SECTION__28_20_01_00_10_ELECTRONIC_SAFETY_AND_SECURITY.pdf
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SECTION 28 20 01.00 10 Page 1
QJKL 15-0037
INSTALL AUTOMATIC VEHICLE GATE, POL
SECTION TABLE OF
CONTENTS
DIVISION 28 - ELECTRONIC SAFETY AND
SECURITY SECTION 28 20 01.00 10
ELECTRONIC SECURITY
SYSTEM
10/07
PART 1 GENERAL
1.1 REFERENCES
1.2 DEFINITIONS
1.2.1 Intrusion Alarm
1.2.2 Nuisance Alarm
1.2.3 Environmental Alarm
1.2.4 False Alarm
1.2.5 Duress Alarm
1.2.6 Guard Tour Alarm
1.2.7 Fail-Safe Alarm
1.2.8 Power Loss Alarm
1.2.9 Entry Control Alarm
1.2.10 Identifier
1.2.11 Entry Control Devices
1.2.12 Facility Interface Device
1.2.13 Portal
1.2.14 Probability of Detection
1.2.15 Standard Intruder
1.3 SYSTEM
DESCRIPTION
1.3.1 Central Station
1.3.2 Systems Networks
1.3.2.1 Console Network
1.3.2.2 Field Device Network
1.3.3 Field Equipment
1.3.4 CCTV System Interface
1.3.5 Intercom Interface
1.3.6 Security Lighting Interface
1.3.7 Error Detection and Retransmission
1.3.8 Probability of Detection
1.3.9 Standard Intruder
1.3.10 False Alarm Rate
1.3.10.1 Interior
1.3.10.2 Exterior
1.3.11 Environmental Nuisance Alarm Rate
1.3.12 Error and Throughput Rates
SECTION 28 20 01.00 10 Page 2
1.3.12.1 Type I Error Rate
1.3.12.2 Type II Error Rate
1.3.13 System Throughput
1.3.14 Passage
1.3.15 Detection Resolution
1.3.16 Electrical Requirements
1.3.17 System Reaction
1.3.17.1 System Response
1.3.17.2 System Heavy Load Condition
1.3.18 System Capacity
1.3.19 Console
1.4 SUBMITTAL OF TECHNICAL DATA AND COMPUTER SOFTWARE
1.4.1 Group I Technical Data Package
1.4.1.1 System Drawings
1.4.1.2 Manufacturer's Data
1.4.1.3 System Description and Analyses
1.4.1.4 Software Data
1.4.1.5 Overall System Reliability Calculations
1.4.1.6 Certifications
1.4.1.7 Key Control Plan
1.4.2 Group II Technical Data Package
1.4.3 Group III Technical Data Package
1.4.4 Group IV Technical Data Package
1.4.4.1 Operation and Maintenance Manuals
1.4.4.2 Operator's Manuals
1.4.4.3 Software Manual
1.4.4.4 Hardware Manual
1.4.4.5 Functional Design Manual
1.4.4.6 Data Entry
1.4.4.7 Graphics
1.4.5 Group V Technical Data Package
1.4.5.1 Operator's Manual
1.4.5.2 Software Manual
1.4.5.3 Hardware Manual
1.4.5.4 Functional Design Manual
1.4.5.5 Maintenance Manual
1.4.5.6 Final System Drawings
1.5 QUALITY ASSURANCE
1.5.1 Pre-Delivery Testing
1.5.2 Test Procedures and Reports
1.5.3 Line Supervision
1.5.3.1 Signal and Data Transmission System (DTS) Line Supervision
1.5.3.2 Data Encryption
1.5.4 Data Transmission System
1.6 ENVIRONMENTAL
REQUIREMENTS
1.6.1 Interior, Controlled Environment
1.6.2 Interior, Uncontrolled Environment
1.6.3 Exterior Environment
1.6.4 Hazardous Environment
1.7 MAINTENANCE AND SERVICE
1.7.1 Warranty Period
1.7.2 Description of Work
1.7.3 Personnel
1.7.4 Schedule of Work
1.7.4.1 Minor Inspections
1.7.4.2 Major Inspections
1.7.4.3 Scheduled Work
1.7.5 Emergency Service
1.7.6 Operation
SECTION 28 20 01.00 10 Page 3
1.7.7 Records and Logs
1.7.8 Work Requests
1.7.9 System Modifications
1.7.10 Software
PART 2 PRODUCTS
2.1 MATERIALS
REQUIREMENTS
2.1.1 Materials and Equipment
2.1.2 Nameplates
2.1.3 Power Line Surge Protection
2.1.4 Sensor Device Wiring and Communication Circuit Surge Protection
2.1.5 Power Line Conditioners
2.1.6 Field Enclosures
2.1.6.1 Interior Sensor
2.1.6.2 Exterior Sensor
2.1.6.3 Interior Electronics
2.1.6.4 Exterior Electronics
2.1.6.5 Corrosion Resistant
2.1.6.6 Hazardous Environment Equipment
2.1.7 Fungus Treatment
2.1.8 Tamper Provisions
2.1.8.1 Tamper Switches
2.1.8.2 Enclosure Covers
2.1.9 Locks and Key-Lock Switches
2.1.9.1 Locks
2.1.9.2 Key-Lock-Operated Switches
2.1.9.3 Construction Locks
2.1.10 System Components
2.1.10.1 Modularity
2.1.10.2 Maintainability
2.1.10.3 Interchangeability
2.1.10.4 Product Safety
2.1.11 Controls and Designations
2.1.12 Special Test Equipment
2.1.13 Alarm Output
2.2 CENTRAL STATION HARDWARE
2.2.1 Processor Speed
2.2.2 Memory
2.2.3 Power Supply
2.2.4 Real Time Clock (RTC)
2.2.5 Serial Ports
2.2.6 Network Interface Card
2.2.7 Color Monitor
2.2.8 Keyboard A101
2.2.9 Enhancement Hardware
2.2.10 Disk Storage
2.2.11 Floppy Disk Drives
2.2.12 Magnetic Tape System
2.2.13 Modem
2.2.14 Audible Alarm
2.2.15 Mouse
2.2.16 Optical Disk
2.2.17 DVD/DVD-RW
2.2.18 Dot Matrix Alarm Printer
2.2.19 Report Printer
2.2.20 Controllers
2.2.21 Redundant Central Computer
SECTION 28 20 01.00 10 Page 4
2.2.22 Central Station Equipment Enclosures
2.2.23 Uninterruptible Power Supply (UPS)
2.2.24 Fixed Map Display
2.2.25 Enrollment Center Equipment
2.2.25.1 Enrollment Center Accessories
2.2.25.2 Enrollment Center I.D. Production
2.2.26 Secondary Alarm Annunciation Site
2.3 CENTRAL STATION SOFTWARE
2.3.1 System Software
2.3.2 Software Scalability
2.3.3 System Architecture
2.3.4 Real Time Clock Synchronization
2.3.5 Database Definition Process
2.3.6 Software Tamper
2.3.7 Conditional Command Event
2.3.8 Peer Computer Control Software
2.3.9 Redundant Computer Locations
2.3.10 Application Software
2.3.10.1 Operator's Commands
2.3.10.2 Command Input
2.3.10.3 Command Input Errors
2.3.10.4 Enhancements
2.3.10.5 System Access Control
2.3.10.6 Alarm Monitoring Software
2.3.10.7 Monitor Display Software
2.3.10.8 Map Displays/Graphics Linked to Alarms
2.3.10.9 User Defined Prompts/Messages Linked to Alarms
2.3.10.10 System Test Software
2.3.10.11 Report Generator
2.3.10.12 Entry Control Enrollment Software
2.4 FIELD PROCESSING HARDWARE
2.4.1 Alarm Annunciation Local Processor
2.4.1.1 Processor Power Supply
2.4.1.2 Auxiliary Equipment Power
2.4.2 Entry Control Local Processor
2.4.2.1 Processor Power Supply
2.4.2.2 Auxiliary Equipment Power
2.5 FIELD PROCESSING SOFTWARE
2.5.1 Operating System
2.5.1.1 Startup
2.5.1.2 Operating Mode
2.5.1.3 Failure Mode
2.5.2 Functions
2.6 INTERIOR SENSORS AND CONTROL DEVICES
2.6.1 Balanced Magnetic Switch (BMS)
2.6.1.1 BMS Subassemblies
2.6.1.2 Housing
2.6.1.3 Remote Test
2.6.2 Glass Break Sensor, Piezoelectric
2.6.2.1 Sensor Element, Piezoelectric
2.6.2.2 Sensor Signal Processor, Piezoelectric
2.6.2.3 Glass Break Simulator, Piezoelectric
2.6.3 Glass Break Sensor, Acoustic
2.6.3.1 Sensor Element, Acoustic
2.6.3.2 Sensor Signal Processor, Acoustic
2.6.3.3 Glass Break Simulator, Acoustic
2.6.4 Duress Alarm Switches
2.6.4.1 Footrail
2.6.4.2 Push-button
2.6.4.3 Wireless
SECTION 28 20 01.00 10 Page 5
2.6.5 Security Screen
2.6.6 Vibration Sensor
2.6.7 Passive Infrared Motion Sensor
2.6.7.1 Test Indicator, Passive Infrared
2.6.7.2 Remote Test, Passive Infrared
2.6.8 Microwave-Passive Infrared Dual Detection Motion Sensor
2.6.8.1 Microwave Only Mode
2.6.8.2 Test Indicator
2.6.9 Photo-Electric Sensor (Interior)
2.6.10 Seismic Detection Sensor
2.6.11 Capacitance Proximity Sensor
2.6.11.1 Test Indicator, Capacitance
2.6.11.2 Remote Test, Capacitance
2.6.12 Video Motion Sensor (Interior)
2.6.13 Passive Ultrasonic Sensor
2.6.13.1 Test Indicator, Passive Ultrasonic Sensor
2.6.13.2 Remote Test, Passive Ultrasonic Sensor
2.6.14 Access/Secure Switches
2.7 EXTERIOR INTRUSION SENSORS
2.7.1 Bistatic Microwave Sensor
2.7.1.1 Test Indicator, Bistatic
2.7.1.2 Remote Test, Bistatic
2.7.2 Monostatic Microwave Sensor
2.7.2.1 Test Indicator, Monostatic
2.7.2.2 Remote Test, Monostatic
2.7.3 Strain Sensitive Cable Sensor
2.7.3.1 Test Indicator, Strain Sensitive
2.7.3.2 Remote Test, Strain Sensitive
2.7.4 Pulsed Microphonic Coaxial Cable Sensor
2.7.4.1 Microphonic Coaxial Cable Sensor Graphic Display
2.7.4.2 Test Indicator, Microphonic Coaxial Cable Sensor
2.7.4.3 Remote Test, Microphonic Coaxial Cable Sensor
2.7.5 Fiber Optic Cable Sensor
2.7.5.1 Test Indicator, Fiber Optic Cable
2.7.5.2 Remote Test, Fiber Optic Cable
2.7.6 Passive Infrared Motion Sensor (Exterior)
2.7.7 Tension Wire Fence Sensor
2.7.8 Capacitance Fence Sensor
2.7.9 Electrical Field Disturbance Sensor
2.7.9.1 Test Indicator, Electrical Field Disturbance Sensor
2.7.9.2 Remote Test, Electrical Disturbance Sensor
2.7.10 Buried Ported Cable
2.7.10.1 Test Indicator, Buried Ported Cable
2.7.10.2 Remote Test, Buried Ported Cable
2.7.11 Photo-Electric Sensor (Exterior)
2.7.11.1 Test Indicator, Infrared Perimeter Sensor
2.7.11.2 Remote Test, Infrared Perimeter Sensor
2.7.12 Mounted Vibration Sensor
2.7.12.1 Test Indicator, Mounted Vibration Sensor
2.7.12.2 Remote Test, Mounted Vibration Sensor
2.7.13 Video Motion Sensor (Exterior)
2.7.14 Radar
2.8 ENTRY CONTROL DEVICES
2.8.1 Card Readers and Credential Cards
2.8.1.1 Data Encryption
2.8.1.2 Magnetic Stripe
2.8.1.3 Wiegand Wire Effect
2.8.1.4 Smart Cards
2.8.1.5 Contactless Smart Card
SECTION 28 20 01.00 10 Page 6
2.8.1.6 Proximity
2.8.1.7 Card Reader Display
2.8.1.8 Card Reader Response Time
2.8.1.9 Card Reader Power
2.8.1.10 Card Reader Mounting Method
2.8.1.11 Credential Card Modification
2.8.1.12 Card Size and Dimensional Stability
2.8.1.13 Card Materials and Physical Characteristics
2.8.1.14 Card Construction
2.8.1.15 Card Durability and Maintainability
2.8.1.16 Warranty
2.8.2 Keypads
2.8.2.1 Keypad Display
2.8.2.2 Keypad Response Time
2.8.2.3 Keypad Power
2.8.2.4 Keypad Mounting Method
2.8.2.5 Keypad Duress Codes
2.8.3 Card Readers With Integral Keypad
2.8.3.1 Wiegand
2.8.3.2 Smart Card
2.8.3.3 Contactless Smart Card
2.8.3.4 Proximity
2.8.4 Personal Identity Verification Equipment
2.8.4.1 Hand Geometry
2.8.4.2 Fingerprint Analysis Scanner
2.8.4.3 Iris Scan Device
2.8.5 Portal Control Devices
2.8.5.1 Push-button Switches
2.8.5.2 Panic Bar Emergency Exit With Alarm
2.8.5.3 Panic Bars: Normal Exit
2.8.5.4 Electric Door Strikes/Bolts
2.8.5.5 Electrified Mortise Lock
2.8.5.6 Electromagnetic Lock
2.8.5.7 Entry Booth
2.8.5.8 Booth Security and Operational Enhancements
2.8.5.9 Entry Booth Electrical Requirements
2.8.5.10 Vehicle Gate Opener
2.9 SURVEILLANCE AND DETECTION EQUIPMENT
2.9.1 Article Surveillance/X-Ray
2.9.1.1 Size and Weight
2.9.1.2 Local Audible Alarms
2.9.1.3 Maximum Package Size
2.9.1.4 X-Ray Tube
2.9.1.5 Electrical
2.9.1.6 Safety
2.9.1.7 Display
2.9.1.8 Conveyor
2.9.1.9 Material Identification and Resolution
2.9.2 Metal Detector
2.9.2.1 Size and Weight
2.9.2.2 Local Alarms
2.9.2.3 Material Identification and Sensitivity
2.9.2.4 Traffic Counter
2.9.2.5 Electrical
2.10 ENTRY CONTROL SOFTWARE
2.10.1 Interface Device
2.10.2 Operator Interface
2.10.3 Entry Control Functions
2.10.3.1 Multiple Security Levels
SECTION 28 20 01.00 10 Page 7
2.10.3.2 Two person rule
2.10.3.3 Anti-Pass back
2.10.3.4 Immediate Access Change
2.10.3.5 Multiple Time Zones
2.10.3.6 Guard Tour
2.10.3.7 Elevator Control
2.10.4 Electronic Entry Control System Capacities
2.10.4.1 Enrollees
2.10.4.2 Transaction History File Size
2.10.5 Entry Control System Alarms
2.10.5.1 Duress
2.10.5.2 Guard Tour
2.10.5.3 Entry Denial
2.10.5.4 Portal Open
2.10.5.5 Bolt Not Engaged
2.10.5.6 Strike Not Secured
2.10.5.7 Alarm Shunting/System Bypass
2.11 WIRE AND CABLE
2.11.1 Above Ground Sensor Wiring
2.11.2 Direct Burial Sensor Wiring
2.11.3 Local Area Network (LAN) Cabling
2.11.4 Cable Construction
2.11.5 Power Line Surge Protection
2.11.6 Sensor Device Wiring and Communication Circuit Surge Protection
2.11.7 Power Line Conditioners
PART 3 EXECUTION
3.1 EXAMINATION
3.2 GENERAL REQUIREMENTS
3.2.1 Installation
3.2.2 Enclosure Penetrations
3.2.3 Cold Galvanizing
3.2.4 Existing Equipment
3.2.5 Installation Software
3.3 SYSTEM STARTUP
3.4 SUPPLEMENTAL CONTRACTOR QUALITY CONTROL
3.5 TRAINING
3.5.1 General
3.5.2 Operator's Training I
3.5.3 Operator's Training II
3.5.4 Operator's Training III
3.5.5 System Manager Training
3.5.6 Maintenance Personnel Training
3.6 TESTING
3.6.1 General Requirements for Testing
3.6.2 Contractor's Field Testing
3.6.3 Performance Verification Test
3.6.4 Endurance Test
ATTACHMEN
TS: DD FORM
-- End of Section Table of Contents --
SECTION 28 20 01.00 10 Page 8
SECTION 28 20 01.00 10
ELECTRONIC SECURITY
SYSTEM
10/07
PART 1 GENERAL
1.1 REFERENCES
The publications listed below form a part of this specification to the extent referenced. The publications are referred to within the text by the basic designation only.
AMERICAN NATIONAL STANDARDS INSTITUTE (ANSI)
ANSI INCITS 154 (1988; R 2004) Office Machines and Supplies -
Alphanumeric Machines - Keyboard Arrangement
ASC/X9 X9.52 (1998) Triple Data Encryption Algorithm
Modes of Operation
ASTM INTERNATIONAL (ASTM)
ASTM E84 (2012c) Standard Test Method for Surface Burning Characteristics of Building Materials
CONSUMER ELECTRONICS ASSOCIATION (CEA)
CEA 170 (1957) Electrical Performance Standards -
Monochrome Television Studio Facilities
ELECTRONIC COMPONENTS ASSOCIATION (ECA)
ECA EIA/ECA 310 (2005) Cabinets, Racks, Panels, and Associated Equipment
INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS (IEEE)
IEEE 142 (2007) Recommended Practice for Grounding of
Industrial and Commercial Power Systems
- IEEE Green Book
IEEE C2 (2012; Errata 2012; INT 1-4 2012) National
SECTION 28 20 01.00 10 Page 9
Electrical Safety Code
IEEE C62.41.1 (2002; R 2008) Guide on the Surges
Environment in Low-Voltage (1000 V and Less) AC Power Circuits
IEEE C62.41.2 (2002) Recommended Practice on
Characterization of Surges in Low-Voltage (1000 V and Less) AC Power Circuits
INTERNATIONAL ORGANIZATION FOR STANDARDIZATION (ISO)
ANSI ISO/IEC 7816 (R 2009) Identification Cards - Integrated
Circuit Cards
ISO 7810 (2003; Amd 1 2009; Amd 2 2012)
Identification Cards - Physical Characteristics
ISO 7811-1 (2002) Identification Cards - Recording
Technique - Part 1: Embossing
ISO 7811-2 (2001) Identification Cards - Recording Technique - Part 2:
Magnetic Stripe - Low Coercivity
INTERNATIONAL TELECOMMUNICATION UNION (ITU)
ITU V.34 (1998) Data Communication Over the Telephone
Network: A Modem Operating at Data Signaling Rates of up to 33,600 Bit/S for Use on the General Switched Telephone Network and on Leased Point- To-Point 2-Wire Telephone-Type Circuits
ITU V.42 (2002; Corrigendum 1 2003) Data
Communications Over the Telephone Network: Error-Correcting Procedures for DCEs using Asynchronous-to-Synchronous Conversion
ITU V.92 (2000; Am 1 2001, Am 2 2002; Corr 1 2003) Data
Communication Over the Telephone Network:
Enhancements to Recommendation V.90
NATIONAL ELECTRICAL MANUFACTURERS ASSOCIATION (NEMA)
NEMA 250 (2008) Enclosures for Electrical Equipment
(1000 Volts Maximum)
NEMA ICS 1 (2000; R 2008; E 2010) Standard for Industrial
Control and Systems: General Requirements
NATIONAL FIRE PROTECTION ASSOCIATION (NFPA)
NFPA 70 (2011; Errata 2 2012) National Electrical
Code
SECTION 28 20 01.00 10 Page 10
TELECOMMUNICATIONS INDUSTRY ASSOCIATION (TIA)
TIA-232 (1997f; R 2002) Interface Between Data
Terminal Equipment and Data Circuit-Terminating Equipment Employing Serial Binary Data Interchange
TIA-568-C.1 (2009; Add 2 2011; Add 1 2012) Commercial
Building Telecommunications Cabling Standard
U.S. NATIONAL ARCHIVES AND RECORDS ADMINISTRATION
(NARA)
21 CFR 1020 Performance Standards for Ionizing
Radiation Emitting Products
47 CFR 15 Radio Frequency Devices
47 CFR 68 Connection of Terminal Equipment to the Telephone Network
UNDERWRITERS LABORATORIES (UL)
UL 1037 (1999; Reprint Dec 2009) Safety Antitheft
Alarms and Devices
UL 1076 (1995; Reprint Sep 2010) Proprietary Burglar Alarm Units and Systems
UL 294 (1999; Reprint Sep 2010) Access Control
System Units
UL 639 (2007; Reprint May 2012) Standard for Intrusion Detection Units
UL 681 (1999; Reprint Jan 2001) Installation and
Classification of Burglar and Holdup Alarm Systems
UL 796 (2010; Reprint Nov 2012) Standard for Printed-Wiring Boards
UL 972 (2006; Reprint Jul 2011) Standard for
Burglary Resisting Glazing Material Type
1.2 DEFINITIONS
1.2.1 Intrusion Alarm
An alarm resulting from the detection of a specified target, attempting to intrude into the protected area or when entry into an entry-controlled area is attempted without successfully using entry control procedures.
1.2.2 Nuisance Alarm
An alarm resulting from the detection of an appropriate alarm stimulus, or failure to use established entry control procedures, but which does not represent an attempt to intrude into the protected area.
SECTION 28 20 01.00 10 Page 11
1.2.3 Environmental Alarm
A nuisance alarm resulting from environmental factors.
1.2.4 False Alarm
An alarm when there is no alarm stimulus.
1.2.5 Duress Alarm
A normally covert alarm condition which results from a set of pre-established conditions such as entering a special code into a keypad or by activating a switch indicating immediate personal danger. This alarm category shall take precedence over other alarm categories.
1.2.6 Guard Tour Alarm
An alarm resulting from a guard being either early or late at a specified check-in location.
1.2.7 Fail-Safe Alarm
An alarm resulting from detection of diminished functional capabilities.
1.2.8 Power Loss Alarm
An alarm resulting from a loss of primary power.
1.2.9 Entry Control Alarm
An alarm resulting from improper use of entry control procedures or equipment.
1.2.10 Identifier
A card credential, keypad personal identification number or code, biometric characteristic or any other unique identification entered as data into the entry control database for the purpose of verifying the identity of an individual. Identifiers shall be used by the ESS for the purpose of validating passage requests for areas equipped with entry control equipment.
1.2.11 Entry Control Devices
Any equipment which gives a user the means to input identifier data into the entry control system for verification.
1.2.12 Facility Interface Device
A facility interface device shall be any type of mechanism which is controlled in response to passage requests and allows passage through a portal.
1.2.13 Portal
Specific control point, such as a door or a gate, providing entry or access from one security level to another.
SECTION 28 20 01.00 10 Page 12
1.2.14 Probability of Detection
Forty-five successful detections out of 46 tests or 98 successful detections out of 103 tests.
1.2.15 Standard Intruder
Person that weighs 46 kg 100 pounds or less and is 1.5 m 5 ft tall or less, dressed in a long-sleeved shirt, slacks and shoes (unless environmental conditions at the site require protective clothing) and walking, running, crawling or jumping through a protected zone in the most advantageous manner for the intruder.
1.3 SYSTEM DESCRIPTION
Provide an Electronic Security System (ESS) as described and shown including installation of any Government Furnished Equipment. All computing devices, as defined in 47 CFR 15, shall be certified to comply with the requirements for Class A computing devices and labeled as set forth in 47 CFR 15. Electronic equipment shall comply with 47
CFR 15.
1.3.1 Central Station
None Used.
1.3.2 Systems Networks
1.3.2.1 Console Network
1.3.2.2 Field Device Network
1.3.3 Field Equipment
1.3.4 CCTV System Interface
1.3.5 Intercom Interface
None used.
1.3.6 Security Lighting Interface
SECTION 28 20 01.00 10 Page 13
1.3.7 Error Detection and Retransmission
None used.
1.3.8 Probability of Detection
1.3.9 Standard Intruder
1.3.10 False Alarm Rate
1.3.11 Environmental Nuisance Alarm Rate
1.3.12 Error and Throughput Rates
1.3.13 System Throughput
1.3.14 Passage
1.3.15 Detection Resolution
1.3.16 Electrical Requirements
Electrically powered ESS equipment shall operate on 120 volt 60 Hz ac sources as shown.
Equipment shall be able to tolerate variations in the voltage source of plus or minus 10 percent, and variations in the line frequency of plus or minus 2 percent with no degradation of performance.
1.3.17 System Reaction
1.3.18 System Capacity
1.3.19 Console
SECTION 28 20 01.00 10 Page 14
1.4 SUBMITTAL OF TECHNICAL DATA AND COMPUTER SOFTWARE
1.4.1 Group I Technical Data Package
1.4.1.1 System Drawings
1.4.1.2 Manufacturer's Data
1.4.1.3 System Description and Analyses
1.4.1.4 Software Data
1.4.1.5 Overall System Reliability Calculations
1.4.1.6 Certifications
1.4.1.7 Key Control Plan
1.4.2 Group II Technical Data Package
1.4.3 Group III Technical Data Package
1.4.4 Group IV Technical Data Package
1.4.4.1 Operation and Maintenance Manuals
1.4.4.2 Operator's Manuals
1.4.4.3 Software Manual
SECTION 28 20 01.00 10 Page 15
1.4.4.4 Hardware Manual
1.4.4.5 Functional Design Manual
1.4.4.6 Data Entry
1.4.4.7 Graphics
1.4.5 Group V Technical Data Package
1.4.5.1 Operator's Manual
A copy of the final and approved Operator's Manual.
1.4.5.2 Software Manual
A copy of the final and approved Software Manual.
1.4.5.3 Hardware Manual
A copy of the final and approved Hardware Manual.
1.4.5.4 Functional Design Manual
A copy of the final and approved Functional Design Manual.
1.4.5.5 Maintenance Manual
A copy of the final and approved Maintenance Manual.
1.4.5.6 Final System Drawings
Maintain a separate set of drawings, elementary diagrams and wiring diagrams of the system to be used for final system drawings. This set shall be accurately kept up-to-date with all changes and additions to the ESS and shall be delivered to the Government with the final endurance test report. In addition to being complete and accurate, this set of drawings shall be kept neat and shall not be used for installation purposes. Final drawings submitted with the endurance test report shall be finished drawings on optical disk in AutoCAD 2002 format.
1.5 QUALITY ASSURANCE
1.5.1 Pre-Delivery Testing
SECTION 28 20 01.00 10 Page 16
1.5.2 Test Procedures and Reports
1.5.3 Line Supervision
1.5.3.1 Signal and Data Transmission System (DTS) Line Supervision
1.5.3.2 Data Encryption
1.5.4 Data Transmission System
1.6 ENVIRONMENTAL REQUIREMENTS
1.6.1 Interior, Controlled Environment
System components, except the console equipment installed in interior locations, having controlled environments shall be rated for continuous operation under ambient environmental conditions of 2 to 50 degrees C 36 to 122 degrees F dry bulb and 20 to 90 percent relative humidity, non-condensing.
1.6.2 Interior, Uncontrolled Environment
System components installed in interior locations having uncontrolled environments shall be rated for continuous operation under ambient environmental conditions of -18 to plus 50 degrees C 0 to 122 degrees F dry bulb and 10 to 95 percent relative humidity, non-condensing.
1.6.3 Exterior Environment
System components that are installed in locations exposed to weather shall be rated for continuous operation under ambient environmental conditions of -34 to plus 50 degrees C - 30 to plus 122 degrees F dry bulb and 10 to 95 percent relative humidity, condensing. In addition, the system components shall be rated for continuous operation when exposed to performance conditions as specified in UL 294 and UL 639 for outdoor use equipment.
Components shall be rated for continuous operation when exposed to rain as specified in NEMA 250, winds up to 137 km/h 85 mph and snow cover up to 610 mm 2 feet thick, measured vertically.
1.6.4 Hazardous Environment
System components located in areas where fire or explosion hazards may exist because of flammable gases or vapors, flammable liquids, combustible dust, or ignitable fibers or flying particles, shall be rated and installed according to Chapter 5 of the NFPA 70 and as shown.
1.7 MAINTENANCE AND SERVICE
SECTION 28 20 01.00 10 Page 17
1.7.1 Warranty Period
Provide all labor, equipment, and materials required to maintain the entire system in an operational state as specified, for a period of one year after formal written acceptance of the system to include scheduled and nonscheduled adjustments.
1.7.2 Description of Work
The adjustment and repair of the system includes all computer equipment, software updates, communications transmission equipment and DTS, local processors, sensors and entry control, facility interface, and support equipment. Responsibility shall be limited to Contractor installed equipment. Repair, calibration, and other work shall be provided and performed in accordance with the manufacturer's documentation and instruction.
The maintenance manual shall include descriptions of maintenance for all equipment including inspection, periodic prevention maintenance, fault diagnosis, and repair or replacement of defective components.
1.7.3 Personnel
Service personnel shall be certified in the maintenance and repair of the specific type of equipment installed and qualified to accomplish work promptly and satisfactorily. The Government shall be advised in writing of the name of the designated service representative, and of any change in personnel.
1.7.4 Schedule of Work
Perform two minor inspections at 6 month intervals (or more often if required by the manufacturer), and two major inspections offset equally between the minor inspections to effect quarterly inspection of alternating magnitude.
1.7.4.1 Minor Inspections
Minor inspections shall include visual checks and operational tests of console equipment, peripheral equipment, local processors, sensors, and electrical and mechanical controls.
Minor inspections shall also include mechanical adjustment of laser printers.
1.7.4.2 Major Inspections
Major inspections shall include work described under paragraph Minor Inspections and the following work:
a. Clean interior and exterior surfaces of all system equipment and local processors, including workstation monitors, keyboards, and console equipment.
b. Perform diagnostics on all equipment.
c. Check, walk test, and calibrate each sensor.
d. Run all system software diagnostics and correct all diagnosed problems.
e. Resolve any previous outstanding problems.
f. Purge and compress data bases.
SECTION 28 20 01.00 10 Page 18
g. Review network configuration.
1.7.4.3 Scheduled Work
Scheduled work shall be performed during regular working hours, Monday through Friday, excluding federal holidays.
1.7.5 Emergency Service
The Government will initiate service calls when the system is not functioning properly.
Qualified personnel shall be available to provide service to the complete system. The Government shall be furnished with a telephone number where the service supervisor can be reached at all times. Service personnel shall be at site within 4 hours after receiving a request for service. The system shall be restored to proper operating condition within 8 hours after service personnel arrive onsite and obtain access to the system.
1.7.6 Operation
Performance verification test procedures shall be used after all scheduled maintenance and repair activities to verify proper component and system operation.
1.7.7 Records and Logs
Keep records and logs of each task, and organize cumulative records for each component, and for the complete system chronologically resulting in a continuous log to be maintained for all devices. The log shall contain all initial settings. Complete logs shall be kept and shall be available for inspection onsite, demonstrating that planned and systematic adjustments and repairs have been accomplished for the system.
1.7.8 Work Requests
Separately record each service call request, as received. The form shall include the serial number identifying the component involved, its location, date and time the call was received, specific nature of trouble, names of service personnel assigned to the task, instructions describing what has to be done, the amount and nature of the material to be used, the time and date work started, and the time and date of completion. Deliver a record of the work performed within 5 days after work is accomplished.
1.7.9 System Modifications
Make any recommendations for system modification in writing to the Government. System modifications shall not be made without prior approval of the Government. Any modifications made to the system shall result in the updating of the operation and maintenance manuals as well as any other documentation affected.
1.7.10 Software
PART 2 PRODUCTS
2.1 MATERIALS REQUIREMENTS
2.1.1 Materials and Equipment
Units of equipment that perform identical, specified functions shall be products of a single
SECTION 28 20 01.00 10 Page 19 manufacturer. All material and equipment shall be new and currently in production. Each major component of equipment shall have the manufacturer's model and serial number in a conspicuous place. System equipment shall conform to UL 294 and UL 1076.
2.1.2 Nameplates
Laminated plastic nameplates shall be provided for local processors. Each nameplate shall identify the local processor and its location within the system. Laminated plastic shall be 3 mm 1/8 inch thick, white with black center core. Nameplates shall be a minimum of 25 x 75 mm 1 x 3 inches, with minimum 6 mm 1/4 inch high engraved block lettering. Nameplates shall be attached to the inside of the enclosure housing the local processor. Other major components of the system shall have the manufacturer's name, address, type or style, model or serial number, and catalog number on a corrosion resistant plate secured to the item of equipment. Nameplates will not be required for devices smaller than 25 x 75 mm 1 x 3 inches.
2.1.3 Power Line Surge Protection
Equipment connected to alternating current circuits shall be protected from power line surges. Equipment protection shall withstand surge test waveforms described in IEEE C62.41.1 and IEEE C62.41.2. Fuses shall not be used for surge protection.
2.1.4 Sensor Device Wiring and Communication Circuit Surge Protection
2.1.5 Power Line Conditioners
A power line conditioner shall be furnished for the console equipment and each local processor. The power line conditioners shall be of the ferro-resonant design, with no moving parts and no tap switching, while electrically isolating the secondary from the power line side. The power line conditioners shall be sized for 125 percent of the actual connected kVA load. Characteristics of the power line conditioners shall be as follows:
a. At 85 percent load, the output voltage shall not deviate by more than plus or minus
1 percent of nominal when the input voltage fluctuates between minus 20 percent to plus 10 percent of nominal.
b. During load changes of zero to full load, the output voltage shall not deviate by more than plus or minus 3 percent of nominal. Full correction of load switching disturbances shall be accomplished within 5 cycles, and 95 percent correction shall be accomplished within 2 cycles of the onset of the disturbance.
c. Total harmonic distortion shall not exceed 3.5 percent at full load.
2.1.6 Field Enclosures
2.1.6.1 Interior Sensor
Sensors to be used in an interior environment shall have a housing that provides protection against dust, falling dirt, and dripping noncorrosive liquids.
2.1.6.2 Exterior Sensor
Sensors to be used in an exterior environment shall have a housing that provides protection against windblown dust, rain and splashing water, and hose directed water.
SECTION 28 20 01.00 10 Page 20
Sensors shall be undamaged by the formation of ice on the enclosure.
2.1.6.3 Interior Electronics
System electronics to be used in an interior environment shall be housed in enclosures which meet the requirements of NEMA 250 Type 12.
2.1.6.4 Exterior Electronics
System electronics to be used in an exterior environment shall be housed in enclosures which meet the requirements of NEMA 250 Type 4.
2.1.6.5 Corrosion Resistant
System electronics to be used in a corrosive environment as defined in NEMA 250 shall be housed in metallic non-corrosive enclosures which meet the requirements of NEMA 250 Type 4X.
2.1.6.6 Hazardous Environment Equipment
System electronics to be used in a hazardous environment shall be housed in a enclosures which meet the requirements of paragraph Hazardous Environment.
2.1.7 Fungus Treatment
2.1.8 Tamper Provisions
2.1.8.1 Tamper Switches
2.1.8.2 Enclosure Covers
Covers of pull and junction boxes provided to facilitate initial installation of the system need not be provided with tamper switches if they contain no splices or connections, but shall be protected by tack welding or brazing the covers in place or by tamper resistant security fasteners. Labels shall be affixed to such boxes indicating they contain no connections.
2.1.9 Locks and Key-Lock Switches
2.1.9.1 Locks
2.1.9.2 Key-Lock-Operated Switches
Not Used.
2.1.9.3 Construction Locks
2.1.10 System Components
SECTION 28 20 01.00 10 Page 21
System components shall be designed for continuous operation. Electronic components shall be solid state type, mounted on printed circuit boards conforming to UL 796. Printed circuit board connectors shall be plug-in, quick-disconnect type. Power dissipating components shall incorporate safety margins of not less that 25 percent with respect to dissipation ratings, maximum voltages, and current carrying capacity. Control relays and similar switching devices shall be solid state type or sealed electro-mechanical.
2.1.10.1 Modularity
Equipment shall be designed for increase of system capability by installation of modular components. System components shall be designed to facilitate maintenance through replacement of modular subassemblies and parts.
2.1.10.2 Maintainability
Components shall be designed to be maintained using commercially available tools and equipment. Components shall be arranged and assembled so they are accessible to maintenance personnel. There shall be no degradation in tamper protection, structural integrity, EMI/RFI attenuation, or line supervision after maintenance when it is performed in accordance with manufacturer's instructions.
2.1.10.3 Interchangeability
The system shall be constructed with off-the-shelf components which are physically, electrically and functionally interchangeable with equivalent components as complete items.
Replacement of equivalent components shall not require modification of either the new component or of other components with which the replacement items are used. Custom designed or one-of-a-kind items shall not be used. Interchangeable components or modules shall not require trial and error matching in order to meet integrated system requirements, system accuracy, or restore complete system functionality.
2.1.10.4 Product Safety
System components shall conform to applicable rules and requirements of NFPA 70 and UL 294. System components shall be equipped with instruction plates including warnings and cautions describing physical safety, and special or important procedures to be followed in operating and servicing system equipment.
2.1.11 Controls and Designations
Controls and designations shall be as specified in NEMA ICS 1.
2.1.12 Special Test Equipment
Provide all special test equipment, special hardware, software, tools, and programming or initialization equipment needed to start or maintain any part of the system and its components. Special test equipment is defined as any test equipment not normally used in an electronics maintenance facility.
2.1.13 Alarm Output
2.2 CENTRAL STATION HARDWARE
SECTION 28 20 01.00 10 Page 22
2.2.1 Processor Speed
2.2.2 Memory
2.2.3 Power Supply
2.2.4 Real Time Clock (RTC)
2.2.5 Serial Ports
2.2.6 Network Interface Card
2.2.7 Color Monitor
2.2.8 Keyboard A101
2.2.9 Enhancement Hardware
2.2.10 Disk Storage
2.2.11 Floppy Disk Drives
2.2.12 Magnetic Tape System
2.2.13 Modem
2.2.14 Audible Alarm
SECTION 28 20 01.00 10 Page 23
2.2.15 Mouse
2.2.16 Optical Disk
2.2.17 DVD/DVD-RW
2.2.18 Dot Matrix Alarm Printer
2.2.19 Report Printer
2.2.20 Controllers
2.2.21 Redundant Central Computer
2.2.22 Central Station Equipment Enclosures
2.2.23 Uninterruptible Power Supply (UPS)
2.2.24 Fixed Map Display
2.2.25 Enrollment Center Equipment
2.2.25.1 Enrollment Center Accessories
2.2.25.2 Enrollment Center I.D. Production
2.2.26 Secondary Alarm Annunciation Site
SECTION 28 20 01.00 10 Page 24
2.3 CENTRAL STATION SOFTWARE
2.3.1 System Software
2.3.2 Software Scalability
2.3.3 System Architecture
2.3.4 Real Time Clock Synchronization
2.3.5 Database Definition Process
2.3.6 Software Tamper
2.3.7 Conditional Command Event
2.3.8 Peer Computer Control Software
2.3.9 Redundant Computer Locations
2.3.10 Application Software
2.3.10.1 Operator's Commands
2.3.10.2 Command Input
2.3.10.3 Command Input Errors
2.3.10.4 Enhancements
SECTION 28 20 01.00 10 Page 25
2.3.10.5 System Access Control
2.3.10.6 Alarm Monitoring Software
2.3.10.7 Monitor Display Software
2.3.10.8 Map Displays/Graphics Linked to Alarms
2.3.10.9 User Defined Prompts/Messages Linked to Alarms
2.3.10.10 System Test Software
2.3.10.11 Report Generator
2.3.10.12 Entry Control Enrollment Software
2.4 FIELD PROCESSING HARDWARE
2.4.1 Alarm Annunciation Local Processor
2.4.1.1 Processor Power Supply
2.4.1.2 Auxiliary Equipment Power
2.4.2 Entry Control Local Processor
2.4.2.1 Processor Power Supply
2.4.2.2 Auxiliary Equipment Power
SECTION 28 20 01.00 10 Page 26
2.5 FIELD PROCESSING SOFTWARE
2.5.1 Operating System
2.5.1.1 Startup
2.5.1.2 Operating Mode
2.5.1.3 Failure Mode
2.5.2 Functions
2.6 INTERIOR SENSORS AND CONTROL DEVICES
2.6.1 Balanced Magnetic Switch (BMS)
2.6.1.1 BMS Subassemblies
2.6.1.2 Housing
2.6.1.3 Remote Test
2.6.2 Glass Break Sensor, Piezoelectric
2.6.2.1 Sensor Element, Piezoelectric
2.6.2.2 Sensor Signal Processor, Piezoelectric
SECTION 28 20 01.00 10 Page 27
2.6.2.3 Glass Break Simulator, Piezoelectric
2.6.3 Glass Break Sensor, Acoustic
2.6.3.1 Sensor Element, Acoustic
2.6.3.2 Sensor Signal Processor, Acoustic
2.6.3.3 Glass Break Simulator, Acoustic
2.6.4 Duress Alarm Switches
2.6.4.1 Footrail
2.6.4.2 Push-button
2.6.4.3 Wireless
2.6.5 Security Screen
2.6.6 Vibration Sensor
2.6.7 Passive Infrared Motion Sensor
2.6.7.1 Test Indicator, Passive Infrared
2.6.7.2 Remote Test, Passive Infrared
2.6.8 Microwave-Passive Infrared Dual Detection Motion Sensor
SECTION 28 20 01.00 10 Page 28
2.6.8.1 Microwave Only Mode
2.6.8.2 Test Indicator
2.6.9 Photo-Electric Sensor (Interior)
2.6.10 Seismic Detection Sensor
2.6.11 Capacitance Proximity Sensor
2.6.11.1 Test Indicator, Capacitance
2.6.11.2 Remote Test, Capacitance
2.6.12 Video Motion Sensor (Interior)
2.6.13 Passive Ultrasonic Sensor
2.6.13.1 Test Indicator, Passive Ultrasonic Sensor
2.6.13.2 Remote Test, Passive Ultrasonic Sensor
2.6.14 Access/Secure Switches
2.7 EXTERIOR INTRUSION SENSORS
2.7.1 Bistatic Microwave Sensor
2.7.1.1 Test Indicator, Bistatic
SECTION 28 20 01.00 10 Page 29
2.7.1.2 Remote Test, Bistatic
2.7.2 Monostatic Microwave Sensor
2.7.2.1 Test Indicator, Monostatic
2.7.2.2 Remote Test, Monostatic
2.7.3 Strain Sensitive Cable Sensor
2.7.3.1 Test Indicator, Strain Sensitive
2.7.3.2 Remote Test, Strain Sensitive
2.7.4 Pulsed Microphonic Coaxial Cable Sensor
2.7.4.1 Microphonic Coaxial Cable Sensor Graphic Display
2.7.4.2 Test Indicator, Microphonic Coaxial Cable Sensor
2.7.4.3 Remote Test, Microphonic Coaxial Cable Sensor
2.7.5 Fiber Optic Cable Sensor
2.7.5.1 Test Indicator, Fiber Optic Cable
2.7.5.2 Remote Test, Fiber Optic Cable
2.7.6 Passive Infrared Motion Sensor (Exterior)
SECTION 28 20 01.00 10 Page 30
2.7.7 Tension Wire Fence Sensor
2.7.8 Capacitance Fence Sensor
2.7.9 Electrical Field Disturbance Sensor
2.7.9.1 Test Indicator, Electrical Field Disturbance Sensor
2.7.9.2 Remote Test, Electrical Disturbance Sensor
2.7.10 Buried Ported Cable
2.7.10.1 Test Indicator, Buried Ported Cable
2.7.10.2 Remote Test, Buried Ported Cable
2.7.11 Photo-Electric Sensor (Exterior)
2.7.11.1 Test Indicator, Infrared Perimeter Sensor
2.7.11.2 Remote Test, Infrared Perimeter Sensor
2.7.12 Mounted Vibration Sensor
2.7.12.1 Test Indicator, Mounted Vibration Sensor
2.7.12.2 Remote Test, Mounted Vibration Sensor
2.7.13 Video Motion Sensor (Exterior)
SECTION 28 20 01.00 10 Page 31
2.7.14 Radar
2.8 ENTRY CONTROL DEVICES
2.8.1 Card Readers and Credential Cards
2.8.1.1 Data Encryption
2.8.1.2 Magnetic Stripe
2.8.1.3 Wiegand Wire Effect
2.8.1.4 Smart Cards
2.8.1.5 Contactless Smart Card
2.8.1.6 Proximity
2.8.1.7 Card Reader Display
2.8.1.8 Card Reader Response Time
2.8.1.9 Card Reader Power
2.8.1.10 Card Reader Mounting Method
2.8.1.11 Credential Card Modification
2.8.1.12 Card Size and Dimensional Stability
2.8.1.13 Card Materials and Physical Characteristics
SECTION 28 20 01.00 10 Page 32
2.8.1.14 Card Construction
2.8.1.15 Card Durability and Maintainability
2.8.1.16 Warranty
2.8.2 Keypads
Entry control keypads shall use a unique combination of alphanumeric and other symbols as an identifier. Keypads shall contain an integral alphanumeric/special symbols keyboard with symbols arranged in ascending ASCII code ordinal sequence. Communications protocol shall be compatible with the local processor.
2.8.2.1 Keypad Display
Keypads shall include an LED or other type of visual indicator display and provide visual and audible status indications and user prompts. The display shall indicate power on/off, and whether user passage requests have been accepted or rejected. The design of the keypad display or keypad enclosure shall limit the maximum horizontal and vertical viewing angles of the keypad. The maximum horizontal viewing angle shall be plus and minus 5 degrees or less off a vertical plane perpendicular to the plane of the face of the keypad display. The maximum vertical viewing angle shall be plus and minus 15 degrees or less off a horizontal plane perpendicular to the plane of the face of the keypad display.
2.8.2.2 Keypad Response Time
The keypad shall respond to passage requests by generating a signal to the local processor.
The response time shall be 800 milliseconds or less from the time the last alphanumeric symbol is entered until a response signal is generated.
2.8.2.3 Keypad Power
The keypad shall be powered from the source as shown and shall not dissipate more than 150 Watts.
2.8.2.4 Keypad Mounting Method
Keypads shall be suitable for surface, semi-flush, pedestal, or weatherproof mounting as required.
2.8.2.5 Keypad Duress Codes
Keypads shall provide a means for users to indicate a duress situation by entering a special code.
SECTION 28 20 01.00 10 Page 33
2.8.3 Card Readers With Integral Keypad
2.8.3.1 Wiegand
2.8.3.2 Smart Card
2.8.3.3 Contactless Smart Card
2.8.3.4 Proximity
2.8.4 Personal Identity Verification Equipment
2.8.4.1 Hand Geometry
2.8.4.2 Fingerprint Analysis Scanner
2.8.4.3 Iris Scan Device
2.8.5 Portal Control Devices
2.8.5.1 Push-button Switches
Provide momentary contact, back lighted push buttons and stainless steel switch enclosures for each push button as shown. Switch enclosures shall be suitable for flush, or surface mounting as required. Push buttons shall be suitable for flush mount in the switch enclosures. The push button switches shall meet the requirements of NEMA 250 for the area in which they are to be installed. Where multiple push buttons are housed within a single switch enclosure, they shall be stacked vertically with each push button switch labeled with 7 mm 1/4 inch high text and symbols as required. The push button switches shall be connected to the local processor associated with the portal to which they are applied and shall operate the appropriate electric strike, electric bolt or other facility release device. The continuous current of the IDS circuit shall be no more than 50 percent of the continuous current rating of the device supplied. The push button switches shall have double-break silver contacts that will make 720 VA at 60 amperes and break 720 VA at 10 amperes.
2.8.5.2 Panic Bar Emergency Exit With Alarm
SECTION 28 20 01.00 10 Page 34
2.8.5.3 Panic Bars: Normal Exit
2.8.5.4 Electric Door Strikes/Bolts
2.8.5.5 Electrified Mortise Lock
2.8.5.6 Electromagnetic Lock
2.8.5.7 Entry Booth
2.8.5.8 Booth Security and Operational Enhancements
2.8.5.9 Entry Booth Electrical Requirements
2.8.5.10 Vehicle Gate Opener
The vehicle gate shall include housing, mounting hardware, electrical wiring, and appurtenances as required. The vehicle gate openers shall be suitable for connection to, and monitoring and control by the system local processors. A hand crank for manual operation of the vehicle gate opener and a solenoid actuated brake to prevent gate coasting shall be provided. The vehicle gate opener shall provide an auto reverse time delay of at least 1 second and not more than 3 seconds to minimize shock loads on vehicle gate opener drive components. The vehicle gate opener shall include a contactor type motor starter which meets or exceeds NEMA size "O" specifications.
a. Input Power: The vehicle gate opener shall operate from the voltage source shown.
The vehicle gate opener shall include manual reset type thermal and electrical overload devices.
b. Audible Warning: The vehicle gate opener shall have an audible warning system to signal personnel in the vicinity of the vehicle gate opener that an opening or closing is about to commence. The audible shall sound at least 2 seconds and no more than 5 seconds before movement begins.
c. Maximum Run Timer: The vehicle gate opener shall incorporate an internal maximum run timer which limits the motor run time. The maximum run time shall be operator adjustable for at least the maximum amount of time gate opening or closing takes during normal operation.
d. Adjustable Load Monitor for Obstruction Sensing: The vehicle gate opener shall have an operator adjustable load monitor that shall sense obstructions in the path
SECTION 28 20 01.00 10 Page 35 of the gate and automatically reverse the vehicle gate opener drive motor.
e. Operator Override Controls: The vehicle gate opener shall interface to a 3 push-button control station located within an entry controlled area. The 3 push-button switches shall be labeled and function as open, close, and stop controls, and shall meet the requirements of paragraph Push-button Switches.
f. Limit Switches: The vehicle gate opener shall have adjustable limit switches and shall provide a means to securely lock the switches in place after adjustment. The range of gate travel shall be defined by the location of the limit switches.
g. Type of Gate: The vehicle gate openers provided shall be compatible with cantilever, roller, v-track, overhead, slide, and swing gates.
2.9 SURVEILLANCE AND DETECTION EQUIPMENT
2.9.1.1 Size and Weight
2.9.1.2 Local Audible Alarms
2.9.1.3 Maximum Package Size
2.9.1.4 X-Ray Tube
2.9.1.5 Electrical
2.9.1.6 Safety
2.9.1.7 Display
2.9.1.8 Conveyor
2.9.1.9 Material Identification and Resolution
2.9.2 Metal Detector
SECTION 28 20 01.00 10 Page 36
2.9.2.1 Size and Weight
2.9.2.2 Local Alarms
2.9.2.3 Material Identification and Sensitivity
2.9.2.4 Traffic Counter
2.9.2.5 Electrical
2.10 ENTRY CONTROL SOFTWARE
2.10.1 Interface Device
2.10.2 Operator Interface
2.10.3 Entry Control Functions
2.10.3.1 Multiple Security Levels
2.10.3.2 Two person rule
2.10.3.3 Anti-Pass back
2.10.3.4 Immediate Access Change
2.10.3.5 Multiple Time Zones
2.10.3.6 Guard Tour
SECTION 28 20 01.00 10 Page 37
2.10.3.7 Elevator Control
2.10.4 Electronic Entry Control System Capacities
2.10.4.1 Enrollees
2.10.4.2 Transaction History File Size
2.10.5 Entry Control System Alarms
2.10.5.1 Duress
2.10.5.2 Guard Tour
2.10.5.3 Entry Denial
2.10.5.4 Portal Open
2.10.5.5 Bolt Not Engaged
2.10.5.6 Strike Not Secured
2.10.5.7 Alarm Shunting/System Bypass
2.11 WIRE AND CABLE
Provide all wire and cable not indicated as Government furnished equipment.
Wiring shall meet NFPA 70 standards.
SECTION 28 20 01.00 10 Page 38
2.11.1 Above Ground Sensor Wiring
2.11.2 Direct Burial Sensor Wiring
2.11.3 Local Area Network (LAN) Cabling
LAN cabling shall be in accordance with TIA-568-C.1, category 5.
2.11.4 Cable Construction
All cable components shall withstand the environment in which the cable is installed for a minimum of 20 years.
2.11.5 Power Line Surge Protection
Equipment connected to alternating current circuits shall be protected from power line surges. Equipment protection shall withstand surge test waveforms described in IEEE C62.41.1 and IEEE C62.41.2. Fuses shall not be used for surge protection.
2.11.6 Sensor Device Wiring and Communication Circuit Surge Protection
2.11.7 Power Line Conditioners
PART 3 EXECUTION
3.1 EXAMINATION
Verify that site conditions are in agreement with the design package and report any changes in the site, or conditions that will affect performance of the system to the Government in a report as defined in paragraph Group II Technical Data Package. Do not take any corrective action without written permission from the Government.
3.2 GENERAL REQUIREMENTS
Install all system components, including Government furnished equipment, and appurtenances in accordance with the manufacturer's instructions, IEEE C2 and as shown. Furnish necessary interconnections, services, and adjustments required for a complete and operable system as specified and shown. Control signal, communications, and data transmission line grounding shall be installed as necessary to preclude ground loops, noise, and surges from adversely affecting system operation.
3.2.1 Installation
Install the system in accordance with the standards for safety, NFPA 70, UL 681, UL 1037 and UL 1076, and the appropriate installation manual for each equipment type.
Components within the system shall be configured with appropriate service points to
SECTION 28 20 01.00 10 Page 39 pinpoint system trouble in less than 20 minutes. Conduit shall be rigid galvanized steel or as shown and a minimum of 15 mm 1/2 inch in diameter. DTS shall not be pulled into conduits or placed in raceways, compartments, outlet boxes, junction boxes, or similar fittings with other building wiring. Flexible cords or cord connections shall not be used to supply power to any components of the system, except where specifically noted. All other electrical work shall be as specified in Section 26 20 00 INTERIOR DISTRIBUTION SYSTEM and as shown.
3.2.2 Enclosure Penetrations
Enclosure penetrations shall be from the bottom unless the system design requires penetrations from other directions. Penetrations of interior enclosures involving transitions of conduit from interior to exterior, and penetrations on exterior enclosures shall be sealed with rubber silicone sealant to preclude the entry of water. The conduit riser shall terminate in a hot-dipped galvanized metal cable terminator. The terminator shall be filled with an approved sealant as recommended by the cable manufacturer, and in a manner that does not damage the cable.
3.2.3 Cold Galvanizing
Field welds and/or brazing on factory galvanized boxes, enclosures, conduits, etc., shall be coated with a cold galvanized paint containing at least 95 percent zinc by weight.
3.2.4 Existing Equipment
3.2.5 Installation Software
3.3 SYSTEM STARTUP
Satisfaction of the requirements below does not relieve the Contractor of responsibility for incorrect installations, defective equipment items, or collateral damage as a result of Contractor work/equipment. Do not apply power to the system until after:
a. System equipment items and DTS have been set up in accordance with manufacturer's instructions.
b. A visual inspection of the system has been conducted to ensure that defective equipment items have not been installed and that there are no loose connections.
c. System wiring has been tested and verified as correctly connected.
d. System grounding and transient protection systems have been verified as properly installed.
e. Power supplies to be connected to the…
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