Honeywell 50025034 50025034 User Manual E

Honeywell International Inc. 50025034 E

User Manual E

OneWireless
XYR 6000 HLAI Transmitter
User's Manual
34-XY-25-17
Revision 3
6/10/08
ii OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
6/24/08
Notices and Trademarks
Copyright 2008 by Honeywell International Inc.
Revision 3 June 24, 2008
While this information is presented in good faith and believed to be accurate, Honeywell disclaims the implied
warranties of merchantability and fitness for a particular purpose and makes no express warranties except as may
be stated in its written agreement with and for its customers.
In no event is Honeywell liable to anyone for any indirect, special or consequential damages. The information and
specifications in this document are subject to change without notice.
Honeywell, PlantScape, Experion PKS, and TotalPlant are registered trademarks of Honeywell International Inc.
Other brand or product names are trademarks of their respective owners.
Honeywell International
Process Solutions
2500 West Union Hills
Phoenix, AZ 85027
1-800 343-0228
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual iii
6/24/08
About This Document
This document describes preparation, operation and maintenance of the XYR 6000 Wireless HLAI Transmitters.
Mounting, installation and wiring are covered in other documents.
Honeywell does not recommend using devices for critical control where there is a single point of failure or where
single points of failure result in unsafe conditions. OneWireless is targeted at open loop control, supervisory
control, and controls that do not have environmental or safety consequences. As with any process control solution,
the end-user must weigh the risks and benefits to determine if the products used are the right match for the
application based on security, safety, and performance. Additionally, it is up to the end-user to ensure that the
control strategy sheds to a safe operating condition if any crucial segment of the control solution fails.
Revision Information
Document Name Document ID Revision
Number Publication
Date
XYR 6000 HLAI Transmitter User's Manual 34-XY-25-17 1 6/7/07
2 8/7/07
3 6/24/08
References
The following list identifies all documents that may be sources of reference for material discussed in this
publication.
Document Title
XYR 6000 Transmitters Quick Start Guide
Getting Started with Honeywell OneWireless Solutions
OneWireless Wireless Builder User’s Guide
OneWireless Builder Parameter Reference
Support and contact info
United States and Canada
Contact: Honeywell Solution Support Center
Phone: 1-800 822-7673. In Arizona: 602- 313-5558
Calls are answered by dispatcher between 6:00 am and 4:00 pm Mountain Standard Time.
Emergency calls outside normal working hours are received by an answering service and
returned within one hour.
Facsimile: (602) 313-3293
Mail: Honeywell TAC, MS P13
2500 West Union Hills Drive
Phoenix, AZ, 85027
iv OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
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Europe
Contact: Honeywell TAC-EMEA
Phone: +32-2-728-2732
Facsimile: +32-2-728-2696
Mail: TAC-BE02
Hermes Plaza
Hermeslaan, 1H
B-1831 Diegem, Belgium
Pacific
Contact: Honeywell Global TAC – Pacific
Phone: 1300-300-4822 (toll free within Australia)
+61-8-9362-9559 (outside Australia)
Facsimile: +61-8-9362-9564
Mail: Honeywell Limited Australia
5 Kitchener Way
Burswood 6100, Western Australia
Email: GTAC@honeywell.com
India
Contact: Honeywell Global TAC – India
Phone: +91-20- 6603-9400
Facsimile: +91-20- 6603-9800
Mail: Honeywell Automation India Ltd.
56 and 57, Hadapsar Industrial Estate
Hadapsar, Pune –411 013, India
Email: Global-TAC-India@honeywell.com
Korea
Contact: Honeywell Global TAC – Korea
Phone: +82-2-799-6317
+82-11-9227-6324
Facsimile: +82-2-792-9015
Mail: Honeywell Co., Ltd
17F, Kikje Center B/D,
191, Hangangro-2Ga
Yongsan-gu, Seoul, 140-702, Korea
Email: Global-TAC-Korea@honeywell.com
People’s Republic of China
Contact: Honeywell Global TAC – China
Phone: +86- 21-5257-4568
Mail: Honeywell (China) Co., Ltd
33/F, Tower A, City Center, 100 Zunyi Rd.
Shanghai 200051, People’s Republic of China
Email: Global-TAC-China@honeywell.com
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual v
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Singapore
Contact: Honeywell Global TAC – South East Asia
Phone: +65-6580-3500
Facsimile: +65-6580-3501
+65-6445-3033
Mail: Honeywell Private Limited
Honeywell Building
17, Changi Business Park Central 1
Singapore 486073
Email: GTAC-SEA@honeywell.com
Taiwan
Contact: Honeywell Global TAC – Taiwan
Phone: +886- 7- 536-2567
Facsimile: +886-7-536-2039
Mail: Honeywell Taiwan Ltd.
17F-1, No. 260, Jhongshan 2nd Road.
Cianjhen District
Kaohsiung, Taiwan, ROC
Email: Global-TAC-Taiwan@honeywell.com
Japan
Contact: Honeywell Global TAC – Japan
Phone: +81-3-6730-7160
Facsimile: +81-3-6730-7228
Mail: Honeywell Japan Inc.
New Pier Takeshiba, South Tower Building,
20th Floor, 1-16-1 Kaigan, Minato-ku,
Tokyo 105-0022, Japan
Email: Global-TAC-JapanJA25@honeywell.com
World Wide Web
Honeywell Solution Support Online:
http://www.honeywell.com/ps
Elsewhere
Call your nearest Honeywell office.
Training Classes
Honeywell Automation College:
http://www.automationcollege.com
vi OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
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Symbol Definitions
The following table lists those symbols used in this document to denote certain conditions.
Symbol Definition
ATTENTION: Identifies information that requires special consideration.
TIP: Identifies advice or hints for the user, often in terms of performing a task.
CAUTION
Indicates a situation which, if not avoided, may result in equipment or work (data) on
the system being damaged or lost, or may result in the inability to properly operate
the process.
CAUTION: Indicates a potentially hazardous situation which, if not avoided, may
result in minor or moderate injury. It may also be used to alert against unsafe
practices.
CAUTION symbol on the equipment refers the user to the product manual for
additional information. The symbol appears next to required information in the
manual.
WARNING: Indicates a potentially hazardous situation, which, if not avoided, could
result in serious injury or death.
WARNING symbol on the equipment refers the user to the product manual for
additional information. The symbol appears next to required information in the
manual.
WARNING, Risk of electrical shock: Potential shock hazard where HAZARDOUS
LIVE voltages greater than 30 Vrms, 42.4 Vpeak, or 60 VDC may be accessible.
ESD HAZARD: Danger of an electro-static discharge to which equipment may be
sensitive. Observe precautions for handling electrostatic sensitive devices.
Protective Earth (PE) terminal: Provided for connection of the protective earth
(green or green/yellow) supply system conductor.
Functional earth terminal: Used for non-safety purposes such as noise immunity
improvement. NOTE: This connection shall be bonded to Protective Earth at the
source of supply in accordance with national local electrical code requirements.
Earth Ground: Functional earth connection. NOTE: This connection shall be
bonded to Protective Earth at the source of supply in accordance with national and
local electrical code requirements.
Chassis Ground: Identifies a connection to the chassis or frame of the equipment
shall be bonded to Protective Earth at the source of supply in accordance with
national and local electrical code requirements.
continued
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual vii
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Symbol Description
The Factory Mutual® Approval mark means the equipment has
been rigorously tested and certified to be reliable.
The Canadian Standards mark means the equipment has been
tested and meets applicable standards for safety and/or
performance.
The Ex mark means the equipment complies with the requirements
of the European standards that are harmonised with the 94/9/EC
Directive (ATEX Directive, named after the French "ATmosphere
EXplosible").
For radio equipment used in the European Union in accordance
with the R&TTE Directive the CE Mark and the notified body (NB)
identification number is used when the NB is involved in the
conformity assessment procedure. The alert sign must be used
when a restriction on use (output power limit by a country at certain
frequencies) applies to the equipment and must follow the CE
marking.
The C-Tick mark is a certification trade mark registered to ACMA
(Australian Communications and Media Authority) in Australia under
the Trade Marks Act 1995 and to RSM in New Zealand under
section 47 of the NZ Trade Marks Act. The mark is only to be used
in accordance with conditions laid down by ACMA and RSM. This
mark is equal to the CE Mark used in the European Union.
N314 directly under the logo is Honeywell’s unique supplier
identification number.
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual ix
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Contents
1. INTRODUCTION....................................................................................................1
1.1 Purpose..........................................................................................................................................1
1.2 Scope..............................................................................................................................................1
1.3 OneWireless network overview ...................................................................................................1
1.4 About the transmitter....................................................................................................................1
Input .......................................................................................................................................................................1
2. SPECIFICATIONS .................................................................................................3
2.1 European Union Usage.................................................................................................................3
Certifications and approvals...................................................................................................................4
Transmitter .............................................................................................................................................................4
Authentication Device.............................................................................................................................................5
3. PREPARATION ...................................................................................................11
3.1 Installation ...................................................................................................................................11
3.2 Configuration...............................................................................................................................11
3.3 Connecting to network ...............................................................................................................11
3.4 Calibrating the transmitter .........................................................................................................11
Methods................................................................................................................................................................11
Wireless Builder....................................................................................................................................................11
4. FUNCTION BLOCKS...........................................................................................15
4.1 Introduction .................................................................................................................................15
4.2 Block description ........................................................................................................................15
Block types ...........................................................................................................................................................15
Block diagram.......................................................................................................................................................15
4.3 Parameter details ........................................................................................................................16
5. OPERATION ........................................................................................................17
5.1 Overview ......................................................................................................................................17
Display modes......................................................................................................................................................17
Authentication Device...........................................................................................................................................17
5.2 Transmitter connection status...................................................................................................18
5.3 Transmitter PV display ...............................................................................................................19
5.4 Transmitter quick view of parameters ......................................................................................22
5.5 Transmitter menu........................................................................................................................23
Menu tree .............................................................................................................................................................23
Contents
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5.6 Authentication device menus ....................................................................................................24
Overview..............................................................................................................................................................24
Main menu ...........................................................................................................................................................24
Security and Node Deployment ........................................................................................................................... 25
Device Local Configuration ..................................................................................................................................27
Read Node Information........................................................................................................................................28
Advanced Options................................................................................................................................................30
6. MAINTENANCE/REPAIR .................................................................................... 31
6.1 Parts .............................................................................................................................................31
Replacing sensor module .....................................................................................................................32
Tools required ......................................................................................................................................................32
Procedure ............................................................................................................................................................32
6.2 Replacing batteries .....................................................................................................................34
When to replace...................................................................................................................................................34
Tools required ......................................................................................................................................................34
Procedure ............................................................................................................................................................34
6.3 Replacing antenna ......................................................................................................................36
Tools required ......................................................................................................................................................36
Procedure ............................................................................................................................................................36
6.4 Parts .............................................................................................................................................38
Contents
Tables
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Tables
Table 1 User calibration...............................................................................................................................12
Table 2 Calibration error messages ............................................................................................................13
Table 3 Restore calibration..........................................................................................................................14
Table 4 Clear calibration..............................................................................................................................14
Table 5 Transmitter connection status ........................................................................................................18
Table 6 PV engineering units ......................................................................................................................19
Table 7 PV status ........................................................................................................................................20
Table 8 Device status ..................................................................................................................................20
Table 9 Menu tree........................................................................................................................................23
Table 10 Buttons for Device Local Configuration ........................................................................................27
Table 11 Advanced Options ........................................................................................................................30
Table 12 Sensor module replacement.........................................................................................................32
Table 13 Battery replacement procedure ....................................................................................................34
Table 14 Antenna replacement procedure ..................................................................................................37
Contents
Figures
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Figures
Figure 1 XYR 6000 Functional Diagram.......................................................................................................2
Figure 2 Calibration wiring: voltage (left), current (right) .............................................................................12
Figure 3 Block Diagram ...............................................................................................................................15
Figure 4 Main menu.....................................................................................................................................24
Figure 5 Security and Device Deployment ..................................................................................................25
Figure 6 Device Local Configuration screen................................................................................................27
Figure 7 Read Node Information .................................................................................................................28
Figure 8 Advanced Options .........................................................................................................................30
Figure 9 Sensor module removal and replacement ....................................................................................33
Figure 10 Battery replacement ....................................................................................................................35
Figure 11 Antenna replacement ..................................................................................................................38
1. Introduction
1.1. Purpose
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 1
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1. Introduction
1.1 Purpose
This manual describes the Honeywell OneWireless XYR 6000 HLAI Transmitter function, operation and
maintenance.
1.2 Scope
The manual includes:
Details of topics that relate uniquely to the Honeywell XYR 6000 HLAI Transmitter,
This manual does not cover installation, mounting, or wiring. See XYR 6000 Transmitter Quick Start
Guide (document 34-XY-25-21).
1.3 OneWireless network overview
OneWireless is an all digital, serial, two-way communication mesh network that interconnects industrial
field sensors to a central system.
OneWireless has defined standards to which field devices and operator stations communicate with one
another. The communications protocol is built as an "open system" to allow all field devices and
equipment that are built to OneWireless standard to be integrated into a system, regardless of the device
manufacturer. This interoperability of devices using OneWireless technology is to become an industry
standard for automation systems.
1.4 About the transmitter
The XYR 6000 HLAI Transmitter is furnished with OneWireless interface to operate in a compatible
distributed OneWireless system. The transmitter will interoperate with any OneWireless-registered device.
The transmitter includes OneWireless electronics for operating in a 2.4GHz network. It features function
block architecture.
Input
The transmitter supports one input channel. The channel is configurable as follows.
Voltage (0-5V) & (1-5V)
Current (0-20mA) & (4-20mA)
The tranamitter measures analog signal and transmits a digital output signal proportional to the measured
value. Figure 1 shows the functional diagram.
1. Introduction
1.4. About the transmitter
2 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
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EEPROM
A/D
CH 1
Current
Multi-
plexer
Electronics Housing
Radio
Board
0 - 20 mA
4 - 20 mA
0 - 5 V
1 - 5 V
Micro-
processor
Micro-
processor
EEPROM
Battery
Antenn
a
Measurement
Board
Configuration
Data
CH 2
Voltage
Figure 1 XYR 6000 Functional Diagram
2. Specifications
2.1. European Union Usage
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 3
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2. Specifications
2.1 European Union Usage
This product may be used in any of the following European Union nations.
Country ISO 3166
2 letter code Country ISO 3166
2 letter code
Austria AT Latvia LV
Belgium BE Liechtenstein LI
Bulgaria BG Lithuania LT
Cyprus CY Malta MT
Czech Republic CZ Netherlands NL
Denmark DK Norway NO
Estonia EE Poland PL
Finland FI Portugal PT
France FR Romania RO
Germany DE Slovakia SK
Greece GR Slovenia SI
Hungary HU Spain ES
Iceland IS Sweden SE
Ireland IE Switzerland CH
Italy IT United Kingdom BG
2. Specifications
2.2. Certifications and approvals
4 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
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2.2 Certifications and approvals
Transmitter
See the product label for applicable approvals and ratings.
Approval / Item Ratings / Description
CSAcus Intrinsically Safe CL I, Div 1, Groups A, B, C, & D; CL II, Div 1, Groups E, F & G; CL III, T4
CL I, Zone 0: Ex ia IIC, T4; CL I, Zone 0: AEx ia IIC, T4
CSAcus Explosionproof CL I, Div 1, Groups A, B, C, & D; CL II, Div 1, Groups E, F & G; CL III, T4
CL I, Zone 1: Ex d IIC, T4; CL I, Zone 1: AEx d IIC, T4
CSAcus Nonincendive CL I, Div 2, Groups A, B, C & D; CL II, Div 2, Groups F & G; CL III, Div 2, T4
CL I, Zone 2: Ex nA IIC, T4; CL I, Zone 2: AEx nA IIC, T4
FM Approvals
Intrinsically Safe
CL I, Div 1, Groups A, B, C, & D; CL II, Div 1, Groups E, F & G; CL III, T4
CL I, Zone 0: AEx ia IIC, T4
FM Approvals
Explosionproof
CL I, Div 1, Groups A, B, C, & D; CL II, Div 1, Groups E, F & G; CL III, T4
CL I, Zone 1: AEx d IIC, T4
FM Approvals
Nonincendive
CL I, Div 2, Groups A, B, C & D; CL II, Div 2, Groups F & G; CL III, Div 2, T4
CL I, Zone 2: AEx nA IIC, T4
HON – ATEX
Non-Sparking
, Ex nA IIC, T4; Ta = 85°C, Zone 2
Process Connections in
Division 2 / Zone 2
Division 2 / Zone 2 apparatus may only be connected to processes classified
as non-hazardous or Division 2 / Zone 2. Connection to hazardous
(flammable or ignition capable) Division 1 / Zone 0, or 1 process is not
permitted.
Enclosure Type Type 4X, IP 66/67
CRN Canadian Registration Number
Class II and III installations and for Type 4X/IP66 applications require that all cable and unused entires be
sealed with an NRTL listed cable gland or seal fitting. Cable glands and seal fittings are not supplied by
Honeywell.
For detailed transmitter specifications see the following Specification and Model Selection Guide.
XYR 6000 Wireless Transmitter HLAI (document 34-XY-03-30)
2. Specifications
2.3. Agency compliance information
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 5
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2.3 Agency compliance information
This section contains the Federal Communications Commission (FCC), Industry Canada (IC) and Radio
Frequency compliance statements for the OneWireless Multinode device.
ATTENTION
XYR6000 units must be professionally installed in accordance with the requirements specified in the
OneWireless XYR6000 Agency Compliance Professional Installation Guide.
FCC compliance statements
This device complies with Part 15 of FCC Rules and Regulations. Operation is subject to the
following two conditions: (1) This device may not cause harmful interference and (2) this device must
accept any interference received, including interference that may cause undesired operation.
This equipment has been tested and found to comply with the limits for a Class A digital device,
pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection
against harmful interference in a residential installation. This equipment generates, uses, and can
radiate radiofrequency energy and, if not installed and used in accordance with these instructions, may
cause harmful interference to radio communications. Operation of this equipment in a residential area
is likely to cause harmful interference in which case the user will be required to correct the
interference at his own expense.
Intentional or unintentional changes or modifications must not be made to the Multinode unless under
the express consent of the party responsible for compliance. Any such modifications could void the
user’s authority to operate the equipment and will void the manufacturer’s warranty.
IC compliance statements
To reduce potential radio interference to other users, the antenna type and its gain should be so chosen
that the equivalent isotropic radiated power (EIRP) is not more than that permitted for successful
communication.
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 A digital apparatus complies with Canadian ICES-003.
French: Cet appareil numérique de la classe A est conforme à la norme NMB-003 du Canada.
Radio Frequency (RF) statement
To comply with FCC’s and Industry Canada’s RF exposure requirements, the following antenna
installation and device operating configurations must be satisfied.
Remote Point-to-Multi-Point antenna(s) for this unit must be fixed and mounted on outdoor permanent
structures with a separation distance between the antenna(s) of greater than 20cm and a separation
distance of at least 20cm from all persons.
Remote Fixed Point–to-Point antenna(s) for this unit must be fixed and mounted on outdoor
permanent structures with a separation distance between the antenna(s) of greater than 20cm and a
separation distance of at least 100cm from all persons.
2. Specifications
2.3. Agency compliance information
6 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
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Furthermore, when using integral antenna(s) the Multinode unit must not be co-located with any other
antenna or transmitter device and have a separation distance of at least 20cm from all persons.
European Union restriction
France restricts outdoor use to 10mW (10dBm) EIRP in the frequency range of 2,454-2,483.5 MHz.
Installations in France must limit EIRP to 10dBm, for operating modes utilizing frequencies in the range of
2,454 – 2,483.5MHz.
2. Specifications
2.4. Honeywell European (CE) Declaration of Conformity (DoC)
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 7
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2.4 Honeywell European (CE) Declaration of Conformity (DoC)
This section contains the European Declaration of Conformity (DoC) statement, for the OneWireless product line.
R&TTE
Directive 1999/5/EC LVD
Directive 73/23/EEC EMC
Directive 2004/108/EC ATEX
Directive 94/9/EC
Harmonized Standards
Emissions Specification and Method: EN 300 328 V1.7.1
Emissions Spec and Method: EN 301 893 V1.4.1
Immunity Specification: EN 301 489-17 V1.2.1
Immunity Method: EN 301 489-1 V1.6.1
Product Standard: IEC61326-1 (1st Edition, 2002-02, Industrial Locations)
EN 50014:1992, "Electrical Apparatus for Potentially Explosive Atmospheres –
General Requirements"
EN 50021:1999, "Electrical Apparatus for Potentially Explosive Atmospheres –
Type of Protection "n"
Manufacturer’s Name and
Address
Honeywell Process Solutions
2500 West Union Hills Drive, Phoenix, AZ 85027, USA
Compliance Statement The product herewith complies with the harmonized standards listed
above. Typical product line systems and configurations have been tested,
for compliance.
2. Specifications
2.4. Honeywell European (CE) Declaration of Conformity (DoC)
8 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
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European Declaration of Conformity statements
Language Statement
Česky
(Czech): Honeywell tímto prohlašuje, že tento Multinode je ve shodě se
základními požadavky a dalšími příslušnými ustanoveními směrnice
1999/5/ES.
Dansk
(Danish):
Undertegnede Honeywell erklærer herved, at følgende udstyr
Multinode overholder de væsentlige krav og øvrige relevante krav i
direktiv 1999/5/EF.
Deutsch
(German):
Hiermit erklärt Honeywell, dass sich das Gerät Multinode in
Übereinstimmung mit den grundlegenden Anforderungen und den
übrigen einschlägigen Bestimmungen der Richtlinie 1999/5/EG
befindet.
Eesti
(Estonian):
Käesolevaga kinnitab Honeywell seadme Multinode vastavust
direktiivi 1999/5/EÜ põhinõuetele ja nimetatud direktiivist tulenevatele
teistele asjakohastele sätetele.
English Hereby, Honeywell, declares that this Multinode is in compliance with
the essential requirements and other relevant provisions of Directive
1999/5/EC.
Español
(Spanish):
Por medio de la presente Honeywell declara que el Multinode cumple
con los requisitos esenciales y cualesquiera otras disposiciones
aplicables o exigibles de la Directiva 1999/5/CE.
Ελληνική
(Greek):
ΜΕ ΤΗΝ ΠΑΡΟΥΣΑ Honeywell ∆ΗΛΩΝΕΙ ΟΤΙ Multinode
ΣΥΜΜΟΡΦΩΝΕΤΑΙ ΠΡΟΣ ΤΙΣ ΟΥΣΙΩ∆ΕΙΣ ΑΠΑΙΤΗΣΕΙΣ ΚΑΙ ΤΙΣ
ΛΟΙΠΕΣ ΣΧΕΤΙΚΕΣ ∆ΙΑΤΑΞΕΙΣ ΤΗΣ Ο∆ΗΓΙΑΣ 1999/5/ΕΚ.
Français
(French):
Par la présente Honeywell déclare que l'appareil Multinode est
conforme aux exigences essentielles et aux autres dispositions
pertinentes de la directive 1999/5/CE.
Italiano
(Italian):
Con la presente Honeywell dichiara che questo Multinode è conforme
ai requisiti essenziali ed alle altre disposizioni pertinenti stabilite dalla
direttiva 1999/5/CE.
Latviski
(Latvian):
Ar šo Honeywell deklarē, ka Multinode atbilst Direktīvas 1999/5/EK
būtiskajām prasībām un citiem ar to saistītajiem noteikumiem.
Lietuvių
(Lithuanian):
Šiuo Honeywell deklaruoja, kad šis Multinode atitinka esminius
reikalavimus ir kitas 1999/5/EB Direktyvos nuostatas.
Nederlands
(Dutch):
Hierbij verklaart Honeywell dat het toestel Multinode in
overeenstemming is met de essentiële eisen en de andere relevante
bepalingen van richtlijn 1999/5/EG.
Malti
(Maltese):
Hawnhekk, Honeywell, jiddikjara li dan Multinode jikkonforma mal-
ħtiġijiet essenzjali u ma provvedimenti oħrajn relevanti li hemm fid-
Dirrettiva 1999/5/EC.
Magyar
(Hungarian):
Alulírott, Honeywell nyilatkozom, hogy a Multinode megfelel a
vonatkozó alapvetõ követelményeknek és az 1999/5/EC irányelv egyéb
elõírásainak.
Polski
(Polish):
Niniejszym Honeywell oświadcza, że Multinode jest zgodny z
zasadniczymi wymogami oraz pozostałymi stosownymi
2. Specifications
2.4. Honeywell European (CE) Declaration of Conformity (DoC)
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 9
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Language Statement
postanowieniami Dyrektywy 1999/5/EC.
Português
(Portuguese): Honeywell declara que este Multinode está conforme com os
requisitos essenciais e outras disposições da Directiva 1999/5/CE.
Slovensko
(Slovenian): Honeywell izjavlja, da je ta Multinode v skladu z bistvenimi zahtevami
in ostalimi relevantnimi določili direktive 1999/5/ES.
Slovensky
(Slovak): Honeywell týmto vyhlasuje, že Multinode spĺňa základné požiadavky a
všetky príslušné ustanovenia Smernice 1999/5/ES.
Suomi
(Finnish): Honeywell vakuuttaa täten että Multinode tyyppinen laite on direktiivin
1999/5/EY oleellisten vaatimusten ja sitä koskevien direktiivin muiden
ehtojen mukainen.
Svenska
(Swedish):
Härmed intygar Honeywell att denna Multinode står I
överensstämmelse med de väsentliga egenskapskrav och övriga
relevanta bestämmelser som framgår av direktiv 1999/5/EG.
Íslenska
(Icelandic):
Hér með lýsir Honeywell yfir því að Multinode er í samræmi við
grunnkröfur og aðrar kröfur, sem gerðar eru í tilskipun 1999/5/EC.
Norsk
(Norwegian): Honeywell erklærer herved at utstyret Multinode er i samsvar med de
grunnleggende krav og øvrige relevante krav i direktiv 1999/5/EF.
For more information about the R&TTE Directive
The following website contains additional information about the Radio and Telecommunications Terminal
Equipment (R&TTE) directive:
http://ec.europa.eu/enterprise/rtte/faq.htm
2. Specifications
2.4. Honeywell European (CE) Declaration of Conformity (DoC)
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Authentication Device
Install the Authentication Device application on any PDA having
Windows Mobile version 4.2+
infrared port.
3. Preparation
3.1. Installation
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3. Preparation
3.1 Installation
Refer to the XYR 6000 Transmitter Quick Start Guide (document 34-XY-25-21) for installation, mounting
and wiring of your XYR 6000 transmitter.
3.2 Configuration
The XYR 6000 Transmitter contains the electronics interface compatible for connecting to the
OneWireless network. An operator uses the Wireless Builder application to configure blocks, to change
operating parameters, and to create linkages between blocks that make up the transmitter’s configuration.
These changes are written to the transmitter when it is authenticated by a security key.
3.3 Connecting to network
Use Authentication Device to connect your transmitter to the OneWireless network. See page 25.
3.4 Calibrating the transmitter
Methods
The following calibration methods are available through the transmitter menu.
User Calibration - Calibrates the channel to the low and high range values for selected input type.
Restore Calibration - constants for the channel 1 are restored to factory defaults.
Clear Calibration - FACTORY or USER Calibration constants for the channel can be cleared.
Wireless Builder
Wireless Builder must be used to unlock and take the channel to be calibrated out of service. Calibration
Point High (CAL_PT_HI), Calibration Point Low (CAL_PT_LO) & Cal Unit (CAL_UNIT) can be set
from Wireless Builder.
PV value is scaled to Engineering Units. For example, for 1-5V input type if EU 0 = 0 and EU 100 = 100
then Input (1-5V) will be scaled to 0 to 100.
Calibration points CAL_LO and CAL_HI are considered in terms of engineering units. For example,
If channel is to be calibrated for (1-3V) with above settings then set CAL_PT_LO to 0 and
CAL_PT_HI to 50.
If channel is to be calibrated for (1-4V) with above settings then set CAL_PT_LO to 0 and
CAL_PT_HI to 75. Calibration unit has no significance.
3. Preparation
3.4. Calibrating the transmitter
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Table 1 User calibration
Step Action
1 In Wireless Builder, set transmitter’s Write Lock to Unlocked.
2 In Wireless Builder, set the transmitter’s channel to OOS (Out of Service).
3 Loosen the M3 locking set screw on the transmitter’s battery end-cap (opposite end from
display). Unscrew and remove the end cap.
4 See Figure 2 for terminal connections. If your process input is connected to the channel,
disconnect it first, then connect a calibrator source to the channel’s terminals. It is not
necessary to disconnect any jumper wires on the terminals.
5 Select USER CAL by scrolling through menu. Follow displayed instructions.
Using your calibration source, apply the low calibration value indicated on display.
Press Enter to accept the value. Display will say BUSY, then CAL LO COMPLETE.
Press Enter to continue.
Apply the high calibration input value indicated on display.
Press Enter to accept the value. Display will say BUSY, then SUCCESS.
If calibration is unsuccessful at any of steps mentioned above an error message is displayed.
See Table 2.
Press Enter to return to PV display.
6 Exit the menu.
7 Reverse steps 3 and 4.
8 When ready, in Wireless Builder return the transmitter’s channel to service and set Write Lock
to Locked.
1
2
3
5
4
6
+
-
0-5V
1-5V
+
-
1
2
3
5
4
6
+
-
0-5V
1-5V
+
-
1
2
3
5
4
6
+
-
0-20 mA
4-20mA
+
-
1
2
3
5
4
6
+
-
0-20 mA
4-20mA
1
2
3
5
4
6
+
-
0-20 mA
4-20mA
+
-
Figure 2 Calibration wiring: voltage (left), current (right)
3. Preparation
3.4. Calibrating the transmitter
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Table 2 Calibration error messages
Message Meaning
CALIBRATION_FAIL 1. Calibration gain is greater than 5%.
2. Calibration offset is greater than 5% of sensor span.
BAD_TRIM_POINT CAL_POINT_HI is greater than sensor high range value OR
CAL_POINT_LO is less than greater than sensor low range value.
BAD_USER_CALIBRATION CAL_SOURCE is user and user calibration constants contain invalid
values.
BAD_FACTORY_CALIBRATION 1. CAL_SOURCE is factory and factory calibration constants do not
contain valid values.
2. CAL_RESTORE command was issued but factory calibration
constants do not contain valid values.
BAD_SENSOR Check input connections.
BAD_UNITS Units in CAL UNITS parameter are invalid or not supported by the
sensor type.
INTERNAL_ERROR An error occurred during calibration that prevents calibration from
being completed successfully.
SUCCESS_WITH_EXCESS The calibration succeeded but the calculated calibration values are
greater that 5 percent beyond the normal calibration values. Typically
this indicates that the applied calibration value was significantly
different from the expected value or that the sensor is not within
expected tolerances for the applied characterization.
3. Preparation
3.4. Calibrating the transmitter
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Table 3 Restore calibration
Step Action
1 In Wireless Builder, set transmitter’s Write Lock to Unlocked.
2 In Wireless Builder, set the transmitter’s channel to OOS (Out of Service).
3 Use Authentication Device’s Device Local Configuration buttons to navigate to the transmitter’s
CAL menu.
If the transmitter is locked a LOCKED message will be displayed. Go to step 1.
If CAL menu is passcode protected, enter the passcode.
If the channel is not out of service a WRONG MODE message will be displayed. Go to step 2.
4 Select CAL RSTR by scrolling through menu.
Press Enter to continue.
Display will say BUSY, then SUCCESS.
If calibration is unsuccessful an error message is displayed. See Table 2.
Press Enter to return to PV display.
5 Exit the menu.
6 When ready, in Wireless Builder return the transmitter’s channel to service and set Write Lock
to Locked.
Table 4 Clear calibration
Step Action
1 In Wireless Builder, set transmitter’s Write Lock to Unlocked.
2 In Wireless Builder, set the transmitter’s channel to OOS (Out of Service).
3 Use Authentication Device’s Device Local Configuration buttons to navigate to the transmitter’s
CAL menu.
If the transmitter is locked a LOCKED message will be displayed. Go to step 1.
If CAL menu is passcode protected, enter the passcode.
If the channel is not out of service a WRONG MODE message will be displayed. Go to step 2.
4 Select CAL CLR by scrolling through menu.
Press Enter to continue.
Display will say BUSY, then SUCCESS.
5 Exit the menu.
4. Function blocks
4.1. Introduction
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4. Function blocks
4.1 Introduction
This section explains the construction and contents of the XYR 6000 HLAI Transmitter Function Blocks.
4.2 Block description
Block types
Blocks are the key elements that make up the transmitter’s configuration. The blocks contain data (block
objects and parameters) which define the application, such as the inputs and outputs, signal processing and
connections to other applications. The XYR 6000 Transmitter contains the following block types.
Block Type Function
Device Contains parameters related to the overall field device rather than a
specific input or output channel within it. A field device has exactly one
device block.
AITB Contains parameters related to a specific process input or output
channel in a measurement or actuation device. An AITB defines a
measurement sensor channel for an analog process variable
represented by a floating-point value. There is one AITB per sensor.
Radio Contains parameters related to radio communication between the
transmitter and the multimode(s).
Block diagram
Figure 3 shows the blocks of the XYR 6000 Transmitter.
Sensor Analog Input Transducer Block
(AITB)
Transmitter
Device Block
Communication Stack
Algorithm OUT
Read/
Write Publish Read/
Write
Sensor Analog Input Transducer Block
(AITB)
Transmitter
Device Block
Communication Stack
Algorithm OUT
Read/
Write Publish Read/
Write
Figure 3 Block Diagram
Each of these blocks contains parameters that are standard OneWireless-transmitter defined parameters.
The AITB and device blocks contain standard parameters common to all XYR 6000 transmitter models
(that is, pressure, temperature, DI, corrosion,) as well as HLAI-specific parameters. The radio block
contains parameters for communication with the wireless network.
4. Function blocks
4.3. Parameter details
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4.3 Parameter details
The transmitter itself displays a few basic parameters, such as tag, serial number, device revision, build,
device address, WFN ID.
For more information on parameters, refer to the following documents.
OneWireless Wireless Builder User’s Guide
OneWireless Builder Parameter Reference
5. Operation
5.1. Overview
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5. Operation
5.1 Overview
Display modes
The transmitter has the following display modes.
Test. Appears briefly after power-up to self-test the display.
Connection status. Appears when transmitter is not fully connected to the OneWireless network. See
section 5.2.
PV display. Default mode of the transmitter displays the PV and any status messages. See section 5.3
on page 19.
Quick view of transmitter identification parameters. Displays read-only parameters then returns to PV
display. See section 5.4 on page 22.
Menu. See section 5.5 on page 23.
Authentication Device
To navigate the transmitter displays and menus, hold the Authentication Device no more than 6” from the
transmitter and aim the infrared beam at the transmitter display while tapping the Device Local
Configuration buttons (Table 10). You can also use the PDA’s buttons.
Authentication Device menus are described in section 5.6 starting on page 24.
5. Operation
5.2. Transmitter connection status
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5.2 Transmitter connection status
Table 5 Transmitter connection status
Displayed
status Definition What to do
NO KEY Transmitter needs a key from the
Authentication Device and is not transmitting.
Transmit a key to the transmitter. See page
25.
NOT CONN Transmitter is in between discovery attempts. If Transmitter does not make a connection
within five minutes, do the following:
Check that Key is correct for the network
you are trying to join.
Check that Multinode(s) in the local area
are turned on and are already a secure
part of the network.
Check if KeyServer is active.
Check the KeyServer Event Log to see if
the Transmitter is actively trying to join.
Errors in the Event Log show that the
Transmitter is trying to join but that there
are problems. Consult the OneWireless
Wireless Builder documentation for
troubleshooting errors.
DISCOVER Transmitter has not made a connection to a
Multinode and is in discovery (searching for a
connection to a Multinode). Transmitter will
automatically enter a power saving mode if it
cannot make a connection and will retry later.
Wait for connection. If Transmitter does not
make a connection within five minutes, see
NOT CONN in this table.
SECURING Transmitter has connected with the network
and is validating its key.
Wait for connection. If Transmitter does not
make a connection within five minutes, see
NOT CONN in this table.
CONNECTD For units with radio firmware build* 53 or
higher:
Transmitter has validated the key and has
made a secure connection with at least two
Multinodes. Transmitter should appear in
Wireless Builder as an uncommissioned
device.
For units with radio firmware build* 52:
Transmitter has validated the key and has
made a secure connection with at least one
Multinode. Transmitter should appear in
Wireless Builder as an uncommissioned
device.
For units with radio firmware build* 53 or
higher: No action required.
For units with radio firmware build* 52:
Transmitter will periodically look for a
second Multinode in order to form a
redundant connection to the network. If
connected with only one Multinode Wireless
Builder will display a Secondary Multinode
Address of 0.
NO REDUN Appears only on units with radio firmware
build* 53 or higher. No redundancy, that is,
Transmitter has connected with only one
Multinode.
No action required. The Transmitter will
periodically look for a second Multinode in
order to form a redundant connection to the
network
*Use the PDA to determine your radio firmware build number (page 21).
5. Operation
5.3. Transmitter PV display
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5.3 Transmitter PV display
In PV display, the following information is displayed in sequence.
Item displayed Example Details
Channel number 1 Channel number.
PV value 50.0 Latest PV value.
PV engineering units mV See Table 6.
PV status BAD See Table 7. If PV status is not displayed then
the PV value is good.
Device status LOW BATT See Table 8. If multiple device status messages
are in effect, they are displayed one message
per channel until all messages have been
displayed.
If no device status is displayed then the device
status is normal.
Table 6 PV engineering units
Engineering units Description
Deg C degree Celsius
Deg F degree Fahrenheit
Rev revolution
L liter
Gal US gallon
RPM Revolutions Per Minute
Pa Pascal
Psi Pounds per square inch
Psia Pounds per square inch absolute
Psig Pounds per square inch gauge
inH20 Inches of Water
inH2O (4 deg C) Inches of Water at 4 deg C
mmHg millimeters of mercury
mmHg (0 deg C) millimeters of mercury at 0 deg C
mA Milliampere
V Volt
% Percent (default units)
5. Operation
5.3. Transmitter PV display
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Engineering units Description
L/min liters per minute
GPM US gallons per minute
pH pH
no units
Table 7 PV status
PV status Cause - Action
(blank) PV is normal – no action required
BAD Possible calibration error – Clear calibration
AITB can not execute due to internal firmware state – Attempt cold restart of
device.
AITB can not execute due to hardware fault – Replace sensor board. See
page 31.
Sensor failure – Check the following.
connection between sensor board and terminal block
field wiring terminations on the terminal block
polarity of connections on the terminal block
field sensor
UNC Warning: Input inaccurate due to uncertain input data integrity.
Warning: Input inaccurate due to input conversion limitations or resolution.
Warning: Input outside of characterized range. Value is estimated.
Table 8 Device status
Transmitter
display Wireless Builder display Definition What to do
OUT SVC OOS All channels are out of
service.
Restore mode to Auto in Wireless
Builder.
CAL ERR Calibration Error Calibration Data Invalid
or could not be read.
Use Cal Clear, Restore, or User
Calibrate.
CFG ERR Configuration Error Configuration Check
Error.
Database is corrupted. Cold start
and reload configuration.
LOW BAT Low Battery Battery Voltage Critically
Low
Replace batteries as soon as
possible. See page 34.
5. Operation
5.3. Transmitter PV display
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Transmitter
display Wireless Builder display Definition What to do
NO RADIO Radio Interprocessor
Comm Error
Radio Board is not
accessible.
Restart both the radio and sensor.
If condition persists, replace
sensor module. See page 31.
BAD RADIO
SPI
Sensor Radio SPI
Communication Failure
Radio detected loss of
communication with
sensor board over the
inter-processor
communication link.
Restart both the radio and sensor.
If condition persists, replace
sensor module. See page 31.
BAD RADIO
EEPROM
EEPROM SPI
Communication Failure
Radio EEPROM SPI
Communication failure
The radio will not be able to
perform firmware upgrades but will
operate normally using installed
code. Replace sensor module.
See page 31.
RADIO WDT
RESET
WDT Reset Occurred Radio Watch Dog
Timeout detected
Restart both the radio and sensor.
If condition persists, replace
sensor module. See page 31.
BAD RADIO Radio Circuitry Failure Radio circuitry has failed The radio processor detected error
on internal radio circuitry. Replace
sensor module. See page 31.
The following status messages have multiple meanings. Refer to Wireless Builder Device Status for exact cause.
E FAIL A/D Failure Diagnostics detected
defect with Analog to
Digital Converter.
Replace sensor module. See page
31.
E FAIL Electronics Failure Electronic Failure
detected on Sensor
Board. Could be caused
by one of the status
items marked by *.
Restart both the radio and sensor.
If condition persists, replace
sensor module. See page 31.
E FAIL* NVM Fault* Startup diagnostics
detected defect in
Sensor Non-Volatile
Memory
Replace sensor module. See page
31.
E FAIL* Program Memory Fault* Startup diagnostics
detected defect in
Sensor Read Only
Memory
Replace sensor module. See page
31.
E FAIL* RAM Fault* Startup diagnostics
detected defect in
Processor Random
Access Memory
Replace sensor module. See page
31.
INP FAIL Input Failure Input Error Check input connection.
Check input configuration.
Restart the sensor. If condition
persists, replace sensor module.
See page 31.
5. Operation
5.4. Transmitter quick view of parameters
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Transmitter
display Wireless Builder display Definition What to do
INP FAIL A/D Failure Diagnostics detected
defect with Analog to
Digital Converter.
Replace sensor module. See page
31.
The following statuses are displayed only in Wireless Builder Device Status.
blank* Device/Firmware
Mismatch*
Sensor Board Firmware
Error. The software did
not pass verification
tests.
Replace sensor module. See page
31.
blank* Heap Memory Not
Available*
Heap Allocation Failure.
Software detected heap
shortage and some
communication packets
may have been dropped.
Clear by warm restart of device. If
condition persists contact
Honeywell service.
blank* Watchdog Timer Error* Sensor Watchdog
Timeout. The processor
was restarted due to
unexpected operation.
Clear by warm restart of device. If
condition persists contact
Honeywell service.
5.4 Transmitter quick view of parameters
If you press the up or down arrow key during the PV display, the following quick view parameters are
shown sequentially, then the PV display resumes.
Parameter Description
Transmitter type HONEYWELL XYR 6000 HLAI
Tag The name given to this transmitter
Serial number Transmitter serial number. This is the
WBSN on the transmitter’s nameplate.
Do not confuse this with the other
nameplate item marked “Serial.”
Device revision This parameter changes whenever
objects and parameters are added,
deleted, or the data type or range
changes. It does not change if the
application firmware changes without
affecting the device description.
Build Sensor firmware number
5. Operation
5.5. Transmitter menu
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5.5 Transmitter menu
Menu tree
At the PV display, press Enter to access the menus. To interact with the menus use the Device Local
Configuration onscreen buttons (page 27) or the buttons on your PDA.
Table 9 Menu tree
Menu item Description
CAL Calibration menu. May be password-protected. See Table 10 on page 27 for
password number entry. See page 11 for calibration details.
CAL RESTR Constants for the channel 1 are restored to factory defaults.
USER CAL Calibrates the channel to the low and high range values for selected input
type.
CAL CLR FACTORY or USER Calibration constants for the channel can be cleared.
RADIO Radio menu
PRI RSSI Primary receive signal strength. Read only. Signal strength 00 is too weak to
connect to the network.
Displayed Value Value dBm Rx Margin dB
00 < -86 < 10
01 -86 to -81 10 to 15
02 -80 to -75 16 to 21
03 -74 to -69 22 to 27
04 -68 to -63 28 to 33
05 -62 to -57 34 to 39
06 -56 to -51 40 to 45
07 -50 to -45 46 to 51
08 -44 to -11 52 to 85
09 -10 Saturation
SEC RSSI Secondary receive signal strength. Same as PRI RSSI. Read only.
WFN ID Wireless Field Network ID. Read only.
DEV ADD Device address. Read only.
TX POWER Radio transmit power. Read only.
5. Operation
5.6. Authentication device menus
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5.6 Authentication device menus
Overview
Hold the Authentication Device no more than 6” (15 cm) from the transmitter and aim the infrared beam at
the transmitter display while tapping on the screen command or button.
Main menu
The main menu is shown below. Details start on the next page.
Figure 4 Main menu
5. Operation
5.6. Authentication device menus
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Security and Node Deployment
Use this to:
receive new security keys,
transmit security keys for connecting the transmitter (or other nodes) to the OneWireless network,
clear all security keys from the PDA,
clear the transmitter’s key and reset its configuration to factory default (such as for decommissioning).
Figure 5 Security and Device Deployment
5. Operation
5.6. Authentication device menus
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To connect your transmitter to the OneWireless network perform the following steps.
Step Action
1 If the PDA contains no keys, obtain new security keys from the PC
application Key Server Manager.
To do this, select Receive Security Keys. Keys can be received either
through Infrared (by aiming PDA at the infrared dongle) or through an
ActiveSync/USB connection. See Key Server Communication Method
under Advanced options on page 30 for details.
Important: The Comm Method settings must match in the PC’s Key Server
Manager and in the Authentication Device (both must be set to Infrared or
both to ActiveSync) in order for your PDA to receive security keys. See Key
Server Communication Method under Advanced options on page page 30
for details.
2 When the Authentication Device has valid unexpired keys, aim it at the
transmitter and transmit a key to the transmitter. The transmitter will validate
the key and then use it to make a connection to the OneWireless Network.
The Transmitter may continue to show the diagnostic message “NO KEY” for
a brief time while it validates the key before showing the “DISCOVER”
message.
To verify your transmitter has been authenticated, see the Connection prompt
on the Read Node Info screen (page 28).
To decommission your transmitter from the OneWireless network, select Clear Key and Restart Node.
This clears the transmitter’s key, network and security configurations, and resets the transmitter to its
factory default settings. perform the following steps.
Select Clear Keys from Handheld (under Advanced Options) when:
The PDA has keys from one system, but you have moved your Authentication Device to another
system, or
you want to clear all keys so that you cannot deploy any more keys without going to the key server
manager and getting more.
For more details on keys, refer to Getting Started with Honeywell OneWireless Solutions.
5. Operation
5.6. Authentication device menus
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Device Local Configuration
Use Device Local Configuration buttons (Table 10) to navigate the transmitter menus (Table 9) and to
make selections and changes. You can also use the PDA buttons.
Figure 6 Device Local Configuration screen
Table 10 Buttons for Device Local Configuration
Button Function
Enter the Menu Tree.
Enter submenu of the menu that is appearing on the screen.
Execute action.
Submit the entered number while doing number entry.
Read value of certain displayed parameters.
Go to the next menu in the same level.
View quick view parameters in Normal Display Sequence (PV Display).
During number entry, increment the digit or change +/- sign.
Go to the previous menu in the same level.
View quick view parameters in Normal Display Sequence (PV Display).
During number entry, decrement the digit or change +/- sign.
Go to the upper menu level.
When changing a number value, move cursor to the left/more significant digit, then
wrap around to the least significant digit.
5. Operation
5.6. Authentication device menus
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Read Node Information
Use this to read the transmitter’s information shown in Figure 7. Similar to quick view parameters on the
transmitter display. (See page 22.)
Figure 7 Read Node Information
Item Description
Tag The name given to this transmitter
Serial Transmitter serial number. This is the WBSN on the
transmitter’s nameplate. Do not confuse this with the other
nameplate item marked “Serial.”
NwAddr Network Address of the device in hexadecimal.
DevRev Device Revision. This parameter changes whenever objects
and parameters are added, deleted, or their data type or range
changes. It does not change if the application firmware
changes without affecting the device description. Range: 0 to
65535.
Build Sensor firmware and radio firmware build numbers.
Radio Hardware radio type, FHSS or DSSS
WFN ID: Wireless Field Network ID. Range: 0 to 255.
5. Operation
5.6. Authentication device menus
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Item Description
FH Mode Frequency group or frequency channel selection used by the
wireless network of the device. The value must match the
value set in the gateway and interface nodes to allow
communication between the device and the wireless network.
Modes:
US Channel #1
US Channel #6
US Channel #11
US Guard Bands
EU Channel #1
EU Channel #7
EU Channel #13
EU Guard Bands
US/EU Spec Div A
US/EU Spec Div B
US/EU Channel #3
US/EU Channel #10
Complete Spectrum
Connection The first line displays one of the following connection states.
No Security Key – No security key has been deployed to the
device or multinode. The user must give a security key to
the device or multinode before it will join the wireless sensor
network.
No Connection – A security key exists in the device or
multinode, but no connection has been formed. The device
or multinode is waiting to form a connection and will
automatically retry shortly. Users may transmit a new
security key in order to force the device or multinode to
immediately retry to form a connection.
Discovering – The device is attempting to form a connection
to the wireless sensor network. The device is discovering
multinodes and, if a multinode is found, will transition to the
securing state.
Securing – The device is attempting to form a connection to
the wireless sensor network. The device has discovered
one or two multinodes and is attempting to form a secure
session. If successful, the device will transition to the
connected state.
Connected – A secure connection is formed with one or two
multinodes.
The second line contains detailed state information useful for
problem reporting.
5. Operation
5.6. Authentication device menus
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Advanced Options
Advanced options are non-typical configuration commands.
Figure 8 Advanced Options
Table 11 Advanced Options
Item Description
Key Server Communication
Method
Determines how the PDA will receive security keys from the PC’s Key Server
Manager application. From the Comm Method menu select one of the
following methods.
ActiveSync – Select this to receive keys over a USB connection, such as
while the PDA battery is being charged in its base.
Infrared – Select this to receive keys over the infrared port.
Important: The Comm Method settings match in the PC’s Key Server
Manager and in the Authentication Device (both must be set to Infrared or both
to ActiveSync) in order for your PDA to receive security keys.
Read Tracelog Flag Not available for transmitters. Used with multinodes. Reads conditional
tracelog flag value. Tracelog flags are used to enable and disable logging
functionality used for field support.
Write Tracelog Flag Not available for transmitters. Used with multinodes. Writes conditional
tracelog flag value. Tracelog flags are used to enable and disable logging
functionality used for field support .
Select Infrared Communication
Port
Overrides the detected infrared communication port detected on your PDA. If
infrared communication is not functioning, you can override the detected
settings using this option.
Read TX Power Level Reads the transmission power level of the transmitter radio.
6. Maintenance/Repair
6.1. Parts
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6. Maintenance/Repair
6.1 Parts
The following replacement parts may be ordered from Honeywell.
Part number Qty. Description
50015866-503 1 ELECTRONICS MODULE ASSEMBLY aka SENSOR MODULE for HLAI
50015866-507 1 ELECTRONICS MODULE ASSEMBLY aka SENSOR MODULE for HLAI-
Instrinsically Safe
50015866-511 1 ELECTRONICS MODULE ASSEMBLY aka SENSOR MODULE for HLAI-DSSS
Intrinsically Safe
50015843-501 1 TERMINAL BOARD
50015623-501 1 CAP ASSEMBLY, BATTERY, ALUMINUM, DARK BEIGE
50016190-501 1 CAP ASSEMBLY, LCD, ALUMINUM, DARK BEIGE
50026009-501 1 CAP ASSEMBLY, BATTERY, STAINLESS STEEL
50026127-501 1 CAP ASSEMBLY, LCD, STAINLESS STEEL
50016229-501 1 ANTENNA ASSEMBLY, 2 dBi INTEGRAL RIGHT-ANGLE, ALUMINUM
50016229-502 1 ANTENNA ASSEMBLY, 2 dBi INTEGRAL RIGHT-ANGLE, STAINLESS STEEL
50020767-501 1 ANTENNA ASSEMBLY, 2 dBi INTEGRAL STRAIGHT, STAINLESS STEEL
50020767-502 1 ANTENNA ASSEMBLY, 2 dBi INTEGRAL STRAIGHT, ALUMINUM
50031714-501 1 ANTENNA ASSEMBLY, 4 dBi INTEGRAL STRAIGHT, STAINLESS STEEL
50031714-502 1 ANTENNA ASSEMBLY, 4 dBi INTEGRAL STRAIGHT, ALUMINUM
50031715-501 1 ANTENNA ASSEMBLY, 4 dBi INTEGRAL RIGHT-ANGLE, ALUMINUM
50031715-502 1 ANTENNA ASSEMBLY, 4 dBi INTEGRAL RIGHT-ANGLE, STAINLESS STEEL
50018414-001 1 REMOTE OMNI-DIRECTIONAL ANTENNA, 8 dBi
50018415-001 1 REMOTE DIRECTIONAL ANTENNA, 14 dBi
50016577-501 1 ANTENNA ADAPTER ASSEMBLY, REMOTE, TYPE TNC, STAINLESS STEEL
50016577-502 1 ANTENNA ADAPTER ASSEMBLY, REMOTE, TYPE TNC, ALUMINUM
50028364-501 1 ANTENNA ADAPTER ASSEMBLY, REMOTE, TYPE N, ALUMINUM
50028364-502 1 ANTENNA ADAPTER ASSEMBLY, REMOTE, TYPE N, STAINLESS STEEL
50018110-001 1 COAX CABLE ASSY, 1.0M ( 3.3 Ft) LONG, RP-TNC - N-MALE
50018110-002 1 COAX CABLE ASSY, 3.0M (10.0 Ft) LONG, RP-TNC - N-MALE
50018110-003 1 COAX CABLE ASSY, 10.0M (33.0 Ft) LONG, RP-TNC - N-MALE
50018278-001 1 COAX CABLE ASSY, 1.0M ( 3.3 Ft) LONG, N-MALE - N-MALE
50018278-002 1 COAX CABLE ASSY, 3.0M (10.0 Ft) LONG, N-MALE - N-MALE
50018278-003 1 COAX CABLE ASSY, 10.0M (33.0 Ft) LONG, N-MALE - N-MALE
50018279-090 1 LIGHTNING SURGE ARRESTOR
50025288-001 1 BATTERY HOLDER, PRESSURE
continued
6. Maintenance/Repair
0. Replacing sensor module
32 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
6/24/08
Part number Qty. Description
50025288-002 1 BATTERY HOLDER, TEMPERATURE, HLAI, CORROSION
50026010-001 2 3.6V LITHIUM THIONYL CHLORIDE (Li-SOCI2) BATTERY
50026010-002 4 3.6V LITHIUM THIONYL CHLORIDE (Li-SOCI2) BATTERY
50026010-003 10 3.6V LITHIUM THIONYL CHLORIDE (Li-SOCI2) BATTERY
Replacing sensor module
Tools required
#1 Phillips Screwdriver or 1/8” Slotted Screwdriver
Torque Screwdriver
1.5 mm hex key
Procedure
WARNING
Risk of death or serious injury by explosion. Do not open transmitter
enclosure when an explosive gas atmosphere is present.
CAUTION
Take precautions against electrostatic discharge to prevent damaging the
sensor module.
Table 12 Sensor module replacement
Step Action
1 Honeywell recommends that the transmitter be removed from service and moved to a clean
area before servicing.
2 Loosen the M3 locking set screw on the display end-cap. See item 1 in Figure 9. Unscrew and
remove the end cap.
3 Loosen the two screws on the sensor module. See items 2 in Figure 9.
4 Disconnect each connector on the sensor module. See items 3 in Figure 9.
5 Install new sensor module. Be sure to orient sensor module in the proper viewing orientation
before tightening two sensor compartment screws.
Reverse steps 1-4.
Torque screws to 0,4 – 0,6 N-M (3.5 – 5.3 Lb-in).
Honeywell recommends lubricating the end cap O-ring with a Silicone Grease such as Dow
Corning #55 or equivalent before replacing the end cap.
Return transmitter to service.
6. Maintenance/Repair
0. Replacing sensor module
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 33
6/24/08
1
2
2
3
3
Figure 9 Sensor module removal and replacement
6. Maintenance/Repair
6.2. Replacing batteries
34 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
6/24/08
6.2 Replacing batteries
When to replace
When the transmitter displays a LO BATT message you have 2-4 weeks to replace both batteries before
they expire. When batteries are removed or expired, all transmitter data is retained in the transmitter’s non-
volatile memory.
Tools required
#1 Phillips Screwdriver or 1/8” Slotted Screwdriver
Torque Screwdriver
1.5 mm hex key
Procedure
ATTENTION
Batteries must be replaced only by a trained service technician.
WARNINGS
Risk of death or serious injury by explosion. Do not open transmitter
enclosure when an explosive gas atmosphere is present.
Batteries must not be changed in an explosive gas atmosphere.
The batteries used in this device may present a risk of fire or chemical
burn if mistreated. Do not recharge, disassemble, heat above 100°C
(212°F), or incinerate.
Table 13 Battery replacement procedure
Step Action
ATTENTION
You must replace both batteries. Both batteries must be the same model from the same
manufacturer. Mixing old and new batteries or different manufacturers is not permitted.
Use only the following 3.6V lithium thionyl chloride (Li-SOCl2) batteries (non-rechargeable),
size D. No other batteries are approved for use in XYR 6000 Wireless Transmitters.
Xeno Energy XL-205F
Eagle Picher PT-2300H
Tadiran TL-5930/s
Honeywell p/n 50026010-001 (Two 3.6V lithium thionyl chloride batteries) (1 transmitter)
Honeywell p/n 50026010-002 (Four 3.6V lithium thionyl chloride batteries) (2 transmitters)
Honeywell p/n 50026010-003 (Ten 3.6V lithium thionyl chloride batteries) (5 transmitters)
1 Loosen the M3 locking set screw on the battery end-cap (opposite end from display). See item
1 in Figure 10. Unscrew and remove the end cap.
6. Maintenance/Repair
6.2. Replacing batteries
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 35
6/24/08
Step Action
2 Using thumb and forefinger, squeeze the battery connector at top and bottom to disengage the
locking mechanism, then pull to disconnect. See item 2 in Figure 10.
3 Loosen the two battery holder retaining screws (closest to the batteries). See item 3 in Figure
10. The screws are captive.
4 Pull the battery holder out of the transmitter.
5 Remove the old batteries from the battery holder. If needed, pry out the batteries by using a
slotted screwdriver as a lever in the holder’s side slots. See item 4 in Figure 10.
6 Insert the new batteries using correct polarity shown on the battery holder.
7 Insert the battery holder into the transmitter. Reattach the screws and tighten to 0,4 – 0,6 N-M
(3.5 – 5.3 Lb-in).
Re-connect battery connector.
Honeywell recommends lubricating the end cap O-ring with a Silicone Grease such as Dow
Corning #55 or equivalent before replacing the end cap.
8 Screw the end cap back on and tighten the M3 locking screw.
9 Dispose of used batteries promptly per local regulations or the battery manufacturer’s
recommendations. Keep away from children. Do not disassemble and do not dispose of in fire.
1
2
+
-
+
-3
4
Figure 10 Battery replacement
6. Maintenance/Repair
6.3. Replacing antenna
36 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
6/24/08
6.3 Replacing antenna
Tools required
#1 Phillips Screwdriver or 1/8” Slotted Screwdriver
Torque Screwdriver
1.5 mm hex key
Procedure
ATTENTION
You must replace your antenna with the same type, that is, elbow, straight, or
remote. Changing to a different antenna type is not permitted by approval
agencies.
CAUTION
Take precautions against electrostatic discharge to prevent damaging the
sensor module.
WARNING
POTENTIAL ELECTROSTATIC CHARGING HAZARD
The integrally mounted antenna shroud is made of Teflon® and has a surface
resistance greater than 1Gohm per square. When the XYR 6000 transmitter
is installed in potentially hazardous locations care should be taken not to
electrostatically charge the surface of the antenna shroud by rubbing the
surface with a cloth, or cleaning the surface with a solvent. If electrostatically
charged, discharge of the antenna shroud to a person or a tool could possibly
ignite a surrounding hazardous atmosphere.
6. Maintenance/Repair
6.3. Replacing antenna
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 37
6/24/08
Table 14 Antenna replacement procedure
Step Action
1 Honeywell recommends that the transmitter be removed from service and moved to a clean
area before servicing.
2 Loosen the M3 locking set screw on the display end-cap. See item 1 in Figure 11. Unscrew
and remove the front end cap.
3 Loosen the two screws on the sensor module. See items 2 in Figure 11.
4 Remove the sensor module from the transmitter body and disconnect the antenna connector
from CN2 connector on the sensor module. See item 3 in Figure 11.
5 Loosen the locking set screw at the antenna base. Unscrew the antenna from the transmitter.
Remove the antenna and its connector from the transmitter. See Figure 11.
6 Feed the new antenna’s connector through the antenna hole to the front of the transmitter. Do
not connect to sensor module yet. Screw new antenna into transmitter body until finger-tight,
then back off 180 degrees to permit adjustment later.
7 Attach antenna connector to CN2 connector on sensor module. See item 3 in Figure 11.
8 Insert sensor module. Orient in the proper viewing orientation before tightening two sensor
compartment screws. See items 2 in Figure 11. Torque screws to 0,4 – 0,6 N-M (3.5 – 5.3 Lb-
in).
9 Replace the front end cap. Honeywell recommends lubricating the front end cap O-ring with a
Silicone Grease such as Dow Corning #55 or equivalent before replacing the end cap.
10 Adjust antenna for best reception. Don’t rotate antenna more than 180 degrees either direction
or you could twist and break the antenna wiring inside. Tighten the antenna locking set screw.
6. Maintenance/Repair
6.4. Parts
38 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
6/24/08
Antenna connecto
r
1
2
2
3
Figure 11 Antenna replacement
6.4 Parts
For other replacement parts, refer to XYR 6000 Wireless Transmitter HLAI specification (document 34-
XY-03-30).
6. Maintenance/Repair
6.4. Parts
Revision 3 OneWireless XYR 6000 HLAI Transmitter User's Manual 39
6/24/08
6. Maintenance/Repair
6.4. Parts
40 OneWireless XYR 6000 HLAI Transmitter User's Manual Revision 3
6/24/08

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