Lucent Technologies Life Jacket PA 8500 User Manual

Page 1 of 1  
DNCP Series 400/400-CO (PA-8500)  
Hardware Installation Guide (FTX systems)  
Revision 0.0  
5/5/00  
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Manual Conventions  
Manual Conventions  
For standardization purposes, the following conventions will be used throughout this manual  
Bolded Text is used for information which needs to be emphasized  
Italicized text is used for information which needs to be identified, such as component names  
or a specific system status  
The following conventions relate primarily to the software sections:  
Courier new bold text is used to indicate commands the user is to type.  
Courier new text is used to indicate screens commands/printouts that the user would  
see,  
or to indicate, in an explanation paragraph, the type of command a user is to use to  
execute  
this function.  
<keyboard key> or <onscreen key> is used to indicate either a keyboard or  
onscreen key the user needs to recognize or press.  
Boxed text in courier new font  
(in Chapters 5 and 6) show information which is being referred to  
(this can include report printouts or other data--sales picklists...)  
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Installation Guide  
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Chapter 1  
Chapter 1  
Preparing to Install the System  
This chapter contains important information to read before proceeding with the installation, such as a system description  
and vital safety considerations. This chapter is divided into the following sections.  
1.1 Safety Considerations  
Before installing the system, be sure to take the following important precautions.  
To ensure a safe and effective installation, follow the procedures exactly as they are  
written in this manual  
Do not attempt to install the system without the assistance of another able-bodied person. The size and weight of  
the system do not allow it to be safely installed by one person.  
The information in this manual assumes that the system site has been prepared, and the system unpacked,  
according to the instructions in the DNCP Series 400/400-CO (PA-8500): Site Planning Guide (R454) and the  
DNCP Series 400/400-CO: Unpacking Instructions. Refer to these manuals before proceeding with the installation.  
Observe all applicable industry safety standards.  
Provide the necessary space and light to safely perform the installation.  
Do not wear conducting objects, such as rings, bracelets, and keys.  
Before installing the system, familiarize yourself with the system hardware and how to get help during the  
installation by reading the remainder of this chapter.  
1.2 Required Tools  
To install the system, the following tools are necessary.  
Flat-blade screwdriver  
Phillips-head screwdriver  
Torque wrench  
Torx head wrench tool set  
Digital voltmeter  
1.3a System Description -- for DNCP Series 400 (PA-8500)  
The DNCP Series 400 (PA-8500) system combines the Hewlett-Packard PA-RISC PA-8500 microprocessor with Lucent's  
continuously available hardware. This system uses AC power . The DNCP Series 400 (PA-8500) system utilizes the FTX  
operating system.  
The DNCP Series 400 (PA-8500) achieves continuous availability by partnering, or duplexing, two identical online  
components, so that if one fails, its partner continues to operate. Other system components ensure availability by operating  
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Chapter 1  
in standby mode , with one component online, while the other "stands by" to take over operation should its partner fail.  
The DNCP Series 400 (PA-8500) must be installed by a qualified service technician, but most of the components are  
customer-maintainable. Its data communications subsystem, based on a Peripheral Component Interconnect (PCI) bus,  
utilizes state-of-the-art PCI cards. Peripherals include T800-series cartridge tape and D85X CD-ROM drives, V105  
terminals, and C419/C619 modems, which are described later in this chapter. See Figure 1.1 for an illustration of the  
DNCP Series 400 (PA-8500) system installed in a typical computer-room environment. The sections that follow describe  
DNCP Series 400 (PA-8500) components.  
Figure 1.1. DNCP Series 400 (PA-8500) System in a typical computer-room environment  
1.3a.1 DNCP Series 400 (PA-8500) Cabinet  
Each DNCP Series 400 (PA-8500) consists of a single cabinet that houses all major system components. Two sets of doors  
on the front and rear of the cabinet provide access to these components. The following sections describe the cabinet  
components.  
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Chapter 1  
1.3a.1.1 DNCP Series 400 (PA-8500) Cabinet: Front Components  
For the components housed in the front of the cabinet, See Figure 1.2 which is also described in the following  
paragraphs.  
Figure 1.2. DNCP Series 400 (PA-8500) Cabinet: Front View  
The amber cabinet fault light, located at the top of the cabinet frame, above the doors, illuminates when one or more  
components within the cabinet have failed. (For a more detailed explanation of system status lights, refer to the Appendix.  
The power trays are located just below the cabinet fault light:  
Power Tray 2 (on the top) includes two power supply units to power the PCI card cage bays. At the base of Power  
Tray 2 are two Alarm Control Units (ACUs). The ACUs control the speed of the cabinet fans, monitor the status of  
components within the cabinet, and control the component status lights. One ACU is online, while the other is in  
standby mode.  
Power Tray 1 (below Power Tray 2) includes two rectifiers to convert AC power to the necessary DC voltage for  
the entire system.  
Below the power trays are two disk shelves. Each disk shelf has nine slots, the two leftmost slots are reserved for two disk  
power supply units, the other slots house up to seven 9GB or 18GB Small Computer System Interface (SCSI) disk drives.  
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Chapter 1  
Maximum duplexed storage capacity is 126 GB per disk shelf, 252 GB per DNCP Series 400 (PA-8500) cabinet (63GB  
per disk shelf, 126GB per system logical storage).  
Located at the bottom of the cabinet are duplexed logic suitcases. These suitcases house the system's central logic  
functions: the Hewlett-Packard CPUs, memory modules, and console controller, which is the system's central collection  
point for maintenance, diagnostic information and user interface.  
If the logic suitcases have a vinyl protective covering on the front, remove the covering once the system cabinet is in place.  
Optional air filters are located below the suitcases, on the front of the disk shelves, and on the front of the two power  
trays. System air filters must be changed regularly. (Refer to FTX Operating System: DNCP Series 400/400-CO  
(PA-8500) Operation and Maintenance Guide (RXXX) for preventive maintenance instructions.)  
1.3a.1.2 DNCP Series 400 (PA-8500) Cabinet: Rear Components  
The rear of the cabinet has two doors that provide access to the components housed in the back of the cabinet. For an  
illustration, See Figure 1.3 which is also described in the following paragraphs.  
Figure 1.3. DNCP Series 400 (PA-8500) Cabinet: Rear View  
The top of the cabinet has a cable opening that provides access for routing system power cables and communications  
cables.  
The top of the cabinet frame has an amber cabinet fault light that illuminates when a component within the cabinet has  
failed. (For a more detailed explanation of system status lights, refer to the Appendix.  
The top region also contains the power input connectors/backplane. The power assembly contains the duplexed AC power  
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Chapter 1  
cables, and the alarm relay connector for remote alarm monitoring. Each power cable requires a separate AC electrical  
source.  
Below the power input region (AC power chassis) are two disk shelves which each contain three cooling fans, a SES  
(SCSI Enclosure Services) unit, a SE-SE (single-ended to single-ended) I/O repeater module and a terminator module.  
Below the disk shelves are two PCI card cages. Each card cage contains seven slots for PCI cards, for a total of 14 PCI  
cards per system. Each PCI card cage has one bridge card that provides the interface between the logic suitcases and the  
PCI cards. Each bridge card has a connector for a PC Memory Card International Association (PCMCIA) flash card, a  
credit-card-sized EEPROM used to boot the operating system.  
Beside each of the PCI card cages is a jack for attaching a grounding strap.  
Four serial ports at the bottom of the cabinet are used to connect the system to the:  
CPU/memory motherboard within each logic suitcase  
system console  
remote console  
Remote Service Network (RSN) modem (Not all systems are connected to the RSN. For an explanation of the  
RSN, refer to FTX System Administrator's Guide: General Services (R455X)  
The bottom of the cabinet also has a cable opening for routing power and communications cables.  
1.3a.1.3 System Ventilation  
Ensure adequate air flow around the system during installation. The system requires two feet of clearance on the front and  
rear of the cabinet, and a minimum of 18 inches of unobstructed area above the top of the cabinet. For cabinet ventilation  
patterns and the required clearances to ensure proper cooling of internal components, See Figure 1.4.  
Always ensure adequate air flow around the cabinet. Do not place objects on top of the  
cabinet, or where they obstruct air vents. Obstructed air vents can cause the system to  
overheat and parts within it to fail.  
Figure 1.4. System Ventilation  
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Chapter 1  
1.3b System Description for DNCP Series 400-CO (PA-8500)  
DNCP Series 400-CO (PA-8500) system combines the Hewlett-Packard PA-RISC PA-8500 microprocessor, system  
features rapid symmetric multiprocessing and continuously available hardware. Designed specifically for the CO  
environment, the system is fully CO-compliant, including support of Zone 4 seismic resilience standards. This system uses  
DC power. The DNCP Series 400-CO (PA-8500) system utilizes the FTX operating system.  
The DNCP Series 400-CO (PA-8500) achieves continuous availability by partnering, or duplexing, two identical online  
components, so that if one fails, its partner continues to operate. Other system components ensure availability by operating  
in standby mode , with one component online, while the other "stands by" to take over operation should its partner fail.  
The DNCP Series 400-CO (PA-8500) must be installed by a qualified service technician, but most of the components are  
customer-maintainable. Its data communications subsystem, based on a Peripheral Component Interconnect (PCI) bus,  
utilizes state-of-the-art PCI cards. Peripherals include T800-series cartridge tape drives, D85X CD-ROM drives, V105  
terminals, and C419/C619 modems, which are described later in this chapter. See Figure 1.5 for an illustration of the  
DNCP Series 400-CO (PA-8500) system installed in a typical computer-room environment. The sections that follow  
describe DNCP Series 400-CO (PA-8500) components.  
Figure 1.5. DNCP Series 400-CO (PA-8500) System in a computer-room environment  
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Chapter 1  
1.3b.1 System Description -- for DNCP Series 400-CO (PA-8500) Cabinet  
Each DNCP Series 400-CO (PA-8500) consists of a single cabinet that houses all major system components. Two sets of  
doors on the front and rear of the cabinet provide access to these components. The following sections describe the cabinet  
components.  
1.3b.1.1 DNCP Series 400-CO (PA-8500) Cabinet: Front Components  
For the components housed in the front of the cabinet, See Figure 1.6, which is also described in the following  
paragraphs.  
Figure 1.6. DNCP Series 400-CO (PA-8500) Cabinet: Front View  
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Chapter 1  
The amber cabinet fault light , located at the top of the cabinet frame, above the doors, illuminates when one or more  
components within the cabinet have failed. (For a more detailed explanation of system status lights, refer to the Appendix.  
Four duplex power supplies are located just below the cabinet fault light: the top two power the ACUs, and the bottom two  
power the PCI card cage bays. To the right of the power supplies are two Alarm Control Units (ACUs). The ACUs control  
the speed of the cabinet fans, monitor the status of components within the cabinet, and control the component status lights.  
One ACU is online, while the other is in standby mode.  
Below the power trays are two disk shelves. Each disk shelf has nine slots, the two leftmost slots are reserved for two disk  
power supply units, the other slots house up to seven 9GB or 18GB Small Computer System Interface (SCSI) disk drives.  
Maximum duplexed storage capacity is 126 GB per disk shelf, 252 GB per DNCP Series 400-CO (PA-8500) cabinet  
(63GB per disk shelf, 126GB per system logical storage).  
Located at the bottom of the cabinet are duplexed logic suitcases. These suitcases house the system's central logic  
functions: the Hewlett-Packard CPUs, memory modules, and console controller, which is the system's central collection  
point for maintenance and diagnostic information.  
If the logic suitcases have a vinyl protective covering on the front, remove the covering once the system cabinet is in place.  
Optional air filters are located below the suitcases, on the front of the disk shelves, and on the front of the DC power  
supply chassis. System air filters must be changed regularly. (Refer to FTX Operating System: DNCP Series 400/400-CO  
(PA-8500) Operation and Maintenance Guide (RXXX) for preventive maintenance instructions.)  
1.3b.1.2 DNCP Series 400-CO (PA-8500) Cabinet: Rear Components  
The rear of the cabinet has two doors that provide access to the components housed in the back of the cabinet. For an  
illustration, See Figure 1.7, which is also described in the following paragraphs.  
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Chapter 1  
Figure 1.7. DNCP Series 400-CO (PA-8500) Cabinet: Rear View  
The top of the cabinet has a cable opening that provides access for routing system power cables and communications  
cables.  
The top of the cabinet frame has an amber cabinet fault light that illuminates when a component within the cabinet has  
failed. (For a more detailed explanation of system status lights, refer to the Appendix  
The top region also contains the power input connectors for the duplexed DC power cables, and the alarm relay connector  
for remote alarm monitoring. Each power cable requires a separate -48V nominal DC electrical source.  
Below the power input region (DC power chassis) are two disk shelves which each contain three cooling fans, a SES (SCSI  
Enclosure Services) unit, a SE-SE (single-ended to single-ended) I/O repeater module and a terminator module.  
Below the disk shelves are two PCI card cages. Each card cage contains seven slots for PCI cards, for a total of 14 PCI  
cards per system. See the PCI-card installation manual for detailed information about a specific PCI card. Each PCI card  
cage has one bridge card that provides the interface between the logic suitcases and the PCI cards. Each bridge card has a  
connector for a PC Memory Card International Association (PCMCIA) flash card, a credit-card-sized EEPROM used to  
boot the operating system.  
Beside each of the PCI card cages is a jack for attaching a grounding strap.  
Four serial ports at the bottom of the cabinet are used to connect the system to the:  
CPU/memory motherboard within each logic suitcase  
system console  
remote console  
Remote Service Network (RSN) modem (Not all systems are connected to the RSN. For an  
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Chapter 1  
explanation of the RSN, refer to FTX System Administrator's Guide: General Services (R455X)  
The bottom of the cabinet also has a cable opening for routing power and communications cables.  
1.3b.1.3 System Ventilation  
Ensure adequate air flow around the system during installation. The system requires two feet of clearance on the front and  
rear of the cabinet, and a minimum of 18 inches of unobstructed area above the top of the cabinet. For cabinet ventilation  
patterns and the required clearances to ensure proper cooling of internal components, See Figure 1.8.  
Always ensure adequate air flow around the cabinet. Do not place objects on top of the cabinet, or where they obstruct air  
vents. Obstructed air vents can cause the system to overheat and parts within it to fail.  
Figure 1.8. System Ventilation  
1.4 Status Lights  
Status lights on individual components enable customers to narrow down a problem to a single failed component. If a  
problem occurs during the system installation, strategically-placed status lights provide assistance in diagnosing the  
problem.  
For more detailed information on system status lights (LEDs):  
Check the labels on the cabinet. They explain the meaning of the cabinet, power supply, PCI and disk LEDs.  
Refer to the Appendix in this manual  
If a red, amber, or yellow light is illuminated and remains lit during the installation process, try reseating the  
component and its partner. If the component still does not come online, refer to Operating System: DNCP Series  
400/400-CO (PA-8500) Operation and Maintenance Guide (RXXX) for further status-light information and  
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Chapter 1  
component troubleshooting procedures.  
1.5 System Peripherals  
The DNCP Series 400/400-CO (PA-8500) can include the peripherals described in the following sections.  
V105 Terminal  
The V105 terminal, which is shipped with most DNCP Series 400/400-CO (PA-8500) systems, is an ASCII  
character-mode terminal that can be configured to operate as a system console to display system error and status  
information. The V105 can also be used as a standard user terminal for communicating with system applications. It is  
available with either an ANSI or PC keyboard. The V105 connects to either the Console (J315) or Auxiliary Console  
(J316) serial port on the rear of the cabinet. For an illustration of the V105 terminal, (See Figure 1.10)  
Figure 1.10. V105 Terminal  
DNCP Series 400/400-CO (PA-8500) systems can also support other terminals as long as they are properly defined within  
the system.  
C419/C619 Modem  
DNCP Series 400/400-CO (PA-8500) systems are connected to the Lucent Customer Assistance Center (CAC) through a  
C419/C619 modem and a dedicated telephone line. The C419/C619 modem is preconfigured for RSN operation and can  
transmit data at 33,600 bps. For an explanation of the RSN, refer to FTX System Administrator's Guide: General Services  
(R455X). For an illustration of the C419/C619 modem, See Figure 1.11.  
Figure 1.11 C419/C619 Modem  
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Chapter 1  
To troubleshoot and replace a failed C419/C619, see FTX Operating System: DNCP Series 400/400-CO (PA-8500)  
Operation and Maintenance Guide (RXXX). For other information on the C419/C619 modem, see the vendor manual  
shipped with the modem.  
Tape and CD-ROM Drives  
DNCP Series 400/400-CO (PA-8500) systems support the T800-series tape and the D85X CD-ROM drives. For  
information about tape drive operation and maintenance, refer to DNCP Series 400/400-CO (PA-8500): Tape Drive  
Operation Guide (R716). For information about CD-ROM drive operation and maintenance, refer to DNCP Series  
400/400-CO (PA-8500): CD-ROM Drive Installation and Operation Guide (R720).  
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Chapter 2  
Chapter 2  
Installing the Core System Components  
After unpacking the system, follow the instructions in this chapter to install the core system components. The core system  
components consist of the cabinet, V105 terminal, C419/C619 modem, and PCI cards. This chapter contains the following  
sections.  
The information in this chapter assumes that the system site has been prepared according to the instructions  
in the DNCP Series 400/400-CO: Site Planning Guide (R454) and unpacked according to the instructions  
in the DNCP Series 400/400-CO (PA-8500): Unpacking Instructions.  
2.1a Installing the Cabinet -- for DNCP Series 400 (PA-8500)  
Install the cabinet by performing the steps in the following sections:  
If routing the power cables from the top of the cabinet, perform the following steps  
If routing the power cables from the bottom of the cabinet, perform the following steps (See Section 2.1a.2  
2.1a.1 Installing the Power Cables (Top Entry)  
Perform the following steps to route the power cables from the top of the system.  
1. Open the cabinet doors.  
2. Verify that the cabinet ground wires are connected from the cabinet frame to the doors.  
3. Make sure that the two MAIN power switches/AC Input breakers on the front of the cabinet are in the off (0)  
position. (See Figure 2.1)  
Figure 2.1. Cabinet Grounding Wires and MAIN Power Switches/AC Breaker  
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Chapter 2  
4. Using a flat-blade screwdriver, remove the cable opening cover from the top of the cabinet (See Figure 2.2).  
Figure 2.2. Removing the Cable Opening Cover  
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Chapter 2  
5. Using the torque wrench, attach the ground cable that is shipped with the system to the back of the system cabinet  
(See Figure 2.3) , being careful not to apply more than 33 inch pounds of torque.  
The ground cable may be attached to the double ground lugs found on either the left or right  
side of the cabinet.  
Figure 2.3. Attaching the Ground Cable (Top of cabinet)  
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Chapter 2  
6. Unpack the two system power cables from one of the cartons shipped with the system. The part number for each  
power cable appears on the cable and on the plastic bag in which the cable is shipped.  
Before connecting a power cable, always shut off both MAIN system power switches/AC input  
breakers on the same side of the cabinet.  
7. Connect each power cable to the cabinet and into a separate AC power source. To connect to the cabinet, plug the  
AC power cable into the AC power cable assembly top right (See Figure 2.4) .  
When routing the power cables through the cable opening at the top of the  
cabinet, be careful not to disconnect the CABINET FAULT light cable.  
Be sure to connect each power cable to a separate AC power source . If they  
are plugged into the same source, a failure at the source will result in a system  
crash.  
8. Using a digital voltmeter (DVM), measure the AC input voltage. Verify that the voltage is within the range of 200  
to 264 AC.  
If the input voltage is not within the specified range, do not proceed to the  
next step. Verify the AC input power source.  
Figure 2.4. Connecting the Power Cables (Top Entry)  
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Chapter 2  
9. Since it is recommended that you limit the times the system is powered up and down, proceed to the system  
console instructions (See Section 2.2 Installing the System Console later in this chapter) before completing Step 10.  
10. Turn on the cabinet MAIN power switches. The cabinet power supply lights are illuminated, indicating that the  
system is receiving power. If the LEDs do not illuminate , check the following:  
incoming power sources  
power cable connections to the power sources and cabinet  
If the power cable or the power source is not the cause of the problem, refer to the FTX Operating System: DNCP Series  
400/400-CO (PA-8500) Operation and Maintenance Guide (RXXX) for further system troubleshooting.  
2.1a.2 Installing the Power Cables (Bottom Entry)  
To route the power cables from the bottom of the system, follow the steps for top entry except:  
it is not necessary to open the cabinet top (Step 4)  
In Step 7, simply let the power cords drop downward in the cabinet rear and go through the bottom of the cabinet.  
2.1b Installing the Cabinet For DNCP Series 400-CO (PA-8500)  
To install the cabinet perform the following steps:  
If routing the power cables from the top of the cabinet, perform the following steps  
If routing the power cables from the bottom of the cabinet, perform the following steps  
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Chapter 2  
Power cables are terminated with a two-hole universal lug. Depending on your site  
requirements, this termination may have to be customized.  
1. Open the cabinet doors.  
2. Verify that the four cabinet ground wires (two front, two rear) are connected from the cabinet frame to the doors.  
3. Make sure that the two MAIN power switches on the front of the cabinet are in the off (0) position. (See Figure 2.5  
).  
Figure 2.5. Cabinet Grounding Wires and MAIN Power Switches  
4. Using the torque wrench, attach the ground cables that are shipped with the system to the back and top of the  
cabinet (See Figure 2.6 and Figure 2.7), being careful not to apply more than 35 to 40 inch pounds of torque.  
For an illustration of a ground cable, see the callouts in Figures 2.6 and 2.7.  
The ground cable may be attached to the double ground lugs found on either the left or right  
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Chapter 2  
side of the cabinet.  
Figure 2.6. Attaching the Ground Cable (Top of Cabinet)  
Figure 2.7. Attaching the Ground Cable (Bottom of Cabinet)  
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Chapter 2  
2.1b.1 Installing the Power Cables (Top Entry)  
Perform the following steps to route the power cables from the top of the system.  
1. Using a flat-blade screwdriver, remove the cable opening cover from the top of the cabinet (See Figure 2.8).  
Figure 2.8. Removing the Cable Opening Cover  
2. Unpack the two system power cables (AW-000955 and AW-000968) from one of the cartons shipped with the  
system. The part number for each power cable appears on the cable and on the plastic bag in which the cable is  
shipped.  
Before connecting a power cable, always shut off the MAIN system power switch on the  
same side of the cabinet.  
3. Connect each color-coded power cable to the cabinet and into a separate DC power source (See Figure 2.9) . To  
connect the power cable to the cabinet, align the red mark on the cord with the red alignment guide at the top of the  
connector. Then, twist the cable clockwise until the red mark is aligned with the alignment guide on the right side  
of the connector.  
When routing the power cables through the cable opening at the top of the cabinet, be careful  
not to disconnect the CABINET FAULT light cable.  
The power cables are usually color-coded (red and blue) to match the color-labeling of the  
power sources at your site.  
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Chapter 2  
Be sure to connect each power cable to a separate DC power source . If they are plugged  
into the same source, a failure at the source will result in a system crash.  
4. Using a digital voltmeter (DVM), measure the DC input voltage by connecting the leads to the input voltage test  
points below the DC input connector. Connect the black lead to the 48V (black) test point; connect the red lead to  
the -48V (red) test point. Verify that the voltage is within the range of -40.5 VDC to -60.0 VDC.  
If the input voltage is not within the specified range, do not proceed to the next step. Verify  
the DC input power source.  
Figure 2.9. Connecting the Power Cables (Top Entry)  
5. Since it is recommended that you limit the times the system is powered up and down, proceed to the system  
console instructions ( See Section 2.2 Installing the System Console later in this chapter) before completing Step 6.  
6. Turn on the cabinet MAIN power switches. The cabinet power supply lights illuminate, indicating that the system  
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Chapter 2  
is receiving power. If the lights do not illuminate, check the following:  
Incoming power sources  
Power cable connections to the power sources and cabinet  
The polarity of the power cables. See Figure 2.10 for power-cable polarity information; for additional electrical  
wiring information, see Appendix A of the DNCP Series 400/400-CO (PA-8500): Site Planning Guide (R454).)  
Figure 2.10. DC Connector Cable/Cabinet End  
If the power cable or the power source is not the cause of the problem, refer to the FTX Operating System: DNCP Series  
400/400-CO (PA-8500) Operation and Maintenance Guide (RXXX) for further system troubleshooting.  
2.1b.2 Installing the Power Cables (Bottom Entry)  
Perform the following steps to route the power cables from the bottom of the system.  
1. Unpack the two power cables (AW-000955 and AW-000968) from one of the cartons shipped with the system. The  
part number for each power cable appears on the cable and on the plastic bag in which the cable is shipped.  
Before connecting a power cable, always shut off both MAIN system power switches.  
Route the power cables up through the cable guides provided on the chassis frame.  
2. Connect each color-coded power cable to the cabinet and into a separate DC power source (See Figure 2.11) . To  
connect the power cable to the cabinet, align the red mark on the cable with the red alignment guide at the top of  
the connector. Then, twist the cable clockwise until the red mark is aligned with the alignment guide on the right  
side of the connector.  
The power cables are color-coded (red and blue) to match the color-labeling of the power sources at your  
site.  
Be sure to connect each power cable to a separate DC power source . If they  
are plugged into the same source, a failure at the source will result in a system  
crash.  
Figure 2.11. Connecting the Power Cables (Bottom Entry)  
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Chapter 2  
3. Using a digital voltmeter (DVM), measure the DC input voltage by connecting the leads to the input voltage test  
points below the DC input connector. Connect the black lead to the 48V (black) test point; connect the red lead to  
the -48V (red) test point. Verify that the voltage is within the range of -40.5 VDC to -60.0 VDC.  
If the input voltage is not within the specified range, do not proceed to the next step. Verify  
the DC power input source.  
4. Since it is recommended that you limit the times the system is powered up and down, proceed to the system  
console instructions (See Section 2.2 Installing the System Console later in this chapter) before completing Step 5.  
5. Turn on the cabinet MAIN power switches. The cabinet power supply lights are illuminated, indicating that the  
system is receiving power. If the lights do not illuminate, check the following:  
Incoming power sources  
Power cable connections to the power sources and cabinet  
The polarity of the power cables. See Figure 2.10 for power-cable polarity information; for additional electrical  
wiring information, see Appendix A of the DNCP Series 400/400-CO (PA-8500): Site Planning Guide (R454).)  
If the power cord or the power source is not the cause of the problem, refer to the FTX Operating System: DNCP  
Series 400/400-CO (PA-8500) Operation and Maintenance Guide (RXXX) for further system troubleshooting,  
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Chapter 2  
2.2 Installing the System Console  
If you are using a V105 terminal as the system console, connect it to the cabinet as described in the following procedure. If  
you are using another terminal as the system console, be sure it is configured with the following parameters.  
VT300/7 terminal emulation  
9600 EIA and auxiliary (Aux) baud rate  
odd parity  
one stop bit  
To install a V105, follow these steps.  
1. Locate the terminal data cable (part number AW-B15201-25) in one of the cartons shipping with the system.  
2. Connect the terminal data cable to the V105 terminal's SES1-EIA port and to the cabinet's Console port (J315),  
(See Figure 2.12). After the cable is connected, tighten its connector screws with a flat-blade screwdriver.  
An additional terminal can be connected to the Auxiliary Console port (J316).  
For additional information, see FTX Operating System: Peripherals  
Configuration (RXXX).  
Figure 2.12. Connecting the V105 Data Cable  
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Chapter 2  
3. Connect the keyboard to the terminal (See Figure 2.13) .  
Keyboard AA-V10501 is an ANSI keyboard and AA-V10502 is a PC keyboard.  
Figure 2.13. Connecting the Keyboard to the V105  
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Chapter 2  
4. Connect the female end of the V105 power cord to the V105 power connector and the male end to an AC wall  
outlet (See Figure 2.14).  
Figure 2.14. Connecting the V105 Power Cord  
5. Power up the V105 by pressing the power switch on the front of the terminal to the ON position (See Figure 2.15) .  
When the V105 passes its self-test, its screen displays PASS . If this does not occur, turn off the V105 power  
switch, check its power cord connection, and then power it up again. If it still does not pass the self-test, refer to the  
FTX Operating System: DNCP Series 400/400-CO (PA-8500) Operation and Maintenance Guide (RXXX) for  
V105 troubleshooting information.  
Figure 2.15. V105 Power Switch  
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Chapter 2  
6. If needed, adjust the screen contrast and brightness using the dials (See Figure 2.16).  
Figure 2.16. V105 Operating Dials  
7. To access the V105's configuration screens, press the <SETUP-F3> key (ANSI keyboard) or hold down the  
<CTRL> key while pressing the <SCROLL-LOCK> key (PC keyboard).  
8. When the V105 displays the setup screen keys, press the < F1 Quick> key. The V105 now displays the Quick  
Setup screen, (See Figure 2.17 ).  
Figure 2.17. V105 Quick Setup Screen  
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Chapter 2  
9. Set the values (See Figure 2.17) . To change the values, press the appropriate "arrow key" (up, down, left right) to  
select a field. Then, press the space bar to select the correct value.  
10. Save these changes and exit the Quick Setup screen by pressing the <F14> key.  
11. The V105 displays the prompt, Save all? (Y/N) . Press the <y> key to save the values selected or the <n> key to  
exit without saving them.  
Customize the V105 in other ways by again pressing the < SETUP-F3> or <CTRL-SCROLL-LOCK> key and then  
selecting the appropriate screen by pressing the associated function key. Set and save the configuration values as described  
in the preceding steps.  
2.3 Installing a C419/C619 Modem for RSN Use  
Install a C419/C619 modem for RSN use by performing the following steps.  
1. Verify that the modem power switch is in the OFF (down) position, (See Figure 2.18).  
Figure 2.18. Modem Power Switch  
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Chapter 2  
2. Some CX19 modems have a dial-up/leased-line switch on the side. If the modem being used does, verify that the  
switch is in the up position (See Figure 2.19) . If the modem does not have this switch, continue with step 3.  
Figure 2.19. Modem Dial-Up/Leased-Line Switch  
3. Locate the 16 DIP switches and verify that they are set CORRECTLY (See Figure 2.20). If necessary, use the end  
of a paper clip, or similar pointed instrument, to change the switch settings.  
Figure 2.20. Modem DIP Switch Settings  
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Chapter 2  
4. Connect one end of the telephone cable to the modem LINE connector and the other end to the telephone wall jack,  
(See Figure 2.21) .  
Figure 2.21. Connecting the Modem Telephone Cable  
5. Connect the RS-232 cable (AW-B10102-25) to the modem EIA RS-232-C connector (See Figure 2.22). Tighten  
the connector screws with a flat-blade screwdriver.  
Figure 2.22. Connecting the RS-232 Cable to the Modem  
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Chapter 2  
6. Attach the adapter (part number JD-025PLG-07) to the RSN port (J317) on the cabinet, then connect the RS-232  
cable to the adapter (See Figure 2.23 ).  
Figure 2.23. Connecting the RS-232 Cable to the System  
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Chapter 2  
7. Connect the power cord to the modem POWER connector and to an AC wall outlet (See Figure 2.24) .  
Figure 2.24. Connecting the Modem Power Cord  
8. Turn the modem power switch to ON (See Figure 2.25) .  
Figure 2.25. Modem Power Switch  
9. After it is powered on, the modem performs a self-test. During the modem self-test, the five speed indicators on the  
front of the modem flash in sequence for approximately four seconds. Then the speed indicator light remains  
steadily lit (the speed for C419 is 14.4, the speed for C619 is 33.6). If this does not happen, check that the AC  
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Chapter 2  
outlet is live. If the AC outlet is live and the modem still does not work, the modem may be faulty.  
10. Verify the operation of the telephone line by plugging a telephone into the modem's PHONE port. Pick up the  
telephone receiver and dial a known working number. If unable to get a connection, this phone line has not been  
activated. Contact the telecommunications contractor or phone company to remedy the problem.  
2.4 Installing PCI Cards and Cables  
The PCI cards ordered with the system are shipped installed in the PCI card cages. To install additional cards and to  
connect cables to the PCI cards, refer to the PCI-card installation guides located in one of the cartons shipped with the  
system.  
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Chapter 3  
Chapter 3  
Installing Tape Drives  
After the core system components are installed, tape drives can be installed. For each U501 SCSI PCI card in the system,  
the following can be configured:  
one stand-alone T800-Series tape or D85X CD-ROM drive (or)  
two daisy-chained T800-Series tape or D85X CD-ROM drives  
This chapter explains how to install tape drives. It contains the following sections:  
For more information about tape drives, refer to the DNCP Series 400/400-CO (PA-8500): Tape Drive Operation Guide  
(R716).  
For CD-ROM installation See DNCP Series 400/400-CO (PA-8500) CD-ROM Drive: Installation and Operation Guide  
(R720)  
3.1. Preparing to Install Tape Drives on a Running System  
Perform the following steps to suspend the SCSI bus to which your tape drive will be connected.  
1. To find the single-ended SCSI PCI-card external port to which you want to attach the tape drive, issue the vsbconf  
command. This command lists all configured virtual SCSI buses (VSBs) and their corresponding single-ended SCSI PCI  
cards.  
vsbconf -L  
VSBs for tape drives are always 2 and 3. The VSB number is the same as PCI card cage number housing the U501 SCSI  
card to which the tape drive is attached.  
In the following example, the SCSI cards are in slot 7 of card cages 2 (2070) and 3 (3070).  
vsbconf -L  
Virtual SCSI Buses:  
Ctrlr 1  
Tray 1  
Ctrlr 2  
Tray 2  
Rt MH  
Switch  
Drain Mst  
0 2 0 7 1  
1 2 0 7 2  
2 20 7 0  
3 30 7 0  
2 0 7 1 3 0 7 1  
2 0 7 2 3 0 7 2  
2 0 7 0  
3 0 7 1 Y N 0  
0 1  
0 1  
0 1  
0 1  
3 0 7 2 Y N  
0
0
0
Y Y  
Y Y  
3 0 7 0  
SCSI Controllers:  
Controller Tray  
Id Trm  
TrmPwr Description  
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Chapter 3  
2 0 7 1  
2 0 7 1  
3 0 7 1  
2 0 7 2  
3 0 7 2  
2 0 7 0  
3 0 7 0  
7 N  
7 N  
7 N  
7 N  
7 Y  
7 Y  
N
N
N
N
Y
Y
DPT SCSI Controller  
DPT SCSI Controller  
DPT SCSI Controller  
DPT SCSI Controller  
DPT SCSI Controller  
DPT SCSI Controller  
3 0 7 1  
2 0 7 2  
3 0 7 2  
2 0 7 0  
3 0 7 0  
For more information about the vsbconfcommand, see the FTX System Administrator’s Guide: General Services  
(R455X).  
2. Issue the /sbin/hwmaint stop command to suspend operation on the target bus.  
If any tape drives are attached to this virtual SCSI bus, this command suspends access to these tape drives.  
In addition, if these tape drives are being used for read or write operations, the hwmaint stopcommand  
terminates these operations even if they are not complete.  
/sbin/hwmaint stop vsb n  
In the preceding example, n is the identifier for the virtual SCSI bus selected in step 1. For example, hwmaint stop  
vsb 3suspends operation on virtual SCSI bus 3.  
3. Issue the /sbin/hwmaint lscommand to verify that the state is now susp(suspended).  
/sbin/hwmaint ls vsb n  
For example:  
/sbin/hwmaint ls vsb 2  
Modelx Description  
State Code Flg Serial BdRv PcRv Slotloc  
- vsb 2  
-
Virtual SCSI Bus 2 susp - --- -  
-
4. Install the tape drive by following the steps in the following sections. After installing the tape drive, refer to the  
section,‘‘Completing the Installation of Tape Drives on a Running System," to restart the SCSI bus.  
3.2 Installing a Stand-Alone T800-Series Tape Drive  
To install a stand-alone T800-Series tape drive, perform the following steps.  
This procedure assumes that the system power is off or that the SCSI bus to which the tape drives will be attached has  
been suspended.  
1. Verify that the shipping cartons contain all the items included with Stand-Alone T800-Series Tape Drives, See  
Items Included with Stand-Alone T800-Series Tape Drives.  
Items Included with Stand-Alone T800-Series Tape Drives  
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Chapter 3  
Part Number  
Description  
AA-T80500  
AA-T80600  
T800-Series Tape Drive  
AW-B12800- XX  
AW-B21000-12  
JC-005TRM  
AX-T60007  
Power Cord  
SCSI Cable  
SCSI Terminator  
Data Cartridge (T805 and T806)  
Autoloader magazine (T806)  
Cleaning Cartridge (T805 and T806)  
AX-T60006  
AX-T60002  
Parts included with the Stand-Alone T800-Series Tape Drive. (See Figure 3.1)  
Figure 3.1. T800-Series Parts: Stand-Alone Tape Drive  
2. Place the tape drive on a table or rack near the rear of the system cabinet.  
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Chapter 3  
3. Verify that the SCSI identification display on the tape drive is set to 0, See Figure 3.2. If it is not, use a paper clip  
(or similar nonmarking, pointed instrument) to press the buttons to increase or decrease the number. Press the  
upper button to decrease the number and the lower button to increase it.  
Do not press the upper button after the number 0 is displayed, or the lower button after 7 is displayed. Attempting to  
move beyond these parameters will break the buttons.  
Figure 3.2. SCSI Identification Display: Stand-Alone T800-Series  
To change the SCSI identification on a T800-series tape drive, first power down the tape drive. The SCSI identification is  
read by the system when the tape drive is powered up. If you change the SCSI identification display after power-up, the  
new identification will not be registered by the tape drive. Any attempts to access the tape drive will result in an  
application error.  
4. Verify that the single-ended SCSI terminator (part number JC-005TRM) is installed in the lower port on the rear of  
the tape drive. If it is not installed, connect it to the lower port and securely clip it to the tape drive, See Figure  
3.3.  
Install only a single-ended SCSI terminator on the tape drive. Do not install a differential terminator, as it  
could damage the tape drive and/or SCSI PCI card.  
Figure 3.3. SCSI Terminator: Stand-Alone T800-Series  
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5. Turn off the power switch on the tape drive, See Figure 3.4.  
Figure 3.4. Powering Down the T800-Series  
6. Connect the SCSI cable (part number AW-B21000-12) to the rear of the tape drive and to the U501 SCSI card in  
slot 7 of either PCI card cage, See Figure 3.5.  
Figure 3.5. SCSI Cable: Stand-Alone T800-Series  
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Chapter 3  
7. Plug the power cord into the rear of the tape drive and into an AC wall outlet, See Figure 3.6.  
Figure 3.6. T800-Series Power Cord  
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Chapter 3  
8. Turn on the T800-Series power switch, See Figure 3.7. The green power light is illuminated as long as the tape  
drive is receiving power. If it is not illuminated, check to be sure the cables are securely connected.  
Figure 3.7. Powering Up the T800-Series  
9. When the system is booted, the tape drive will come online, as described in Chapter 4, "Booting the System."  
3.3 Installing Daisy-Chained T800-Series Tape Drives  
Two T800-series tape drives can be daisy-chained to each U501 SCSI PCI card in the system. To install daisy-chained tape  
drives, perform the following steps.  
This procedure assumes that the system power is off or that the SCSI bus to which the tape  
drives will be attached has been suspended.  
1. Verify that the shipping cartons contain the items included with Daisy- Chained T800-Series Tape Drives, See  
Items Included with Daisy-Chained T800-Series Tape Drives .  
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Chapter 3  
Items Included with Daisy-Chained T800-Series Tape Drives  
Part Number  
Description  
AA-T80500  
AA-T80600  
T800-Series Tape Drive  
AW-B12800- XX  
AW-B21000-12  
AW-B20000  
JC-005TRM  
AX-T60007  
Power Cord  
SCSI Cable  
SCSI Daisy-Chain Cable  
SCSI Terminator  
Data Cartridge (T805 and T806)  
Autoloader magazine (T806)  
Cleaning Cartridge (T805 and T806)  
AX-T60006  
AX-T60002  
Parts included with the Daisy-Chained T800-Series Tape Drive. (See Figure 3.8)  
Figure 3.8. T800-Series Parts: Daisy-Chained Tape Drive  
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Chapter 3  
2. Place the tape drives on a table or rack near the rear of the system cabinet.  
3. Verify that the SCSI identification display on the tape drive that will be connected to the SCSI PCI card is set to 0.  
Verify that the SCSI identification display on the other tape drive in the daisy-chain is set to 1, See Figure 3.9.  
If the identification displays are not set to the appropriate numbers, use a paper clip (or similar nonmarking,  
pointed instrument) to press the buttons that increase and decrease the displayed number. Press the upper  
button to decrease the number, and the lower button to increase it.  
Do not press the upper button after the number 0 is displayed, or the lower button after 7 is  
displayed. Attempting to move beyond these parameters will break the buttons.  
Figure 3.9. SCSI Identification Display: Daisy-Chained T800-Series  
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Chapter 3  
To change the SCSI identification on a T800-series tape drive, first power down the tape  
drive. The SCSI identification is read by the system when the tape drive is powered up. If  
you change the SCSI identification display after power-up, the new identification will not be  
registered by the tape drive. Any attempts to access the tape drive will result in an  
application error.  
4. If the tape drive is the last drive in the daisy chain, verify that the single-ended SCSI terminator (part number  
JC-005TRM) is installed in the lower port on the rear of the tape drive. If the terminator is not installed, connect it  
to the lower port and securely clip it to the tape drive, See Figure 3.10 .  
Install only a single-ended SCSI terminator on the tape drive. Do not install a differential terminator, as it could damage  
the tape drive and/or SCSI PCI card.  
Figure 3.10. SCSI Terminator: Daisy-Chained T800-Series  
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Chapter 3  
If the tape drive is the first drive in the daisy chain and a terminator is connected to either tape-drive port, remove the  
terminator.  
5. Turn off (0) the power switch on each tape drive, See Figure 3.11 .  
Figure 3.11. Powering Down the T800-Series( 2nd)  
6. Connect the SCSI cables, (part number AW-B21000-12) to the rear of the tape drive and to the U501 SCSI card in  
slot 7 of the PCI card cages. See Figure 3.12.  
Figure 3.12. SCSI Cables: Daisy-Chained T800-Series  
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7. Plug the power cords into the rear of each tape drive and into AC wall outlets, See Figure 3.13.  
Figure 3.13. T800-SeriesPower Cord (2nd)  
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Chapter 3  
8. Turn on the power switch on the rear of each tape drive, See Figure 3.14. The green power light on each tape drive  
is illuminated and remains lit as long as the tape drive is receiving power. If the light does not illuminate, check to  
be sure that the power cables are securely connected.  
Figure 3.14. Powering Up the T800-Series (2nd)  
To change the SCSI identification on a T800-Series tape drive, first power down the tape drive. The SCSI identification is  
read by the system when the tape drive is powered up. If you change the SCSI identification display after power-up, the  
new identification will not be registered by the tape drive. Any attempts to access the tape drive will result in an  
application error.  
9. If you installed the tape drives on an offline system, the tape drives will come online when you boot the system.  
3.4 Completing the Installation of Tape Drives on a Running System  
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Chapter 3  
To complete the installation of a tape drive on a running DNCP Series 400/400-CO (PA-8500) system, perform the  
following steps.  
1. Issue the /sbin/hwmaint startcommand to activate the SCSI bus.  
/sbin/hwmaint start vsb n  
In the preceding example, nis the virtual SCSI bus location (either 2 or 3) that you suspended before installing the tape  
drive.  
2. Issue the /sbin/hwmaint lscommand to verify that the state of the VSB is now onln.  
/sbin/hwmaint ls vsb n  
Modelx Description  
State Code Flg Serial BdRv PcRv Slotloc  
- vsb 2  
-
Virtual SCSI Bus 2 onln - --- -  
-
In the preceding example, nis the virtual SCSI bus location, which is usually either 2 or 3.  
3. The system automatically adds the new tape drive. Issue the /sbin/hwmaint ls tapecommand to verify that the  
drive is configured as part of the system. The Modelx and Descriptionfields show the type of tape drive. For  
example, the following output shows an online T805 tape drive located on virtual SCSI bus 3.  
/sbin/hwmaint ls tape  
Modelx Description  
State Code Flg Serial BdRv PcRv Slotloc  
9503 vsb 3 0 0  
t805 4mm DAT Tape Drive onln - --- -  
-
4. Verify that the tape drive is operating properly by issuing a tape-drive operatingcommand such as cpioto copy a small  
file to tape, and then copy the same file from the tape to the /tmpdirectory. The tape-drive operating commands are  
described in the FTX Commands Reference Manual (R460X).  
If the tape drive is not operating properly after performing the previous steps refer to the manuals DNCP Series  
400/400-CO (PA-8500): Tape Drive Operation Guide (R716) for troubleshooting information.  
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Chapter 4  
Chapter 4  
Booting the System  
This chapter describes how to boot the system.  
Boot the system by performing the following steps.  
1. Verify that cabinet components are seated properly by checking that their thumbscrews are fully tightened.  
2. Verify that the flash cards are fully inserted in the bridge cards in slot 0 of each PCI card cage.  
3. Power up the system console.  
4. Initiate the automatic boot process by turning on:  
For DNCP Series 400 (PA-8500) --the MAIN and PCI power switches, See Figure 4.1.  
For DNCP Series 400-CO (PA-8500) -- the MAIN, ACU, and PCI power switches See Figure 4.2.  
Figure 4.1. System Power Switches for the DNCP Series 400 (PA-8500)  
Figure 4.2. System Power Switches for the DNCP Series 400-CO (PA-8500)  
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Chapter 4  
Wait approximately 10 seconds for the system boot to begin. When the system begins to boot, the CABINET  
FAULT and component lights flash on and off. As the booting progresses, the logic suitcase lights are  
illuminated in the sequence listed (See Logic Suitcase Power-Up Light Sequence) .  
Logic Suitcase Power-Up Light Sequence  
Power-UpStage Color  
State  
Off  
Meaning  
Red  
1
2
3
Yellow On  
Green Off  
The logic suitcase is performing its self-test.  
Red  
Off  
Yellow Flashing The master logic suitcase has passed its self-test and is being configured by the system.  
Green Off  
Red  
Off  
Yellow Off  
Green On  
The master logic suitcase and its partner are online and duplexed.  
Stages 1 and 2 should last no longer than five minutes. If they last longer, turn off the system power switches  
and the system console, wait about two minutes, and then turn on the power switches and system console to  
begin the boot process again. If there is still a problem, refer to FTX System Administrator’s Guide:General  
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Chapter 4  
Services (R455X) for instructions on how to perform a manual boot.  
5. As the booting progresses, the system console displays a series of messages similar to the following sample output.  
Continuum Firmware, Version xx.y (G2xx)  
(copyright) 1995-1998 by Ascend Communications, Inc.  
Built: Mon May 7 18:12:11 EST 1999  
All Rights Reserved  
Model type:  
G262  
Total Memory Size:  
Board Revision:  
CPU Configuration:  
Boot Status:  
512Mb  
31  
CPUs in slots 0 and 1  
Booting  
Hit any key to enter manual boot mode, else wait for auto boot.  
If no messages are displayed on the system console, the console data cable may not be securely connected or  
the console may not be properly configured. Check the cable connections and See Chapter 2 for information  
about system console configuration. Then, power down the system, wait about two minutes, and begin the boot  
process again.  
At the conclusion of these messages, the system indicates that it is in single-user mode and prompts you to  
proceed.  
INIT: SINGLE USER MODE  
Type Ctrl-d to proceed with normal startup,  
(or give root password for system maintenance):  
6. Although the system has now successfully booted, check that all of the system components are functioning properly.  
To do this, make sure that:  
All red/yellow LEDs and amber fault lights on the cabinet are off.  
(Illuminated yellow lights are permissible on the PCI card cage with HP-UX)  
All green lights are on.  
If this is not the case, try reseating each red-lit component or refer to the troubleshooting chapter in FTX Continuum Series  
400-CO: Operation and Maintenance Guide (R601X) for more detailed troubleshooting instruction.  
7. Proceed with the normal startup by holding down the <CTRL> key while pressing the <D> key.  
8. The system console prompts you to specify a system start-up mode. Enter the number 2 for multiuser mode.  
ENTER RUN LEVEL (0-6, s or S): 2  
INIT: New run level: 2  
The system is coming up. Please wait.  
The system console displays additional messages followed by the login prompt. Log in as root and enter a new password.  
(Lucent does not define a password for shipped systems.) The system prompts you to reenter the new password and then to  
confirm the password. Record the password so it is available the next time you log in.  
The system is ready.  
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Chapter 4  
Welcome to UNIX System V/PA-RISC Release x.x  
System name: system_name  
Console login: root  
New password:  
Re-enter new password:  
The system displays additional messages followed by the # command line prompt. When you see this prompt, the system has  
successfully booted.  
9. Close the cabinet doors.  
Next, configure the RSN as described in Chapter 5, Configuring the RSN and C419/C619 Modem .  
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Chapter 5  
Chapter 5  
Configuring the RSN and C419/C619 Modem  
This chapter describes how to configure the Remote Services Network (RSN). It contains the following sections.  
Preparing to Configure the RSN  
Configuring the RSN  
Configuring the C419/C619 Modem  
Completing and Verifying Configuration of the RSN  
For more information on how to configure the RSN, see HP-UX Operating System: Fault Tolerant System  
Administration (R1004H-04-ST).  
5.1 Preparing to Configure the RSN  
After logging into the system as root (See Booting the System), perform the following steps to prepare to configure the RSN  
1. Enter the following command to set the password for the user sracsxor sracs. The sracsx or sracs  
login name enables CAC personnel to log in remotely to the system. In particular, the sracsxlogin  
enables the CAC to examine and change values in your system. The sracslogin provides a restricted  
shell that enables the CAC only to examine values in this system.  
passwd sracs  
or  
passwd sracsx  
2. The system prompts you for a password. Enter a new password, and then confirm the password at the  
subsequent prompt.  
New password:  
Re-enter new password:  
3. Record the sracsxor sracsaccount password; you will enter the password in the installation report, as  
described later in this chapter.  
5.2 Configuring the RSN  
Perform the following steps to configure the RSN using the rsnadmin command.  
1. Execute the rsnonscript as shown in the following example. This script enables the RSN to work  
properly.  
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Chapter 5  
/usr/stratus/rsn/bin/rsnon  
This script displays the following message and prompt. Press the <Return> key to continue.  
1. Setting rsn_monitor, rsn_getty, rsndbs to respawn in  
/etc/inittab.  
2. Enabling the rsntrans entry in /var/spool/cron/crontabs/rsn.  
3. If any errors are encountered, no changes are committed.  
Press return to continue or q to quit...  
The script displays the RSN inittabsettings and asks you if they are correct. The settings should be  
correct. Press y followed by the <Return> key to continue.  
**************************************************  
**************************************************  
CHANGING RSN INITTAB SETTINGS.  
Changing settings to respawn  
22,24c22,24  
< rsnd:234:off:/usr/stratus/rsn/bin/rsndbs >/dev/null 2>&1  
< rsng:234:off:/usr/stratus/rsn/bin/rsngetty -r >/dev/null 2>$1  
< rsnm:234:off:/usr/stratus/rsn/bin/rsn_monitor >/dev/null 2>&1  
---  
> rsnd:234:respawn:/usr/stratus/rsn/bin/rsndbs >/dev/null 2>&1  
> rsng:234:respawn:/usr/stratus/rsn/bin/rsngetty -r >/dev/null 2>&1  
> rsnm:234:respawn:/usr/stratus/rsn/bin/rsn_monitor >/dev/null 2>&1  
Are these the proper changes to be made (y/n): y  
The script displays a commented-out line in the file /var/spool/cron/crontabs/sracsand asks  
you if this line should be uncommented. Press y followed by the <Return> key to continue.  
**************************************************  
**************************************************  
CHECKING /var/spool/cron/crontabs/sracs FOR RSNTRANS  
#1,16,31,46 * * * * /usr/stratus/rsn/bin/rsntrans -r1 -s HUB -z  
>/dev/null  
Is this the proper line in /var/spool/cron/crontabs/sracs to  
uncomment? (y/n):y  
If the script completes execution successfully, it displays the following messages.  
RSNTRANS HAS BEEN ENABLED  
/etc/inittab SETTINGS ARE COMMITTED  
RSN IS NOW ON.  
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**************************************************  
**************************************************  
#
2. Enter the /usr/stratus/rsn/bin/rsnadmincommand to display the RSNADMIN MAIN  
MENU .  
RSNADMIN MAIN MENU  
1) list list all database info  
2) local_info local_info menu  
3) port_info port info menu  
4) site_info site info menu  
5) notify_list notify_list menu  
6) mask mask menu  
7) modem_script modem script menu  
8) periodic_call periodic call menu  
Options: [#, command, ? command (help for command), 0 (parent  
menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command:  
At the Command:prompt at the end of the menu, enter the value 2 to select the local_info menu item. For  
example:  
Command: 2  
This displays the menu called LOCAL_INFO MENU .  
3. At the Command: prompt at the end of LOCAL_INFO MENU , enter the value 4 to select the  
bridge_system_pathmenu item. For example:  
LOCAL_INFO MENU  
1) list list all local info  
2) protocol set rsn transfer protocol  
3) site_id site_id menu  
4) bridge_system_path bridge_system_path menu  
5) demo_mode demo_mode menu  
6) fault_time_limit fault time limit menu  
Options: [#, command, ? command (help for command), 0 (parent  
menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command:4  
This displays the menu called BRIDGE SYSTEM PATH MENU .  
4. At the Command:prompt at the end of BRIDGE SYSTEM PATH MENU , enter the value 2 to select  
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the set menu item in order to specify the bridge_system_pathentry. For example:  
BRIDGE SYSTEM PATH MENU  
1) get get current bridge_system_path  
2) set set current bridge_system_path  
Options: [#, command, ?command (help for command), 0 (parent menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command: 2  
The bridge_system_pathentry identifies the NFS mount path of the root directory on the bridge system.  
A bridge system such as the PA-8500 Continuum Series 400 system is attached to an RSN modem. Enter a  
slash (/) at the next prompt. For example:  
Enter new bridge_system_path (enter / if this is the bridge): /  
Database successfully updated  
Hit Return to continue.  
5. Press the <Return> key to save the current or new bridge system path and return to the BRIDGE  
SYSTEM PATH MENU .  
6. Press 0 followed by the <Return> key to return to LOCAL_INFO MENU .  
7. At the Command:prompt at the end of LOCAL_INFO MENU , enter the value 3 to select the site_id  
menu item. For example:  
Command: 3  
This displays the menu called SITE_ID MENU .  
8. At the Command: prompt at the end of SITE_ID MENU , enter the value 2 to select the set menu item  
in order to specify the current site ID. For example:  
SITE_ID MENU  
1) get get current site_id  
2) set set current site_id  
Options: [#, command, ?command (help for command), 0 (parent menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command:2  
Stratus recommends using the site ID specified on the Sales Order pick list which arrived with the shipping  
carton. See the bolded portion of the example below:  
Report Name: COP-3136  
Report Date: 05/15/97  
S.O. PICKLIST  
=============  
Page: 1  
BILL OF MATERIAL EFFECTIVITY DATE: 05/15/97  
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ORDER NO.: US 113370  
SHIP-TO: 01923  
BILL-TO: 01932  
Company X  
55 Main Blvd.  
SID TECH: J. Bond  
SHIPPER:XXX Inc.  
Company X  
55 Main Blvd.  
Boston, MA 02116  
USA  
Boston, MA 02116  
USA  
CPU SER:60029 RAKIT:N  
INSP BY:M.Jones  
SITE SR: N/A___Y___N__  
ATTN:  
ATTN:PAM SMITH  
PHONE:X2502  
PHONE:  
SITE-ID: comp_ux  
ORDER STATUS: APPROVED  
If necessary, a different site ID of up to 16 characters can be specified. For example:  
Enter new site_id: cac_ux  
If the site ID is changed, immediately inform the CAC. The CAC needs the site  
ID to uniquely identify this site. If the CAC does not know this site ID, the CAC  
hub will be unable to properly track communications from the site and may lose  
the installation report for this site.  
1. The letters _ux must end the site ID so that the CAC knows that this is  
a system running the HP-UX operating system.  
Record the site ID; enter the site ID in the installation report, as described later in this chapter. If a site ID,  
different from the one listed in the pick list, was used, it may not be unique. If so, the CAC will contact this  
site and request a change.  
Press the <Return> key to update the database. The command displays the following messages.  
Database successfully updated.  
Hit Return to continue.  
Press the <Return> key to return to SITE_ID MENU . Enter a slash (/ ) and then press the <Return> key  
to return to the RSNADMIN MAIN MENU .  
9. At the Command: prompt at the end of RSNADMIN MAIN MENU , enter the value 4 to select the  
site_info menu item. For example:  
Command:4  
This displays the menu called SITE_INFO MENU .  
10. At the Command: prompt at the end of SITE_INFO MENU , enter the value 2 to select the  
hub_phone_1 menu item. For example:  
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SITE_INFO MENU  
1) list list all site_info  
2) hub_phone_1 hub_phone_1 menu  
3) hub_phone_2 hub_phone_2 menu  
4) rsn_password set rsn_password  
5) nighttime nighttime menu  
6) cleanup cleanup menu  
7) scs_in_use scs_in_use  
Options: [#, command, ?command (help for command), 0 (parent menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command:2  
This displays the menu called HUB_PHONE_1 MENU .  
11. At the Command: prompt at the end of HUB_PHONE_1 MENU , enter the value 2 to select the set  
menu item in order to specify the hub phone 1entry. The hub phone 1entry specifies the RSN  
phone number of the supporting Stratus hub. If you enter a different hub number than the one  
which should be used, the CAC will contact the site after it receives the installation report. In the  
following example, the North American hub number is specified.  
HUB_PHONE_1 MENU  
1) get get current hub phone 1 setting  
2) set set hub phone 1  
Options: [#, command, ?command (help for command), 0 (parent menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command:2  
Enter new hub phone 1: 18008515125  
Database successfully updated  
Hit Return to continue.  
If errors occur at this point, you did not start the RSN with the  
/usr/stratus/rsn/bin/rsnoncommand before you started  
rsnadmin. You will exit RSNADMIN with the error below:  
Command:4 "site_info" is not valid when rsndbs is  
not running.  
rsnadmin: Unable to access rsn database server.  
system error: No such file or directory  
Exiting...rsnerrno: (313); errno: (2).  
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To recover from the error, start RSN by executing the /usr/stratus/rsn/bin/rsnon  
command at the operating system #prompt. Then execute the  
/usr/stratus/rsn/bin/rsnadmincommand to display the RSNADMIN MAIN MENU .  
Enter 4 to display the SITE_INFO MENU . You can now set the hub phone number by entering 2  
at the Command:prompt.  
If you do not have a direct outside telephone, have one installed as soon as possible. You can route hub  
calls through a PBX, but this may cause the following problems:  
Data loss  
An unstable connection  
Inability of your module to contact the hub with problem reports  
Inability of the CAC to dial in to your system after you report problems  
In order to send the installation report, you can route the RSN calls through PBX, but you risk all of the  
above problems over the long term unless a direct line is installed. If you do route RSN calls through a  
PBX, set the hub number so that it dials the proper prefix, followed by a comma and a numeral one (9,1;  
99,1; or 8,1; etc.), to wait for an outside line dial tone. For example:  
Command:2  
Enter new hub phone 1: 9,18008515125  
Database successfully updated  
Hit Return to continue.  
Press the <Return> key to save the new hub phone number. Press 0 followed by the <Return> key to  
return to SITE_INFO MENU .  
12. At the Command: prompt at the end of SITE_INFO MENU , enter the value 4 to select the RSN  
password menu item. For example:  
Command: 4  
The system then prompts you to enter an RSN password. The rsn_passwordvalue enables the  
supporting hub to remotely service your machine. Note that the RSN password can contain only numbers  
and letters.  
Enter new rsn_password: rsn4321  
Database successfully updated  
Hit Return to continue.  
Record the RSN password; you will need to enter the password in the installation report, as described  
later in this chapter.  
Press the <Return> key to save the new RSN password. Enter a slash (/ ) and then press the <Return> key  
to return to RSNADMIN MAIN MENU .  
13. At the Command: prompt at the end of RSNADMIN MAIN MENU , enter the value 5 to select the  
notify_list menu item. The notify list enables you to specify who should receive mail or messages  
when the RSN encounters any problems or if there is unsolicited incoming RSN modem traffic (for  
example, when a supporting hub calls your site). For example:  
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Command: 5  
This displays the menu called NOTIFY_LIST MENU .  
14. At the Command: prompt at the end of NOTIFY_LIST MENU , enter the value 4 to select the  
add_bothmenu item to add your login name or the system administrator's login name to the list.  
For example:  
NOTIFY_LIST MENU  
1) list list the notify list  
2) add_mail add user for mail notify  
3) add_message add user for message notify  
4) add_both add user for both types of notification  
5) remove_user remove user from list  
Options: [#, command, ?command (help for command), 0 (parent menu),  
/ (goto main menu), q (quit rsnadmin)]  
Command:4  
If you do not know which users you want to add, you can change the notify list  
later.  
The system then prompts you to enter a user to the notify list. Specify a login name. The login name  
should not contain any spaces.  
Enter user: root  
Press the <Return> key to save the login name in the notify list.  
1. Enter qto exit the rsnadmincommand.  
5.3 Configuring the C419/C619 Modem  
Perform the following steps to configure the C419/C619 modem.  
1. If you did not initialize the C419/C619 modem when you installed the modem hardware, activate it now.  
(If the modem is not connected to your system, See Installing a C419/C619 Modem for RSN Use.)  
2. Before executing rsninitmodem, execute the rsnoffscript as follows.  
/usr/stratus/rsn/bin/rsnoff -qa  
Press the <Return> key to continue. Using the -a option stops all RSN processes, including rsndand  
rsn_monitor. Using the -qoption causes rsnoffnot to prompt you.  
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3. Execute the following script to configure the C419/C619 modem. For more information on the  
rsninitmodemscript, see the rsninitmodemman page.  
/usr/stratus/rsn/bin/rsninitmodem  
The script displays the following messages as it configures the modem.  
Wait ...  
..............................................  
Verifying ..................  
Saving ....  
/usr/stratus/bin/rsninitmodem: Done  
5.4 Completing and Verifying Configuration of the RSN  
Perform the following steps to complete and verify the configuration of the RSN  
1. To complete the configuration of the modem, execute the rsn_setupscript as shown in the following  
example.  
/usr/stratus/rsn/bin/rsn_setup  
This script verifies that the RSN setup is correct and displays the following message:  
rsn_setup: completed successfully  
If the script displays error messages, take corrective actions as indicated by the script.  
2. To verify the configuration, you must first make sure the RSN is disabled by issuing the rsnoffscript  
as shown in the following example.  
/usr/stratus/rsn/bin/rsnoff  
Press the <Return> key to continue. The script displays the /etc/inittabsettings and asks you if  
they are correct. The settings should be correct. Press the letter y followed by the <Return> key to  
continue. The script displays a line from the file /var/spool/cron/crontabs/rsnand asks you if  
this line should be commented out. Press the letter y followed by the <Return> key to continue. If the  
script completes execution successfully, it displays the following messages:  
RSNTRANS HAS BEEN DISABLED  
/etc/inittab SETTINGS ARE COMMITTED  
RSN IS NOW OFF  
3. To finish verifying the configuration, execute the rsnonscript as shown in the following example. This  
script enables the RSN to work properly.  
/usr/stratus/rsn/bin/rsnon  
This script displays the following message and prompt. Press the <Return> key to continue.  
1. Setting rsn_monitor, rsn_getty, rsndbs to respawn in  
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/etc/inittab.  
2. Enabling the rsntrans entry in /var/spool/cron/crontabs/rsn.  
3. If any errors are encountered, no changes are committed.  
Press return to continue or q to quit...  
The script displays the RSN inittabsettings and asks you if they are correct. The settings should be  
correct. Press y followed by the <Return> key to continue.  
**************************************************  
**************************************************  
CHECKING RSN INITTAB SETTINGS  
Changing settings to respawn  
22,24c22,24  
< rsnd:234:off:/usr/stratus/rsn/bin/rsndbs >/dev/null 2>&1  
< rsng:234:off:/usr/stratus/rsn/bin/rsngetty -r >/dev/null 2>&1  
< rsnm:234:off:/usr/stratus/rsn/bin/rsn_monitor >/dev/null 2>&1  
---  
> rsnd:234:respawn:/usr/stratus/rsn/bin/rsndbs >/dev/null 2>&1  
> rsng:234:respawn:/usr/stratus/rsn/bin/rsngetty -r >/dev/null 2>&1  
> rsnm:234:respawn:/usr/stratus/rsn/bin/rsn_monitor >/dev/null 2>&1  
Are these the proper changes to be made (y/n): y  
The script displays a commented-out line in the file /var/spool/cron/crontabs/sracsand asks  
you if this line should be uncommented. Press y followed by the <Return> key to continue.  
**************************************************  
**************************************************  
CHECKING /var/spool/cron/crontabs/sracs FOR RSNTRANS  
#1,16,31,46 * * * * /usr/stratus/rsn/bin/rsntrans -r1 -s HUB -z  
>/dev/null  
Is this the proper line in /var/spool/cron/crontabs/sracs to  
uncomment? (y/n): y  
If the script completes execution successfully, it displays the following messages.  
RSNTRANS HAS BEEN ENABLED  
/etc/inittab SETTINGS ARE COMMITTED  
RSN IS NOW ON.  
**************************************************  
**************************************************  
#
4. Execute the following script to make sure that you have connected to the hub.  
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Chapter 5  
/usr/stratus/rsn/bin/rsntry  
The script calls the hub telephone number you specified with rsnadmin and attempts to verify the  
connection. If the script concludes with a success message, the RSN is installed and configured correctly.  
The system then displays the root prompt. You can now prepare and send the installation report.  
/usr/stratus/rsn/bin/rsntrans -r1 -sHUB -z -f -x0  
waiting for connect message.....  
16:49:56 C connected after 1 attempt(s) ====================  
16:49:57 T line_swap  
16:49:58 R line_swap  
16:49:58 T master done with conversation  
16:49:58 Conversation Complete: SUCCEEDED  
#
If the hub telephone number for your region does not work, first check to see if the phone line has a dial  
tone. Also check the hub_phone_1 value in the RSNADMIN database and make sure that it is correctly  
entered.  
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Chapter 6  
Sending the Installation Report  
After the RSN is configured , an installation report must be prepared and sent to the CAC. The installation report provides  
valuable information that enables the CAC to support the site and track product quality issues. This chapter contains the following  
sections.  
6.1 Preparing an Installation Report  
Perform the following steps to prepare the installation report.  
Although the use of the name Stratus is retained throughout the scripts, the installation reports are to be sent to Lucent.  
1. Execute the install_reportscript as shown in the following example.  
/sbin/install_report  
The script first displays general instructions for completing the installation report.  
*** Please read the following completely before proceeding ***  
It is important that you take a moment to fully complete the following  
install report questions. The data will be used to update Customer Service  
databases in support of your site and provide product quality information.  
Once the report is complete options will be provided to send the report to  
Stratus or a Distributor/VAR. An alternate option to save the report to a  
file for future use is provided.  
The options to send the report use either the Remote Service Network (RSN) or  
Internet mail which require the following to work.  
Options  
RSN  
Internet mail - Operational Internet connection.  
- `sendmail' configured for Internetwork mail.  
- Hardware installed & configured. RSN operational.  
Note: abort program = ^C, character erase = ^H or backspace key,  
line kill = ^U  
2. The script then displays a prompt that asks if you want to continue with the installation report. Enter y and press the <Return>  
key to complete the report, or enter n and press the <Return> key to exit the script.  
Do you want to continue with the install report (yes/no)? y  
3. If y is entered at the prompt in step 2, a prompt asks whether a system installation or a system upgrade has been performed.  
Enter 1 for system installation. For example:  
(FTX Customer Installation Reporter - Rev 2.3)  
Select the type of installation that was performed.  
(1) System Installation.  
(2) Upgrade to an existing system.  
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Chapter 6  
Enter Selection (1 2): 1  
4. A prompt asks for verification of the system site ID. The default site ID is the same as the site ID on the S.O. (Sales Order) pick  
list which arrived with the shipping carton (shown in bold in the example below).  
Report Name: COP-3136  
S.O. PICKLIST  
Page:  
1
Report Date: 05/15/99  
=============  
BILL OF MATERIAL EFFECTIVITY DATE: 05/15/99  
US 113370  
ORDER NO.:  
SHIP-TO:  
Bond  
01923  
BILL-TO: 01932  
SID TECH: J.  
Company X  
Company X  
55 Main Blvd.  
55 Main Blvd.  
SHIPPER: XXX  
Inc.  
Boston, MA 02116  
USA  
Boston, MA 02116  
USA  
CPU SER:60029 RA  
KIT:N  
INSP BY:M.Jones  
SITE SR:  
N/A___Y___N__  
ATTN:PAM SMITH  
ATTN:  
PHONE:X2502  
PHONE:  
SITE-ID: comp_x  
ORDER STATUS: APPROVED  
Verify this site ID. If this is the same site ID value specified with the rsnadmincommand, as described in the Configuring the  
RSN section of Chapter 5, press the <Return> key.  
(FTX Customer Installation Reporter - Rev 1.0)  
Installation of a Stratus Module  
Verify the Site id & System node name currently set on the system.  
(If correct, press <return> or enter correct name).  
System site id = "comp_x":  
5. When the <Return> key is pressed, a prompt asks for verification of the system node name. The default node name is the same  
as the site ID. To verify the node name, press the <Return> key. A different node name can be entered and saved by pressing the  
<Return> key. If a different node name is entered, log in as superuser when completing the installation report, and change the  
actual node name value with the uname -Scommand.  
6. When the <Return> key is pressed, prompting occurs, one field at a time, for additional information about the site. After a field  
is completed, press the <Return> key to move to the next field.  
Company:  
Street address:  
Lucent Technologies  
55 Fairbanks Blvd  
City:  
State or Country:  
Marlboro  
MA  
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Chapter 6  
Zip:  
01752  
The script then prompts you to enter the sales order number.  
Sales Order Number: 113370  
Find the order number (ORDER NO) on the picklist, as shown in bold below.  
Report Name: COP-3136  
Report Date: 05/15/99  
S.O. PICKLIST  
=============  
Page: 1  
BILL OF MATERIAL EFFECTIVITY DATE: 05/15/99  
ORDER NO.: US 113370  
SHIP-TO:  
01923  
BILL-TO:01932  
Company X  
SID TECH: J. Bond  
SHIPPER: XXX Inc.  
Company X  
55 Main Blvd.  
Boston, MA 02116  
USA  
55 Main Blvd.  
Boston, MA 02116  
USA  
CPU SER:60029 RA KIT: N  
7. The script then prompts you to enter the CPU (cabinet) serial number. Find the CPU serial number (CPU SER)on the picklist  
(see this number bolded in sample picklist below) or on a bar code sticker on the rear of the cabinet. (See Figure 6.1)  
Report Name: COP-3136  
Report Date: 05/15/99  
S.O. PICKLIST  
=============  
Page:  
BILL OF MATERIAL EFFECTIVITY DATE: 05/15/99  
ORDER NO.: US 113370  
SHIP-TO:  
01923  
BILL-TO:01932  
Company X  
SID TECH: J. Bond  
Company X  
55 Main Blvd.  
Boston, MA 02116  
USA  
55 Main Blvd.  
SHIPPER: XXX Inc.  
Boston, MA 02116  
USA  
CPU SER:60029 RA KIT: N  
Figure 6.1. Cabinet Part Number and Serial Number  
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Chapter 6  
8. The script also prompts you to enter the following information.  
System Administrator:  
System Admin Phone No.:  
Installer:  
Beth Smith  
1-508-999-9898  
Beth Smith  
Total Install Hours:  
5
Is the RSN installed (yes/no)? y  
User Name for CAC Access:  
beths  
9. The script then prompts you to enter the password for the CAC user specified when the RSN was configured. For more  
information, See Configuring the RSN and C419/C619 Modem.  
Password for CAC User:  
beths  
10. The script then prompts you to enter the RSN password specified when the RSN was configured . For more information, See  
Configuring the RSN and C419/C619 Modem.  
RSN Password  
(press <return>, if not set): (your password)  
Modem Phone Number  
(Include area/country code): (your modem phone number)  
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Chapter 6  
11. The script then asks seven yes/no questions about your experience with the installation process. After entering y (yes) or n (no)  
in response to a question, press the <Return> key to move to the next question.  
Although the use of the name Stratus is retained throughout the scripts, the references below pertain  
to Lucent.  
** Answer the following 7 yes/no questions to complete the data entry  
portion of the install report. **  
Was your Stratus system delivered when expected (yes/no)?  
Did the hardware, software, and documentation received match  
your order (yes/no)?  
Were you able to properly prepare your environment using the Stratus  
supplied Site Preparation documentation (yes/no)?  
Were you able to successfully install your system by utilizing the  
Stratus supplied product Installation documentation (yes/no)?  
Were there any hardware installation problems (yes/no)?  
Were there any software installation problems (yes/no)?  
Would you like to add any general comments (yes/no)?  
12. If you answered y (yes) to the final question in step 11, the script prompts you for your comments. Please enter your name after  
your comments so that Lucent can contact the site if necessary. After the final comment, press the <Return> key, enter a dollar  
sign ( $ ) on the new line, and then press the <Return> key again.  
Enter general comments now.  
(To end input, enter a line containing just a `$', then <return>).  
The installation went well.  
(your name) <Return>  
$ <Return>  
When you enter the dollar sign ( $), the script indicates that the report is complete.  
End of interactive data input.  
Creating the Install Report ...  
Report Complete!  
13. The script then prompts you to specify where to send the installation report. After entering a selection (1, 2, or 3), press the  
<Return> key.  
The following are the options available for providing Stratus  
or a Distributor/VAR with an install report.  
(1) Send via RSN to regional support HUB.  
(Note: RSN must be installed)  
(2) Mail via Internet.  
(Note: Access to the Internet is required)  
(3) Save to file in /tmp.  
Enter Selection (1 2 3):  
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]
Chapter 6  
14. After a method is chosen, refer to the next section, "Sending an Installation Report to the CAC," for report-sending  
instructions.  
6.2 Sending an Installation Report to the CAC  
The following sections, Sending the Installation Report Via the RSN , Sending the Installation Report Via the Internet , and  
Saving the Installation Report to a Temporary File, describe methods for sending the installation report to the CAC.  
A version of the installation report is always automatically saved in the /tmp  
directory. The contents of the /tmpdirectory are deleted by certain programs each  
time the system reboots. To permanently save the installation report, move it to a  
secure directory; since the report contains password information.  
6.2.1 Sending the Installation Report Via the RSN  
If the value 1 is specified on the install_reportscript to send the installation report to a Lucent CAC hub via the RSN, the  
script displays the following information.  
Enter Selection (1 2 3): 1  
Queueing Install Report on RSN to be sent to Support HUB....  
Queueing Complete!  
Creating a permanent copy of the temporary install report /tmp/IRF2222 as  
/tmp/INRP0123:0916.  
** Install Report Process Finished **  
The installation is now complete.  
6.2.2 Sending the Installation Report Via the Internet  
If the value 2 is specified on the install_reportscript to send the installation report to a Lucent CAC hub via the Internet,  
the script displays the following prompt. Specify the number that corresponds to the site location.  
Enter Selection (1 2 3): 3  
Mail is based on location of system being installed.  
Location options:  
(1) Europe/Middle East/Africa  
(2) Asia/Far East/Australia/Oceania  
(3) North, Central, and South America  
(4) User specified mail address  
Enter Selection (1 2 3 4): 3  
Sending Mail ....  
Mailing Complete!  
Creating a permanent copy of the temporary install report /tmp/IRF2232 as  
/tmp/INRP0123:0925.  
** Install Report Process Finished **  
The installation is now complete.  
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Chapter 6  
6.2.3 Saving the Installation Report to a Temporary File  
In situations where the installation report must be sent at a later date via the RSN or Internet, or if the contents of the report to  
CAC personnel are read during a voice telephone call, specify the value 3 on the install_reportscript to save the installation  
report to a temporary file. The script displays the following information.  
A version of the installation report is always automatically saved in the /tmp  
directory. The contents of the /tmp directory are deleted by certain programs each  
time the system reboots. To permanently save the installation report, move it to a  
secure directory; since the report contains password information.  
Enter Selection (1 2 3): 3  
Copying temporary install report /tmp/IRF2383 to /tmp/INRP0123:0930.  
** Install Report Process Finished **  
When the installation report is sent to the CAC, the installation is complete.  
6.3 Sample Installation Report  
This section provides a sample installation report generated by the install_reportscript.  
(FTX Customer_Installation_Reporter - Rev 2.3)  
Installation of a Lucent Module at: Lucent Technologies Inc  
Date of Install Report:=========> Wed May 14 09:20:46 EST 1999  
Type of Installation:===========> Installation  
Product Installed:==============> Module  
Site_Id:========================> cac_ux  
System/Module Name:=============> cac_ux  
Company:========================> Lucent Technologies Inc.  
Address:========================> 55 Fairbanks Blvd  
City:===========================> Marlboro  
State or Country:===============> MA  
Zip:============================> 01752  
Sales Order Number:=============> 113370  
Module Serial Number:===========> 60029  
System Administrator:===========> Joe Smith  
System Admin Phone No.:=========> 1-999-767-9898  
Installed by:===================> Joe Smith  
Total Install Time:=============> 5  
HP-UX Release===================>11.00.01  
Model Type:=====================> 412  
Chassis Type:===================> 4 Slot  
RSN Installed: =================> YES  
User Name for CAC Access:=======> sracsx  
Password for CAC User:==========> cacpolo  
RSN Password (`NONE'= Not Set):=> cacpolo  
Modem Phone Number:=============> 1-999-767-5342  
Was your Stratus system delivered when expected? ==> YES  
Did the hardware, software, and documentation received match  
your order? ==> YES  
Were you able to properly prepare your environment using the  
Stratus supplied Site Preparation documentation? ==> YES  
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Chapter 6  
Were you able to successfully install your system by utilizing  
the Stratus supplied product Installation documentation? ==> YES  
Were there any hardware installation problems? ==> NO  
Were there any software installation problems? ==> NO  
Additional Comments (optional):  
We have a fairly simple configuration and the installation went  
quite smoothly.  
Beth Smith  
System Hardware Configuration:  
Modelx  
Description  
State Code  
Flg  
Serial BdRv  
PcRv Slotloc  
E258  
Continuum 4-slot C/0  
- -  
GBus  
bu  
GBus A  
ba  
GBus B  
bb  
Suitcase 0  
sc0  
Suitcase 1  
sc1  
Console Controller  
cc 0  
Console Async Port  
cc 0 0  
RSN Async Port  
cc 0 1  
Secondary Async Com  
cc 0 2  
Calendar Clock  
cc 0 5  
Cabinet RS-485 Bus  
cc 0 8  
Console Controller  
cc 1  
Calendar Clock  
cc 1 5  
Cabinet RS-485 Bus  
cc 1 8  
PA-RISC 96/2x360 CPU/ onln  
0
Physical CPU  
0 0  
Physical MEM/2*128M  
0 1  
Physical CPU  
0 2  
PA-RISC 96/2x360 CPU/ onln  
1
Physical CPU  
1 0  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
26  
43  
-
16  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
e59400  
15  
-
onln  
onln  
onln  
ofln  
onln  
ofln  
stby  
onln  
ofln  
0
0
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
e59400  
0
0
15  
-
-
-
-
-
-
-
-
g27200  
34  
-
10211  
31  
-
onln  
onln  
onln  
-
-
-
-
M704  
-
-
-
-
10189  
-
-
g27200  
31  
-
34  
-
-
onln  
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]
Chapter 6  
M704  
Physical MEM/2*128M  
1 1  
Physical CPU  
1 2  
PCI Bridge Board  
2
PCI Bus 0  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
stby  
stby  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
onln  
stby  
stby  
onln  
onln  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
-
-
-
-
-
-
-
-
-
0
-
0
-
-
-
k13800  
10992  
57  
-
-
-
2 0  
-
PCI Physical Bus  
2 0 pci 0  
PCI Physical Bus  
2 0 pci 1  
PPEC Bridge Cntrllr  
2 0 0  
20MB Centen Flash C  
2 0 0 0  
10/100Mbps Ethernet  
2 0 2  
Ethernet( 10 Mbps)  
2 0 2 0  
SCSI Ctlr (W/SE)  
2 0 7  
SCSI port 0  
2 0 7 0  
Logical SCSI Cab 0  
2 0 7 0 cab  
SCSI Port 1  
2 0 7 1  
Logical SCSI Cab 1  
2 0 7 1 cab  
SCSI Port 2  
2 0 7 2  
Logical SCSI Cab 2  
2 0 7 2 cab  
PCI Bridge Board  
3
-
-
-
-
-
pci  
0
0
e525  
u51000  
-
-
-
0
0
-
-
u50100  
42-000668  
0
OST1  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
k13800  
10163  
31  
-
-
-
-
-
0
-
-
PCI Bus 0  
-
3 0  
-
PCI Physical Bus  
3 0 pci 0  
PCI Physical Bus  
3 0 pci 1  
PPEC Bridge Cntrllr  
3 0 0  
20MB Centen Flash C  
3 0 0 0  
SCSI Ctlr (W/SE)  
3 0 7  
SCSI Port 0  
3 0 7 0  
Logical SCSI Cab 0  
3 0 7 0 cab  
SCSI Port 1  
3 0 7 1  
Logical SCSI Cab 1  
3 0 7 1 cab  
SCSI Port 2  
3 0 7 2  
-
-
-
-
-
pci  
e525  
u50100  
0
0
-
-
42-000191  
0
-
-
-
-
-
-
OST1  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Logical SCSI Cab 2  
3 0 7 2 cab  
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Chapter 6  
-
Virtual SCSI Bus 0  
vsb 0  
Virtual SCSI Tray  
vsb 0 0  
18GB SCSI Disk Drive  
vsb 0 0 0  
Virtual SCSI Tray  
vsb 0 1  
onln  
-
-
---  
---  
-
-
0
-
-
-
-
-
0
d84200  
onln  
-
---  
---  
---  
12749  
-
0016  
-
-
-
0
0
d84200  
18GB SCSI Disk Drive  
vsb 0 1 0  
onln  
-
12544  
-
0016  
-
Virtual SCSI Cab 0  
vsb 0 cab  
Virtual SCSI Bus 1  
vsb 1  
Virtual SCSI Tray  
vsb 1 0  
-
-
-
-
---  
---  
---  
-
-
-
0
-
-
onln  
-
-
-
-
0
-
d84200  
18GB SCSI Disk Drive  
vsb 1 0 0  
Virtual SCSI Tray  
vsb 1 1  
18GB SCSI Disk Drive  
vsb 1 1 0  
onln  
-
---  
---  
---  
12762  
-
0016  
-
-
-
0
0
-
d84200  
onln  
-
12405  
-
0016  
-
Virtual SCSI Cab 1  
vsb 1 cab  
Virtual SCSI Bus 2  
vsb 2  
Virtual SCSI Tray  
vsb 2 0  
4mm DAT Tape Drive  
vsb 2 0 0  
Virtual SCSI Cab 2  
vsb 2 cab  
Virtual SCSI Bus 3  
vsb 3  
Virtual SCSI Cab 3  
vsb 3 cab  
ACU Cabinet  
cab 0  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
-
-
0
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
0
-
-
-
-
-
-
-
-
-
-
-
-
-
5
5
4
-
-
onln  
-
-
-
-
t80500  
onln  
9503  
-
-
-
-
onln  
-
-
-
-
cab  
-
-
e25500  
ACU  
-
-
cab 0 acu 0  
ACU  
cab 0 acu 1  
Disk Tray  
cab 0 tra 0  
Disk Tray  
cab 0 tra 1  
Tray Fan  
cab 0 trfn  
Tray Fan  
cab 0 trfn  
Tray Fan  
cab 0 trfn  
Tray Fan  
cab 0 trfn  
PCI Power  
cab 0 pwr 0  
PCI Power  
cab 0 pwr 1  
Disk Power  
e25500  
-
d820  
-
d820  
-
e611  
-
e611  
-
e611  
-
e611  
-
p272  
-
-
-
-
-
-
-
-
-
p272  
-
p271  
-
-
-
cab 0 dps 0  
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Chapter 6  
p271  
Disk Power  
-
-
-
-
-
-
---  
---  
---  
-
-
-
4
-
-
-
-
-
cab 0 dps 1  
Main breaker  
cab 0 mps 0  
Main breaker  
cab 0 mps 1  
p274  
p274  
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]
Appendix - Fault Isolation  
Appendix A.  
Fault Isolation  
This section contains information used to troubleshoot faults in the system.  
It contains the following subsections:  
Component Status LEDs  
System Error Log  
A.1 Component Status LEDs  
A.1.1 General LED information  
LEDs can be in a three color arrangement, a two color arrangement or a single light.  
General explanations or these categories follow  
A.1.1.1 Three Color LED Arrangements  
Most component status LEDs are grouped in threes, they are in a traffic-light configuration  
(red on top, yellow in the middle, green on the bottom).  
Generally, when a status light is illuminated, it indicates one of the following conditions*:  
A red light indicates that the component is not functioning properly. In most cases, the component is broken and  
needs to be replaced.  
A yellow light indicates that the component is simplexed--that is, operating without a partner. Do not remove this  
component. The yellow light is illuminated when the component is in the process of configuring itself with its  
partner or when its partner has failed. Yellow LEDs can also indicate that a component is performing a self-test.  
In most cases, removing a yellow-lit part from the system causes its function to be suspended  
(except in the PCI card cage on HP-UX systems).  
A green light indicates that the component is operating properly  
* For the DNCP Series 400 (PA-8500), the Tray 1 Rectifier LED configuration is green/green/red, as explained in section  
A.2.1.2a  
A given status LED can also flash or remain steadily lit in combination with another status LED to indicate other  
operating conditions, such as system power-up.  
A.1.1.2 Two Color LED Arrangements  
The disk drives and disk power supplies in the disk shelf (PSU0 and PSU1) have only two LEDS, red and green. When a  
status light is illuminated, it indicates one of the following conditions:  
a red and green light indicates a fault with the disk power supply.  
a red light indicates a fault with the disk drive.  
a green light on the PSU indicates that the system is operating properly.  
a flashing green light on the disk drive indicates activity  
A.1.1.3 Single LEDs  
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Appendix - Fault Isolation  
If the amber cabinet fault LED (at the very top of the cabinet-- front and rear) is illuminated, a CRU within the  
cabinet has produced an error condition. [Both cabinet fault lights (one front and one rear) are lit when one or  
more components within the cabinet has failed. ]  
If the amber PCI fault status LED is lit, there is an error within the PCI card cage. The PCI Fault status LED is  
located on the front of the cabinet, at the bottom of the disk shelves.  
There are a number of red or green disk shelf LEDs in the disk shelf (rear), these are explained in section A.2.2.X  
A.2. System Component LEDs  
The following label, found on the cabinet, shows possible states for component LEDs and describes their meanings.  
Figure A-1. Component Status Lights  
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Appendix - Fault Isolation  
A.2.1 Power Supply LEDs  
A.2.1.2 -Tray 1 Rectifier status LEDs  
LED State  
Meaning  
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Appendix - Fault Isolation  
DC output power good.  
AC input power good.  
Green On  
Green On  
Red  
Off  
Green Off  
Green On  
AC input power good.  
DC output power fault.  
Red  
On  
Green Off  
Green Off  
Unit faulty and needs service.  
Red  
On  
Green Off  
Green Off  
Power is off.  
Red  
Off  
A.2.2 Disk Shelf LEDs  
A.2.2.1 Disk Power Supply LEDs  
A.2.2.3 SE/LVD Terminator Module  
This unit is located above the three fan modules on the right of each of the two disk shelves (rear). Since the terminator  
should always be in SE mode:  
The green LED over "SE" on the right should be on  
The green LED over "LVD" (Low Voltage Differential) should not be on.  
A.2.2.4 SES Unit Module  
This unit is located above the three fan modules at the top middle of each of the two disk shelves. There is a LED above  
the word "Temp", this LED is not used and should not be on. Next to "Temp" there is a "Mute" knob, this also is not  
used and shouldn't be touched.  
A.2.2.5 SE-SE I/O Repeater Module  
This unit should be located above the three fan modules at the top left of each of the two disk shelves (rear). There are  
no LEDs to be concerned with in the SE-SE I/O Repeater Module.  
A.2.2.6 Fan Units (3)  
Three fan units are located on the bottom part of each of the disk shelves (rear).  
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Appendix - Fault Isolation  
The red LEDs in the Fan units should not be illuminated. If a red LED is on in one of the fan units, that unit should be  
replaced as soon as possible (the system is capable of running with only two fans but it is recommended that all three  
fans be operational at all times).  
A.2.3 Suitcase LEDs  
In this section, refer to Figure A-3 for an illustration of the suitcase LEDs.  
Figure A-3. Suitcase with LEDs identified  
A.2.3.1 Suitcase Power-On LED Sequence  
A.2.4 PCI Card LEDs  
Figure A-4, the PCI card cage label, found on the PCI card cage (cabinet front), shows possible states for PCI LEDs and  
describes their meanings.  
Figure A-4. PCI Card Cage Label  
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Appendix - Fault Isolation  
A.3 System Log and Status Messages  
System logs contain information concerning major system events and the time they occurred which can help detect and  
evaluate system problems. Each time a significant event occurs, the syslog message logging facility enters an error  
message into the systemlog at /var/adm/syslog/syslog.log. Depending upon the severity of the error and the  
phase of system operation, the same message might also be displayed on the console.  
System messages and fault codes are subject to change. For the most current system message information, please refer to  
the recent version of the HP-UX Operating System: Fault Tolerant System Administration (R1004H-04-ST).  
Several HP-UX commands provide status information about components or services. These commands are listed in the  
following table.  
Command  
Type of Information  
Hardware information  
ftsmaint and ioscan  
sar  
System performance information  
Kernel parameter information  
sysdef  
Print services information  
Process information  
lp and lpstat  
ps  
Password inconsistencies information  
pwck and grpck  
Current user information  
who and whodo  
Network services information  
ifconfig, netstat, ping, uustat, and lanscan  
ypcat, ypmatch, yppoll, and ypwhich  
df and du  
Network Information Service (NIS ) information  
Disk and volume information  
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Appendix - Fault Isolation  
A.4 Component Status  
The ftsmaint lscommand lists the components in the system and identifies any components that have been removed  
from service. The list serves as a simple troubleshooting tool to verify that all the components are present and shows  
their status (in/out of service). Refer to PA-8500 Continuum Series 400 Technical Service Guide (HP-UX systems),  
Section 2.6.3 to view a sample ftsmaint lsoutput screen.  
A.4.1 Software State Information  
The system creates a node for each hardware device that is either installed or listed in the /stand/ioconfigfile.  
The Statefield in the ftsmaint ls display can show a hardware component to be in any one of the software states  
shown in the following table.  
State  
Meaning  
UNCLAIMED Initialization state, or hardware exists, and no software is associated with the node.  
CLAIMED  
ERROR  
The driver recognizes the device.  
The device is recognized, but it is in an error state.  
The device at this hardware path is no longer responding.  
NO_HW  
Transitional state that indicates the device is locked. A device is temporarily put in the SCANstate  
when it is being scanned by the ioscan or ftsmaint utilities.  
SCAN  
The software state of a hardware component can change. For example, a component is initially created in the UNCLAIMED  
state when it is detected at boot time. The component moves to the CLAIMEDstate when it is recognized and claimed by  
the appropriate driver. The transitions between the various software states are controlled by the ioscanand ftsmaint  
utilities.  
A.4.2 Hardware Status Information  
In addition to a software state, each hardware component has a particular hardware status. The Statusfield in the  
ftsmaintls display can have any of the values shown in the following table.  
Status  
Online  
Meaning  
The device is actively working.  
The device is not logically active, but it is operational. Using the ftsmaint switchor  
ftsmaint synccommand can be used to change the device status to Online.  
Online  
Standby  
Duplexed  
The status is appended to the Onlinestatus to indicate that the device is fully duplexed.  
The status is appended to the Online or Online Standbystatus to indicate that the  
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Appendix - Fault Isolation  
Duplexing  
Offline  
device is in the process of duplexing. This transient status is displayed after the ftsmaint  
syncor ftsmaint enablecommand has been used on the CPU-Memory board.  
The device is not functional or not being used.  
Burning  
PROM  
The ftsmaint burnpromcommand is in progress on the device. The suitcase stays in  
offline standby when burning PROM.  
Offline  
Standby  
The status of a hardware component can change. For example, a component could go from Onlineto Offlinebecause  
of a hardware or software error.  
A.5 Fault Codes  
The fault tolerant services return fault codes when certain events occur. Fault codes are displayed by the ftsmaint ls  
command in the FCodefield and by the ftsmaint ls -lcommand in the Fault Codefield. The following table lists  
and describes the fault codes.  
Short Format  
Long Format  
ls -l Format  
Explanation  
lsFormat  
2FLT  
Both ACUs Faulted  
Both ACUs are faulted.  
ADROK  
The cabinet address is frozen.  
Cabinet Address Frozen  
Cabinet Fault Light Blinking  
BLINK  
BPPS  
The cabinet fault light is blinking.  
BP Power Supply  
Faulted/Missing  
The BP power supply is either faulted or missing.  
BRKOK  
The cabinet circuit breaker(s) are OK.  
The ACU card is faulted.  
Cabinet Circuit Breaker(s) OK  
ACU Card Faulted  
CABACU  
CABADR  
The cabinet addresses are not frozen.  
Cabinet Address Not Frozen  
CABBFU  
CABBRK  
CABCDC  
CABCEC  
Cabinet Battery Fuse Unit Fault The cabinet battery fuse unit fault occurred.  
Cabinet Circuit Breaker  
Tripped  
A circuit breaker in the cabinet was tripped.  
The cabinet data collector faulted.  
Cabinet Data Collector Fault  
Central Equipment Cabinet  
Fault  
A fault was recorded on the main cabinet bus.  
Cabinet Configuration  
Incorrect  
CABCFG  
CABDCD  
The cabinet contains an illegal configuration.  
A DC distribution unit faulted.  
Cabinet DC Distribution Unit  
Fault  
CABFAN  
CABFLT  
Broken Cabinet Fan  
A cabinet fan failed.  
A component in the cabinet faulted.  
Cabinet Fault Detected  
Cabinet Fault Light On  
CABFLT  
The cabinet fault light is on.  
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Appendix - Fault Isolation  
CABLE  
PCI Power Cable Missing  
This PCI backpanel cable is not attached.  
A power control unit faulted.  
Cabinet Power Control Unit  
Fault  
CABPCU  
Cabinet Power Supply Unit  
Fault  
CABPSU  
CABPWR  
CABTMP  
CABTMP  
A power supply unit faulted.  
Broken Cabinet Power  
Controller  
A cabinet power controller failed.  
Cabinet Battery Temperature  
Fault  
A cabinet battery temperature above the safety  
threshold was detected.  
A cabinet temperature above the safety  
threshold was detected.  
Cabinet Temperature Fault  
The cabinet data collector is returning incorrect  
register information. Upgrade the unit.  
CDCREG  
CHARGE  
Cabinet Data Registers Invalid  
A battery CRU/FRU is charging. To leave this  
state, the battery needs to be permanently bad or  
fully charged.  
Charging Battery  
DSKFAN  
ENC OK  
Disk Fan Faulted/Missing  
The disk fan either faulted or is missing.  
The SCSI peripheral enclosure is OK.  
SCSI Peripheral Enclosure OK  
SCSI Peripheral Enclosure  
Fault  
ENCFLT  
A device in the tape/disk enclosure faulted.  
FIBER  
FIBER  
The cabinet fiber-optic bus faulted.  
The cabinet fiber-optic bus is OK.  
Cabinet Fiber-Optic Bus Fault  
Cabinet Fiber-Optic Bus OK  
The driver reported a hard error. A hard error  
occurs when a hardware fault occurs that the  
system is unable to correct. Look at the syslog  
for related error messages.  
HARD  
Hard Error  
The hardware device reported a fault. Look at the  
HWFLT  
Hardware Fault  
syslog for related error messages.  
The cabinet data collector reported an invalid  
breaker status.  
ILLBRK  
INVREG  
IPS OK  
IPSFlt  
Cabinet Illegal Breaker Status  
Invalid ACU Register  
Information  
A read of the ACU registers resulted in invalid  
data.  
IOA Chassis Power Supply  
OK  
The IOA chassis power supply is OK.  
IOA Chassis Power Supply  
Fault  
An I/O Adapter power supply fault was detected.  
IS  
In Service  
The CRU/FRU is in service.  
The cabinet fault light is OK.  
LITEOK  
Cabinet Fault Light OK  
The ACU on the DNCP Series 400-CO (PA-8500)  
is missing, electrically undetectable, removed, or  
MISSNG  
Missing replaceable unit  
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Appendix - Fault Isolation  
deleted.  
The CRU/FRU’s rate of transient and hard  
failures became too great.  
MTBF  
Below MTBF Threshold  
No Power  
NOPWR  
OVERRD  
The CRU/FRU lost power.  
Cabinet Fan Speed Override  
Active  
The fan override (setting fans to full power from  
the normal 70%) was activated.  
An over-voltage condition was detected by the  
power controller.  
PC Hi  
Power Controller Over Voltage  
PCI Card Bay Door Open  
PCIOPN  
PCLOW  
The PCI card-bay door is open.  
An under-voltage condition was detected by the  
power controller.  
Power Controller Under  
Voltage  
A voter fault was detected by the power  
controller.  
PCVOTE  
PSBAD  
PSU OK  
PSUs  
Power Controller Voter Fault  
Invalid Power Supply Type  
The power supply ID bits do not match that of  
any supported unit.  
Cabinet Power Supply Unit(s)  
OK  
The cabinet power supply unit(s) are OK.  
Multiple Power Supply Unit  
Faults  
Multiple power supply units faulted in a cabinet.  
The circuit breaker for the PCIB power supply  
tripped.  
PWR  
Breaker Tripped  
A comparison of the registers on both ACUs  
showed a difference.  
REGDIF  
ACU Registers Differ  
The driver reported a transient error. A transient  
error occurs when a hardware fault is detected,  
but the problem is corrected by the system. Look  
at the syslog for related error messages.  
SOFT  
Soft Error  
Cabinet Fan Speed Override  
Completed  
SPD OK  
SPR OK  
The cabinet-fan speed override completed.  
The cabinet spare (PCU) is OK.  
Cabinet Spare (PCU) OK  
SPRPCU  
Cabinet Spare (PCU) Fault  
Cabinet Temperature OK  
The power control unit spare line faulted.  
The cabinet temperature is OK.  
TEMPOK  
A user issued ftsmaint disable to disable the  
hardware device.  
USER  
User Reported Error  
A.6 Troubleshooting Procedures  
When a fault occurs, several things can happen. If it is a non-critical fault, the system will continue to process data. If it is  
a critical fault, the system (or a subsystem) may be inoperative. When troubleshooting the system, determine the fault  
first by using the LEDs and screen messages. Then, verify that the component(s) is out of service using the ftsmaint  
lscommand (PA-8500 Continuum Series 400 Technical Service Guide (HP-UX systems, Section 2.6.3), error logs, and  
diagnostic tests. This flow is shown in the Troubleshooting Flow below.  
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Appendix - Fault Isolation  
Troubleshooting Flow  
When troubleshooting system faults, use the following process:  
Check the console terminal for fault information.  
Locate the failed component(s) using the LEDs.  
Verify the component is bad by using software commands/error logs.  
Remove and replace the failed component.  
Check to make sure the problem is resolved.  
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