Exhibit_B_AR-PD-191.pdf

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Mounted Machine Gun Optic (MMO) Federal contract opportunity
Solicitation number
W15QKN-18-R-0065
Issued by
Department of the Army Materiel Command Contracting Command Picatinny Arsenal

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Exhibit B - AR-PD-191

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AR-PD-191

CAGE Code. 19200

06 SEP 2017

SUPERSEDING

N/A

PURCHASE DESCRIPTION

FOR

MOUNTED MACHINE GUN OPTIC (MMO)

U.S. Army RDECOM-ARDEC Picatinny, NJ 07806-5000

Prepared by.

RDECOM-ARDEC Quality Engineering & System Assurance

Fire Control Q/R/S, RDAR-EIQ-WA

DISTRIBUTION STATEMENT C. Distribution authorized to U.S. Government agencies and their contractors; Export Controlled; March 2017. Other requests for this document shall be referred to the DoD Controlling Office. US Army ARDEC, ATTN. RDAR-WSF-N, Picatinny Arsenal, New Jersey 07302.

WARNING – This document contains technical data whose export is restricted by the Arms Export Control Act (Title 22, U.S.C., Sec 2751, et seq.) or the Export Administration Act of 1979 (Title 50, U.S.C., App. 2401 et seq.), as amended. Violations of these export laws are subject to severe criminal penalties. Disseminate in accordance with provisions of DoD Directive 5230.25.

DESTRUCTION NOTICE – For classified documents, follow the procedures in DoD 5220.22- M, Industrial Security Manual Section 11-19 or DoD 5200.1-R, Information Security Program Regulation, Chapter IX. For unclassified, limited documents, destroy by any method that will prevent disclosure of contents or reconstruction of the document.

This cover page must be part of the specification file and may not be deleted from the solicitation copy.

METRIC

their contractors; Export Controlled; March 2017. Other requests for this document shall be referred to the DoD Controlling Office. US Army ARDEC, ATTN. RDAR-WSF-N, Picatinny Arsenal, New Jersey 07302.

1 SCOPE

1.1 Scope. This specification prescribes the requirements and identifies the verification procedures for the Mounted Machine gun Optic (MMO) designed for mounting to the M2/M2A1 0.50Cal Machine Gun, Mk19 40mm Grenade Machine Gun, and M240/B/H/L 7.62mm Machine Gun in the ground vehicle and rotary aircraft mounted configurations. Warfighters require a dual purpose optic for close combat (0-300 meters) and long range engagements (300-2200 meters) with heavy and medium machine guns. The MMO shall provide both Optical Magnification and Reflexive Fire capabilities. Requirements prescribed herein shall apply to all three systems, unless explicitly stated otherwise.

1.2 Integral components. The performance requirements and verification methods for the following integral components of the MMO are also specified herein.

a. Magnified optical assembly

b. Reflex or Unity Power (1X) Optic (Viewing Window) assembly

c. Housing (as required for design)

d. Battery compartment

e. A carrying strap

f. Eye lens cover(s)

g. Objective lens covers

h. Batteries

i. Lens Cleaning Material

1.3 Requirement levels. This specification lists two values for certain performance parameters. The threshold value (T) is the minimum acceptable value, and the objective value

(O) is the desired value for which the performance of the MMO results in operationally significant increase in capabilities. All requirements not noted are threshold requirements.

2 APPLICABLE DOCUMENTS

2.1 General. The documents listed in this section are specified in sections 3, 4, or 5 of this specification. This section does not include documents cited in other sections of this specification or recommended for additional information or as examples. While every effort has been made to ensure the completeness of this list, document users are cautioned that they must meet all specified requirements of documents cited in sections 3, 4, or 5 of this specification, whether or not they are listed.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

2.2 Government Documents.

2.2.1 Specifications, standards, and handbooks. The following documents form a part of this document to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the solicitation or contract.

INTERNATIONAL STANDARDIZATION AGREEMENTS (STANG)

NATO STANAG 4694 - NATO Accessory Rail NATO STANAG 3733 - (Restricted) Laser Pulse Repetition Frequencies (PRF) Used for Target Designation and Weapon Guidance

FEDERAL STANDARDS

FED-STD-595C - Colors used in Government Procurement

DEPARTMENT OF DEFENSE SPECIFICATIONS

MIL-PRF-13830B - Optical Components for Fire Control Instruments; General Specification Covering the Manufacture, Assembly and Inspection of MIL-PRF-372E(2) - Cleaning Compound, Solvent (For Bore of Small Arms and Automatic Aircraft Weapons) MIL-PRF-14107D - Lubricating Oil, Weapons, Low Temperature MIL-L-46000C - Lubricant, Semi-Fluid (Automatic Weapons) MIL-PRF-63460E - Lubricant, Cleaner, and Preservative for Weapons and Weapons Systems MIL-W-13855D - Weapons. Small Arms and Aircraft Armament Systems, General Specification for MIL-W-63150 - Weapons and Support Material, Standard Quality Assurance Provisions for MIL-F-13926B - General Specification for Manufacture and Inspection Fire Control Materiel MIL-G-21164D - Grease, Molybdenum Disulfide, For Low and High Temperatures, NATO Code Number G-353

DEPARTMENT OF DEFENSE STANDARDS

MIL-STD-1913 - Dimensioning of Accessory Mounting Rail for Small Arms Weapons MIL-STD-810G - Environmental Engineering Considerations and Laboratory Tests their contractors; Export Controlled; March 2017. Other requests for this document shall be

MIL-STD-129P - Military Marking for Shipment and Storage MIL-STD-130N - Identification Marking of US Military Property MIL-STD-1916 - DOD Preferred Methods for Acceptance of Product MIL-STD-40051-2 - Preparation of Digital Technical Information for Page- Based Technical Manuals (TMs) MIL-STD-1474E - Noise Limits MIL-STD-202G - Test Method Standard Electronic and Electrical Component Parts MIL-STD-461G - Requirements for the Control of Electromagnetic Interference Characteristics of Subsystems and Equipment MIL-STD-464C - Electromagnetic Environmental Effects Requirements for Systems MIL-STD-1472G - Human Engineering

DEPARTMENT OF DEFENSE HANDBOOKS

MIL-HDBK-454B - General Guidelines for Electronic Equipment

DEPARTMENT OF DEFENSE DIRECTIVE

DODD 4160.28-VOL - Defense Demilitarization. Procedural Guidance DODD 5000.02 - Operation of the Defense Acquisition System

(Defense and federal specifications, standards, and handbooks are available online at DoD Assist database (http.//quicksearch.dla.mil/) or from the Standardization Document Order Desk, 700 Robins Avenue, Bldg. 4D, Philadelphia, PA 19111-5094.)

2.2.2 Other Government documents, drawings and publications. The following other Government documents, drawings and publications form a part of this document to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the solicitation or contract.

ARMY FIELD MANUALS

FM 3-22.27 - MK1940-mm Grenade Machine Gun, MOD3 FM 3-22.65 - Browning Machine Gun, Caliber .50 HB, M2 FM 3-22.68 - Crew-Served Machine Guns 5.56-mm and 7.62-mm

(Copies of these Field Manuals are available from the General Davis J. Reimer Training and Doctrine Digital Library at http://www.adtdl.army.mil/) their contractors; Export Controlled; March 2017. Other requests for this document shall be

US ARMY DEVELOPMENTAL TEST COMMAND

TOP 3-2-045 - Test Operations Procedures for Small Arms - Hand and Shoulder Weapons and Machine Guns TOP 3-2-030 - Grenade Launchers TOP 3-2-609 - Chemical Compatibility of Non-Metallic Materials used in Small Arms Systems

(Copies of these documents may be ordered from the US Army Developmental Test Command, ATTN. Publications, 314 Longs Corner Road, Aberdeen Proving Ground, MD 21005-5005, or online at http.//www.dtc.army.mil/publications/topsindex.aspx.)

US ARMY ARMAMENT, DEVELOPMENT AND ENGINEERING CENTER (ARDEC)

DRAWINGS

13010593 - LFU CODES

(ARDEC drawings may be requested online at pica.Drawing.Request@conus.army.mil or from US Army ARDEC, ATTN. RDAR-EIS-PE, Picatinny, NJ 07806-5000. The LFU CODES drawing 19200.13010593 is classified. Procedures and requirements for access to copies may be obtained from US Army ARDEC, ATTN. RDAR-WSF-N, Picatinny, NJ 07806-5000.)

2.3 Non-Government publications. The following documents form a part of this document to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the solicitation or contract.

AMERICAN SOCIETY FOR TESTING AND MATERIALS

ASTM E308 - Standard Practice for Computing the Colors of Objects by Using the CIE System ASTM D523 - Standard Test Method for Specular Gloss ASTM D2244 - Calculation of Color Tolerances and Color Differences from Instrumentally Measured Color Coordinates ASTM D1141E1 - Standard Specification for Substitute Ocean Water

(Copies of ASTM standards may be ordered online at http.//www.astm.org/ or from the ASTM International, 100 Barr Harbor Drive, Conshohocken, PA 19428-2959.)

INTERNATIONAL STANDARDIZATION ORGANIZATION (ISO) STANDARDS

ISO 9335 - Optics and Photonics – Optical Transfer Function – Principles and Procedures of Measurements their contractors; Export Controlled; March 2017. Other requests for this document shall be

ISO 14490-1 - Optics and Optical Instruments – Test Methods for Telescopic Systems – Test Methods for Basic Characteristics ISO 14490-5 - Optics and Optical Instruments – Test Methods for Telescopic Systems – Test Methods for Transmittance

(Copies of ISO standards may be ordered online at http.//www.iso.org/ or from the ISO International, ISO Central Secretariat, Chemin de Blandonnet 8, CP 401 - 1214 Vernier, Geneva, Switzerland.)

2.4 Order of precedence. Unless otherwise noted herein or in contract, in the event of a conflict between the text of this document and the references cited herein, the text of this document takes precedence. Nothing in this document, however, supersedes applicable laws and regulations unless a specific exemption has been obtained.

3 REQUIREMENTS

3.1 Classification of inspections. The inspection requirements specified herein are classified as follows:

a. Design verification (see paragraph 3.2)

b. First article (see paragraph 3.3)

c. Conformance (see paragraph 3.4)

3.2 Design verification. When specified (see 6.2), a sample of MMO shall be subjected to design verification in accordance with Table I and 4.2.

3.3 First article inspection. Unless otherwise specified (see 6.2), a sample of MMO shall be subjected to first article inspection in accordance with Table I and 4.3.

3.4 Conformance inspection. Unless otherwise specified (see 6.2), a sample of MMO shall be subjected to quality conformance inspection in accordance with Table I and 4.4.

3.5 Operating requirements.

3.5.1 Accuracy. The MMO shall enable qualified gunners firing host weapons mounted on ground vehicle or rotary wing aircraft platforms to achieve.

3.5.1.1 M240B/H/L. A first burst P(h) (Probability of Hit) equal to or greater than the baseline configuration of the M145 (Machine Gun Optic (MGO)) at ranges out to 1000 meters with a five to seven round burst (T). A 15% increase in First burst P(h) at 1100 meters against stationary vehicle targets with a five to seven round burst (O).

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3.5.1.2 M2/M2A1. A first burst P(h) equal to or greater than the baseline configuration of iron sights at ranges out to 1000 meters with a three to five round burst. (T) A 15% increase in First burst P(h) at 1,500 meters against stationary vehicle targets with a three to five round burst (O).

3.5.1.3 Mk19. First burst P (h) equal to or greater than the host weapon baseline configuration of iron sights at 1500 meters against stationary vehicle targets with a three to five round first burst.

3.5.2 Target acquisition time at 1000 meters. The MMO shall enable a gunner to acquire and effectively engage multiple targets at ranges ≤ 1,000 meters faster than the current baseline configuration while firing from a stationary vehicle-mounted platform (T).

3.5.2.1 M240B/H/L. The MMO shall enable a gunner, wearing relevant Soldier common equipment, to acquire and effectively engage multiple targets at ranges < 600 meters in ≤ 15 seconds and 600-1,000 meters in ≤ 30 seconds with the M240B/H/L while firing from a moving vehicle-mounted platform (O).

3.5.2.2 M2/M2A1. The MMO shall enable a gunner, wearing relevant Soldier common equipment, to acquire and effectively engage < 600 meters in ≤ 15 seconds, 600 - 1,200 meters in ≤ 30 seconds, and 1201-1500 in ≤ 5 minutes with the M2/M2A1 while firing from a moving vehicle-mounted platform (O).

3.5.2.3 Mk19. The MMO shall enable a gunner, wearing relevant Soldier common equipment, to acquire and effectively engage < 600 meters in ≤ 15 seconds, 600 - 1,200 meters in ≤ 30 seconds, and 1201-1500 in ≤ 5 minutes with the MK19 while firing from a moving vehicle-mounted platform (O).

3.5.3 Power requirements.

3.5.3.1 Material restrictions. Battery (s) shall not contain mercury or carbon zinc.

Radioactive materials are prohibited, including Tritium.

3.5.3.2 Allowable batteries. MMO shall be powered by commercially available battery(s) compliant with the document “Power Sources Center of Excellence (PSCOE) Preferred Battery List”, May 2014. This document supersedes the Communication Electronics Command (CECOM’s) preferred power list.

3.5.3.3 Battery compartment. Battery compartment shall be waterproof.

3.5.3.3.1 Battery compartment cover. The battery compartment cover shall be tethered to the battery compartment to prevent loss.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.5.3.4 Battery life. The battery(s) used must provide the MMO with power for 96 hours of continuous operations in average ambient conditions with no battery(s) change (T), 336 hours of continuous operations no battery(s) change (O).

3.5.3.4.1 Low temperature battery life. The battery life shall not decrease by more than 50 percent during low operational temperature conditions.

3.5.3.5 Battery life indicator. The MMO shall include a low power indicator that alerts the operator when approximately 15 minutes of battery(s) life remains (T). The MMO shall include a battery life indicator in the field of view that provides battery status throughout the battery(s) life (O).

3.5.3.6 Battery replacement. The battery(s) must be replaceable without removal from the weapon, tipping the weapon or removing any enabler on the weapon, without the use of tools, or affecting zeroing/sight alignment on the host weapon.

3.5.3.7 Reverse polarity protection. The desired battery orientation shall be clearly marked on the compartment. The MMO circuitry shall incorporate reverse polarity protection and shall not sustain any damage due to incorrect battery insertion.

3.5.4 Magnified optic. The MMO must have a selectable or variable magnification that provides Soldiers the capability to quickly and efficiently switch from a reflexive fire capability target engagement mode to a magnified target engagement mode, without the use of tools while maintaining control of the host weapon.

3.5.4.1 Magnification. The Magnified optic shall provide a 3x to 4x magnification.

Magnification shall be measured at optical center using a target reference of no greater than 1 milliradian, to minimize error due to geometric distortion.

3.5.4.2 Resolution. Resolution shall be 20 SOA (Seconds of Arc) (T) or better (O).

3.5.4.3 Field of view. Shall be 5 degrees full field of view (T) or more (O).

3.5.4.4 Parallax. Shall be less than or equal to 0.8 artillery mils at 1,000m.

3.5.4.5 Eyepiece focus. The eyepiece shall be fixed focused at -0.5 to -1.0 diopters with sight set to the highest power magnification. Eyepiece diopter shall not vary by greater than 1.0 diopter at optical center when adjusting magnification between minimum and maximum settings.

3.5.4.6 Exit pupil diameter. Shall be greater than or equal to 6.0 mm, with no vignetting, at all magnifications.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.5.5 Reflexive fire capability. The MMO shall provide a unity (1X) power or reflexive fire capability (e.g. Red Dot).

3.6 Interface and interoperability requirements.

3.6.1 Over-tightening. The MMO shall mount in a manner that prevents Soldiers from over-tightening locking screws to the weapons rail.

3.6.2 Special tools. The MMO must be capable of mounting on the MIL-STD-1913 rail without the use of special tools.

3.6.2.1 Attachments. The MMO with attachments, such as Laser Filter Unit (LFU) or any

Anti-Reflection Device (ARD) (if required by the design) must be capable of mounting on the MIL-STD M1913 rail without the use of special tools.

3.6.3 Laser safety. The MMO must provide laser protection for the user’s eye.

3.6.4 Eye relief. The MMO shall have an eye relief distance of no less than 50 mm and no greater than 76 mm.

3.6.5 External coatings and covers. The body and covers of the MMO shall have a rough, dull, non-toxic, non-slippery surface. The coating/finish shall be non-reflective tan and/or flat dark earth tone. Examples include but are not limited to 499 Tan, FED-STD-595 Color #30219.

3.6.5.1 Lens/dust covers. Lens covers shall be provided for the MMO. Lens covers shall provide protection for all optical surfaces, be constructed of a non-reflective material. The objective lens cover shall fit the objective lens with and without Laser Filter Unit (LFU) or any Anti-Reflection Device (ARD) (if required by the design) attached.

3.6.5.2 Lens cover security. The covers shall remain in place under all environmental and handling conditions.

3.6.5.3 Lens cover removal. The lens covers shall be easily removable from the optical path to permit its use. No tools shall be required for removal.

3.6.5.4 Lens cover interference. The lens covers installation and removal shall not require tipping the weapon or removing any enabler on the weapon.

3.6.5.5 Lens cover loss. The covers shall be attached to the MMO to preclude their loss when removed from the optics. Their position when removed from the optical path shall not interfere with the optical performance or operation of the MMO and operation of weapon system(s).

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.6.6 Tracer compatibility. The MMO shall be compatible with following tracer rounds

3.6.6.1 M240/B/H/L. M62/M62A1 tracer ammunition

3.6.6.2 M2/M2A1. M17 tracer ammunition

3.6.7 Interoperability.

3.6.7.1 Interference. The MMO shall mount in ground vehicle and rotary aircraft mounted configurations without degrading gunner’s ability to load, engage targets, unload, conduct corrective action, and clear on the listed weapon systems.

a. M2/M2A1.

b. M240B/H/L.

c. Mk19.

3.6.7.2 Iron sights. The MMO shall not inhibit the independent use of iron sights once the

MMO is removed (T). The MMO shall not inhibit the independent use of existing iron sights while MMO is mounted (O).

3.6.7.3 Gunners’ Protection Kit. The MMO shall be capable of being operated and manipulated by a Soldier wearing issued PPE on a mounted platform equipped with an Objective Gunners Protective Kit (O-GPK) 1.0 and 2.0.

a. M2/M2A1.

3.6.7.4 Attachment. The MMO shall attach to the MIL-STD-1913 rail on the feed Tray

Cover of the listed weapon systems.

a. M2/M2A1.

3.6.7.5 Multiple Integrated Laser Engagement System (MILES). The MMO capability must not interfere with the design, installation, and/or operation of the Small Arms Transmitter (SAT) when it is installed for the Live Force-on-Force training.

3.6.7.6 Small Tactical Optical Rifle Mounted (STORM). The MMO shall have a port capable of receiving data from the STORM, the Micro Laser Range Finder (MLRF) and displaying target range in the viewing window. (O)

3.6.7.7 Ports. MMO port(s) shall be capable of receiving and transmitting data (O) and receiving power (O).

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.6.8 Optical surface coatings. Unless otherwise noted, the following requirements apply to all optical surfaces, including the LFU.

3.6.8.1 Anti-reflective coatings. All Optical Surfaces shall have an Antireflective Coating to maximize light transmission.

3.6.8.2 Physical & cosmetic. The coating shall show no evidence of deterioration such as flaking, peeling, cracking, or blistering. No stains, streaks, or cloudiness shall be permitted on optical components lying in a focal plane.

3.6.8.3 Severe abrasion. There shall be no visible damage, such as evidence of abrasion or coating removal, to the coated surface when abraded with an eraser abrasion tester conforming to DWG 7680606. This requirement applies to external surfaces only.

3.6.8.4 Adhesion. The coated optical surface shall show no evidence of coating removal when cellophane tape is pressed firmly against the coated surface and quickly removed at an angle normal to the coated surface.

3.6.9 Laser rejection coatings. All laser rejection coatings used to meet the requirements of this specification shall be either thin film rejection coatings, deposited using vacuum coating manufacturing technology, or narrow band absorbing dyes. Holographic filter elements shall not be used to meet any requirement of this specification.

3.6.10 Laser Filter Unit (LFU). The MMO shall include a removable LFU that attaches to the objective lens end of the magnified optic. Laser wavelengths (Lambda) and rejection levels (OD) shall be in accordance with ARDEC drawing 19200.13010593 LFU CODES and the rejection band information below. This document is classified at the secret level. A U.S. secret facility clearance is required to receive this document. Requests for this addendum may be made through the Government Contracting Official.

3.6.10.1 Rejection band 1.

3.6.10.1.1 Optical Density. The MMO magnified optic shall provide an optical density not less than OD1 from Lambda 1 to Lambda 2 (inclusive) at normal incidence and at 70% of the full field-of-view of the telescope.

3.6.10.1.2 Laser Damage. The optical density for Rejection Band 1 must also include a laser operating within this band using the power density specified in Resistance to Laser Damage for Lambda 1 or 2 (3.6.11.1).

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.6.10.2 Rejection band 2.

3.6.10.2.1 Optical Density. The MMO magnified optic shall provide an optical density not less than OD2 at the wavelength of Lambda 3 at normal incidence and at 70% of the full field of view of the telescope.

3.6.10.2.2 Laser Damage. The optical density for Rejection Band 2 must also include a laser

Lambda 3 (3.6.11.2).

3.6.10.3 Rejection band 3.

3.6.10.3.1 Optical Density. The MMO magnified optic, at normal incidence, shall provide an optical density not less than OD3 from the wavelengths of Lambda 4 to Lambda 7 and OD4 from Lambda 5 to Lambda 6.

3.6.10.3.2 Laser Damage. The optical density for Rejection Band 3 must also include a laser

Lambda 8 or Lambda 9 (3.6.11.3).

3.6.11 Resistance to laser damage. There shall be no laser induced physical damage to the laser protection filter substrate and filter coatings for the following on axis Transverse Electromagnetic (TEM) mode laser inputs (from target space).

3.6.11.1 Collimated laser of Lambda 1 or Lambda 2. Collimated laser of either Lambda 1 or Lambda 2, TEM00 mode, linear polarization, having an average energy density of 127 mJ/cm2 or greater over 2 mm diameter spot, five pulses at 2.5 Hz with a pulse Full Width Half Maximum (FWHM) of 13±3 ns. These requirements may be verified at the component level providing the effects of the system are simulated at the individual filter.

3.6.11.2 Collimated laser of Lambda 3. Collimated laser of Lambda 3, TEM00 mode, linear polarization, having an average energy density of 35 mJ/cm2 or greater over 2 mm diameter spot, five pulses at 0.2 Hz with a FWHM between 9 ns and 45ns. These requirements may be verified at the component level providing the effects of the system are simulated at the individual filter.

3.6.11.3 Collimated laser of Lambda 8 or Lambda 9. Collimated laser of either Lambda 8 or

Lambda 9, TEM00 mode, linear polarization, having an average energy density of 637 mJ/cm2 or greater over 2 mm diameter spot, five pulses at 2.5 Hz with a pulse FWHM of 13±3ns. These requirements may be verified at the component level providing the effects of the system are simulated at the individual filter.

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3.6.12 Light transmission.

3.6.12.1 Photopic transmission. The photopic transmission from 425 nm to 675 nm of the magnified optic shall be not less than 27% with a LFU and not less than 65% without a LFU.

3.6.12.2 Scotopic transmission. The scotopic transmission from 410 nm to 610 nm of the magnified optic shall be not less than 23% with a LFU and not less than 50% without a LFU.

3.6.13 Detectability (signature reduction).

3.6.13.1 Anti-Reflection Device (ARD). The MMO shall incorporate anti-reflective lens coatings, anti-reflective devices, or other technologies to minimize the chance of detection by the enemy observers. If an ARD is used with the MMO it should be removable and compatible with the LFU.

3.6.13.2 User signature. The MMO shall not increase the visual, aural, or thermal signature of the Soldier during operation.

3.6.13.3 Light emission. The MMO will prevent the emission of visible light detectable by the unaided human eye at a distance greater than or equal to 50 meters under all scene lighting conditions within the region of plus/minus 20 degrees in front of the weapon (T), 10 meters 360 degrees around the weapon (O).

3.6.13.4 Resolution with ARD. The ARD, if any, shall not change the resolving power of the MMO by more than two arc seconds.

3.6.13.5 Transmission with ARD. The ARD, if any, shall not shall not decrease white light transmission by more than 5 percent.

3.6.14 Zero repeatability. The MMO shall exhibit consistent zero within the specified limits when removed from and reattached to its host weapon system.

3.6.14.1 M240B/H/L. 0.5 milliradian (T) 0.25 milliradian (O)

3.6.14.2 M2/M2A1. 0.5 milliradian (T) 0.25 milliradian (O)

3.6.14.3 Mk19. 0.25 milliradian

3.6.15 Zero retention. The MMO shall retain consistent zero within the listed limits when the host weapon system is cycled 30 times.

3.6.15.1 M240B/H/L. 0.5 milliradian (T) 0.25 milliradian (O)

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.6.15.2 M2/M2A1. 0.5 milliradian (T) 0.25 milliradian (O)

3.6.15.3 Mk19. 0.25 milliradian

3.6.16 Boresighting adjustments. The MMO shall have the capability to be boresighted to the host weapon without the use of special tools, using the existing laser bore light, and zeroed using standard zeroing procedures.

3.6.16.1 Magnified optic. The aiming system within the magnified optic shall have a reference aim point that allows the user the ability to adjust their point of aim based on a ballistic solution of the host weapons.

3.6.16.1.1 Caps. The MMO shall provide azimuth and elevation turret cap that secures their positions to prevent unintended operation.

3.6.16.1.2 Adjustment increment. The MMO shall be adjustable in 0.25 mil increments in both azimuth and elevation using a dial with audible and tactile clicks.

3.6.16.1.3 Adjustment range. The MMO must be capable of zeroing it host weapon systems.

3.6.16.1.3.1 M240B/H/L. “Laser” bore sighting at 10 meters, and confirming zero at 500 meters.

3.6.16.1.3.2 M2/M2A1. Field zero at 300-500 meters.

3.6.16.1.3.3 Mk19. “laser” bore sighting at 10 meters, and confirming zero at 400-500 meters.

3.6.16.2 Reflexive fire optic. The reflexive or unity (1X) optic shall conform to the following boresight adjustment requirements.

3.6.16.2.1 Caps. The MMO shall provide azimuth and elevation turret cap that secures their positions to prevent unintended operation.

3.6.16.2.2 Adjustment range. The MMO must be capable of zeroing using a “laser” bore sight at 10 meters as done with the M68 CCO (Close Combat Optic) (T) and a confirming zero at 100 meters (O).

3.6.17 Reticle construction. The reticle(s), or aiming system within the optic, will have a reference aim point that allows Soldiers the ability to adjust their point of aim based on a ballistic solution of standard service ammunition.

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3.6.17.1 Weapon/ammunition. The MMO reticle(s), or aiming system will address the listed weapon systems and the respective ammunition.

a. M2/M2A1.

3.6.17.2 Magnified optic.

3.6.17.2.1 Reticle pattern. The reticle(s), or aiming shall have a milliradian scale or additional reticle that will assist users in azimuth, elevation, estimating range and engaging targets at various ranges.

3.6.17.2.2 Etched and fill. If the reticle is of the embedded type, it must be embedded

0.25±0.025 cm into the objective end of the glass.

3.6.17.2.3 Sandwich. If the reticle is not of the embedded type, the reticle shall be a two piece cemented type consisting of a reticle and a cover plate. The cover plate shall have a thickness of 0.25±0.025 cm. The index of refraction of the cement used shall match the indices of the glass within ±0.001.

3.6.17.3 Reflex or unity power (1X) optic (viewing window).

3.6.17.3.1 Reticle hue. The dot shall appear red (defined as light with the peak wavelength in the 630 to 670 nm range). The hue must be compatible (including target and dot visibility) with 3rd generation, image intensifier systems, with the three wavelength rejection bands of the LFU, and with Ballistic/Laser Protective Spectacles (BLPS).

3.6.17.3.2 Reticle illumination. The MMO shall include a manually adjustable brightness that will allow the gunner to select reticle brightness for use with image intensified (I2) devices on the low end and in full sun brightness on the high end, based on light conditions.

3.7 Environmental requirements.

3.7.1 Drop.

3.7.1.1 Drop (operational). Drop from three-foot height onto packed dirt.

3.7.1.1.1 Without attachments. The MMO, out of the protective case, shall withstand the drop without attachments.

3.7.1.1.2 With attachments. The MMO with an ARD, if required by design, and LFU attached shall withstand the drop, remain attached and fully functional.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.7.1.2 Drop (transit). The MMO, in its protective case, shall withstand a four-foot drop onto a concrete substrate covered by two-inch thick plywood.

3.7.2 High temperature.

3.7.2.1 High Temperature (operational). The MMO with and without any attachments shall be operational with no performance degradation upon exposure to a temperature of 49°C as specified in MIL-STD-810G, Method 501, Procedure II.

3.7.2.2 High temperature (storage). The MMO shall not incur damage or performance degradation following exposure to a temperature of 71°C for no less than (seven) 7, 24 hour cycles as specified in MIL-STD-810G, Method 501, Procedure I.

3.7.3 Low temperature.

3.7.3.1 Low temperature (operational). The MMO with and without any attachments shall operational with no performance degradation upon exposure to a temperature of -40°C (T) as specified in MIL-STD-810G, Method 502, Procedure II.

3.7.3.2 Low temperature (storage). The MMO shall not incur damage or performance degradation following exposure to a temperature of -51°C for no less than 24hours as specified in MIL-STD-810G, Method 502, Procedure I.

3.7.4 Humidity. The MMO with and without any attachments shall remain fully operational after being exposed to and stabilized at +49°C and 95% RH.

3.7.5 Water immersion. The MMO with and without any attachments shall remain operational after being immersed in fresh or salt water at a depth of 1 meter for a period of one hour (T) 2 hour (O), as specified in MIL-STD-810, Method 512, Procedure I.. Sight shall be conditioned to 10 °C [18 °F] above water temperature prior to immersion. No moisture of fogging shall be observed.

3.7.6 Electromagnetic Environmental Effects (E3). The MMO shall comply with the below:

3.7.6.1 DoDI Compliance. The MMO will comply with DoD policies on E3 in accordance with the DoDI 3222.03. The MMO will not generate EM emissions that interfere with, or degrade the performance of existing platform systems, equipment, weapons, ordnance, sensors, and communications subsystems.

3.7.6.2 EMP. The MMO will operate after an Electromagnetic Pulse (EMP) event without effect or disturbance to mission critical functions.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.7.6.3 MIL-STD-464A compliance. The MMO shall not cause interference with other electronic equipment, and shall not be affected when operated in close proximity to other equipment, or interfere with or degrade the performance of existing platform/vehicle and dismounted operator instrumentation, weapons, sensors, or communications subsystems operating within its range, in accordance with MIL-STD-464A.

3.7.6.4 E3 from external sources. The MMO while attached to the host weapon will be exposed to a variety of friendly (US Army, other Service, combined, multinational) and enemy emitters. MMO will be E3 compatible among all components and sufficient to withstand Electro-Magnetic Interference (EMI) from all sources, under normal operating conditions, without degradation in performance. The MMO must comply with the provisions required by the appropriate DoD Directives and other applicable Military Standards and Standardization Agreements (STANAGs) related to Hazards of Electromagnetic Radiation to Ordnance (HERO), Hazard of Electromagnetic Radiation to Fuel (HERF), and Hazard of Electromagnetic Radiation to Personnel (HERP).

3.7.7 Gunfire pyroshock. The MMO shall remain fully operational and retain its previously established line of sight within 1 (one) MOA (Minute of Angle) after being subjected to the following shock tests.

3.7.7.1 M240B/H/L and M2/M2A1 pyroshock. 3000 longitudinal plane shocks at 400G to

500G acceleration with a time duration of 0.7 to 1.1 milliseconds.

3.7.7.2 Mk19 pyroshock. 500 longitudinal plane shocks at 800G to 900G acceleration with a time duration of 18 to 19 milliseconds.

3.7.8 Vibration. The MMO shall remain fully operational and retain its previously established line of sight within 1 (one) MOA (Minute Of Angle) after being subjected to the following vibration tests.

3.7.8.1 Wheeled vehicle vibration. Composite wheeled vehicle vibration profile in 3 orthogonal axes, 40 minutes per axis, total exposure of 120 minutes.

3.7.8.2 Tracked vehicle vibration. Tracked vehicle vibration profile in 3 orthogonal axes, 20 minutes per axis, total exposure of 60 minutes.

3.7.8.3 Helicopter vibration. Helicopter (General) vibration profile in 3 orthogonal axes, 2 hours per axis, total exposure of 6 hours.

3.7.9 Environmental durability. The MMO shall be designed so that the coating/finish prevents corrosion in all environments and weather conditions, including marine, high humidity, rain, desert conditions and freezing precipitation.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

3.7.9.1 Salt fog. The MMO shall not incur damage or performance degradation following exposure to one 48-hour salt fog period as specified in MIL-STD-810G, Method 509.

3.7.9.2 Fungus. The MMO shall be built with material or surface treatment to resist fungus growth. The unpackaged MMO shall have no detrimental effects after exposure to fungal growth as specified in MIL-STD-810G, Method 508.

3.7.9.3 Sand and dust. The MMO with lens covers (T) without lens covers (O) shall not incur damage or performance degradation following exposure to sand and dust as specified in MIL-STD-810G, Method 510, Procedures I and II.

3.7.9.4 Sealing and purging. All internal optical areas of the MMO shall be purged with dry nitrogen. The sight unit shall be sealed such that the interior is moisture-free after purging. Dew point shall be no greater than the low operating temperature.

3.7.9.5 Low pressure (altitude). The MMO sight shall not incur damage or performance degradation following exposure to low pressure of 5.4 psi for a period of 8 hours as specified in MIL-STD-810G, Method 500, Procedure I. The seals shall remain intact and there shall be no nitrogen loss.

3.7.9.7 Chemical resistance. The MMO shall be resistant to damage when subjected to incidental contact with the following chemicals.

a) Lubricant, semi-fluid, auto. wpns (item #4 of TOP 3-2-609, Table 1)

b) Lubricant, cleaner, & preservative (item #6 of TOP 3-2-609, Table 1)

c) Insect Repellent (item #11 of TOP 3-2-609, Table 1)

d) Lubricating oil, weapons (item #19 of TOP 3-2-609, Table 1)

3.8 Support and ownership requirements.

3.8.1 Personal Protective Equipment (PPE) compatibility. The MMO shall be capable of being operated and manipulated while the Soldier is wearing issued PPE. PPE includes but is not limited to Light Weight Helmet, Modular Integrated Communications Helmet (MICH), Advanced Combat Vehicle Crewman (ACVC) helmet, Modular Tactical Vest, Gloves (work/utility), and Protective Eyewear.

3.8.2 Gloves. The MMO shall be capable of being operated and manipulated while the

Soldier is wearing and extreme cold weather gear and/or MOPP Level IV.

3.8.3 Storage case. The MMO will have a soft, water resistant carrying case that will keep contents dry and protected from incidental damage. The case shall provide storage space for the MMO with lens covers, LFU, ARD (if any), mount assembly, batteries, operator’s manual, and lens cleaning material and Technical Manual. The color of the carrying case shall be neutral (non-black) dull non-reflective, tan. The carrying case attachment shall be compatible with their contractors; Export Controlled; March 2017. Other requests for this document shall be standard issue All-Purpose Lightweight Carrying Equipment (ALICE) and Modular Lightweight Load-bearing Equipment (MOLLE) attachments.

3.8.4 Reliability. The MMO shall have the following reliability metrics.

3.8.4.1 M240B/H/L. MRBEFFNOC (Mean Rounds between Essential Function Failures

Non-Operator Correctable) = 5153 rounds and (Mean Time between Essential Function Failures Non-Operator Correctable) MTBEFFNOC = 1011 hours (T), MRBEFFNOC = 6697 rounds and MTBEFFNOC = 1313 hours (O).

3.8.4.2 M2/M2A1. MRBEFFNOC = 5153 rounds and MTBEFFNOC = 1011 hours (T), MRBEFFNOC = 6697 rounds and MTBEFFNOC = 1313 hours (O).

3.8.4.3 Mk19. MRBEFFNOC = 5153 rounds and MTBEFFNOC = 1011 hours (O).

3.8.5 Operational availability (OA). The MMO shall have the following operational availability metrics.

3.8.5.1 M240B/H/L. not less than OA = 95% (T), OA = 98% (O).

3.8.5.2 M2/M2A1. not less than OA = 95% (T), OA = 98% (O).

3.8.5.3 Mk19. not less than OA = 98%

3.8.6 Maintainability. The MMO shall have the following operational maintainability metrics.

3.8.6.1 Maximum Repair Time & Maintenance Ratio (MTTR). Maximum Repair Time =

0.6 Hours @ 95% Probability & MR ≥ 0.00020 Mean Maintenance Man-Hours per Equipment Operating Hour (T).

3.8.6.2 Maximum Repair Time & Maintenance Ratio. Maximum Repair Time = 0.46 Hours

@ 90% Probability & MR < 0.00020 Mean Maintenance Man-Hours per Equipment Operating Hour (O).

3.8.7 Cleanliness and optical quality. The MMO shall be constructed to provide a clear image free of glare from non-optical surfaces. The optical parts and entire interior of the MMO shall be clean and free from dirt, dust, grease, and other foreign matter.

3.8.8 Marking. The MMO shall meet the following marking requirements.

a) Each MMO shall have a combination of traditional and unique identification (UID) markings, in accordance with MIL-STD-130, to facilitate accountability (T).

b) Marking shall be accessible without removing the MMO from its weapon mount (T).

their contractors; Export Controlled; March 2017. Other requests for this document shall be

c) The UID label shall be applied to the serialized component and not negatively affect the MMO’s protective finish and shall withstand all requirements of this document (T).

d) The MMO identification shall be able to be read by automated systems (O).

e) Either manufacture’s logo or name is permitted as part of the marking. (T)

f) Marking shall be located on the user’s side of the MMO (T)

g) Marking shall be nonreflective (T)

3.8.9 Workmanship. The MMO shall not have any sharp edges, discontinuities, or pinch points that could result in injury to the Soldier. Workmanship shall be of a quality consistent with the highest existing instrument production standards and practices. All finished surfaces shall be protected against corrosion or damage during manufacturing prior to delivery. All fins and other excess material shall be removed from castings and forgings. All surfaces, including threads, shall be free from burrs and sharp edges. All material shall be sound, of uniform quality and condition, and free from seems, cracks and other defects which may adversely affect the strength, to all assemblies, especially where required for proper sealing and security. Material shall not be treated in any manner to conceal defects therein. Welding or other means for the repair of defects in materials shall not be performed unless specifically authorized by the contracting officer. In addition, the provisions of MIL-HDBK-454, Guideline 9 shall apply where applicable. Workmanship shall be as specified in MIL-F-13926B.

3.9 Adhesives. All adhesives used for glass to glass interfaces shall be in compliance with

MIL-PRF-13830 Appendix A. All adhesives used for glass to metal interfaces shall be in compliance with MIL-PRF-13830 Appendix D.

3.10 Ozone depleting substances (ODS). The production process of the MMO and the subsequent end product and by-products shall not generate or contain any government listed ODSs.

3.11 Hazardous materials. The production process of the MMO and the subsequent by products shall not generate or contain any government listed Hazardous Materials.

3.12 Recycled, recovered, or environmentally preferable materials. Recycled, recovered, or environmentally preferable materials should be used to the maximum extent possible provided that the material meets or exceeds the operational and maintenance requirements, and promotes economically advantageous life cycle costs.

their contractors; Export Controlled; March 2017. Other requests for this document shall be

4 VERIFICATION

Table 1. Requirement/Verification Cross-Reference Matrix

Method of verification Classes of verification 1 – Analysis 2 – Demonstration 3 – Examination 4 – Test

A – Design verification B – First article C – Conformance

Section 3 Requirement

Description Verification

Methods Verification

Class Section 4

Verification 1 2 3 4 A B C

3.2 Design Verification Test X X X X X 4.2

3.3 First Article Test X X X X X X 4.3

3.4 Conformance Test X X X X X X 4.4

3.5.1.1 M240 P(h) X X X X 4.5.1.1

3.5.1.2 M2 P(h) X X X X 4.5.1.2

3.5.1.3 Mk19 P(h) X X X X 4.5.1.3

3.5.2 Target acquisition time at 1000m X X X X 4.5.2

3.5.2.1 M240 target acquisition X X X X 4.5.212

3.5.2.2 M2 target acquisition X X X X 4.5.2.2

3.5.2.3 Mk19 target acquisition X X X X 4.5.2.3

3.5.3.1 Material restrictions X X 4.5.3.1

3.5.3.2 Allowable batteries X X X 4.5.3.2

3.5.3.3 Battery compartment X X X X 4.5.3.3

3.5.3.3.1 Battery Compartment Cover X X X 4.5.3.3.1

3.5.3.4 Battery life X X X 4.5.3.4

3.5.3.4.1 Low Temp Life X X 4.5.3.4.1

3.5.3.5 Battery life indicator X X X 4.5.3.5

3.5.3.6 Battery replacement X X X 4.5.3.6

3.5.3.7 Reverse polarity protection X X X X 4.5.3.7

3.5.4 Magnified optic X X X 4.5.4

3.5.4.1 Magnification X X X 4.5.4.1

3.5.4.2 Resolution X X X X 4.5.4.2

3.5.4.3 Field of view X X X 4.5.4.3

3.5.4.4 Parallax X X X X 4.5.4.4

3.5.4.5 Eyepiece focus X X X 4.5.4.5

3.5.4.6 Exit pupil diameter X X X 4.5.4.6

3.5.5 Reflexive fire capability X X 4.5.5

3.6.1 Over Tightening X X X 4.6.1

3.6.2 Special Tools X X 4.6.2

3.6.2.1 Attachments X X 4.6.2.1

their contractors; Export Controlled; March 2017. Other requests for this document shall be

1 – Analysis 2 – Demonstration 3 – Examination 4 – Test

A – Design verification B – First article C – Conformance

Section 3 Requirement

Description Verification

Methods Verification

Class Section 4

Verification 1 2 3 4 A B C

3.2 Design Verification Test X X X X X 4.2

3.3 First Article Test X X X X X X 4.3

3.4 Conformance Test X X X X X X 4.4

3.6.3 Laser safety X X X X X X 4.6.3

3.6.4 Eye relief X X X 4.6.4

3.6.5 External coatings/covers X X X 4.6.5

3.6.5.1 Lens/dust covers X X X X 4.6.5.1

3.6.5.2 Lens cover security X X X X 4.6.5.2

3.6.5.3 Lens cover removal X X X 4.6.5.3

3.2.5.4 Lens cover interference X X X X 4.6.5.4

3.6.5.5 Lens cover loss X X X X 4.6.5.5

3.6.6 Tracer compatibility X X X 4.6.6

3.6.7.1 Interference X X 4.6.7.1

3.6.7.2 Iron sights X X X 4.6.7.2

3.6.7.3 Gunners protection kit X X X 4.6.7.3

3.6.7.4 Attachment X X X 4.6.7.4

3.6.7.5 MILES X X X 4.6.7.5

3.6.7.6 STORM X X X 4.6.7.6

3.6.7.7 Ports X X X 4.6.7.7

3.6.8 Optical surface coatings X X X X 4.6.8

3.6.9 Laser rejection coatings X X X X 4.6.9

3.6.10 Laser filter unit interface X X X X 4.6.10

3.6.10.1 Rejection band 1 X X X 4.6.10.1

3.6.10.2 Rejection band 2 X X X 4.6.10.2

3.6.10.3 Rejection band 3 X X X 4.6.10.3

3.6.11.1 Lambda 1 or 2 laser damage X X X 4.6.11.1

3.6.11.2 Lambda 3 laser damage X X X 4.6.11.2

3.6.11.3 Lambda 8 or 9 laser damage X X X 4.6.11.3

3.6.12.1 Photopic transmission X X X 4.6.12.1

3.6.12.2 Scotopic transmission X X X 4.6.12.2

3.6.13.1 ARD X X X X 4.6.13.1

3.6.13.2 User signature X X 4.6.13.2

3.6.13.3 Light emission X X 4.6.13.3

their contractors; Export Controlled; March 2017. Other requests for this document shall be

2 – Demonstration 3 – Examination 4 – Test

A – Design verification B – First article C – Conformance

Section 3 Requirement

Description Verification

Methods Verification

Class Section 4

Verification 1 2 3 4 A B C

3.2 Design Verification Test X X X X X 4.2

3.3 First Article Test X X X X X X 4.3

3.4 Conformance Test X X X X X X 4.4

3.6.13.4 Resolution with ARD X X X 4.6.13.4

3.6.13.5 Transmission with ARD X X X 4.6.13.5

3.6.14 Zero repeatability X X X X X 4.6.14

3.6.15 Zero retention X X X X 4.6.15

3.6.16 Boresight adjustment X X 4.6.16

3.6.16.1 Magnified optic X X X 4.6.16.1

3.6.16.1.1 Caps lock X X 4.6.16.1.1

3.6.16.1.2 Adjustment increment X X X 4.6.15.1.2

3.6.16.1.3 Adjustment range X X X 4.6.16.1.3

3.6.16.2.1 Unity optic caps lock X X X 4.6.16.2.1

3.6.16.2.2 Unity optic adjustment range X X 4.6.16.2.2

3.6.17 Reticle Construction X X X X 4.6.17

3.6.17.1 Weapon/ammo X X X X 4.6.17.1

3.6.17.2 Magnified optic reticle X X X X 4.6.17.2

3.6.17.3 Reflex optic dot X X X X 4.6.17.3

3.7.1.1 Operational drop X X X 4.7.1.1

3.7.1.2 Transit drop X X X 4.7.1.2

3.7.2.1 Operational high temp X X X X 4.7.2.1

3.7.2.2 Storage high temperature X X X 4.7.2.2

3.7.3.1 Operational low temp X X X 4.7.3.1

3.7.3.2 Storage low temperature X X X 4.7.3.2

3.7.4 Humidity X X X 4.7.4

3.7.5 Water immersion X X X X 4.7.5

3.7.6 E3 environment X X 4.7.6

3.7.7.1 M240/M2 pyroshock X X X X 4.7.7.1

3.7.7.2 Mk19 pryoshock X X X X 4.7.7.2

3.7.8.1 Wheeled vehicle vibration X X X 4.7.8.1

3.7.8.2 Tracked vehicle vibration X X X 4.7.8.2

3.7.8.3 Helicopter vibration X X X 4.7.8.3

3.7.9.1 Salt fog X X X 4.7.9.1

their contractors; Export Controlled; March 2017. Other requests for this document shall be

2 – Demonstration 3 – Examination 4 – Test

A – Design verification B – First article C – Conformance

Section 3 Requirement

Description Verification

Methods Verification

Class Section 4

Verification 1 2 3 4 A B C

3.2 Design Verification Test X X X X X 4.2

3.3 First Article Test X X X X X X 4.3

3.4 Conformance Test X X X X X X 4.4

3.7.9.2 Fungus X X 4.7.9.2

3.7.9.3 Sand and dust X X X 4.7.9.3

3.7.9.4 Sealing and purging X X X 4.7.9.4

3.7.9.5 Altitude X X X 4.7.9.5

3.7.9.7 Chemical resistance X X X 4.7.9.7

3.8.1 PPE compatibility X X X 4.8.1

3.8.2 Gloves X X X 4.8.2

3.8.3 Storage Case X X X 4.8.3

3.8.4.1 M240 reliability X X X X X X 4.8.4.1

3.8.4.2 M2 reliability X X X X X X 4.8.4.2

3.8.4.3 Mk19 reliability X X X X X X 4.8.4.3

3.8.5.1 M240 availability X X X X X 4.8.5.1

3.8.5.2 M2 availability X X X X X 4.8.5.2

3.8.5.3 Mk19 availability X X X X X 4.8.5.3

3.8.6.1 Maintainability (T) X X X X 4.8.6.1

3.8.6.2 Maintainability (O) X X X X 4.8.6.2

3.8.7 Cleanliness and optical quality X X X X X 4.8.7

3.8.8 Marking X X X X X 4.8.8

3.8.9 Workmanship X X X X X X 4.8.9

3.9 Adhesives X X 4.9

3.10 Ozone Depleting Substances X X 4.10

3.11 Hazardous Material X X 4.11

4.1 Classification of inspections. The inspection requirements specified herein are classified as follows:

a. Design verification (see paragraph 4.2)

b. First article (see paragraph 4.3)

c. Conformance (see paragraph 4.4) their contractors; Export Controlled; March 2017. Other requests for this document shall be

4.2 Design verification. A number of prototype or preproduction test units, as specified by the contract, will be provided and put through the design verification procedures indicated in Table 1. The specified design verifications are performed to assure that the system has the required features and performance capabilities designed into it. This assurance, when attained through the specified verification procedures, assumes that the samples tested represent the distribution of weapon systems that are producible across the full range of limits of the contractor’s current technical data, processes and materials. Results of the test will be used in determination of reliability, durability, possible product improvements and spare parts required.

This test sequence shall be developed, performed and documented by the Government.

4.2.1 Design verification test rejection. If any sample system fails to comply with any design verification requirement/s, the design shall be rejected. The design shall not proceed into First Article or Production. No change to the rejection decision shall be considered without a formally documented investigation into the cause and corrective/preventative actions needed to preclude reoccurrence.

4.3 First article inspection. As specified in the contract, a sample of the MMO systems shall be subjected to first article inspection in accordance with Table I; for the applicable weapons platform requirements. All test units will meet the associated requirements of this specification.

This test…

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