IDT82P2816BB IDT, Integrated Device Technology Inc, IDT82P2816BB Datasheet - Page 36

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IDT82P2816BB

Manufacturer Part Number
IDT82P2816BB
Description
IC LIU T1/J1/E1 16+1CH 416-PBGA
Manufacturer
IDT, Integrated Device Technology Inc
Datasheet

Specifications of IDT82P2816BB

Function
Line Interface Unit (LIU)
Interface
E1, J1, T1
Number Of Circuits
1
Voltage - Supply
1.8V, 3.3V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
*
Includes
Defect and Alarm Detection, Driver Over-Current Detection and Protection, LLOS Detection, PRBSARB / IB Detection and Generation
Number Of Transceivers
1
Screening Level
Industrial
Mounting
Surface Mount
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Current - Supply
-
Power (watts)
-
Lead Free Status / RoHS Status
Not Compliant, Contains lead / RoHS non-compliant
Other names
82P2816BB

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3.3.7
sponding transmitter.
on the transmit line interface (including TTIPn and TRINGn) will be in
High-Z state. The input on the transmit system interface (including TDn,
TDPn, TDNn and TCLK) is ignored. The output on the transmit system
interface (i.e. TMFn) will be in High-Z state.
transmitter to achieve steady state, i.e., return to the previous configura-
tion and performance.
Functional Description
IDT82P2816
Set the T_OFF bit (b5, TCF0,...) to ‘1’ will power down the corre-
In this way, the corresponding transmit circuit is turned off. The pins
After clearing the T_OFF bit (b5, TCF0,...), it will take 1 ms for the
TRANSMITTER POWER DOWN
16(+1) CHANNEL HIGH-DENSITY T1/E1/J1 LINE INTERFACE UNIT
36
3.3.8
channel basis.
state globally:
state on a per-channel basis:
TTIPn and TRINGn can be set to High-Z state globally or on a per-
The following three conditions will set TTIPn and TRINGn to High-Z
• Connecting the OE pin to low;
• Loss of MCLK (i.e., no transition on MCLK for more than 1 ms);
• Power on reset, hardware reset by pulling RST to low for more
The following six conditions will set TTIPn and TRINGn to High-Z
• Writing ‘0’ to the OE bit (b6, TCF0,...);
• Loss of TCLKn in Transmit Single Rail NRZ Format mode or
• Transmitter power down;
• Per-channel software reset by writing ‘1’ to the CHRST bit (b1,
• Setting the THZ_OC bit (b4, TCF0,...) to ‘1’ when transmit driver
1. XCLK is derived from MCLK. It is 1.544 MHz in T1/J1 mode or 2.048 MHz
than 2 µs or global software reset by writing the RST register.
Transmit Dual Rail NRZ Format mode (i.e., no transition on TCLKn
for more than 64 XCLK
Remote Loopback or transmit internal pattern with XCLK;
CHCF,...);
over-current is detected.
in E1 mode.
OUTPUT HIGH-Z ON TTIP AND TRING
1
cycles) except that the channel is in
February 6, 2009

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