XRT83SL28ES Exar, XRT83SL28ES Datasheet - Page 28

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XRT83SL28ES

Manufacturer Part Number
XRT83SL28ES
Description
Peripheral Drivers & Components - PCIs 8 CH E1 LIU SH
Manufacturer
Exar
Datasheet

Specifications of XRT83SL28ES

Product Category
Peripheral Drivers & Components - PCIs
Rohs
yes
XRT83SL28
8-CHANNEL E1 SHORT-HAUL LINE INTERFACE UNIT
Telecommunication system design requires signal integrity and reliability. When an E1 primary line card has a
failure, it must be swapped with a backup line card while maintaining connectivity to a backplane without losing
data.
XRT83SL28 LIU. EXAR offers features that are tailored to redundancy applications while reducing the number
of components and providing system designers with solid reference designs.
RLOS and DMO
If an RLOS or DMO condition occurs, the XRT83SL28 reports the alarm to the individual status registers on a
per channel basis. However, for redundancy applications, RLOS and DMO pins can be used to initiate an
automatic switch to the back up card.
Typical Redundancy Schemes
The 1:1 facility protection and 1+1 line protection have one backup card for every primary card. When using
1:1 or 1+1 redundancy, the backup card has its transmitters tri-stated and its receivers in high impedance. This
eliminates the need for external relays and provides one bill of materials for all interface modes of operation.
For 1+1 line protection, the receiver inputs on the backup card have the ability to monitor the line for bit errors
while in high impedance. The transmit and receive sections of the LIU device are described separately.
The transmitters on the backup card should be tri-stated. Select the appropriate impedance for the desired
mode of operation, E1 75Ω or 120Ω. A 0.68uF capacitor is used in series with TTIP for blocking DC bias. See
Figure 21. for a simplified block diagram of the transmit section for a 1:1 and 1+1 redundancy.
F
3.2
3.2.1
3.2.2
IGURE
1:1 One backup card for every primary card (Facility Protection)
1+1 One backup card for every primary card (Line Protection)
·N+1 One backup card for N primary cards
21. S
Line Card Redundancy
System designers can achieve this by implementing common redundancy schemes with the
1:1 and 1+1 Redundancy Without Relays
Transmit Interface with 1:1 and 1+1 Redundancy
IMPLIFIED
B
LOCK
Backplane Interface
D
IAGRAM OF THE
Internal Impedance
Backup Card
Primary Card
Internal Impedance
Tx
Tx
T
RANSMIT
0.68uF
0.68uF
26
XRT83SL28
XRT83SL28
I
NTERFACE FOR
1:2
1:2
E1 Line
1:1
AND
1+1 R
EDUNDANCY
xr
REV. 1.0.0

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