Hewlett Packard Enterprise WAP3212-001 User Manual

Operating Manual
WAP3212-001-001 / RD-FA2066-01
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Operating Manual
Docum ent
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DOC
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Title
Equipment Designation
Reference
Specification CSE
-23-14-
0012 (PAC ASC
-
FA2066
-
01)
WAP3212-001-001 / RD-FA2066-01
Operation Manual: Cabin Wireless Access Point, Dual Radio
Type / model No.
WAP3212-001
Part Number(s)
WAP3212-001-001 (PAC P/N: RD-FA2066-01)
Lufthansa Technik AG proprietary rights are included in the information disclosed herein. Recipient by accepting this document agrees that neither this document nor the inf ormation disclosed herein nor any part thereof shall be reproduced or transf erred to other documents or used or disclosed to others for any purpose unless specifically authorized in writing by Lufthansa Technik AG.
Date 10.04.2015 LHT Innovation HAM TX
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Operating Manual
WAP3212-001-001 / RD-FA2066-01
Revision History
Issue. No Reason Issue Date
IR Initial Issue 11.03.2014
01 Adaption to WAP3212-001-001 02.02.2015
02 (1.1) Added english/french regulatory statement
13.03.2015
(4.1) Added statements for regulatory limitations
03 (4.3) Added statements for user information 31.03.2015
04 (1.1) Comliance Statement: Outdoor Antenna usage deleted. 10.04.2015
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Operating Manual
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Table of Content
1. Introduction ........................................................................................................................................ 1
1.1. Compliance Statement ............................................................................................................. 1
1.2. About the WAP ......................................................................................................................... 2
1.3. About this document ................................................................................................................. 4
2. Setup ................................................................................................................................................... 5
2.1. Connector Interface .................................................................................................................. 5
2.2. Discrete Inputs ......................................................................................................................... 6
2.3. ID Strapping ............................................................................................................................. 7
2.4. Powering the WAP ................................................................................................................... 7
3. System Integration ............................................................................................................................. 9
3.1. Minimal Setup .......................................................................................................................... 9
3.2. Conguration ............................................................................................................................ 9
3.3. Time Synchonization ................................................................................................................ 9
3.4. Logging .................................................................................................................................. 10
3.5. Software Updates ................................................................................................................... 10
3.6. Programming Interfaces ......................................................................................................... 10
3.6.1. Controller Command Line Interface ........................................................................................ 10
3.7. Controller SNMP Interface ...................................................................................................... 11
3.8. Radio SNMP Interface ............................................................................................................ 11
4. Regulatory Information .................................................................................................................... 12
4.1. Allowed Usage of Channels .................................................................................................... 12
4.2. Conformity .............................................................................................................................. 12
4.3. User Information ..................................................................................................................... 12
Appendix A .................................................................................................................................................... 13
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List of Figures
Figure 1-1: Isometric Drawing of the Wireless Access Point ........................................................................ 2
Figure 1-2: Outline Dimension Drawing of the Wireless Access Point ......................................................... 3
Figure 1-3: Connector Locations................................................................................................................. 3
Figure 2-1: Pinning of WAP connectors ...................................................................................................... 5
Figure 2-2: LED indications ........................................................................................................................ 7
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List of Tables
Table 1 Strapping Congurations ...................................................................................................................... 6
Table 2: LED Indications of the WAP ................................................................................................................. 8
Table 3: Required DHCP options ...................................................................................................................... 9
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1. Introduction
This document provides information for installation and integration of the Wireless Access Point P/N WAP3212­001-001:C1008 (RD-FA2066-01) referred to as the WAP in this manual.
The WAP is designed and manufactured in accordance with all requirements for installation in aircraft cabins.
1.1. Compliance Statement
English:
Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device.
This Class B digital apparatus complies with Canadian ICES-003.
This device and its antenna(s) must not be co-located or operating in conjunction with any other antenna or transmitter.
This equipment should be installed and operated with a minimum distance of 20cm between the radiator and your body
The use of any antenna other than those certified with the product is expressly forbidden by FCC rules 47 CFR part 15.204 and IC RSS standards.
Français:
Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil nedoit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement.
Cet appareil numérique de la classe B est conforme à la norme NMB-003 du Canada.
Cet appareil et son antenne (s) ne doit pas être co-localisés ou fonctionnant en conjonction avec une autre antenne ou transmetteur.
Cet équipement doit être installé et utilisé à une distance minimale de 20cm entre le radiateur et votre corps.
L'utilisation d'une antenne autre que ceux qui sont certifiés avec le produit est expressément interdite par la réglementation FCC partie 47 CFR 15.204 et IC normes RSS.
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1.2. About the WAP
The WAP is a high-performance IEEE 802.11 based wireless access point with an ARINC 628 housing for WLAN installations on aircraft. The radio module is provided by Aruba Networks and allows IEEE 802.11ac communication in addition to IEEE 802.11a/b/g/n. The WAP has 6 integrated antennas covered by a protective radome allowing 3x3 MIMO for both the 2.4GHz and the 5GHz band (see gure 1).
Figure 1-1: Isometric Drawing of the Wireless Access Point
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Figure 1-2: Outline Dimension Drawing of the Wireless Access Point
Figure 1-3: Connector Locations
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1.3. About this document
This document shall provide the information necessary to operate one or more WAPs in a lab environment as well as on an aircraft. This includes the mechanical, electrical and the software aspectects.
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2. Setup
2.1. Connector Interface
Figure 2-1: Pinning of WAP connectors
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2.2. Discrete Inputs
The WAP has following discrete inputs:
· Power enable ”DISCRETE IN POWER ENABLE”Allow wireless or wired meshing of several CWAP for
content mirroring and house keeping in terms of active radio management and roaming.
Cong IP STRAP 3 IP STRAP 2 IP STRAP 1 IP STRAP 0
A ground ground ground ground
B ground ground ground open
C ground ground open ground
D ground ground open open
E ground open ground ground
F ground open ground open
G ground open open ground
H ground open open open
I open ground ground ground
J open ground ground open
K open ground open ground
L open ground open open
M open open ground ground
N open open ground open
O open open open ground
DHCP open open open open
Table 1: Strapping Congurations
• RF enable ”DISCRETE IN RF ENABLE”
To enable the WAP the DISCRETE IN POWER ENABLE needs to be connected to DISCRETE GND. To release the radio module from hardware lock the DISCRETE IN RF ENABLE needs to be connected to DIS­CRETE GND as well.
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2.3. ID Strapping
The WAP has four designated discrete inputs used as strapping pins to specify its position in the aircraft. The WAP applies the conguration parameters according to this strapping status. It is recommended for testing to use conguration A (see table 1) for a single WAP or A, B, C, and so forth for multiple WAPs. Full DHCP congration is limited until software version SWWAP-001-012.
<IPADDR_A>192.168.10.11</IPADDR_A>
<NETWORK_A>192.168.10.255</NETWORK_A>
<NETMASK_A>255.255.255.0</NETMASK_A>
<GATEWAY_A>192.168.10.1</GATEWAY_A>
<ARUBA_PHYSICAL_IPADDR_A>192.168.10.31</ARUBA_PHYSICAL_IPADDR_A>
<ARUBA_PHYSICAL_NETWORK_A>192.168.10.255</ARUBA_PHYSICAL_NETWORK_A>
<ARUBA_PHYSICAL_NETMASK_A>255.255.255.0</ARUBA_PHYSICAL_NETMASK_A>
<ARUBA_PHYSICAL_GATEWAY_A>192.168.10.1</ARUBA_PHYSICAL_GATEWAY_A>
<ACHANNEL_A>44</ACHANNEL_A>
<ATXPOWER_A>3</ATXPOWER_A>
<GCHANNEL_A>11</GCHANNEL_A>
<GTXPOWER_A>3</GTXPOWER_A>
2.4. Powering the WAP
The WAP will start the controller board as soon as the WAP is powered and the power discrete is connected to ground. During booting the WAPs status LED is blue after booting is nished the status LED turns green.
Figure 2-2: LED indications
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Caption Indication Meaning PWR dark Controller board not powered PWR violet constant Not booting, Maintenance mode PWR blue constant Booting (will be switched on 10 seconds after power is applied) PWR green constant Controller board ready, BITE ok PWR yellow blinking BITE error 5 dark 5GHz radio module off 5 amber constant 5GHz radio module on
2.4 dark 2.4GHz radio module off
2.4 amber 2.4GHz radio module on ETH2 dark Ethernet port 2 not connected ETH2 amber constant Ethernet port 2 link established ETH2 amber blinking Ethernet port 2 link established, transmission in progress ETH1 dark Ethernet port 1 not connected ETH1 amber constant Ethernet port 1 link established ETH1 amber blinking Ethernet port 1 link established, transmission in progress
Table 2: LED Indications of the WAP
Please note that it may take up to 10 seconds until the unit lights up the LED and starts booting after applying power and enable the DISCRETE IN POWER ENABLE. The radio board is powered by the controller board as soon as the controller board itself is powered and the RF discrete is connected to ground.
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3. System Integration
3.1. Minimal Setup
The following section describes the operation of one or more WAPs along with a conguration and logging server. Note that a bootable USB sticks referred to as ”SWWAP13-xxx-xxx: Service host for WAP3212-xxx­xxx” exists that provides all required servers.
The WAP expects a DHCP server in the network to provide a temporary IP address.
The WAP also explicitely queries DHCP options 56 and 67 (see table 3 for content) and will continue cong­uration and software load using the values provided by the server. If an IP adress is provided but options are not provided by the DHCP the WAP continues booting and uses the software and conguration stored in the local memory. It replaces the temporary IP address by the one specied in the conguration. The TFTP server shall contain the full software release in the server root directory.
Option Content Meaning
67 index.txt Name of index le referencing all software parts
56 IP address TFTP server’s address in the network
Table 3: Required DHCP options
3.2. Conguration
Within the TFTP root directory two les might be changed during testing:
system_configuration.xml
aruba_configuration.cfg
The ”name” parameter in the aruba_configuration.cfg shall be used to identify the conguration. WAP software before version SWWAP-001-013 will not apply a changed conguration if the running conguration and the uploaded conguration have the same ”name” parameter. Aruba credentials in both conguration les must be in accordance. After any change of these conguration les, the MD5 checksum les must be regenerated for the WAP.
3.3. Time Synchonization
The WAP does not have a buffered real-time clock included. It therefore depends on an external time source in order to write logs with correct timestamps and to keep the correct amount of log data in its internal memory. During each startup the WAP tries to connect to an external NTP time server and to synchronize the internal clock with it. The NTP time server address is specied in the system conguration le in the parameter NTP_SERVER_IP.
<NTP_SERVER_IP>192.168.10.1</NTP_SERVER_IP>
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3.4. Logging
The WAP can send log data to a server using the RFC 5424 syslog protocol. Logging can be congured using the following parameters:
<USE_REMOTE_SYSLOG_SERVER>1</USE_REMOTE_SYSLOG_SERVER>
<SYSLOG_SERVER_IP>192.168.10.1</SYSLOG_SERVER_IP>
<SYSLOG_SERVER_PORT>514</SYSLOG_SERVER_PORT>
<SYSLOG_LOG_LEVEL>5</SYSLOG_LOG_LEVEL>
3.5. Software Updates
Software updates (and downgrades) are provided during boot time by an external TFTP server. The WAP checks if the les provided by the TFTP are different from those installed. If so, they are applied automatically. Up to 5 minutes of boot time need to be given in case of an update.
3.6. Programming Interfaces
3.6.1. Controller Command Line Interface
• restart
restarts the WAP
• versions
shows all software part numbers currently installed
• bite
shows logs from the built-in test equipment process
• leds
shows all LED’s current status
• ssids
Lists all congured SSIDs along with their status, 0 for disabled, 1 for enabled Example output: ”passengers,0,crew,1,maintenance,1”
• ssid [enable|disable] SSIDNAME
enables or disables
Example usage: ”ssid enable Entertainment”
• serialnumber
shows the serial number of the LRU
• partnumber
shows the part number of the LRU
• modifications
shows all hardware modications implemented (+ means implemented - not implemented, 0 not labelled)
Example output: ”+++—–”
• radioserialnumber
shows the radio board serial number or ”N/A” if the radio is not booted
• radiomodel
shows the radio board model
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• temperatures
shows all temperatures in Celsius (high temperature zone; low temperature zone; power supply zone) Exmaple output: ”67;65;55”
• voltages
shows the 12 V current and all voltages in Volt (12VC, 12V, 5V, 3.3, 1.8, 1.5, 1.1, Example: ”0.920;11.880;5.00;3.360;1.860;1.520;1.110”)
• timestamp
shows the current Unix timestamp
• radiouptime
shows the radio uptime or ”N/A” if the radio is not booted
• discretes
shows all current discrete’s status in the following order (din poweron, din rfon, din reset, din congw1, dout power, dout rf, dout congw2 – Example output: ”on;on;off;off;off;on;off”)
• loadavg
shows the controller CPU load averafe in standard Unix output
• clientsconnected
shows the number of clients connected to the access point or ”N/A” if the radio is not booted
3.7. Controller SNMP Interface
The controller board provides an SNMP interface that allows receiving status information. Refer to the MIB le provided to you or as printed in this appendix A.
3.8. Radio SNMP Interface
The radio board provides an SNMP interface that allows receiving status information. The interface does not permit to make changes to the conguration. Refer to the MIB guides provided by Aruba.
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4. Regulatory Information
4.1. Allowed Usage of Channels
The usage of channels and power levels is generally restricted by law depending on the region of operation.
The WAP3212-00x-00x (RD-FA2066-01) has been designed in compliance with governmental requirements, so that only authorized network administrators can change the settings by specific configuration files after introduction and authorization by Lufthansa Technik TX-OE.
Access points are radio transmission devices and as such are subject to governmental regulation. Network administrators responsible for the configuration and operation of access points must comply with local broadcast regulations. Specifically, access points must use channel assignments appropriate to the location in which the access point will be used.
Channel assignments can be performed only by trained maintanance personnel via controlled configuration files, released by Lufthansa Technik TX-OE.
4.2. Conformity
The WAP conforms with RTCA DO-160G. See the Certicate of Conformity (C-ABS566-EQ) and the Compliance Statement (C-ABS567-EQ) for specic information on operation in Europe regulatory domain.
4.3. User Information
Changes or modifications to this unit not expressly approved by the party responsible for compliance could void the user’s authority to operate this equipment.
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Appendix A SNMP Management Information Base
-- ****************************************************************************
--
-- Lufthansa Technik Wireless Access Point
-- Information Base for SNMP Network Management
--
--
--
-- The Lufthansa Technik Enterprise number is 28833.
-- The ASN.1 prefix to, and including the Lufthansa Technik Enterprise is:
-- 1.3.6.1.4.1.28833
--
-- **************************************************************************** LHTWAP-MIB DEFINITIONS ::= BEGIN IMPORTS enterprises FROM RFC1155-SMI sysDescr FROM RFC1213-MIB; lufthansaTechnik OBJECT IDENTIFIER ::= { enterprises 28833 } communication OBJECT IDENTIFIER ::= { lufthansaTechnik 1 } hardware OBJECT IDENTIFIER ::= { communication 1 } wap OBJECT IDENTIFIER ::= { hardware 2 } identification OBJECT IDENTIFIER ::= { wap 1 } status OBJECT IDENTIFIER ::= { wap 2 } notification OBJECT IDENTIFIER ::= { wap 3 }
-- ****************************************************************************
-- MAR Array MIB Revision
-- ======================
--
-- The Lufthansa Technik enterprise (1.3.6.1.4.1.28833)
-- communication Group (1.3.6.1.4.1.28833.1)
-- hardware Group (1.3.6.1.4.1.28833.1.1)
-- wap Group (1.3.6.1.4.1.28833.1.1.2)
-- identification Group (1.3.6.1.4.1.28833.1.1.2.1)
-- status Group (1.3.6.1.4.1.28833.1.1.2.2)
--
-- **************************************************************************** partNumber OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "Part Number of the WAP Unit." ::= { identification 1 } serialNumber OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "Serial Number of the WAP Unit." ::= { identification 2 } bootloaderVersion OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255))
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ACCESS read-only STATUS mandatory DESCRIPTION "Software bootloader Partnumber of the WAP Unit." ::= { identification 3 } kernelVersion OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "Software kernel Partnumber of the WAP Unit." ::= { identification 4 } filesystemVersion OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "Software file system Partnumber of the WAP Unit." ::= { identification 5 } modificationsImplemented OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "modifications implemented for the WAP Unit." ::= { identification 6 } arubaMACaddress OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "aruba mac address associated with WAP Unit." ::= { identification 7 } arubaName OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "aruba name associated with WAP Unit." ::= { identification 8 } arubaSerialNumber OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "aruba serial number associated with WAP Unit." ::= { identification 9 } arubaModel OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "aruba model associated with WAP Unit." ::= { identification 10 } arubaConfig OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255))
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ACCESS read-only STATUS mandatory DESCRIPTION "aruba running configuration associated with WAP Unit." ::= { identification 11 } SystemConfigVerion OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "System Configuration file version associated with WAP Unit." ::= { identification 12 } temperatureHighPCB OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "high controller board temperature of the WAP Unit." ::= { status 1 } temperatureLowPCB OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "low controller board temperature of the WAP Unit." ::= { status 2 } temperaturePowrSupply OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "power board temperature of the WAP Unit." ::= { status 3 } voltage12V OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "12V adc measurement of the WAP Unit." ::= { status 4 } current12V OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "12V corresponding current measurement of the WAP Unit." ::= { status 5 } voltage5V OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "5V adc measurement of the WAP Unit." ::= { status 6 } voltage3V3 OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10))
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ACCESS read-only STATUS mandatory DESCRIPTION "3.3V adc measurement of the WAP Unit." ::= { status 7 } voltage1V5 OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "1.5V adc measurement of the WAP Unit." ::= { status 8 } voltage1V8 OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "1.8V adc measurement of the WAP Unit." ::= { status 9 } voltage1V1 OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "1.1V adc measurement of the WAP Unit." ::= { status 10 } voltageProcessor OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "processor voltage adc measurement of the WAP Unit." ::= { status 11 } timeStamp OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "Current date and time of the WAP Unit." ::= { status 12 } uptimeWAP OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "uptime of the WAP Unit." ::= { status 13 } DiscreteInRF OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "Discrete Input RF status of the WAP Unit." ::= { status 14 } DiscreteInPOff OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10))
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C-DOC-AAC528
Operation Manual: Cabin Wireless Access Point, Dual Radio
ACCESS read-only STATUS mandatory DESCRIPTION "Discrete Input Power OFF status of the WAP Unit." ::= { status 15 } DiscreteInRST OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "reset discrete input status of the WAP Unit." ::= { status 16 } DiscreteInConfigW1 OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "Discrete Config W1 input status of the WAP Unit." ::= { status 17 } DiscreteOutRF OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DiscreteOutPower OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "Discrete Power Output status of the WAP Unit." ::= { status 19 } DiscreteOutConfigW2 OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "Discrete ConfigW2 Output status of the WAP Unit." ::= { status 20 } loadaverageARM OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "ARM CPU load average of the WAP Unit." ::= { status 21 } totalHrsOfOperation OBJECT-TYPE SYNTAX Integer32 ACCESS read-only STATUS mandatory DESCRIPTION "total hrs of operation of WAP Unit." ::= { status 22 } wapEventNotification NOTIFICATION-TYPE STATUS current DESCRIPTION "this trap is sent by WAP AM335x." ::= { notification 1 }
Date 10.04.2015 LHT Innovation HAM TX
04 Page 17
Lufthansa Technik AG Proprietary Inf ormation. Use or disclosure su bject to restrictive legend on title page.
LHT Form (HAM TX) Printed in the Federal Republic of Germany
QTP
C-DOC-AAC528
Operation Manual: Cabin Wireless Access Point, Dual Radio
wapEventString OBJECT-TYPE SYNTAX DisplayString (SIZE (0..10)) ACCESS read-only STATUS mandatory DESCRIPTION "trap notification reason." ::= { notification 2 } END
Date 10.04.2015 LHT Innovation HAM TX
04 Page 18
Lufthansa Technik AG Proprietary Inf ormation. Use or disclosure su bject to restrictive legend on title page.
LHT Form (HAM TX) Printed in the Federal Republic of Germany
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