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XRT86VL38
PRELIMINARY
xr
OCTAL T1/E1/J1 FRAMER/LIU COMBO
REV. P1.0.6
31
RxCHN0_0/
RxSig0
RxCHN1_0/
RxSig1
RxCHN2_0/
RxSig2
RxCHN3_0/
RxSig3
RxCHN4_0/
RxSig4
RxCHN5_0/
RxSig5
RxCHN6_0/
RxSig6
RxCHN7_0/
RxSig7
D8
D14
A22
G26
AD25
AD18
AC13
AB8
A7
B13
B19
H19
AA22
U14
AA10
Y7
O
Receive Time Slot Octet Identifier Output-Bit 0 / Receive Serial
Signaling Input:
The exact function of these pins depends on whether or not the
XRT86VL38 is configured to use the receive fractional/signaling
interface. The two different functions are described below:
If Receive fractional/signaling interface is not used - Receive Time
Slot Octet Identifier Output-Bit 0
If the fractional/signaling interface is disabled, these output signals
(RxCHNn_4 through RxCHNn_0) reflect the five-bit binary value of
the number of Time Slot being received and output to the Terminal
Equipment via the Receive Payload Data Output Interface. The Ter-
minal Equipment can use RxCHCLK to sample these five output pins
in order to identify the time slot being processed. This pin indicates
the Least Significant Bit (LSB) of the time slot channel being pro-
cessed.
If Receive fractional/signaling interface is used - Receive Serial
Signaling Bus Input
If the fractional/signaling interface is enabled, these pins can be used
to output robbed-bit signaling data within an inbound DS1 frame or to
output Channel Associated Signaling (CAS) bits within an inbound
E1 frame, as described below.
T1 Mode:
In T1 mode, signaling data (A,B,C,D) of each channel will be output
on bit 4,5,6,7 of each time slot on the RxSIG pin if 16-code signaling
is used. If 4-code signaling is selected, signaling data (A,B) of each
channel will be output on bit 4, 5 of each time slot on the RxSIG pin.
If 2-code signaling is selected, signaling data (A) of each channel will
be output on bit 4 of each time slot on the RxSIG pin.
E1 Mode:
In E1 mode, the signaling data format output on the RxSIGn pins will
be different depending on the RxSIGDL bits setting (from register
0xn10C). If RxSIGDL = 001 or 011, signaling data format output on
the RxSIGn pins will be just like T1 mode. Signaling data (A,B,C,D)
of each channel will be output on bit 4,5,6,7 of each time slot on the
RxSIG pin if 16-code signaling is used. If 4-code signaling is
selected, signaling data (A,B) of each channel will be output on bit 4,
5 of each time slot on the RxSIG pin. If 2-code signaling is selected,
signaling data (A) of each channel will be output on bit 4 of each time
slot on the RxSIG pin.
If RxSIGDL = 010, signaling data (A,B,C,D) of channel 1 and channel
17 will be output on the RxSIGn pin during time slot 16 of frame 1,
signaling data (A,B,C,D) of channel 2 and channel 18 will be output
on the RxSIGn pin during time slot 16 of frame 2...etc. The CAS mul-
tiframe Alignments bits (0000 bits) and the extra bits/alarm bit (xyxx)
will be output on the RxSIGn pin during time slot 16 of frame 0.
N
OTE
: Receive Fractional/signaling interface can be enabled by
programming to bit 4 - RxFr1544/RxFr2048 bit from register
0xn122 to ‘1’.
RECEIVE SERIAL DATA OUTPUT
S
IGNAL
N
AME
420 P
KG
B
ALL
#
484 P
KG
B
ALL
#
T
YPE
D
ESCRIPTION