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HD3SS214I Datasheet(PDF) 8 Page - Texas Instruments

Part # HD3SS214I
Description  8.1 Gbps DisplayPort 1.3 2:1/1:2 Differential Switch
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
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HD3SS214I Datasheet(HTML) 8 Page - Texas Instruments

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HD3SS214
SLAS907A – DECEMBER 2015 – REVISED JULY 2016
www.ti.com
Product Folder Links: HD3SS214
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Copyright © 2015–2016, Texas Instruments Incorporated
7 Detailed Description
7.1 Overview
The HD3SS214 is an analog, differential passive switch that can work for any high speed interface applications,
as long as it is biased at a common mode voltage range of 0 V to 2 V and has differential signaling with
differential amplitude up to 1800 mVpp.
NOTE
HD3SS214 MUX does not provide common mode biasing for the channel. Therefore, it is
required that the device is biased from either side for all active channels.
In high-speed applications and data paths, signal integrity is an important concern. The switch offers excellent
dynamic performance such as high isolation, crosstalk immunity, and minimal bit-bit skew. These characteristics
allow the device to function seamlessly in the system without compromising signal integrity. The 2:1/1:2, mux/de-
mux device operates with ports A or B switched to port C, or port C switched to either port A or B. This flexibility
allows an application to select between one of two Sources on ports A and B and send the output to the sink on
port C. Similarly, a Source on port C can select between one of two Sink devices on ports A and B to send the
data.
The HPD and data signals are both switched through the Dx_SEL pin. AUX and DDC are controlled with
AUX_SEL and Dx_SEL.
With an OE control pin, the HD3SS214 is operational, with low active current, when this pin is high. When OE is
pulled low, the device goes into standby mode and draws very little current in order to save power consumption
in the application.
HD3SS214 high speed MUX channels have independent adaptive common mode tracking allowing four data
paths to have different common mode voltage, simplifying system implementation and avoid inter-op issues.


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