Atch_2-_Salient_Characteristics_Atch_B.pdf
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- Attached to
- Dorm Security Cameras (B505 and B506) Federal contract opportunity
- Solicitation number
- FA252119QA005
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Atch 2- Salient Characteristics Atch B
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Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| Attch_2-_Site_Visit_Attendance_Roster.pdf | ||
| Attch_1-_Proposed_Camera_Loactions.pdf | ||
| Dorm_Security_Cameras_Q&As_(19QA005).pdf | ||
| Atch_6-_Q_and_A_Template.pdf | ||
| Atch_3-_Dorm_505_As-builts.pdf | ||
| Atch_7-_SCA_WD_15-4555.pdf | ||
| Atch_4-_Dorm_506_As-builts.pdf | ||
| Combined_S_S.pdf | ||
| Atch_5-_Badge_Request.pdf | ||
| Atch_1-_PWS.pdf |
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Attachment B
0.0 GLOSSARY
• ANSI: American National Standards Institute
• APC: A 350Wh Auxiliary Power Capsule manufactured by BTU Research.
• Basket Cable Tray: A fabricated structure consisting of wire mesh bottom and side rails.
• BICSI: Building Industry Consulting Service International
• DIN Rail: A metal rail of a standard type widely used for mounting circuit breakers and industrial control equipment inside equipment racks.
• EIA: Electronic Industries Alliance
• EMT: Electric Metallic Tubing
• Firewall: An assembly consisting of various building materials that can resist the exposure of a standardized fire exposure for two hours.
• Fire Stopping: The sealing of any openings to prevent fire (including smoke and heat) from passing through multiple building compartments. J. H.265: High Efficiency Video Coding (HEVC).
• J-Hook: A solid steel hook in the shape of the letter J that is specially manufactured to support low voltage cabling.
• Low Voltage: As defined in NFPA 70 for circuits and equipment operating at less than 50 V or for remote-control and signaling power-limited circuits.
• Monitoring Station: A PC with software that is configured for specific IP video surveillance system functions. N. NEC: National Electric Code
• NEMA: National Electrical Manufacturers Association
• NFPA: National Fire Protection Association
• Open Cabling: Passing telecommunications cabling through open space (e.g., between the studs of a wall cavity).
• NVR: Network Video Recorder
• RCDD: Registered Communications Distribution Designer.
• Smoke Barrier: An assembly consisting of various building materials that can resist the exposure of a standardized fire exposure for one hour.
• SwitchPak: A Brownout Buddy and a 4 port PoE switch, manufactured by
BTU Research.
• TIA: Telecommunication Industries Association
• UPS: Uninterruptible Power Supply
• UTP: Unshielded Twisted Pair
1.0 GROUNDING
1.1 PARAMETERS
• The main grounding bar (MGB) is a dedicated extension of the building grounding electrode system. The MGB should be located near the interconnect service entrance and the electric service entrance.
• The MGB shall be located to minimize the length of the bonding conductor for from the MGB to the electric service ground.
• The MGB shall serve system equipment that is in the same room or space.
• The MGB shall be in an area that is accessible to PAFB personnel.
• A grounding busbar (GB) shall be provided in each area where system equipment is located. The GB is the grounding connection point for the system and equipment in each separate area.
• All metal conduits or raceways for cabling located within the same room or space as the MGB shall be bonded to the MGB.
• Where an electric power panel for is in the same room or space as the GB, the panel ground bus or panel enclosure shall be bonded to the
GB.
• The backbone (BB) is a conductor that originates at the MGB and extends throughout the building interconnecting all grounding busbars (GBs) with the MGB.
• Where there are multiple rooms or spaces with multiple BBs, the BBs shall be interconnected with a Grounding Equalizer (GE) conductor at the GBs.
• In structural steel frame buildings, where the steel framework is accessible within the room; the MGB and each GB shall be bonded to the structural steel frame using a minimum No. 6 AWG conductor.
1.2 GOUNDING BUSBARS
• Main Grounding Busbar (MGB).
Predrilled, copper, non-anodized BICSI/TIA/EIA/ANSI approved (4”W x 1/4”H x 12”L) ground bus bar with insulators and standoffs.
Chatsworth 40153-012 or approved equivalent.
• Grounding Busbar (GB)
Predrilled, copper, non-anodized BICSI/TIA/EIA/ANSI approved (2”W x 1/4”H x 12”L) ground bus bar with insulators and standoffs.
Chatsworth 13622-012 or approved equivalent.
• Equipment Cabinet Busbar
Predrilled, copper, non-anodized BICSI/TIA/EIA/ANSI approved (3/4”W x 13/16”H x 19”L) ground bus bar. Chatsworth 10610-019 or approved equivalent.
1.3 GROUNDING JOINTS AND SPLICES
• Grounding conductor splices shall be joined with mechanical crimped sleeve designed to have two crimps per side with proper indents markings. Crimp sleeves shall be copper alloy.
• Grounding conductor shall be terminated with a mechanical crimped type lug designed to have two crimps, spade section of have two bolts and made of copper alloy.
1.4 BONDING CONDUCTORS
• Cable Tray Bonding Conductor Green # 6 AWG insulated bonding jumper with appropriate lugs or manufactured braided copper grounding jumper equal to a # 6 AWG cable.
• Equipment Cabinet Bonding Conductor
Bonding Conductor shall be run neatly and uniformly to the equipment cabinet.
• Bonding Conductor (BC)
Green insulated copper bonding conductor, size as required by NEC.
The BC shall be, as a minimum the same as the BB.
• Bonding Backbone (BB)
Green insulated copper conductor, minimum as specified in the table below, size 6 AWG. The BB shall be sized at 2 kcmil per linear foot of conductor length up to a maximum size of 3/AWG Insulation shall meet fire ratings of its pathway.
1.5 GROUND RODS
• Copper clad steel, 19 mm (3/4-inch) diameter by 3000 mm (10 feet) long, conforming to UL 46.
• Quantity of rods shall be as required to obtain the specified ground resistance.
1.6 SPLICES AND TERMINATION COMPONENTS
• Components shall meet or exceed UL 467 and be clearly marked with the manufacturer, catalog number, and permitted conductor size(s).
1.7 GROUND CONNECTIONS
• Below Grade:
Exothermic-welded type connectors.
• Above Grade:
Bonding Jumpers: compression type connectors, using zinc-plated fasteners and external tooth lock washers.
Ground Busbar: Two-hole compression type lugs using tin-plated copper or copper alloy bolts and nuts.
Rack and Cabinet Ground Bars: one-hole compression-type lugs using zinc plated or copper alloy fasteners.
1.8 GROUNDING AND BONDING INSTALLATION
• Bond and ground all conduits, cable trays, enclosures, cables, protectors and other conductive infrastructure as per the NEC and TIA 607 and other references to the main building ground.
• Clean surfaces nonconductive coatings (such as paint, lacquer, and enamel) on equipment to be grounded shall be removed from threads and other contacts surfaces to ensure good electrical continuity or be connected by means of fittings designed to make such removal unnecessary. Install all parts as specified by the manufacturer. Do not daisy chain bonding conductors from device to devices.
• Install all cable tray to meet the grounding and bonding requirements of NEC Articles 110.3, 250.96, 250.102, 392.3, 392.7 and all applicable codes.
• Connections to the MGB shall be made by exothermic welding or by listed two-hole compression lugs.
• All metal conduits or raceways for telecommunications cabling located within the same room or space as the MGB shall be bonded to the MGB.
1.9 INSTALLATION OF THE MGB IN ER
• Install the MGB at the bottom of the plywood backboard near the outside plant entrance conduits within the communications space.
• MGB shall be installed so that the BC is as short and straight as possible, with the proper bend radius. All bend radiuses shall be 90 degrees.
• The BC shall be Green insulated conductor installed exposed per Table 1 in
PART 2.
• Busbar shall be predrilled for future connections.
• Provide label (Do Not Disconnect) on connection to main electrical service ground.
Installation of GB in ER (if required)
• Install the GB at the bottom of plywood backboard near the copper riser terminations within the communications space.
• GB shall be installed so that the BB is as short and straight as possible, with the proper 90-degree bend radius.
• The BC shall be a green insulated conductor sized from Table 1 in Part 2.
• Busbar shall be predrilled for future connections.
Installation of the BB (if required)
• Installation mechanical type, copper alloy, with minimum of two bolts and separate sections for each conductor or copper compression type with two
(2) indents.
• Installation of Grounding Conductor Joints/Splices.
• Install manufactured insulating cover or heavy tape insulation over joints
/splices.
Grounding of Cable Tray/Basket Tray
• Install Green #6 AWG bonding jumper (12 inches max) with manufacturer approved devices at each cable tray joint or install manufacture braid copper grounding connectors to connect sections of cable tray will be permitted.
• Install Green #6 AWG grounding conductor with manufacturer approved devices from side of cable tray down to MGB or GB. Drill the side of the cable tray and install a ¼ / 20 appropriate length bolt, making sure that the bolt does not extend into wire management part of the tray.
Ground of Equipment Cabinet / Rack
• Install a ground busbar at the top of the equipment frame to ground cable tray, MGB or GB.
Testing the Grounding and Bonding System
• Visually inspect all grounds and bonds for loose connections.
• Test the potential difference between the MGB and the electrical ground and between the MGB and each GB.
• Connection at MGB from main electrical service ground shall be installed to meet NEC 250.94 and TIA/EIA requirements type. Ground resistance shall not exceed 2 ohms, unless approved by PAFB.
• Ohm resistance testing shall be done between the GB and all racks, cable tray, and electronic equipment to identify any high resistance connections.
• The difference in ground potential between the communications and electrical system at the workstation should not exceed 1.0 volt.
1.10 LIGHTNING, POWER SURGES, & GROUNDING
• Transient Voltage Surge Suppression: All cables and conductors extending beyond building façade, except fiber optic cables, which serve as communication, control, or signal lines shall be protected against Transient Voltage surges and have Transient Voltage Surge Suppression (TVSS) protection. The TVSS device shall be UL listed in accordance with Standard TIA 497B installed at each end and grounded according to manufactures specifications. Lighting and surge suppression shall be a multi-strike variety and include a fault indicator. Protection shall be furnished at the equipment and additional triple solid state surge protectors rated for the application on each wire line circuit shall be installed within 914.4 mm (3 ft) of the building cable entrance. Fuses shall not be used for surge protection. The inputs and outputs shall be tested in both normal mode and common mode to verify there is no interference.
• A 10-microsecond rise time by 1000 microsecond pulse width waveform with a peak voltage of 1500 volts and a peak current of 60 amperes.
• An 8-microsecond rise time by 20-microsecond pulse width waveform with a peak voltage of 1000 volts and a peak current of 500 amperes L/L and 2000 amps L/G.
• Maximum series current: 1.2 AMPS. Provide units manufactured by
BTU Research model # BTU-POE-PLUS.
• Operating Temperature and Humidity: -40 to 85 deg C (-40 to 185 deg F), 0 to 95 percent relative humidity.
• Provide grounding and surge suppression to stabilize the voltage under normal operating conditions. To ensure the operation of over current devices, such as fuses, circuit breakers, and relays, underground fault conditions.
End of Section
2.0 PLYWOOD BACKBOARD
• Utilize 4’x 8’x ¾” BC plywood – smooth finished side facing out. Cover the wall from floor to ceiling and 8ft wide. Must be secured appropriately to allow the mounting of ground bars, wire mesh tray and the equipment cabinet.
• Plywood must be fire-treated or painted with 2 coats of fire-retardant grey paint.
3.0 FIREPROOFING
3.1 SLEEVE INSTALLATION FOR ELECTRICAL PENETRATIONS
• Interior Penetrations of Non-Fire-Rated Walls and Floors: Seal annular space between sleeve and raceway or cable, using joint sealant appropriate for size, depth, and location of joint.
• Fire-Rated-Assembly Penetrations: Maintain indicated fire rating of walls, partitions, ceilings, and floors at raceway and cable penetrations. Install sleeves and seal raceway and cable penetration sleeves with firestop materials.
• Fire-Rated Assemblies: Install sleeves for penetrations of fire-rated floor and wall assemblies. Seal annular space between sleeve and raceway or cable, using joint sealant appropriate for size, depth, and location of joint.
• Extend sleeves installed in floors 2 inches (50 mm) above finished floor level.
• Size pipe sleeves to provide 1/4-inch (6.4-mm) annular clear space between sleeve and raceway or cable.
• Aboveground, Exterior-Wall Penetrations: Seal penetrations using sleeves and mechanical sleeve seals. Select sleeve size to allow for 1-inch (25-mm) annular clear space between pipe and sleeve for installing mechanical sleeve seals.
• Underground, Exterior-Wall Penetrations: Install cast-iron "wall pipes" for sleeves. Size sleeves to allow for 1-inch (25-mm) annular clear space between raceway or cable and sleeve for installing mechanical sleeve seals.
• Utilize manufactures label to identify each penetration and affix to wall as instructed.
3.2 SLEEVE-SEAL INSTALLATION
• Install to seal underground, exterior wall penetrations.
• Use type and number of sealing elements recommended by manufacturer for raceway or cable material and size. Position raceway or cable in center of sleeve. Assemble mechanical sleeve seals and install in annular space between raceway or cable and sleeve. Tighten bolts against pressure plates that cause sealing elements to expand and make watertight seal.
3.3 FIRESTOPPING
• Apply firestopping to electrical penetrations of fire-rated floor and wall assemblies to restore original fire-resistance rating of assembly per NFPA.
4.0 CONDUIT
4.1 ELECTRICAL METALLIC TUBING
• Electrical metallic tubing (EMT) will be utilized as the raceway for cabling to all exterior cameras and wireless access points (WAP’s).
• EMT will be schedule 80, fittings will be compression style to eliminate the entrance of moisture & dust.
• Utilize ½” for 1 Cat 6 cable, ¾” for 2 Cat 6 cables and 1” for 3 or 4 Cat 6 cables.
• EMT must be grounded to structural or electrical ground.
• Backboxes will be weatherproof surface mount metallic 4” double gang box for cameras and WAP’s.
5.0 COMPONENT ENCLOSURES
5.1 EQUIPMENT CABINETS
• All vertical equipment cabinets shall include a forced air-cooling system to be provided.
• The forced air blowers shall be installed in the vented side of each cabinet and shall not reduce usable rack space.
• The forced air fan shall consist of one fan rated at 120 CFM per rack bay and noise level shall not exceed 31 decibels.
• Vertical equipment racks are to be provided with locking doors and vented top panels.
5.2 POLE MOUNTED ENCLOSURES (if required)
• Enclosures must be NEMA 3R/RX with an integrated fan and vent to provide industry-leading protection for components or complex mounting configurations in harsh environments. Three-point latching with locking hasps and a foam-in-place gasket combine convenience with security.
• Application:
a. Enclosures ideal for indoor or outdoor applications that require corrosion protection, convenient access, and padlocking security.
• Specifications:
a. Rugged UV resistant fiberglass reinforced polyester (FRP) construction with UL94-5V flame rating
b. Seamless foam-in-place gasket
c. Stainless steel continuous hinge pin and stainless-steel quick release latches with padlock hasps.
d. Collar studs provided for mounting optional panels.
e. Bonding provision on internal backplate; grounding stud on body.
f. Accessories: Aluminum equipment mounting plate, 120V quad outlet, thermostat controlled cooling fan (turns on when internal temp reaches 100*F and off at 79*F), vented with rain shields and removable aluminum filters
g. Size: 14” (W) x 16” (H) x 8” (D) Minimum
h. Altelix model # NF141208VFA1 (or approved equivalent)
i. Altelix model # DRS-NF12 DIN Rail Kit (or approved equivalent)
6.0 HORIZONTAL INFRASTRUCTURE CABLING SUPPORT SYSTEM
6.1 WIRE MESH TRAY
• Utilized flexible wire mesh tray suitable for the environment and sized accordingly to the maximum number of horizontal cables.
• Utilize manufactures appropriate accessories to complete a proper and professional installation. These items may include; in-line connector bolts, connection adapters, intersection adapters, waterfalls, etc.
• Mount per manufactures recommended methods, however DO NOT utilize ceiling grid or support wires to attach this product.
6.2 J-Hooks
• J-Hooks will be installed at a maximum of every 5 foot on center to support the horizontal cables appropriately in open cabling areas.
• Utilize manufactures retaining clips on all j-hooks, not zip ties.
• Utilize pre-fabricated Velcro straps to bundle cables accordingly.
• Utilize a cable pulling kit to assist and minimize pulling tension.
• Mount per manufactures recommended methods, however DO NOT utilize ceiling grid or support wires to attach this product.
6.3 Cable Dressing
• Utilize pre-fabricated Velcro straps to dress all horizontal cables in the wire mesh tray from the ceiling into the top of the cabinet. These cables will be dressed in a neat freeflow method, whereas each cable is laced individually as to not twist or wrap cables around each other.
• Utilize pre-fabricated Velcro straps to dress all horizontal cables in the cabinet.
7.0 LABELING
7.1 CABLE LABELS
• Utilize a professional label maker (DYMO or similar) or laser printer to create the labels. Label both ends of each cable within 4 “of termination point.
• Utilize flexible vinyl ¾” labels for all cables.
• Each cable will be labeled at the patch panel side as to the device and location.
Examples would be; Dome-2-Ext-08 or Dome-1-Int-18. The first one refers to the dome camera located on the 2nd floor, is exterior and it’s the 8th camera (refer to as-built diagram). The second one refers to the dome camera located on the 1st floor, interior and it’s the 18th camera (refer to as-built diagram).
• Each cable will be labeled at the camera side as the comm room number, patch panel and port number. Examples would be; 304-1-10 or 506-2-1. The first refers to comm room 304, 1st patch panel, port 10. The second one refers comm room 506, 2nd patch panel, port 1.
• Each camera will be labeled the same as the cable camera side label.
7.2 PATCH PANEL AND CAMERA LABELS
• Utilize a professional label maker (DYMO or similar) or laser printer to create all labels.
• Utilize permanent polyester labels for patch panels and cameras.
• Each port will be labeled as to the device and location which is terminated in that port. Examples would be; Dome-2-Ext-08 or WAP-1-Int-1. The first refers to the camera located in building 505, on the 2nd floor, is exterior and it’s the 8th camera (refer to as-built diagram). The second refers to a wireless access point (WAP) located in building 506, 1st floor, exterior and it’s the 1st WAP (refer to as- built diagram).
8.0 PRODUCTS
8.1 MANUFACTURES
8.1.1 Cameras (qty 68 + optional)
a. Avigilon – Outdoor Dome 5.0L-H4A-DO1-IR-B (qty 48)
b. Avigilon – Indoor Dome 5.0L-H4A-D1-IR-B (qty 20)
c. 128Gb Micro SD Card – SanDisk Extreme C10, V30, U3, A2 (qty 68)
d. Or approved equivalent
8.1.2 NVR / VMS Server (qty 2)
a. Avigilon - HD-NVR4-STD 48TB RAID 6
b. Or approved equivalent
8.1.3 Equipment Cabinets (qty 2)
a. Chatsworth CUBE-iT – 12419-X48
b. Chatsworth Fan Kit – 40975-001
c. Chatsworth Cable Port Brush Kit – 25190-000
d. Chatsworth Mounting Rail Kit – 12787-548
e. Chatsworth 11U Vertical Cable Manager – 4097-711
f. Chatsworth 1U Rack-Mount Shelf – 40974-719
g. Chatsworth Ground Bus Bar – 10610-019
h. Or approved equivalent
8.1.4 Headend Cabinet Equipment
a. BTU Research SwitchPak’s – BTU-HIPOE/85Wh-SW4P (qty 18)
b. BTU Research Auxiliary Power Capsules – BTU-AP-350-Wh (qty 18)
c. BTU Research Brownout Buddy – BTU-UPS-HIPOE 60W/85Wh-G (qty 2)
d. BTU Research Transient Voltage Surge Suppression (TVSS) - BTU-POE-
PLUS (qty 50+)
e. Allied Telesis 16 Port L2 Switch – GS910/16 (qty 2)
f. Allied Telesis Rack Mount Kit – RKMT-J08 (qty 2)
g. Ortronics Patch Panels – OR-PHA66U48 (qty 2)
h. Ortronics Cable Management Panel – OR-60400131 (qty 8)
i. Ortronics Patch Cables – OR-MC6xx-04 (qty 138)
j. Ortronics Cat6 Module – OR-KT2J6-44 (qty 1)
k. Ortronics Faceplate – OR-KSFP1-88 (qty 1)
l. Tripp Lite Rack Mount Power Strips – IBAR12/20Ultra 12 (qty 4)
m. Automation Direct DIN Rail – DN-R35HS1 (qty 1)
n. APC Rack-Mount UPS – SMX3KRMLVNCUS (qty 2)
THESE ITEMS ARE TO BE UTILIZED IF FIBER IS UTILIZED FOR
THE BACKBONE
o. Corning Optical Classic Closet Connector Housing - CLSSC – 01U
p. Corning Optical Connector Panel– CCH-CP06-E4
q. Perle DIN Rail Media Convertor – SR-1110-SFP-XT with a Dual LC SFP
Fiber Module
r. Or approved equivalent
8.1.5 Horizontal Infrastructure Cabling
a. Superior Essex Cat 6 CMR UTP – 77-2xx-6A
8.1.6 Horizontal Infrastructure Cabling Support System
a. nVent Caddy Cat HP J-Hook - DB12SFCAT32HP /
DB18SFCAT32HP / DB24SFCAT32HP
b. nVent Caddy Cat HP Cable Puller Kit - CATHPPLR
c. Snake Tray Series 201 / 501
8.1.7 Backbone Cabling (if utilized)
a. Corning Optical 4 Strand Fiber 50u (OM3) - 004T6F-31380-29
b. Corning Optical UniCam LC Fiber Connector - 95-050-99-X
c. Or approved equivalent
8.1.8 Wireless Access Points (if utilized)
a. Siklu EtherHaul 1200 ODU – EH-1200FX-ODU-L-EXT (qty 2)
b. EtherHaul 1 ft Antenna – EH-ANT-1FT-B (qty 2)
c. EtherHaul Small Mounting Kit - AX-MK-1FT-B (qty2)
9.0 MONITORING STATION
9.1 WORK STATION
9.1.1 Dell XPS 8930 Tower
a. Intel 8th Generation Intel Core i7-8700K Processor (6-Core, 12M Cache, up to 4.7GHz)
b. 32GB 4x8GB DDR4 2666MHz RDIMM ECC
c. 1TB M.2 PCIe NVMe SSD (Boot) + 1TB 7200RPM 3.5” SATA HHD
(Storage)
d. NVIDIA GeForce GTX 1080 8GB GDDR5X
e. 16x DVD/RW Drive
f. Thunderbolt 3 PCIe Network and IO Card
g. Killer 1535 802.11ac 2x2 WiFi and Bluetooth 4.2
h. Windows 10 Pro 64-bit English
i. Or approved equivalent
9.2 MONITORS
9.2.1 ASUS 34” Monitor
a) ASUS ProArt Professional Curved Monitor – PA34V (qty 2)
b) Or approved equivalent
9.3 UPS
9.3.1 APC Pro 1500
a. APC UPS Pro 1500 – BR1500G
| 0.0 GLOSSARY |
| 1.0 GROUNDING |
| 1.1 PARAMETERS |
| 1.2 GOUNDING BUSBARS |
| • Main Grounding Busbar (MGB). |
| • Grounding Busbar (GB) |
| • Equipment Cabinet Busbar |
| 1.3 GROUNDING JOINTS AND SPLICES |
| 1.4 BONDING CONDUCTORS |
| • Cable Tray Bonding Conductor |
| • Equipment Cabinet Bonding Conductor |
| • Bonding Conductor (BC) |
| • Bonding Backbone (BB) |
| 1.5 GROUND RODS |
| 1.6 SPLICES AND TERMINATION COMPONENTS |
| 1.7 GROUND CONNECTIONS |
| • Below Grade: |
| • Above Grade: |
| 1.8 GROUNDING AND BONDING INSTALLATION |
| 1.9 INSTALLATION OF THE MGB IN ER |
| Grounding of Cable Tray/Basket Tray |
| Ground of Equipment Cabinet / Rack |
| Testing the Grounding and Bonding System |
| 1.10 LIGHTNING, POWER SURGES, & GROUNDING |
| End of Section |
| 3.0 FIREPROOFING |
| 3.1 SLEEVE INSTALLATION FOR ELECTRICAL PENETRATIONS |
| 3.2 SLEEVE-SEAL INSTALLATION |
| 3.3 FIRESTOPPING |
| End of Section |
| End of Section |
| 5.2 POLE MOUNTED ENCLOSURES (if required) |
| • Application: |
| • Specifications: |
| End of Section |
| 6.2 J-Hooks |
| 6.3 Cable Dressing |
| End of Section |
| 7.2 PATCH PANEL AND CAMERA LABELS |
| End of Section |
| 8.1.2 NVR / VMS Server (qty 2) |
| 8.1.3 Equipment Cabinets (qty 2) |
| 8.1.4 Headend Cabinet Equipment |
| 8.1.5 Horizontal Infrastructure Cabling |
| 8.1.6 Horizontal Infrastructure Cabling Support System |
| 8.1.7 Backbone Cabling (if utilized) |
| 8.1.8 Wireless Access Points (if utilized) |
| End of Section |
| 9.2 MONITORS |
| 9.3 UPS |
| 9.3.1 APC Pro 1500 |
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