Attachment_6_PRD.pdf

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Chemical Surface Detector (CSD) Federal contract opportunity
Solicitation number
W911SR-16-R-0001
Issued by
Department of the Army Materiel Command Army Contracting Command Aberdeen Proving Ground

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Attachment 6 PRD

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Exhibit_A_CSD_CDRLS_FINAL_amendment_4.pdf PDF
CSD_Amendment_0004.pdf PDF
W911SR-16-R-0001-0003_FINAL.pdf PDF
W911SR-16-R-0001-0002.pdf PDF
CSD_CDRLS_20160525_FINAL.docx DOCX document
Cost_Proposal_Template _One_Period_of_Performance.xlsx XLSX spreadsheet
W911SR-16-R-0001-0001.pdf PDF
CSD_RFP_Questions_and_Answers_19MAY2016.pdf PDF
Attachment_1_DD_Form_254_Contract_Security.pdf PDF
Attachment_9_JPEO_CBD_CIL.pdf PDF
W911SR-16-R-0001.pdf PDF
Attachment_5_Cost_Proposal_Template.xlsx XLSX spreadsheet
Attachment_8___CSD_Past_Performance_Questionnaire.docx DOCX document
Attachment_2_Facility_Clearance_Sponsorship_Form.pdf PDF
Attachment_3_CSD_ILA.xlsx XLSX spreadsheet
Exhibit_A__CSD_CDRLS_DD_FORM_1423.pdf PDF
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PERFORMANCE REQUIREMENTS DOCUMENT

FOR THE

CHEMICAL SURFACE DETECTOR (CSD)

Prepared by:

JPM NBC Contamination Avoidance

Aberdeen Proving Ground, MD 21010-5424

SUBMITTED BY: __________________________ DATE: __________

Mark A. Myers

System Engineer

NBCRV Sensor Suite Team

APPROVED FOR USE

AS FUNCTIONAL

BASELINE BY: __________________________ DATE: __________

LTC Timothy W. Klenske

Joint Product Manager

NBC Reconnaissance and Platform Integration

DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited.

1.0 SCOPE

1.1 Identification.

This document encompasses the performance requirements and verification methods of the Chemical Surface Detector (CSD). This document also defines the interfaces between the CSD, communications systems, power sources, and platform.

1.2 System overview.

The CSD is intended to replace the Dual Wheel Sampling System (DWSS), the current liquid/ground contamination sampler on the Stryker Nuclear Biological Chemical

Reconnaissance Vehicle (NBCRV). The CSD shall provide a near real-time, on-the-move capability to detect Chemical Warfare Agents (CWA), Toxic Industrial Chemicals

(TIC), and other chemical agents in solid and liquid forms. The primary system functions of the CSD are to detect to warn personnel. The detection function shall continually interrogate the surface, provide data for processing, and apply algorithms to the data to detect the contaminant which is present. The warning function shall display detection information locally and store the data in a format compatible for transmission to external communication systems.

2.0 APPLICABLE DOCUMENTS

2.1 General.

The documents listed in this section are specified in sections 3, 4 and 5 of this specification. This section does not include documents 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 documents cited in sections 3, 4, or 5 of this specification, whether or not they are listed here.

2.2 Government documents.

2.2.1 Specifications, standards, and handbooks.

The following specifications, standards, and handbooks 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.

DEPARTMENT OF DEFENSE INSTRUCTIONS

DoDI 6055.11 Protection of DoD Personnel from Exposure to

Radiofrequency Radiation and Military Exempt Lasers

DEPARTMENT OF DEFENSE STANDARDS

MIL-STD-130 Identification Marking of U.S. Military Property

MIL-STD-461 Requirements for the Control of Electromagnetic interference Characteristics of Subsystems and Equipment

MIL-STD-464 Electromagnetic Environmental Effects for Systems

MIL-STD-810 Environmental Engineering Considerations and Laboratory

Tests

MIL-STD-1275 Characteristics of 28 Volt DC Electrical Systems in

Military Vehicles

MIL-STD-1425 Safety Design Requirements for Military Lasers and

Associated Support Equipment

MIL-STD-1472 Human Engineering

MIL-STD-1474 Noise Limits

MIL-STD-1916 Preferred Methods for Acceptance Product

MIL-STD-2169 High Altitude Electromagnetic Pulse (HEMP) Environment

DEPARTMENT OF DEFENSE HANDBOOKS

MIL-HDBK-759 Human Engineering Design Guidelines

MIL-HDBK-781 Reliability Test Methods, Plans, and Environments for

Engineering Development, Qualification, and Production

DEPARTMENT OF DEFENSE DETAILS SPECIFICATIONS

MIL-DTL-38999 Connectors, Electrical, Circular, Miniature, High Density, Quick Disconnect (Bayonet, Threaded, And Breech

Coupling), Environment Resistant, Removable Crimp And

Hermetic Solder Contacts, General Specification For

(Copies of these documents are available online at quicksearch.dla.mil or from the

Standardization Document Order Desk, 700 Robbins Avenue, Building 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.

U.S. ARMY DEVELOPMENTAL TEST COMMAND TEST OPERATIONS

PROCEDURE (TOP)

TOP 8-2-111 Nuclear, Biological, and Chemical (NBC) Survivability, Small Items of Equipment

(Copies of this document are available from Commander, U.S. Army Developmental

Test Command, ATTN: CSTE-DTC-TT, Aberdeen Proving Ground, MD 21005 -5055.)

CODE OF FEDERAL REGULATIONS (CFR)

21 CFR 1040 Performance Standards for Light Emitting Products

40 CFR PART 261 Identification and Listing of Hazardous Waste

(Copies of this document are available online at access.gpo.gov/nara/cfr or from the

Superintendent of Documents, U.S. Government Printing Office, North Capital & “H”

Streets, N.W., Washington, DC 20402 --- 0002.)

JOINT PROGRAM EXECUTIVE OFFICE FOR CHEMICAL AND BIOLOGICAL

DEFENSE (JPEO-CBD)

JPEO CBD Software Support Activity (SSA) Common Chemical, Biological, Radiological, Nuclear (CBRN) Sensor Interface (CCSI), Version 1.1, Volumes I-III

(CCSI documents are available online at jpeocbd.osd.mil/packs/Default.aspx?pg=860.)

2.3 Non-Government documents.

The following documents form a part of this document to the extent specified herein.

AMERICAN NATIONAL STANDARDS INSTITUTE

ANSI Z136.1 Safe Use of Lasers

2.4 Order of precedence.

Unless otherwise noted herein or in the 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.

http://www.access.gpo.gov/nara/cfr

3.0 REQUIREMENTS

The CSD shall conform to the requirements listed in this section (Section 3) and shall be verified in accordance with Section 4. A threshold requirement is defined as a sentence with a form of the verb “shall.” Where applicable, an objective requirement immediately follows the threshold; the objective requirement is bound by a set of braces {}. The definitions in this specification apply only to this specification and are the determining factors(s) when interpreting any word or combination(s) of words.

3.1 System description.

3.1.1 Sensor.

The CSD shall include a near real-time, on-the-move sensor that detects {and identifies} chemicals present on surfaces. Sensor components may be located inside or outside of the host platform. The sensor shall operate during the day time and night time. The sensor shall be designed using the Line Replaceable Unit (LRU) concept.

3.1.2 Operator Display Unit.

The CSD shall include an Operator Display Unit (ODU) to allow local control of the sensor, warn the operator of detection/identification results, and provide the operator system information. The ODU shall be a LRU of the CSD.

3.2 Interface, installation, and interoperability requirements.

3.2.1 Interface with host platform.

The interface features between the CSD and the host platform shall be as follows:

3.2.1.1 The CSD shall interface with the host platform's Central Data Processing Unit

(CDPU). The interface to the CDPU shall provide the capability to control the CSD from the crew surveyor and commander workstations.

3.2.1.2 The CSD shall comply with the Common Chemical, Biological, Radiological, Nuclear (CBRN) Sensor Interface (CCSI).

3.2.1.3 The integration, installation, and removal of the CSD shall make maximum use of existing ports, orifices, and other physical platform modifications and require no significant modifications to the Stryker NBCRV platform {and require no modifications to the Stryker NBCRV platform}. Examples of significant modifications include:

disrupting the structural integrity of the platform, modification or redistribution of the platform’s pneumatic or mechanical lines, or modifications that reduce existing capabilities of the Stryker NBCRV platform.

3.2.1.4 CSD components which are mounted outside or extend outside of the vehicle platform shall not interfere with other platform capabilities.

3.2.1.5 {The CSD shall relay the time of interrogation and time of detection to the host platform’s CDPU.}

3.2.2 Physical constraints.

3.2.2.1 Dimensions.

3.2.2.1.1 The combined volumes of all CSD components installed inside the platform shall not exceed 8 ft3.

3.2.2.1.2 CSD components which are inside the NBCRV platform shall be installable and removable through the host platform’s rear door.

3.2.2.2 Weight.

3.2.2.2.1 The total sensor weight, including springs, panels, fittings, and mount/shock absorption system shall not exceed 210 lbs. {The weight of the sensor, not including springs, panels, fittings, and mount/shock absorption system shall not exceed 10 lbs.}

3.2.2.2.2 The weight of the ODU shall not exceed 8 {6} lbs.

3.2.3 Electrical interface.

3.2.3.1 Power source.

The CSD shall operate on standard military vehicle power per MIL-STD-1275

Characteristics of 28 Volt DC Electrical Systems in Military Vehicles and shall provide built-in noise, over-voltage, and transient suppression.

3.2.3.2 Power and data connections.

The CSD power and data connections shall use standard military connectors for external interfaces.

3.3 Operating requirements.

The CSD shall provide the following functional, performance, and operational capabilities.

3.3.1 Functional modes.

The CSD shall accommodate each of the functional modes described in Table 1. In addition, the CSD shall meet the following requirements:

3.3.1.1 The CSD shall take no more than 20 {5} minutes to complete Start-up.

3.3.1.2 The CSD shall take no more than 30 {15} seconds to switch between Standby, Operation, and Training modes.

Table 1: CSD Functional Modes Mode Description

Start-up The Start-up mode shall allow CSD hardware and software to warm up, run built-in-tests (BIT) with diagnostics, and calibrate. This mode shall continue until the CSD reaches stable conditions and operating temperatures which are within operating limits. The system shall notify the operator of the pass/fail status of any components. If any failure occurs, the system shall notify the operator of the failure. When all start up routines and tests are completed the system will enter Standby mode.

Standby In Standby mode, the CSD shall be energized and ready for input by the operator. A local or remote operator shall be able to place the system into

Operation, Training, or Off modes from standby.

Operation During Operation mode, the CSD shall be capable of automatically detecting the chemicals identified in this specification, alerting the operator of the presence of one or multiple chemicals, storing the identification information, and reporting the identification information to the operator and attached

CDPU. This mode will periodically check the calibration of the system and recalibrate if necessary. A local or remote operator shall be able to place the system into Off or Standby modes from Operation mode.

Training The Training mode allows in-field user training. The CSD shall be able to accept input from the operator or CDPU to define notional boundaries of a specific chemical or trigger an alarm. When the vehicle is inside these boundaries, the system shall respond as if it actually detected the input chemical. A local or remote operator shall be able to place the system into

Off or Standby modes from Training mode.

Off The CSD shall perform an orderly shutdown when initiated by the operator.

3.3.2 Primary system functions.

3.3.2.1 Contaminant detection.

3.3.2.1.1 The CSD shall detect {and identify} contaminants present on the target surfaces and maximum vehicle speeds given in Table 2.

3.3.2.1.2 The CSD shall not limit the maneuver speeds of the host platform across any of the surfaces given in Table 2.

Table 2: Target Surfaces and Maximum Vehicle Speeds Primary Road

(asphalt and concrete)

40 MPH {60 MPH}

Secondary Road

(gravel and graded dirt)

20 MPH {40 MPH}

Cross-country

(dirt, sand, and vegetation)

10 MPH {15 MPH}

3.3.2.1.3 {The CSD shall operate in such a way that upon a detection alert the host platform will not come into contact with the contaminant.}

3.3.2.1.4 The CSD shall detect {and identify} the CWAs in solid and liquid forms at the alert thresholds listed in Table 3. For CWAs in a liquid phase, assume a median mass diameter of 500 microns (µm).

Table 3: Target CWA List Type Class Common

Name(s)

Chemical Name CAS

Number

Alert

Threshold

(g/m2)

GA Nerve Tabun Ethyl-N-dimethylphosphoramidocyanidate

77-81-6 0.5

GB Nerve Sarin Isopropyl methylphosphonofluoridate

107-44-8 0.5

GD Nerve Soman Pinacolyl methylphosphonofluoridate 96-64-0 0.5

GF Nerve Cyclosarin Cyclohexyl methylphosphonofluoridate, 329-99-7 0.5

VX Nerve VX O-Ethyl-S-(2-diisopropylaminoethyl) methylphosphonothiodate), 50782-69-9 0.5

HD Blister S-Mustard Bis(2-chloroethyl)sulfide 505-60-2 0.5

T Blister T-Mustard Bis-(2-(2-chloroethylthio)ethyl)ether 63918-89-8 0.5

Q Blister Q-Mustard Bis(B-chloroethylsulfide) 3563-36-8 0.5

HN Blister HN1, N-Mustard

2,2'-Dichlorotriethylamine 538-07-8 0.5

L Blister Lewisite Dichloro(2-chlorovinyl)arsine 541-23-3 0.5

CX Blister Phosgene oxime

Dichloroformoxime 1794-86-1 0.5

MD Blister Me-Dick Methyldichloroarsine 593-89-5 0.5

ED Blister Et-Dick Ethyldichloroarsine 598-14-1 0.5

PD Blister Ph-Dick Phenyldichloroarsine 696-28-6 0.5

DM Vomiting Adamsite Diphenylaminochloroarsine 578-94-9 0.5

BZ Incapacitating BZ 3-Quinuclidinyl benzilate, 6581-06-2 0.5

PS Tear Chloropicrin Trichloronitromethane 76-06-2 0.5

CS Tear CS O-chlorobenzylidene 2698-41-1 0.5

CN Tear CN Chloroacetophenone 532-27-4 0.5

CR Tear CR Dibenz(B,F)(1,4)oxazepine 257-07-8 0.5

RFNA Choking Red Fuming

Nitric Acid

Red Fuming Nitric Acid 8007-58-7

0.5

3.3.2.1.5 The CSD shall detect {and identify} the chemicals described in Table 4. For those chemicals exisitng in liquid phase at standard temperature and pressure, assume a median mass diameter of 500 µm.

Table 4: Chemical Physical Properties Physical state

@ standard temperature and pressure

Boiling Point

Range

(°C)

Vapor

Pressure

Range @ 25°C

(Pascals)

Molecular

Weight Range

(g/mole)

Color @ standard temperature and pressure

Alert

Threshold

(g/m2)

1 Liquid 140-250 200-300 200-300 Colorless 0.5

2 Liquid 120-220 10-100 100-200 Colorless 0.5

3 Liquid 140-250 10-100 100-200 Pale yellow to dark brown oily liquid, colorless when pure

0.5

4 Liquid 140-250 10-100 130-250 Colorless when pure

0.5

5 Liquid 310-340 0.01-0.1 190-230 Colorless 0.5

6 Liquid 260-340 0.01-0.1 200-300 White 0.5

7 Liquid 120-220 0.01-1 200-300 Colorless 0.5

8 Liquid 310-340 0.01-0.1 190-230 White crystalline 0.5

9 Solid 300-400

(sublimation)

0.000000001-0 450-500 Pale yellow 0.5

10 Solid 300-400

(sublimation)

0.000000001-0 450-500 White 0.5

11 Solid N/A N/A 15-100 White 0.5

12 Solid N/A N/A 190-230 White 0.5

13 Solid 340

(decomp)

N/A 500-600 White 0.5

3.3.2.1.6 The CSD shall detect {and identify} the TICs in solid and liquid forms at the alert thresholds listed in Table 5. For TICs in a liquid phase, assume a median mass diameter of 500 µm.

Table 5: Target TIC List Chemical Name Physical State at 25°C

CAS

Number

Alert Threshold

(g/m2)

1,1,2,2-Tetrachloroethane Liquid 79-34-5 10

1,2-Dichloroethylene Liquid 540-59-0 10 Acetylene tetrabromide Liquid 79-27-6 10

Acrolein Liquid 107-02-8 10

Acrylonitrile Liquid 107-13-1 10

Aldicarb Solid 116-06-3 10 Allyl Alcohol Liquid 107-18-6 10

Azinphosmethyl Solid 86-50-0 10

Boron Trifluoride Liquid 13319-75-0 10 Bromine Liquid 7726-95-6 10

Chlorine dioxide Liquid 10049-04-4 10

Deltamethrin Liquid 52918-63-5 10 Ethylamine Liquid 75-04-7 10 Ethylene Dibromide Solid 106-93-4 10 Fluorotrichloromethane Liquid 75-69-4 10 Formaldehyde (Formalin solution – 37% Methanol) Liquid 50-00-0 10

Hydrazine (37% Aqueous Solution) Liquid 302-01-2 10

Hydrogen Bromide/Hydrobromic Acid Liquid 10035-10-6 10 Hydrogen Chloride/Hydrochloric Acid Liquid 7647-01-0 10

Hydrogen Cyanide Liquid 74-90-8 10 Hydrogen Fluoride/Hydrofluoric Acid Liquid 7664-39-3 10 Malathion Solid 121-75-5 10

Mercury Liquid 7439-97-6 10 Methyl Hydrazine Liquid 60-34-4 10

Methyl lsocyanate Liquid 624-83-9 10

Molybdophosphoric Acid Solid 12026-57-2 10

Nitric Acid Liquid 7697-37-2 10 o-Anisidine Solid 90-04-0 10

Octamethylpyrophosphoramide (OMPA) Liquid 152-16-9 10 Parathion Liquid 56-38-2 10

Pentachlorophenol Solid 87-86-5 10

Phosphorus Trichloride Liquid 7719-12-2 10

Phosphoryl Trichloride Liquid 10025-87-3 10

Potassium Cyanide Solid 151-50-8 10 Propylene Oxide Liquid 75-56-9 10

Sulfur Trioxide Liquid 7446-11-9 10

Sulfuric Acid Liquid 7664-93-9 10

Tetrachloroethylene Liquid 127-18-4 10 Tetrafluoroboric Acid Liquid 16872-11-0 10 Toluene-2, 4-diisocyanate Solid 584-84-9 10

3.3.2.1.7 The CSD shall detect {and identify} methyl salicylate (MeS) and diethyl malonate (DEM) {and at least one other CWA simulant appropriate to the technology of the CSD} at the alert threshold of 0.5 g/m2

3.3.2.1.8 {Upon detection of a contaminant, the CSD shall relay the ground temperature to the host platform’s CDPU.}

3.3.2.2 Probability of detection.

For the three target surfaces listed in Table 2, the CSD shall meet the probability of detection values given in Table 6 with an 80% confidence level for a contaminated path of 360 ft. A detection is defined as the operator receiving an alert from the CSD when the contaminant is present on the interrogated surface.

Table 6: Probability of Detection Primary Road

(asphalt and concrete)

93%

Secondary Road

(gravel and graded dirt)

90%

Cross-country

(dirt, sand, and vegetation)

85%

3.3.2.3 False alarm rate.

The mean time between false alarms shall be at least 50 {114} hours at the 80% confidence level. A false alarm is defined as the operator receiving an alert from the

CSD when the contaminant is not present on the interrogated surface.

3.3.2.4 Simultaneous monitoring.

The CSD shall be capable of continuous and simultaneous monitoring all of the contaminants listed under 3.3.2.1.

3.3.2.5 Interferant rejection.

The CSD shall detect {and identify} CWAs, TICs, other chemical agents, and simulants in the presence of the battlefield interferants listed in Table 7.

Table 7: Interferants Common Name Description

Calcium Chloride De-icer

Insect Repellent Insect repellent

Fog Oil M56 fog oil residue (MIL-PRF-12070)

Fuller’s Earth Any absorbing, fine grain, naturally occurring earthly substance

Graphite Smoke Graphite smoke residue mixed with fog oil

Ice Frozen water

JP8 Jet petroleum grade 8

LDF Sandia Labs decontamination foam

PBMA Polybutyl methacrylate

PSBA Polystyrene butylacrylate

PSBMA Polystyrene (n) butylmethacrylate

Pure Water HPLC grade water

Road Salt Road salt

RSDL Reactive Skin Decontamination Lotion

SDS M1100 Sorbent Decontamination Solution

Sea Water Simulated ocean water (ASTM D1141)

Sodium Hydroxide Non-standard decontaminant

Sodium Hypochlorite Non-standard decontaminant

STB Supertropical bleach

Used Antifreeze Used antifreeze (ethylene glycol)

Used Motor Oil Used motor oil

3.3.2.6 Warning.

3.3.2.6.1 The CSD shall provide a visual indication and an audible alarm of 50 decibels

(dB) measured at one foot when one or more contaminants listed under 3.3.2.1 has been detected.

3.3.2.6.2 The CSD shall have a means to both override and reset the audible alarm.

3.3.2.6.3 The visual alarm shall identify Coordinated Universal Time (UTC), and identification of unclassified hazard detected.

3.3.2.6.4 If contamination is present on the interrogated surface, the CSD shall provide an alarm within 15 {5} seconds after initial interrogation.

3.3.2.6.5 The CSD shall alarm until an operator acknowledges it locally or from a remote workstation.

3.3.2.7 Special operating features.

3.3.2.7.1 The CSD shall allow an operator, either locally or remotely, to select and deselect chemicals from a pre-programmed list of target contaminants and to view selected chemicals during Operation and Standby modes.

3.3.2.8 Data storage, transfer, software, communications.

3.3.2.8.1 The CSD shall store and maintain data collected during 119 {216} hours of continuous operation.

3.3.2.8.2 The CSD shall collect data including time, date, location of events, alarms, spectral data related to alarms, confidence checks, diagnostic checks, and equipment malfunctions.

3.3.2.8.3 Reserved for possible future requirement.

3.3.2.8.4 The CSD shall accommodate future software upgrades in the field by an operator to add CWA, TIC, other chemical agent, or simulant detection capability and to improve instrument performance. Software upgrades shall take no longer than 45 {10} minutes.

3.3.2.8.5 The CSD ODU shall be capable of providing the operator the: CSD unit identification, firmware versions, threat library versions, consumables life (if applicable), the date and time of last calibration, The ODU shall be capable of providing the operator the detected compound unclassified label, , {time of interrogation}, detection time, error alerts, and internal clock time. Time shall be UTC time.

3.3.2.8.6 The CSD shall provide the capability to download and query available data.

3.3.2.8.7 The operator shall be able to change functional modes (operation, standby, and off), acknowledge alarms, run Built-in-tests, monitor consumables, control audible alarms, change selected chemicals, and transfer detection data, remotely from the platform's integrated CDPU.

3.3.2.8.8 An off-system, post-mission capability to playback data log files shall be provided. This capability shall include the option to apply the detection algorithms.

3.3.2.8.9 The CSD shall be capable of storing classified information in accordance with

National Security Agency (NSA) standards.

3.3.2.8.10 The CSD shall be capable of communicating with an unclassified system in accordance with NSA standards.

3.3.2.9 Power.

The total CSD power consumption at any discrete point in time from Start-up to shutdown shall be no greater than 1000 {800} watts. The average power consumption shall be no greater than 800 {2} watts over the duration of the mission.

3.3.2.10 Start-up time.

The CSD shall be fully mission-capable within 30 {20} minutes with input voltage at 28

VDC when exposed to the operating temperatures given in 3.4.2.

3.4 Environmental conditions.

The CSD shall operate during and after exposure to the specified environments. If the term “survive” or “withstand” is used, the CSD will be powered down and is required to operate only after the exposure.

3.4.1 Storage temperature.

The CSD shall survive storage temperatures between -38F and 185F.

3.4.2 Operating temperature.

The CSD shall operate between -25F and 120F.

3.4.3 Humidity.

The CSD shall operate in the relative humidity range of 5 percent to 95 percent.

3.4.4 Vibration.

The CSD shall operate when subjected to vibration stresses induced while the vehicle platform is on the move.

3.4.5 Shock.

3.4.5.1 The CSD shall survive a 6-inch {30-inch} drop on any corner or face without transit case.

3.4.5.2 The CSD shall withstand induced shock encountered during transport by C-130, rail, sea, and highway while mounted on the host platform.

3.4.6 Fungus.

The CSD shall initialize and operate without degradation during and after exposure to fungus.

3.4.7 Altitude.

The CSD shall operate at altitudes up to 10,000 feet above sea level. The system shall withstand, without preparation, air transport at a cabin pressure equivalent to 15,000 feet above sea level.

3.4.8 Rapid decompression.

The CSD shall survive rapid decompression between 8,000 to 42,000 feet altitudes in 30 seconds.

3.4.9 Blowing dust.

The CSD shall operate after externally mounted components are exposed to blowing dust.

3.4.10 Blowing sand.

The CSD shall operate after external mounted components are exposed to blowing sand.

3.4.11 Salt fog.

The CSD shall operate after externally mounted components are exposed to salt fog.

3.4.12 Solar radiation.

The CSD shall operate when externally mounted components are subjected to solar radiation.

3.4.13 Immersion.

Any externally mounted components of the CSD shall survive water immersion to a depth of three feet.

3.4.14 Blowing rain.

The CSD shall operate when externally mounted components are subjected to blowing rain.

3.4.15 Freezing rain.

The CSD shall operate when externally mounted components are exposed to freezing rain.

3.4.16 Exposure and decontamination.

3.4.16.1 Operation after NBC decontamination.

The CSD shall operate after exposure to at least five surface decontaminating procedures.

3.4.16.2 Chemical absorption.

The CSD materials shall be resistant to chemical penetration and absorption.

3.4.16.3 Corrosion resistance.

The CDS shall not exhibit corrosion when exposed to an operational environment for at least five {ten} years.

3.4.16.4 Exterior finish.

CSD exterior surfaces shall have a non-reflective finish or coating that is free of foreign material such as dust, grease, and oil, and constituents which off-gas at normal operating temperatures.

3.4.17 Fire suppression system

The CSD components mounted inside the platform shall survive use of the platform fire suppression system.

3.4.18 Electromagnetic effects.

3.4.18.1 Electromagnetic interference and compatibility.

The CSD shall meet electromagnetic interference and compatibility requirements in

Table 8 as set forth in MIL-STD-461.

Table 8: Emissions and Susceptibility Requirements

Environment Requirement(s) Notes

Conducted Emissions CE102 (Power Leads)

Conducted

Susceptibility

CS101 (Power Leads)

CS114 (Bulk Cable Injection)

CS115 (Impulse Excitation)

CS116 (Damped Sine Transients)

Note 1

Radiated Emissions RE102 (E-Field) Note 2

Radiated Susceptibility RS103 (E-field) Note 3 Note 1: Use Army Ground limits

Note 2: The frequency range is 2 MHz to 18 GHz; Use Navy Mobile & Army limits

Note 3: The frequency range is 30 MHz to 18 GHz; Use Army Ground limits

3.4.18.2 High-altitude electromagnetic pulse (HEMP).

The CSD shall operate after being exposed to HEMP, in accordance with MIL-STD-

2169.

3.4.18.3 Bonding and grounding.

3.4.18.3.1 CSD bonding and grounding design shall protect personnel from shock, prevent inadvertent ignition of fuel and flammable vapors, and protect of hardware from damage.

3.4.18.3.2 CSD components connected to vehicle power shall be designed with separate power input and power return. The vehicle chassis shall not be used as a power return.

3.4.18.3.3 Vehicle power and signal returns shall be electrically isolated from the CSD chassis.

3.4.18.3.4 The CSD chassis shall be electrically bonded to the vehicle structure. The maximum DC resistance between each chassis and its vehicle ground point shall be less than 1 ohm (Ω).

3.5 Support and ownership requirements.

3.5.1 Availability and Reliability.

3.5.1.1 The material availability (Am) of the CSD shall be at least 0.80 {0.90}

3.5.1.2 The operational availability (Ao) of the CSD shall be at least 0.90 {0.95}.

3.5.1.3 The Mean Time Between Operational Mission Failure (MTBOMF) of the CSD shall be at least 750 {1000} hours at an 80% confidence level.

3.5.2 Maintainability.

3.5.2.1 The CSD Mean Corrective Maintenance Time (MCMT) shall be no greater than

0.50 hour {0.25 hour} at the field level.

3.5.2.2 The CSD Mean Time to Repair (MTTR) shall be no greater than 1.0 hour {0.50 hour} at the field level.

3.5.2.3 All CSD production spare and repair LRUs, Shop Replaceable Units (SRU), and parts shall be interchangeable between systems without physical adjustment or modification.

3.5.2.4 The CSD shall provide for LRU or SRU removal and replacement by maintenance personnel while wearing the full range of protective garments, including

MOPP IV gear.

3.5.2.5 {No tools shall be required for the removal or replacement of CSD LRUs or

SRUs}.

3.5.2.6 All CSD software upgrades shall be backward compatible.

3.5.2.7 The CSD shall not require maintenance while in storage.

3.5.2.8 {The CSD shall not require unique or special support equipment}.

3.5.3 Built-in-test (BIT).

3.5.3.1 The CSD shall contain a BIT capability that identifies defective modules for field level maintenance to the LRU or SRU level with an accuracy of at least 90%.

3.5.3.2 When a defective module or fault is detected, a visual error message which identifies the fault shall be displayed on the ODU {to include corrective actions} and a warning message transmitted to the attached CDPU.

3.5.3.3 The CSD shall have a self-monitoring capability that automatically checks calibration status and automatically corrects the calibration as required. Re-calibrations shall not require more than 10 minutes in duration.

3.5.3.4 The capability to perform diagnostic routines on CSD from either a local or a remote location shall be provided.

3.5.4 Safety and health.

3.5.4.1 The CSD shall not contain radioactive materials that require regulation or control.

3.5.4.2 The CSD shall not contain hazardous materials or produce hazardous waste as specified in 40 CFR 261.

3.5.4.3 The CSD shall not pose an explosive threat to the operator.

3.5.4.4 The CSD shall not present an electrical shock risk to the operator while operating in conditions as specified in 3.4.

3.5.4.5 The CSD shall not emit sound greater than 70 dB measured at a distance of five feet while operating excluding alerts and alarms.

3.5.4.6 The CSD shall comply with the requirements of 21 CFR 1040, ANSI Z136.1, DoDI 6055.11, and MIL-STD-1425 if the system contains lasers.

3.5.5 Human factors.

3.5.5.1 CSD operator training shall not exceed 8 hours.

3.5.5.2 CSD visual displays, illumination, and weight limits shall conform to MIL-STD-

1472.

3.5.5.3 The CSD shall be operable and maintainable by 5th percentile female to 95th percentile male personnel who have received operator training.

3.5.5.4 The visual alarm of the CSD shall use a combination of contrasting colors, a flashing display, or symbology to call attention to the event.

3.5.5.5 The operator shall have the ability to adjust the intensity of the ODU display including the ability to black out the screen.

3.5.5.6 The CSD audible alarm shall be distinguishable from other battlefield sounds.

3.5.5.7 The operator shall be able to turn-on and turn-off the audible alarm.

3.5.6 Identification and markings.

The CSD markings shall be in accordance with MIL-STD-130 including the following characteristics:

(a) Be located on the components’ exterior in a consistent location.

(b) Be securely affixed to the component.

(c) Be readable by the operator while at a distance of one (1) foot.

(d) Include Electrostatic Discharge (ESD) information if necessary.

(e) Include the National Stock Number (NSN).

(f) Include the part number and nomenclature.

(g) Include the lot number.

(h) Include the CAGE code.

(i) Item unique identification (IUID) where applicable.

3.5.7 Workmanship.

All CSD components and LRUs shall be free of burrs, sharp edges, rust, cracks, rough surfaces, or other damage which could make the component unsatisfactory for the purpose intended.

4.0 VERIFICATION

This section includes the verification methods, which the Government intends to employ to demonstrate the ability of the CSD to meet the required performance. Tests shall be performed in accordance with the procedures and standards set forth in this specification, PWS, and Government-approved test plans. In the event of a conflict between the text of this specification and a Government-approved test plan, the test plan takes precedence.

4.1 General methods of verification.

Methods used to accomplish verification include the following:

Analysis—An element of verification that uses established technical or mathematical models or simulations, algorithms, charts, graphs, circuit diagrams, or other scientific principles and procedures to provide evidence that stated requirements were met.

Demonstration—An element of verification that involves the actual operation of an item to provide evidence that the required functions were accomplished under specific scenarios. The items may be instrumented and performance monitored.

Examination—An element of verification that is generally nondestructive and typically includes the use of sight, hearing, smell, touch, and taste; simple physical manipulations; and mechanical and electrical gauging and measurement.

Test—An element of verification that determines by technical means the properties or functional capabilities of items and involves the application of established scientific principles and procedures.

Certificate of Compliance (CoC)—An element of verification that takes the form of a written statement signed by an authorized representative of the contractor attesting that the product conforms to a predefined requirement. The CoC must be accompanied by analysis or objective evidence. The Government reserves the right to accept or reject the

CoC.

4.2 Classification of inspections.

The inspection requirements specified herein are classified as follows:

(a) First article inspection.

4.3 First article inspection.

4.3.1 Sample.

Unless otherwise specified in the contract, the first article sample shall consist of 5 CSDs manufactured using the same methods, materials, equipment, and processes. Except for testing involving the detection of chemicals, the FAT testing shall be conducted by the contractor in accordance with the contractor-submitted, Government-approved First

Article Test (FAT) plan. The Government shall conduct all FAT tests that involve chemical agents or TICs. The plan should also show the allocation of first article samples and sequence of all inspection activities. The first article sample shall be submitted for inspection and approval in accordance with the terms of the contract. The Government shall require a FAT to be conducted when a significant process or design change has been implemented.

4.3.2 Inspection procedure.

The first article sample items shall be subjected to the inspection methods in Table 9.

Detailed verification methods and procedures shall be in accordance with 4.4 and a

Government-approved inspection plan or test plan, or as specified in the contract. The

FAT samples will be divided between the government and the contractor. The contractor shall complete and provide a report for all tests in Table 9. The Government shall provide an appendix that summarizes the Government conducted tests.

4.3.3 Acceptance criteria.

If any first article sample item fails to comply with any of the applicable requirements, the first article sample shall be rejected.

Table 9: Requirement/verification cross reference matrix

Requirement

Paragraph

Requirement Description Class Method Verification

FC FG E A D T C

3.1 System description

3.1.1 Sensor X X 4.5.1.1

3.1.2 ODU X X 4.4.1.2

3.2 Interface, installation, and

interoperability

3.2.1 Interface with platform

3.2.1.1 Interface between CSD and

CDPU

X X X 4.4.2.1.1

3.2.1.2 CCSI compliance X X 4.4.2.1.2

3.2.1.3 Integration, installation, and

removal

X X X 4.4.2.1.3

3.2.1.4 Non-interference X X 4.4.2.1.4

3.2.1.5 Time of interrogation and time

detection

X X X 4.4.2.1.5

3.2.2 Physical constraints

3.2.2.1 Dimensions

3.2.2.1.1 Volume X X 4.4.2.2.1.1

3.2.2.1.2 Installation and removal X X 4.4.2.2.1.2

3.2.2.2 Weight

3.2.2.2.1 Total sensor weight X X 4.4.2.2.2.1

3.2.2.2.2 ODU weight X X 4.4.2.2.2.2

3.2.3 Electrical interface

3.2.3.1 Power source X X 4.4.2.3.1

3.2.3.2 Power and data connections X X 4.4.2.3.2

3.3 Operating requirements

3.3.1 Functional modes X X 4.4.3.1

3.3.1.1 Start-up X X 4.4.3.1.1

3.3.1.2 Mode switching X X 4.4.3.1.2

3.3.2 Primary system functions

3.3.2.1 Contaminant detection

3.3.2.1.1 Detection X 4.4.3.2.1.1

3.3.2.1.2 Maneuver speeds X 4.4.3.2.1.2

3.3.2.1.3 No contact with contaminant X 4.4.3.2.1.3

3.3.2.1.4 CWAs X X 4.4.3.2.1.4

3.3.2.1.5 Other chemicals X X 4.4.3.2.1.5

3.3.2.1.6 TICs X X 4.4.3.2.1.6

3.3.2.1.7 Simulants X X 4.4.3.2.1.7

3.3.2.1.8 Ground temperature X X X 4.4.3.2.1.8

3.3.2.2 Probability of detection X X 4.4.3.2.2

3.3.2.3 False alarm rate X X 4.4.3.2.3

3.3.2.4 Simultaneous monitoring X X 4.4.3.2.4

3.3.2.5 Interferant rejection X X 4.4.3.2.5

3.3.2.6 Warning

Legend

Classification of Inspection: Verification Methods:

FC: Contractor First Article Test E: Examination T: Test FG: Government First Article Test A: Analysis D: Demonstration C: Certificate of Compliance

Paragraph

3.3.2.6.1 Audible/visual warnings X X 4.4.3.2.6.1

3.3.2.6.2 Alarm override X X 4.4.3.2.6.2

3.3.2.6.3 Visual warning details X X 4.4.3.2.6.3

3.3.2.6.4 Operator warning time X X 4.4.3.2.6.4

3.3.2.6.5 Alarm acknowledgement X X 4.4.3.2.6.5

3.3.2.7 Special operating features

3.3.2.7.1 Target selectability X X 4.4.3.2.7.1

3.3.2.8 Data storage, transfer, software, communications

3.3.2.8.1 Data storage X X 4.4.3.2.8.1

3.3.2.8.2 Data collection X X 4.4.3.2.8.2

3.3.2.8.3 Reserved for future requirement 4.4.3.2.8.3

3.3.2.8.4 Software update X X 4.4.3.2.8.4

3.3.2.8.5 Display information X X 4.4.3.2.8.5

3.3.2.8.6 Download and query data X X 4.4.3.2.8.6

3.3.2.8.7 Remote operations X X 4.4.3.2.8.7

3.3.2.8.8 Post mission playback X X 4.4.3.2.8.8

3.3.2.8.9 Store classified information X X X 4.4.3.2.8.9

3.3.2.8.10 Comms with unclassified system X X X 4.4.3.2.8.10

3.3.2.9 Power X X 4.4.3.2.9

3.3.2.10 Start up time X X 4.4.3.2.10

3.4 Environmental requirements

3.4.1 Storage temperature X X 4.4.4.1

3.4.2 Operational temperature X X 4.4.4.2

3.4.3 Humidity X X 4.4.4.3

3.4.4 Vibration X X 4.4.4.4

3.4.5 Shock

3.4.5.1 Drop X X 4.4.4.5

3.4.5.2 Induced shock X X 4.4.4.5

3.4.6 Fungus X X 4.4.4.6

3.4.7 Altitude X X 4.4.4.7

3.4.8 Rapid decompression X X 4.4.4.8

3.4.9 Dust X X 4.4.4.9

3.4.10 Sand X X 4.4.4.10

3.4.11 Salt fog X X 4.4.4.11

3.4.12 Solar radiation X X 4.4.4.12

3.4.13 Immersion X X 4.4.4.13

3.4.14 Blowing rain X X 4.4.4.14

3.4.15 Freezing rain X X 4.4.4.15

3.4.16 NBC contamination survivability

3.4.16.1 Operation after decontamination X X 4.4.4.16.1

3.4.16.2 Chemical absorption X X X 4.4.4.16.2

3.4.16.3 Corrosion resistance X 4.4.4.16.3

3.4.16.4 Exterior finish X X X 4.4.4.16.4

3.4.17 Fire suppression system X X 4.4.4.17

3.4.18 Electromagnetic effects

3.4.18.1 EMI X X 4.4.4.18

3.4.18.2 HEMP X X 4.4.4.19

3.4.18.3 Bonding and grounding X X X 4.4.4.20

Paragraph

3.5 Support and ownership

requirements

3.5.1 Availability and Reliability

3.5.1.1 Am X 4.4.5.1

3.5.1.2 Ao X 4.4.5.1

3.5.1.3 Reliability X 4.4.5.1

3.5.2 Maintainability

3.5.2.1 MCMT X X X 4.4.5.2

3.5.2.2 MTTR X X X 4.4.5.2

3.5.2.3 Interchangeable parts X X X 4.4.5.2

3.5.2.4 Removal and replacement X X X 4.4.5.2

3.5.2.5 Tools X X X 4.4.5.2

3.5.2.6 Software compatibility X X 4.4.5.2

3.5.2.7 Storage X X 4.4.5.2

3.5.2.8 Support Equipment X X 4.4.5.2

3.5.3 Built in test

3.5.3.1 Identify defective modules X X X 4.4.5.3

3.5.3.2 Visual error messaging X X X 4.4.5.3

3.5.3.3 Calibration check X X X 4.4.5.3

3.5.3.4 Diagnostics from local or remote X X X 4.4.5.3

3.5.4 Safety and health

3.5.4.1 Radioactive materials X X 4.4.5.4

3.5.4.2 Hazardous materials X X 4.4.5.4

3.5.4.3 Explosive threat X X 4.4.5.4

3.5.4.4 Electrical shock X X 4.4.5.4

3.5.4.5 Sound level X X 4.4.5.4

3.5.4.6 Laser safety X X 4.4.5.4

3.5.5 Human factors

3.5.5.1 Operator training time X X 4.4.5.5

3.5.5.2 Visual displays, illumination, and weight

X X 4.4.5.5

3.5.5.3 5th - 95th percentile X X 4.4.5.5

3.5.5.4 Visual alarm X X 4.4.5.5

3.5.5.5 Display dimmable X X 4.4.5.5

3.5.5.6 Audible alarm X X 4.4.5.5

3.5.5.7 Audible alarm on/off X X 4.4.5.5

3.5.6 Identification and markings X 4.4.5.6

3.5.7 Workmanship X X 4.4.5.7

4.4 Detailed methods of verification.

In the subparagraphs that follow, if verification inspection is stated as “verify by test” and if no test method or procedure is stated, the test shall be described and performed in accordance with a Government-approved test plan.

4.4.1 Item description verification.

4.4.1.1 Sensor description.

Verify sensor matches description by examination.

4.4.1.2 ODU description.

Verify ODU matches description by examination.

4.4.2 Interface, installation, and interoperability verification.

4.4.2.1 Interface with Stryker NBCRV platform.

4.4.2.1.1 Verify interface between the CSD and CDPU by demonstration and test with

CSD integrated into platform.

4.4.2.1.2 Verify CCSI compliance by analysis.

4.4.2.1.3 Verify CSD integration does not require significant modification to the platform by examination and analysis.

4.4.2.1.4 Verify non-interference of components extending outside the vehicle platform by demonstration while the CSD is integrated with its vehicle platform.

4.4.2.1.5 Verify by demonstration and test with CSD integrated into platform

4.4.2.2 Physical constraints.

4.4.2.2.1 Dimensions.

4.4.2.2.1.1 Verify combined volumes of CSD components by examination.

4.4.2.2.1.2 Verify installation and removal by demonstration.

4.4.2.2.2 Weight.

4.4.2.2.2.1 Verify total weight of sensor and other components by examination.

4.4.2.2.2.2 Verify ODU weight by examination.

4.4.2.3 Electrical interface.

4.4.2.3.1 Power source.

Verify steady state voltage operation by test with variable power supply to test limits specified in MIL-STD-1275.

4.4.2.3.2 Power and data connections.

Verify CSD electrical and data connections by examination of CSD integrated into vehicle platform.

4.4.3 Operating requirements verification.

4.4.3.1 Functional modes.

Verify CSD functional modes by demonstration.

4.4.3.1.1 Verify CSD start-up time by demonstration.

4.4.3.1.2 Verify CSD switching times by demonstration.

4.4.3.2 Primary system functions.

4.4.3.2.1 Contaminant detection.

4.4.3.2.1.1 Verify CSD detection capability by test with CSD integrated into vehicle platform.

4.4.3.2.1.2 Verify CSD maneuver speeds by test with CSD integrated into vehicle

4.4.3.2.1.3 Verify CSD will detect in such a way that the vehicle platform will not come into contact with detected contaminants by analysis.

4.4.3.2.1.4 Verify CSD’s CWA detection and identification capabilities by test.

4.4.3.2.1.5 Verify CSD’s other chemical agent detection and identification capabilities by test.

4.4.3.2.1.6 Verify CSD’s TIC detection and identification capabilities by test.

4.4.3.2.1.7 Verify CSD’s simulant detection and identification capabilities by test.

4.4.3.2.1.8 Verify by demonstration and test with CSD integrated into platform.

4.4.3.2.2 Probability of detection.

Verify CSD’s probability of detection by test. During vehicle testing, the CSD will be integrated into the vehicle platform and tested against contaminated path lengths of up to

360 ft.

4.4.3.2.3 False alarm rate.

Verify CSD’s false alarm rate by test.

4.4.3.2.4 Simultaneous monitoring.

Verify CSD’s capability to simultaneous monitoring by demonstration and test.

4.4.3.2.5 Interferant rejection.

Verify CSD’s ability to detect in the presence of battlefield interferants by test.

4.4.3.2.6 Warning.

4.4.3.2.6.1 Verify audible and visual alarms by demonstration.

4.4.3.2.6.2 Verify override and reset by demonstration with CSD integrated into vehicle

4.4.3.2.6.3 Verify alarm details through demonstration with CSD integrated into vehicle

4.4.3.2.6.4 Verify operator warning time by test with CSD integrated into vehicle

4.4.3.2.6.5 Verify operator acknowledgement of alarm by demonstration with CSD integrated into vehicle platform.

4.4.3.2.7 Special operating procedures.

4.4.3.2.7.1 Verify selectability and deselectability by demonstration.

4.4.3.2.8 Data storage, transfer, software, communications.

4.4.3.2.8.1 Verify by demonstration.

4.4.3.2.8.2 Verify by demonstration.

4.4.3.2.8.3 Reserved for possible future requirement.

4.4.3.2.8.4 Verify by demonstration.

4.4.3.2.8.5 Verify by demonstration.

4.4.3.2.8.6 Verify by demonstration.

4.4.3.2.8.7 Verify by demonstration.

4.4.3.2.8.8 Verify by demonstration.

4.4.3.2.8.9 Verify by certificate of conformance and analysis.

4.4.3.2.8.10 Verify by certificate of conformance and demonstration.

4.4.3.2.9 Power.

Verify CSD total power and average power consumption by test.

4.4.3.2.10 Start up time.

Verify CSD start up time by test.

4.4.4 Environmental requirements verification.

4.4.4.1 Storage temperature.

For the lower temperature range, test in accordance with MIL-STD-810, Method 502.5, Procedure I. For the higher temperature range, test in accordance with MIL-STD-810, Method 501.5, Procedure I.

4.4.4.2 Operating temperature.

For the lower temperature range, test in accordance with MIL-STD-810, Method 502.5, Procedure II. For the higher temperature range, test in accordance with MIL-STD-810, Method 501.5, Procedure II.

4.4.4.3 Humidity.

Test in accordance with MIL-STD-810, Method 507.5.

4.4.4.4 Vibration.

Test in accordance with MIL-STD-810, Method 514.6, Procedure I, Annex C, Figure

514.6C-3 and Table 514.6C-VI, for composite wheeled vehicle exposure. See Tables 10, 11, and 12 for the vibration profiles.

Table 10: Longitudinal Axis Vibration Profile

Longitudinal

Freq PSD

5 0.001976

6 0.00085

8 0.002747

12 0.000113

15 0.000304

18 0.000286

21 0.000055

24 0.000113

25 0.000071

26 0.000092

29 0.000048

33 0.000085

42 0.00001

48 0.000032

49 0.000026

56 0.000051

61 0.000023

68 0.000048

69 0.000007

78 0.000027

98 0.000005

110 0.000007

116 0.000003

143 0.000015

149 0.00001

165 0.000016

170 0.000007

192 0.000013

206 0.000008

221 0.000012

222 0.000006

233 0.000011

242 0.000007

248 0.000013

263 0.000006

280 0.00001

293 0.000006

324 0.000016

339 0.000012

369 0.000025

408 0.000009

431 0.000032

451 0.000012

483 0.000019 rms 0.131

Table 11: Transverse Axis Vibration Profile

Transverse

5 0.002283

7 0.000323

8 0.000449

12 0.000106

16 0.000783

21 0.000317

24 0.002018

28 0.000692

31 0.000886

43 0.000102

47 0.000201

52 0.000118

57 0.000197

71 0.000027

78 0.000042

101 0.000019

105 0.000028

116 0.000019

142 0.000133

159 0.000024

165 0.00004

204 0.000007

211 0.000013

221 0.00001

238 0.000015

246 0.000009

257 0.000016

295 0.000005

309 0.000009

334 0.000007

378 0.000055

421 0.000008

431 0.000032

465 0.000006

480 0.000011 rms 0.184

Table 12: Vertical Axis Vibration Profile

Vertical

5 0.02691

7 0.00982

8 0.014819

13 0.000164

16 0.001335

21 0.000431

24 0.000903

26 0.001001

28 0.000623

32 0.001022

38 0.000358

41 0.000477

47 0.000257

49 0.000329

53 0.000237

57 0.000518

64 0.000133

78 0.000388

99 0.000098

102 0.000145

105 0.000064

124 0.000413

132 0.000148

147 0.001391

150 0.000223

167 0.00151

173 0.000053

197 0.000164

209 0.0001

219 0.00021

339 0.000006

375 0.000252

418 0.000008

434 0.000055

465 0.000007

487 0.000013 rms 0.384

4.4.4.5 Shock.

Test in accordance with MIL-STD-810, Method 516.6, Procedure I and Procedure IV, and for ground equipment.

4.4.4.6 Fungus.

Test in accordance with MIL-STD-810, Method 508.6 utilizing representative material samples if a prior analysis indicates that the materials are suspect in terms of resisting fungal growth.

4.4.4.7 Altitude.

For air pressure corresponding to 15,000 ft above sea level, test in accordance with MIL-

STD-810, Method 500.5, Procedure I. For air pressure corresponding to 15,000 ft above sea level, test in accordance with MIL-STD-810, Method 500.5, Procedure II.

4.4.4.8 Rapid decompression.

Test in accordance with MIL-STD-810, Method 500.5, Procedure III.

4.4.4.9 Blowing dust.

Test in accordance with MIL-STD-810, Method 510.5, Procedure I.

4.4.4.10 Blowing sand.

Test in accordance with MIL-STD-810, Method 510.5, Procedure II.

4.4.4.11 Salt fog.

Test in accordance with MIL-STD-810, Method 509.5.

4.4.4.12 Solar radiation.

Test in accordance with MIL-STD-810, Method 505.5, Procedure I.

4.4.4.13 Immersion.

Test in accordance with MIL-STD 810, Method 512.5.

4.4.4.14 Blowing rain.

Test in accordance with MIL-STD-810, Method 506.5, Procedure I.

4.4.4.15 Freezing rain.

Test in accordance with MIL-STD-810, Method 521.3 using glaze ice and “light loading” for ice thickness.

4.4.4.16 Exposure and decontamination.

4.4.4.16.1 Operation after NBC decontamination.

Test in accordance with TOP 8-2-111.

4.4.4.16.2 Chemical absorption.

Verify by analysis of the design, materials, and coatings used. If an analysis is not feasible, verify by test in accordance with TOP 8-2-111.

4.4.4.16.3 Corrosion resistance.

Test in accordance with TOP 8-2-111.

4.4.4.16.4 Exterior finish.

Verify by analysis of the external surfaces and certificate of conformance submitted by contractor.

4.4.4.17 Fire suppression system

Verify by analysis of CSD components mounted inside vehicle platform.

4.4.4.18 Electromagnetic effects.

Verify by test in accordance with MIL-STD-461 as described in Table 10.

TABLE 10: Electromagnetic Effects Verifications

Environment Test Procedure(s) Notes

Conducted

Emissions

CE102 (Power Leads) Use the Basic Curve

Conducted

Susceptibility

CS101 (Power Leads) Use Curve #2

Conducted

Susceptibility

CS114 (Bulk Cable

Injection)

Use “Army” - “Ground” limits

Conducted

Susceptibility

CS115 (bulk cable injection, impulse excitation)

Conducted

Susceptibility

CS116 (Damped Sine

Transients)

Use Imax = 10 Amperes

Radiated

Emissions

RE102 (E-Field) Use “Army” limits

Radiated

Susceptibility

RS103 (E-Field) Use 50 Volts/meter (V/m) over the frequency range of 30 MHz to 18 GHz

Radiated

Susceptibility

RS105 (Transient Field) Power OFF during testing. Use E01=5 x 103

V/m Equipment, at normal operating temperatures must begin start up procedures within 15 minutes of exposure.

4.4.4.19 High altitude electromagnetic pulse (HEMP).

Test in accordance with MIL-STD-2169.

4.4.4.20 Bonding and grounding.

Verify by examination and demonstration while CSD is integrated into vehicle platform.

4.4.5 Support and ownership verification.

4.4.5.1 Availability and Reliability.

Verify by test.

4.4.5.2 Maintainability.

Verify 3.5.2.1, 3.5.2.2, and 3.5.2.3 by test and analysis; verify 3.5.2.4 and 3.5.2.5 by test and demonstration; verify 3.5.2.6, 3.5.2.7, and 3.5.2.8 by analysis.

4.4.5.3 Built in test.

Verify by test and demonstration.

4.4.5.4 Safety and health.

Verify by certificate of conformance submitted by contractor supported by analysis.

4.4.5.5 Human factors.

Verify by demonstration.

4.4.5.6 Identification and markings.

Verify by examination.

4.4.5.7 Workmanship.

Verify by examination.

5.0 PACKAGING

5.1 Packaging.

For acquisition purposes, the packaging requirements shall be as specified in the contract or order. When packaging of materiel is to be performed by DoD personnel or in-house contractor personnel, these personnel need to contact the responsible packaging activity to ascertain requisite packaging requirements. Packaging requirements are maintained by the Inventory Control Point’s packaging activity within the Military Department or

Defense Agency, or within the Military Department’s System Command. Packaging data retrieval is available from the managing Military Department’s or Defense Agency’s automated packaging files, CD-ROM products, or by contacting the responsible packaging activity.

6.0 NOTES

(This section contains information of a general or explanatory nature that may be helpful, but is not mandatory.)

6.1 Intended use.

The CSD is a system intended to detect and warn personnel of the presence of solid and liquid CWAs, other chemical agents, and/or TICs on the ground.

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