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AD6677EBZ датащи(PDF) 29 Page - Analog Devices

номер детали AD6677EBZ
подробное описание детали  80 MHz Bandwidth, IF Receiver
PDF  48 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
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AD6677EBZ датащи(HTML) 29 Page - Analog Devices

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Data Sheet
AD6677
Rev. C | Page 29 of 48
Table 14. JESD204B Frame Alignment Monitoring and Correction Replacement Characters
Scrambling
Lane Synchronization
Character to be Replaced
Last Octet in
Multiframe
Replacement Character
Off
On
Last octet in frame repeated from previous frame
No
K28.7
Off
On
Last octet in frame repeated from previous frame
Yes
K28.3
Off
Off
Last octet in frame repeated from previous frame
Not applicable
K28.7
On
On
Last octet in frame equals D28.7
No
K28.7
On
On
Last octet in frame equals D28.3
Yes
K28.3
On
Off
Last octet in frame equals D28.7
Not applicable
K28.7
Frame and Lane Alignment Monitoring and Correction
Frame alignment monitoring and correction is part of the JESD204B
specification. The 11-bit word requires two octets to transmit all
the data. The two octets (MSB and LSB), where F = 2, make up
a frame. During normal operating conditions, frame alignment
is monitored via alignment characters, which are inserted under
certain conditions at the end of a frame. Table 14 summarizes the
conditions for character insertion along with the expected characters
under the various operation modes. If lane synchronization is
enabled, the replacement character value depends on whether
the octet is at the end of a frame or at the end of a multiframe.
Based on the operating mode, the receiver can ensure that it is
still synchronized to the frame boundary by correctly receiving
the replacement characters.
Digital Outputs and Timing
The AD6677 has differential digital outputs that power up by
default. The driver current is derived on chip and sets the output
current at each output equal to a nominal 3 mA. Each output
presents a 100 Ω dynamic internal termination to reduce
unwanted reflections.
Place a 100 Ω differential termination resistor at each receiver
input to result in a nominal 600 mV p-p swing at the receiver
(see Figure 54). Alternatively, single-ended 50 Ω termination
can be used. When single-ended termination is used, the
termination voltage must be DRVDD/2; otherwise, ac coupling
capacitors can be used to terminate to any single-ended voltage.
100Ω
OR
100Ω
DIFFERENTIAL
TRACE PAIR
SERDOUT0+
DRVDD
VRXCM
SERDOUT0–
VCM = Rx VCM
OUTPUT SWING = 600mV p-p
0.1µF
0.1µF
RECEIVER
Figure 54. AC-Coupled Digital Output Termination Example
The AD6677 digital outputs can interface with custom ASICs and
FPGA receivers, providing superior switching performance in
noisy environments.
Single point-to-point network topologies are recommended with
a single differential 100 Ω termination resistor placed as close to the
receiver logic as possible. The common mode of the digital output
automatically biases itself to half the supply of the AD6677 (that
is, the common-mode voltage is 0.9 V for a supply of 1.8 V) if a dc-
coupled connection is used (see Figure 55). For a receiver logic
that is not within the bounds of the DRVDD supply, use an ac-
coupled connection. Simply place a 0.1 μF capacitor on each
output pin and derive a 100 Ω differential termination close to
the receiver side.
100Ω
100Ω
DIFFERENTIAL
TRACE PAIR
DRVDD
VCM = DRVDD/2
OUTPUT SWING = 600mV p-p
RECEIVER
SERDOUT0+
SERDOUT0–
Figure 55. DC-Coupled Digital Output Termination Example
If there is no far-end receiver termination, or if there is poor
differential trace routing, timing errors may result. To avoid
such timing errors, it is recommended that the trace length be
less than 6 inches, and that the differential output traces be
close together and at equal lengths.
Figure 56 shows an example of the digital output (default) data eye
and time interval error (TIE) jitter histogram and bathtub curve for
the AD6677 lane running at 5 Gbps.
Additional SPI options allow the user to further increase the output
driver voltage swing or enable preemphasis to drive longer trace
lengths (see Address 0x15 in Table 17). The power dissipation of
the DRVDD supply increases when this option is used. See the
Memory Map section for more details.
The format of the output data is twos complement by default.
To change the output data format to offset binary, see the
Memory Map section (Address 0x14 in Table 17).



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