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Full Discussion: Phone support
Operating Systems AIX Phone support Post 302215147 by markper on Tuesday 15th of July 2008 05:50:02 PM
Old 07-15-2008
Here are the details of the two errors. I tried to Google the sense data, but nothing came up
LABEL: LVM_IO_FAIL
IDENTIFIER: 613E5F38

Date/Time: Sat Jul 12 00:39:10 PDT
Sequence Number: 477
Machine Id: 000F871F4C00
Node Id: SKAGITPATH_DB
Class: H
Type: PERM
Resource Name: LVDD
Resource Class: NONE
Resource Type: NONE
Location: NONE

Description
I/O ERROR DETECTED BY LVM

Probable Causes
POWER, DRIVE, ADAPTER, OR CABLE FAILURE

Recommended Actions
RUN DIAGNOSTICS AGAINST THE FAILING DEVICE

Detail Data
PHYSICAL VOLUME DEVICE MAJOR/MINOR
001A 0004
ERROR CODE AS DEFINED IN sys/errno.h
5
BLOCK NUMBER
51387528
LOGICAL VOLUME DEVICE MAJOR/MINOR
002D 004F
PHYSICAL BUFFER TRANSACTION TIME
5
SENSE DATA
0000 0000 0003 101C 000F 871F 0000 4C00 0000 00FB 3B91 0DEC 000F 871F 3B92 0EBE
0000 0000 0000 0000

LABEL: DISK_ERR1
IDENTIFIER: 21F54B38

Date/Time: Mon Jul 14 19:44:54 PDT
Sequence Number: 486
Machine Id: 000F871F4C00
Node Id: SKAGITPATH_DB
Class: H
Type: PERM
Resource Name: hdisk2
Resource Class: disk
Resource Type: scsd
Location: 10-60-00-12,0
VPD:
Manufacturer................IBM
Machine Type and Model......IC35L036UCDY10-0
FRU Number..................09P3826
ROS Level and ID............53323843
Serial Number...............E3W4XL5C
EC Level....................H32224
Part Number.................08K0292
Device Specific.(Z0)........000003029F00013A
Device Specific.(Z1)........07N4972
Device Specific.(Z2)........0068
Device Specific.(Z3)........03264
Device Specific.(Z4)........0001
Device Specific.(Z5)........22
Device Specific.(Z6)........

Description
DISK OPERATION ERROR

Probable Causes
MEDIA

User Causes
MEDIA DEFECTIVE

Recommended Actions
FOR REMOVABLE MEDIA, CHANGE MEDIA AND RETRY
PERFORM PROBLEM DETERMINATION PROCEDURES

Failure Causes
MEDIA
DISK DRIVE

Recommended Actions
FOR REMOVABLE MEDIA, CHANGE MEDIA AND RETRY
PERFORM PROBLEM DETERMINATION PROCEDURES

Detail Data
SENSE DATA
0A0C 0000 2800 0380 9464 0000 0100 0000 0102 0000 F000 0303 8094 6418 0000 0000
1100 0080 0034 0000 1066 0000 6D23 01FF 01DF 0000 0000 0000 0000 0000 0000 0000
0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000
0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000
0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 DDC8 0007 B000
 

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OUTPUT(5)							File Formats Manual							 OUTPUT(5)

NAME
output - output data file formats DESCRIPTION
This manual page describes the output formats of the files created by the Yagi-Uda project's output program. The files are ASCII file, so can be analysed with any graph plotting program. Example of a .dat File Below is a typical .dat file, for a 4ele 144-146MHz beam, optimised for a huge (and useless) FB. # Driven=1 parasitic=3 total-elements=4 design=145.000MHz # Checked from 144.000MHz to 146.000MHz. f(MHz) E(deg) H(deg) R jX VSWR Gain(dBi) FB(dB) SideLobes(dB) 144.000 54.7 71.5 44.47 -2.35 1.136 9.386 21.944 16.650 144.500 54.0 70.1 41.34 -0.75 1.210 9.553 27.244 17.153 145.000 53.2 68.4 37.55 1.61 1.335 9.742 103.055 17.777 145.500 52.3 66.6 33.26 5.00 1.530 9.947 25.734 18.547 146.000 51.3 64.6 28.77 9.63 1.832 10.149 18.919 18.919 What is what in the .dat file The f(MHz) column is the frequency (MHz) at which the data is evaluated at. The E(deg) column is the approximate 3dB E-plane bandwidth calculated to the nearest 0.1 degree. The H(deg) column is the approximate 3dB H-plane bandwidth calculated to the nearest 0.1 degree. The (R) column is the input resistance in Ohms. The (jX) column is the input reactance in Ohms. The (VSWR) column is the input VSWR, usually refered to a 50 Ohm input, but this may be changed. The Gain (dBi) column is the gain at theta=90 degrees, which is the forward direction of the beam. It is possible that a higher gain occurs at other than 90 degrees, but this is not taken into account. The antenna is seriously at fault if this occurs. The FB(dB) column is the front to back ratio in dB. The Sidelobes(dB) column is the minimum level in dB down from the peak gain of any sidelobe. This is not calculated unless the '-c' option is used, and then only on some optimisation techniques. Example of a .gai File The following is a small section of the .gai file. f(MHz) theta gain-E(dBi) G(E)-peak phi gain-H(dBi) G(H)-peak 144.0000 -90.0000 -12.5584 -21.9444 -180.0000 -12.5584 -21.9444 144.0000 -45.0000 -7.3507 -16.7367 -135.0000 -3.5971 -12.9830 144.0000 0.0000 -999.0000 -1008.3860 -90.0000 -0.9010 -10.2870 144.0000 45.0000 0.1848 -9.2012 -45.0000 4.0261 -5.3599 144.0000 90.0000 9.3860 0.0000 0.0000 9.3860 0.0000 144.0000 135.0000 0.1848 -9.2012 45.0000 4.0261 -5.3599 144.0000 180.0000 -999.0000 -1008.3860 90.0000 -0.9010 -10.2870 144.0000 225.0000 -7.3507 -16.7367 135.0000 -3.5971 -12.9830 144.0000 270.0000 -12.5584 -21.9444 180.0000 -12.5584 -21.9444 What is what in the .gai file The f(MHz) column is the frequency in MHz. The theta column is the angle theta, for which the next two columns refer. The gain-E(dBi) is the gain at theta, relative to an isotropic radiator. This is the E-plane gain. Hence at the peak (theta), this gives the peak forward gain. The G(E)-peak is the gain at theta, relative to the peak gain. Hence at the peak (theta=90 degrees), this is zero. The phi column has nothing to do with the previous 3 columns. It is the angle for which the next two columns refer. The gain-H(dBi) is the gain at phi, relative to an isotropic radiator. This is the H-plane gain. Hence at the peak (phi=0), this gives the peak forward gain. The G(H)-peak is the gain at phi, relative to the peak gain. Hence at the peak (phi=0 degrees), this is zero. Example of a .up File The .up file list the improvements made by optimise to an antenna design. Starting from the original design, the file is appended each time a new better design is found. Here is an example, where the final line is the performance of the 4ele beam with the .dat file shown ear- lier. 1 7.57dBi, 16.93dB F/B, Z=(31.77-56.34j) Ohms, VSWR=3.95, SL=16.95 dB 84 7.58dBi, 16.93dB F/B, Z=(31.78-56.32j) Ohms, VSWR=3.95, SL=16.95 dB 623 7.58dBi, 16.93dB F/B, Z=(31.78-56.28j) Ohms, VSWR=3.95, SL=16.95 dB 89345 9.74dBi, 103.06dB F/B, Z=(37.55 +1.61j) Ohms, VSWR=1.33, SL=17.78 dB What is what in the .up file The first column is an integer specifying the iteration. The other columns, going from left to right are gain(dBi), FB, input impedance, VSWR and level of the most significant sidelobe, in dB down on the peak gain. SEE ALS0 yagi(1), output(1), input(1), optimise(1), first(1) and yagi(5). AUTHORS
Dr. David Kirkby G8WRB (david.kirkby@onetel.net), with help with converting to DOS from Dr. Joe Mack NA3T (mack@fcrfv2.ncifcrf.gov). Version 1.16 24th October 2000 OUTPUT(5)
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