09-0096 16722 1-23
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- Attached to
- Construct Addition to Bldg 973 Federal contract opportunity
- Solicitation number
- FA4528-11-R-0006
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Revised Specs
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Repair/Install Fire Suppression - Dock 4 Minot AFB, ND
*SECTION 16722
FIRE ALARM AND MASS NOTIFICATION SYSTEM
PART 1 GENERAL
1.1 RELATED SECTIONS
Section 26 00 00.00 20 BASIC ELECTRICAL MATERIALS AND METHODS, applies to this section, with the additions and modifications specified herein. In addition, refer to the following sections for related work and coordination:
Section 21 13 13 WET PIPE SPRINKLER SYSTEM, FIRE PROTECTION Section 21 30 00 FIRE PUMPS Section 21 13 18 PREACTION FIRE SPRINKLER SYSTEMS Section 21 13 20 FOAM FIRE EXTINGUISHING FOR AIRCRAFT HANGARS.
Section 07 84 00 FIRESTOPPING for additional work related to firestopping.
1.2 DEFINITIONS
Wherever mentioned in this specification or on the drawings, the equipment, devices, and functions shall be defined as follows:
a. Analog/Addressable System: A system where multiple signals are transmitted via the same conduction path to a remote fire alarm control unit and fire alarm control panel, decoded and separated so that each signal will initiate the specified response.
b. Hard Wired System: A system where alarm and supervisory initiating devices are directly connected, through individual dedicated conductors, to a central control panel without the use of analog/addressable circuits or devices.
c. Interface Device: An addressable device that interconnects hard wired systems or devices to an analog/addressable system.
d. Remote Fire Alarm and Mass Notification Control Unit: A control panel, electronically remote from the fire alarm and mass notification control panel, that receives inputs from automatic and manual fire alarm devices; may supply power to detection devices and interface devices; may provide transfer of power to the notification appliances; may provide transfer of condition to relays or devices connected to the control unit; and reports to and receives signals from the fire alarm control panel.
e. Fire Alarm and Mass Notification Control Panel (FAMNS): A master control panel having the features of a fire alarm and mass notification control unit and fire alarm and mass notification control units are interconnected. The panel has central processing, memory, input and output terminals.
f. Terminal Cabinet: A steel cabinet with locking, hinge-mounted door that terminal strips are securely mounted.
1.3 SYSTEM DESCRIPTION
*1.3.1 Scope
a. This work includes removal of the existing fire alarm control panel, completion of design and providing a new combination fire alarm / mass notification system as described herein and on the contract drawings. Include in the system wiring, raceways, pull boxes, terminal cabinets, outlet and mounting boxes, control equipment, alarm, and supervisory signal initiating devices, alarm notification appliances, supervising station fire alarm system transmitter, and other accessories and miscellaneous items required for a complete operating system even though each item is not specifically mentioned or described. Provide systems complete and ready for operation.
b. Provide equipment, materials, installation, workmanship, inspection, and testing in strict accordance with the required and advisory provisions of NFPA 72, ISO 7240-16, IEC 60268-16, except as modified herein. The system layouts on the drawings show the intent of coverage and are shown in suggested locations. Final quantity, system layout, and coordination are the responsibility of the Contractor.
*REVISED
c. All existing devices shall be reconnected to the new combination fire alarm/mass notification panel.
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REVISION QJVF 09-0096
08 JUN 11
d. Remove and return to the Government existing devices and conductors that do not comply with this Section. Certify and warrantee any devices, appliances, conductors and equipment that are reused.
e. The Contractor shall provide testing of all new and existing devices at the completion of the work to ensure that all new and existing devices report correctly to the local FAMNS panel as well as the Central Monitoring System.
1.3.2 Technical Data and Computer Software
Technical data and computer software (meaning technical data that relates to computer software) that are specifically identified in this project, and may be defined/required in other specifications, shall be delivered, strictly in accordance with the CONTRACT CLAUSES. Identify data delivered by reference to the particular specification paragraph against which it is furnished. Data to be submitted shall include complete system, equipment, and software descriptions. Descriptions shall show how the equipment will operate as a system to meet the performance requirements of this contract. The data package shall also include the following:
a. Identification of programmable portions of system equipment and capabilities.
b. Description of system revision and expansion capabilities and methods of implementation detailing both equipment and software requirements.
c. Provision of operational software data on all modes of programmable portions of the fire alarm and detection system.
d. Description of FAMNS Control Panel equipment operation.
e. Description of auxiliary equipment operations.
f. Library of application software.
g. Operation and maintenance manuals.
1.3.3 Keys
Keys and locks for equipment shall be identical. Provide not less than six keys of each type required. All keys and locks shall be mastered to a single key as required by the local AHJ.
*1.4 SUBMITTALS
SD-02 Shop Drawings Annotated catalog data, in table format on the drawings, showing manufacturer's name, model, voltage, and catalog numbers for equipment and components. Submitted shop drawings shall not be smaller than ISO A1.
Wiring Diagrams Point-to-point wiring diagrams showing the points of connection and terminals used for electrical field connections in the system, including interconnections between the equipment or systems that are supervised or controlled by the system. Diagrams shall show connections from field devices to the FACP and remote fire alarm control units, initiating circuits, switches, relays and terminals.
Complete riser diagrams indicating the wiring sequence of devices and their connections to the control equipment. Include a color code schedule for the wiring. Include floor plans showing the locations of devices and equipment.
System Layout Plan view drawing showing device locations, terminal cabinet locations, junction boxes, other related equipment, conduit routing, wire counts, circuit identification in each conduit, and circuit layouts for all floors.
Drawings shall comply with the requirements of NFPA 170, Fire Safety Symbols.
System Operation A complete list of device addresses and corresponding messages.
Notification Appliances
*REVISED
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Data on each circuit to indicate that there is at least 25 percent spare capacity for notification appliances, 25 percent spare capacity for initiating devices. Annotate data for each circuit on the drawings.
Amplifiers Data to indicate that the amplifiers have sufficient capacity to simultaneously drive all notification speakers at the maximum rating plus 50 percent spare capacity. Annotate data for each circuit on the drawings.
SD-03 Product Data
UL or FM listing cards for equipment provided.
Interior Fire Alarm And Mass Notification System
SD-05 Design Data
System Operation A complete description of the system operation in matrix format on the drawings.
Battery power Battery calculations as required in paragraph Battery Power Calculations.
SD-06 Test Reports
Field Quality Control Testing Procedures Smoke sensor testing procedures
SD-07 Certificates
Installer
SD-09 Manufacturer's Field Reports Mass Notification System A unique identifier for each device, including the control panel and initiating and indicating devices, with an indication of test results, and signature of the factory-trained technician of the control panel manufacturer and equipment installer. With reports on preliminary tests, include printer information. Include the NFPA 72 Record of Completion and NFPA 72 Inspection and Testing Form, with the appropriate test reports.
SD-10 Operation and Maintenance Data
Operation and Maintenance (O&M) Instructions copies of the Operation and Maintenance Instructions, indexed and in booklet form. The Operation and Maintenance Instructions shall be a single volume or in separate volumes, and may be submitted as a Technical Data Package. Manuals shall be approved prior to training.
Original and backup copies of all software delivered for this project, on each type of CD/DVD media utilized.
1.5 QUALITY ASSURANCE
Equipment and devices shall be compatible and operable with existing station fire alarm system and shall not impair reliability or operational functions of existing supervising station fire alarm system. The proprietary type Supervising Station (PSS) is located at the Fire Dispatch Center.
a. In NFPA publications referred to herein, consider advisory provisions to be mandatory, as though the word "shall" had been substituted for "should" wherever it appears; interpret reference to "authority having jurisdiction" to mean the Contracting Offices Designated Representative (COR).
b. The recommended practices stated in the manufacturer's literature or documentation shall be considered as mandatory requirements.
c. Devices and equipment for fire alarm service shall be listed by UL Fire Prot Dir or approved by FM APP GUIDE.
1.5.1 Qualifications
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1.5.1.1 Design Services
Installations requiring completion of installation drawings and specification or modifications of fire detection, fire alarm, mass notification system, fire suppression systems or mass notification systems shall require the services and review of a qualified engineer. For the purposes of meeting this requirement, a qualified engineer is defined as an individual meeting one of the following conditions:
a. A registered professional engineer having a Bachelor of Science or Masters of Science Degree in Fire Protection Engineering from an accredited university engineering program, plus a minimum of four years work experience in fire protection engineering.
b. A registered professional engineer (P.E.) in fire protection engineering.
c. Registered Professional Engineer with verification of experience and at least four years of current experience in the design of the fire protection and detection systems.
d. A NICET Level 4 Fire Alarm Technicians, factory-certified to design the proposed system.
1.5.1.2 Supervisor
The installing Contractor shall provide the following: NICET Fire Alarm Technicians to perform the installation of the system. A NICET Level 4 Fire Alarm Technician shall supervise the installation of the fire alarm system/mass notification system.
The Fire Alarm technicians supervising the installation of equipment shall be factory trained in the installation, adjustment, testing, and operation of the equipment specified herein and on the drawings.
1.5.1.3 Technician
The installing Contractor shall provide the following: Fire Alarm Technicians with a minimum of four years of experience utilized to assist in the installation and terminate fire alarm/mass notification devices, cabinets and panels. The Fire Alarm technicians installing the equipment shall be factory trained in the installation, adjustment, testing, and operation of the equipment specified herein and on the
1.5.1.4 Installer
The installing Contractor shall provide the following: Fire Alarm installer with a minimum of two years of experience utilized to assist in the installation of fire alarm/mass notification devices, cabinets and panels. An electrician shall be allowed to install wire or cable and to install conduit for the fire alarm system/mass notification system. The Fire Alarm installer shall be factory trained in the installation, adjustment, testing, and operation of the equipment specified herein and on the drawings.
1.5.1.5 Test Personnel
The installing Contractor shall provide the following: Fire Alarm Technicians with a minimum of eight years of experience utilized to test and certify the installation of the fire alarm/mass notification devices, cabinets and panels. The Fire Alarm technicians testing the equipment shall be factory trained in the installation, adjustment, testing, and operation of the equipment specified herein and on the
1.5.1.6 Manufacturer's Representative
The fire alarm and mass notification equipment manufacturer's representative shall be present for the connection of wiring to the control panel. The Manufacturer's Representative shall be an employee of the manufacturer with necessary technical training on the system being installed.
1.5.1.7 Manufacturer
Components shall be of current design and shall be in regular and recurrent production at the time of installation. Provide design, materials, and devices for a protected premises fire alarm system, complete, conforming to NFPA 72, except as otherwise or additionally specified herein.
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1.5.2 Regulatory Requirements
1.5.2.1 Requirements for Fire Protection Service
Equipment and material shall have been tested by UL and listed in UL Fire Prot Dir or approved by FM and listed in FM APP GUIDE. Where the terms "listed" or "approved" appear in this specification, they shall mean listed in UL Fire Prot Dir or FM APP GUIDE. The omission of these terms under the description of any item of equipment described shall not be construed as waiving this requirement. All listings or approval by testing laboratories shall be from an existing ANSI or UL published standard.
1.5.2.2 Mass Notification System
The equipment furnished shall be compatible and be UL listed, FM approved, or approved or listed by a nationally recognized testing laboratory for the intended use. All listings or approval by testing laboratories shall be from an existing ANSI or UL published standard.
1.5.2.3 Testing Services or Laboratories
Fire alarm and fire detection equipment shall be constructed in accordance with UL Fire Prot Dir, UL Electrical Constructn, or FM APP GUIDE.
1.6 DELIVERY, STORAGE, AND HANDLING
Protect equipment delivered and placed in storage from the weather, humidity, and temperature variation, dirt and dust, and other contaminants.
1.7 OPERATION AND MAINTENANCE (O&M) INSTRUCTIONS
The Interior Fire Alarm And Mass Notification System Operation and Maintenance Instructions shall include:
a. "Manufacturer Data Package 5" as specified in Section 01 78 23 OPERATION
AND MAINTENANCE DATA.
b. Operating manual outlining step-by-step procedures required for system startup, operation, and shutdown. The manual shall include the manufacturer's name, model number, service manual, parts list, and complete description of equipment and their basic operating features.
c. Maintenance manual listing routine maintenance procedures, possible breakdowns and repairs, and troubleshooting guide. The manuals shall include conduit layout, equipment layout and simplified wiring, and control diagrams of the system as installed.
d. The manuals shall include complete procedures for system revision and expansion, detailing both equipment and software requirements.
e. Software delivered for this project shall be provided, on each type of CD/DVD media utilized.
f. Printouts of configuration settings for all devices.
g. Routine maintenance checklist. The routine maintenance checklist shall be arranged in a columnar format. The first column shall list all installed devices, the second column shall state the maintenance activity or state no maintenance required, the third column shall state the frequency of the maintenance activity, and the fourth column for additional comments or reference.
1.8 EXTRA MATERIALS
1.8.1 Repair Service/Replacement Parts
Repair services and replacement parts for the system shall be available for a period of 10 years after the date of final acceptance of this work by the Contracting Officer. During guarantee period, the service technician shall be on-site within 24 hours after notification. All repairs shall be completed within 24 hours of arrival on-site.
1.8.2 Interchangeable Parts
Spare parts furnished shall be directly interchangeable with the corresponding components of the installed system. Spare parts shall be suitably packaged and
*REVISED
16722-5 identified by nameplate, tagging, or stamping. Spare parts shall be delivered to the Contracting Officer at the time of the final acceptance testing.
*1.8.3 Spare Parts
Furnish the following spare parts and accessories:
a. Four fuses for each fused circuit
1.8.4 Special Tools
Software, connecting cables and proprietary equipment, necessary for the maintenance, testing, and reprogramming of the equipment shall be furnished to the Contracting Officer.
PART 2 PRODUCTS
2.1 MATERIALS AND EQUIPMENT
2.1.1 Standard Products
Provide materials, equipment, and devices that have been tested by a nationally recognized testing laboratory, such as UL or FM, and listed or approved for fire protection service when so required by NFPA 72 or this specification. Select material from one manufacturer, where possible, and not a combination of manufacturers, for any particular classification of materials. Material and equipment shall be the standard products of a manufacturer regularly engaged in the manufacture of the products for at least two years prior to bid opening.
2.1.2 Nameplates
Major components of equipment shall have the manufacturer's name, address, type or style, model or serial number, catalog number, date of installation, installing Contractor's name and address, and the contract number provided on a new plate permanently affixed to the item or equipment. Major components include, but are not limited to, the following:
a. FACPs
b. Automatic transmitter
Furnish nameplates to obtain approval by the Contracting Officer before installation. Obtain approval by the Contracting Officer for installation locations. Nameplates shall be etched metal or plastic, permanently attached by screws to panels or adjacent walls.
2.2 GENERAL PRODUCT REQUIREMENT
All fire alarm and mass notification equipment shall be listed for use under the applicable reference standards. Interfacing of Listed UL 864 or similar approved industry listing with Mass Notification Panels listed to UL 2017 or equal shall be done in a laboratory listed configuration, if the software programming features can not provide a listed interface control. If a field modification is needed, such as adding equipment like relays, the manufacturer of the panels being same or different brand from manufacturer shall provide the installing contractor for review and confirmation by the installing contractor. The installing contractor shall, as part of the submittal documents, provide this information.
*2.2.1 Existing Equipment
The existing fire alarm control panel shall be removed and returned to the Government. A new combination fire alarm/mass notification panel shall be provided to replace the existing fire alarm panel. The existing fire alarm control panel is Simplex Model 4005. Any existing fire alarm devices re-used as part of this project shall be re-tested with the new combination fire alarm/mass notification panel. All new equipment provided as part of this project shall be compatible existing base communication system and “Giant Voice” system.
2.3 SYSTEM OPERATION
The Addressable Interior Fire Alarm and Mass Notification System shall be a complete, supervised, noncoded, analog/addressable fire alarm and mass notification system conforming to NFPA 72, UL 864 Ninth Edition, and UL 2017. The system shall
16722-6 be activated into the alarm mode by actuation of any alarm initiating device. The system shall remain in the alarm mode until the initiating device is reset and the fire alarm control panel is reset and restored to normal. The system may be placed in the alert mode by local micrphones or remotely from authorized locations/users.
2.3.1 Alarm Initiating Devices
Connect alarm initiating devices to signal line circuits (SLC)installed in accordance with NFPA 72. The system shall have an interconnected riser loop or network having supervision for interconnection of other FA/MNS control panels.
a. Alarm notification appliances shall be connected to Voice Notification System, as "Class A" in accordance with NFPA 72. A looped conduit system shall be provided so that if the conduit and all conductors within are severed or exposed to fire at any point, all IDC, NAC and SLC will remain functional.
Should the design or building layout preclude separation then a fire rated separation shall be provided in accordance with NFPA 72. The return portion of the loop shall be remote from the supply portion of the loop.
b. The system shall operate in the alarm mode upon actuation of any alarm initiating device. The system shall remain in the alarm mode until initiating device(s) are reset and the fire alarm control panel is manually reset and restored to normal. The conduit loop requirement is not applicable to the signal transmission link from the local panels (at the protected premises) to the Supervising Station (fire station, fire alarm central communication center). Audible, and visual appliances and systems shall comply with NFPA 72.
Fire alarm system/mass notification system components requiring power, except for the control panel power supply, shall operate on 24 Volts dc.
2.3.2 Functions and Operating Features
The system shall provide the following functions and operating features:
a. The FACP/FMCP and fire alarm and mass notification control units, if used, shall provide power, annunciation, supervision, and control for the system.
Addressable systems shall be microcomputer (microprocessor or microcontroller) based with a minimum word size of eight bits with sufficient memory to perform as specified.
b. Provide electrical supervision of the primary power (AC) supply, presence of the battery, battery voltage, and placement of system modules within the control panel.
c. Provide an audible and visual trouble signal to activate upon a single break or open condition, or ground fault. The trouble signal shall also operate upon loss of primary power (AC) supply, absence of a battery supply, low battery voltage, or removal of alarm or supervisory panel modules. Provide a trouble alarm silence feature that shall silence the audible trouble signal, without affecting the visual indicator. After the system returns to normal operating conditions, the trouble signal shall again sound until the trouble is acknowledged. A smoke sensor in the process of being verified for the actual presence of smoke shall not initiate a trouble condition.
d. Provide a notification appliance silencing switch, that when activated, will silence the audible signal appliance, but will not affect the visual alarm indicator, the liquid crystal display, or the automatic notification of the fire department. This switch shall be overridden upon activation of a subsequent alarm.
e. Provide alarm verification capability for smoke sensors. Alarm verification shall initially be set for 30 seconds.
f. Provide program capability via switches in a locked portion of the FACP to bypass the automatic notification appliance circuits, fire reporting systemair handler shutdown features. Operation of this programming shall indicate this action on the FACP display and at the fire department.
g. Alarm, supervisory, and/or trouble signals shall be automatically transmitted to the fire department.
h. Alarm functions shall override trouble or supervisory functions.
Supervisory functions shall override trouble functions.
i. The system shall be capable of being programmed from the panels keyboard.
Programmed information shall be stored in non-volatile memory.
*REVISED
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j. The system shall be capable of operating, supervising, and/or monitoring both addressable and non-addressable alarm and supervisory devices.
k. There shall be no limit, other than maximum system capacity, as to the number of addressable devices, that may be in alarm simultaneously.
l. Where the fire alarm system is responsible for initiating an action in another emergency control device or system, such as an HVAC system, the addressable fire alarm relay shall be within 3 feet of the emergency control device.
m. An alarm signal shall automatically initiate the following functions:
(1) Transmission of an alarm signal to the fire department.
(2) Visual indication of the device operated on the fire alarm control panel (FACP), and on the graphic annunciator. Indication on the graphic annunciator shall be by floor, zone or circuit, and type of device.
(3) Continuous actuation of all alarm notification appliances, except those in stairs .
(4) Recording of the event electronically in the history log of the fire control system unit.
(5) Operation of a duct smoke sensor shall shut down the appropriate air handler in accordance with NFPA 90A in addition to other requirements of this paragraph.
(6) Operation of a Manual Foam Discharge Station shall release the HEX -foam fire extinguishing system after a zero (0) second time delay.
n. A supervisory signal shall automatically initiate the following functions:
(1) Visual indication of the device operated on the FACP, and on the graphic annunciator, and sound the audible alarm at the respective panel.
(2) Transmission of a supervisory signal to the fire department.
(3) Recording of the event electronically in the history log of the fire control system unit.
o. A trouble condition shall automatically initiate the following functions:
(1) Visual indication of the system trouble on the FACP, and on the graphic annunciator, and sound the audible alarm at the respective panel.
(2) Transmission of a trouble signal to the fire department.
(3) Recording of the event via the system printer.
p. The maximum permissible elapsed time between the actuation of an initiating device and its indication at the FACP shall be 10 seconds.
q. The maximum elapsed time between the occurrence of the trouble condition and its indication at the FACP shall not exceed 200 seconds.
2.4 SYSTEM MONITORING
2.4.1 Valves
Each valve affecting the proper operation of a fire protection system, including automatic sprinkler control valves, standpipe control valves, sprinkler service entrance valve, valves at fire pumps, isolating valves for pressure type waterflow or supervision switches, and valves at backflow preventers, whether supplied under this contract or existing, shall be electrically monitored to ensure its proper position. Each tamper switch shall be provided with a separate address, unless they are within the same room, then a maximum of five can use the same address.
2.5 MASS NOTIFICATION SYSTEM FUNCTIONS
*2.5.1 Notification Appliance Network
The notification appliance network consists of audio speakers located to provide intelligible instructions at all locations in the building. The Mass Notification System announcements shall take priority over all other function of the system including the audible and visual output of the fire alarm system in a normal or alarm state. All fire alarm system functions shall continue in an alarm state except for the output signals of the audible and visual notification appliances.
2.5.2 Strobes
Strobes are also provided to alert hearing-impaired occupants.
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*2.5.3 Giant Voice The Giant Voice system in the area of the building shall be activated to provide a live voice message. This interface shall be provided via the existing Whalen system. The Contractor shall provide an interface from the new combination fire alarm/mass notification panel to the existing Whalen system as part of this Mass Notification system work.
*2.5.4 Voice Notification
The integrated autonomous voice notification control unit is used to monitor and control the notification appliance network and provide consoles for local operation.
Using a console, personnel in the building can initiate delivery of pre-recorded voice messages, provide live voice messages and instructions, and initiate visual strobe and (optional) textual message notification appliances. The autonomous voice notification control unit will temporarily override audible fire alarm notification while delivering Mass Notification messages to ensure they are intelligible.
*2.5.5 Base-Wide Control
The new combination fire alarm/mass notification (FAMNS) panel shall communicate with the central control unit of the base-wide system. The FAMNS panel shall receive commands/messages from the central control unit and provide status information. The existing base-wide ‘Giant Voice’ communication system is Whalen;
all new communication equipment shall be capable of connection and interface with the existing system.
2.6 OVERVOLTAGE AND SURGE PROTECTION
2.6.1 Signaling Line Circuit Surge Protection
For systems having circuits located outdoors, communications equipment shall be protected against surges induced on any signaling line circuit and shall comply with the applicable requirements of IEEE C62.41.1 and IEEE C62.41.2. Cables and conductors, that serve as communications links, shall have surge protection circuits installed at each end that meet the following waveform(s):
a. A 10 microsecond by 1000 microsecond waveform with a peak voltage of 1500 volts and a peak current of 60 amperes.
b. An 8 microsecond by 20 microsecond waveform with a peak voltage of 1000 volts and a peak current of 500 amperes. Protection shall be provided at the equipment. Additional triple electrode gas surge protectors, rated for the application, shall be installed on each wireline circuit within 3 feet of the building cable entrance. Fuses shall not be used for surge protection.
2.6.2 Sensor Wiring Surge Protection
Digital and analog inputs and outputs shall be protected against surges induced by sensor wiring installed outdoors and as shown. The inputs and outputs shall be tested with the following waveforms:
a. A 10 by 1000 microsecond waveform with a peak voltage of 1500 volts and a peak current of 60 amperes.
b. An 8 by 20 microsecond waveform with a peak voltage of 1000 volts and a peak current of 500 amperes. Fuses shall not be used for surge protection.
2.7 ADDRESSABLE INTERFACE DEVICES
The initiating device being monitored shall be configured as a Style B initiating device circuits. The system shall be capable of defining any module as an alarm module and report alarm trouble, loss of polling, or as a supervisory module, and reporting supervisory short, supervisory open or loss of polling such as waterflow switches, valve supervisory switches, fire pump monitoring, independent smoke detection systems, relays for output function actuation, etc. The module shall be UL or FM listed as compatible with the control panel. The monitor module shall provide address setting means compatible with the control panel's SLC supervision and store an internal identifying code. Monitor module shall contain an integral LED that flashes each time the monitor module is polled. Pull stations with a monitor module in a common backbox are not required to have an LED.
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2.8 ADDRESSABLE CONTROL MODULE
The control module shall be capable of operating as a relay (dry contact form C) for interfacing the control panel with other systems, and to control door holders or initiate elevator fire service. The module shall be UL or FM listed as compatible with the control panel. The indicating device or the external load being controlled shall be configured as a Style Y notification appliance circuits. The system shall be capable of supervising, audible, visual and dry contact circuits. The control module shall have both an input and output address. The supervision shall detect a short on the supervised circuit and shall prevent power from being applied to the circuit. The control model shall provide address setting means compatible with the control panel's SLC supervision and store an internal identifying code. The control module shall contain an integral LED that flashes each time the control module is polled. Control Modules shall be located in environmental areas that reflect the conditions to which they were listed.
2.9 ISOLATION MODULES
Provide isolation modules to subdivide each signaling line circuit into groups of not more than 20 addressable devices between adjacent isolation modules.
2.10 SMOKE SENSORS
2.10.1 Photoelectric Smoke Sensors
Provide addressable photoelectric smoke sensors as follows:
a. Provide analog/addressable photoelectric smoke sensors utilizing the photoelectric light scattering principle for operation in accordance with UL
268. Smoke sensors shall be listed for use with the fire alarm control panel.
b. Provide self-restoring type sensors that do not require any readjustment after actuation at the FACP to restore them to normal operation. Sensors shall be UL listed as smoke-automatic fire sensors.
c. Components shall be rust and corrosion resistant. Vibration shall have no effect on the sensor's operation. Protect the detection chamber with a fine mesh metallic screen that prevents the entrance of insects or airborne materials. The screen shall not inhibit the movement of smoke particles into the chamber.
d. Provide twist lock bases for the sensors. The sensors shall maintain contact with their bases without the use of springs. Provide companion mounting base with screw terminals for each conductor. Terminate field wiring on the screw terminals. The sensor shall have a visual indicator to show actuation.
e. The sensor address shall identify the particular unit, its location within the system, and its sensitivity setting. Sensors shall be of the low voltage type rated for use on a 24 VDC system.
f. An operator at the control panel, having a proper access level, shall have the capability to manually access the following information for each initiating device.
(1) Primary status
(2) Device type
(3) Present average value
(4) Present sensitivity selected
(5) Sensor range (normal, dirty, etc.)
2.10.2 Duct Smoke Sensors
Duct-mounted photoelectric smoke detectors shall be furnished and installed where indicated and in accordance with NFPA 90A. Units shall consist of a smoke detector as specified in paragraph Photoelectric Detectors, mounted in a special housing fitted with duct sampling tubes. Detector circuitry shall be mounted in a metallic enclosure exterior to the duct. Detectors shall have a manual reset. Detectors shall be rated for air velocities that include air flows between 500 and 4000 fpm.
Detectors shall be powered from the fire alarm panel.
a. Sampling tubes shall run the full width of the duct. The duct detector package shall conform to the requirements of NFPA 90A, UL 268A, and shall be UL listed for use in air-handling systems. The control functions, operation, reset, and bypass shall be controlled from the fire alarm control panel.
*REVISED
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b. Lights to indicate the operation and alarm condition; and the test and reset buttons shall be visible and accessible with the unit installed and the cover in place. Detectors mounted above 6 feet and those mounted below 6 feet that cannot be easily accessed while standing on the floor, shall be provided with a remote detector indicator panel containing test and reset switches.
c. Remote lamps and switches as well as the affected fan units shall be properly identified in etched plastic placards. Detectors shall provide for control of auxiliary contacts that provide control, interlock, and shutdown functions specified in Section . Auxiliary contacts provide for this function shall be located within 3 feet of the controlled circuit or appliance. The detectors shall be supplied by the fire alarm system manufacturer to ensure complete system compatibility.
2.10.3 Smoke Sensor Testing
Smoke sensors shall be tested in accordance with NFPA 72 and manufacturer's recommended calibrated test method. Submit smoke sensor testing procedures for approval.
2.11 THERMAL SENSORS
*2.11.1 Heat Detectors
Heat detectors shall be designed for detection of fire by combination fixed temperature and rate-of-rise principle. The alarm condition shall be determined by comparing sensor valve with the stored values. Heat detector spacing shall be rated in accordance with UL 521. Detectors located in areas subject to moisture, exterior atmospheric conditions, or hazardous locations as defined by NFPA 70, shall be types approved for such locations.
2.11.2 Heat Sensing
A moving average of the sensors heat sensing value to automatically compensate for conditions that could affect detection operations. System shall automatically maintain a constant heat sensing sensitivity from each sensor by compensating for environmental factors.
2.11.3 Self-Test Routines
Automatic self-test routines shall be performed on each sensor that will functionally check sensor sensitivity electronics and ensure the accuracy of the value being transmitted. Any sensor that fails this test shall indicate a trouble condition with the sensor location at the control panel.
2.11.4 Operator Access
An operator at the control panel, having the proper access level, shall have the capability to manually access the following information for each heat sensor:
a. Primary status
b. Device type
c. Present average value
d. Sensor range
2.11.5 Operator Control
An operator at the control panel, having the proper access level, shall have the capability to manually control the following information for each heat sensor:
a. Alarm detection sensitivity values
b. Enable or disable the point/device
c. Control sensors relay driver output
2.12 ELECTRIC POWER
2.12.1 Primary Power
Power shall be 120 VAC service for the FAMNS from the normal AC service to the building.
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2.13 EMERGENCY POWER SUPPLY
Provide for system operation in the event of primary power source failure. Transfer from normal to auxiliary (secondary) power or restoration from auxiliary to normal power shall be automatic and shall not cause transmission of a false alarm.
2.13.1 Batteries
Provide sealed, maintenance-free, sealed lead acid batteries as the source for emergency power to the FAMNS. Batteries shall contain suspended electrolyte. The battery system shall be maintained in a fully charged condition by means of a solid state battery charger. Provide an automatic transfer switch to transfer the load to the batteries in the event of the failure of primary power.
2.13.1.1 Capacity
Provide the batteries with sufficient capacity to operate the system under supervisory and trouble conditions, including audible trouble signal devices for 72 hours and audible and visual signal devices under alarm conditions for an additional 15 minutes.
2.13.1.2 Battery Power Calculations
a. Verify that battery capacity exceeds supervisory and alarm power requirements.
1). Substantiate the battery calculations for alarm, alert, and supervisory power requirements. Ampere-hour requirements for each system component and each panel component, and the battery-recharging period shall be included.
2). Provide complete battery calculations for both the alarm, alert, and supervisory power requirements. Ampere-hour requirements for each system component shall be submitted with the calculations.
3). A voltage drop calculation to indicate that sufficient voltage is available for proper operation of the system and all components, at the minimum rated voltage of the system operating on batteries.
b. For battery calculations use the following assumptions: Assume a starting voltage of 24 VDC for starting the calculations to size the batteries.
Calculate the required Amp-Hours for the specified standby time, and then calculate the required Amp-Hours for the specified alarm time. Calculate the nominal battery voltage after operation on batteries for the specified time period. Using this voltage perform a voltage drop calculation for circuit containing device and/or appliances remote from the power sources.
2.13.2 Battery Chargers
Provide a solid state, fully automatic, variable charging rate battery charger. The charger shall be capable of providing 150 percent of the connected system load and shall maintain the batteries at full charge. In the event the batteries are fully discharged (18 Volts dc), the charger shall recharge the batteries back to 95 percent of full charge within 48 hours. Provide pilot light to indicate when batteries are manually placed on a high rate of charge as part of the unit assembly if a high rate switch is provided.
2.14 FIRE ALARM AND MASS NOTIFICATION CONTROL PANEL (FACP/FMCP)
Provide a complete control panel fully enclosed in a lockable steel enclosure as specified herein. Operations required for testing or for normal care and maintenance of the systems shall be performed from the front of the enclosure. If more than a single unit is required at a location to form a complete control panel, the unit enclosures shall match exactly.
a. Each control unit shall provide power, supervision, control, and logic for the entire system, utilizing solid state, modular components, internally mounted and arranged for easy access. Each control unit shall be suitable for operation on a 120 volt, 60 hertz, normal building power supply. Provide each panel with supervisory functions for power failure, internal component placement, and operation.
*REVISED
b. Visual indication of alarm, supervisory, or trouble initiation on the fire alarm control panel shall be by liquid crystal display or similar means with a minimum of 80 characters, that at least 32 are field changeable. The MNS
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Control panel shall have the capability of temporarily deactivate the fire alarm audible notification appliances while delivering voice messages. Provide conductor integrity monitoring for strobe, display, temporary deactivation of fire alarm audible notification appliances and speaker wiring.
c. Provide secure operator console for initiating recorded messages, strobes and displays; and for delivering live voice messages. Provide capacity for at least four pre-recorded messages. Provide the ability to automatically repeat pre-recorded messages. Provide a secure microphone for delivering live messages. Provide adequate discrete outputs to temporarily deactivate fire alarm audible notification, and initiate/synchronize strobes. Provide a complete set of self-diagnostics for controller and appliance network. Provide local diagnostic information display and local diagnostic information and system event log file.
*2.14.1 Cabinet
Install control panel components in cabinets large enough to accommodate all new components and also to allow ample gutter space for interconnection of panels as well as field wiring. Provide prominent rigid plastic or metal identification plates for lamps, circuits, meters, fuses, and switches. The cabinet shall be provided in a sturdy steel housing, complete with back box, hinged steel door with cylinder lock, and surface mounting provisions.
2.14.2 Control Modules
Provide power and control modules to perform all functions of the FACP. Provide audible signals to indicate any alarm, supervisory, or trouble condition. The alarm signals shall be different from the trouble signal. Connect circuit conductors entering or leaving the panel to screw-type terminals with each terminal marked for identification. Locate diodes and relays, if any, on screw terminals in the FACP.
Circuits operating at 24 VDC shall not operate at less than 21.6 volts. Circuits operating at any other voltage shall not have a voltage drop exceeding 10 percent of nominal voltage.
2.14.3 Silencing Switches
a. Alarm Silencing Switch: Provide an alarm silencing switch at the FACP that shall silence the audible signal but not affect the visual alarm indicator.
This switch shall be overridden upon activation of a subsequent alarm.
b. Supervisory/Trouble Silencing Switch: Provide supervisory and trouble silencing switch that shall silence the audible trouble and supervisory signal, but not extinguish the visual indicator. This switch shall be overridden upon activation of a subsequent alarm, supervision, or trouble condition. Audible trouble indication must resound automatically every 24 hours after the silencing feature has been operated.
2.14.4 Non-Interfering
Power and supervise each circuit such that a signal from one device does not prevent the receipt of signals from any other device. Circuits shall be manually reset by switch from the FACP after the initiating device or devices have been restored to normal.
2.14.5 Voice Notification System
The Voice Notification System shall comply with the requirements of NFPA 72 for Emergency Voice/Alarm Communications System requirements ISO 7240-16, IEC 60268-16, except as specified herein. The system shall be a two-way multi-channel voice notification system incorporating user selectability of a minimum 8 distinct sounds for tone signaling, and the incorporation of a voice module for delivery of prerecorded messages. Textual audible appliances shall produce a slow whoop tone for three cycles followed by a voice message that is repeated until the control panel is reset or silenced. Automatic messages shall be broadcast through speakers on appropriate floors, but not in stairs or elevator cabs. The visual strobes and audible message shall automatically be broadcast on the floor of fire alarm origin, the floor immediately above the floor of fire alarm origin, and the floor immediately below the floor of fire alarm origin. A live voice message shall
*REVISED
16722-13 override the automatic audible output through use of a microphone input at the control panel.
a. When using the microphone, live messages shall be broadcast through speakers in stairs, in elevator cabs, and throughout a selected floor or floors. The system shall be capable of operating all speakers at the same time. The Voice Notification System shall support Public Address (PA) paging for the facility. The digitalized voice message shall consist of a non-volatile (EPROM) microprocessor based input to the amplifiers. The microprocessor shall actively interrogate circuitry, field wiring, and digital coding necessary for the immediate and accurate rebroadcasting of the stored voice data into the appropriate amplifier input. Loss of operating power, supervisory power, or any other malfunction that could render the digitalized voice module inoperative shall automatically cause the slow whoop tone to take over all functions assigned to the failed unit.
b. The Mass Notification functions shall override the manual or automatic fire alarm notification or Public Address (PA) functions. The system shall have the capability of utilizing a remote microphone station with redundant controls of the notification system control panel. Class "A" Notification Appliance Circuits (NAC) shall be provided for the activation of strobe appliances. The activation of the NAC Circuits shall follow the operation of the speaker NAC circuits. Audio output shall be selectable for line level (600 ohms), 25, 70.7 or 100 volt output. The audio amplifier outputs shall be not greater than 100 watts RMS output. The strobe NAC Circuits shall provide at least 2 amps of 24 VDC power to operate strobes and have the ability to synchronize all strobes.
A hand held microphone shall be provided and, upon activation, shall take priority over any tone signal, recorded message or PA microphone operation in progress, while maintaining the strobe NAC Circuits activation.
All outputs and operational modules shall be fully supervised with on-board diagnostics and trouble reporting circuits. Form "C" contacts shall be provided for system alarm and trouble conditions. Circuits shall be provided for operation of auxiliary appliance during trouble conditions. During a Mass Notification event the panel shall not generate nor cause any trouble alarms to be generated with the Fire Alarm system. The Control Panel for the Voice Notification System shall be independent of the Fire alarm system and shall be capable of autonomous operation.
The system shall be housed in a separate panel that contains an independent power supply and batteries, as specified above. Mass Notification functions shall take precedence over all other function performed by the Voice Notification System.
Messages shall utilize a male/female voice and shall be similar to the following:
1) 1000 Hz tones (1 sec on, 1/2 second off, 1 second on, 1/2 second off, 1 second on)
"May I have your attention, please. May I have your attention, please. A fire has been reported that may affect your floor. Please walk to the nearest exit and evacuate the building." (Provide a 2 second pause.) "May I have your attention, please, (repeat the message)."
2) 1000 Hz tones (1 sec on, 1/2 second off, 1 second on, 1/2 second off, 1
"May I have your attention please. May I have your attention please. A fire emergency has been reported in the building. Please leave the building by the nearest exit or exit stairway. Do not use the elevators."
(Provide a 2 second pause.) "May I have your attention please, (repeat the message)."
3) 1000 Hz tones (1 sec on, 1/2 second off, 1 second on, 1/2 second off, 1
"Alert! This is the Mass Notification System.
There is an emergency situation.
DO NOT evacuate the building! Stay in your current location!
Stay tuned for further instructions."
(repeat message 2 times)
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4) 1000 Hz tones (1 sec on, 1/2 second off, 1 second on, 1/2 second off, 1 second on)
"Alert, This is the Mass Notification System.
There is a chemical gas emergency.
Turn off all HVAC equipment, seal all doors and windows with wet fabric, Don protective gear.
DO NOT evacuate the building, Act now!
Listen to the MNS system for further instructions".
(repeat message 2 times)
5) 1000 Hz tones (1 sec on, 1/2 second off, 1 second on, 1/2 second off, 1
"Alert, this is the Mass Notification System.
There is a explosive blast risk along the South wall of your building.
Quietly move towards the north side of the building, and exit from the north stairs.
Move away from the building heading north to the north parking area.
(repeat message 2 times).
a. The Remote Microphone station shall incorporate a Push-To-Talk (PTT) microphone, redundant controls and system status indicators of/for the system.
The unit shall incorporate microphone override of any…
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| 09-0096 E-1.pdf | ||
| 09-0096 E-2.pdf | ||
| 09-0096 TOC 1 | — | |
| Amendment 3.doc | DOC document | |
| 09-0096 E-3.pdf | ||
| 09-0096 09688 CARPETING GLUE-DOWN.pdf | ||
| 09-0096 06400 1.pdf | ||
| 09-0096 09650 RESILIENT FLOORING.pdf | ||
| 09-0096 07401 PREFORMED METAL WALL PANELS(for IDIQ metal siding).pdf | ||
| 09-0096 TOC.pdf | ||
| Amendment 2 | — | |
| Amendment 2.doc | DOC document | |
| 09-0096 C-1.pdf | ||
| 09-0096 A-3.pdf | ||
| 09-0096 A-1.pdf | ||
| 09-0096 A-2.pdf | ||
| Solicitaion FA4528-11-R-0006.doc | DOC document | |
| 09-0096 S2.pdf | ||
| 09-0096 A-3.pdf | ||
| Amendment 1.doc | DOC document | |
| 09-0096 Drawings.pdf | ||
| 09-0096 | — | |
| Bid Schedule Bldg 973.pdf | ||
| Solicitaion FA4528-11-R-0006.doc | DOC document | |
| Drawings.pdf | ||
| Solicitaion FA4528-11-R-0006.doc | DOC document | |
| Drawings.pdf | ||
| Attachment 4 Technical Acceptance Criteria.doc | DOC document | |
| ATTACHMENT 5 Responsibility Questionnaire.doc | DOC document | |
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