RCVDL56DPFL/SP, RCV56DPFL/SP, and RCV336DPFL/SP Designer’s Guide
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14-1
14. K56flex SETUP AND CODE CHANGES
This section describes the configuration procedure for K56flex and provides a general description of the K56flex handshake.
All RAM accesses are 8 bit (Method 1) unless otherwise noted.
NOTE: This section refers to “client” and “server” modems. The RCV56DPFL/SP MDP is used in a client modem application
and the RCV56DDP digital data pump (DDP) is used in a central site modem (CSM) server modem application. The server
modem is referenced to describe system operation involving client/server interaction.
14.1 K56flex SETUP
In a K56flex connection, the client modem (e.g., RCV56DPFL/SP) will receive in K56flex PCM mode and will transmit a V.34
modulated signal. The server modem (e.g., RCV56DDP) will do exactly the opposite. When a successful K56flex connection
is established, the CONF register indicates the receiver configuration and speed (Table 14-1) and the SPEED bits indicate
the transmitter configuration and speed (Table 14-2). The client modem’s CONF value will change from AAh (V.8) to 9Xh if a
K56flex handshake has been negotiated. The CONF value may change to a different 9Xh value when the connection is
complete (RLSD = 1) depending on rate masks and ARA decisions. The server modem will contain a CXh value in CONF to
indicate the V.34 receive speed.
In a K56flex connection, the state of the ORG bit simply determines which modem will send answer tone and which modem
will detect it. After a V.8 procedure, similar to the standard V.8 used with V.34, the server modem will always be in an
"answer" handshake mode, sending its half-duplex TRN first and the client modem will be in an "originate" handshake mode,
sending its half-duplex TRN second. The same handshake sequence will occur regardless of who originated the call, i.e., the
ORG bit does not influence the handshake sequence which takes place after V.8. The server modem will typically always
answer calls while the client modem will usually originate them. In the event a server modem must use a call back feature,
the ORG bit will have to be set on the server modem in order to detect answer tone. In this type of situation, the ORG bit will
automatically change to 0 on the server modem and to 1 on the client modem after V.8.
14.1.1 Client Modem (Analog Modem) Configuration Procedure
1. Set CONF = AAh to select K56flex configuration.
2. Write the desired K56flex receive speed in address 409h by writing 9Xh, where X indicates the desired receive data
rate. X is in increments of 2000 bps beginning with 32,000 when X = 1. If the ARA feature (EARC = 1) or the rate masks
are used, the value in 409h may be left at default. See Table 14-1.
3. Set bit 406h:0 to enable the K56flex receiver.
4. Set ORG bit = 1 if originating, else reset ORG = 0.
5. Set bit 13Fh:6 to enable asymmetric data rates.
6. Set EARC and/or AUTO if desired.
7. Set
NEWC.
8. Set DTR to initiate handshake.
14.1.2 Server Modem (Digital Modem) Configuration Procedure
1. Set CONF = AAh to select K56flex configuration.
2. Write the desired V.34 receive speed in RAM address 309h by writing CXh, where X indicates the desired receive data
rate. X is in increments of 2400 bps. If the ARA feature (EARC = 1) or the rate masks are used, the value in 309h may
be left at default. See Table 14-1.
3. Set bit 406h:0 to enable the K56flex transmitter.
4. Set ORG bit = 1 if originating, else reset ORG = 0.
5. Set bit 13Fh:6 to enable asymmetric data rates.
6. Set EARC and/or AUTO if desired.
7. Set
NEWC.
8. Set DTR to initiate handshake.
Содержание RC336DPFL
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