodes
SDO
SDO



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