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DS21352LN Datasheet(PDF) 8 Page - Dallas Semiconductor

Part # DS21352LN
Description  3.3V DS21352 and 5V DS21552 T1 Single-Chip Transceivers
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Manufacturer  DALLAS [Dallas Semiconductor]
Direct Link  https://www.maximintegrated.com/en.html
Logo DALLAS - Dallas Semiconductor

DS21352LN Datasheet(HTML) 8 Page - Dallas Semiconductor

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DS21352/DS21552
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3.1 FUNCTIONAL DESCRIPTION
The analog AMI/B8ZS waveform off of the T1 line is transformer coupled into the RRING and RTIP
pins of the DS21352/552. The device recovers clock and data from the analog signal and passes it
through the jitter attenuation mux to the receive side framer where the digital serial stream is analyzed to
locate the framing/multi-frame pattern. The DS21352/552 contains an active filter that reconstructs the
analog received signal for the nonlinear losses that occur in transmission. The device has a usable receive
sensitivity of 0 dB to –36 dB, which allows the device to operate on cables up to 6000 feet in length. The
receive side framer locates D4 (SLC–96) or ESF multiframe boundaries as well as detects incoming
alarms including, carrier loss, loss of synchronization, blue (AIS) and yellow alarms. If needed, the
receive side elastic store can be enabled in order to absorb the phase and frequency differences between
the recovered T1 data stream and an asynchronous backplane clock which is provided at the RSYSCLK
input. The clock applied at the RSYSCLK input can be either a 2.048 MHz clock or a 1.544 MHz clock.
The RSYSCLK can be a bursty clock with speeds up to 8.192 MHz.
The transmit side of the DS21352/552 is totally independent from the receive side in both the clock
requirements and characteristics. Data off of a backplane can be passed through a transmit side elastic
store if necessary. The transmit formatter will provide the necessary frame/multiframe data overhead for
T1 transmission. Once the data stream has been prepared for transmission, it is sent via the jitter
attenuation mux to the waveshaping and line driver functions. The DS21352/552 will drive the T1 line
from the TTIP and TRING pins via a coupling transformer. The line driver can handle both long haul
(CSU) and short haul (DSX–1) lines.
Reader’s Note: This data sheet assumes a particular nomenclature of the T1 operating environment. In
each 125
ms frame, there are 24 eight–bit channels plus a framing bit. It is assumed that the framing bit is
sent first followed by channel 1. Each channel is made up of eight bits, which are numbered, 1 to 8. Bit
number 1 is the MSB and is transmitted first. Bit number 8 is the LSB and is transmitted last. The term
“locked” is used to refer to two clock signals that are phase or frequency locked or derived from a
common clock (i.e., a 1.544 MHz clock may be locked to a 2.048MHz clock if they share the same 8 kHz
component). Throughout this data sheet, the following abbreviations will be used:
B8ZS
Bipolar with 8 Zero Substitution
BOC
Bit Oriented Code
CRC
Cyclical Redundancy Check
D4
Superframe (12 frames per multiframe) Multiframe Structure
ESF
Extended Superframe (24 frames per multiframe) Multiframe Structure
FDL
Facility Data Link
FPS
Framing Pattern Sequence in ESF
Fs
Signaling Framing Pattern in D4
Ft
Terminal Framing Pattern in D4
HDLC
High Level Data Link Control
MF
Multiframe
SLC–96
Subscriber Loop Carrier – 96 Channels (SLC–96 is an AT&T registered trademark)


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