Chapter 2: Cyclone IV Reset Control and Power Down
2–13
Transceiver Reset Sequences
September 2014
Altera Corporation
Receiver and Transmitter Channel—Receiver CDR in Automatic Lock Mode
This configuration contains both a transmitter and a receiver channel. If you create a
Receiver and Transmitter
instance in the ALTGX MegaWizard Plug-In Manager with
the receiver CDR in automatic lock mode, use the reset sequence shown in
.
As shown in
, perform the following reset procedure for the receiver in
CDR automatic lock mode:
1. After power up, assert
pll_areset
for a minimum period of 1
s (the time
between markers 1 and 2).
2. Keep the
tx_digitalreset
,
rx_analogreset
, and
rx_digitalreset
signals
asserted during this time period. After you deassert the
pll_areset
signal, the
multipurpose PLL starts locking to the transmitter input reference clock.
3. After the multipurpose PLL locks, as indicated by the
pll_locked
signal going
high (marker 3), deassert
tx_digitalreset
. For receiver operation, after
deassertion of busy signal, wait for two parallel clock cycles to deassert the
rx_analogreset
signal.
4. Wait for the
rx_freqlocked
signal to go high (marker 7).
5. After the
rx_freqlocked
signal goes high, wait for at least t
LTD_Auto
, then deassert
the
rx_digitalreset
signal (marker 8). At this point, the transmitter and receiver
are ready for data traffic.
Figure 2–8. Sample Reset Sequence of Receiver and Transmitter Channel—Receiver CDR in Automatic Lock Mode
Notes to
(1) For t
LTD_Auto
duration, refer to the
(2) The
busy
signal is asserted and deasserted only during initial power up when offset cancellation occurs. In subsequent reset sequences, the
busy
signal is asserted and deasserted only if there is a read or write operation to the ALTGX_RECONFIG megafunction.
Reset Signals
Output Status Signals
1
2
3
4
6
7
8
5
Two parallel clock cycles
1
µ
s
pll_areset
tx_digitalreset
rx_analogreset
rx_digitalreset
busy
(2)
pll_locked
rx_freqlocked
t
LTD_Auto
(1)
Содержание Cyclone IV
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