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Section 311-610-20B

030-101522 Rev. C

3

0509IBRC

a maximum loss of 7.5dB for inside wiring to the CPE (see
Figure 2). This represents a total loss of 22.5dB. This mode pro-
vides a receive transmission path that can be configured to pass
the signal from the span to the CPE with either no net regenera-
tion or with the optional regenerator to 0dB DSX. The optional
regenerator in this path can be used in applications where the
maximum loss of 22.5dB to the CPE cannot be achieved other-
wise, or in special situations where the customer requires a 0dB
DSX handoff.

2.1.1.2

The unit’s transmit path from the CPE to the Network

provides a selectable 0 to 22.5 dB LBO as well as an automatic,
self-aligning LBO (Line Build Out) circuit to meet route junc-
tion and end section design requirements in T1 span
applications.

2.1.2

T1 Fiber Applications

When T1 service to a customer is provided via fiber, the unit can
be configured to serve as a maintenance interface between the
fiber mux and the CPE. The unit can be located up to 220 feet
from the mux. See Figure 3. In this mode, the unit can be provi-
sioned for CPE-to-FAC regeneration which will regenerate
CPE input levels that have been attenuated from 0 to 30dB to a
normal 0dB DSX. This is useful due to the fact that the DS1 low-
speed tributary ports of most multiplexers are designed to
accommodate input levels that have been attenuated no more
than 3dB from 0dB DSX. This feature allows for greater section
losses to be accommodated. The CPE-to-FAC regeneration fea-
ture allows the unit to be used in applications that previously
required a T1 Extension Repeater.

2.2

Power

2.2.1

Local Power

The NIU can be powered either from the T1 span or from a local
external supply. When locally powered, the supply should be 22

to 56Vdc and can be either a positive or negative ground refer-
ence. This allows the NIU to operate from +24Vdc supplies at
certain wireless and PCS (Personal Communication Service)
sites. In the local power mode, the NIU completes the T1 span
simplex power loop and drops negligible span voltage.

2.2.2

Span Power

When optioned for Span Power, the unit is powered remotely
from the last serving office via the transmission simplex leads.
The unit will operate with a simplex current ranging from 57 to
63 mA and will drop 24 Volts nominal at 60mA. In addition, in
the Span Power, the unit will serve as a termination device for
span power by looping the simplex current back on the FAC
OUT simplex lead.

3.

TRANSMISSION FEATURES & OPTIONS

The NIU can be configured to operate in multiple applications.
The specific transmission provisioning is dependent on the ap-
plication. To facilitate this discussion, refer to Figure 4 for a
simplified diagram of the NIU transmission path during normal
operation.

 

3.1

RCV Path: Facility to CPE (A to Z Direction)

3.1.1

The incoming DS1 bit stream from the facility enters

the NIU on the FAC IN port and is transformer coupled into the
receive path circuitry. To facilitate circuit testing, a front-panel
bantam jack (FAC BRG) provides bridge access to the receive
path.

3.1.2

The FAC-to-CPE path is continuously monitored for

loss of signal, control codes and performance statistics by vari-
ous detectors that operate over an input signal range of 0 to
-30dB DSX, and are unaffected by cable length or terminations
on any port or signal state of the CPE. If the FAC IN signal con-
tains more than 128 consecutive zeros, a FAC-to-CPE path
Loss-Of-Signal condition is declared, the front-panel FAC LED
lights solid red and an Alarm Indication Signal (AIS) is sent to
the CPE.

Figure 2.

Metallic T1 Span Applications

CPE

15dB

7.5dB

22.5dB

Network

Interface

NIU

LINE

RPTR

Figure 3.

Lightwave/Mux Fiber Applications

CPE

15dB

7.5dB

22.5dB

Network

Interface

M

U

X

NIU

LBO

220 feet

Summary of Contents for 3116-10 Issue B

Page 1: ...code and removed the previous Paragraph 4 2 This practice re flects the Issue B equipment which provides the following improvements Manufacturability PM storage increased to 90 days Event log increas...

Page 2: ...NPRM or SPRM reports in the Data Link per ANSI T1 403 1998 On board test pattern generator Notepad craft screen for documenting information about the circuit User configurable alarm threshold craft s...

Page 3: ...nd can be either a positive or negative ground refer ence This allows the NIU to operate from 24Vdc supplies at certain wireless and PCS Personal Communication Service sites In the local power mode th...

Page 4: ...15 dB 0 dB 7 5 dB AB15 dB AB22 5 dB Figure 5 3116 10 Detailed Block Diagram FAC to CPE Regen DIS EN 17 5 15 55 49 CT1 CR1 CPE Out CT CR CPE In 7 13 T R TP1 TP2 GND P201 SPAN LOCAL SPAN P201 LOCAL T1...

Page 5: ...s maintained The Auto binder Level circuitry constantly monitors the input lev els from the network and customer and adjusts how much additional LBO is required to keep the binder level at the neces s...

Page 6: ...it is less than four consecutive repetitions in duration or if the error rate is greater than 10 3 Function Code Type DS1 T1 Activate 11000 Unframed SF or ESF Loop Up 0001 0010 1111 1111 ESF DATA LINK...

Page 7: ...itors the DS1 signal from the CPE for customer loss of signal and upon detecting a loss will change the CPE LED to red and cause the unit to enter Loopback toward the network When the signal from the...

Page 8: ...3 2 2 Both AIS CI and RAI CI are backwards compatible with existing network devices and will appear as normal AIS or RAI 5 3 2 3 Upon detecting a loss of signal on the network side of the unit the uni...

Page 9: ...Circuits Craft Port The 3116 10 provides a front panel RS 232 connector for local access of performance statistics data without placing the unit into loopback See Paragraph 7 1 2 and Figure 11 6 8 PM...

Page 10: ...SU PRM NIU NPRM RPT NPRM ORB NPRM NPRM xx NPRM xx WARNING Before making any connections verify power is off including removing the fuse at the fuse and alarm panel and that any and all plug in units a...

Page 11: ...P1 will read positive with respect to TP2 A voltmeter reading of 0 6VDC equates to a 60mA span 7 1 5 Status LEDs The multi function status LEDs on the front panel provide a visual indication of variou...

Page 12: ...hat provide primary lightning protection This installation should conform to Local Codes and NEC requirements This equipment is to be installed in a restricted access location CAUTION Never apply powe...

Page 13: ...minal Setup and Operation 9 1 1 The front panel craft interface port allows the craft to configure the unit for a particular application view the stored T1 performance statistics as well as graphicall...

Page 14: ...ype C The unit is shipped from the factory with its clock set to Central Standard Time 9 2 2 2 To set the date or time use the tab to select the field then type the new parameter in the highlighted bo...

Page 15: ...lly time out 24 hours after initial activation Loopback Mode Normal Unit loops up to normal inband Data Link loopback codes p Addressed Unit loops up to unique 16 bit addressed loopback code Circuit I...

Page 16: ...c to go back to main menu Figure 19 Event Alarm Log Screen Typical Sample Only Westell B90 311610 CLEI T1L8AC0AAA EVENT ALARM LOG No Date Time Event 1 15 of 200 1 2 28 00 13 00 00 MANUAL LOOP DOWN 2 2...

Page 17: ...nt Alarm Log screen type L while in the Main Menu The Event Alarm Log appears To advance through the log type N next page or P previous page or Esc to return to the MAIN Menu 9 2 5 3 To clear all stor...

Page 18: ...ration or LBO parameters that have been provi sioned When different parameters are provisioned remotely or via the provisioning menu they will be reflected here 9 2 6 4 By using the Ctrl U keys simult...

Page 19: ...ll give a message asking if you want to save the new settings WARNING If the craft terminal is disconnected without saving the changes the changes will be lost unit does not save changes automatically...

Page 20: ...as follows 1 Information Report Provides all provisioning including Alarm Threshold information about the unit 2 Event Log Report Provides all provisioning information and a complete listing of all st...

Page 21: ...lty replace it with another unit op tioned identically and retest If the replacement unit appears to operate correctly the original unit may be faulty and should be returned to Westell for repair or r...

Page 22: ...Range 30 to 0 dBDSX C Port Impedance 100 Ohms 22 at 772 kHz Detectors D FAC and CPE LOS Detector Thresholds v 30 dB 150 ms E Code Detector Range 30 to 0 dBDSX F Code Detector Maximum Error Rate 10 3...

Page 23: ...MTLBO 0 1100 0100 1011 0011 C4B3 CPE to FAC 7 5 dB WSTTRMTLBO 7 5 1100 0100 1011 0100 C4B4 CPE to FAC 15 dB WSTTRMTLBO 15 1100 0100 1011 0101 C4B5 22 5 dB WSTTRMTLBO 22 5 1100 0100 1011 0110 C4B6 AB15...

Page 24: ...CI ON Idle on CPE LOS 2400 RAI CI ON AIS CI on CPE LOS Framing Conversion WSTFCNV DIS 1100 0101 1100 0000 C5C0 200 Frame conversion disabled g ENA C5C0 400 Frame conversion enabled Real Time Mode WST...

Page 25: ...0000 C5F0 1100 Normal Mode p Query ADDR C5F0 2100 Addressed Mode Function Code Sequence Hex C d Bit Error Responses and dB Levels q Code BER Level BER Level BER Level BER Level CPE Level Query 1100 0...

Page 26: ...optnm optstg cr lf List of Options This is a comprehensive list of command line options Simply use the codes identified in the columns below when configuring command lines OPTION OPTNM OPTSTG Monitore...

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