SSP_50470-RevD-DCN006-Collated_Master.docx

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Human Space Flight Technical Integration Contract (HSFTIC) Federal contract opportunity
Solicitation number
80JSC019R0023
Issued by
National Aeronautics and Space Administration Johnson Space Center

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This notice announces a forthcoming request for proposal for the Human Space Flight Technical Integration Contract. NASA/JSC plans to issue the RFP on or about November 1, 2019, with proposals due on or about December 11, 2019. The contract is a total small business set-aside under NAICS code 541715 with a size standard of 1,250 employees. The solicitation and any amendments will be available on the NASA procurement website and FBO. Interested parties should monitor these sites and are responsible for downloading their own copies. All technical questions must be submitted in writing. The Center Ombudsman information is provided.

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SSP 50470

Revision D Crew Health Care System (CHeCS) Specification

International Space Station Program

Revision D

Incorporates DCN 006 Collated Master

May 2010

National Aeronautics and Space Administration International Space Station Program Johnson Space Center Houston, Texas Contract No.: NNJ12GA46C

SSP 50470

REVISION AND HISTORY

REV.
DESCRIPTION
PUB. DATE
-
Initial Release (Reference per SSCD 002167, EFF, 03/28/00)
03-30-00
A
Revision A (Reference per SSCD 002167A, EFF, 02/02/01)
02-28-01
Incorporate DCN 001 (Reference per SSCD 005215, EFF. 04/02/01)
05-22-01
Incorporate DCN 002 (Reference per SSCD 005614 R1, EFF. 07/27/01)
08-17-01
Incorporate DCN 003 (Reference per SSCD 004590, EFF. 11/16/00)
04-30-03
B
Revision B (Reference per SSCD 009746, EFF. 03/27/06)
04-12-06

Note: Revision B also incorporates the following SSCNs: 004490, 005144, 006839, 007226, 007915, 008005, 008098, 008856, 009562, and 009622

C
Revision C (Reference per SSCD 010603, EFF. 10/15/07)
10-31-07

Note: Revision C also incorporates the following SSCNs: 004482, 004601, 008294, 009206, 009491, 009965, 009992, 010059, 010121, 010147, 010174, 010219, 010257, 010309, 010325, 010326, 010443, 010566, 010703

D
Revision D (Reference per SSCD 012229, EFF. 07/01/10)
07-13-10

Note: Revision D also incorporates the following SSCNs: 010093, 010425, 010501, 010591, 010731, 010738, 010828, 010871, 011074, 011077, 011148, 011206, 011207, 011831, 011932, 011966

DCN 004 (Reference per SSCD 013502, EFF. 09-16-13)
09-30-13
DCN 005 (Reference per SSCD 013588R1, EFF. 04-02-14)
05-01-14

DCN 006 (Reference per SSCD 013915, EFF. 06-23-14)

Early Release
06-30-14
Program Release
10-06-16

SSP 50470 24 June 2014

PREFACE

Crew health care system (checs) specification SSP 50470, Crew Health Care System (CHeCS) Specification establishes the performance, design, development, and verification requirements for any CHeCS hardware to be placed on the International Space Station (ISS).

The contents of this document are intended to be consistent with the tasks and products to be prepared by Program participants. The CHeCS Specification may be implemented on existing contracts by an authorized contract change. This document is under the control of the ISS Vehicle Control Board (VCB).

INTERNATIONAL SPACE STATION PROGRAM

Crew health care system (checs) specification

CONCURRENCE

May 2010

SSP 50470

i

INTERNATIONAL SPACE STATION PROGRAM

Crew health care system (checs) specification

LIST OF CHANGES

May 2010 All changes to paragraphs, tables, and figures in this document are shown below:

Board Name

Entry Date

Change

Paragraph(s)

March 2000

Baseline

All

February 2001

DCN 001

August 2001

DCN 002

April 2003

DCN 003

April 2006

Revision B

All

October 2007

Revision C

All

July 2010

Revision D

All

September 2013

DCN 004

April 2014

DCN 005

June 2014

DCN 006

SSP 50470 24 June 2014

TABLE OF CONTENTS

PARAGRAPHPAGE
1.0scope1-1
1.1PURPOSE1-1
1.2document change control1-1
1.3PRECEDENCE1-1
2.0APPLICABLE DOCUMENTS2-1
2.1Government documents2-1
2.1.1Specifications, standards, and handbooks2-1
2.1.2other government documents, drawings, and publications2-6
2.2reference documents2-7
2.3order of precedence2-8
3.0system requirements3-1
3.1crew health care system (checs) definition3-1
3.1.1deleted3-2
3.1.2deleted3-2
3.1.3deleted3-2
3.1.4Blood Pressure/Electrocardiograph (BP/ECG)3-3
3.1.5deleted3-3
3.1.6deleted3-3
3.1.7deleted3-3
3.1.8deleted3-3
3.1.9deleted3-3
3.1.10Crew Medical Restraint System (CMRS)3-3
3.1.11Cycle Ergometer with Vibration Isolation and Stabilization
System (CEVIS)3-3
3.1.12deleted3-3
3.1.13Formaldehyde Monitoring Kit (FMK)3-3
3.1.14Grab Sample Containers (GSC)3-4
3.1.15Heart Rate Monitor (HRM)3-4
3.1.16Resistive Exercise Device (RED)3-4
3.1.17Microbial Air Sampler (MAS)3-4
3.1.18deleted3-4
3.1.19Passive Dosimeter Kit (PDK)3-4
3.1.20Respiratory Support Pack (RSP)3-4
3.1.21deleted3-5
3.1.22Surface Sampler Kit (SSK)3-5
3.1.23Tissue Equivalent Proportional Counter (TEPC)3-5
3.1.24Total Organic Carbon Analyzer (TOCA) Subsystem3-5
3.1.25Treadmill device3-5
3.1.26deleted3-5
3.1.27deleted3-5
3.1.28deleted3-5
3.1.29deleted3-5
3.1.30deleted3-5
3.1.31Deleted3-5
3.1.32deleted3-5
3.1.33deleted3-5
3.1.34CHeCS ssc software3-5
3.2CHeCS Hardware Characteristics Per The U.S.O.S. and R.S.S.3-6
3.2.1Performance Characteristics3-6
3.2.1.1deleted3-6
3.2.1.1.1deleted3-6
3.2.1.2deleted3-6
3.2.1.2.1deleted3-6
3.2.1.2.2deleted3-6
3.2.1.3Deleted3-6
3.2.1.4Blood Pressure/Electrocardiograph (BP/ECG) Performance Characteristics3-6
3.2.1.4.1Accept Power3-6
3.2.1.4.2Transmit Data3-6
3.2.1.4.3Interface to Structure3-6
3.2.1.5deleted3-7
3.2.1.5.1deleted3-7
3.2.1.5.1.1deleted3-7
3.2.1.5.1.2deleted3-7
3.2.1.6deleted3-7
3.2.1.7deleted3-7
3.2.1.7.1deleted3-7
3.2.1.7.2deleted3-7
3.2.1.7.3deleted3-7
3.2.1.7.4deleted3-7
3.2.1.7.5deleted3-7
3.2.1.7.6deleted3-7
3.2.1.7.7deleted3-7
3.2.1.7.8deleted3-7
3.2.1.8deleted3-7
3.2.1.9deleted3-7
3.2.1.9.1deleted3-7
3.2.1.10Crew Medical Restraint System (CMRS) Performance
Characteristics3-7
3.2.1.10.1CMRS Deployment Time3-7
3.2.1.10.2Electrical Isolation3-7
3.2.1.10.3Crew Treatment3-7
3.2.1.10.4Patient Transport3-7
3.2.1.11CEVIS Performance Characteristics3-8
3.2.1.11.1Crew exercise3-8
3.2.1.11.2Upper and Lower Limb Cycling3-8
3.2.1.11.3Crew Restraint3-8
3.2.1.11.4Speed and Workload3-8
3.2.1.11.5Accept Power3-8
3.2.1.11.6Interface With the Vibration Isolation and Stabilization Device3-8
3.2.1.11.7Vibration Reduction3-8
3.2.1.11.8Vibration Output3-8
3.2.1.11.9Interface With the Ergometer3-8
3.2.1.11.10Interface to Structure3-8
3.2.1.12Deleted3-8
3.2.1.13Formaldehyde Monitoring Kit (FMK) Performance Characteristics3-8
3.2.1.13.1Sampling3-8
3.2.1.13.2Detection3-9
3.2.1.13.3Interference3-9
3.2.1.14Grab Sample Containers (GSC) Performance Characteristics3-9
3.2.1.14.1Internal Surface3-9
3.2.1.14.2Sampling Valve3-9
3.2.1.14.3Pressure Rating3-9
3.2.1.15Heart Rate Monitor (HRM) Performance Characteristics3-9
3.2.1.15.1Crew exercise3-9
3.2.1.15.2Deleted3-9
3.2.1.15.3CEVIS Interface3-9
3.2.1.15.4SSC Interface3-9
3.2.1.15.5T2 Interface3-9
3.2.1.16RED Performance Characteristics3-10
3.2.1.16.1deleted3-10
3.2.1.16.1.1deleted3-10
3.2.1.16.1.2deleted3-10
3.2.1.16.1.3deleted3-10
3.2.1.16.1.4deleted3-10
3.2.1.16.2Advanced Resistive Exercise Device (ARED)3-10
3.2.1.16.2.1Resistance and Strength Training and Testing3-10
3.2.1.16.2.2Iso-Exercise and Testing3-10
3.2.1.16.2.3Concentric Exercise3-10
3.2.1.16.2.4Speed and Workload Variability3-10
3.2.1.16.2.5Manual Operation3-10
3.2.1.16.2.6Crew Restraint3-10
3.2.1.16.2.7Microgravity Requirements3-10
3.2.1.16.2.7.1Limit Quasi-Steady Acceleration3-10
3.2.1.16.2.7.2limit vibratory accelerations3-11
3.2.1.16.2.8Interfaces3-12
3.2.1.17Microbial Air Sampler (MAS) Performance Characteristics3-12
3.2.1.17.1Support Detection3-12
3.2.1.17.2Support Ground Analysis3-12
3.2.1.17.3Refrigeration Capability3-12
3.2.1.17.4Sample Rate3-12
3.2.1.18Deleted3-12
3.2.1.19Passive Dosimeter Kit (PDK) Performance Characteristics3-12
3.2.1.19.1Support Detection3-12
3.2.1.19.2Radiation Area Monitor Interface3-13
3.2.1.19.2.1HRD Stowage3-13
3.2.1.19.3CPD Interface3-13
3.2.1.20Respiratory Support Pack (RSP) Performance Characteristics3-13
3.2.1.20.1Crew Treatment3-13
3.2.1.20.1.1variable oxygen subsystem3-13
3.2.1.20.2Accept Oxygen3-13
3.2.1.21Deleted3-13
3.2.1.22Surface Sampler Kit (SSK) Performance Characteristics3-13
3.2.1.22.1Support Detection3-13
3.2.1.22.2Support Ground Analysis3-14
3.2.1.22.3Refrigeration Requirement3-14
3.2.1.23Tissue Equivalent Proportional Counter (TEPC) Performance Requirements3-14
3.2.1.23.1Support Detection3-14
3.2.1.23.2Data Record3-14
3.2.1.23.3Data Display3-14
3.2.1.23.4Accept Power3-14
3.2.1.23.5Transmit Data3-14
3.2.1.23.6Interface To Structure3-14
3.2.1.24TOCA Subsystem Performance Characteristics3-14
3.2.1.24.1Analytical Detection Capability3-14
3.2.1.24.2Water Sample Compatibility3-14
3.2.1.24.3Water Sample Compatibility and Interface3-15
3.2.1.24.4Waste Storage3-15
3.2.1.24.5Calibration3-15
3.2.1.24.6Data record/store/display3-15
3.2.1.24.7Date TRansfer3-15
3.2.1.24.8Toca portability3-15
3.2.1.24.9On-Orbit Operational Life3-15
3.2.1.24.10Interfaces3-15
3.2.1.24.10.1TOCA Subsystem Interfaces with ISS3-15
3.2.1.25Treadmill Performance Characteristics3-15
3.2.1.25.1Crew Exercise3-15
3.2.1.25.2Crew Restraint3-15
3.2.1.25.3Speed and Workload3-16
3.2.1.25.4Accept Power3-16
3.2.1.25.5Interface to Vibration Isolation Device3-16
3.2.1.25.6Vibration Reduction3-16
3.2.1.25.7Vibration Output3-16
3.2.1.25.8Interface to Structure3-16
3.2.1.25.9Data transfer3-16
3.2.1.26deleted3-16
3.2.1.27Deleted3-16
3.2.1.28Deleted3-16
3.2.1.29Deleted3-16
3.2.1.30deleted3-16
3.2.1.30.1deleted3-16
3.2.1.30.2deleted3-16
3.2.1.30.3deleted3-16
3.2.1.30.4deleted3-16
3.2.1.31Deleted3-16
3.2.1.32deleted3-16
3.2.1.33deleted3-16
3.2.1.33.1deleted3-16
3.2.1.33.2deleted3-16
3.2.1.33.3deleted3-17
3.2.1.33.4deleted3-17
3.2.1.33.5deleted3-17
3.2.1.33.6deleted3-17
3.2.1.34CHECS ssc software performance characteristics3-17
3.2.2Physical Characteristics3-17
3.2.2.1Mass Properties3-17
3.2.2.2Envelope3-17
3.2.3Reliability3-17
3.2.3.1Failure Tolerance3-17
3.2.3.2Failure Propagation3-17
3.2.4Maintainability3-17
3.2.4.1Incorrect Equipment Installation3-17
3.2.4.2Restraining and Handling Devices for Temporary Storage3-17
3.2.4.3Manual failure detection, isolation, and recovery3-18
3.2.5Environmental Conditions3-18
3.2.5.1On–Orbit Environmental Conditions3-18
3.2.5.1.1On-Orbit Internal Environments3-18
3.2.5.1.2On-Orbit Acceleration Environment3-18
3.2.5.1.3On-Orbit External Environment3-18
3.2.5.1.4On-Orbit Vibration Environment3-18
3.2.6Transportability3-18
3.2.7Nominal Ionizing Radiation Environment3-19
3.3DESIGN AND CONSTRUCTION3-19
3.3.1Materials, Processes, and Parts3-19
3.3.1.1Materials and Processes3-19
3.3.1.1.1Control of Water-Soluble Volatile Organic Compounds3-19
3.3.1.2Electrical, Electronic, and Electromechanical Parts Selection3-19
3.3.1.3Fluid Standards3-19
3.3.1.4Seal Life3-20
3.3.1.5Connectors3-20
3.3.2Electromagnetic Radiation3-20
3.3.2.1Electromagnetic Compatibility (EMC)3-20
3.3.2.2Electromagnetic Susceptibility3-20
3.3.2.3Electromagnetic Testing of Portable Equipment3-20
3.3.2.4Electrical Grounding3-20
3.3.2.5Electrical Bonding3-20
3.3.2.6Cable and Wire Design3-20
3.3.2.7Electrostatic Discharge (ESD)3-20
3.3.2.8Corona3-21
3.3.3Nameplates and Product Marking3-21
3.3.4Workmanship3-21
3.3.4.1Cleanliness3-21
3.3.5Interchangeability3-21
3.3.6Safety3-21
3.3.6.1hazard elimination and control3-21
3.3.6.1.1Safety Failure Tolerance3-22
3.3.6.1.1.1Catastrophic Hazard (two-failure tolerance)3-22
3.3.6.1.1.2Critical Hazards (one-failure tolerance)3-22
3.3.6.1.2Design for Minimum Risk3-22
3.3.6.1.3Safety Devices3-22
3.3.6.2hazardous functional control3-22
3.3.6.2.1Inadvertent Operation Resulting in Catastrophic Hazards3-22
3.3.6.2.2Inadvertent Operation Resulting in Critical Hazards3-23
3.3.6.2.3Subsequent Induced Loads3-23
3.3.6.2.4Safety Interlocks3-23
3.3.6.2.5Monitoring3-23
3.3.6.2.5.1Flight and Ground Crew Monitoring3-23
3.3.6.2.5.1.1Near-Real-Time Monitoring3-23
3.3.6.2.5.1.2Real-time Monitoring3-23
3.3.6.2.5.2Loss of Input or Failure3-23
3.3.6.2.5.3Launch Site Availability3-23
3.3.6.3Computer-based Control of Hazardous Functions3-24
3.3.6.3.1General3-24
3.3.6.3.2Function Deactivation3-24
3.3.6.3.3Function Activation3-24
3.3.6.3.4Function Activation − Multiple Hazard Controls3-24
3.3.6.4Hazardous Materials3-25
3.3.6.4.1Hazardous Fluid Containment3-25
3.3.6.4.2Storage of Hazardous Chemicals3-25
3.3.6.5Pyrotechnics3-25
3.3.6.6Environmental Safety3-25
3.3.6.6.1Environmental Compatibility3-25
3.3.6.6.2Nonionizing Radiation3-25
3.3.6.7Optics and Lasers3-25
3.3.6.7.1Lasers3-25
3.3.6.7.2Optical Requirements3-25
3.3.6.7.2.1Optical Instruments3-25
3.3.6.7.2.2Personnel Protection3-25
3.3.6.7.2.3Direct Viewing Optical Systems3-25
3.3.6.8Electrical Safety3-26
3.3.6.8.1Electrical Power Circuit Overloads3-26
3.3.6.8.1.1Circuit Overload Protection3-26
3.3.6.8.1.2Protective Device Sizing3-26
3.3.6.8.1.3Bent Pin or Conductive Contamination3-26
3.3.6.8.2Crew Protection for Electrical Shock3-26
3.3.6.8.3Reapplication of Power3-26
3.3.6.8.4Batteries3-26
3.3.6.9Liquid Propellant Propulsion Systems3-26
3.3.6.10Fire Protection3-26
3.3.6.11Constraints3-27
3.3.6.11.1Pressurized Volume Depressurization and Repressurization Tolerance3-27
3.3.6.11.1.1Pressure Differential Tolerance3-27
3.3.6.11.1.2Operation during Pressure Changes3-27
3.3.6.11.2Emergency Egress3-27
3.3.6.11.3Component Hazardous Energy Provision3-27
3.3.6.11.4Hatch Opening3-27
3.3.6.11.5Hazardous Gas Accumulation3-27
3.3.6.11.5.1Accumulation Prevention3-27
3.3.6.11.5.2Detection, Monitoring, and Control3-27
3.3.6.11.6Equipment Clearance for Entrapment Hazard3-27
3.3.6.11.7Frangible Materials3-27
3.3.6.12Mechanical and Sharp Edge Hazards3-28
3.3.7Human Engineering3-28
3.3.7.1IVA Crew Load Requirements3-28
3.3.7.1.1IVA Translation Path Obstructions3-28
3.3.7.1.2IVA Closures and Covers Design Requirements3-28
3.3.7.2Controls and Displays Design Guidelines3-28
3.3.7.3Anthropometry3-28
3.3.7.4Nominal operations3-29
3.3.7.5Maintenance3-29
3.3.7.6Labeling3-29
3.3.7.7Color Coding3-30
3.3.7.8Connectors3-30
3.3.7.9Latches3-30
3.3.7.10Handles and Grasp Areas3-31
3.3.7.11Equipment Restraint3-31
3.3.7.12Housekeeping3-31
3.3.8Nuclear Control3-31
3.3.9System Security3-31
3.3.10Environmental Constraints3-31
3.3.10.1Acoustic Emission Limits3-31
3.3.10.1.1Acoustic Emission Limits for Hardware developed prior to
March 31, 20003-31
3.3.10.1.2Acoustic Emission Limits for Hardware developed on or after
March 31, 20003-31
3.3.10.2Pressure Rate Of Change3-31
3.3.10.3Percent Oxygen3-32
3.3.10.4Ionizing Radiation3-32
3.3.10.4.1Ionizing Radiation Crew Limits3-32
3.3.10.4.2Ionizing Radiation Emission Limits3-32
3.3.11Design For Remote Controlled External Operations3-32
3.3.12Design Requirements3-32
3.3.12.1Structural Design Requirements3-32
3.3.12.2Window, Exposed Glass Surfaces, and Ceramic Structural Design3-32
3.3.12.3Fracture Control3-32
3.3.12.4Allowable Mechanical Properties3-32
3.3.12.5Fluid Handling Requirement3-33
3.3.12.5.1Fluid Quantity Determination3-33
3.3.12.5.2Interface Hardware3-33
3.3.12.5.3Flexible Lines and Bellows Design3-33
3.3.12.6Batteries3-33
3.3.12.7Fasteners3-33
3.3.12.8Resource Management3-33
3.3.12.9Electrical Power Consuming Equipment Design3-33
3.3.13Extravehicular activity (EVA) Equipment Handling Capabilities3-33
3.3.14Operational Lifetime3-33
3.3.15End–of–Life Decommissioning and Disposal3-34
3.3.16Preclude Condensation3-34
3.3.17Nadir Viewing Payload Locations3-34
3.3.18MIL-STD-1553 Data Bus Constraints3-34
3.4COMPUTER RESOURCE REQUIREMENTS3-34
3.4.1Computer Hardware Design Constraints3-34
3.4.2Flexibility and Expansion3-34
3.4.2.1Programming Language3-34
3.4.2.2Partitioning3-34
3.4.3Software Portability3-34
3.5LOGISTICS3-34
3.5.1Maintenance3-34
3.5.1.1On-Orbit Equipment & Tools3-34
3.5.2Supply3-34
3.5.3Facilities3-35
3.5.4Accessibility3-35
3.5.4.1Visual Access3-35
3.5.4.2Physical Access3-35
3.5.4.3Removal, Replacement, and Modularity Design3-35
3.6PERSONNEL AND TRAINING3-35
3.7CHeCS MAJOR COMPONENTS CHARACTERISTICS3-35
3.7.1deleted3-35
3.7.1.1deleted3-36
3.7.1.2deleted3-36
3.7.1.2.1deleted3-36
3.7.1.2.2deleted3-36
3.7.1.2.3deleted3-36
3.7.1.2.4deleted3-36
3.7.1.2.5deleted3-36
3.7.1.2.6deleted3-36
3.7.1.2.7deleted3-36
3.7.1.2.8deleted3-36
3.7.1.2.9deleted3-36
3.7.1.2.9.1deleted3-36
3.7.1.2.9.2deleted3-36
3.7.1.2.9.3deleted3-36
3.7.1.2.9.4deleted3-36
3.7.1.2.9.4.1deleted3-36
3.7.1.2.9.4.2deleted3-36
3.7.1.2.9.4.2.1deleted3-36
3.7.1.2.9.4.2.2deleted3-36
3.7.1.2.9.4.2.3deleted3-36
3.7.1.2.9.4.2.4deleted3-36
3.7.1.2.9.4.2.5deleted3-36
3.7.1.2.9.4.2.6deleted3-36
3.7.1.2.9.4.2.7deleted3-36
3.7.1.2.9.4.2.7.1deleted3-36
3.7.1.2.9.4.2.7.2deleted3-36
3.7.1.2.9.4.2.7.3deleted3-36
3.7.1.2.9.4.3deleted3-36
3.7.1.2.9.4.4deleted3-36
3.7.1.2.9.4.5deleted3-37
3.7.1.2.9.4.5.1deleted3-37
3.7.1.2.9.4.5.2deleted3-37
3.7.1.2.9.4.5.3deleted3-37
3.7.1.2.9.4.5.3.1deleted3-37
3.7.1.2.9.4.5.3.2deleted3-37
3.7.1.2.9.4.6deleted3-37
3.7.1.2.10deleted3-37
3.7.1.2.11deleted3-37
3.7.1.2.12deleted3-37
3.7.1.2.13deleted3-37
3.7.1.2.14deleted3-37
3.7.1.2.14.1deleted3-37
3.7.1.2.14.2deleted3-37
3.7.1.2.14.3deleted3-37
3.7.1.2.14.4deleted3-37
3.7.1.2.14.5deleted3-37
3.7.1.2.14.6deleted3-37
3.7.1.2.14.7deleted3-37
3.7.1.2.15deleted3-37
3.7.1.2.15.1deleted3-37
3.7.1.2.15.2deleted3-37
3.7.1.2.15.3deleted3-37
3.7.1.2.15.4deleted3-37
3.7.1.2.15.5deleted3-37
3.7.1.2.16deleted3-37
3.7.1.3deleted3-37
3.7.1.3.1deleted3-37
3.7.1.3.2deleted3-37
3.7.1.3.3deleted3-38
3.7.1.3.4deleted3-38
3.7.1.4deleted3-38
3.7.1.5deleted3-38
3.7.1.5.1deleted3-38
3.7.1.5.1.1deleted3-38
3.7.1.5.1.2deleted3-38
3.7.1.5.2deleted3-38
3.7.1.5.2.1deleted3-38
3.7.1.5.2.2deleted3-38
3.7.1.5.3deleted3-38
3.7.1.5.3.1deleted3-38
3.7.1.5.3.2deleted3-38
3.7.1.6deleted3-38
3.7.1.6.1deleted3-38
3.7.1.6.2deleted3-38
3.7.2deleted3-38
3.7.2.1deleted3-39
3.7.2.2deleted3-39
3.7.2.2.1deleted3-39
3.7.2.2.2deleted3-39
3.7.2.2.3deleted3-39
3.7.2.2.4deleted3-39
3.7.2.2.5deleted3-39
3.7.2.2.6deleted3-39
3.7.2.2.7deleted3-39
3.7.2.2.7.1deleted3-39
3.7.2.2.7.2deleted3-39
3.7.2.2.7.3deleted3-39
3.7.2.2.7.4deleted3-39
3.7.2.2.7.5deleted3-39
3.7.2.2.8deleted3-39
3.7.2.2.8.1deleted3-39
3.7.2.2.8.2deleted3-39
3.7.2.2.8.3deleted3-39
3.7.2.2.8.4deleted3-39
3.7.2.2.8.5deleted3-39
3.7.2.2.9deleted3-39
3.7.2.2.9.1deleted3-39
3.7.2.2.9.2deleted3-39
3.7.2.2.9.3deleted3-39
3.7.2.2.9.4deleted3-40
3.7.2.2.9.5deleted3-40
3.7.2.2.10deleted3-40
3.7.2.2.10.1deleted3-40
3.7.2.2.10.2deleted3-40
3.7.2.2.10.3deleted3-40
3.7.2.3deleted3-40
3.7.2.3.1deleted3-40
3.7.2.3.2deleted3-40
3.7.2.3.3deleted3-40
3.7.2.4deleted3-40
3.7.2.5deleted3-40
3.7.2.5.1deleted3-40
3.7.2.5.2deleted3-40
3.7.2.5.3deleted3-40
3.7.2.6deleted3-40
3.7.2.6.1deleted3-40
3.7.2.6.2deleted3-40
3.7.3Deleted3-40
3.7.4Blood Pressure/Electrocardiograph (BP/ECG)3-40
3.7.4.1Purpose3-40
3.7.4.2Performance Characteristics3-40
3.7.4.2.1Blood Pressure Performance Requirements3-41
3.7.4.2.1.1Measurement techniques3-41
3.7.4.2.1.1.1Primary Technique3-41
3.7.4.2.1.1.2Secondary Technique3-41
3.7.4.2.1.2Operating Modes3-41
3.7.4.2.1.2.1Automatic Mode3-41
3.7.4.2.1.2.2Manual Mode3-41
3.7.4.2.1.3Accuracy3-41
3.7.4.2.1.4Cuff Parameters3-41
3.7.4.2.1.4.1Cuff Inflation Value3-41
3.7.4.2.1.4.2Subsequent Pressures3-41
3.7.4.2.1.4.3Maximum Cuff Pressure3-41
3.7.4.2.1.4.4Linear Cuff Deflation3-41
3.7.4.2.1.4.5Safety Features3-41
3.7.4.2.2ECG Performance Requirements3-42
3.7.4.2.2.1Measurement Techniques3-42
3.7.4.2.2.1.1Automatic Mode3-42
3.7.4.2.2.1.2Manual mode3-42
3.7.4.2.2.1.3Technical Specifications3-42
3.7.4.2.2.1.4Measure & Interpretation3-42
3.7.4.2.2.1.5Audible & Visual Alarms3-42
3.7.4.2.3Lead Box Performance Requirements3-42
3.7.4.2.3.1Lead Box Specifications3-42
3.7.4.2.3.2Lead Characteristics3-43
3.7.4.2.3.2.1Color Coding3-43
3.7.4.2.4Resupply Kit Performance Requirements3-43
3.7.4.2.4.1Resupply Kit SPecifications3-43
3.7.4.3Power3-43
3.7.4.3.1Russian Segment Power Supply3-43
3.7.4.3.2ISS Power Supply3-43
3.7.4.3.3Power Limits3-43
3.7.4.4Monitor, Data, and Information3-43
3.7.4.4.1Blood Pressure Monitor Display and ControL3-43
3.7.4.4.2ECG Monitor Display and Control3-44
3.7.4.4.3Data Interfaces3-44
3.7.4.4.3.1Interface to SSC3-44
3.7.4.4.3.2Data Download3-44
3.7.4.4.3.3Other Interfaces3-44
3.7.4.4.3.4Printing3-45
3.7.4.5Physical Characteristics3-45
3.7.4.5.1Dimensions3-45
3.7.4.5.1.1bp/ecg system stowage kit dimensions3-45
3.7.4.5.1.2bp/ecg resupply kit dimensions3-45
3.7.4.5.2Mass Properties3-45
3.7.4.5.3Physical Interface3-45
3.7.4.6Shelf Life3-45
3.7.5deleted3-45
3.7.5.1deleted3-45
3.7.5.2deleted3-45
3.7.5.3deleted3-45
3.7.5.4deleted3-45
3.7.5.5deleted3-45
3.7.5.5.1deleted3-46
3.7.5.5.2deleted3-46
3.7.5.5.3deleted3-46
3.7.5.6deleted3-46
3.7.6Deleted3-46
3.7.7deleted3-46
3.7.7.1deleted3-46
3.7.7.2deleted3-46
3.7.7.2.1deleted3-46
3.7.7.2.2deleted3-46
3.7.7.2.3deleted3-46
3.7.7.2.4deleted3-46
3.7.7.2.4.1deleted3-46
3.7.7.2.4.2deleted3-46
3.7.7.2.4.3deleted3-46
3.7.7.2.4.4csas oxygen monitoring accuracy in a dynamic total pressure, dynamic oxygen partial pressure environment3-46
3.7.7.2.5operating pressure3-46
3.7.7.2.5.1combustion products monitoring operational pressure3-46
3.7.7.2.5.2oxygen monitoring operational pressure3-46
3.7.7.2.6remote sampling3-46
3.7.7.3Power3-47
3.7.7.3.1active mode3-47
3.7.7.3.2passive mode3-47
3.7.7.4deleted3-47
3.7.7.4.1Deleted3-47
3.7.7.4.1.1deleted3-47
3.7.7.4.2deleted3-47
3.7.7.4.3deleted3-47
3.7.7.4.3.1deleted3-47
3.7.7.4.3.2deleted3-47
3.7.7.4.3.3deleted3-47
3.7.7.4.4deleted3-47
3.7.7.5deleted3-47
3.7.7.5.1deleted3-47
3.7.7.5.2deleted3-47
3.7.7.5.3deleted3-47
3.7.7.5.3.1deleted3-47
3.7.7.6deleted3-47
3.7.7.6.1deleted3-47
3.7.7.6.2deleted3-47
3.7.7.6.3deleted3-47
3.7.7.7deleted3-47
3.7.7.7.1deleted3-47
3.7.7.7.2deleted3-47
3.7.7.7.3deleted3-47
3.7.8Deleted3-48
3.7.9deleted3-48
3.7.9.1deleted3-48
3.7.9.2deleted3-48
3.7.9.2.1deleted3-48
3.7.9.2.2deleted3-48
3.7.9.3deleted3-48
3.7.9.4deleted3-48
3.7.9.5deleted3-48
3.7.9.5.1deleted3-48
3.7.9.5.2deleted3-48
3.7.9.5.3deleted3-48
3.7.9.6deleted3-48
3.7.10Crew Medical Restraint System (CMRS)3-48
3.7.10.1Purpose3-48
3.7.10.2Performance Characteristics3-48
3.7.10.2.1Restraint System3-48
3.7.10.2.2Electrical Isolation3-48
3.7.10.2.3Supine Zero Gravity Positions3-48
3.7.10.2.4Transportability3-48
3.7.10.2.5Restraint Location3-49
3.7.10.2.6Cervical Spine Stabilization3-49
3.7.10.2.7Maximum Time to Deploy3-49
3.7.10.3Power3-49
3.7.10.4Monitor, Data, and Information3-49
3.7.10.5Physical Characteristics3-49
3.7.10.5.1Dimensions3-49
3.7.10.5.2Mass Properties3-49
3.7.10.5.3Physical Interfaces3-49
3.7.10.6Shelf Life3-49
3.7.11Cycle Ergometer with Vibration Isolation and Stabilization
System (CEVIS)3-49
3.7.11.1.1Purpose3-49
3.7.11.2Performance Characteristics3-50
3.7.11.2.1Inertial Vibration Isolation System (IVIS) Boxes Performance Requirements3-50
3.7.11.2.1.1Inertial Weight System3-50
3.7.11.2.1.2Vibration3-50
3.7.11.2.2Isolators Performance Requirements3-50
3.7.11.2.2.1Structural Attachment3-50
3.7.11.2.2.2Interface to Rack3-50
3.7.11.2.2.3Station Keeping3-51
3.7.11.2.3Mounting Frame Performance Requirements3-51
3.7.11.2.3.1Mounting Frame3-51
3.7.11.2.3.2Rotating the Ergometer3-51
3.7.11.2.3.3Mounting to ISS Lab Rack3-51
3.7.11.2.3.4Transportability3-51
3.7.11.2.3.5Subject Restraint3-51
3.7.11.2.4Ergometer Accessory Bag Performance Requirements3-51
3.7.11.2.4.1Accessory Bag3-51
3.7.11.2.4.2Accessory Bag Contents3-51
3.7.11.2.5Resistive Mechanism/Workload3-51
3.7.11.2.5.1Resistive Mechanism3-51
3.7.11.2.5.2Manual Controller3-52
3.7.11.2.5.3Remote Electronic Controller3-52
3.7.11.2.6Inertia3-52
3.7.11.2.7Heartrate Monitoring3-52
3.7.11.3Power3-52
3.7.11.4Monitor, Data, and Information3-52
3.7.11.4.1Display3-52
3.7.11.4.2Software Interface3-52
3.7.11.4.3Controls3-52
3.7.11.4.3.1Manual Workload Selection3-52
3.7.11.4.3.2Electronic Workload Selection3-53
3.7.11.4.3.3Target Speed Selection3-53
3.7.11.4.3.4External Device Control3-53
3.7.11.4.3.5DELETED3-53
3.7.11.4.3.6universal serial bus (usb)3-53
3.7.11.4.4data handling3-53
3.7.11.4.4.1prescriptions uplink3-53
3.7.11.4.4.2data downlink3-53
3.7.11.4.5joint station lan (JSL) interface3-53
3.7.11.4.5.1security3-53
3.7.11.4.5.2ethernet3-53
3.7.11.5Physical Characteristics3-53
3.7.11.5.1Dimensions3-53
3.7.11.5.1.1Cycle Ergometer3-53
3.7.11.5.1.2IVIS Boxes3-54
3.7.11.5.1.3Accessory Bag3-54
3.7.11.5.1.4Mounting Frame3-54
3.7.11.5.1.5Isolator Kit Assembly3-54
3.7.11.5.2Mass Properties3-54
3.7.11.5.2.1Cycle Ergometer3-54
3.7.11.5.2.2IVIS Boxes3-54
3.7.11.5.2.3Accessory Bag3-54
3.7.11.5.2.4Mounting Frame3-54
3.7.11.5.2.5Isolator Kit Assembly3-54
3.7.11.5.3Physical Interfaces3-54
3.7.11.5.3.1Attachments3-54
3.7.11.5.3.1.1Seat Track Attachments3-54
3.7.11.5.3.1.2Thera-Band Tubing Interface3-54
3.7.11.5.3.1.2.1Thera-Band Tubing Pull Force3-55
3.7.11.5.3.2Thermal3-55
3.7.11.6Shelf Life3-55
3.7.12Deleted3-55
3.7.13Formaldehyde Monitoring Kit (FMK)3-55
3.7.13.1Purpose3-55
3.7.13.2Performance Characteristics3-55
3.7.13.2.1General Performance Requirements3-55
3.7.13.2.1.1Sampling3-55
3.7.13.2.1.2Deployment Capability3-55
3.7.13.2.1.3Interference from Contaminants3-55
3.7.13.2.2Analytical Requirements3-55
3.7.13.2.2.1Minimum Detection Limit3-55
3.7.13.2.2.2Stability3-55
3.7.13.2.2.3Sampling Controls3-56
3.7.13.2.2.4Uptake Rate3-56
3.7.13.2.2.5Sampling Protocol3-56
3.7.13.3Power3-56
3.7.13.4Monitor, Data, and Information3-56
3.7.13.5Physical Characteristics3-56
3.7.13.5.1Dimensions3-56
3.7.13.5.1.1Formaldehyde Monitor Kit3-56
3.7.13.5.1.2Formaldehyde Monitor3-56
3.7.13.5.2Mass Properties3-56
3.7.13.5.3Physical Interfaces3-56
3.7.13.6Shelf Life3-56
3.7.14Grab Sample Containers (GSC)3-56
3.7.14.1Purpose3-57
3.7.14.2Performance Characteristics3-57
3.7.14.2.1General Performance Requirements3-57
3.7.14.2.1.1Internal Surfaces3-57
3.7.14.2.1.2Valve Closure3-57
3.7.14.2.1.3Capacity3-57
3.7.14.2.2Analytical Requirements3-57
3.7.14.2.2.1Leak Rate3-57
3.7.14.2.2.2Pressure Rating3-57
3.7.14.2.2.3Cleanliness Verification3-57
3.7.14.2.2.4Dosing3-57
3.7.14.3Power3-57
3.7.14.4Monitor, Data, and Information3-57
3.7.14.5Physical Characteristics3-58
3.7.14.5.1Dimensions3-58
3.7.14.5.2Mass Properties3-58
3.7.14.5.3Physical Interfaces3-58
3.7.14.6Shelf Life3-58
3.7.15Heart Rate Monitor (HRM) Kit3-58
3.7.15.1Purpose3-58
3.7.15.2Performance Characteristics3-58
3.7.15.2.1Heart Rate Watch (HRW) Characteristics3-58
3.7.15.2.1.1Purpose3-58
3.7.15.2.1.2Interface3-58
3.7.15.2.1.3Data Download3-58
3.7.15.2.1.4Stored Data3-58
3.7.15.2.1.5Alarms3-59
3.7.15.2.1.6Battery Replacement3-59
3.7.15.2.1.7Timers3-59
3.7.15.2.2Heart Rate Transmitter Characteristics3-59
3.7.15.2.2.1Purpose3-59
3.7.15.2.2.2Battery Replacement3-59
3.7.15.2.2.3Transmission to Receiver/Watch3-59
3.7.15.2.2.4Transmission to T2 & CEVIS Control Panels3-59
3.7.15.2.2.5Transmitter Frequencies3-59
3.7.15.2.3Data download Characteristics3-59
3.7.15.2.3.1Interface to SSC3-59
3.7.15.2.3.2Data Download3-59
3.7.15.3Power3-59
3.7.15.3.1Battery Power3-59
3.7.15.3.2Transmitter Battery operational Life3-60
3.7.15.3.3Watch battery Operational Life3-60
3.7.15.4Monitor, Data, and Information3-60
3.7.15.4.1Display3-60
3.7.15.4.2Data Download Display3-60
3.7.15.4.3Text File3-60
3.7.15.4.4Data Storage3-60
3.7.15.5Physical Characteristics3-60
3.7.15.5.1Dimensions3-60
3.7.15.5.2Mass Properties3-60
3.7.15.5.3Physical Interfaces3-60
3.7.15.6Shelf Life3-60
3.7.16Resistive Exercise Device (RED)3-60
3.7.16.1Interim Resistive Exercise Device (IRED)3-61
3.7.16.1.1Purpose3-61
3.7.16.1.2Performance Characteristics3-61
3.7.16.1.2.1Muscle Group Exercise3-61
3.7.16.1.2.2Heel Movement3-61
3.7.16.1.2.3Accessories3-61
3.7.16.1.2.4Squats3-61
3.7.16.1.2.5Resistance3-61
3.7.16.1.2.6Adjustability3-61
3.7.16.1.2.7Concentric and Eccentric Capability3-61
3.7.16.1.2.8Resistance Curve3-61
3.7.16.1.2.9Range of Motion3-61
3.7.16.1.2.10Deploy & Stow Time Constraints3-61
3.7.16.1.2.11Exercise Without Assistance3-61
3.7.16.1.2.12This Section Intentionally Left Blank3-61
3.7.16.1.2.13IRED Scale Accessory Accuracy3-61
3.7.16.1.3Power3-61
3.7.16.1.4Monitor, Data, and Information3-61
3.7.16.1.4.1Display Resistance3-61
3.7.16.1.4.2Exercise Parameters3-61
3.7.16.1.5Physical Characteristics3-61
3.7.16.1.5.1Dimensions3-61
3.7.16.1.5.1.1IRED Fore & Aft3-61
3.7.16.1.5.1.2IRED Accessory Kit3-61
3.7.16.1.5.1.3IRED Squat Support, Top3-61
3.7.16.1.5.1.4IRED Squat Support, Bottom3-61
3.7.16.1.5.1.5IRED Node 1 Mounting Plates3-61
3.7.16.1.5.1.6IRED Maintenance Kit3-61
3.7.16.1.5.1.7IRED Scale Accessory Size3-61
3.7.16.1.5.2Mass Properties3-62
3.7.16.1.5.2.1IRED Fore & Aft3-62
3.7.16.1.5.2.2IRED Accessory Kit3-62
3.7.16.1.5.2.3IRED Squat Support, Top3-62
3.7.16.1.5.2.4IRED Squat Support, Bottom3-62
3.7.16.1.5.2.5IRED Node 1 Mounting Plate3-62
3.7.16.1.5.2.6IRED Maintenance Kit3-62
3.7.16.1.5.2.7IRED Scale Accessory Weight3-62
3.7.16.1.5.3Physical Interfaces3-62
3.7.16.1.6Shelf Life3-62
3.7.16.2Advanced Resistive Exercise Device (ARED)3-62
3.7.16.2.1Purpose3-62
3.7.16.2.2Performance Characteristics3-62
3.7.16.2.2.1User Population3-62
3.7.16.2.2.2Resistive Exercises3-62
3.7.16.2.2.3Resistance3-63
3.7.16.2.2.4Force3-63
3.7.16.2.2.5Adjustability3-63
3.7.16.2.2.5.1Adjustability Time Constraint3-63
3.7.16.2.2.6Concentric and Eccentric Capability3-63
3.7.16.2.2.7Tolerance on Resistance3-63
3.7.16.2.2.8Range of Motion3-64
3.7.16.2.2.9Reconfiguration, Load Change and Exercise by a single
Crewmember3-64
3.7.16.2.2.9.1Deploy & Stow Time Constraints3-64
3.7.16.2.2.10Calibration3-64
3.7.16.2.2.11Visual Indicators3-64
3.7.16.2.2.12ARED Access to the Z1 Hatch3-65
3.7.16.2.2.13Functionality Without Electrical Power3-65
3.7.16.2.2.14Display of Exercise Data to the Exercising Crewmember3-65
3.7.16.2.2.14.1Mechanical Display3-65
3.7.16.2.2.14.2Touch-Screen Display3-65
3.7.16.2.2.15Crew Interactions3-65
3.7.16.2.2.15.1Crew Interface3-65
3.7.16.2.2.15.2Operations Nomenclature3-65
3.7.16.2.2.15.3Crew Data Privacy3-65
3.7.16.2.2.15.4Crewmember Log-In3-65
3.7.16.2.3Power3-65
3.7.16.2.3.1Input Power3-65
3.7.16.2.3.1.1Power On-Off Control3-65
3.7.16.2.3.1.2Input Voltage3-65
3.7.16.2.3.1.3Power Dropout3-66
3.7.16.2.3.2Watts (Peak & Average)3-66
3.7.16.2.4Measurement, Monitor, Data and Information3-66
3.7.16.2.4.1Exercise Parameters3-66
3.7.16.2.4.2Transfer, Download, Upload, Storage and Transmission of Data3-66
3.7.16.2.5Physical Characteristics3-66
3.7.16.2.5.1Dimensions3-66
3.7.16.2.5.2Mass Properties3-66
3.7.16.2.5.2.1Launch Weight3-66
3.7.16.2.5.2.2On-Orbit Mass3-66
3.7.16.2.5.2.3On-Orbit Spares Mass3-66
3.7.16.2.5.3Physical Interfaces3-66
3.7.16.2.6Shelf Life3-66
3.7.17Microbial Air Sampler (MAS)3-66
3.7.17.1Purpose3-67
3.7.17.2Performance Characteristics3-67
3.7.17.2.1Sample Volume3-67
3.7.17.2.2Operating Times3-67
3.7.17.2.3Sample Time3-67
3.7.17.2.4Kit Contents3-67
3.7.17.3Power3-67
3.7.17.3.1Battery Power3-67
3.7.17.3.2Rechargeable Battery Pack3-67
3.7.17.3.2.1Charge Retention3-67
3.7.17.3.2.2Charge/Discharge Cycles3-67
3.7.17.4Monitor, Data, and Information3-67
3.7.17.5Physical Characteristics3-67
3.7.17.5.1Dimensions3-67
3.7.17.5.1.1MAS Dimensions3-67
3.7.17.5.1.2MAS Kit3-68
3.7.17.5.2Mass Properties3-68
3.7.17.5.2.1MAS Mass3-68
3.7.17.5.2.2MAS Kit Mass3-68
3.7.17.5.3Physical Interfaces3-68
3.7.17.6Shelf Life3-68
3.7.17.6.1MAS Shelf Life3-68
3.7.17.6.2MAS Kit Shelf Life3-68
3.7.18Deleted3-68
3.7.19Passive Dosimeter Kit (PDK)3-68
3.7.19.1Purpose3-68
3.7.19.1.1CPD3-68
3.7.19.1.2RAM3-68
3.7.19.1.3HRD3-69
3.7.19.2Performance Characteristics3-69
3.7.19.2.1CPD Characteristics3-69
3.7.19.2.2RAM Characteristics3-69
3.7.19.2.3HRD Characteristics3-69
3.7.19.3Power3-69
3.7.19.4Monitor, Data, and Information3-69
3.7.19.4.1HRD Display3-69
3.7.19.5Physical Characteristics3-69
3.7.19.5.1Dimensions3-69
3.7.19.5.1.1CPD3-69
3.7.19.5.1.2RAM3-69
3.7.19.5.1.3HRD3-70
3.7.19.5.1.4PDK3-70
3.7.19.5.2Mass Properties3-70
3.7.19.5.2.1CPD3-70
3.7.19.5.2.2RAM3-70
3.7.19.5.2.3HRD3-70
3.7.19.5.2.4PDK3-70
3.7.19.5.3Physical Interfaces3-70
3.7.19.5.3.1Interfaces3-70
3.7.19.5.3.2Labels3-70
3.7.19.5.3.3Crew Worn3-70
3.7.19.6Shelf Life3-70
3.7.19.6.1Shelf Life for HRD3-70
3.7.19.6.2Shelf Life for CPD and RAM3-70
3.7.20Respiratory Support Pack (RSP)3-71
3.7.20.1Purpose3-71
3.7.20.2Performance Characteristics3-71
3.7.20.2.1Automated Oxygen Ventillation3-71
3.7.20.2.2Breathing3-71
3.7.20.2.3IMV3-71
3.7.20.2.4Passive Heat & Humidification3-71
3.7.20.2.5Low Flow Oxygen3-71
3.7.20.2.6Oxygen Interface3-71
3.7.20.2.7Variable Oxygen Subsystem3-71
3.7.20.2.7.1Purpose3-71
3.7.20.2.7.2performance characteristics3-72
3.7.20.2.7.2.1Sensitivity3-72
3.7.20.2.7.2.2FDA Approval3-72
3.7.20.2.7.2.3Storage and Packaging3-72
3.7.20.2.7.2.3.1Collocated3-72
3.7.20.2.7.2.3.2Cleanliness3-72
3.7.20.2.7.3Power3-72
3.7.20.2.7.4Monitor, data, and information3-72
3.7.20.2.7.5Physical characteristics3-72
3.7.20.2.7.5.1dimensions3-72
3.7.20.2.7.5.2Mass properties3-72
3.7.20.2.7.5.3Physical Interfaces3-73
3.7.20.2.7.5.3.1Applicable airway interface3-73
3.7.20.2.7.5.3.2Patient interfaces3-73
3.7.20.2.7.5.3.3oxygen source interfaces3-73
3.7.20.2.7.6Shelf life3-73
3.7.20.3Power3-73
3.7.20.4Monitor, Data, and Information3-73
3.7.20.5Physical Characteristics3-74
3.7.20.5.1Dimensions3-74
3.7.20.5.2Mass Properties3-74
3.7.20.5.3Physical Interfaces3-74
3.7.20.6Shelf Life3-74
3.7.21Deleted3-74
3.7.22Surface Sampler Kit (SSK)3-74
3.7.22.1Purpose3-74
3.7.22.2Performance Characteristics3-74
3.7.22.2.1Sampling Capacity3-74
3.7.22.2.2Sample Quantitation3-74
3.7.22.2.3TRash Disposal3-74
3.7.22.2.4Sampling Surfaces3-74
3.7.22.2.5Sampling Supplies3-74
3.7.22.2.6Bacterial & Fungi Detection3-75
3.7.22.3Power3-75
3.7.22.4Monitor, Data, and Information3-75
3.7.22.4.1Labeling3-75
3.7.22.4.2Sample Results3-75
3.7.22.5Physical Characteristics3-75
3.7.22.5.1Dimensions3-75
3.7.22.5.2Mass Properties3-75
3.7.22.5.3Physical Interfaces3-75
3.7.22.6Shelf Life3-75
3.7.23Tissue Equivalent Proportional Counter (TEPC)3-75
3.7.23.1Purpose3-75
3.7.23.2Performance Characteristics3-76
3.7.23.2.1LET Range3-76
3.7.23.2.2Dose Range3-76
3.7.23.2.3Dose Rate Range3-76
3.7.23.2.4LET Spectra Resolution3-76
3.7.23.2.5Reserved3-76
3.7.23.3Power3-76
3.7.23.4Monitor, Data, and Information3-76
3.7.23.4.1Display Information3-76
3.7.23.4.2Data Download3-76
3.7.23.4.3Data Types3-76
3.7.23.4.4Requirements Documentation3-76
3.7.23.4.5Data Capacity3-76
3.7.23.4.6Caution & Warning Alarm3-77
3.7.23.5Physical Characteristics3-77
3.7.23.5.1Dimensions3-77
3.7.23.5.2Mass Properties3-77
3.7.23.5.3Physical Interface3-77
3.7.23.5.3.1Attachment3-77
3.7.23.5.3.2Thermal3-77
3.7.23.6Shelf Life3-77
3.7.24TOCA Subsystem Performance Characteristics3-77
3.7.24.1Total Organic Carbon Detection Range3-77
3.7.24.2Total Organic Carbon Detection Accuracy3-77
3.7.24.3Automated Replication3-77
3.7.24.4Total Organic Detection Precision3-78
3.7.24.5Non-Hazardous Sample Waste3-78
3.7.24.6Reagents3-78
3.7.24.7Software Load3-78
3.7.24.8Calibration Standards Shelf -Life3-78
3.7.24.9In-Flight Accuracy Check3-78
3.7.24.10Sample Carryover3-78
3.7.24.11Crew Interface Time3-78
3.7.24.12Crew Interface Time for Maintenance3-78
3.7.24.13Total Analysis Time3-78
3.7.24.14Analysis Frequency3-79
3.7.24.15Consecutive Analysis3-79
3.7.24.16Diagnostics3-79
3.7.24.16.1Self Diagnostics Test3-79
3.7.24.16.2Self Diagnostics Results3-79
3.7.24.17Power Consumption3-79
3.7.24.17.1Peak Power3-79
3.7.24.17.2Average Continuous Power3-79
3.7.24.18Physical Characteristics3-79
3.7.24.18.1Dimensions3-79
3.7.24.18.1.1TOC Analyzer Transportation Dimensions3-79
3.7.24.18.1.2TOCA Supply Kit Transportation Dimensions3-79
3.7.24.18.1.3TOC Analyzer Deployed Dimensions3-80
3.7.24.18.2Mass Properties3-80
3.7.24.18.2.1Weight3-80
3.7.24.18.2.2TOCA Center of Gravity3-80
3.7.24.19Lifetime3-80
3.7.24.19.1Cycle Life3-80
3.7.24.19.2Shelf Life3-80
3.7.24.20Interfaces3-80
3.7.24.20.1Hook and Loop Mounting Interface3-80
3.7.24.20.2Seat Track Mounting Interface3-80
3.7.24.20.3Power Interface3-80
3.7.24.20.4Data Interface3-80
3.7.25Treadmill device3-80
3.7.25.1Deleted3-81
3.7.25.2Second treadmill (T2)3-81
3.7.25.2.1purpose3-81
3.7.25.2.2performance characteristics3-81
3.7.25.2.2.1Minimum and Maximum Speed for Active Mode3-81
3.7.25.2.2.2Resistive Force for Passive Mode3-81
3.7.25.2.2.3ISOLATE ISS STRUTURE FROM EXERCISE-INDUCED VIBRATIONS3-81
3.7.25.2.2.4RESTRAIN AN EXERCISING CREWMEMBER3-81
3.7.25.2.2.5MONITOR AND MEASURE HUMAN PERFORMANCE3-81
3.7.25.2.3power3-81
3.7.25.2.4MONITOR, DATA, AND INFORMATION3-81
3.7.25.2.4.1t2 control panel3-81
3.7.25.2.4.2programmed exercise protocols3-82
3.7.25.2.4.3programmed exercise protocol uplink3-82
3.7.25.2.4.4measure performance parameters3-82
3.7.25.2.4.5record performance parameters3-82
3.7.25.2.4.6downlink performance parameters3-82
3.7.25.2.5physical characteristics3-82
3.7.25.2.5.1locomotion surface length3-82
3.7.25.2.5.2locomotion surface width3-82
3.7.25.2.5.3handrail3-82
3.7.25.2.5.4physical interfaces3-82
3.7.25.2.6operational lifetime3-83
3.7.26deleted3-83
3.7.27Deleted3-83
3.7.28Deleted3-83
3.7.29Deleted3-83
3.7.30deleted3-83
3.7.30.1deleted3-83
3.7.30.2deleted3-83
3.7.30.2.1deleted3-83
3.7.30.2.1.1deleted3-83
3.7.30.2.1.2deleted3-83
3.7.30.2.1.3deleted3-83
3.7.30.2.1.4deleted3-83
3.7.30.2.1.5deleted3-83
3.7.30.2.1.6deleted3-83
3.7.30.2.2deleted3-83
3.7.30.2.2.1deleted3-83
3.7.30.2.2.2deleted3-83
3.7.30.2.2.3deleted3-83
3.7.30.2.2.4deleted3-83
3.7.30.2.2.5deleted3-83
3.7.30.2.2.6deleted3-83
3.7.30.2.2.7deleted3-83
3.7.30.3deleted3-83
3.7.30.3.1deleted3-83
3.7.30.3.2deleted3-83
3.7.30.3.3deleted3-84
3.7.30.3.4deleted3-84
3.7.30.3.5deleted3-84
3.7.30.4deleted3-84
3.7.30.4.1deleted3-84
3.7.30.4.2deleted3-84
3.7.31Deleted3-84
3.7.32deleted3-84
3.7.32.1deleted3-84
3.7.32.2deleted3-84
3.7.32.2.1deleted3-84
3.7.32.2.2deleted3-84
3.7.32.2.3deleted3-84
3.7.32.3deleted3-84
3.7.32.3.1deleted3-84
3.7.32.4deleted3-84
3.7.32.5deleted3-84
3.7.32.5.1deleted3-84
3.7.32.5.2deleted3-84
3.7.32.5.3deleted3-84
3.7.32.6deleted3-84
3.7.32.6.1deleted3-84
3.7.32.6.2deleted3-84
3.7.33deleted3-84
3.7.33.1deleted3-84
3.7.33.2deleted3-84
3.7.33.2.1deleted3-84
3.7.33.2.1.1deleted3-84
3.7.33.2.1.2deleted3-85
3.7.33.2.2deleted3-85
3.7.33.2.2.1deleted3-85
3.7.33.2.2.2deleted3-85
3.7.33.2.3deleted3-85
3.7.33.2.3.1deleted3-85
3.7.33.2.3.2deleted3-85
3.7.33.2.3.3deleted3-85
3.7.33.2.3.4deleted3-85
3.7.33.2.3.5deleted3-85
3.7.33.2.3.6deleted3-85
3.7.33.2.3.7deleted3-85
3.7.33.2.4deleted3-85
3.7.33.2.5deleted3-85
3.7.33.2.6deleted3-85
3.7.33.3deleted3-85
3.7.33.4deleted3-85
3.7.33.5deleted3-85
3.7.33.5.1deleted3-85
3.7.33.5.2deleted3-85
3.7.33.5.3deleted3-85
3.7.33.5.3.1deleted3-85
3.7.33.5.3.2deleted3-85
3.7.33.5.3.3deleted3-85
3.7.33.5.3.4deleted3-85
3.7.33.5.3.5deleted3-85
3.7.33.6deleted3-85
3.7.34CHECS SSC Software3-85
3.7.34.1Purpose3-86
3.7.34.2Performance characteristics3-86
3.7.34.2.1SSC Standard load3-86
3.7.34.2.2data handling requirements3-86
3.7.34.2.3administrative functions3-86
4.0QUALITY ASSURANCE PROVISIONS4-1
4.1GENERAL4-1
4.1.1Responsibility for Verifications4-2
4.2EQUIPMENT QUALITY CONFORMANCE INSPECTIONS4-3
4.3SYSTEM REQUIREMENTS4-3
4.3.1General4-3
4.3.2Characteristics4-3
4.3.2.1Performance Characteristics4-3
4.3.2.1.1deleted4-3
4.3.2.1.1.1deleted4-3
4.3.2.1.2deleted4-3
4.3.2.1.2.1deleted4-3
4.3.2.1.2.2deleted4-3
4.3.2.1.3Deleted4-3
4.3.2.1.4Blood Pressure/Electrocardiograph Performance
Characteristics4-3
4.3.2.1.4.1Accept Power4-3
4.3.2.1.4.2Transmit Data4-3
4.3.2.1.4.3Interface to structure4-4
4.3.2.1.5deleted4-4
4.3.2.1.5.1deleted4-4
4.3.2.1.5.1.1deleted4-4
4.3.2.1.5.1.2deleted4-4
4.3.2.1.6DeletEd4-4
4.3.2.1.7deleted4-4
4.3.2.1.7.1deleted4-4
4.3.2.1.7.2deleted4-4
4.3.2.1.7.3deleted4-4
4.3.2.1.7.4deleted4-4
4.3.2.1.7.5deleted4-4
4.3.2.1.7.6deleted4-4
4.3.2.1.7.7deleted4-4
4.3.2.1.7.8deleted4-4
4.3.2.1.8Deleted4-4
4.3.2.1.9deleted4-4
4.3.2.1.9.1deleted4-4
4.3.2.1.10Crew Medical Restraint System (CMRS) Performance
Characteristics4-4
4.3.2.1.10.1CMRS Deployment Time4-4
4.3.2.1.10.2Electrical Isolation4-4
4.3.2.1.10.3Crew Treatment4-5
4.3.2.1.10.4Patient Transport4-5
4.3.2.1.11CEVIS Performance Characteristics4-5
4.3.2.1.11.1Crew Exercise4-5
4.3.2.1.11.2Upper And Lower Limb Cycling4-5
4.3.2.1.11.3Crew Restraint4-5
4.3.2.1.11.4Speed And Workload4-5
4.3.2.1.11.5Accept Power4-5
4.3.2.1.11.6Interface With the Vibration Isolation and Stabilization Device.4-5
4.3.2.1.11.7Vibration Reduction4-6
4.3.2.1.11.8Vibration Output4-6
4.3.2.1.11.9Interface With the Ergometer4-6
4.3.2.1.11.10Interface To Structure4-6
4.3.2.1.12Deleted4-6
4.3.2.1.13Formaldehyde Monitoring Kit (FMK) Performance Characteristics4-6
4.3.2.1.13.1Sampling4-6
4.3.2.1.13.2Detection4-6
4.3.2.1.13.3Interference4-6
4.3.2.1.14Grab Sample Containers (GSC) Performance Characteristics4-6
4.3.2.1.14.1Internal Surface4-7
4.3.2.1.14.2Sampling Valve4-7
4.3.2.1.14.3Pressure rating4-7
4.3.2.1.15Heart Rate Monitor (HRM) Performance Characteristics4-7
4.3.2.1.15.1Crew Exercise4-7
4.3.2.1.15.2Deleted4-7
4.3.2.1.15.3CEVIS Interface4-7
4.3.2.1.15.4SSC Interface4-7
4.3.2.1.15.5T2 interface4-7
4.3.2.1.16RED Performance Characteristics4-7
4.3.2.1.16.1deleted4-8
4.3.2.1.16.1.1deleted4-8
4.3.2.1.16.1.2deleted4-8
4.3.2.1.16.1.3deleted4-8
4.3.2.1.16.1.4deleted4-8
4.3.2.1.16.2Advanced Resistive Exercise Device (ARED)4-8
4.3.2.1.16.2.1Crew Exercise4-8
4.3.2.1.16.2.2Iso-Exercise and Testing4-8
4.3.2.1.16.2.3Concentric Exercise4-8
4.3.2.1.16.2.4Speed and Workload Variability4-8
4.3.2.1.16.2.5Manual Operation4-8
4.3.2.1.16.2.6Crew Restraint4-8
4.3.2.1.16.2.7Microgravity Requirements4-8
4.3.2.1.16.2.7.1Limit Quasi-Steady Acceleration4-9
4.3.2.1.16.2.7.2Limit Vibratory Accelerations4-9
4.3.2.1.16.2.8Interfaces4-9
4.3.2.1.17Microbial Air Sampler Performance Characteristics4-9
4.3.2.1.17.1Support Detection4-9
4.3.2.1.17.2Support Ground Analysis4-9
4.3.2.1.17.3Refrigeration Capability4-9
4.3.2.1.17.4Sample Rate4-9
4.3.2.1.18Deleted4-9
4.3.2.1.19Passive Dosimeter Kit Performance Characteristics4-9
4.3.2.1.19.1Support Detection4-10
4.3.2.1.19.2Radiation Area Monitor Interface4-10
4.3.2.1.19.3HRD Stowage4-10
4.3.2.1.19.4CPD Interface4-10
4.3.2.1.20Respiratory Support Pack Performance Characteristics4-10
4.3.2.1.20.1Crew Treatment4-10
4.3.2.1.20.1.1Variable oxygen subsytem4-10
4.3.2.1.20.2Accept Oxygen4-10
4.3.2.1.21Deleted4-10
4.3.2.1.22Surface Sampler Kit Performance Characteristics4-10
4.3.2.1.22.1Support Detection4-11
4.3.2.1.22.2Support Ground Analysis4-11
4.3.2.1.22.3Refrigeration Requirement4-11
4.3.2.1.23Tissue Equivalent Proportional Counter Performance
Requirements4-11
4.3.2.1.23.1Support Detection4-11
4.3.2.1.23.2Data Record4-11
4.3.2.1.23.3Data Display4-11
4.3.2.1.23.4Accept Power4-11
4.3.2.1.23.5Transmit Data4-12
4.3.2.1.23.6Interface to Structure4-12
4.3.2.1.24TOCA Performance4-12
4.3.2.1.24.1Support Analytical Detection Capability4-12
4.3.2.1.24.2Water Sample Compatibility4-12
4.3.2.1.24.3Water Sample Compatibility and Interface4-12
4.3.2.1.24.4Waste Storage4-12
4.3.2.1.24.5Calibration4-12
4.3.2.1.24.6Data Record/Store/Display4-12
4.3.2.1.24.7Data Transfer4-12
4.3.2.1.24.8TOCA Portability4-12
4.3.2.1.24.9On-Orbit Operational Life4-13
4.3.2.1.24.10Interfaces4-13
4.3.2.1.24.10.1TOCA Subsystem Interfaces With ISS4-13
4.3.2.1.25treadmill Performance Characteristics4-13
4.3.2.1.25.1Crew Exercise4-13
4.3.2.1.25.2Crew Restraint4-13
4.3.2.1.25.3Speed and Workload4-13
4.3.2.1.25.4Accept Power4-13
4.3.2.1.25.5Interface to Vibration Isolation Device4-13
4.3.2.1.25.6Vibration Reduction4-13
4.3.2.1.25.7Vibration output4-13
4.3.2.1.25.8Interface to Structure4-14
4.3.2.1.25.9Data Transfer4-14
4.3.2.1.26deleted4-14
4.3.2.1.27deleted4-14
4.3.2.1.28deleted4-14
4.3.2.1.29deleted4-14
4.3.2.1.30deleted4-14
4.3.2.1.31deleted4-14
4.3.2.1.32deleted4-14
4.3.2.1.33deleted4-14
4.3.2.1.33.1deleted4-14
4.3.2.1.33.2deleted4-14
4.3.2.1.33.3deleted4-14
4.3.2.1.33.4deleted4-14
4.3.2.1.33.5deleted4-14
4.3.2.1.33.6deleted4-14
4.3.2.1.34CHECS ssc software performance characteristics4-14
4.3.2.2Physical Characteristics4-14
4.3.2.2.1Mass Properties4-14
4.3.2.2.2Envelope4-15
4.3.2.3Reliability4-15
4.3.2.3.1Failure Tolerance4-15
4.3.2.3.2Failure Propagation4-15
4.3.2.4Maintainability4-15
4.3.2.4.1Incorrect Equipment Installation4-15
4.3.2.4.2Restraining and Handling Devices for Temporary Storage4-15
4.3.2.4.3Manual failure detection, isolation, and recovery4-15
4.3.2.5Environmental Conditions4-15
4.3.2.5.1On–Orbit Environmental Conditions4-15
4.3.2.5.1.1On-Orbit Internal Environments4-15
4.3.2.5.1.2On-Orbit Acceleration Environment4-16
4.3.2.5.1.3On-Orbit External Environment4-16
4.3.2.5.1.4On-Orbit Vibration Environment4-16
4.3.2.6Transportability4-16
4.3.2.7Nominal Ionizing Radiation Environment4-16
4.3.3Design and Construction4-16
4.3.3.1Materials, Processes, and Parts4-16
4.3.3.1.1Materials and Processes4-16
4.3.3.1.1.1Control of Water-Soluble Volatile Organic Compounds4-16
4.3.3.1.2Electrical, Electronic, and Electromechanical Parts Selection4-17
4.3.3.1.3Fluid Standards4-17
4.3.3.1.4Seal Life4-17
4.3.3.1.5Connectors4-17
4.3.3.2Electromagnetic Radiation4-17
4.3.3.2.1Electromagnetic Compatibility (EMC)4-17
4.3.3.2.2Electromagnetic Susceptibility4-17
4.3.3.2.3Electromagnetic Testing of Portable Equipment4-17
4.3.3.2.4Electrical Grounding4-18
4.3.3.2.5Electrical Bonding4-18
4.3.3.2.6Cable and Wire Design4-18
4.3.3.2.7Electrostatic Discharge (ESD)4-18
4.3.3.2.8Corona4-18
4.3.3.3Nameplates and Product Marking4-18
4.3.3.4Workmanship4-18
4.3.3.4.1Cleanliness4-19
4.3.3.5Interchangeability4-19
4.3.3.6Safety4-19
4.3.3.6.1hazard elimination and control4-19
4.3.3.6.1.1Safety Failure Tolerance4-19
4.3.3.6.1.1.1Catastrophic Hazard (two-failure tolerance)4-19
4.3.3.6.1.1.2Critical Hazards (one-failure tolerance)4-19
4.3.3.6.1.2Design for Minimum Risk4-20
4.3.3.6.1.3Safety Devices4-20
4.3.3.6.2hazardous functional control4-20
4.3.3.6.2.1Inadvertent Operation Resulting in Catastrophic Hazards4-20
4.3.3.6.2.2Inadvertent Operation Resulting in Critical Hazards4-21
4.3.3.6.2.3Subsequent Induced Loads4-21
4.3.3.6.2.4Safety Interlocks4-21
4.3.3.6.2.5Monitoring4-21
4.3.3.6.2.5.1Flight and Ground Crew Monitoring4-22
4.3.3.6.2.5.1.1Near-Real-Time Monitoring4-22
4.3.3.6.2.5.1.2Real-Time Monitoring4-22
4.3.3.6.2.5.2Loss of Input or Failure4-22
4.3.3.6.2.5.3Launch Site Availability4-23
4.3.3.6.3Computer-based Control of Hazardous Functions4-23
4.3.3.6.3.1General4-23
4.3.3.6.3.2Function Deactivation4-24
4.3.3.6.3.3Function Activation4-24
4.3.3.6.3.4Function Activation − Multiple Hazard Controls4-25
4.3.3.6.4Hazardous Materials4-25
4.3.3.6.4.1Hazardous Fluid Containment4-25
4.3.3.6.4.2Storage of Hazardous Chemicals4-25
4.3.3.6.5Pyrotechnics4-26
4.3.3.6.6Environmental Safety4-26
4.3.3.6.6.1Environmental Compatibility4-26
4.3.3.6.6.2Nonionizing Radiation4-26
4.3.3.6.7Optics and Lasers4-26
4.3.3.6.7.1Lasers4-26
4.3.3.6.7.2Optical Requirements4-26
4.3.3.6.7.2.1Optical Instruments4-26
4.3.3.6.7.2.2Personnel Protection4-26
4.3.3.6.7.2.3Direct Viewing Optical Systems4-27
4.3.3.6.8Electrical Safety4-27
4.3.3.6.8.1Electrical Power Circuit Overloads4-27
4.3.3.6.8.1.1Circuit Overload Protection4-27
4.3.3.6.8.1.2Protective Device Sizing4-27
4.3.3.6.8.1.3Bent pin or conductive contamination4-27
4.3.3.6.8.2Crew Protection for Electrical Shock4-28
4.3.3.6.8.3Reapplication of Power4-28
4.3.3.6.8.4Batteries4-28
4.3.3.6.9Liquid Propellant Propulsion Systems4-28
4.3.3.6.10Fire Protection4-28
4.3.3.6.11Constraints4-28
4.3.3.6.11.1Pressurized Volume Depressurization and Repressurization Tolerance4-28
4.3.3.6.11.1.1Pressure Differential Tolerance4-28
4.3.3.6.11.1.2Operation during Pressure Changes4-29
4.3.3.6.11.2Emergency Egress4-29
4.3.3.6.11.3Component Hazardous Energy Provision4-29
4.3.3.6.11.4Hatch Opening4-29
4.3.3.6.11.5Hazardous Gas Accumulation4-29
4.3.3.6.11.5.1Accumulation Prevention4-29
4.3.3.6.11.5.2Detection, Monitoring, and Control4-29
4.3.3.6.11.6Equipment Clearance for Entrapment Hazard4-29
4.3.3.6.11.7Frangible Materials4-29
4.3.3.6.12Mechanical and Sharp Edge Hazards4-30
4.3.3.7Human Engineering4-30
4.3.3.7.1IVA Crew Load Requirements4-30
4.3.3.7.1.1IVA Translation Path Obstructions4-30
4.3.3.7.1.2IVA Closures and Covers Design Requirements4-30
4.3.3.7.2Controls and Displays Design Guidelines4-30
4.3.3.7.3Anthropometry4-30
4.3.3.7.4Nominal operations4-30
4.3.3.7.5Maintenance4-30

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