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PW-6000
(PW6K1IC)
Intelligent Controller and System
Installation and Configuration Guide
August 2013 © 2013 Honeywell. All rights reserved.
800-00005V3
Copyright© 2013 Honeywell. All rights reserved.
All product and brand names are the service marks, trademarks, registered trademarks, or registered service marks of their respective owners. Printed in the United States of America. Honeywell reserves the right to change any information in this document at any time without prior notice.
Pro-Watch
®
is a trademark of Honeywell, Inc.
Ordering Information
Please contact your local Honeywell representative or visit us on the web at www.honeywellintegrated.com for information about ordering.
Feedback
Honeywell appreciates your comments about this manual. Please visit us on the web at www.honeywellintegrated.com to post your comments.
August 2013 © 2013 Honeywell. All rights reserved.
800-00005V3
C
ONTENTS
Chapter 1 PW-6000 Installation
1 Notices
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2
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2
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3
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4
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4
1.5 Disclaimer – Product Liability; Mutual Indemnification
5
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5
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6
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6
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7
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7
1.11 Recommended testing and maintenance.
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8
2 Product Overview
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8
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9
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9
3 Setting Up the PW-6000 Hardware
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15
3.5 Supplying Power to the PW-6000 Interface
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16
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17
3.7 Cabinet Tamper and Power Failure Input Wiring
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17
3.8 Memory and Real Time Clock Backup Battery
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18
4 System Configuration via Web Interface
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18
4.1 Connecting to ACDSM for the First Time
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18
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20
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PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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28
Appendix A PW-6000 Web Server and
Pro-Watch Channels
Appendix B SNET Reader Settings
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PW-6000 Installation
In this chapter...
Setting Up the PW-6000 Hardware
System Configuration via Web Interface
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PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3 1
2
PW-6000 Installation
Notices
1 Notices
Wiring methods shall be in accordance with the National Electrical Code
(ANSI/NFPA70), Canadian Electrical Code, Part I (CSA C22.1) Safety Standard for
Electrical Installations, local codes, and the authorities having jurisdiction.
Caution:
Disconnect power before servicing.
ATTENTION: Débranchez l'alimentation électrique avant l'entretien.
1.1 Warnings and Cautions
Note:
See the Remote Enclosure Installation Manuals PW5K2ENC1/PW5K2ENC2 or
PW5K1ENC3 (not evaluated by UL) for installation instructions.
1.1.1 Before Installation
Warning:
Before installation, TURN OFF the external circuit breaker which supplies power to the system.
AVERTISSEMENT: Avant de procéder à l'installation, DESENCLENCHER le disjoncteur via lequel le système est alimenté.
Before connecting the device to the power supply, verify that the output voltage is
within specifications of the power supply (see ' Technical Specifications ' on page 14).
Do not apply power to the system until after the installation has been completed.
Personal injury or death can occur, and the equipment can be damaged beyond repair, if this precaution is not observed.
1.1.2 Fire Safety and Liability Notice (Not Evaluated by UL for fire, life safety, or burglary application)
Warning:
Never connect card readers to any critical entry, exit door, barrier, elevator or gate without providing an alternative exit in accordance with all the fire and life safety codes pertinent to the installation.
AVERTISSEMENT: Ne jamais connecter de lecteur de carte en un point critique
(porte de sortie, barrière, ascenseur ou portillon) sans proposer une autre sortie, ce afin de respecter la règlementation en vigueur en matière d'incendie et de protection des vies humaines, afférente à l'installation.
These fire and safety codes vary from city to city and you must get approval from local fire officials whenever using an electronic product to control a door or other barrier. Use of egress buttons, for example, may be illegal in some cities. In most applications, single action exit without prior knowledge of what to do is a life safety requirement. Always make certain that any required approvals are obtained in writing.
DO NOT ACCEPT VERBAL APPROVALS SINCE THEY ARE NOT VALID.
Honeywell Integrated Security never recommends using the PW-6000 or related products for use as a primary warning or monitoring system. Primary warning or monitoring systems should always meet the local fire and safety code requirements.
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PW-6000 Installation
Notices
Failure to test a system regularly could make the installer liable for damages to the end user if a problem occurs.
1.1.3 Earth Grounding
Warning:
The earth ground is connected at the factory and should not be removed.
AVERTISSEMENT: La prise de terre est reliée à l'usine et ne doit pas être retirée
1.1.4 Use Suppressors
Warning:
Use suppressors on all door strikes. Use S-4 suppressors for installation.
Honeywell Integrated Security, Inc. recommends only DC strikes.
AVERTISSEMENT: Employer des suppresseurs de surtensions transitoires (S-4) sur toutes les gâches de porte. Honeywell Integrated Security recommande l'utilisation exclusive de gâches électriques à courant continu.
1.2 UL/ULC Warnings
The following applies to installations that require UL or ULC compliance:
Only UL/ULC Listed readers with standard Wiegand data output communication format (protocol) have been evaluated for use with this system.
This product is intended to be installed indoors, within the protected premises.
Access Control System, Model PW6000, and Controller, Model PW6K1IC meet the requirements for CAN/ULC-S319-05 Equipment Class 1. This product's compliance to ULC-S319, Electronic Access Control Systems, will be considered invalidated through the use of any add-on, expansion, memory or other module manufactured or supplied by the manufacturer or manufacturer's representative, unless specifically evaluated by ULC.
All unused conduit holes must be properly plated or incorporate a Listed plug to fill any voids.
All interconnecting devices must be UL/ULC Listed.
Refer to the following Installation manuals for installation, connection, programming, and operation instructions of the following sub-assemblies:
Assembly Number
PW6K1IC
PW6K1R2
PW6K1IN
PW6KOUT
Installation Manual Part Number
800-00005V3
800-01951V4
800-01952V1
800-01953V1
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
Notices
Assembly Number
PW5K2ENC1 and PW5K2ENC2
PW5K1ENC3
Installation Manual Part Number
800-06952
800-06955V1
PW5K2ENC5 800-08421
PW6K2E2PS 800-08279V3
Note:
Not Evaluated by UL for fire, life safety, or burglary applications.
The earth ground is connected at the factory and should not be removed.
Do Not Connect To A Receptacle Controlled By A Switch.
Replacement 3 volt lithium coin cell must be one of the following:
Rayovac: BR2325 or BR2335-B
All interconnecting wire must be UL/ULC Listed, rated and suitable for the use.
The battery leads and primary AC main power wiring is non-power limited. This wiring must be separated from all other wiring by at least 0.25" and cannot be installed in the same conduit as any other power limited wiring.
The system must be configured to activate an alarm or trouble signal. Failure to do so will not allow the access function to operate in the event of a tamper.
1.3 Damage During Shipment
Caution:
IF ANY DAMAGE TO THE SHIPMENT IS NOTICED, A CLAIM MUST
BE FILED WITH THE COMMERCIAL CARRIER RESPONSIBLE FOR THE
DAMAGE.
ATTENTION: SI L'EQUIPEMENT A SUBI DES DOMMAGES LORS DE SON
TRANSPORT, ADRESSER UNE RECLAMATION AU TRANSPORTEUR
RESPONSABLE.
1.4 Electro Static Discharge
Caution:
Electro-static discharge (ESD) can damage CMOS integrated circuits and modules.
To prevent damage always follow these procedures:
• Use static shield packaging and containers to transport all electronic components, including completed reader assemblies.
• Handle all ESD sensitive components at an approved static-controlled workstation. These workstations consist of a desk mat, floor mat and an ESD wrist strap. Workstations are available from various vendors.
ATTENTION: Des décharges électrostatiques peuvent endommager les modules et circuits intégrés CMOS.
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PW-6000 Installation
Notices
Note:
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 when the equipment is operated in a commercial environment.This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the installation and user guides, 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.
Note:
This document and the data in it shall not be duplicated, used or disclosed to others for procurement or manufacturing, except as authorized by and with the written permission of Honeywell Integrated Security, Inc.The information contained in this document or in the product itself is the exclusive property and trade secrets of
Honeywell Integrated Security, Inc. Copyright laws of the United States protect all information in this document or in the software product itself.
Note:
Any use of this product is subject to the terms and acceptance of the Honeywell
Integrated Security, Inc. Software Agreement. Please request a copy from Honeywell
Integrated Security, Inc. (http://www.honeywellintegrated.com/index.html), and review the agreement carefully.
1.5 Disclaimer – Product Liability; Mutual Indemnification
If a Customer receives a claim that a Product or any component thereof has caused personal injury or damage to the property of others, Customer shall immediately notify Honeywell Integrated Security in writing of all such claims. Honeywell
Integrated Security shall defend or settle such claims and shall indemnify and hold
Customer harmless for any costs or damages including reasonable attorneys’ fees which Customer may be required to pay as a result of the defective Product or the negligence of Honeywell Integrated Security, its agents, or its employees.
Customer shall hold harmless and indemnify Honeywell Integrated Security from and against all claims, demands, losses and liability arising out of damage to property or injury to persons occasioned by or in connection with the acts or omissions of
Customer and its agents and employees, and from and against all claims, demands, losses and liability for costs of fees, including reasonable attorneys’ fees, in connection therewith.
1.6 Unpacking Procedure
Caution:
If any damage to the shipment is noticed before unpacking, a claim must be filed with the commercial carrier.
ATTENTION: SI L'EQUIPEMENT A SUBI DES DOMMAGES LORS DE SON
TRANSPORT, ADRESSER UNE RECLAMATION AU TRANSPORTEUR
RESPONSABLE.
All containers should be opened and unpacked carefully in order to prevent damage to the contents.
Follow these steps to unpack equipment in preparation for installation:
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
Notices
1. Open the container and remove the unit(s) and all packing material. Retain the container and all the packing materials. They may be used again for reshipment of the equipment, if needed.
2. Inspect the contents to see if anything is missing. If you notice any missing items, contact the order entry department at 1-800-323-4576 Option-1.
3. Visually check the contents. If you see any damage, do the following: a. If shipping has caused damage to the unit, a claim must be filed with the commercial carrier. b. If any other defect is apparent, call for a return authorization.
1.7 Shipping Instructions
To ship equipment back to Honeywell Integrated Security, contact the customer service department at 1-800-323-4576 before returning the equipment. When you call, please have available:
• A description of the problem or the reason you are returning the equipment.
• Your original purchase order number, invoice number and if the unit is still under warranty.
• A new purchase order number if the unit is not under warranty
From the customer service department, obtain the Return Authorization Number
(RMA).
Show the RMA number on all packages shipped. Packages, which are not marked with an RMA number will be refused at the factory and returned to you COD.
Carefully pack the equipment for shipment. Use the original packing material whenever possible
1.8 Limited Warranty
All Products sold or licensed by Honeywell Integrated Security include a warranty
registration card which must be completed and returned to Honeywell Integrated
Security by or on behalf of the end user for Honeywell Integrated Security to provide warranty service, repair, credit or exchange. All warranty work shall be handled through Customer which shall notify Honeywell Integrated Security and apply for a
Return Merchandise Authorization (RMA) number prior to returning any Product for service, repair, credit or exchange. Honeywell Integrated Security warrants that its
Products shall be free from defects in materials and workmanship for a period of two years from the date of shipment of the Product to Customer. The warranty on
Terminals, Printers, Communications Products and Upgrade kits is 90 days from the date of shipment. Satisfaction of this warranty shall be limited to repair or replacement of Products which are defective or defective under normal use. Honeywell Integrated
Security’s warranty shall not extend to any Product which, upon examination, is determined to be defective as a result of misuse, improper storage, incorrect installation, operation or maintenance, alteration, modification, accident or unusual deterioration of the Product due to physical environments in excess of the limits set forth in Product manuals. THERE ARE NO WARRANTIES WHICH EXTEND
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PW-6000 Installation
Notices
BEYOND THIS PROVISION. THIS WARRANTY IS IN LIEU OF ALL OTHER
WARRANTIES WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING
IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR ANY
PARTICULAR PURPOSE. NO REPRESENTATION OR WARRANTY OF THE
DISTRIBUTOR SHALL EXTEND THE LIABILITY OR RESPONSIBILITY OF
THE MANUFACTURER BEYOND THE TERMS OF THIS PROVISION. IN NO
EVENT SHALL HONEYWELL INTEGRATED SECURITY BE LIABLE FOR
ANY RE-PROCUREMENT COSTS, LOSS OF PROFITS, LOSS OF USE,
INCIDENTAL, CONSEQUENTIAL OR SPECIAL DAMAGES TO ANY PERSON
RESULTING FROM THE USE OF HONEYWELL INTEGRATED SECURITY’S
PRODUCTS.
1.9 Confidentiality
All software, drawings, diagrams, specifications, catalogs, literature, manuals and other materials furnished by Honeywell Integrated Security relating to the design, use and service of the Products shall remain confidential and shall constitute the proprietary rights of Honeywell Integrated Security and Customer agrees to treat such information as confidential. Customer shall acquire no rights in the design of the
Products or the related materials except to use such information solely for the purpose of and only during the time it sells the Products.
Customer shall not copy the design of any of the Products or use or cause to be used any Product design or related materials for its own benefit or for the benefit of any other party. The covenants contained in this section shall remain effective throughout the term of this Agreement and thereafter unless specifically waived by Honeywell
Integrated Security in writing.
1.10 Compliance
This Class A digital apparatus complies with Canadian ICES-003.
Cet appareil numérique de la classe A est conforme à la norme NMB- 003 du Canada.
To obtain applicable EU compliance Declaration of Conformities for this product, please refer to our website, http://www.security.honeywell.com/hsce/international/index.html.
For any additional information regarding the compliance of this product to any
EU-specific requirements, please contact:
Honeywell Security & Communications
Honeywell Security - Quality Assurance Dept., Newhouse Industrial Estate
Motherwell
Lanarkshire ML1 5SB
Scotland
United Kingdom
Tel: +44(0) 1698 738200
Email: [email protected]
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PW-6000 Installation
Product Overview
1.11 Recommended testing and maintenance.
Perform the following on a semi-annual basis. Disconnect power from the enclosure, open the enclosure door and inspect the system including the DC battery. Replace the
DC battery if it shows any sign of corrosion or leakage or if the battery is 2 years old or older. Oil the lock cylinder. Close the panel and re-apply power.
2 Product Overview
The Intelligent Controller is the heart of the PW-6000 and provides the real time processing for the connected I/O interfaces.
The PW-6000 is designed to operate without the need for a PC. It can be connected to a Pro-Watch host computer using direct serial communication, dial-up modem, or
TCP/IP network connection. The PW-6000 holds the database for the subsystem configuration and card holders, and the event log buffer, which is in battery-backed memory.
Notes:
• Please refer to the Pro-Watch Software Suite Guide for details on using the
Pro-Watch interface.
• The optional Lantronix Cobox-Micro interface daughter board and dial-up modem have not been tested to comply with UL 294 and cannot be used on UL
294 approved installations.
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PW-6000 Installation
Product Overview
2.1 PW-6000 and PW-5000
• The PW-6000 controller configuration and operation is similar to the PW-5000 controller; both use the Pro-Watch at the front end.
Note:
The PW6K1IC controller is compatible with the following Honeywell modules:
PW6K1R2, PW6K1IN, and PW6K1OUT. The PW6K1IC is also compatible with the following PW5K assemblies but they have not been evaluated by UL for S-319:
PW5K1R1, PW5K1R2, PW5K1IN, PW5K1OUT.
2.2 Port Settings
• Port 0 provides the host-embedded Ethernet interface.
• Port 1 is for RS-232 or RS-485 2-wire serial interface connections. An optional Lantronix CoBox-Micro interface daughter board
(10Base-T/100Base-TX) is also supported on Port 1.
• Ports 2 and 3 are for RS-485 2-wire downstream support for connecting 32
I/O devices. Note that the I/O communications must be mapped differently in
Pro-Watch, according to the following table:
PW-6000 Port
2
3
Pro-Watch Port
4
6
See Table 1 ' PW-6000 Jumper Settings ' on page 11 for more information on how to
configure the port settings.
2.3 Other
• An on-board real time clock maintains the date and time, taking into account leap year and accounting for global time zones and daylight savings time changes.
• The database for the system configuration and card holders are stored in
FLASH memory.
• The event log buffer is stored in battery-backed memory.
• Configuration data and event/status reports are communicated to the host via on-board 10-BaseT/100Base-TX Ethernet port or Port 1.
• Transactions are stored in 1 MB of battery-backed SRAM. The maximum number of transactions stored while the host is offline is 50,000.
• Cards are stored in Flash memory and read into DRAM when the board is powered up. The amount of storage available for cards and biometric records is
15 MB. The maximum number of cards depends on the card record database configuration, but the number is approximately 300,000. This maximum is dependent on how the card is configured with more space per card used with longer card number, more clearance codes, and so on.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
Product Overview
Figure 1: PW-6000 Connections, LEDs, and DIP Switches
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PW-6000 Installation
Setting Up the PW-6000 Hardware
3 Setting Up the PW-6000 Hardware
The PW-6000 processor is configured with 12 jumpers and a set of 4 DIP switches.
These jumpers/switches set up the port interface, end of line termination, and operating mode configuration. Refer to the tables below to set the jumpers as required.
3.1 Setting the Jumpers
Table 1 PW-6000 Jumper Settings
Jumpers
Set At Description
J1
J2
J3
J4
J5
J6
J7
N/A
N/A
J8, J9, J10
232
485
J11
J12
N/A
N/A
OFF
ON
OFF
ON
N/A
N/A
OFF
ON
10Base-T/100Base-TX Ethernet Connection (Port 0)
Factory Use Only
Port 2 RS-485 EOL Terminator is OFF
Port 2 RS-485 EOL Terminator is ON
Port 3 RS-485 EOL Terminator is OFF
Port 3 RS-485 EOL Terminator is ON
Port 1 RS-485 EOL Terminator is OFF
Port 1 RS-485 EOL Terminator is ON
Factory Use Only
COBOX-MICRO Ethernet Module Connection (Port 1)
Port 1 is RS-232
Port 1 is RS-485
Factory Use Only
Factory Use Only
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PW-6000 Installation
Setting Up the PW-6000 Hardware
3.2 Setting the DIP Switches
Dual In-line Package (DIP) switches are read when the system powers up, except where noted otherwise. The following table shows the setting options.
Table 2 PW-6000 DIP Switch Settings
S1
S2 S3 S4
OFF
ON
OFF
OFF
OFF
OFF
OFF
OFF
OFF
ON
ON
ON
OFF
OFF
OFF
OFF
Selection
Normal Operating Mode.
When DIP switch 1 is ON, Port 0 communicates with the web browser.
Port 1 is used for RS-232/485 communications. After the panel initialization, enable the default user name (admin) and password (password).
The user name and password are read dynamically; you do not need to reboot the panel.
Use the factory default communication parameters.
Unless the network administrator reserves an IP address for the panel
(based on the controller board’s Media
Access Control (MAC) address), the
PW-6000 uses Dynamic Host
Configuration Protocol (DHCP) to obtain an IP address from the network
DHCP server.
When power is applied with the switches in this position, there is a ten second window (when LEDs 1and 2 flash alternately with LEDs 3 and 4), during which memory is cleared if switch 1 or switch 2 is changed to OFF.
When switch 1 or 2 is changed to OFF, only LED 2 flashes and memory begins to be cleared. This period of clearing lasts several minutes. When the memory has been cleared, the LED pattern changes to the flashing of LEDs 1 and 4.
The panel then reboots by itself. All data in memory is erased except the serial number, MAC address, hardware revision, and OEM code.
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PW-6000 Installation
Setting Up the PW-6000 Hardware
The PW-6000 DIP switches need to be set twice:
1. Configure the S4-S3-S2-S1 DIP switches to off-off-on-off to set the default
TCP/IP address to 192.168.0.251.
2. Apply power to the panel to set the IP address.
3. Change the S4-S3-S2-S1 combination to off-off-off-on.(DIP switch 1 is “read on the fly”). This sets the login to the default user ID (“admin”) and password
(“password”) for Ethernet communications.
4. Create users. See ' User Configuration ' on page 26 for instructions.
5. Set the S4-S3-S2-S1 combination to off-off-off-off.
6. Configure the host port for TCP/IP and/or Serial communications. See ' Host
Port ' on page 21 for instructions. This will enable both TCP/IP and serial
hardware networking when you log in again.
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PW-6000 Installation
Setting Up the PW-6000 Hardware
3.3 Technical Specifications
Table 3 PW-6000 Technical Specifications
Category Description
Primary Power
WARNING: PW-6000 is manufactured for use in low-voltage, Class 2 power-limited circuits only.
AVERTISSEMENT: Le PW-6000 est conçu pour un usage en basse tension, des circuits de classe 2 puissance limitée.
12Vdc ± 10%, 300mA maximum.
12Vdc @ 240mA (325mA with CoBox-Micro) nominal (Not
Evaluated by UL/ULC).
3Volts Lithium, type BR2325, BR2330, CR2330.
Memory and
Clock Backup
Ports
Port 1
Port 2 & 3
RS-232 or 2-wire RS-485: 9,600 to 115,200 bps, async. An optional Lantronix
CoBox-Micro interface daughter board is supported (10Base-T/100Base-TX -- Not
Evaluated by UL/ULC).
2-wire RS-485: 2,400 to 38,400 bps, async.
Inputs
Cable requirements
2 non-supervised, dedicated for cabinet tamper and power fault monitoring.
Power:
RS-485:
RS-232:
1 twisted pair, 18 AWG.
24AWG, 4,000ft (1,200m) maximum, twisted pair with shield. 120 ohm.
24AWG, 25ft (7.6m) maximum.
Environmental
Mechanical
Lantronix NIC support
Input:
1 twisted pair, 30 ohms maximum.
Temperature: 0 to 49°C, operating
-55 to +85°C, storage
Humidity: 0 to 85% RHNC
Dimensions: 5.5 in. (137.7mm) W x 9 in. (228.6.4mm) L x .75 in. (19.05mm) H
Weight:
7.1 oz. (201 gm) nominal
Standoff size
Diameter 0.125 inch x 0.4375 inch long
Richco Plastics part number LMSP-7-01, 3 pieces (not supplied)
Specifications subject to change without notice.
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PW-6000 Installation
Setting Up the PW-6000 Hardware
Caution:
Locate the power source as close to this board as possible. Connect power with minimum of 18AWG wires.
ATTENTION: Placez la source d'alimentation au plus proche de la carte
électronique. Connectez l'alimentation avec des fils d'un minimum de 18 AWG.
Note:
POLARITY for 12 VDC power is important. Make sure the +12 VDC is connected to the terminal labeled +12V and the return is connected to the terminal labeled GND.
3.4 Status LEDs
The PW-6000 uses six on-board LEDs to provide status information during its initialization sequence and normal run-time operation.
3.4.1 Initialization
Table 4 PW-6000 Status LED Combinations During Initialization
LED 1
LED 2 LED 3 LED 4 LED 5 LED 6 Description
ON OFF OFF OFF OFF OFF Basic processor initialization
ON
OFF
ON
OFF
ON
OFF
ON
OFF
ON
OFF
ON
ON
ON
ON
ON
ON
ON
ON
ON
ON
ON
OFF
ON
ON
ON
OFF
OFF
OFF
OFF
ON
OFF
OFF
X
OFF
ON
ON
OFF
OFF
ON
ON
OFF
OFF
ON
X
OFF
OFF
OFF
OFF
OFF
OFF
OFF
OFF
OFF
OFF
X
ON
ON
X
OFF
OFF
OFF
ON
OFF
OFF
OFF
OFF
Internal SRAM test
External SDRAM, First Chip
External FLASH Test
External SDRAM, Second
External SRAM Test
External EEPROM Test
External RTC Test
Backup Battery and Reset
UART Test
Ethernet Interface, MII
Final processor Initialization
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
Setting Up the PW-6000 Hardware
3.4.2 Run TimeSupplying Power to the PW-6000 Interface
4
5
2
3
6
SPD
ACT
Table 5 PW-6000 Status LED Combinations During Run Time
LED Description
1
LNK
Off-Line / On-Line and Battery Status
Off-Line = 20% On, ON-Line = 80% On
Double Flash means the Battery is Low
Primary Host Communication Activity (Ethernet or Port 1)
Port 2 Communication Activity
Port 3 Communication Activity
ON = Writing to Flash Memory. Do NOT cut off power when this LED is ON.
TBD
On-Board Ethernet Speed. OFF = 10MBS. ON = 100MBS.
OFF = No On-Board Ethernet Activity. ON = On-Board Ethernet Activity
(YELLOW LED).
OFF = ON Link. ON = Good Link (GREEN LED).
3.5 Supplying Power to the PW-6000 Interface
The processor accepts 12Vdc for power. Locate power source as close to the unit as possible and connect it with minimum of 18AWG wires.
Caution:
Observe POLARITY on 12 VDC.
ATTENTION: Observez la polarité du 12 VCC
Figure 2: PW-6000 Power Terminals
TB1
TR+
TR-
PORT 3
GND
+12V
GND
+
-
12Vdc ±10%
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PW-6000 Installation
Setting Up the PW-6000 Hardware
3.6 Communications Wiring
The PW-6000 processor communicates to the host via on-board Ethernet
10Base-T/100Base-TX port or on port 1. Port 1 may be configured as RS-232, two-wire RS-485 or optional Lantronix Ethernet 10Base-T/ 100Base-TX
CoBox-Micro interface. The RS-232 interface is for direct one to one connection to a host computer, or a modem.
Ports 2 and 3 use the two-wire RS-485 interface only. The interface allows multi-drop communication on a single bus of up to 4,000 feet (1,200 meters). Use shielded twisted pair (minimum 24 AWG) with 120-ohm impedance. Install termination jumpers only at the end-of-line unit.
Figure 3: PW-6000 Port Wiring
TXD/TR+
RXD/TR-
RTS
CTS
GND
TB3 TB3
TXD/TR+
RXD/TR-
RTS
CTS
GND
TB2
TR+
TR-
GND
TB1
TR+
TR-
GND
+12V
GND
PORT 1 CONFIGURED as RS-232
PORT 1 CONFIGURED as 2-WIRE RS-485
PORT 2
2-WIRE RS-485
PORT 3
2-WIRE RS-485
3.7 Cabinet Tamper and Power Failure Input Wiring
Figure 4: PW-6000 TMP and FLT Terminals
Inputs TMP and FLT are used for monitoring cabinet tamper and power failure with normally closed contacts. These two inputs are for contact closure monitoring only; do not use end-of-line (EOL) resistor(s). If these inputs are not used, install a short piece of wire at the input to indicate a safe condition.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
System Configuration via Web Interface
3.8 Memory and Real Time Clock Backup Battery
The event log buffer and the real time clock are backed up by a 3V lithium battery.
This BR2325, BR2330, or CR2330 battery should be replaced annually. A replacement battery may be obtained from Honeywell or a local battery retailer.
However, the replacement battery must be UL recognized.
Warning:
Battery may explode if mistreated. DO NOT RECHARGE, DISASSEMBLE or DISPOSE OF IN FIRE!
AVERTISSEMENT: La batterie peut éclater si elle est maltraitée. NE PAS
RECHARGER, DEMONTER OU JETER AU FEU!
4 System Configuration via Web Interface
The PW-6000 comes with Access Control Device Server Manager (ACDSM). The
ACDSM is a built-in web server, through which you can configure network and other system settings.
Notes:
• If you are using Internet Explorer Enhanced Security Configuration, you cannot access the ACDSM web server. All pages will display “Bad Request!”
You must uninstall the Enhanced Security option before you can access the
ACDSM.
• The default factory-set TCP/IP address for the built-in system configuration web server is 192.168.0.251
4.1 Connecting to ACDSM for the First Time
1. Use the factory default controller IP address 192.168.0.251.
2. Set the DIP switches to S4=OFF, S3=OFF, S2=ON, S1=OFF.
Note:
S1 must be set to OFF for the factory default. After the panel powers up, change S1 to ON to enable the use of the default user name and password.
3. Connect the computer to host the web server via Ethernet Port 0. Connection should be via crossover Ethernet cable or by the regular Ethernet cables connected via the hub.
4. Set the host computer to the static IP address 192.168.0.250 to be able to connect to the factory-default PW-6000 controller at address 192.168.0.251.
5. Power up the PW-6000 controller.
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PW-6000 Installation
System Configuration via Web Interface
4.2 Login Page
1. Click the “Click Here to Login” link to display the User Name and Password fields.
Figure 5: PW-6000 Web Server Login Screen
2. Enter your User Name and Password.
Note:
Default User ID is admin and the default Password is password.
4.3 Home Page
The first screen after the login is the home page which displays all the available configuration links on the left navigation bar:
Figure 6: PW-6000 Web Server Home Page
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
System Configuration via Web Interface
4.4 Network Settings
Click the Network link on the navigation bar to display the Network Settings screen where you can select the appropriate option button for dynamic or static IP address configuration:
Figure 7: PW-6000 Web Server Network Settings Screen
20
Notes:
• The Host Name of This Device field contains the Media Access Control
(MAC) address of the PW-6000 controller board.
• The IP address configuration is same as using the Lantronix Ethernet board on a PW-5000. The users can select the Dynamic IP option button and reserve an
IP address for the MAC address, or they can select the other option button and assign a Static IP address as well.
4.4.1 Dynamic IP Configuration Method
1. Click the Dynamic IP option button to select the Dynamic Host Configuration
Protocol (DHCP) method to obtain IP address automatically.
2. Click OK.
Note:
The Pro-Watch communicates with the PW-6000 panel using an IP address. If you must use the Dynamic IP option because of your network policies or configuration, you must reserve an IP address at the DHCP server for the MAC (Media
Access Control) address in the PW-6000 panel. The MAC address is a unique identifier attached to network adapters. Each time the PW-6000 panel requests an IP address, the DHCP server will assign the address that was reserved for it.
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PW-6000 Installation
System Configuration via Web Interface
4.4.2 Static IP Configuration Method
1. Click the Static IP option button to assign a static IP address, and enter the following information in the appropriate fields:
• IP Address
• Subnet Mask
• Default Gateway
2. Click OK.
4.5 Host Port
Click the Host Port link on the navigation bar to display the Host Connection
Configuration screen where you can select the appropriate settings for the Primary
Host Port and Alternate Host Port:
Note:
Some of the fields change dynamically depending on the Connection Type selected.
4.5.1 IP Server Connection Type
Figure 8: PW-6000 Host Port Configuration Screen with IP Server Connection
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
System Configuration via Web Interface
1. From PW6000 Communication Address drop-down list, select one of the eight
(0 to 7) available communication addresses for the PW-6000 board.
Note:
In the previous panels, this selection was made manually by setting the
DIP switches.
2. For the Primary Host Port, make the following selections: a. Connection Type. Select IP Server (the standard connection type), so that the Pro-Watch Host will poll the PW-6000 panel. The panel does not currently support the IP Client option, which would cause the
PW-6000 panel to poll the Pro-Watch Host and the Host to reply to the panel.
b. Data Security. Select one of the following:
– None
– Password/AES from the drop-down list. If you select
Password/AES, communications between the Pro-Watch Host and the PW-6000 panel are encrypted. Note that encryption must be enabled in Pro-Watch for the appropriate Pro-Watch channel.
See Chapter 7, “Hardware Configuration,” in the Pro-Watch
Guide for channel encryption instructions.
c. Port Number. Enter the port number through which the host computer can communicate with the PW-6000 board.
d. Select either Allow All or the Authorized IP Address Required option button.
– Allow All, as the label suggests, allows all IP addresses to communicate with the PW-6000. Select this option for web page browser access.
– If you select the Authorized IP Address Required option, also enter in the Authorized IP Addresses fields all the IP addresses that would be allowed to communicate with the PW-6000. Use this option only for Host communication.
3. For the Alternate Host Port, make the following selections: a. Connection Type. Select one of the following values from the drop-down list: IP Server, Serial-RS232, Serial-RS485,
Serial-Modem, Serial-CoBox. Note that the IPClient option is listed, but it is not supported by the panel and should not be selected.
b. Data Security. Select one of the following values from the drop-down list: None, Password/no AES, Password/AES.
c. Select a Baud Rate from the drop-down list.
d. Select a Flow Control from the drop-down list.
4. Click OK.
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PW-6000 Installation
System Configuration via Web Interface
4.5.2 IP Client Connection Type
Figure 9: PW-6000 Host Port Configuration Screen with IP Client Connection
Note:
The PW-6000 panel does not currently support an IP Client connection.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
System Configuration via Web Interface
4.5.3 Serial-RS232, Serial-RS485, Serial-Modem, or Serial-CoBox
Connection Types
Figure 10: PW-6000 Host Port Configuration with Serial RS-232 Connection
24
1. From the PW6000 Communication Address drop-down list, select one of the eight (0 to 7) available communication addresses for the PW-6000 board.
Note:
In the previous panels, this selection was made through setting the virtual
DIP switches.
2. For the Primary Host Port, make the following selections: a. Connection Type. From the drop-down list, select Serial-RS232. Select one of the following as appropriate: Serial-RS232, Serial-RS495,
Serial-Modem, Serial-CoBox.
b. Data Security. Select one of the following values from the drop-down list: None, Password/no AES, Password/AES.
c. Select a Baud Rate from the drop-down list.
d. Select a Flow Control from the drop-down list.
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PW-6000 Installation
System Configuration via Web Interface
3. For the Alternate Host Port, make the following selections: a. Connection Type. If you choose to configure an alternate host port, and if you have selected Serial-RS232 for the primary host port, select IP
Server from the drop-down list for the alternate host port.
b. Data Security. Select one of the following values from the drop-down list: None, Password/no AES, Password/AES.
c. Select a Baud Rate from the drop-down list.
d. Select a Flow Control from the drop-down list.
4. Click OK.
4.6 Device Information
Click the Device Info link on the navigation bar to display the read-only Access
Control Device Hardware Information screen:
Figure 11: PW-6000 Web Server Device HW Info Screen
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
System Configuration via Web Interface
4.7 User Configuration
Click the Users link on the navigation bar to display the User screen where you can add, edit, and delete user records:
Figure 12: PW-6000 Web Server User Info Screen
26
4.7.1 Adding a User
Follow these steps:
1. Click New Account to display the new user account screen.
2. Enter the following:
• User name – a unique character string that identifies the user.
• Level – level of privileges the user will have. Level 1 grants the user read/write privileges to all panel features; level 2 grants the user read-only privileges to the Notes, Network, Host Port, and Device Info features; level 3 grants the user read-only privileges to just the Notes and Device Info features.
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PW-6000 Installation
System Configuration via Web Interface
3. Specify the maximum period of time a session will remain open without user activity. If the period expires without user activity, the user is logged out. After specifying the time period, click Save Session Timer to save the setting.
4. Configure the auto-save timer. This feature, if enabled, automatically saves the hardware configuration in non-volatile Random Access Memory (RAM) at the specified time interval. If you select Enable Auto-Save, then select a time interval from the drop-down list, and click Save Auto-Save Timer to save the setting.
4.7.2 Editing a User
To edit a user record, click to select the user from the Username column and then click
Edit. Use the information provided in the previous section, “Adding a User,” to edit the record.
4.7.3 Deleting a User
To delete a user record, click to select the user from the Username column and then click Delete.
4.8 Restore Default Screen
Click the Restore Default link on the navigation bar to restore the default configuration values for the PW-6000:
Figure 13: PW-6000 Web Server Restore Default Screen
1. Click Restore Default to reload the default factory settings for all the configuration variables.
2. Click Restore Current to reload the current operational settings for all the configuration variables.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
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PW-6000 Installation
System Configuration via Web Interface
4.9 Apply Setting Screen
Click the Apply Setting link on the navigation bar to apply the selected configuration values:
Figure 14: PW-6000 Web Server Apply Setting Screen
Click Apply, Reboot to apply all the configured values and reboot the PW-6000.
4.10 Log Out
Click the Log Out link on the navigation bar to log out of the web server.
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PW-6000 Web Server and
Pro-Watch Channels
A
The PW-6000 web server’s host port configuration requires corresponding changes in the way the Pro-Watch channels are configured. The PW-6000 web server host ports and the Pro-Watch channel ports must have the correct values to communicate with each other.
Follow these steps:
1. Set the PW-6000 hardware configuration: a. On the controller board, set the jumpers J8, J9, J10 on Port1 to
RS-485.
b. On Port1, connect the pins as follows:
– pin1 = TR+
– pin2 = TR-
– pin5 = GND to RS-485 terminals of the Intelligent “Auto”
Converter PW5K1CVT1 (i.e., PW-5000 RS-232/RS-485 converter) c. Connect the RS-232 terminal of the PW5K1CVT1 converter to the serial port of your Pro-Watch application server.
2. Set the host port configuration of the PW-6000 web server: a. Login to the Access Control Device Server Configuration Manager.
b. Set the Primary Host fields as follows:
– Connection Type = IP Server
– Port Number = 3001
– Data Security = Allow All c. Set the Alternate Host Port fields as follows:
– Connection Type = Serial-RS-485
– Baud Rate= 38400
– Data Security = None
– Flow Control = RTS Toggle d. Click OK.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3 29
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e. From the Setting menu, select Apply, Reboot. The system will display the “Board is Restarting” message.
3. Set the port configuration for the Pro-Watch channel: a. In Pro-Watch, click Hardware Configuration on the left navigation bar.
b. Right click on your Site to launch the mini pop-up menu.
c. Select New > Channel to display the Create a Channel dialog box.
d. Click the Channel Type drop-down list and select PW-5000. The icon of the newly created PW-5000 channel will display in the right pane.
e. Right click on the icon of your PW-5000 channel and select
Properties to display the Edit Channel Screen dialog box.
This screen displays configuration fields for the Primary Port
(related to the Primary Host on the web server) as well as the
Secondary Port (related to the Alternate Host Port on the web server).
f. For both Primary and Secondary ports, select the appropriate values for the following configuration fields:
– If the Port Type is Hard Wired (related to Serial-RS485 web server host port), then fill in the following settings:
• ComPort
• Baud
– If the Port Type is TCP/IP (related to IP Server web server host port), then fill in the following settings:
• IP Address
• Port Number
Note:
If you are using a modem, and the modem uses a procedure that calls Pro-Watch, then the modem must be the primary port.
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SNET Reader Settings
In this appendix...
SNET Reader from PW-6000 2-Reader Board
PW6KIC vs Star Panel SNET Reader Behavior
B
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3 31
SNET reader types require various settings, depending on the SNET reader type that is being used. You can configure these settings at the logical device or you can pre-configure them in the hardware templates. The advantage of using the hardware template is that the configured settings are applied each time that a new logical device is created, so it saves time when these are configured with the settings that you want to use.
To configure the settings in the hardware template:
1. Go to
Hardware Configuration
.
2. Select
Hardware Templates
.
3. Double-click the appropriate template.
4. Select the tab
Device Types
.
5. Double-click on
Reader
.
6. Select the tab
PW-5000/6000 Reader
.
Figure 15: Hardware Configuration Settings
32
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To configure the settings on the Logical Device:
1. Go to
Hardware Configuration
.
2. Expand the appropriate Site.
3. Select the appropriate class (for example, Readers).
4. Double-click the Logical Device.
5. Select the tab
Logical Device Details
.
6. Double-click
Reader
.
7. Select the tab
Reader Settings
.
Figure 16: Edit Reader Settings
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
33
DKR Reader without Keypad
B.1 DKR Reader without Keypad
When using DKR reader models without a keypad, you must configure the following reader settings.
Table 1 Configuration Options using DKR readers without keypad
Configuration
Options
HW Template and
Logical Device
Logical Device Only
Keypad Mode - None
LED Mode - SNET
SNET Type - DKR
Default Mode - Card
Only
Card Format - SNET
DKR Format
X
X
X
X
X
B.2 DKR Reader with Keypad
When using DKR reader models with a keypad, you must configure the following reader settings.
Table 2 Configuration Options Using DKR Readers with Keypad
Configuration
Options
Keypad Mode -
Hughes
LED Mode - SNET
SNET Type - DKR +
VIP
Default Mode - Card and PIN
Card Format - SNET
DKR Format
HW Template and
Logical Device
X
X
X
X
Logical Device Only
X
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MSR Reader without Keypad
B.3 MSR Reader without Keypad
When using MSR reader models without a keypad, you must configure the following reader settings.
Table 3 Configuration Options Using MSR Readers without Keypad
Configuration Options HW Template and
Logical Device
Logical Device Only
Keypad Mode - None
LED Mode - SNET
SNET Type - MSRK
Default Mode - Card only
Card Format - SNET MSR Format
X
X
X
X
X
B.4 MSR Reader with Keypad
When using MSR reader models with a keypad, you must configure the following reader settings.
Table 4 Configuration Options Using MSR Readers without Keypad
Configuration Options HW Template and
Logical Device
Logical Device Only
Keypad Mode - Indala
LED Mode - SNET
SNET Type - MSRK
Default Mode - Card and PIN
Card Format - SNET MSR Format
X
X
X
X
X
The default mode can also be any of the other available options, for example Card or
PIN, PIN only, etc.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
35
SNET Reader from PW-6000 IC
B.5 SNET Reader from PW-6000 IC
Use one of the two RS-485 ports on the PW-6000 IC board to connect SNET readers.
Use the other RS-485 port to connect the PW series I/O modules.
When using this configuration, the following rules apply:
• The SNET reader may be multi-dropped.
• Up to 8 readers are supported.
• SNET addresses 1-15 can be used.
• Readers must be powered separately.
• Each reader’s address must be unique.
Figure 17: Wiring Diagram for SNET Reader and PW-6000 IC RS-485 Port
36
B.5.1 Configuring PW-6000 panel properties
To attach SNET readers to the PW-6000 IC, you must modify the panel properties.
To configure the PW-6000 panel for use with SNET:
1. Go to
Hardware Configuration
.
2. Expand the appropriate Site.
3. Go to
Panels
.
4. Double-click the panel.
5. Check the
SNET LED
box.
6. Set port connected to SNET reader to 9600 baud.
7. Set port connected to SNET reader to SNET.
8. Set port connected to PW series I/O modules to 38400.
9. Set port connected to PW series I/O modules to MSP1.
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SNET Reader from PW-6000 2-Reader Board
Note:
The port numbers for the panel configuration screen refer to the ports on a
PW-5000 IC. The following table illustrates the correlation between ports on the
PW-5000 and the PW-6000.
PW-5000
Port 3/4
Port 5/6
PW-6000
Port 2
Port 3
B.6 SNET Reader from PW-6000 2-Reader Board
Use the PW-6000 2-reader board to connect one SNET reader to each Wiegand port on the 2-reader board. Up to 2 SNET readers can be connected to this board.
When using this configuration, the following rules apply:
• This configuration is one-to-one.
• Two readers can be connected to the PW-6000 2 reader board.
• There may be one SNET reader per Wiegand port.
• Only SNET address 1 can be used.
• Readers may be powered from the IC.
• The reader board must be configured with firmware that supports SNET.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
37
SNET Reader from PW-6000 2-Reader Board
Figure 18: Wiring Diagram for SNET Reader and PW-6000 2-Reader Board Port
38
Caution:
Some DKR/MSR readers work with 24VDC only. Please consult your readers manual to see if the reader supports 12VDC.
ATTENTION: Certains lecteurs DKR/MSR doivent être alimenté en 24 VCC uniquement. Veuillez consulter la documentation du lecteur pour valider qu’il supporte du 12 VCC.
Caution:
If the reader does not support 12VDC, apply power separately to the readers.
ATTENTION: Si le lecteur ne supporte pas du 12 VCC, alimentez le lecteur à l’aide d’une alimentation séparée.
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PW6KIC vs Star Panel SNET Reader Behavior
B.7 PW6KIC vs Star Panel SNET Reader Behavior
The reader is the most visible item to users of an access control system. Making the transition from a SEEP/CHIP panel to a PW-6000 IC panel with SNET reader support comes with different reader behavior. The following list provides an overview of the differences in SNET reader behavior between the PW6KIC and SEEP/CHIP panels.
Table 5 Configuration Options Using MSR Readers without Keypad
Event SEEP/CHIP Behavior PW6KIC Behavior
Door Forced Open
Door Held Open
Reader + Keypad mode
Reader + Keypad mode
Reader Offline Mode:
Facility
Reader Offline Mode:
Unlocked
Reader Offline Mode:
Locked
PIN only Mode
The reader beeps continuously when the pre-alert is configured.
The reader does not beep on door forced open.
The reader beeps intermittently x seconds before a door held open alarm is raised. At the door held open time it beeps continuously until the door is closed.
The LED turns yellow awaiting PIN entry after card presentation.
The LED turns yellow awaiting card presentation after entering PIN.
The reader does not beep at all.
The LED turns yellow awaiting
PIN entry after card presentation.
The LED turns yellow after first
PIN digit entry. After entering the full PIN, the LED turns red awaiting card presentation.
Not a SEEP/CHIP feature
When the reader board loses communication to the PW6KIC, the reader board grants access to all cards. The LED mode is red and does not turn green. After some time, the LED turns off completely. Recommend using offline mode: LOCKED.
Not a SEEP/CHIP feature
Door unlocks, LED remains red.
Not a SEEP/CHIP feature
Keypad LED is red.
Door remains locked, LED remains red.
Keypad LED is yellow.
PW-6000 (PW6K1IC) Installation and Configuration Guide, Document 800-00005V3
39
PW6KIC vs Star Panel SNET Reader Behavior
Table 5 Configuration Options Using MSR Readers without Keypad
(continued)
Event SEEP/CHIP Behavior PW6KIC Behavior
Building Mode LED indication
SEEP/CHIP specific feature
Require 2 card control
Not a SEEP/CHIP feature
Not a PW6KIC feature
After first card presentation, the
LED blinks Green/Off.
The following SNET features are not available on the PW6KIC:
• Reads range
• Verification reads
• Verification Time
• Beeper On/Off/Combined
• Forward digicode to ACU one
• Continue forwarding digicode
• Star 2 LED color configuration
compares PW6KIC new features to SEEP/CHIP panel features.
Table 6 Configuration Options Using MSR Readers without Keypad
Feature
Secure Mode
Card or PIN
ADA card option
PIN Exempt
Behavior
Allows an operator to monitor access on a door and manually grant/deny access.
Allows the use of either a card or PIN to gain access to a door.
Allows a user an extended unlock time, for example for wheelchair access.
Exempts a user from entering a PIN on a card reader with keypad.
40
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For more information: www.honeywellintegrated.com
Honeywell Integrated Security
135 W. Forest Hill Avenue
Oak Creek, WI 53154
414-766-1700
414-766-1798 Fax
European Office
Boblingerstrasse 17
D-71101 Schonaich
Germany
49-7031-637-782
49-7031-637-769 Fax www.honeywell.com
Specifications subject to change without notice.
© Honeywell. All rights reserved.
800-00005V3
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