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This document must be used according to the instructions given in the corresponding chapters of the 9500 MPR-A Turn-Up Manual.
Site:
Address:
Latitude:Longitude:
To/From:
Software Version:
Main Radio Ch. Slot #: Port #:
Standby Radio Ch. Slot #: Port #:
Date:
Tester:
Equipment ID:
Rack Number:
IP Address:
Hardware Order #:
Customer Site Ref #:
Customer P.O. Ref #:
TDS Submitter:
X
MSS Shelf #: of #:
Customer's logo
Alcatel-Lucent 9500 MPR-AMSS-1/MSS-4/MSS-8Microwave packet radio links9500 MPR-A R4.1.0
Contract reference 9500MPR-A Turn-Up Manual
Creation
Status
ED: 01
Extension
3EM239550005TQZZA
Date: 11/01/12
0. Title (Turn-Up DLP-100)
Test Data SheetAlso acceptable for use with R2.2.y, R3.x.y, and R4.0.y.
This document is used during the equipment commissioning and acceptance phases.
Reference documents
TDS for 9500MPR-A 3EM239550000TQZZA Ed 01
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< Date and signature(s) -Customer approves TDS >
Approved By< Customer representative
>
Alcatel-Lucent
< Customer >
Originator
< Date and signature(s) -ALU approves TDS >
< Alcatel-Lucentrepresentative >
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Tab
1. Change History
2. Process (How to use this document)
3. Process Continued
4. Turn-Up Checklist
5. Inspection Checklist
6. Link Information ODU300
7. Link Information MPT-HC/MPT-XP
8. Link Information MPT-HL
9 Synchronization
10 Tributary Functionality Test
11 RSL
12 ODU RX Sensitivity
13 MPT-HL RX Sensitivity
14 Protection Switching
15 Protection Scheme
16 Hop Stability
17 Software License
18 Configuration File
19 Remote Inventory
20 Current Alarm File
21 Housekeeping Alarm
22 RFC2544
23 Blank Tab
Customer's logo
19
9
4
3A
3
18
17
14
8
16
15
11
12
2
5
10
21
7
6.3
6.2
13
6.1
20
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Change History
Customer's logo
1. Update release specific informationR4.1.0
2. 4-Turn-Up Checklist: Add new Installation Chart 11 and increment the remainder of theChart numbers.
3. 8-Tributary Functionality Test: Add MSS-1 DS1 tributary test, new rows 30 and 31.
TDS for 9500MPR-A Release 3.2
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TDS for 9500MPR-A Release 3.2
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TDS for 9500MPR-A Release 3.2
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TDSModificationGuidelines
The Test Data Sheet (TDS) is a contractual document between ALU and the Customerand, as such, must be modified to reflect the agreement between parties, the deploymentparticularities and/or any deployment constraints.
The TDS is divided into several tabs. Each tab contains data entry fields to be individuallyfilled in during the acceptance testing of the radio path.
One TDS is required per path end, per Radio Channel If multiple RF channels are being provisioned, use separate TDS's for each end of
each Radio Channel.
Note : See Table of Content tab "1-TOC" for specific TDS tab description.
Macros WARNING: Always enable macros in your version of Excel before entering data into theTDS. Failure to enable macros will result in loss of ALL data entered upon Save or Save
As operation.
TDS Structure
Description
TDSModification
Upon completion of the TDS modifications, the DPM will:
Customer's logo
The following are guidelines for modifications to the TDS:
The final TDS must be a trade off between too much and too little information The smaller the TDS, the more efficiently it will be completed by field personnel It is strongly advised to translate the TDS into the customer's and field personnel's language
Introduction
2
The TDS will be modified to reflect the agreement between ALU and the customer. TheDPM will perform the following:
Task
Test Data Sheet
Distribute approved TDS to appropriate team members.
Task Description1 Secure customer approval of modified TDS.
3 Archive Customer TDS Approval in FST.
Apply Customer Logo to all pages of the TDS.2 Add Customer Approval Name on Title page.3 Color all Non-Applicable tabs "red"4 Add tabs as needed after "20-RFC2544" tab. A blank tab is provided at the
end of the TDS to function as a template for adding tabs.
Note: No entry fields may be added on existing tabs. No tabs can beinserted before "20-RFC2544" tab.
1
Archive approved TDS in FST.
4
TDS for 9500MPR-A Release 3.2
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auto populates from entry on another cell inthe TDS.
red
Issue Reporting To report an issue with this TDS, contact the DPM responsible for the project.
Provide the DPM with the following information:
TDS document number TDS Edition number Tab number Cell number Detailed description of the issue and/or concern
green
TDS Approval The TDS will be submitted and approved following the process outlined on tab "3A-ProcessCont".
The following table describes shaded field definitions:
The Field Technician is responsible for completing the following field entries:
data entries screenshots photos
Warning : Each field must be filled in separately! NEVER USE CUT & PASTE to fill incells! Many cells include a formula and/or conditional formatting. Cut and paste into one of
these cells will override the formula and/or conditional formatting.
Field Entry
yellow
white
contains an entry which is either out ofrange or is in conflict with data entry inanother field on the tab.
gray
is complete.
contains an entry which is either out ofrange or is in conflict with data entry inanother field on the tab.
requires entry.
gray is not applicable and no entry is required.When the entry field is shaded ... Then the field ...
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TDS for 9500MPR-A Release 3.2
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TDS for 9500MPR-A Release 3.2
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Vendor uploads TDS file to FST.
Vendor will upload the file to the FST server under the Documents sectionof the appropriate site in task 905.0 for the 1/2 path the TDS applies to.
Note: TDS's must be uploaded to FST within (3) business days radiotesting completion.
Step Description
21 Vendor names TDS file per 'File naming convention'.
The table below defines the milestone numbers used to submit TDS's to FST.
The following are examples of FST files names:
Example 1: Pequop-Wells TDS (This is the vendors original FST submission.)
Example 2: Pequop-Wells.1 TDS (This is a vendor's second FST submission.)
Milestone # Description905.0 Vendor's TDS submission to FST
Auditor's/DPM approved TDS submission to FST
Example 4: Pequop-Wells-2.1 TDS (This is the second radio on this path, first revison.)
Example FSTfile names
905.5
Customer's logo
Instructions for archiving TDS form in FST
Introduction Every TDS will be archived in FST and approved by ALU using the process describedbelow.
One TDS is required for each path end, per radio channel.
Warning : The TDS file m u s t be saved as an .xls m file if using MS Office 2007 ornewer.
File namingconvention
The following table describes the process for the vendor to submit the completed TDS toFST for approval.
Vendor submitcompleted
TDS to FST forapprovalprocess
File submitted to FST shall use the following file naming convention, replacing the words"site location" with the actual site names.
File naming convention:Site location A-Site location B-path#.revison# Title of Document
Note: If there are multiple radios on the same path a "-1" or "-2", etc. should be added tothe end of the path name.
Example 3: Wells-Pequop-2 TDS (This is the 2nd radio on this path.)
Milestone #
TDS for 9500MPR-A R3.3.0
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Audit process repeats until all defects are corrected and auditor / DPM moves TDS to905.5
2
The following table describes the process for the auditor to review a submitted TDS forapproval.
1
3 Step 3. Vendor Renames TDS File per 'File naming convention'.
The vendor shall change the file name to make path name end in ".1" torepresent the 1st revision.
Vendor Reviews Defect Email from Auditor / DPM
If vendor has any objections to the assessed defects, they should addressthese in email or by phone to the auditor.
All corrective actions must be completed within the allotted (10) businessdays.
Vendor Downloads TDS with Defect(s) and make Correction(s).
Vendor will download the TDS file, make the applicable correction(s) to thedefect(s) and re-take screen shots, re-run tests, correct radioconfigurations, etc.
Note: Objections noted by the vendor or lack of response by the auditordoes not extend the due date of the corrective actions by the vendor. It issolely the vendor's responsibility to make contact with the auditor.
*If the TDS has NO defects assessed, then the auditor will move thedocument from 905.0 to 905.5
Auditor reviewsubmittedTDS to FSTprocess
Auditor reviews TDS adherence to ALU & project standards.
Auditor to download TDS file, review all data, and note any defects in anemail.
The subject line should indicate: Site location A-Site location B TDSdefects
For example: Pequop-Wells TDS defects
If defects are assessed, the auditor should describe each defect and thesuggested corrective action in the email.
Step Description
2
Vendor submitcorrected TDSto FST forapprovalprocess
The following table describes the process for the vendor to submit a corrected TDS toFST for approval.
4 Vendor Uploads TDS File to FST.
Vendor uploads corrected TDS file to 905.0
Note: Vendor should complete corrective actions and re-upload TDS toFST within (10) business days of initial auditor findings.
1Step Description
Note: All corrective actions to be submitted at one time .
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TDS for 9500MPR-A R3.3.0
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Site
To/From
Tester
Equipment ID
Description
Description
10
11 Route and terminate MPT ODU to MSS cables
Item
Site Compound
Site Condition-- Note and take pictures of any standing alarms, safety issues, trash or other major concerns asitemized below. Forward any urgent condition (equipment major or critical, safety issues, etc) to ALU DPM. Attachphotos of concern to the bottom of this tab. Please include the photo number in your comments.
Customer's logo
4. Turn-Up Checklist0
Front Panel Equipment Red, Green,or Yellow Alarms Present
Inside Shelter
0
0
1
CommentsCheck
2
3
4
Weatherproofing Coaxial Cable Connections
15 Lightning Surge Suppressor Installation
16 IF Cable System Grounding Installation
6MSS-4/MSS-8, MPT-HL Shelf, and PowerInjector Installation
14 IF Cable System Installation
13Non-Integrated Antenna and ODU300Installation
Integrated Antenna and ODU300 Installation
9Demarcation Patch Panel (DSx (1/3))Installation
12
MPT-HC V2/XP Installation (Integrated and non-Integrated)
8 Type N Adapter Bracket Installation
7Route and Terminate 9500 MPR-A Shelf PowerCables
5Route and Terminate Station Ground and OfficeBattery Power Cables
4 PDU Installation
Check/NA
3 Rack Installation
2 Prepare Floor
Chart #
1 Unpack and Inspect Equipment
Immediate Safety Concern - Tower,Shelter, Power, Ground, etc.
EQUIPMENT INSTALLATION (9500 MPR-A Installation Practices Manual, PN: 3EM23953AL 01)Comments
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Description
Route and Terminate FAN Office Alarm SignalCables-Verify Continuity
Route and Terminate Aux Signal Cables-VerifyContinuity
22
21Route and Terminate OC3 Signal Cables-VerifyContinuity
28 Antenna Alignment
Comments
25Route and Terminate MPT Power UnitHousekeeping Alarm Signal Cables-VerifyContinuity
LMR400 Transmission Line InstallationVerification
DLP-107
DLP-113
DLP-110
DLP-112
Install Plug-In Cards
DLP-109
DC Power installation Verification
26
Antenna Installation Verification
Antenna Polarization Verification
27 Assemble CSM-E to PC Cable
DLP-103
Install Standoffs and Secure Cables with CableTies
EQUIPMENT COMMISSIONING (9500 MPR-A Turn-Up Manual, PN: 3EM23954AL 01)Check/NA
ODU300 Installation Verification
DLP-106
DLP-104
DLP-102
DLP #
DLP-105
23
24
Provision Verification
Tx Output Power and RSL Tests
Hop Stability Test
DLP-120
-Complete system Turn-Up activities and obtain
DLP-121 Perform Database Backup
DLP-122 Verify Alarm-Free System
DLP-119 Provision Cross-Connections
Tributary Functionality Test
Provision MSS-4/MSS-8 Shelf
Radio Interference and Fade margin Test -ODU300
DLP-115
DLP-117Radio Interference and Fade Margin Test - MPT-HL
DLP-118 Disconnect Test Equipment and Test Cables
DLP-116
DLP-114
Tributary Cable Installation Verification
Radio and Radio Rack Visual Inspection
Load System and Craft Terminal Software onPC
Flex Section Installation Verification
DLP-111
DLP-108
Route and Terminate Sync Signal Cables-VerifyContinuity
19Route and Terminate DS3 Signal Cables-VerifyContinuity
20Route and Terminate Ethernet Signal Cables-Verify Continuity
and Cable Grounds
18Route and Terminate DS1 Signal Cables-VerifyContinuity
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-
customer acceptance certification
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Site
To/From
Tester
Equipment ID
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
position and connection
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
Fan for MSS-1c OK NOK NA
Power injector box or plug-in OK NOK NA
MPT Power Unit OK NOK NA
MPT Extended Power Unit OK NOK NA
Direct Connection to Office Power presence OK NOK NA
Low Pass Filter and Lighting Arrestor presence OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
Customer's logo
Power supply protection circuit breakers values
Antenna(s) mounted per manufacturer / ALUspecifications
Tributary DS3 cabling and labeling of DS1Demarcation Point
Outdoor installation visual inspection check
Tributary DS1 cabling and labeling of DS1Demarcation Point
Unused slots have blank plates installed
IDU Power supply wiring
Site left clean & tidy
PDU and other power supply distributor
MSS and cables labeling
User Ethernet cabling and labeling of EthernetDemarcation Point
Rack placement in accordance with approved andcommunicated floor plan
Antenna sway bars/Stiff Arms should be installedto proper specs. (if used)
Flange connection (not integrated antenna only)
Antenna(s) diameter according to plant doc.
Antenna(s) grounding
Tributary OC3 fiber cabling and labeling of OC-3Demarcation Point
MSS-4/8 cards installed per site documentation
Comment
5. Installation Checklist (Turn-Up DLP-100,102 through DLP-110)
Indoor installation visual inspection check
Rack and Subrack ground connections
0
0
0
Flex section installation according to plant documentation
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Elliptic Flex. NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
OK NOK NA
Ant enna Diameter Antenna 1 / Antenna 2
Antenna Azimuth Antenna 1 / Antenna 2
Polarizat ion Vertical Horizontal
IDU/ODU cable(s) grounding
ODU/MPT cable protection weatherproofing
IDU/ODU cable(s) length (m)
ODU/MPT connectors tightened to proper torquespec.
ODU/MPT and pole mounting according to plant doc .
ODU/MPT tightening
ODU/MPT grounding
Waveguide type
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Site
To/From
Tester
Equipment ID
Link Settings
Reference Channel Spacing
Modulation
Modulation Range
Remote Thresholds
User Label
Link Identifier Enable Disable Link Identifier 0 Enable Disable
Values Tx Rx Values Tx Rx
Tx Frequency (Mhz)
Shifter (Mhz) Shifter (Mhz)
ATPC Enable Disable Enable Disable
ATPC Range (dBm) Min Max ATPC Range (dBm) Min Max
ATPC Low Rx Threshold dBm ATPC Rx Threshold dBm
Tx power min(dBm)
Tx Frequency (Mhz)Shifter (Mhz) Shifter (Mhz)
ATPC Enable Disable Enable Disable
ATPC Range (dBm) Min Max ATPC Range (dBm) Min Max
ATPC Rx Threshold dBm ATPC Rx Threshold dBm
Tx power min (dBm)
Radio automatic restoration criteria (1+1 only)
EPS Revertive Not Revertive
Customer's logo
32 QAM
128 QAM
4,16, 64 QAM
16/64 QAM
256 QAM
4,16 QAM
Tx Frequency (Mhz)
Tx power min (dBm)
Tx power min (dBm)
Channel 1Channel 1
Option
Local End
0
ATPC
50 Mhz
16 QAM
00
Channel 0
0
Adaptive
40 Mhz
Tx Frequency (Mhz)
6.1. Link Information ODU 300 (Turn-Up DLP-120)
1+1 HSB/SD
8 GHz
18 GHz15 GHz
0
1+1 FD
23 GHz
0
0
11 GHz
ATPC
Channel 0
4/16 QAM
7 GHzU6 GHz
64 QAM
Presetting
QPSK
L6 GHz
1+0
10 Mhz
8PSK
30 Mhz
1+1 HSBConfiguration
38 GHz
Frequency band
Mode
0
Far End / To/From Site
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RPS Revertive Not Revertive
HSB Tx protection Revertive Not Revertive
Radio Main View Settings Tab Screenshot:
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Site
To/From
Tester
Equipment ID
Link settings
Configuration
Reference Channel Spacing
User Label
Card QMA PFoE Card QMA PFoE
Card QMA PFoE Card QMA PFoE
Enable Disable 0 Enable DisableTx Rx Tx Rx
Tx Frequency (Mhz)
Shifter (Mhz) Shifter (Mhz)
ATPC Enable Disable Enable Disable
ATPC Range (dBm) Min Max ATPC Range (dBm) Min Max
ATPC Low Rx Threshold dBm ATPC Rx Threshold dBm
Tx power (dBm)
Tx Frequency (Mhz)
Shifter (Mhz) Shifter (Mhz)
ATPC Enable Disable Enable Disable
ATPC Range (dBm) Min Max ATPC Range (dBm) Min Max
ATPC Rx Threshold dBm ATPC Rx Threshold dBm
Tx power (dBm)
Customer's logo
Far End / To/From Site
0
1+1 FD
32 QAM
0
0
0
15 GHz8 GHz 11 GHz
1+0
Channel 0 Channel 0
40 Mhz
256 QAM
Channel 1
1+0 XPIC 1+1 XPIC
6.2. Link Information MPT-HC/XP/9558HC (Turn-Up DLP-120)
Local End
64 QAM
5 Mhz
Link Identifier
L6 GHz
Power Source Ch0
Frequency band
0
7 GHz
18 GHz
Channel 1
ATPC
U6 GHz
30 Mhz10 Mhz
128 QAM
Unlicensed
1+1 HSB
Tx Frequency (Mhz)
Tx power (dBm)
ATPC
0
Mode
QPSK
Presetting
Link Identifier Values
0
Values
Tx Frequency (Mhz)
Power Source Ch1
Tx power (dBm)
0
Option
Adaptive
16 QAM8PSKModulation (For Adaptive, select allsupported modulation techniques.)
Power Source Ch1
Power Source Ch0
50 Mhz
23 GHz 38 GHz
1+1 HSB/SD
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Radio automatic restoration criteria (1+1 only) MSS-4/MSS-8
EPS Revertive Not Revertive
RPS Revertive Not Revertive
HSB Tx protection Revertive Not Revertive
Radio Main View Settings Tab Screenshot:
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Site
To/From
Tester
Equipment ID
Link settings
Ref. Channel Spacing
User Label
Link Identifier Enable Disable Link Identifier 0 Enable Disable
Values Tx Rx Values Tx Rx
Tx Frequency (Mhz)
Shifter (Mhz) Shifter (Mhz)
ATPC Enable Disable Enable Disable
ATPC Range (dBm) Min Max ATPC Range (dBm) Min Max
ATPC Low Rx Threshold dBm ATPC Rx Threshold dBm
Tx power (dBm)
Tx Frequency (Mhz)
Shifter (Mhz) Shifter (Mhz)
ATPC Enable Disable Enable Disable
ATPC Range (dBm) Min Max ATPC Range (dBm) Min Max
ATPC Rx Threshold dBm ATPC Rx Threshold dBm
Tx power (dBm)
Radio automatic restoration criteria (1+1 only)
EPS Revertive Not Revertive
RPS Revertive Not Revertive
HSB Tx protection Revertive Not Revertive
8 GHz
32 QAM
1+0
64 QAM
30 Mhz
256 QAM
5 Mhz
Customer's logo
Option
Unlicensed
0
U6 GHz
Configuration
11 GHz10.5 GHz
0
L6 GHzFrequency band
0
Mode
Driving MSE
Presetting
4 QAM
128 QAM
Modulation (For Adaptive, select allsupported modulation techniques.)
0
Tx power (dBm)
ATPC
Tx Frequency (Mhz)
Channel 0 Channel 0
Channel 1
6.3. Link Information MPT-HL (Turn-Up DLP-120)
1+1 FD
7 GHz
Local End
40 Mhz
1+1 HSB
10 Mhz
16 QAM
Adaptive
ATPC
0
0
Far End / To/From Site
0
Tx Frequency (Mhz)
Channel 1
Tx power (dBm)
0
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Radio Main View Settings Tab Screenshot:
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Site
To/From
Tester
Equipment ID
Synchronization Role
Restoration Criteria
Primary Source LO DS1 OC3 Synch-In Port
Radio/MPT Port Ethernet Port L1 LAG Port
Slot Port
Slot Port
Secondary Source
Secondary Source None LO DS1 OC3 Synch-In Port
Radio/MPT Port Ethernet Port L1 LAG Port
Slot Port
Slot Port
Synch-Out Port Enable Disable Frequency (Mhz)
Synchronous Not Synchronous Master Slave SSM
Synchronous Not Synchronous Master Slave SSMSynchronous Not Synchronous Master Slave SSM
Synchronous Not Synchronous Master Slave SSM
Synchronous Not Synchronous SSM
Synchronous Not Synchronous SSM
Synchronization View Settings Tab Screenshot:
Ethernet Port
Synch-In Port
Customer's logo
0
Ethernet Operation mode port #4
Ethernet Operation mode port #5
Ethernet Operation mode port #1
Ethernet Operation mode port #2Ethernet Operation mode port #3
Radio/MPT Port
L1 LAG Port
7. Synchronization Information (Turn-Up DLP-120)
Synchronization Settings TabRole
Not RevertiveRevertive
Master Slave
0
0
Primary Source
DS1 Slot and Port #
OC3 Slot and Port #
Screenshot AddMacro
Ethernet Operation mode port #6
Synch-In Port
DS1 Slot and Port #
OC3 Slot and Port #
L1 LAG Port
Synchonisation Ethernet Port
Synch-Out Port
Ethernet Port
Radio/MPT Port
Paste Synchronization View Settings Tab below:
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Site
To/From
Tester
Equipment ID
Slot # (Port #)
Pass NA Pass NA Pass NA
Pass NA Pass NA Pass NA
Pass NA Pass NA Pass NA
Pass NA Pass NA Pass NA
Pass NA Pass NA Pass NA
Pass NA Pass NA Pass NA
Pass NA
Slot # (Port #)
Pass NA Pass NA Pass NA
Pass NA Pass NA Pass NA
0
Protection SwitchingProtection to Main
P32E1DS1 Slot 3 (1-32)
Customer's logo
P32E1DS1 Slot 5 (1-32)
8. Tributary Functionality Test (Turn-Up DLP-113)0
DS1 Tributary Ports
0
P32E1DS1 Slot 6 (1-32)
Main to ProtectionTributary Tests
P32E1DS1 Slot 4 (1-32)
P32E1DS1 Slot 7 (1-32)
P32E1DS1 Slot 8 (1-32)
MSS-1 MSS/DS1 (1-16)Protection Switching
Tributary Tests Main to Protection Protection to Main
P2E3DS3 Slot 3 (1-2)
DS3 Tributary Ports
P2E3DS3 Slot 4 (1-2)
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Site
To/From
Tester
Equipment ID
Yes No Value
Description of why Expected RSL does not meet specification
Near-End Tx Output Power and RSL Tabular View, Main Channel #1
Paste Near-End TX Output Power and RSL Tabular View, Main Channel #1 below.
Customer's logo
Power Level Check ( ODU 300, MPT-HC, MPT-HL ) Move to RSL tab
9. RSL (Turn-Up DLP-114)0
0
0
RA Tx Frequency Power
Tx power value (dBm)Channel 0Channel 1
Pass/Fail*Pass/Fail*
Calculated Rx level (dBm) (from link budget)
Rx level reading (dBm)
Screenshot AddMacro
Check for interfering signal
* If RSL does not meet +/- 2 dB specification and there are no mitigating issues identified on the existing /incumbent path, then follow normal troubleshooting practices to identify where the losses are occurring.
Use the area below to document: 1) troubleshooting steps performed 2) results of the troubleshooting steps 3) an explanation of why this defect is not attributable to ALU-provided: hardware installation
Expected RSL met?
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Site
To/From
Tester
Equipment ID
A-A ODU Receiver sensitivity
Paste A-A PM Radio power measurement graphical view
Paste A-A PM Radio power measurement tabular view
* Near end receiver power level must follow the delta of the far end transmitter power level within 4 dB. If thedifference between the change in far end Tx power and near end Rx power is greater than 4 dB, the Rx
* Near End Fade only needed if Far End TX fade shows radio sensitivity does not meet specifications per ALU pathcaluculations referenced above. A Far End Fade Test that does not pass could indicate a possible interferenceproblem. To eliminate the Near E
Customer's logo
ODU300/MPT-HC/9558HC RX Sensitivity Test Results:
0
0
B (Spare)
RSL (far end) actual
0
10. ODU300/MPT-HC/9558HC RX Sensitivity Test(Turn-Up DLP-116)
Far End TX Fade A (Main) B (Spare)TX power (far end) per RF design
Near End TX FadeTX power (near end) per RF design
A (Main)
RSL (near end) per RF design
TX power (far end) @ minimum TX power (near end) @ minimum
RSL (far end) per RF designRSL (near end) actual
RSL (far end) @ min TX power Pass
Screenshot Add
Macro
Screenshot AddMacro
PassRSL (near end) @ min TX power
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A-A ODU Receiver sensitivity
Paste B-B PM Radio power measurement graphical view
Paste B-B PM Radio power measurement tabular view
Screenshot AddMacro
Screenshot AddMacro
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Site
To/From
Tester
Equipment ID
Customer's logo
Far End TX FadeSpec'ed RX 10 -6 Threshold
Actual RX 10 -6 Threshold
A (Main)
MPT-HL RX Sensitivity Test Results:
11. MPT-HL RX Sensitivity Test (Turn-Up DLP-117)0
0
B (Spare) A (Main)Near End RX Fade*Spec'ed RX 10 -6 Threshold
Actual RX 10 -6 ThresholdFade Margin 0.0 0.0
B (Spare)
0
* Receiver Threshold specification should be obtained from the Alcatel-Lucent path calculations.
* Near End Fade only needed if Far End TX fade shows radio sensitivity does not meet specifications per ALU pathcaluculations referenced above. A Far End Fade Test that does not pass could indicate a possible interferenceproblem. To eliminate the Near End RX as being a problem, the Near End RX Fade would be performed
Fade Margin 0.0 0.0
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Site
To/From
Tester
Equipment ID
Protection Scheme Tab (MSS-4/MSS-8)
Protection Scheme
Paste Protection Scheme Tab Screenshot below:
0
Customer's logo
13. Protection Scheme (Turn-Up DLP-120)0
0
Screenshot AddMacro
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Site
To/From
Tester
Equipment ID
DS1 DS3 OC-3 EthDS1 DS3 OC-3 Eth
Paste photo showing elapsed time and 0 bit errors of A-A Radio BER hop test result below:ORPaste text file showing elapsed time and 0 bit errors of A-A Radio BER hop Test result below:
Paste A-A Performance Monitor screenshot below:
Customer's logo
A-A (Main-Main)
14. Radio BER Hop Stability Test (Turn-Up DLP-115)0
0
0
Radio BER Hop Stability Test Bit Errors
B-B (Spare-Spare) (If Applicable)
Record ActualTest Elapsed
Screenshot AddMacro
Photo Add Macro
Frame Size(bytes)
TX Rate(frames/sec)
1518
Frame Size(bytes)
TX Rate(Mbps)
TX Rate(frames/sec)
RX Rate(frames/sec)
#DIV/0!
Pass/FailRX Rate(Mbps)
Radio BER Hop Stability Test Results:
Test Signal (DS1/DS3/OC-3/Ether
A-A Throughput (2 hours min.):
B-B Throughput (2 hours min.):
RX Rate(Mbps)
TX Rate(Mbps)
RX Rate(frames/sec)
Frame Loss(%)
Pass/Fail
#DIV/0!
A-A Test Result Capture from BER Test Set (Elapsed Time and 0 Bit Errors)
A-A Test Result Capture from Performance Monitor Craft Terminal (Elapsed Time and 0 Bit Errors)
1518
Frame Loss(%)
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Paste photo showing elapsed time and 0 bit errors of B-B Radio BER hop test result below:ORPaste text file showing elapsed time and 0 bit errors of B-B Radio BER hop Test result below:
Paste B-B Performance Monitor screenshot below:
Screenshot AddMacro
B-B Test Result Capture from Performance Monitor Screenshot from Craft Terminal(Elapsed Time and 0 Bit Errors)
B-B Test Result Capture from BER Test Set (Elapsed Time and 0 Bit Errors)
Photo Add Macro
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Site
To/From
Tester
Equipment ID
Main Flash Card S/N
Spare Flash Card S/N
Paste Software License Screenshot below:
Customer's logo
0
Software License:
Flash Card Serial Number (Manually Enter):
15. Software License (Turn-Up DLP-120)0
0
Screenshot AddMacro
Paste License Key below:
Software License Screenshot:
License Key:
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Site
To/From
Tester
Equipment ID
Configuration File Data:
0
Customer's logo
Paste Configuration File below:
16. Configuration File (Turn-Up DLP-120)0
Configuration File:
0
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Site
To/From
Tester
Equipment ID
Remote Inventory:
Paste Remote Inventory text below:
Customer's logo
Remote Inventory:
0
17. Remote Inventory (Turn-Up DLP-120)0
0
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Site
To/From
Tester
Equipment ID
Alarm Monitor Screenshot (Showing no un-explained standing alarms or conditions):
Abnormal Conditions Screenshot (Showing no un-explained abnormal conditions):
Customer's logo
0
18. Alarm Monitor / Abnormal Conditions (Turn-Up DLP-122)0
0
Screenshot AddMacro
Alarm Monitor / Abnormal Conditions:
Paste Alarm Monitor screenshot below:
Paste Abnormal Conditions screenshot below:
Screenshot AddMacro
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Site
To/From
Tester
Equipment ID
#DIV/0!512
128256
0
#DIV/0!
Throughput:
64
Frame Loss(%)
Pass/Fail
Customer's logo
Frame Size(bytes)
TX Rate(Mbps)
TX Rate(frames/sec)
RX Rate(Mbps)
RX Rate(frames/sec)
20. RFC2544 Test Results(When purchased as an additional service!)
0
0
#DIV/0!
RFC2544 A-A Test Results - (2 hours min.)
RFC2544
Configuration 1+0 1+1 HSB 1+1 HSB/SD
#DIV/0!#DIV/0!
12801024
Latency:
1518#DIV/0!#DIV/0!
Max.Delay(usec)
Min.DV
(usec)
AverageDV
(usec)
Max.DV
(usec)
FrameSize
(bytes)
TXRate
(Mbps)
Min.Delay(usec)
AverageDelay(usec)
FrameLoss(%)
Pass/Fail
64128256512
102412801518
RX Rate(Mbps)
RX Rate(frames/sec)
Frame Loss(%)
Pass/Fail
64
Frame Loss:
Frame Size(bytes)
TX Rate(Mbps)
TX Rate(frames/sec)
#DIV/0!128 #DIV/0!
512 #DIV/0!256
1024
#DIV/0!
#DIV/0!1280 #DIV/0!
Back-to-Back:
1518
Frame Size(bytes)
Port Speed(Mbps)
Average Burst(frames)
Repeat
#DIV/0!
Pass/Fail
64128256512
1+1 FD
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Paste photo showing elapsed time and test results of A-A RFC2544 test results below:ORPaste pdf file showing elapsed time and test results of A-A RFC2544 test results below:
A-A RFC 2544
1024
15181280
RX Rate(frames/sec)
Frame Loss(%)
Pass/Fail
64
RFC2544 B-B Test Results - (2 hours min.)
Throughput:
Frame Size(bytes)
TX Rate(Mbps)
TX Rate(frames/sec)
RX Rate(Mbps)
#DIV/0!128 #DIV/0!
512 #DIV/0!256
1024
#DIV/0!
#DIV/0!1280 #DIV/0!
#DIV/0!
Latency:
1518
Max.Delay(usec)
Min.DV
(usec)
AverageDV
(usec)
Max.DV
(usec)
FrameSize
(bytes)
TXRate
(Mbps)
Min.Delay(usec)
AverageDelay(usec)
FrameLoss(%)
Pass/Fail
64128
256512
102412801518
RX Rate(Mbps)
RX Rate(frames/sec)
Frame Loss(%)
Pass/Fail
64
Frame Loss:
Frame Size(bytes)
TX Rate(Mbps)
TX Rate(frames/sec)
#DIV/0!128 #DIV/0!
512 #DIV/0!256
1024
#DIV/0!
#DIV/0!1280 #DIV/0!
#DIV/0!
Back-to-Back:
1518
64
Frame Size(bytes)
Port Speed(Mbps)
Average Burst(frames)
Repeat
256128
1024512
12801518
Pass/Fail
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