N6449821Q5068.pdf
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- Modular Facility (2 Story) Secure Laboratory Space Federal contract opportunity
- Solicitation number
- N6449821Q5068
About this file
This is a solicitation for a modular facility project requiring the furnishing and installation of a 2-story structure to serve as a secure laboratory space. Key requirements include a modular design manufactured offsite for assembly at the Naval Surface Warfare Center in Philadelphia, with a footprint up to 22 feet wide and 51 feet long. The facility must provide over 1,000 square feet of secure workspace on each floor. Submissions are due by July 2, 2021 with award anticipated by September 30, 2021. The work includes delivery, assembly, installation of all necessary mechanical, electrical and security systems. The Naval Sea Systems Command is the contracting agency. Site visits will be held on June 17 and quotations shall be submitted electronically to the identified contracting specialist.
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Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| N6449821Q5068 Updated Thru Amendment 0002.pdf | ||
| Amendment 0002.pdf | ||
| PPQ (Attachment 9).doc | DOC document | |
| Amendment 0001.pdf | ||
| CDRL A002 - Interface Connection Drawings.pdf | ||
| CDRL A001 - Configuration Drawings.pdf | ||
| CDRL A006 - Activity Hazard Analysis.pdf | ||
| CDRL A007 - Accident Prevention Plan.pdf | ||
| NSWC Bldg 87 Slab and Soils Report (Attachment 8).pdf | ||
| CDRL A003 - Data Sheet and Photographic Documentation.pdf | ||
| CDRL A004 - As-Built Drawings.pdf | ||
| CDRL A005 - Crane-Rigging Plan.pdf | ||
| PPQ (Attachment 9).doc | DOC document |
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SEE ADDENDUM
(No Collect Calls)
N6449821Q5068 02-Jun-2021
b. TELEPHONE NUMBER
445-444-5320
8. OFFER DUE DATE/LOCAL TIME
10:00 AM 02 Jul 2021
5. SOLICITATION NUMBER 6. SOLICITATION ISSUE DATE
AUTHORIZED FOR LOCAL REPRODUCTION
PREVIOUS EDITION IS NOT USABLE
STANDARD FORM 1449 (REV. 2/2012)
Prescribed by GSA – FAR (48 CFR) 53.212
(TYPE OR PRINT)
(SIGNATURE OF CONTRACTING OFFICER)
ADDENDA ARE
26. TOTAL AWARD AMOUNT (For Gov t. Use Only )
23.
CODE 10. THIS ACQUISITION IS
SUCH ADDRESS IN OFFER
17b. CHECK IF REMITTANCE IS DIFFERENT AND PUT
BELOW IS CHECKED
TELEPHONE NO.
N644989. ISSUED BY
18b. SUBMIT INVOICES TO ADDRESS SHOWN IN BLOCK 18a. UNLESS BLOCK
7. FOR SOLICITATION
INFORMATION CALL:
a. NAME
DILLON M LUCAS
2. CONTRACT NO. 3. AWARD/EFFECTIVE DATE 4. ORDER NUMBER
(TYPE OR PRINT)
30b. NAME AND TITLE OF SIGNER 30c. DATE SIGNED 31b. NAME OF CONTRACTING OFFICER
30a. SIGNATURE OF OFFEROR/CONTRACTOR 31a.UNITED STATES OF AMERICA
27a. SOLICITATION INCORPORATES BY REFERENCE FAR 52.212-1. 52.212-4. FAR 52.212-3. 52.212-5 ARE ATTACHED.
25. ACCOUNTING AND APPROPRIATION DATA
1. REQUISITION NUMBER
20.
ADDITIONAL SHEETS SUBJECT TO THE TERMS AND CONDITIONS SPECIFIED.
OFFEROR TO COMPLETE BLOCKS 12, 17, 23, 24, AND 30
SOLICITATION/CONTRACT/ORDER FOR COMMERCIAL ITEMS
ARE NOT ATTACHED
27b. CONTRACT/PURCHASE ORDER INCORPORATES BY REFERENCE FAR 52.212-4. FAR 52.212-5 IS ATTACHED. ADDENDA ARE ARE NOT ATTACHED
(BLOCK 5), INCLUDING ANY ADDITIONS OR CHANGES WHICH ARE
SET FORTH HEREIN, IS ACCEPTED AS TO ITEMS:
. YOUR OFFER ON SOLICITATION
28. CONTRACTOR IS REQUIRED TO SIGN THIS DOCUMENT AND RETURN
% FOR:SET ASIDE:UNRESTRICTED OR X
SMALL BUSINESSX
17a.CONTRACTOR/ CODE FACILITY
OFFEROR CODE
NAVAL SURFACE WARFARE CENTER PHILA
CODE 0223, DILLON LUCAS
215-897-2043, DILLON.M.LUCAS@NAVY.MIL
5001 SOUTH BROAD STREET, BUILDING 4
PHILADELPHIA PA 19112
18a. PAYMENT WILL BE MADE BY CODE
RATED ORDER UNDER
DPAS (15 CFR 700)
13a. THIS CONTRACT IS A
13b. RATING
CODE15. DELIVER TO CODE 16. ADMINISTERED BY
SEE SCHEDULE
12. DISCOUNT TERMS11. DELIVERY FOR FOB DESTINA-
TION UNLESS BLOCK IS
MARKED
SEE SCHEDULE
14. METHOD OF SOLICITATION
RFQ IFB RFPX
FAX:
TEL: 215-897-2043
SERVICE-DISABLED
VETERAN-OWNED
SMALL BUSINESS
8(A)
HUBZONE SMALL
BUSINESS
SIZE STANDARD:
NAICS:
321992
X
OFFER DATED
29. AWARD OF CONTRACT: REF.
DELIVER ALL ITEMS SET FORTH OR OTHERWISE IDENTIFIED ABOVE AND ON ANY
COPIES TO ISSUING OFFICE. CONTRACTOR AGREES TO FURNISH AND
EMAIL:
TEL:
31c. DATE SIGNED
SEE SCHEDULE
SCHEDULE OF SUPPLIES/ SERVICESITEM NO. QUANTITY UNIT UNIT PRICE AMOUNT
24.22.21.19.
WOMEN-OWNED SMALL BUSINESS (WOSB)
ELIGIBLE UNDER THE WOMEN-OWNED
SMALL BUSINESS PROGRAM
EDWOSB
32g. E-MAIL OF AUTHORIZED GOVERNMENT REPRESENTATIVE
SOLICITATION/CONTRACT/ORDER FOR COMMERCIAL ITEMS
(CONTINUED)
PAGE 2 OF83
ACCEPTED, AND CONFORMS TO THE CONTRACT, EXCEPT AS NOTED: ______________________________________________________
32a. QUANTITY IN COLUMN 21 HAS BEEN
RECEIVED INSPECTED
32b. SIGNATURE OF AUTHORIZED GOVERNMENT
REPRESENTATIVE
32c. DATE 32d. PRINTED NAME AND TITLE OF AUTHORIZED GOVERNMENT
REPRESENTATIVE
32e. MAILING ADDRESS OF AUTHORIZED GOVERNMENT REPRESENTATIVE 32f . TELEPHONE NUMBER OF AUTHORIZED GOVERNMENT REPRESENTATIVE
37. CHECK NUMBER
FINALPARTIALCOMPLETE
36. PAYMENT35. AMOUNT VERIFIED
CORRECT FOR
34. VOUCHER NUMBER
FINAL
33. SHIP NUMBER
PARTIAL
38. S/R ACCOUNT NUMBER 39. S/R VOUCHER NUMBER 40. PAID BY
41a. I CERTIFY THIS ACCOUNT IS CORRECT AND PROPER FOR PAYMENT
41b. SIGNATURE AND TITLE OF CERTIFYING OFFICER 41c. DATE
42a. RECEIVED BY (Print)
42b. RECEIVED AT (Location)
42c. DATE REC'D (YY/MM/DD) 42d. TOTAL CONTAINERS
STANDARD FORM 1449 (REV. 2/2012) BACK
Prescribed by GSA – FAR (48 CFR) 53.212
AUTHORIZED FOR LOCAL REPRODUCTION
PREVIOUS EDITION IS NOT USABLE
SEE SCHEDULE
20.
SCHEDULE OF SUPPLIES/ SERVICES
21.
QUANTITY UNIT
22. 23.
UNIT PRICE
24.
AMOUNT
19.
ITEM NO.
Section B - Supplies or Services and Prices
ITEM NO SUPPLIES/SERVICES QUANTITY UNIT UNIT PRICE AMOUNT
0001 1 Lot Modular Facility
FFP
The contractor shall furnish and install all items IAW Section C, SOW. This CLIN includes all work associated with the furnishing, delivery, installation, set-up, and all else necessary to provide final delivery and acceptance of a 2 story, modular facility.
Payment for this CLIN will be made upon final delivery and acceptance, as defined in Section C.
FOB: Destination
PSC CD: 5410
NET AMT
ITEM NO SUPPLIES/SERVICES QUANTITY UNIT UNIT PRICE AMOUNT
0002 1 Lot Technical Data
FFP
Contract Data Requirements List (CDRL A001-A007)
FOB: Destination
NET AMT
NOTICE
This solicitation is issued IAW FAR Subpart 13.5 procedures. The Deputy for Small Business concurs with the set-aside decision.
Section C - Descriptions and Specifications
STATEMENT OF WORK
1 INTRODUCTION
1.1 Location and Background
1.1.1 The work is located in Building 87 at the Naval Surface Warfare Center, Philadelphia Division
(NSWCPD), at 5101 S. 11th St., Philadelphia PA, 19112.
1.1.2 A Secure Laboratory Area is required in Building 87 to support the Bakery for various R&D efforts. The most efficient way to address this need has been determined to be via use of pre-manufactured acoustic wall panels to assemble a structure on site. For the remainder of the document, this laboratory shall be referred to as the “Laboratory”.
1.1.3 Limitations posed by the foundational slab and/or its subsurface shall be taken into account to ensure that a two-story space is satisfactorily supported without any major improvements to the slab or its subsurface, which are considered out of scope of this project.
1.1.3.1 A separate document, “Slab and Soils Report, Building 87, Naval Surface Warfare Center, Philadelphia
Division” dated June 2020, has been provided to assist with this analysis.
1.2 Clarifying Figures and Drawings
1.2.1 All figures and drawings in this document should be considered notional and exist only to help clarify and convey the context of the various specifications. In the case of any disagreement between the figures/drawings and textual specification, the textual specification is the ultimate authority.
2 GENERAL SYSTEM DESCRIPTION
2.1 System Context
2.1.1 Current work requirements include secure computing and storage capabilities; along with secure communication capabilities with other partner organizations. The intent of the LABORATORY is to address these technical resources, storage, and communication capabilities.
2.2 System Required States and Modes
2.2.1 The LABORATORY will be operationally maintained by Naval Surface Warfare Center Philadelphia
Division (NSWCPD) Code 30 for Open Storage at the Collateral Secret level. Standard Operating
Procedures (SOPs) will be developed in conjunction with Physical Security (Code 105) and IA Security
(Code 104) before the LABORATORY is fully operational in order to ensure operational capabilities are properly maintained.
2.3 User Characteristics
2.3.1 Users will be required to access the LABORATORY through proximity/PIN access in addition to an electronic combination lock (Kaba Mas X-10 or equivalent that meets Federal Specification FF-L-2740).
These access requirements will require users to first have proper access as well as the need to know the combination to the combination lock and how to operate this lock. Users will also be required to know how to operate the local security controllers within the LABORATORY in order to prevent false/nuisance alarm events from occurring.
2.4 Operational Security (OPSEC)
2.4.1 The Contractor shall protect critical information associated with this contract to prevent unauthorized disclosure. The NSWC Philadelphia Division's (NSWCPD) Critical Information List, (CIL) will be provided on site, if warranted. Performance under this contract requires the Contractor to adhere to OPSEC requirements. The Contractor may not impose OPSEC requirements on its subcontractors unless NSWCPD approves the OPSEC requirements. During the period of this contract, the Contractor may be exposed to, use, or produce, NSWCPD Critical Information (CI) and/or observables and indicators which may lead to discovery of CI. NSWCPD's CI will not be distributed to unauthorized third parties, including foreign governments, or companies under Foreign Ownership, Control, or Influence (FOCI).
2.4.2 CUI correspondence transmitted internally on the Contractor's unclassified networks or information systems, and externally, shall be protected per NIST SP-800-171, Protecting Controlled Unclassified
Information (CUI) in Non-federal Systems and Organizations. Assembled large components/systems being transported to and from testing areas, other production or government facilities (whether or not on public roadways) shall be in an enclosed van trailer or covered flatbed trailer. Component/System outside storage, staging, and test areas shall be shielded/obscured from public view wherever physically possible.
2.4.3 NSWCPD's CI shall not be publicized in corporate wide newsletters, trade magazines, displays, intranet pages or public facing websites. Media requests related to this project shall be directed to the Procuring
Contracting Officer (PCO), and the Contracting Officer’s Representative (COR) who will forward the required to the NSWCPD Public Release Authority for review.
2.4.4 Any attempt by unauthorized third parties to solicit, obtain, photograph, or record, or; incidents of loss/compromise of government Classified or CI, Business Sensitive, Company Proprietary information related to this or other program must be immediately reported to the contractor's Facility Security Officer and Cognizant Security Office and/or the Naval Criminal Investigative Service (NCIS), and the NSWCPD
Security Division (Code 105.1). Questions concerning these requirements shall be directed to the PCO, and the COR who will forward the request to the NSWCPD Security Division (Code 105.1).
2.5 General Design Requirements
2.5.1 The overall design of the LABORATORY shall be in accordance with the following references:
• Appendix to Enclosure 3 of DoDM 5200.01 Volume 3 dated February 24, 2012;
• Americans with Disabilities Act; and
• Department of Defense (DoD) Facilities Criteria (FC) 1-300-09N (Navy and Marine Corps Design
Procedures); and
• DoD Unified Facilities Criteria (UFC) 1-200-01 (DoD Building Code – General Building
Requirements).
2.5.2 The LABORATORY, as indicated within this document, shall be in compliance with NFPA and UFC 3-
600-01/UFGS codes and standards.
2.5.3 The LABORATORY shall be modular in nature and manufactured offsite. Assembly and installation may occur at the project site in Bldg. 87.
2.5.4 All telecommunications and video surveillance services or equipment delivered for use with the
LABORATORY shall comply with all relevant sections of the Federal Acquisition Regulation as amended by Section 889(a)(1)(A) of the John S. McCain National Defense Authorization Act (NDAA) for Fiscal
Year 2019, as outlined in Federal Acquisition Circular (FAC) 2019-05.
3 DETAILED DESIGN REQUIREMENTS
3.1 Site Preparation Requirements
3.1.1 The LABORATORY will be located on the south side of the center bay of Building 87.
3.1.2 One 2’6” wide x 6’0” long x 1’0” deep (all nominal measurements), empty cable trench shall be filled even with the existing grade of the concrete slab with concrete, grout or flowable fill to eliminate any gaps in the physical security boundary that would be posed by the existing trench. The resulting floor shall be finished to a condition similar or better to the surrounding foundation floor.
3.1.3 The design and installation of the LABORATORY shall include any other preparation needed at the site to ensure the structural stability of the LABORATORY. All site preparation plans and designs shall be delivered to the Government in advance of delivery (see §5.2.1).
3.2 General Footprint Requirements
3.2.1 General requirements for the layout of the LABORATORY are diagrammed in Figure 1 and attached documentation.
3.2.2 The LABORATORY footprint shall be sized nominally as a rectangle with a maximum width of 22 ft. and a maximum length of 51 ft. Additional space outside this rectangle may be used for access, egress and vestibule features as described in the rest of this document.
3.2.3 The WEST wall shall be erected in line with the existing structure/wall to the NORTH, as depicted in
Figure 1. The existing passageway dimensions shall be maintained.
3.2.4 The NORTH wall shall be erected parallel to, but no further NORTH than, the existing structure/wall to the
EAST (the NORTH-side wall of P-107 immediately adjacent to the LABORATORY), as depicted in
Figure 1.
3.2.5 If needed, any stairs on the NORTH side of the LABORATORY shall not extend further to the NORTH than the adjacent set of stairs on the NORTH side of the P107 structure.
3.2.6 A clear pathway of at least 36 in. (three feet) shall be maintained around the entire perimeter of the
LABORATORY to accommodate emergency egress routes.
3.2.7 In any areas where the LABORATORY structure removes access to an egress path, such as along the
WEST side of the P107 structure, alterations shall be designed, approved by the Government, and implemented during installation to ensure sufficient egress clearance is maintained. All site alteration plans and designs shall be delivered to the Government in advance of delivery (see §5.2.1).
3.2.8 The design of the LABORATORY shall provide two means of egress from the secure working areas on both the first story and the second story. All means of egress components shall be in compliance with
NFPA 101.
3.2.9 The design of the LABORATORY shall provide a means for maintaining access to the cleanout ports in the proximity of the NORTH-WEST corner of the P107 structure. This access may be either outside or inside the secure perimeter of the LABORATORY.
3.2.10 The design of the LABORATORY shall incorporate a means of accessing the existing valve at 24 ft.
elevation along the SOUTH wall of Building 87. A design that retains the existing 12 ft. tall platform along the SOUTH wall of Building 87 will meet this specification. An alternate design for maintaining access to the valve that removes the platform shall be approved by the Government.
3.2.11 The LABORATORY, including any associated mechanical equipment shall not exceed a total installed height of 30 ft. from the existing concrete floor without written approval from the Contracting Officer.
Keepout Area
Platform Existing, Retained 12'-0" elevation
Up
U p
1' 4" Rise: 16' Run
U p
7-inch high concrete landing
Up
Up
U p
COVERED CABLE TRENCH
P107
4'-6"
6"
5'-0"5' -9
2' -8
R am p t o e le va ti o n U p La nd in g
Vestibule nd
S to ry E m er ge n cy E gr es s La nd in g nd s to ry e le va tio n
U p
Up
WEST wall in line with existing structure to the NORTH
N O
R
TH
w all in lin e w ith existin g stru ctu re to th e EA
ST
Maintain minimum 36" clearance for egress
Egress and Equipment Access Door Internal Ramp to Raised Floor grade
3'-0" minimum
Maintain access to existing door
Incorporate through-passage for egress
Incorporate second means of egress from both first and second floors
Area at least 1,000 sq.ft. per floor
Retain platform or incorporate alternate means of access to valve
Stairs n o t exten d in g an y fu rthe r N O
R
TH
th an th e existin g stairs to th e EA
STMinimum 4'x6' vestibule size
Maintain access to existing cleanout ports
0"
5'-5 11/16"
Figure 1: Footprint Requirements
3.3 Materials and Methods
3.3.1 The outer walls of the LABORATORY shall be manufactured in accordance with Appendix to Enclosure 3 of DoDM 5200.01 Volume 3, paragraph 1.b.(1), which states that the walls shall be of permanent materials;
i.e. plaster, gypsum wallboard, metal panels, hardboard, wood, plywood, or other materials offering resistance to, and evidence of unauthorized entry into the area. Walls shall be extended from the true floor to the true ceiling and attached with permanent materials, mesh or 18 gauge expanded steel screen.
3.3.2 As per Appendix to Enclosure 3 of DoDM 5200.01 Volume 3, paragraph 1.b.(2), the (true) ceilings of the secure area shall be made of plaster, gypsum, wallboard material, hardwood, or any other acceptable material.
3.3.3 As per Appendix to Enclosure 3 of DoDM 5200.01 Volume 3, paragraph 1.b.(5), utility openings such as ducts and vents shall be smaller than man-passable (96 square inches). An opening larger than 96 square inches (and over 6 inches in its smallest dimension) that enters or passes through an open storage area shall be hardened in accordance with Military Handbook MIL-HDBK-1013/1A.
3.3.4 Methods used to assemble and install the LABORATORY shall be such that a rating of Sound
Transmission Class (STC) 50 or better is maintained between the inside of the LABORATORY secure area and the surrounding external environment (including between the secure area and the Entrance Vestibule).
3.3.5 Notwithstanding the above requirements, partitions such as walls, floors, ceilings or similar, shall be manufactured of non-combustible materials or only the types and quantities of materials permitted by the
International Building Code (IBC) for Type IIB.
3.3.6 All materials and methods used to assemble and install the secure area envelope (walls and uppermost ceiling) of the LABORATORY shall be shown, either through field- or laboratory- testing to meet the indicated sound isolation ratings.
3.4 Internal Dimensions
3.4.1 The internal layout of the LABORATORY shall consist of an Entrance Vestibule and Secure Working
Area (SWA). The Entrance Vestibule shall consist of only a single story. The SWA shall consist of two stories joined together into a single secure boundary, connected via an internal staircase.
3.4.2 The design of the LABORATORY shall not include any windows or other openings in the security boundary except as specified in the rest of this document.
3.4.3 The LABORATORY shall provide a secure working area of at least 1,000 square feet on the main level
(first story) and at least an additional 1,000 square feet on the upper level (second story).
3.4.4 A raised floor or false floor shall be installed in order to minimize the amount of exposed conduit that would otherwise be required for cabling/connection runs throughout the LABORATORY. The distance between the true floor and raised floor shall be adequate enough to conceal any electrical wire, data wire, conduit, piping, and duct work, as required.
3.4.5 All wiring installed below the raised floor shall either be installed within conduit or be plenum rated wiring.
3.4.6 A dropped ceiling shall be installed in order to minimize the amount of exposed conduit that would otherwise be required for cabling/connection runs throughout the LABORATORY, and to enhance the acoustic response of the space and improve occupant comfort and well-being. The distance between the true (structural) ceiling and dropped ceiling shall be adequate enough to conceal any electrical wire, data wire, conduit, piping, and duct work in plenum or overhead space.
3.4.7 The internal ceiling height within the secure working area shall be at least 8 ft. from the raised, finished floor to the dropped, finished ceiling.
3.4.8 The LABORATORY shall provide a main Entrance Vestibule with internal size no smaller than 6 ft. x 6 ft.
3.4.9 A secondary exit from the first story shall be provided in accordance with applicable codes to provide an emergency egress option and alternate access for equipment loading. This doorway shall provide a means to roll equipment in and out of the SWA without going through the vestibule (see §3.6.14).
3.4.10 A secondary exit from the second story shall be provided in accordance with applicable codes to provide an emergency egress option.
3.4.11 Per OSHA and NFPA requirements, secondary exits on both the first and second stories shall provide a second exit path remote from the primary exit path.
3.4.12 A notional dimensional layout of the LABORATORY appears in Figure 2 below. Alternate layouts are permissible so long as they meet the written specifications in this document.
Platform Existing, Retained 12'-0" elevation
Valve at 24'
10'-0"
0"
R am p t o el ev at io n U p La nd in g
V es ti bu le
7f t.
.0 in
. X ft . 0
.0 in
U p
3'-10"
Clean Out Ø 6" typ.
50'-3"
2"
Up
ADA Chair Lift on stairs
Egress and Equipment Access Door Internal Ramp to Raised Floor grade
Area at least 1,000 sq.ft.
1st Floor
Raised Floor
R am p t o el ev at io n
U p
Figure 2: Envisioned Dimensional LABORATORY Layout with Accessibility Ramp
3.5 ADA Accessibility
3.5.1 All aspects of the LABORATORY shall be in accordance with the Americans with Disabilities Act (ADA), including access to and egress from the second floor.
3.5.2 A ramp shall be provided for entry at the main entrance to the LABORATORY. One possible design for this ramp is depicted in Figure 2.
3.5.3 Any stairs and/or ramps shall be equipped with handrails in accordance with applicable building codes.
3.5.4 Any access ramps shall have an incline no greater than 1:12 (rise:run).
3.5.5 Any internal stairway shall be accessible via a chair lift or similar attachment to the stairway compliant with the ADA.
3.6 Security Components
3.6.1 The LABORATORY shall be protected by a security and access control system, including an intelligent dual reader controller (Lenel p/n: LNL-2220 or equivalent) installed within the SWA. The intelligent dual reader controller shall be installed in a suitable enclosure along with a power supply (Lenel p/n: LNL-
AL400ULX or equivalent), 12V battery (Altronix p/n: BT-126 or equivalent), fuse block (Altronix p/n:
PD8UL or equivalent), and Input Control Module (ICM) (Lenel p/n: LNL-1100 or equivalent). The provided battery shall be capable of supplying a minimum of 8 hours of backup power to the system, with load calculations provided in system design documentation.
3.6.2 All security components shall be installed by Lenel OnGuard Core (Associate) certified personnel (or equivalent manufacturer-recognized certification), with installation to include programming, commissioning, and testing in coordination with NSWCPD security personnel.
3.6.3 All alarm points shall be terminated onto the ICM.
3.6.4 Unless otherwise specified, any door included in the LABORATORY design shall be a sound control door with STC-50 rating with non-removable hinges and approved security locks. For outswing doors, hinge-side protection shall be provided by making hinge pins non-removable (e.g., spot welding) or by using hinges with interlocking leaves that prevent removal, per Appendix to Enclosure 3 of DoDM 5200.01
Volume 3, paragraph 1.b.(3). Furthermore, any door shall be readily able to be opened from the inside in the event of an emergency with a “panic bar” type of locking mechanism and an outward swing.
3.6.5 Unless otherwise specified, any door included in the LABORATORY design shall have the ability to be opened with a key-override via a lock core installed in a seven (7)-pin Small Format Interchangeable Core
(SFIC) rim housing.
3.6.6 Unless otherwise specified, any balanced magnetic switch (BMS) included in the LABORATORY design shall meet the standards of UL 634 Level 2 (Magnasphere p/n: HSS-L2S-000 or equivalent) and tampers shall be wired to the ICM.
3.6.7 Unless otherwise specified, any proximity/PIN access reader included in the LABORATORY design shall be a BridgePoint p/n: 74-01-2003 and installed at a centerline height nominally 42 inches above the level of the finished floor. Any substitution for the BridgePoint reader shall be subject to approval by the
Contracting Officer to ensure compatibility with local spare parts program.
3.6.8 Unless otherwise specified, all security and access control system components, including any electronic latch release (ELR) or request to exit (REX) devices, shall be compatible with a 12-volt Lenel security system controller, to maintain compatibility with existing security systems installed at NSWCPD.
3.6.9 The outer entrance door to the Entrance Vestibule shall be a 36-inch Wide x 84-inch High outswing door with a mechanical/hydraulic automatic door closer installed at the top of the door.
3.6.10 The outer entrance door shall be equipped with a proximity/PIN access reader installed in conjunction with a BMS, ELR and REX. All security system components for the outer entrance door shall connect to the system controller specified in 3.6.1.
3.6.11 The inner entrance door shall be a 1-3/4 inch Thick 36 inch Wide x 84 inch High outswing door made of
16 gauge cold rolled steel meeting ASTM A366 specification with factory welded, two-piece 14 gauge steel split frame and a Grade 1, heavy duty, surface mounted door closer installed at the top of the door
(Lockmasters, Inc. Model 3070 or equivalent).
3.6.12 The inner entrance door shall provide a STC 50 acoustic rating and at least a 90 minute fire rating.
3.6.13 The inner entrance door shall be factory equipped with a built-in GSA-approved combination lock meeting
Federal Specification FF-L-2740 (LKM10K-P-X10 or equivalent), a BMS, and a proximity/PIN access reader installed in conjunction with a compatible ELR and REX for this door. All security system components for the inner entrance door shall connect to the system controller specified in 3.6.1.
–Note: The ELR installed will be dependent upon the type of construction used for the doors. It is assumed that if LKM locks as called out are installed that the REX and ELR will be integrated with each lock system. The installation of an LKM lock may also require the installation of a power transfer hinge
(Von Duprin p/n: EPT-10 or equivalent) in order to pass the REX and ELR signals to the respective door controller.
3.6.14 The secondary exit door from the first story shall be a 1-3/4 inch Thick x 72 inch Wide x 84 inch High outswing standard pair of doors made of 16 gauge cold rolled steel meeting ASTM A366 specification with factory welded, two-piece 14 gauge steel split frame, an attached astragal and a Grade 1, heavy duty, surface mounted door closer installed at the top of the active leaf (Lockmasters, Inc. Model 6070 or equivalent).
3.6.15 The secondary exit door from the first story shall provide a STC 50 acoustic rating and at least a 90 minute fire rating.
3.6.16 The secondary exit door from the second story shall be a 1-3/4 inch Thick x 36 inch Wide x 84 inch High outswing door made of 16 gauge cold rolled steel meeting ASTM A366 specification with factory welded, two-piece 14 gauge steel split frame and a Grade 1, heavy duty, surface mounted door closer installed at the top of the door (Lockmasters, Inc. Model 3070 or equivalent).
3.6.17 The secondary exit door from the second story shall provide a STC 50 acoustic rating and at least a 90 minute fire rating.
3.6.18 Both first story and second story secondary exit doors shall be secured from the inside with factory-equipped deadbolt emergency egress hardware such as Panic Bar Exit Only hardware (LKM10K-PE or equivalent, with hardware matching the rest of the doors), per Appendix to Enclosure 3 of DoDM 5200.01
Volume 3, paragraph 1.b.(3). Both doors shall also be equipped with a BMS. No door hardware shall be exposed on the exterior of these doors. Key-override functionality shall not be provided for these doors.
The BMS shall connect to the system controller specified in 3.6.1.
3.6.19 The Secure Work Area shall be protected by motion sensors (Bosh p/n: DS360 or equivalent) that can be armed/disarmed via a command keypad (Lenel p/n: LNL-CK or equivalent).
3.6.20 The command keypad shall be installed on an accessible wall no more than 3 feet from the main entrance and at a centerline height nominally 56 inches above the level of the finished floor.
3.6.21 The command keypad shall be connected to the system controller specified in 3.6.1.
3.6.22 A proximity/PIN access reader shall be installed adjacent to and wired directly to the reader input of the command keypad. The reader will be used for granting access to arm and disarm the keypad.
3.6.23 The installed LABORATORY security system, when alarmed, shall trigger the annunciation of an externally installed tamper proof alarm horn (Tristate p/n: RVL-36c/SRN-SC or equivalent) installed on the outside of the LABORATORY at an elevation of at least 9 ft.
3.6.24 All circuits between the intelligent controllers and security component sensors (BMS, REX, etc…) shall be supervisory through the use of an end of line resistor (Johnson Controls p/n: 6644 or equivalent) in order to detect open circuit line tampering.
3.6.25 Security cameras (Pelco p/n: IME839-1ERS or equivalent; equivalent shall be ONVIF T-profile compliant and at least 5 megapixel) shall be installed to supplement the monitoring of the entrances and exits of the
LABORATORY.
3.6.26 Security cameras shall collectively provide a clear view of all four doors, all external interfaces (network, voice, security) and all electrical power equipment or switches feeding the Laboratory from the provided transformer to the service panel. Cameras shall not enable the viewer to observe into the LABORATORY when doors are open nor observe external control pads or access control components that would enable them to identify access codes of the LABORATORY or any surrounding facilities.
3.6.27 Security cameras shall be powered by and connected via Cat5e or Cat6 cable to a dedicated Power over
Ethernet (POE) network switch in the non-secure network rack. A compatible POE network switch shall be provided and installed for this purpose.
3.6.28 Security cameras shall be viewable via Government Furnished Equipment (GFE) via designated Ethernet drops near display mount locations with specific placement subject to approval by the Government, fed from the POE network switch in the non-secure network rack.
3.6.29 Two Cat5e or Cat6 cables shall run from the POE network switch in the non-secure network rack to an RJ-
45 connection point in the security system external interface enclosure (see §4.2.5).
3.6.30 Post-delivery support shall be provided to NSWCPD Physical Security Department, Code 105, to assist in testing the final connection of security system components to, and ensuring proper operation and function with existing NSWCPD systems (see §5.4.2).
3.6.31 The combinations for all GSA-approved combination locks and keys for all keyed locks delivered with
LABORATORY shall be made available to and maintained by NSWCPD.
3.6.32 Access monitoring of the LABORATORY entrance will be provided by and installed internally by
NSWCPD personnel.
3.6.33 All wiring for security components should be located within the secure envelope of the LABORATORY.
Wiring that must run external to the secure envelope of the LABORATORY shall be installed in a manner as to provide resistance to, and evidence of, tampering.
3.7 Power and Communication Components
3.7.1 The LABORATORY shall have an internal electrical system installed in order to provide power for the
HVAC system, Security System, electrical outlets, lighting circuits, and fire detection system.
3.7.2 The electrical system shall be serviceable with access to independent circuit breakers contained within an electrical service panel located in the SWA.
3.7.3 Any electrical cable runs installed through a raised floor shall be armored cable.
3.7.4 An appropriately sized transformer shall be provided to supply power to the LABORATORY (75 kVA is suggested as a minimum). This transformer shall convert from a 480V 3PH Delta supply voltage.
Note: Hookups are the responsibility of the Contractor (see §4.3.2).
3.7.5 The provided electrical transformer and any newly installed power disconnect switches or distribution panels controlling the supply power to the electrical service panel located in the SWA shall be protected from public access and/or tampering. It is recommended that all power disconnects after the transformer be located inside the LABORATORY or its vestibule.
3.7.6 The circuit breaker(s) for the HVAC system shall be sized appropriately for the HVAC system installed in the LABORATORY.
3.7.7 The circuit breaker(s) for the security system shall be appropriately sized for the intelligent security controllers and all endpoint security devices.
3.7.8 The circuit breaker(s) for the lighting circuit(s) shall be appropriately sized for the lighting components installed.
3.7.9 The circuit breaker(s) for the fire detection system shall be appropriately sized for the system installed.
3.7.10 Unless differently specified below, all provided electrical outlets shall be 120VAC-20AMP duplex receptacles.
3.7.11 Each receptacle shall be clearly labeled to indicate the appropriate controlling circuit breaker.
3.7.12 There shall be no more than eight 120VAC-15AMP duplex receptacles sharing a single 15AMP breaker located within the electrical service panel.
3.7.13 There shall be no more than four 120VAC-20AMP duplex receptacles (or two 20AMP quadplex receptacles) sharing a single 20AMP breaker located within the electrical service panel.
3.7.14 All 120VAC-30AMP receptacles shall have their own individual 30AMP breakers within the electrical service panel.
3.7.15 Receptacles shall be provided throughout the main workspace according to the following schedule, with specific placement subject to approval by the Government:
• Four (4) each 120VAC-15AMP duplex receptacles able to be installed in up to ten (10) workspace locations on the second floor (workspace furniture will be Government furnished and Government installed after the LABORATORY installation);
• One (1) 120VAC-15AMP duplex receptacle located in the vicinity of each wall-mounted display (six total on the first floor, two total on the second floor, see §3.9.1);
• 120VAC-20AMP duplex receptacles located approximately every ten feet along the interior wall of the first floor;
• Eight (8) 120VAC-20AMP quadplex receptacle boxes approximately evenly distributed throughout the raised floor cavity of the first floor, installed in a semi-flexible fashion so as to allow repositioning within a
8-foot radius of their nominal locations;
• One (1) 120VAC-30AMP L5-30R locking receptacle installed in the vicinity of each network cabinet
(two total) on the first floor;
• One (1) 120VAC-15AMP or -20AMP duplex receptacle in the entrance vestibule on the same wall as the installed storage lockers; and
• Additional 120VAC-15AMP duplex receptacles located along the interior walls as needed to meet applicable codes.
3.7.16 To the extent possible, the design of the electrical distribution shall be coordinated with the Government’s plans for any Government furnished / Government installed Furniture, Fixtures and Equipment (FFE).
3.7.17 All floor tiles on the first floor shall be easily removable for access to receptacles beneath the finished floor. Two sets of any required tools to remove floor tiles shall be provided with delivery of the
LABORATORY. At least twelve (12) floor tiles shall have access holes in them to allow cables to pass safely through the finished floor with the floor tile in place.
3.8 Network Infrastructure
3.8.1 The layout and installation of the network infrastructure shall be according to the Level I Red/Black
Requirement as indicated in Section 4.5 of Committee on National Systems Advisory Memorandum
(CNSSAM) TEMPEST/01-13, RED/BLACK Installation Guidance, dated 17 January 2014.
3.8.2 A “black” network rack enclosure (“non-secure rack”) (Tripp-Lite P/N: SRQ18U or equivalent;
equivalent shall provide up to 28 dB noise attenuation) shall be provided and installed via a suitable manner on the first floor of the SWA. Installation shall be such that the front of the cabinet faces generally toward the center of the SWA. Appropriate clearance shall be maintained in front of and behind the rack for access and equipment installation. For the purposes of TEMPEST, all equipment installed in this rack enclosure shall be considered “BLACK Equipment”, and all cable, optical fiber cable, or metallic wire cable terminating in this rack enclosure shall be considered “BLACK Line”, “BLACK Optical Fiber Line” or “BLACK Wireline”, respectively, unless otherwise indicated in this document.
3.8.3 Except where otherwise indicated or as allowed by the Government in writing, all network cable, whether optical fiber or metallic wire, intended by design to carry a non-secure (or encrypted) signal, or terminating in the non-secure rack specified above, shall be of green or grey color or otherwise labeled at each end-point as well as at least every 36 inches along the cable so as to be identified as a non-secure signal line.
3.8.4 A “red” network rack enclosure (“secure rack”) (Tripp-Lite P/N: SRQP42UB or equivalent; equivalent shall provide up to 20 dB noise attenuation) shall be provided and installed via a suitable manner on the first floor of the SWA. Installation shall be such that the front of the cabinet faces generally toward the center of the SWA. Appropriate clearance shall be maintained in front of and behind the rack for access and equipment installation. For the purposes of TEMPEST, all equipment installed in this rack enclosure shall be considered “RED Equipment”, and all cable, optical fiber cable, or metallic wire cable terminating in this rack enclosure shall be considered “RED Line”, “RED Optical Fiber Line” or “RED Wireline”, respectively, unless otherwise indicated in this document.
3.8.5 Except where otherwise indicated, all network cable, whether optical fiber or metallic wire, intended by design to carry an unencrypted secure signal, or terminating in the secure rack specified above, shall be of red color or otherwise labeled at each end-point as well as at least every 36 inches along the cable so as to be identified as a secure signal line.
3.8.6 All metallic wire network cable considered to be “RED Wirelines” shall be shielded. Metallic distribution, such as conduit or enclosed cable tray, may be used for shielding in lieu of cabling shields when it is difficult to use shielded cable. All metallic distribution shall be electrically continuous and installed in accordance with the National Electric Code. Electrical Metallic Tubing (EMT) used in lieu of shielded cable shall utilize compression fittings.
3.8.7 The non-secure rack and the secure rack shall be separated from each other by at least 40 inches.
3.8.8 Six (6) pairs of fiber-optic network cable shall run from a patch panel in the secure rack to a patch panel in the non-secure rack to facilitate cross-connections as needed. These shall terminate with SC-type jacks.
The outer jacket for this/these cable(s) shall be green or grey color, or otherwise labeled at each end-point as well as at least every 36 inches along the cable so as to be identified as a non-secure signal line, and it shall be considered a “BLACK Optical Fiber Line”.
3.8.9 Network wiring and drops for NIPR, SIPR and an Internal Secret network shall be provided throughout the main workspace. All wiring shall be made with Cat5e or Cat6 cable. Drops shall be according to the below schedule:
Note: NIPR drop locations always have a pair of two (2) RJ-45 connectors (“A” and “B”), each wired independently. See §3.8.10.
• One (1) pair NIPR (A+B), one (1) SIPR, and two (2) Internal Secret drops able to be installed in up to ten (10) workspace locations on the second floor (workspace furniture will be Government furnished and
Government installed after the LABORATORY installation);
• One (1) Internal Secret drop and one (1) security camera network drop located in the vicinity of each wall-mounted display (six total on the first floor, two total on the second floor); See also §3.6.28.
• Four (4) pair NIPR (A+B) and four (4) SIPR drops distributed evenly throughout the first floor; and
• Twenty (20) clusters of two (2) Internal Secret drops each distributed evenly throughout the first floor working area. At least six of these clusters shall be located in the cavity below the finished floor.
To the extent possible, the design of the electrical distribution shall be coordinated with the
Government’s plans for any Government furnished / Government installed Furniture, Fixtures and
Equipment (FFE).
3.8.10 All NIPR Network drop locations shall consist of two RJ-45 jacks (configured per EIA/TIA 568B) installed adjacently. The first jack shall be blue and sub-labeled “A”; the second jack shall be green and sub-labeled
“B”. All NIPR drops (both A and B jacks) shall land on a patch panel in the non-secure rack.
Note: The NIPR Network switch/router will be installed after performance under this contract and is not within the scope of this contract.
3.8.11 All SIPR Network drops shall be RJ-45 jacks (configured per EIA/TIA 568B) colored red. All SIPR drops shall land on a patch panel in the secure rack.
Note: The SIPR Network switch/router will be installed after performance under this contract and is not within the scope of this contract .
3.8.12 All Internal Secret Network drops shall be RJ-45 (configured per EIA/TIA 568B) jacks colored black. All
Internal Secret drops shall land on a patch panel (separate from the patch panel provided for SIPR
Network) in the secure rack.
Note: The Internal Secret Network switch/router will be installed after performance under this contract and is not within the scope of this contract.
3.8.13 Voice communications drops shall be provided according to the following schedule:
• One (1) voice drop able to be installed in up to ten (10) workspace locations on the second floor
(workspace furniture will be Government furnished and Government installed after the LABORATORY installation); and
• Four (4) voice drops on the first floor, co-located with the four NIPR drops.
3.8.14 The voice communication drops shall be RJ-45 (configured per EIA/TIA 568B) jacks colored white or ivory. All voice drops shall feed to a patch panel in the non-secure rack.
3.8.15 All network and voice communication drops shall be labeled at the drop and in the appropriate network rack to uniquely identify the associated service (NIPR, SIPR, etc.) and drop number for that service.
3.8.16 Wall jacks for patching SIPR and/or the Internal Secret Network to equipment, as identified in the above network drops, shall be installed into separate outlet boxes from those wall jacks provided for NIPR, Voice, Security Cameras or other non-secure applications. Wall jacks for RED lines shall be separated by at least
5 cm (2 inches) from those wall jacks for BLACK lines.
3.8.17 No separation is required between SIPR and Internal Secret Network cables or wall jacks, nor is there a need to separate these two services into distinct outlet boxes.
3.9 Video Components
3.9.1 Guidance shall be provided in the full drawing set regarding the appropriate fasteners and installation techniques to use to facilitate GFGI hardware installation of six (6) flat screen TV/Display wall mounts to be located on the first floor and two (2) additional mounts to be located on the second floor. These mounts will be Government Furnished and Government Installed after delivery (see §5.2.1). Exact locations of the displays shall be furnished by the Government during the detail design phase to inform power and network drop positioning.
3.9.2 Mounting fasteners and installation techniques shall accommodate displays of a size up to 85 inches and up to 110 pounds.
3.10 Lighting Components
3.10.1 The lighting for the SWA shall be controlled by dimmer switches that provide flicker-free, continuously variable light output throughout the dimming range. The Contractor shall provide both dimmers and the drivers they control, which must all be sourced from the same manufacturer, or tested and certified as compatible for use together.
3.10.2 Light switches controlling the lighting on the first floor shall be located near the main entry door from the entry vestibule. Light switches controlling the lighting on the second floor shall be located at the top of the interior stairs.
3.10.3 The lighting circuit for the Entrance Vestibule shall have a single light switch controlling overhead lights within the Entrance Vestibule.
3.10.4 Energy efficient Light Emitting Diode (LED) lighting fixtures shall be used. The LED color temperature shall be within the 3500K-4500K range (“Natural White”).
3.10.5 Lighting for the LABORATORY shall be installed such that the casting of shadows and dark areas will be prevented to the fullest extent possible.
3.10.6 For the SWA, the installed lighting shall provide 400-600 lux at full brightness. Lighting on the first floor shall be installed such that illumination brightness can be separately adjusted in at least two lighting zones through full range or preset values for either reading of documents or viewing of presentations on displays.
Lighting on the second floor shall be similarly dimmable.
3.10.7 When the lights in the SWA (first floor or second floor) have been manually turned off, at least one light fixture on each floor near the respective light switch(es) shall remain lit at a minimum level for “safety lighting”.
3.10.8 The lighting within the Entrance Vestibule shall provide 300-500 lux.
3.11 Safety Components
3.11.1 Fire safety items provided in this section (§3.11) represent the minimal fire safety requirements in compliance with NFPA and UFC 3-600-01/UFGS codes and standards that are determined to be acceptable by the Authority Having Jurisdiction (AHJ) with regards to the LABORATORY planned property location at NSWCPD.
3.11.2 The AHJ for fire alarm, detection, notification and suppression systems is Mid-Atlantic Division, Naval
Facilities Engineering Command, Fire Protection Engineer. The Fire Protection Engineer, Mid-Atlantic
Division, Naval Facilities Engineering Command, will review and approve all submittals for fire safety systems. The fire alarm design shall be completed by a fire alarm systems NICET certified technician. The sprinkler design shall be completed by a minimum Level 3 sprinkler NICET certified technician.
3.11.3 Provide fire alarm system notification throughout the new space. Extend existing fire alarm circuits into the new space or provide a new NAC panel within the new space. All fire alarm wiring shall be installed in conduit. T-tapping is not permitted. New notification appliances shall match the existing in the building.
Installation shall comply with NFPA 72 and with UFC 3-600-01.
Note: An appropriately sized enclosure (see §5.4.3), conduit pathway and junction box shall be provided to enable installation of wiring from the FACU to the existing FACP. Installation of wiring connecting the
FACU and existing FACP shall be performed by the Government.
3.11.4 Wet pipe automatic fire sprinkler system coverage shall be provided throughout the entire space. Nearest existing sprinkler riser can be tapped and a new dedicated zone for the new space can be provided. Provide a zone control valve assembly with a shut-off valve, check valve, flow switch and drain. Shut-off valve shall be monitored by the building fire alarm system via a tamper switch. Flow switch shall be monitored by the building fire alarm system. Pipe drain into an existing sprinkler drain or a safe place outside the building. Provide concealed sprinkler heads throughout. Paint all sprinkler piping red. Installation shall comply with NFPA 13 and UFC 3-600-01.
3.11.5 Contractor shall provide shop drawings, hydraulic calculations and material submittals to the AHJ for review and approval. The contractor may either use hydraulic data information that might be available on the relevant sprinkler riser, or shall otherwise calculate the water demand back to the distribution pump in
Building 485. Further coordination via the COR may be needed between NSWCPD, NAVFAC and the
Contractor at that time to provide the information needed to perform hydraulic calculations.
3.11.6 Lighted Exit signs shall be installed above each door on the inside of the LABORATORY. The Exit signs shall have a back-up source of power in order for the Exit signs to remain illuminated upon loss of electrical power to the LABORATORY.
3.11.7 Emergency lighting shall include an integral nickel-cadmium battery capable of supplying a minimum of
90 minutes of emergency power to allow personnel to be able to exit the space safely upon loss of electrical power to the LABORATORY.
3.11.8 Personnel shall be able to promptly evacuate the space upon loss of electrical power to the
LABORATORY. Back-up power shall be provided for any component that could delay prompt exit from the space if it were to be non-operational due to power loss.
3.11.9 Wall-mounted fire extinguishers shall be provided as required by applicable or relevant and appropriate requirements.
3.12 Heating, Ventilation and Air Conditioning (HVAC) Components
3.12.1 HVAC equipment shall be provided to condition the SWA temperature, humidity, and outside-air levels.
3.12.2 Exterior-wall hung units or rooftop units may be used. When wall hung or rooftop units are used, the contractor shall provide vibration and isolation controls.
3.12.3 HVAC components shall be sized appropriately given the total volume of the LABORATORY, an estimated heat load for up to fifteen (15) persons on the first floor and ten (10) persons on the second floor, and an approximate user equipment heat load of 10 Watts per square foot (W/sf) on the first floor and 5
W/sf on the second floor, in addition to any loads resulting from equipment provided by the Contractor.
3.12.4 Independently adjustable temperature control thermostats for the HVAC system shall be provided and installed within the SWA capable of setting independent temperature set points for the first and second floors. Due to the technical nature of the LABORATORY and the resulting uncharacteristic loads and usage, the HVAC system shall be capable of a Cooling Set Point of 72 degrees Fahrenheit and a Heating
Set Point of 76 degrees Fahrenheit.
3.12.5 The HVAC system shall be capable of providing at least 4 air changes per hour with at least 20% outdoor air (where “outdoor” is relative to the LABORATORY, not relative to Building 87).
3.12.6 Ductwork: Any ductwork provided shall be in accordance with the latest SMACNA guidelines. Flexible duct lengths shall not exceed 5 feet. Provided ducts shall be galvanized sheet metal ducts. Any ductwork shall be sealed with an approved duct sealer and in accordance with SMACNA standards.
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