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XRT86VL38
PRELIMINARY
xr
OCTAL T1/E1/J1 FRAMER/LIU COMBO
REV. P1.0.6
143
1-0
RxIMODE
R/W
0
(Continued):
In the high speed multiplexed mode, the following signals will be used by the
high speed multiplexed interface:
RxSERCLK is an input clock at 16.384MHz
RxSYNC is an input signal which indicates the multiplexed frame boundary.
The length of RxSYNC depends on the multiplexed mode selected.
RxSER is the high-speed data output
N
OTE
: In high speed mode, receive data is clocked out on the rising edge of
the 16MHz clock edge.
N
OTE
: Channels 4 through 7 are multiplexed into the receive serial output
(RxSER) at channel 4 in the same fashion.
T
ABLE
54: R
ECEIVE
I
NTERFACE
C
ONTROL
R
EGISTER
(RICR) - E1 M
ODE
R
EGISTER
32 - E1 M
ODE
R
ECEIVE
I
NTERFACE
C
ONTROL
R
EGISTER
(RICR) 0
XN
122
B
IT
F
UNCTION
T
YPE
D
EFAULT
D
ESCRIPTION
-O
PERATION
T
ABLE
56: R
ECEIVE
I
NTERFACE
S
PEED
WHEN
M
ULTIPLEXED
M
ODE
IS
E
NABLED
(T
X
MUXEN = 1)
T
X
IMODE[1:0]
T
RANSMIT
I
NTERFACE
S
PEED
00
Reserved
01
Bit-Multiplexed Mode at 16.384MHz is Enabled:
Receive interface is taking data from the four LIU input
channels 0 through 3 and byte-multiplexing the four-
channel data into one 16.384MHz serial stream and out-
put to channel 0 of the Receive Serial Output (RxSER).
The RxSYNC signal pulses “High” during the framing bit
of each E1 frame.
10
HMVIP High-Speed Multiplexed Mode Enabled:
Receive interface is taking data from the four LIU input
channels 0 through 3 and byte-multiplexing the four-
channel data into one 16.384MHz serial stream and out-
put to channel 0 of the Receive Serial Output (RxSER).
The RxSYNC signal pulses “High” during the last two
bits of the previous E1 frame and the first two bits of the
current E1 frame.
11
H.100 High-Speed Multiplexed Mode Enabled:
Receive interface is taking data from the four LIU input
channels 0 through 3 and byte-multiplexing the four-
channel data into one 16.384MHz serial stream and out-
put to channel 0 of the Receive Serial Output (RxSER).
The RxSYNC signal pulses “High” during the last bit of
the previous E1 frame and the first bit of the current E1
frame.