IDT82V2041EPP IDT, Integrated Device Technology Inc, IDT82V2041EPP Datasheet - Page 28

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IDT82V2041EPP

Manufacturer Part Number
IDT82V2041EPP
Description
IC LIU T1/J1/E1 1CH 44-TQFP
Manufacturer
IDT, Integrated Device Technology Inc
Type
Line Interface Units (LIUs)r
Datasheet

Specifications of IDT82V2041EPP

Protocol
E1
Voltage - Supply
3.13 V ~ 3.47 V
Mounting Type
Surface Mount
Package / Case
44-TQFP, 44-VQFP
Number Of Transceivers
1
Screening Level
Industrial
Mounting
Surface Mount
Package Type
TQFP
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Drivers/receivers
-
Lead Free Status / RoHS Status
Not Compliant, Contains lead / RoHS non-compliant
Other names
82V2041EPP

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3.7
Activate/Deactivate Loopback Code) will be generated and detected by
IDT82V2041E. TCLK is used as the reference clock by default. MCLK can
also be used as the reference clock by setting the PATT_CLK bit (MAINT0,
0DH) to ‘1’.
(MAINT0, 0DH) are set to ‘00’, the transmit path will operate in normal mode.
in normal mode by setting PATT[1:0] pins to ‘00’. Refer to
trol Pin Summary
3.7.1
stream when the PATT[1:0] bits (MAINT0, 0DH) are set to ‘01’. The transmit
data stream is output from TTIP/TRING. In this case, either TCLK or MCLK
can be used as the transmit clock, as selected by the PATT_CLK bit
(MAINT0, 0DH).
stream in transmit direction by setting PATT[1:0] pins to ‘01’. Refer to
Hardware Control Pin Summary
3.7.2
inserted into the transmit data stream when the PATT[1:0] bits (MAINT0,
0DH) are set to ‘00’.
3.7.3
in the receive direction by IDT82V2041E. The QRSS is 2
applications and the PRBS is 2
restrictions according to AT&T TR62411 and ITU-T O.151.
QRSS pattern will be inserted into the transmit data stream with the MSB
first. The PRBS/QRSS pattern will be transmitted directly or invertedly.
mit direction and inserted into the transmit data stream by setting PATT[1:0]
pins to ‘10’. Refer to
PRBS/QRSS has reached synchronization status, the PRBS_S bit
(STAT0, 17H) will be set to ‘1’, even in the presence of a logic error rate less
than or equal to 10
shown in Table-16.
Table-16 Criteria for Setting/Clearing the PRBS_S Bit
PRBS/QRSS
Detection
PRBS/QRSS
Missing
Functional Description
IDT82V2041E
The internal patterns (All Ones, All Zeros, PRBS/QRSS pattern and
If the PATT_CLK bit (MAINT0, 0DH) is set to ‘0’ and the PATT[1:0] bits
When the chip is configured by hardware, the transmit path will operate
In transmit direction, the All Ones data can be inserted into the data
In hardware control mode, the All Ones data can be inserted into the data
If the PATT_CLK bit (MAINT0, 0DH) is set to ‘1’, the All Zeros will be
A PRBS/QRSS will be generated in the transmit direction and detected
When the PATT[1:0] bits (MAINT0, 0DH) are set to ‘10’, the PRBS/
In hardware control mode, the PRBS data will be generated in the trans-
The PRBS/QRSS in the received data stream will be monitored. If the
TRANSMIT AND DETECT INTERNAL PATTERNS
TRANSMIT ALL ONES
TRANSMIT ALL ZEROS
PRBS/QRSS GENERATION AND DETECTION
for details.
-1
6 or less than 6 bit errors detected in a 64 bits hopping win-
dow.
More than 6 bit errors detected in a 64 bits hopping window.
5 Hardware Control Pin Summary
. The criteria for setting/clearing the PRBS_S bit are
15
-1 for E1 applications, with maximum zero
for details.
for details.
5 Hardware Con-
20
-1 for T1/J1
SINGLE CHANNEL T1/E1/J1 SHORT HAUL LINE INTERFACE UNIT
5
28
0DH).
19H). The PRBS_IES bit (INTES, 16H) can be used to determine whether
the ‘0’ to ‘1’ change of PRBS_S bit will be captured by the PRBS_IS bit or
any changes of PRBS_S bit will be captured by the PRBS_IS bit. When the
PRBS_IS bit is ‘1’, an interrupt will be generated if the PRBS_IM bit (INTM0,
14H) is set to ‘1’.
counter if the ERR_SEL [1:0] bits (MAINT6, 13H) are set to ‘00’. Refer to
3.9 Error Detection/Counting And Insertion
counter.
3.8
ferent loopback configurations: Analog Loopback, Digital Loopback,
Remote Loopback and Inband Loopback.
3.8.1
Analog Loopback mode. In this mode, the transmit signals are looped back
to the Receiver Internal Termination in the receive path then output from
RCLK, RD, RDP/RDN. At the same time, the transmit signals are still output
to TTIP/TRING in transmit direction. The all-ones pattern can be generated
during analog loopback.
3.8.2
Digital Loopback mode. In this mode, the transmit signals are looped back
to the jitter attenuator (if enabled) and decoder in receive path, then output
from RCLK, RD, RDP/RDN. At the same time, the transmit signals are still
output to TTIP/TRING in transmit direction.
sending of the internal patterns (All Ones, All Zeros, PRBS, etc.) which will
overwrite the transmit signals. In this case, either TCLK or MCLK can be
used as the reference clock for internal patterns transmission.
LP[1:0] pins to ‘10’.
3.8.3
Remote Loopback mode. In this mode, the recovered clock and data output
from Clock and Data Recovery on the receive path is looped back to the
jitter attenuator (if enabled) and Waveform Shaper in transmit path.
15
LP[1:0] pins to ‘11’.
shows the process.
PRBS data can be inverted through setting the PRBS_INV bit (MAINT0,
Any change of PRBS_S bit will be captured by PRBS_IS bit (INTS0,
The received PRBS/QRSS logic errors can be counted in a 16-bit
To facilitate testing and diagnosis, the IDT82V2041E provides four dif-
When the ALP bit (MAINT1, 0EH) is set to ‘1’, the chip is configured in
When the DLP bit (MAINT1, 0EH) is set to ‘1’, the chip is configured in
Both Analog Loopback mode and Digital Loopback mode allow the
In hardware control mode, Digital Loopback can be selected by setting
When the RLP bit (MAINT1, 0EH) is set to ‘1’, the chip is configured in
In hardware control mode, Remote Loopback can be selected by setting
LOOPBACK
ANALOG LOOPBACK
DIGITAL LOOPBACK
REMOTE LOOPBACK
Figure-13
shows the process.
Figure-14
for the operation of the error
December 9, 2005
shows the process.
Figure-

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