6-20
Programmable Pre-Emphasis
SV51007
2014.01.10
V OD swing reduces power consumption. You can statically adjust the V OD of the differential signal by
changing the V OD settings in the Quartus II software Assignment Editor.
Figure 6-17: Differential V OD
This figure shows the V OD of the differential LVDS output.
Single-Ended Waveform
Positive Channel (p)
V OD
Negative Channel (n)
V CM
Ground
Differential Waveform
V OD (diff peak - peak) = 2 x V OD (single-ended)
V OD
p-n=0V
V OD
Table 6-10: Quartus II Software Assignment Editor — Programmable V OD
This table lists the assignment name for programmable V OD and its possible values in the Quartus II software
Assignment Editor.
To
Assignment name
Allowed values
Field
Assignment (Default setting in bold)
tx_out
Programmable Differential Output Voltage (V OD )
0 (low), 1 (medium low), 2 (medium high), 3 (high)
Related Information
Programmable Pre-Emphasis
The V OD setting and the output impedance of the driver set the output current limit of a high-speed
transmission signal. At a high frequency, the slew rate may not be fast enough to reach the full V OD level
before the next edge, producing pattern-dependent jitter. With pre-emphasis, the output current is boosted
momentarily during switching to increase the output slew rate.
Pre-emphasis increases the amplitude of the high-frequency component of the output signal, and thus helps
to compensate for the frequency-dependent attenuation along the transmission line. The overshoot introduced
by the extra current happens only during a change of state switching to increase the output slew rate and
does not ring, unlike the overshoot caused by signal reflection. The amount of pre-emphasis required depends
on the attenuation of the high-frequency component along the transmission line.
Altera Corporation
High-Speed Differential I/O Interfaces and DPA in Stratix V Devices
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