SSP_41140_P1_RF_final.pdf

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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 intends 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 associated documents will be available at the listed websites. Prospective offerors must notify the agency of their intent to submit a proposal. The RFP will procure technical integration services for human space flight at Johnson Space Center.

SSP 41140 P1 RF final

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SSP 41140

National Aeronautics and Space Administration International Space Station Program Johnson Space Center Houston, T exas Contract No. NNJ09GA18B PIC−SI−01

International Space Station Program

Space Station Program Node Element 1 to Node Element 3 Interface Control Document, Part 1

Revision F

26 February 2010

TYPE 1 NASA APPROVED

esa european space agency

SSP 41140 Part 1 Revision F 26 February 2010

REVISION AND HISTORY PAGE

REV. DESCRIPTION PUB.

DATE

− Initial Release 09/94

CHANGE 1, IRN 0002 (REFERENCE SSCD 000085 EFF. 05/05/95) 01/17/96

CHANGE 2, IRN 0003 (REFERENCE SSCD 000085 EFF. 05/05/95) 01/17/96

CHANGE 3, IRN 0005 (REFERENCE SSCD 000085 EFF. 05/05/95) 01/17/96

CHANGE 4, IRN 0006 (REFERENCE SSCD 000059 EFF. 07/14/95) 01/29/96

CHANGE 5, IRN 0004 (REFERENCE SSCD 000066 EFF. 07/28/96) 01/02/96

CHANGE 6, IRN 0002R1 (REFERENCE SSCD 000085 EFF. 05/05/95) 04/01/96

CHANGE 7, IRN 0003R1 (REFERENCE SSCD 000085 EFF. 05/05/95) 04/01/96

CHANGE 8, IRN 0005R1 (REFERENCE SSCD 000085 EFF. 05/05/95) 04/01/96

CHANGE 9, IRN 0006R1 (REFERENCE SSCD 000059 EFF. 07/14/95) 04/01/96

CHANGE 10, IRN 0145 (REFERENCE SSCD 000145 EFF. 10−31−95) 06/14/96

CHANGE 11, IRN 0001 (REFERENCE SSCD 000147 EFF. 09−27−95) 08/29/96

CHANGE 12, IRN 0013 (REFERENCE SSCD 000102 EFF. 11−04−94) 10/30/96

CHANGE 13 , IRN 0015 per CCR 000151 12/05/96

CHANGE 14, IRN 0007 per CCR 000169 12/10/96

CHANGE 15, IRN 0011 per CCR 000263 02/07/97

A Revision A per CCR 000475 10/10/97 This revision incorporates the following PIRNs: 41140−0014A, 41140−0015A, 41140−0020C, 41140−0024, 41140−0026C, 41140−0028, 41140−0029D, 41140−0030A, 41140−0034A, 41140−0035A

(REFERENCE IFM NO.: BP/96−0436, BP/96−0589)

For information: The PIRNs rolled into Revision A by previously released IRNs or as part of Revision A are noted below with their associated SSCN.

PIRN 41140−0014A IRN 0011 SSCN 000263

PIRN 41140−0015A IRN 0011 SSCN 000263

PIRN 41140−0020C IRN 0007 SSCN 000169

PIRN 41140−0024 N/A SSCN 000475

PIRN 41140−0026C IRN 0013 SSCN 000102

PIRN 41140−0028 IRN 0013 SSCN 000102

PIRN 41140−0029D IRN 0014 SSCN 000239

PIRN 41140−0030A IRN 0015 SSCN 000151

PIRN 41140−0034A IRN 0016 SSCN 000475

PIRN 41140−0035A IRN 0017 SSCN 000299

Note: IRNs 0014, 0017, and 0016 were never released, but were cancelled, as changes were rolled into Revision A.

REV. DESCRIPTION PUB.

DATE

B Revision B released per SSCN 001252. 06/29/98 Incorporates the following PIRNs associated with the appropriate SSCNs.

PIRN 41140−0033A IRN 0018 SSCN 000335

PIRN 41140−0037 N/A SSCN 001252

PIRN 41140−0038A IRN 0021 SSCN 000412

PIRN 41140−0039 IRN 0019 SSCN 000311

PIRN 41140−0040A N/A SSCN 001252

PIRN 41140−0041B IRN 0020 SSCN 000249

PIRN 41140−0042F IRN 0022 SSCN 000391

PIRN 41140−0043A IRN 0008 SSCN 000253

PIRN 41140−0044A IRN 0024 SSCN 000557

Note: IRNs 0018, 0019, 0020, 0021, 0024, 0008, and 0022 were never released, but were cancelled as changes were rolled into Revision B.

IRN 0025 (PIRN 41140−0048) incorporates SSCN 000719 09/09/98

C Revision C released per SSCN 001465 incorporates the following PIRNs associated 09/17/98 with the appropriate SSCNs.

PIRN 41140−0047 IRN N/A SSCN 001465

PIRN 41140−0049B IRN N/A SSCN 001465

IRN 0026 (PIRN 41140−0050) incorporates SSCN 001594. 10/09/98

IRN 0027 (PIRN 41140−0051) incorporates SSCN 001481. 10/09/98

IRN 0028 (PIRN 41140−0052) incorporates SSCN 001555. 10/09/98

D Revision D released per SSCN 001665 incorporates the following PIRNs associated 10/09/98 with the appropriate SSCNs.

PIRN 41140−0054 IRN N/A SSCN 001665

E Revision E released per SSCN 010058A, effective 07/30/07 04/04/08 Incorporates the following PIRNs associated with the appropriate SSCNs.

PIRN 41140−0046B IRN 0031 SSCN 859, 001786

PIRN 41140−AS−0001 N/A SSCN 0010058A

PIRN 41140−AS−0002A N/A SSCN 0010058A

PIRN 41140−AS−0005A N/A SSCN 0010058A

PIRN 41140−NA−0001B IRN 1464 SSCN 001464

PIRN 41140−NA−0002 IRN 0039 SSCN 001814

PIRN 41140−NA−0003D IRN 0039 SSCN 001814

PIRN 41140−NA−0004B N/A SSCN 0010058A

PIRN 41140−NA−0006C N/A SSCN 0010058A

PIRN 41140−NA−0007 N/A SSCN 002632

PIRN 41140−NA−0008 IRN 0044 SSCN 005242

PIRN 41140−NA−0009A IRN 0045 SSCN 002691

REV. DESCRIPTION PUB.

DATE

PIRN 41140−NA−0010B N/A SSCN 0010058A

PIRN 41140−NA−0025 N/A SSCN 0010058A

Note:

Approved CR 3488 was incorporated without PIRN, prior to document transition from Boeing to Contract A.

F Revision F released per SSCN 012320, incorporates the following approved 03−11−13 PIRNs associated with the appropriate IRNs and SSCN’s:

IRN SSCN

PIRN 41140−NA−0026A NA 012320

PIRN 41140−NA−0027 0050 008007

PIRN 41140−NA−0028C N/A 010560

PIRN 41140−NA−0029A 0029 001662

PIRN 41140−NA−0029A 0030 001740

PIRN 41140−NA−0029A 0040 003289

PIRN 41140−NA−0029A 0041 002877

PIRN 41140−NA−0029A 0043 005878

PIRN 41140−NA−0029A 0046 008255

PIRN 41140−NA−0029A 0049 008444

PIRN 41140−NA−0029A 0051 008939

PIRN 41140−NA−0029A 0052 009719

PIRN 41140−NA−0029A 0053 010782

PIRN 41140−NA−0029A 0054 009086

PIRN 41140−NA−0029A 0056 011151

PIRN 41140−NA−0029A 0057 011294

PIRN 41140−NA−0030A 0056 012320

Note: This revision also closes the following SSCNs, for which no revision is required: SSCN 011028 (IRN 0055) and 011388 (IRN 0058).

SSP 41140 Part 1 Revision F 26 February 2010SSP 41140 Part 1 Revision F 26 February 2010 i

PREFACE

The contents of this document are intended to be consistent with the tasks and products to be prepared by Program participants. Space Station Program Node Element 1 to Node Element 3 Interface Control Document shall be implemented on all new International Space Station contractual and internal activities and shall be included in any existing contracts through contract changes. This document is under the control of the Program Integration Control Board (PICB).

Any changes or revisions will be jointly agreed to and signed by National Aeronautics and Space Administration (NASA) and European Space Agency (ESA).

Date

/s/ Jeffrey J Arend 8/27/10

Jeffrey J. Arend Program Integration Control Board Chairman ii

NASA/ESA APPROVAL

INTERNATIONAL SPACE STATION PROGRAM

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

Date

Print Name

NASA NODES

Print Name

Date

For Concurrence For Concurrence for Philippe Deloo

ESA NODES

Rafael Garcia

/s/ Rafael Garcia

Oct/20/2010

/s/ B. Patti

Oct 19, 2010 iii

INTERNATIONAL SPACE STATION PROGRAM

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

CONCURRENCE

PREPARED BY:

SIGNATURE

PRINT NAME ORGN

DATE

SUPERVISED BY

SIGNATURE

PRINT NAME ORGN

DATE

DQA:

SIGNATURE

PRINT NAME ORGN

DATE

BOOK COORDINATOR

Cristina Clark ARES/PI&C

Kalyn Bullock ARES/PI&C

ARES/PI&C

NASA ICWG

SIGNATURE

PRINT NAME ORGN

DATE

Tyson E. Richmond NASA/OM

Victoria C Rodriguez

/s/ V. C. Rodriguez for Cristina Clark 2/25/2010

/s/Kalyn Bullock 2/25/10

2/25/10/s/Victoria C Rodriguez

/s/Tyson E. Richmond 4/6/10

INTERNATIONAL SPACE STATION PROGRAM

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

LIST OF CHANGES

iv

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

SSCBD ENTRY DATE CHANGE PARAGRAPH(S)

000859, 001786 41140−0046B Paragraphs: 1.1, 1.3, 2.1, 2.2, 3.1.1, 3.1.1.2, 3.1.1.3, 3.1.1.4.2, 3.1.1.5, 3.1.1.6, 3.1.2.1, 3.1.2.2, 3.2.1.1, 3.2.1.1.1, 3.2.1.1.2, 3.2.1.1.3, 3.2.1.1.3.1, 3.2.1.1.3.2, 3.2.1.1.3.6.3, 3.2.1.1.6, 3.2.1.2.1, 3.2.1.2.1.1.5, 3.2.1.2.1.3, 3.2.1.2.2, 3.2.1.2.2.1.4, 3.2.1.2.2.1.5, 3.2.1.2.3, 3.2.1.2.3.1.2, 3.2.1.2.3.1.3, 3.2.1.2.3.1.4, 3.2.1.2.4, 3.2.1.2.4.1.2, 3.2.1.2.4.1.3, 3.2.1.2.4.1.4, 3.2.1.2.5, 3.2.1.2.5.1.2, 3.2.1.2.5.1.4, 3.2.1.2.6, 3.2.1.2.6.1.2, 3.2.1.2.6.1.4, 3.2.1.2.8, 3.2.1.2.8.1.2.1, 3.2.1.2.8.1.2.2, 3.2.1.2.8.1.3, 3.2.1.2.8.1.4.1, 3.2.1.2.8.1.4.2, 3.2.1.2.8.1.4.3, 3.2.1.2.8.1.5, 3.2.1.2.9, 3.2.1.2.9.1.2, 3.2.1.2.9.1.3,3.2.1.2.10, 3.2.1.2.10.1, 3.2.1.2.12, 3.2.1.2.12.1, 3.2.1.2.12.2, 3.2.1.2.13, 3.2.1.2.13.1, 3.2.1.2.13.2, 3.2.1.2.14, 3.2.1.2.14.1.2.1, 3.2.1.2.14.1.2.2, 3.2.1.2.14.1.3, 3.2.1.2.14.1.4.1, 3.2.1.2.14.1.4.2, 3.2.1.3.1, 3.2.1.3.1.1.1, 3.2.1.3.1.2.1, 3.2.1.3.2, 3.2.1.3.2.1, 3.2.1.3.2.2.1, 3.2.1.3.2.2.3, 3.2.1.3.2.2.4, 3.2.1.3.3.2, 3.2.1.3.3.3, 3.2.1.3.3.4, 3.2.1.3.3.5, 3.2.1.4.1.1, 3.2.1.4.1.2, 3.2.1.4.1.3, 3.2.1.4.1.4, 3.2.1.4.1.5, 3.2.1.4.2, 3.2.1.4.4, 3.2.1.4.5, 3.2.2, 3.2.2.1, 3.2.2.1.1, 3.2.2.1.2, 3.2.2.1.3, 3.2.2.1.3.2, 3.2.2.1.3.3, 3.2.2.1.6, 3.2.2.1.9, 3.2.2.2.1, 3.2.2.2.1.1.2, 3.2.2.2.1.1.3, 3.2.2.2.1.1.4, 3.2.2.2.1.1.5, 3.2.2.2.1.2, 3.2.2.2.2, SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

LIST OF CHANGES − continued v

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

SSCBD ENTRY DATE CHANGE PARAGRAPH(S)

001786 41140−0046B Paragraphs: 3.2.2.2.2.1.2, 3.2.2.2.2.1.3, 3.2.2.2.2.1.4, 3.2.2.2.2.1.5, 3.2.2.2.2.2, 3.2.2.2.3, 3.2.2.2.3.1.2, 3.2.2.2.3.1.3, 3.2.2.2.3.1.4, 3.2.2.2.4, 3.2.2.2.4.1.2, 3.2.2.2.4.1.3, 3.2.2.2.4.1.4, 3.2.2.2.5, 3.2.2.2.5.1.2, 3.2.2.2.5.1.4, 3.2.2.2.5.1.5, 3.2.2.2.6, 3.2.2.2.6.1.2, 3.2.2.2.6.1.4, 3.2.2.2.8, 3.2.2.2.8.1.2.1, 3.2.2.2.8.1.2.2, 3.2.2.2.8.1.3, 3.2.2.2.8.1.4.1, 3.2.2.2.8.1.4.2, 3.2.2.2.8.1.4.3, 3.2.2.2.8.1.5, 3.2.2.2.9, 3.2.2.2.9.1.2, 3.2.2.2.9.1.3, 3.2.2.2.9.1.4, 3.2.2.2.9.1.5, 3.2.2.2.10, 3.2.2.2.10.1, 3.2.2.2.10.2, 3.2.2.2.12, 3.2.2.2.12.1, 3.2.2.2.12.2, 3.2.2.2.13, 3.2.2.2.13.1, 3.2.2.2.13.2, 3.2.2.2.14, 3.2.2.2.14.1.2.1, 3.2.2.2.14.1.2.2, 3.2.2.2.14.1.3, 3.2.2.2.14.1.4.1, 3.2.2.2.14.1.4.2, 3.2.2.2.14.1.5, 3.2.2.2.15, 3.2.2.2.15.1, 3.2.2.3.1, 3.2.2.3.1.1.1, 3.2.2.3.1.1.2, 3.2.2.3.1.2.1, 3.2.2.3.2, 3.2.2.3.2.1, 3.2.2.3.2.2.1, 3.2.2.3.2.2.3, 3.2.2.3.2.2.4, 3.2.2.3.3.1, 3.2.2.3.3.2, 3.2.2.3.3.3, 3.2.2.3.3.4, 3.2.2.4.1.1, 3.2.2.4.1.2, 3.2.2.4.1.3, 3.2.2.4.1.4, 3.2.2.4.1.5, 3.2.2.4.2, 3.2.2.4.4, 3.2.2.4.5, Appendix A Figures: 3.1.1−1, 3.1.1−2, 3.1.1.3−1, 3.2.1.1.4.2−1

Tables: 3.2.1.3.1.1.2−1, 3.2.1.3.1.2.1−1, 3.2.1.4.5−1, 3.2.1.4.5−2, 3.2.2.3.1.1.1−1, 3.2.2.3.1.1.2−1, 3.2.2.3.1.2.1−1, 3.2.2.4.5−1

010058 AS−0001 Paragraphs: 3.2.1.2.6.1.1, 3.2.2.2.6.1.1

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

LIST OF CHANGES − continued vi

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

SSCBD ENTRY DATE CHANGE PARAGRAPH(S)

010058 AS−0002A Paragraphs: 3.2.2.2.10.2

010058 AS−0005A Paragraphs: 3.2.2.2.10.1, 3.2.2.2.14.1.5

001464 NA−0001B Paragraphs: 3.2.1.4.6, 3.2.2.4.6, 3.2.2.4.6.1, 3.2.2.4.6.2 (Add)

Figures: 3.2.2.4.6.1−1 (Add)

Tables: 3.2.2.4.6.1−1, 3.2.2.4.6.1−2, 3.2.2.4.6.2−1, 3.2.2.4.6.2−2, 3.2.2.4.6.2−3 (Add)

001814 NA−0002 Paragraphs: 3.2.1.2.9.1.3, 3.2.2.2.9.1.3, 3.2.1.2.11, 3.2.1.2.11.1 (Add) , 3.2.1.2.11.2 (Add) , 3.2.1.2.11.3 (Add) , 3.2.2.2.11,

3.2.2.2.11.1 (Add) , 3.2.2.2.11.2 (Add),

3.2.2.2.11.3 (Add)

001814 NA−0003D Paragraphs: 3.2.1.2.9.1.3, 3.2.1.2.9.1.4, 3.2.1.2.9.1.5, 3.2.1.2.11, 3.2.1.2.11.1, 3.2.1.2.11.2, 3.2.1.2.11.3, 3.2.2.2.9.1.3, 3.2.2.2.9.1.4, 3.2.2.2.9.1.5, 3.2.2.2.11, 3.2.2.2.11.1, 3.2.2.2.11.2, 3.2.2.2.11.3

NA−0004B Paragraphs: 3.2.1.2.2.1.5, 3.2.1.2.2.2, 3.2.2.2.2.1.5, 3.2.1.2.2.3 (Add), 3.2.1.2.2.3.1 (Add), 3.2.1.2.2.3.2 (Add), 3.2.1.2.2.3.3 (Add), 3.2.2.2.2.3 (Add) ,

3.2.2.2.2.3.1 (Add), 3.2.2.2.2.3.2 (Add),

3.2.2.2.2.3.3 (Add) , 3.2.1.2.2.4 (Add), 3.2.1.2.2.4.1, 3.2.1.2.2.4.2 (Add),

3.2.1.2.2.4.3 (Add), 3.2.2.2.2.4 (Add),

3.2.2.2.2.4.1 (Add), 3.2.2.2.2.4.2 (Add),

3.2.2.2.2.4.3 (Add)

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

LIST OF CHANGES − continued vii

SSCBD ENTRY DATE CHANGE PARAGRAPH(S)

010058 NA−0006C Tables : 3.2.1.3.2.1.1−1, 3.2.2.3.2.1.1−2, 3.2.2.3.2.1.1−1, 3.2.2.3.2.1.1−2

002632 NA−0007 Paragraphs: 3.2.1.1.3.6.2, 3.2.1.1.3.6.4 (Add), 3.2.1.1.3.6.5, 3.2.1.3.1.3,

3.2.1.3.1.3.1 (Add), 3.2.1.3.3.2, 3.2.1.3.4 (Add), 3.2.1.3.5 (Add), 3.2.2.1.3.6.2,

3.2.2.1.3.6.4 (Add), 3.2.2.1.3.6.5 (Add),

3.2.2.3.1.3 (Add), 3.2.2.3.1.3.1 (Add), 3.2.2.3.3.2, 3.2.2.3.4, 3.2.2.3.5 (Add)

005242 NA−0008 Paragraphs: 3.2.1.2.3.1.2, 3.2.2.2.3.1.2

002691 NA−0009A Paragraphs: 3.2.1.3.3.2, 3.2.2.3.3.2

010058 NA−0010B Paragraphs: 3.2.1.2.10.2 (Delete),

3.2.1.2.15 (Add), 3.2.1.2.15.1 (Add), 3.2.2.2.15.1, 3.2.2.2.15.2 (Add) Figures: 3.1.1−2

010058 NA−0025 Paragraphs: 2.1 (Add), 3.2.2.2.14.1.1

Paragraphs: 3.2.1.2.12.2, 3.2.2.2.12.2

008644 NA−0026A Paragraphs: 2.1, 3.1.1.5, 3.1.1.6, 3.2.1.3.6, 3.2.1.3.6.1, 3.2.1.3.6.1.1(add), 3.2.1.3.6.1.1.2(add), 3.2.2.3.6, 3.2.2.3.6.1, 3.2.2.3.6.1.1, 3.2.2.3.6.1.1.1(add) Figures: 3.1.1−2, 3.2.1.3.6−1 Table(s): 3.2.1.3.1.1−1

008007 NA−0027 Paragraphs: 3.2.1.2.3.1.3, 3.2.1.2.4.1.3, 3.2.2.2.3.1.3, 3.2.2.2.4.1.3

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

LIST OF CHANGES − continued viii

SSCBD ENTRY DATE CHANGE PARAGRAPH(S)

010560 NA−0028C Paragraphs: 2.1(add), 3.1.15, 3.2.1.2.1, 3.2.1.2.1.1.2, 3.2.1.2.1.1.3, 3.2.1.2.1.1.4, 3.2.1.2.1.1.5, 3.2.1.2.2, 3.2.1.2.2.1.2, 3.2.1.2.2.1.3, 3.2.1.2.2.1.4, 3.2.1.2.2.1.5, 3.2.1.2.2.3.1(deleted), 3.2.1.2.2.3.3 (deleted), 3.2.1.2.2.4.1 (deleted), 3.2.1.2.2.4.3(deleted), 3.2.1.2.5.1.4, 3.2.1.2.6.1.4, 3.2.1.2.8.1.5, 3.2.1.2.12(deleted), 3.2.1.2.12.1(deleted), 3.2.1.2.12.2(deleted), 3.2.1.2.13(deleted), 3.2.1.2.13.1(deleted), 3.2.1.2.13.2(deleted), 3.2.1.2.15.1, 3.2.1.3.7(add), 3.2.2.2.1, 3.2.2.2.1.1.2, 3.2.2.2.1.1.3, 3.2.2.2.1.1.4, 3.2.2.2.1.1.5, 3.2.2.2.2, 3.2.2.2.2.1.2, 3.2.2.2.2.1.3, 3.2.2.2.2.1.4, 3.2.2.2.2.1.5, 3.2.2.2.2.3.1, 3.2.2.2.2.3.3, 3.2.2.2.2.4.1, 3.2.2.2.2.4.3, 3.2.2.2.5.1.4, 3.2.2.2.6.1.4, 3.2.2.2.8.1.5, 3.2.2.2.9.1.3, 3.2.2.2.10.2, 3.2.2.2.14.1.5, 3.2.2.2.15.1, 3.2.2.2.15.2, 3.2.2.3.6(reserved), Figures: 3.1.1−1, 3.1.1−2, 3.1.1.3−1

001662 NA−0029A Paragraph: 2.1

001740 NA−0029A Paragraph: 2.1

002877 NA−0029A Paragraph: 2.1

003289 NA−0029A Paragraph: 2.1

005878 NA−0029A Paragraph: 2.1

008255 NA−0029A Paragraph: 2.1

008444 NA−0029A Paragraph: 2.1

009086 NA−0029A Paragraph: 2.1

SPACE STATION PROGRAM

NODE ELEMENT 1 TO NODE ELEMENT 3

INTERFACE CONTROL DOCUMENT, PART 1

LIST OF CHANGES − continued ix

SSCBD ENTRY DATE CHANGE PARAGRAPH(S)

010782 NA−0029A Paragraph: 2.1

011294 NA−0029A Paragraph: 2.1

012320 NA−0030A Paragraphs: 3.2.2.2.1, 3.2.2.2.9.1.3

TABLE OF CONTENTS

PARAGRAPH PAGE

x

1.0 INTRODUCTION 1 - 1

1.1 PURPOSE AND SCOPE 1 - 1

1.2 PRECEDENCE 1 - 1

1.3 RESPONSIBILITY AND CHANGE AUTHORITY 1 - 1

2.0 DOCUMENTS 2 - 1

2.1 APPLICABLE DOCUMENTS 2 - 1

2.2 REFERENCE DOCUMENTS 2 - 4

3.0 INTERFACES 3 - 1

3.1 GENERAL 3 - 1

3.1.1 INTERFACE DESCRIPTION 3 - 1

3.1.1.1 NODE 1 DESCRIPTION 3 - 1

3.1.1.2 NODE 3 DESCRIPTION 3 - 3

3.1.1.3 INTERFACE PLANE DESCRIPTION 3 - 3

3.1.1.4 COORDINATE SYSTEMS 3 - 3

3.1.1.4.1 SPACE STATION COORDINATE SYSTEM 3 - 3

3.1.1.4.2 INTERFACING ELEMENT COORDINATE SYSTEMS 3 - 3

3.1.1.5 NODE 1 INTERFACE FUNCTIONS 3 - 4

3.1.1.6 NODE 3 INTERFACE FUNCTIONS 3 - 5

3.1.1.7 TOLERANCE 3 - 5

3.1.2 INTERFACE RESPONSIBILITIES 3 - 6

3.1.2.1 RESPONSIBILITY FOR NODE 1 3 - 6

3.1.2.2 RESPONSIBILITY FOR NODE 3 3 - 6

3.2 INTERFACE REQUIREMENTS 3 - 6

3.2.1 NODE 1 INTERFACE REQUIREMENTS 3 - 6

3.2.1.1 STRUCTURAL/MECHANICAL ATTACHMENT 3 - 6

3.2.1.1.1 LOADS 3 - 6

3.2.1.1.2 BERTHING/ATTACHMENT MECHANISM(S) 3 - 6

3.2.1.1.3 INTERCONNECTING UTILITY HARDWARE 3 - 6

3.2.1.1.3.1 ACCESSIBILITY 3 - 7

3.2.1.1.3.2 REDUNDANCY 3 - 7

3.2.1.1.3.3 ELECTRICAL CONNECTORS 3 - 7

3.2.1.1.3.4 FLUID FITTINGS/COUPLINGS 3 - 7

3.2.1.1.3.5 FLUID LINES AND BELLOWS 3 - 7

3.2.1.1.3.6 UTILITY CABLE SPECIFICATIONS 3 - 7

3.2.1.1.3.6.1 AUDIO DATA BUS CABLE SPECIFICATIONS 3 - 7

3.2.1.1.3.6.2 VIDEO CABLE SPECIFICATIONS 3 - 7

3.2.1.1.3.6.3 UHF COMMUNICATIONS SYSTEM CABLE SPECIFICATION 3 - 7

3.2.1.1.3.6.4 INSTRUMENTATION CABLE SPECIFICATIONS 3 - 8

3.2.1.1.3.6.5 RS−422 CABLE SPECIFICATION 3 - 8

3.2.1.1.4 ACCESS/PASSAGE WAYS 3 - 8

3.2.1.1.4.1 VESTIBULE CLEARANCES 3 - 8

3.2.1.1.4.2 INGRESS/EGRESS PASSAGEWAYS 3 - 8

3.2.1.1.5 ATMOSPHERIC SEALS 3 - 8

3.2.1.1.6 LEAKAGE MONITORING 3 - 8

3.2.1.1.7 DELETED 3 - 8

TABLE OF CONTENTS − Continued

PARAGRAPH PAGE

xi

3.2.1.1.8 DELETED 3 - 8

3.2.1.1.9 INTERFACE TEMPERATURE 3 - 8

3.2.1.2 FLUID INTERFACES 3 - 9

3.2.1.2.1 RECEIVE COOLANT 3 - 9

3.2.1.2.1.1 COOLANT CHARACTERISTICS 3 - 9

3.2.1.2.1.1.1 COOLANT SPECIFICATION 3 - 9

3.2.1.2.1.1.2 COOLANT RECEIVE TEMPERATURE 3 - 9

3.2.1.2.1.1.3 COOLANT RECEIVE PRESSURE 3 - 9

3.2.1.2.1.1.4 COOLANT RECEIVE RATE 3 - 9

3.2.1.2.1.1.5 NODE 1 DELTA PRESSURE MAXIMUM FLOWRATE 3 - 9

3.2.1.2.1.2 CONTROL COOLANT 3 - 9

3.2.1.2.1.3 DELETED 3 - 9

3.2.1.2.2 RETURN COOLANT 3 - 9

3.2.1.2.2.1 COOLANT CHARACTERISTICS 3 - 9

3.2.1.2.2.1.1 DELETED 3 - 9

3.2.1.2.2.1.2 COOLANT RETURN TEMPERATURE 3 - 9

3.2.1.2.2.1.3 COOLANT RETURN PRESSURE 3 - 10

3.2.1.2.2.1.4 COOLANT RETURN RATE 3 - 10

3.2.1.2.2.1.5 NODE 1 HEAT TRANSFER RETURNED TO NODE 3 3 - 10

3.2.1.2.2.2 DELETED 3 - 10

3.2.1.2.2.3 LEAKAGE 3 - 10

3.2.1.2.2.3.1 DELETED 3 - 10

3.2.1.2.2.3.2 MODERATE TEMPERATURE LOOP LEAKAGE 3 - 10

3.2.1.2.2.3.3 DELETED 3 - 10

3.2.1.2.2.4 VOLUME ALLOCATION 3 - 10

3.2.1.2.2.4.1 DELETED 3 - 10

3.2.1.2.2.4.2 MODERATE TEMPERATURE LOOP VOLUME 3 - 10

3.2.1.2.2.4.3 DELETED 3 - 10

3.2.1.2.3 SUPPLY OXYGEN 3 - 10

3.2.1.2.3.1 OXYGEN CHARACTERISTICS 3 - 10

3.2.1.2.3.1.1 DELETED 3 - 10

3.2.1.2.3.1.2 SUPPLY OXYGEN TEMPERATURE 3 - 10

3.2.1.2.3.1.3 SUPPLY OXYGEN PRESSURE 3 - 11

3.2.1.2.3.1.4 SUPPLY OXYGEN RATE 3 - 11

3.2.1.2.4 SUPPLY NITROGEN 3 - 11

3.2.1.2.4.1 NITROGEN CHARACTERISTICS 3 - 11

3.2.1.2.4.1.1 DELETED 3 - 11

3.2.1.2.4.1.2 SUPPLY NITROGEN TEMPERATURE 3 - 11

3.2.1.2.4.1.3 SUPPLY NITROGEN PRESSURE 3 - 11

3.2.1.2.4.1.4 SUPPLY NITROGEN RATE 3 - 11

3.2.1.2.5 RECEIVE INTERMODULE ATMOSPHERE 3 - 11

3.2.1.2.5.1 INTERMODULE ATMOSPHERE CHARACTERISTICS 3 - 11

3.2.1.2.5.1.1 DELETED 3 - 11

3.2.1.2.5.1.2 INTERMODULE ATMOSPHERE RECEIVE TEMPERATURE 3 - 11

3.2.1.2.5.1.3 DELETED 3 - 12

PARAGRAPH PAGE

xii

3.2.1.2.5.1.4 INTERMODULE ATMOSPHERE RECEIVE RATE 3 - 12

3.2.1.2.6 RETURN INTERMODULE ATMOSPHERE 3 - 12

3.2.1.2.6.1 INTERMODULE ATMOSPHERE CHARACTERISTICS 3 - 12

3.2.1.2.6.1.1 RETURN INTERMODULE ATMOSPHERE OXYGEN

CONCENTRATION 3 - 12

3.2.1.2.6.1.2 INTERMODULE ATMOSPHERE RETURN TEMPERATURE 3 - 12

3.2.1.2.6.1.3 DELETED 3 - 12

3.2.1.2.6.1.4 INTERMODULE ATMOSPHERE RETURN RATE 3 - 12

3.2.1.2.7 DELETED 3 - 12

3.2.1.2.8 SUPPLY WASTE WATER 3 - 12

3.2.1.2.8.1 WASTE WATER SUPPLY CHARACTERISTICS 3 - 12

3.2.1.2.8.1.1 WASTE WATER SUPPLY QUALITY 3 - 12

3.2.1.2.8.1.2 WASTE WATER SUPPLY TEMPERATURE 3 - 12

3.2.1.2.8.1.2.1 NOMINAL 3 - 12

3.2.1.2.8.1.2.2 TRANSIENT 3 - 13

3.2.1.2.8.1.3 WASTE WATER SUPPLY PRESSURE 3 - 13

3.2.1.2.8.1.4 WASTE WATER SUPPLY FLOW RATE 3 - 13

3.2.1.2.8.1.4.1 NOMINAL 3 - 13

3.2.1.2.8.1.4.2 TRANSIENT 3 - 13

3.2.1.2.8.1.4.3 MAXIMUM 3 - 13

3.2.1.2.8.1.5 WASTE WATER SUPPLY DELTA PRESSURE 3 - 13

3.2.1.2.9 RECEIVE FUEL CELL WATER 3 - 13

3.2.1.2.9.1 FUEL CELL WATER CHARACTERISTICS 3 - 13

3.2.1.2.9.1.1 DELETED 3 - 13

3.2.1.2.9.1.2 FUEL CELL WATER RECEIVE TEMPERATURE 3 - 13

3.2.1.2.9.1.3 FUEL CELL WATER RECEIVE PRESSURE 3 - 14

3.2.1.2.9.1.4 DELETED 3 - 14

3.2.1.2.9.1.5 DELETED 3 - 14

3.2.1.2.10 RECEIVE ATMOSPHERE SAMPLE AIR 3 - 14

3.2.1.2.10.1 ATMOSPHERE SAMPLE AIR RECEIVE FLOW RATE 3 - 14

3.2.1.2.10.2 DELETED 3 - 14

3.2.1.2.11 RETURN FUEL CELL WATER 3 - 14

3.2.1.2.11.1 FUEL CELL WATER RETURN TEMPERATURE 3 - 14

3.2.1.2.11.2 FUEL CELL WATER RETURN PRESSURE 3 - 14

3.2.1.2.11.3 DELETED 3 - 14

3.2.1.2.12 DELETED 3 - 14

3.2.1.2.12.1 DELETED 3 - 14

3.2.1.2.12.2 DELETED 3 - 14

3.2.1.2.13 DELETED 3 - 14

3.2.1.2.13.1 DELETED 3 - 14

3.2.1.2.13.2 DELETED 3 - 14

3.2.1.2.14 RECEIVE RETURN WASTE WATER 3 - 14

3.2.1.2.14.1 RECEIVE RETURN WASTE WATER CHARACTERISTICS 3 - 15

3.2.1.2.14.1.1 RECEIVE RETURN WASTE WATER QUALITY 3 - 15

3.2.1.2.14.1.2 RECEIVE RETURN WASTE WATER TEMPERATURE 3 - 15

PARAGRAPH PAGE

xiii

3.2.1.2.14.1.2.1 NOMINAL 3 - 15

3.2.1.2.14.1.2.2 TRANSIENT 3 - 15

3.2.1.2.14.1.3 RECEIVE RETURN WASTE WATER PRESSURE 3 - 15

3.2.1.2.14.1.4 RECEIVE RETURN WASTE WATER FLOW RATE 3 - 15

3.2.1.2.14.1.4.1 NOMINAL 3 - 15

3.2.1.2.14.1.4.2 TRANSIENT 3 - 15

3.2.1.2.15 RETURN ATMOSHPERE SAMPLE AIR 3 - 15

3.2.1.2.15.1 ATMOSPHERE SAMPLE AIR RETURN FLOW RATE 3 - 15

3.2.1.3 ELECTRONIC INTERFACES 3 - 16

3.2.1.3.1 VIDEO SIGNALS 3 - 16

3.2.1.3.1.1 OPTICAL PFM VIDEO SIGNAL CHARACTERISTICS 3 - 16

3.2.1.3.1.1.1 OPTICAL PFM NTSC VIDEO SIGNAL TRANSMIT POWER LEVELS 3 - 16

3.2.1.3.1.1.2 OPTICAL PFM NTSC VIDEO SIGNAL RECEIVE POWER LEVELS 3 - 16

3.2.1.3.1.2 OPTICAL PFM NTSC SYNC AND CONTROL SIGNAL

CHARACTERISTICS 3 - 16

3.2.1.3.1.2.1 OPTICAL PFM NTSC SYNC AND CONTROL SIGNAL TRANSMIT

POWER LEVELS 3 - 16

3.2.1.3.1.3 ROBOTIC WORKSTATION COMPONENT VIDEO 3 - 17

3.2.1.3.1.3.1 ROBOTIC WORKSTATION COMPONENT VIDEO SIGNAL

CHARACTERISTICS 3 - 17

3.2.1.3.2 AUDIO SIGNALS 3 - 17

3.2.1.3.2.1 OPTICAL LPCM AUDIO SIGNAL CHARACTERISTICS 3 - 17

3.2.1.3.2.1.1 OPTICAL LPCM AUDIO SIGNAL POWER LEVELS 3 - 17

3.2.1.3.2.2 ULTRA HIGH FREQUENCY COMMUNICATION 3 - 18

3.2.1.3.2.2.1 UHF COMMUNICATION DISTRIBUTION 3 - 18

3.2.1.3.2.2.2 UHF COMMUNICATION SIGNAL CHARACTERISTICS 3 - 18

3.2.1.3.2.2.3 INTERFACE IMPEDANCE 3 - 18

3.2.1.3.2.2.4 INTERFACE VSWR 3 - 18

3.2.1.3.3 C&DH MIL−STD−1553 INTERFACES 3 - 18

3.2.1.3.3.1 DATA BUS STANDARDS 3 - 18

3.2.1.3.3.2 INTERFACE BUSES 3 - 18

3.2.1.3.3.3 PROVIDE OUTPUT AMPLITUDE 3 - 19

3.2.1.3.3.4 JUMPERS AND TERMINATIONS 3 - 19

3.2.1.3.3.5 SERIAL BUS INTERFACES 3 - 19

3.2.1.3.4 ROBOTIC WORKSTATION SIGNALS 3 - 19

3.2.1.3.5 ROBOTIC WORKSTATION RS−422 INTERFACES 3 - 19

3.2.1.3.6 LTA HEATER POWER INTERFACES 3 - 19

3.2.1.3.6.1 SUPPLY POWER 3 - 20

3.2.1.3.6.1.1 POWER OUTPUTS LTAHRTR−1 AND LTAHTR−2 3 - 20

3.2.1.3.6.1.2 POWER QUALITY 3 - 20

3.2.1.3.7 ISL INTERFACE 3 - 20

3.2.1.4 ENVIRONMENTS 3 - 20

3.2.1.4.1 ELECTROMAGNETIC EFFECTS 3 - 20

3.2.1.4.1.1 ELECTROMAGNETIC COMPATIBILITY 3 - 20

3.2.1.4.1.2 ELECTROMAGNETIC INTERFERENCE 3 - 20

3.2.1.4.1.3 GROUNDING 3 - 20

PARAGRAPH PAGE

xiv

3.2.1.4.1.4 BONDING 3 - 21

3.2.1.4.1.5 CABLE AND WIRE DESIGN 3 - 21

3.2.1.4.2 THERMAL 3 - 21

3.2.1.4.3 DELETED 3 - 21

3.2.1.4.4 ACCELERATIONS 3 - 21

3.2.1.4.5 ON−ORBIT TRANSIENT INTERFACE LOADS 3 - 21

3.2.1.4.6 ON−ORBIT THERMAL STRUCTURAL LOADS 3 - 21

3.2.2 NODE 3 INTERFACE REQUIREMENTS 3 - 22

3.2.2.1 STRUCTURAL/MECHANICAL ATTACHMENT 3 - 22

3.2.2.1.1 LOADS 3 - 22

3.2.2.1.2 BERTHING/ATTACHMENT MECHANISM(S) 3 - 22

3.2.2.1.3 INTERCONNECTING UTILITY HARDWARE 3 - 22

3.2.2.1.3.1 ACCESSIBILITY 3 - 22

3.2.2.1.3.2 REDUNDANCY 3 - 22

3.2.2.1.3.3 ELECTRICAL CONNECTORS 3 - 23

3.2.2.1.3.4 FLUID FITTINGS/COUPLINGS 3 - 23

3.2.2.1.3.5 FLUID LINES AND BELLOWS 3 - 23

3.2.2.1.3.6 UTILITY CABLE SPECIFICATIONS 3 - 23

3.2.2.1.3.6.1 AUDIO DATA BUS CABLE SPECIFICATIONS 3 - 23

3.2.2.1.3.6.2 VIDEO CABLE SPECIFICATIONS 3 - 23

3.2.2.1.3.6.3 ULTRA HIGH FREQUENCY COMMUNICATIONS SYSTEM CABLE

SPECIFICATIONS 3 - 23

3.2.2.1.3.6.4 INSTRUCTION CABLE SPECIFICATIONS 3 - 23

3.2.2.1.3.6.5 RS−422 CABLE SPECIFICATIONS 3 - 23

3.2.2.1.4 ACCESS/PASSAGE WAYS 3 - 23

3.2.2.1.4.1 VESTIBULE CLEARANCES 3 - 23

3.2.2.1.4.2 INGRESS/EGRESS PASSAGEWAYS 3 - 24

3.2.2.1.5 ATMOSPHERIC SEALS 3 - 24

3.2.2.1.6 LEAKAGE MONITORING 3 - 24

3.2.2.1.7 DELETED 3 - 24

3.2.2.1.8 DELETED 3 - 24

3.2.2.1.9 INTERFACE TEMPERATURE 3 - 24

3.2.2.2 FLUID INTERFACES 3 - 24

3.2.2.2.1 SUPPLY COOLANT 3 - 24

3.2.2.2.1.1 COOLANT CHARACTERISTICS 3 - 24

3.2.2.2.1.1.1 COOLANT SPECIFICATION 3 - 24

3.2.2.2.1.1.2 COOLANT SUPPLY TEMPERATURE 3 - 24

3.2.2.2.1.1.3 COOLANT SUPPLY PRESSURE 3 - 24

3.2.2.2.1.1.4 COOLANT SUPPLY RATE 3 - 25

3.2.2.2.1.1.5 NODE 1 DELTA PRESSURE MAXIMUM FLOWRATE 3 - 25

3.2.2.2.1.2 CONTROL COOLANT SUPPLY 3 - 25

3.2.2.2.2 RECEIVE RETURN COOLANT 3 - 25

3.2.2.2.2.1 COOLANT CHARACTERISTICS 3 - 25

3.2.2.2.2.1.1 DELETED 3 - 25

3.2.2.2.2.1.2 COOLANT RECEIVE RETURN TEMPERATURE 3 - 25

PARAGRAPH PAGE

xv

3.2.2.2.2.1.3 COOLANT RECEIVE RETURN PRESSURE 3 - 25

3.2.2.2.2.1.4 COOLANT RECEIVE RETURN RATE 3 - 26

3.2.2.2.2.1.5 NODE 3 HEAT TRANSFER RECEIVED FROM NODE 1 3 - 26

3.2.2.2.2.2 CONTROL COOLANT 3 - 26

3.2.2.2.2.3 LEAKAGE 3 - 26

3.2.2.2.2.3.1 LOW TEMPERATURE LOOP LEAKAGE 3 - 26

3.2.2.2.2.3.2 MODERATE TEMPERATURE LOOP LEAKAGE 3 - 26

3.2.2.2.2.3.3 HIGH TEMPERATURE LOOP LEAKAGE 3 - 26

3.2.2.2.2.4 VOLUME ALLOCATION 3 - 26

3.2.2.2.2.4.1 LOW TEMPERATURE LOOP VOLUME 3 - 26

3.2.2.2.2.4.2 MODERATE TEMPERATURE LOOP VOLUME 3 - 27

3.2.2.2.2.4.3 HIGH TEMPERATURE LOOP VOLUME 3 - 27

3.2.2.2.3 RECEIVE OXYGEN 3 - 27

3.2.2.2.3.1 OXYGEN CHARACTERISTICS 3 - 27

3.2.2.2.3.1.1 DELETED 3 - 27

3.2.2.2.3.1.2 RECEIVE OXYGEN TEMPERATURE 3 - 27

3.2.2.2.3.1.3 RECEIVE OXYGEN PRESSURE 3 - 27

3.2.2.2.3.1.4 RECEIVE OXYGEN RATE 3 - 27

3.2.2.2.4 RECEIVE NITROGEN 3 - 27

3.2.2.2.4.1 NITROGEN CHARACTERISTICS 3 - 27

3.2.2.2.4.1.1 DELETED 3 - 27

3.2.2.2.4.1.2 RECEIVE NITROGEN TEMPERATURE 3 - 27

3.2.2.2.4.1.3 RECEIVE NITROGEN PRESSURE 3 - 28

3.2.2.2.4.1.4 RECEIVE NITROGEN RATE 3 - 28

3.2.2.2.5 SUPPLY INTERMODULE ATMOSPHERE 3 - 28

3.2.2.2.5.1 INTERMODULE ATMOSPHERE CHARACTERISTICS 3 - 28

3.2.2.2.5.1.1 DELETED 3 - 28

3.2.2.2.5.1.2 INTERMODULE ATMOSPHERE SUPPLY TEMPERATURE 3 - 28

3.2.2.2.5.1.3 DELETED 3 - 28

3.2.2.2.5.1.4 INTERMODULE ATMOSPHERE SUPPLY RATE 3 - 28

3.2.2.2.5.1.5 INTERMODULE ATMOSPHERE SUPPLY QUALITY 3 - 28

3.2.2.2.5.2 DELETED 3 - 28

3.2.2.2.5.3 CONTROL INTERMODULE ATMOSPHERE SUPPLY 3 - 28

3.2.2.2.6 RECEIVE RETURN INTERMODULE ATMOSPHERE 3 - 28

3.2.2.2.6.1 INTERMODULE ATMOSPHERE CHARACTERISTICS 3 - 28

3.2.2.2.6.1.1 RECEIVE RETURN INTERMODULE ATMOSPHERE OXYGEN

CONCENTRATION 3 - 28

3.2.2.2.6.1.2 INTERMODULE ATMOSPHERE RECEIVE RETURN TEMPERATURE 3 - 29

3.2.2.2.6.1.3 DELETED 3 - 29

3.2.2.2.6.1.4 INTERMODULE ATMOSPHERE RECEIVE RETURN RATE 3 - 29

3.2.2.2.7 DELETED 3 - 29

3.2.2.2.8 RECEIVE WASTE WATER 3 - 29

3.2.2.2.8.1 WASTE WATER RECEIVE CHARACTERISTICS 3 - 29

3.2.2.2.8.1.1 WASTE WATER RECEIVE QUALITY 3 - 29

3.2.2.2.8.1.2 WASTE WATER RECEIVE TEMPERATURE 3 - 29

PARAGRAPH PAGE

xvi

3.2.2.2.8.1.2.1 NOMINAL 3 - 29

3.2.2.2.8.1.2.2 TRANSIENT 3 - 29

3.2.2.2.8.1.3 WASTE WATER RECEIVE PRESSURE 3 - 29

3.2.2.2.8.1.4 WASTE WATER RECEIVE FLOW RATE 3 - 29

3.2.2.2.8.1.4.1 NOMINAL 3 - 29

3.2.2.2.8.1.4.2 TRANSIENT 3 - 30

3.2.2.2.8.1.4.3 MAXIMUM 3 - 30

3.2.2.2.8.1.5 WASTE WATER RECEIVE DELTA PRESSURE 3 - 30

3.2.2.2.9 SUPPLY FUEL CELL WATER 3 - 30

3.2.2.2.9.1 FUEL CELL WATER CHARACTERISTICS 3 - 30

3.2.2.2.9.1.1 FUEL CELL WATER QUALITY 3 - 30

3.2.2.2.9.1.2 FUEL CELL WATER SUPPLY TEMPERATURE 3 - 30

3.2.2.2.9.1.3 FUEL CELL WATER SUPPLY PRESSURE 3 - 30

3.2.2.2.9.1.4 DELETED 3 - 30

3.2.2.2.9.1.5 DELETED 3 - 30

3.2.2.2.10 SUPPLY ATMOSPHERE SAMPLE AIR 3 - 30

3.2.2.2.10.1 ATMOSPHERE SAMPLE AIR SUPPLY FLOW RATE 3 - 31

3.2.2.2.10.2 ATMOSPHERE SAMPLE AIR SUPPLY PRESSURE DROP 3 - 31

3.2.2.2.11 RECEIVE RETURN FUEL CELL WATER 3 - 31

3.2.2.2.11.1 FUEL CELL WATER RECEIVE RETURN TEMPERATURE 3 - 31

3.2.2.2.11.2 FUEL CELL WATER RECEIVE RETURN PRESSURE 3 - 31

3.2.2.2.11.3 DELETED 3 - 31

3.2.2.2.12 SUPPLY RECHARGE OXYGEN 3 - 31

3.2.2.2.12.1 SUPPLY RECHARGE OXYGEN TEMPERATURE 3 - 32

3.2.2.2.12.2 SUPPLY RECHARGE OXYGEN PRESSURE 3 - 32

3.2.2.2.13 SUPPLY RECHARGE NITROGEN 3 - 32

3.2.2.2.13.1 SUPPLY RECHARGE NITROGEN TEMPERATURE 3 - 32

3.2.2.2.13.2 SUPPLY RECHARGE NITROGEN PRESSURE 3 - 32

3.2.2.2.14 RETURN WASTE WATER 3 - 32

3.2.2.2.14.1 RETURN WASTE WATER CHARACTERISTICS 3 - 32

3.2.2.2.14.1.1 RETURN WASTE WATER QUALITY 3 - 32

3.2.2.2.14.1.2 RETURN WASTE WATER TEMPERATURE 3 - 32

3.2.2.2.14.1.2.1 NOMINAL 3 - 32

3.2.2.2.14.1.2.2 TRANSIENT 3 - 32

3.2.2.2.14.1.3 RETURN WASTE WATER PRESSURE 3 - 33

3.2.2.2.14.1.4 RETURN WASTE WATER FLOW RATE 3 - 33

3.2.2.2.14.1.4.1 NOMINAL 3 - 33

3.2.2.2.14.1.4.2 TRANSIENT 3 - 33

3.2.2.2.14.1.5 RETURN WASTE WATER DELTA PRESSURE 3 - 33

3.2.2.2.15 ATMOSPHERE SAMPLE AIR RECEIVE RETURN 3 - 33

3.2.2.2.15.1 ATMOSPHERE SAMPLE RECEIVE RETURN FLOW RATE 3 - 33

3.2.2.2.15.2 ATMOSPHERE SAMPLE AIR RECEIVE PRESSURE DROP 3 - 33

3.2.2.3 ELECTRONIC INTERFACES 3 - 33

3.2.2.3.1 VIDEO SIGNALS 3 - 33

3.2.2.3.1.1 OPTICAL PFM NTSC VIDEO SIGNAL CHARACTERISTICS 3 - 34

PARAGRAPH PAGE

xvii

3.2.2.3.1.1.1 OPTICAL PFM NTSC VIDEO SIGNAL TRANSMIT POWER LEVELS 3 - 34

3.2.2.3.1.1.2 OPTICAL PFM NTSC VIDEO SIGNAL RECEIVE POWER LEVELS 3 - 34

3.2.2.3.1.2 OPTICAL PFM NTSC SYNC AND CONTROL SIGNAL

CHARACTERISTICS 3 - 34

3.2.2.3.1.2.1 OPTICAL PFM NTSC SYNC AND CONTROL SIGNAL RECEIVE

POWER LEVELS 3 - 34

3.2.2.3.1.3 ROBOTIC WORKSTATION COMPONENT VIDEO 3 - 35

3.2.2.3.1.3.1 ROBOTIC WORKSTATION COMPONENT VIDEO SIGNAL

CHARACTERISTICS 3 - 35

3.2.2.3.2 AUDIO SIGNALS 3 - 35

3.2.2.3.2.1 OPTICAL LPCM AUDIO SIGNAL CHARACTERISTICS 3 - 35

3.2.2.3.2.1.1 OPTICAL LPCM AUDIO SIGNAL POWER LEVELS 3 - 35

3.2.2.3.2.2 ULTRA HIGH FREQUENCY COMMUNICATION 3 - 35

3.2.2.3.2.2.1 UHF COMMUNICATION DISTRIBUTION 3 - 35

3.2.2.3.2.2.2 UHF COMMUNICATION SIGNAL CHARACTERISTICS 3 - 36

3.2.2.3.2.2.3 INTERFACE IMPEDANCE 3 - 36

3.2.2.3.2.2.4 INTERFACE VOLTAGE STANDING WAVE RATIO 3 - 36

3.2.2.3.3 C&DH MIL−STD−1553 INTERFACE 3 - 36

3.2.2.3.3.1 DATA BUS STANDARDS 3 - 36

3.2.2.3.3.2 INTERFACE BUSES 3 - 36

3.2.2.3.3.3 PROVIDE OUTPUT AMPLITUDE 3 - 36

3.2.2.3.3.4 SERIAL BUS INTERFACES 3 - 36

3.2.2.3.4 ROBOTIC WORKSTATION (RWS) SIGNALS 3 - 37

3.2.2.3.5 ROBOTIC WORKSTATION RS−422 INTERFACES 3 - 37

3.2.2.3.6 LTA HEATER POWER INTERFACES 3 - 37

3.2.2.3.6.1 RECEIVE POWER 3 - 37

3.2.2.3.6.1.1 POWER OUTPUTS LTAHTR−1 AND LTAHTR−2 3 - 37

3.2.2.3.6.1.1.1 POWER QUALITY 3 - 37

3.2.2.3.7 RESERVED 3 - 37

3.2.2.4 ENVIRONMENTS 3 - 37

3.2.2.4.1 ELECTROMAGNETIC EFFECTS 3 - 37

3.2.2.4.1.1 ELECTROMAGNETIC COMPATIBILITY 3 - 37

3.2.2.4.1.2 ELECTROMAGNETIC INTERFERENCE 3 - 37

3.2.2.4.1.3 GROUNDING 3 - 37

3.2.2.4.1.4 BONDING 3 - 37

3.2.2.4.1.5 CABLE AND WIRE DESIGN 3 - 38

3.2.2.4.2 THERMAL 3 - 38

3.2.2.4.3 DELETED 3 - 38

3.2.2.4.4 ACCELERATIONS 3 - 38

3.2.2.4.5 ON−ORBIT TRANSIENT INTERFACE LOADS 3 - 38

3.2.2.4.6 ON−ORBIT THERMAL STRUCTURAL LOADS 3 - 39

3.2.2.4.6.1 ON−ORBIT THERMALLY INDUCED STRUCTURAL LOADS 3 - 39

3.2.2.4.6.2 ON−ORBIT THERMALLY INDUCED LOADS SPECTRA 3 - 41

PARAGRAPH PAGE

xviii

APPENDICES

APPENDIX PAGE

A ABBREVIATIONS AND ACRONYMS A - 1

B GLOSSARY B - 1

C TBD LOG C - 1

TABLE PAGE

TABLES

SSP 41140 Part 1 Revision F 26 February 2010 xix

3.1.1.7−1 LINEAR TOLERANCES 3 - 6

3.2.1.3.1.1.1−1 OPTICAL PFM NTSC VIDEO SIGNAL TRANSMIT POWER 3 - 16

3.2.1.3.1.1.2−1 NODE 1 OPTICAL PFM NTSC VIDEO SIGNAL RECEIVE POWER 3 - 16

3.2.1.3.1.2.1−1 OPTICAL PFM NTSC SYNC AND CONTROL SIGNAL TRANSMIT

POWER 3 - 17

3.2.1.3.2.1.1−1 OPTICAL LPCM AUDIO SIGNAL OUTPUT POWER 3 - 17

3.2.1.3.2.1.1−2 OPTICAL LPCM AUDIO SIGNAL INPUT POWER 3 - 18

3.2.1.3.6.1.1−1 ELECTRICAL INTERFACE PARAMETERS 3 - 20

3.2.1.4.5−1 NODE 1/NODE 3 RESULTANT BERTHING CONTACT FORCES 3 - 21

3.2.1.4.5−2 NODE 1/NODE 3 CBM CONTACT POINT CONTACT LOADS 3 - 21

3.2.2.3.1.1.1−1 OPTICAL PFM NTSC VIDEO SIGNAL TRANSMIT POWER 3 - 34

3.2.2.3.1.1.2−1 OPTICAL PFM NTSC VIDEO SIGNAL RECEIVE POWER 3 - 34

3.2.2.3.1.2.1−1 OPTICAL PFM NTSC SYNC AND CONTROL SIGNAL RECEIVE

POWER 3 - 34

3.2.2.3.2.1.1−1 OPTICAL LPCM AUDIO SIGNAL OUTPUT POWER 3 - 35

3.2.2.3.2.1.1−2 OPTICAL LPCM AUDIO SIGNAL INPUT POWER 3 - 35

3.2.2.4.5−1 NODE 1/NODE 3 COUPLED INTERFACE LOADS 3 - 38

3.2.2.4.5−2 ON−ORBIT TRANSIENT LOADS SPECTRUM 3 - 38

3.2.2.4.6.1−1 ON−ORBIT THERMALLY INDUCED STRUCTURAL LOADS 3 - 39

3.2.2.4.6.1−2 ACBM/PCBM INTERFACE BOLT LOCATIONS 3 - 41

3.2.2.4.6.2−1 ON−ORBIT TRANSIENT THERMAL LOADS 3 - 42

3.2.2.4.6.3−2 ON−ORBIT THERMALLY INDUCED LOADS SPECTRUM 3 - 43

3.2.2.4.6.2−3 ON−ORBIT THEMALLY INDUCED MEAN BERTHING LOADS 3 - 43

FIGURE PAGE

FIGURES

xx

3.1.1−1 NODE 1 TO NODE 3 ON−ORBIT INTERFACE 3 −1

3.1.1−2 NODE 1 TO NODE 3 FUNCTIONAL INTERFACES 3 −2

3.1.1.3−1 NODE 1 TO NODE 3 INTERFACE PLANES 3 −3

3.2.1.1.4.2−1 NODE 1 TO NODE 3 PASSAGE ENVELOPE 3 −8

3.2.1.3.6−1 NODE 1 TO NODE 3 ELECTRICAL INTERFACES 3 −19

3.2.2.4.6.1−2 ACBM/PCMB INTERFACE PLANE ATTACHMENT BOLT LOCATIONS 3 −40

1 - 1

1.0 INTRODUCTION

1.1 PURPOSE AND SCOPE

The purpose of this document is to provide definition of the structural/mechanical, electrical, thermal, fluid, and data interface requirements between Node Element 1 and Node Element 3.

Node Element 1 will be referenced as Node 1 in this document. The Node Element 3 will be referenced as Node 3 in this document. The scope of this document is limited to the interfaces between Node 1 and Node 3.

1.2 PRECEDENCE

In the event of conflict between SSP 41000, and the contents of this Interface Control Document (ICD), the requirements of SSP 41000 shall take precedence.

1.3 RESPONSIBILITY AND CHANGE AUTHORITY

This document is prepared and maintained in accordance with SSP 30459, International Space Station Interface Control Plan.

2 - 1

2.0 DOCUMENTS

2.1 APPLICABLE DOCUMENTS

The following documents form a part of this document to the extent specified herein. In the event of conflict between documents referenced here and the contents of section 3, the order of precedence shall be as stated in paragraph 1.2 of this document.

DOCUMENT NO. TITLE

20M02540 Revision C November 6, 1987

Assessment of Flexible Lines for Flow Induced Vibrations Paragraph: 3.2.1.1.3.5, 3.2.2.1.3.5

683−16347 Revision F July 11, 1997

Fitting, Threaded Fluid Paragraph: 3.2.1.1.3.4, 3.2.2.1.3.4

683−16348

ADCN (8444)

Revision G January 27, 1998

Coupling, Quick Disconnect, Fluid, Self Sealing, Internal Paragraph: 3.2.1.1.3.4, 3.2.2.1.3.4

EIA RS−485

Revision Basic January 1, 1983

Standard for Electrical Characteristics of Generators and Receivers for use in Balanced Digital Multipoint Systems Paragraph: 3.2.1.3.3.5

MIL−STD−1553

Revision B, CN−02

September 8, 1986

Digital Time Division Command/Response Multiplex Data Bus Paragaph: 3.2.1.3.3.1, 3.2.1.3.3.3, 3.2.2.3.3.1, 3.2.2.3.3.3

NSTS 08123

Revision B June 3, 1994

Certification of Flex Hoses and Bellows for Flow Induced Vibration Paragraph: 3.2.1.1.3.5, 3.2.2.1.3.5

SN−C−0005

Revision C February 15, 1989

NSTS Contamination Control Requirements Paragraph: 3.2.2.2.14.1.1

SSP 30219

Revision J

TBD (11028)

March 1, 2008

Space Station Reference Coordinate Paragraph: 3.1.1.4.1, 3.1.1.4.2

SSP 30237

Revision G, TBD (8255, 11151, 11388)

January 4, 2005

Space Station Electromagnet Emission and Susceptibility Requirements Paragraph: 3.2.1.4.1.2, 3.2.2.4.1.2

2 - 2

DOCUMENT NO. TITLE

SSP 30240

Revision C

TBD (8255)

September 30, 1998

Space Station Grounding Requirements Paragraph: 3.2.1.4.1.3, 3.2.2.4.1.3

SSP 30242

Revision F

TBD (11151)

December 6, 2002

Space Station Cable/Wire Design and Control Requirements for Electromagnetic Compatibility Paragraph: 3.2.1.4.1.5, 3.2.2.4.1.5

SSP 30243

Revision G, TBD (11294) December 6, 2002

Space Station Requirements for Electromagnetic Compatibility Paragraph: 3.2.1.4.1.1, 3.2.2.4.1.1

SSP 30245

Revision F, July 9, 2003

Space Station Electrical Bonding Requirements Paragraph: 3.2.1.4.1.4, 3.2.2.4.1.4

SSP 30263:002

Revision P October 8, 1999

Remote Power Controller Module (RPCM) Standard Interface Control Document

(SICD)

Table: 3.2.1.3.6.1.1−1

SSP 30482

Volume 1 Revision C July 7, 1997

Electrical Power Specification and Standard Volume 1: EPS Electrical Performance Specification Table: 3.2.1.3.6.1.1−1

SSP 30573

Revision D October 29, 2007

Space Station Fluid Procurement and Use Control Specification Paragraph: 3.2.1.2.1.1.1, 3.2.2.2.1.1.1

SSP 41004

Revision H, October 25, 2005

Common Berthing Mechanism to Pressurized Elements Interface Control Document, Part 1 Paragraph: 3.1.1, 3.2.1.1, 3.2.1.1.2, 3.2.1.1.4.1, 3.2.1.1.5, 3.2.2.1, 3.2.2.1.2, 3.2.2.1.4.1, 3.2.2.1.5.1 Figure: 3.1.1–2

2 - 3

DOCUMENT NO. TITLE

SSP 41148

Revision D September 30, 1998

Active Common Berthing Mechanism to Passive Common Berthing Mechanism Interface Control Document, Part 1 Paragraph: 3.1.1.3, 3.2.1.1, 3.2.1.1.2, 3.2.1.1.5, 3.2.1.1.6, 3.2.2.1, 3.2.2.1.2, 3.2.2.1.5, 3.2.2.1.6 Figure: 3.1.1–2

SSP 50002

Revision A May 6, 1998

International Space Station Video Standard Paragraph: 3.2.1.1.3.1, 3.2.2.1.3.1

SSP 50005

Revision E, June 30, 2006

International Space Station Flight Crew Integration Standard

(NASA−STD−3000/T)

Paragraph: 3.2.1.1.3.1, 3.2.2.1.3.1

SSP 50023

Revision Basic April 15, 1994

Thermal Control Plan Paragraph: 3.2.1.4.2, 3.2.2.4.2

SSP 50704

Revision A May 1, 2006

System Specification for Intergrated Station LAN Paragraph: 3.2.1.3.7

*Note− Document only applicable to Node 1.

SSQ 21635

Revision H, DCN 001, 011, 012, 013, 014, 015

August 1, 1997

General Specification for Connectors and Accessories, Electrical, Circular, Miniature, IVA/EVA Compatible, Space Quality Paragraph: 3.2.1.1.3.3, 3.2.2.1.3.3

SSQ 21653

Revision E, January 27, 2004

General Specification for Cable Coaxial, Twinaxial, Triaxial, Flexible and Semrigid Space Quality Paragraph: 3.2.1.1.3.6.3, 3.2.2.1.3.6.3

SSQ 21654

Revision C

General Specification for Cable, Single Fiber, Multi−Mode, Space Quality Paragraph: 3.2.1.1.3.6.1, 3.2.1.1.3.6.2, 3.2.2.1.3.6.1, 3.2.2.1.3.6.2

2 - 4

2.2 REFERENCE DOCUMENTS

The following documents are referenced in this ICD for context and user convenience.

DOCUMENT NO. TITLE

SSP 30459

Revision. F

International Space Station Interface Control Plan.

References 1.3

SSP 41000 International Space Station Specification.

References 1.2

3 - 1

3.0 INTERFACES

3.1 GENERAL

3.1.1 INTERFACE DESCRIPTION

The Node 1 to Node 3 on−orbit configuration is shown in Figure 3.1.1−1. Dimensions and material characteristics at the Common Berthing Mechanism (CBM) interface are in accordance with SSP 41004. The Node 1 to Node 3 interface functions are shown in Figure 3.1.1 −2.

NADIR

PMA−1 LAB

STARBOARD

Z1

AIRLOCK

NODE 3

NODE 1

A F T

F W D

ZENITH PORT

FIGURE 3.1.1−1 NODE 1 TO NODE 3 ON−ORBIT INTERFACE

PMA−3

3.1.1.1 NODE 1 DESCRIPTION

The Node 1 is a pressurized element providing storage and berthing locations for attached elements. The Node 1 contains a limited amount of powered hardware for its own operation and plumbing and cable runs to the attached elements.

3 - 2

NODE 1 NODE 3

Structural/Mechanical*

Data

Thermal (MT, LT**, HT**)

Audio

Video

Intermodule Air

Oxygen

Nitrogen

Waste Water

Fuel Cell Water

Atmosphere Sampling

N A

D

IR

S

TA

R B

O A

R D

Wireless Antenna

* Refer to SSP 41004 and SSP 41148 for Structural/Mechanical interface definition

** − LT, HT, and recharge Oxygen and Nitrogen are only scarred at the Node 3 bulk-head, and do not cross through to any vestibule jumpers.

Recharge Nitrogen **

Recharge Oxygen **

FIGURE 3.1.1−2 NODE 1 TO NODE 3 FUNCTIONAL INTERFACES

Heater Power

3 - 3

3.1.1.2 NODE 3 DESCRIPTION

The Node 3 is a pressurized element providing storage and berthing locations for attached elements. Eating, recreation, crew health care and hygiene facilities as well as storage areas are included in Node 3.

3.1.1.3 INTERFACE PLANE DESCRIPTION

The Node 1 to Node 3 utility plane is shown in Figure 3.1.1.3−1, Node 1 to Node 3 Interface Planes. The utility interface plane is on the pressure bulkhead at the external feedthrough connector of each element. The structural and mechanical interface is at the plane between the Active Common Berthing Mechanism (ACBM) and Passive Common Bething Mechanism (PCBM) as defined in SSP 41148, and as shown in Figure 3.1.1.3−1.

ACBM

NODE 3

A F T

NODE 1

STRUCTURAL/MECHANICAL

INTERFACE

PCBM

PORT

UTILITY INTERFACE PLANE

FIGURE 3.1.1.3−1 NODE 1 TO NODE 3 INTERFACE PLANES

3.1.1.4 COORDINATE SYSTEMS

3.1.1.4.1 SPACE STATION COORDINATE SYSTEM

The space station coordinate system is defined in SSP 30219.

3.1.1.4.2 INTERFACING ELEMENT COORDINATE SYSTEMS

The Node 1 coordinate system is as defined in SSP 30219. The Node 3 coordinate system is as defined in SSP 30219.

3 - 4

3.1.1.5 NODE 1 INTERFACE FUNCTIONS

The Node 1 will support the following functions at the interface to the Node 3:

A. Structural/Mechanical Attachment

B. Receive Coolant (MT)

C. Return Coolant (MT)

D. Supply Oxygen

E. Supply Nitrogen

F. Receive Intermodule Air

G. Return Intermodule Air

H. Deleted

I. Deleted

J. Supply Waste Water

K. Receive Return Waste Water

L. Receive Atmosphere Sample Air

M. Return Atmosphere Sample Air

N. Send Video

O. Receive Video

P. Send Audio

Q. Receive Audio

R. Send Ultra High Frequency (UHF) Communication Data

S. Receive UHF Communication Data

T. Send Data

U. Receive Data

V. Return Fuel Cell Water

W. Receive Fuel Cell Water

X. Supply LTA Heater Power

3 - 5

3.1.1.6 NODE 3 INTERFACE FUNCTIONS

The Node 3 will support the following functions at the interface to Node 1:

A. Structural/Mechanical Attachment

B. Supply Coolant (LT, MT, HT)

C. Receive Return Coolant (LT, MT, HT)

D. Receive Oxygen

E. Receive Nitrogen

F. Supply Intermodule Air

G. Receive Return Intermodule Air

H. Supply Recharge Oxygen

I. Supply Recharge Nitrogen

J. Receive Waste Water

K. Return Waste Water

L. Supply Atmosphere Sample Air

M. Receive Return Atmosphere Sample Air

N. Receive Video

O. Send Video

P. Receive Audio

Q. Send Audio

R. Receive UHF Communication Data

S. Send UHF Communication Data

T. Receive Data

U. Send Data

V. Supply FCW

W. Receive Return FCW

X. Receive LTA Heater Power

3.1.1.7 TOLERANCE

Linear tolerances on English dimensions are as indicated in Table 3.1.1.7−1.

3 - 6

TABLE 3.1.1.7−1 LINEAR TOLERANCES

ENGLISH DIMENSION IMPLIED TOLERANCE

INCHES

X.XX +/− 0.03

X.XXX +/− 0.010

3.1.2 INTERFACE RESPONSIBILITIES

3.1.2.1 RESPONSIBILITY FOR NODE 1

National Aeronautics and Space Administration (NASA) is responsible for the module structure interface and module outfitting interface requirements imposed on Node 1.

3.1.2.2 RESPONSIBILITY FOR NODE 3

European Space Agency (ESA) is responsible for the module primary structure and module outfitting interface requirements imposed on Node 3.

3.2 INTERFACE REQUIREMENTS

3.2.1 NODE 1 INTERFACE REQUIREMENTS

3.2.1.1 STRUCTURAL/MECHANICAL A TTACHMENT

The Node 1 shall structurally attach to the Node 3 via a CBM. The CBM has two halves each of which are attached to the pressure shell of each element in accordance with SSP 41004. The CBM Meteoroid/Debris Cover and Node 1 external hardware stayout zones/envelopes for noninterference shall be in accordance with SSP 41004. The bulkhead of each element provides for the passage of utilities around the passage envelope and within the CBM volume. ACBM to PCBM structural/mechanical interface shall be in accordance with SSP 41148.

3.2.1.1.1 LOADS

The Node 1 shall supply structural and mechanical provisions for the mechanical attachment of Node 1 to the Node 3 during on−orbit assembly, in accordance with the loads defined in Paragraph 3.2.1.4.5.

3.2.1.1.2 BERTHING/ATTACHMENT MECHANISM(S)

Interfaces between the ACBM and Node 1 shall be in accordance with SSP 41004.

The ACBM of Node 1 shall support the capability to attach to and form a pressurized seal with the PCBM on the Node 3 in accordance with SSP 41148.

3.2.1.1.3 INTERCONNECTING UTILITY HARDWARE

The Node 1 interface shall incorporate provisions for the mechanical connection of data, video, audio, thermal coolant, water, and atmospheric gas utilities between Node 1 and Node 3 during on−orbit assembly.

3 - 7

3.2.1.1.3.1 ACCESSIBILITY

All internal vestibule utility interface connections shall be designed to be manually mateable after the opening of one module hatch in the berthed configuration. Vestibule utility interface design shall comply with SSP 50005 requirements for Intravehicular Activity accessibility.

Utilities, except those involving toxic or corrosive substances, shall be accessible from inside the pressurized elements after the elements are berthed.

The Node 1 utility interfaces shall contain physical provisions to preclude incorrect installation of utility lines and shall not be lockwired or staked.

3.2.1.1.3.2 REDUNDANCY

The Node 1 shall provide redundant utility interfaces for element−to−element command and control. Alternate or redundant functional paths shall be separated or protected at the interface such that a credible event which causes the loss of one functional path will not result in the loss of the alternate or redundant functional path(s).

3.2.1.1.3.3 ELECTRICAL CONNECT ORS

The characteristics for electrical connectors inside the vestibule shall be in accordance with SSQ 21635.

3.2.1.1.3.4 FLUID FITTINGS/COUPLINGS

Fluid fittings/couplings used at inter−element interfaces shall comply with 683−16347 and 683−16348.

3.2.1.1.3.5 FLUID LINES AND BELLOWS

Flexible lines and bellows design shall be in accordance with 20M02540. Flexible lines and bellows shall be certified in accordance with NSTS 08123.

3.2.1.1.3.6 UTILITY CABLE SPECIFICA TIONS

3.2.1.1.3.6.1 AUDIO DATA BUS CABLE SPECIFICA TIONS

The audio data bus interconnect cables shall comply with the requirements of SSQ 21654.

3.2.1.1.3.6.2 VIDEO CABLE SPECIFICA TIONS

Fiber optic video interconnect cables shall comply with SSQ 21654. The Robotic Workstation (RWS) video interconnect cables shall comply with the requirements of SSQ 21655.

3.2.1.1.3.6.3 UHF COMMUNICATIONS SYSTEM CABLE SPECIFICA TION

The UHF communication system interconnect cables shall comply with the requirements of SSQ 21653.

3 - 8

3.2.1.1.3.6.4 INSTRUMENTATION CABLE SPECIFICA TIONS

Instrumentation utility cables shall conform to SSQ 21656.

3.2.1.1.3.6.5 RS−422 CABLE SPECIFICA TION

The physical characteristics for the EIA−RS−422A cable shall be in accordance with SSQ 21655.

3.2.1.1.4 ACCESS/PASSAGE WAYS

3.2.1.1.4.1 VESTIBULE CLEARANCES

Vestibule clearances for utility jumpers and internal envelopes shall be in accordance with

SSP 41004.

3.2.1.1.4.2 INGRESS/EGRESS PASSAGEWAYS

The passage envelope shall be as shown in Figure 3.2.1.1.4.2−1.

12.0 in.

radius Max.

PASSAGE ENVELOPE

50 in. min.

FIGURE 3.2.1.1.4.2−1 NODE 1 TO NODE 3 PASSAGE ENVELOPE

3.2.1.1.5 ATMOSPHERIC SEALS

Atmospheric seal interface requirements shall be as defined in SSP 41004 and SSP 41148.

3.2.1.1.6 LEAKAGE MONIT ORING

The Node 1 shall incorporate provisions for monitoring and detecting seal leakage as defined in

SSP 41148.

3.2.1.1.7 DELETED

3.2.1.1.8 DELETED

3.2.1.1.9 INTERFACE TEMPERATURE

The Node 1 shall meet all requirements specified herein when the structural interface temperature is within 60 to 113 degrees F.

3 - 9

3.2.1.2 FLUID INTERFACES

3.2.1.2.1 RECEIVE COOLANT

The Node 1 shall receive moderate temperature water coolant from the Node 3 for active heat acquisition and transport.

3.2.1.2.1.1 COOLANT CHARACTERISTICS

3.2.1.2.1.1.1 COOLANT SPECIFICATION

Receive coolant shall comply with the requirements of SSP 30573.

3.2.1.2.1.1.2 COOLANT RECEIVE TEMPERATURE

Node 1 shall receive moderate temperature water coolant at a non−selectable temperature of 61 to 65 degrees F.

3.2.1.2.1.1.3 COOLANT RECEIVE PRESSURE

Node 1 shall receive moderate temperature water coolant at a pressure of 18 to 100 psia.

3.2.1.2.1.1.4 COOLANT RECEIVE RATE

Node 1 shall receive moderate temperature water coolant at a rate of 0 to 350 lbm/hr.

3.2.1.2.1.1.5 NODE 1 DELTA PRESSURE MAXIMUM FLOWRA TE

The maximum pressure drop across the Node 1 moderate temperature lines at the Node 1 to Node 3 inlet/outlet interface shall be no greater than 8.5 psid at a maximum flowrate of 350 lbm/hr.

3.2.1.2.1.2 CONTROL COOLANT

The Node 1 shall provide internal means to turn off and isolate coolant flow across the interface.

3.2.1.2.1.3 DELETED

3.2.1.2.2 RETURN COOLANT

The Node 1 shall return moderate temperature water coolant to Node 3.

3.2.1.2.2.1 COOLANT CHARACTERISTICS

3.2.1.2.2.1.1 DELETED

3.2.1.2.2.1.2 COOLANT RETURN TEMPERATURE

Node 1 shall return moderate temperature water coolant at a non−selectable temperature of 61 to 120 degrees F.

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3.2.1.2.2.1.3 COOLANT RETURN PRESSURE

Node 1 shall return moderate temperature water coolant at a pressure of 18 to 100 psia.

3.2.1.2.2.1.4 COOLANT RETURN RATE

Node 1 shall return moderate temperature water coolant at a rate of 0 to 350 lbm/hr.

3.2.1.2.2.1.5 NODE 1 HEAT TRANSFER RETURNED TO NODE 3

The Node 1 shall supply a maximum of 2.6 kW across the moderate temperature lines.

3.2.1.2.2.2 DELETED

3.2.1.2.2.3 LEAKAGE

3.2.1.2.2.3.1 DELETED

3.2.1.2.2.3.2 MODERATE TEMPERATURE LOOP LEAKAGE

The Node 1 Moderate Temperature (MTL) Loop leakage is 0.8 scc/hr at a pressure of 100 psia.

3.2.1.2.2.3.3 DELETED

3.2.1.2.2.4 VOLUME ALLOCA TION

3.2.1.2.2.4.1 DELETED

3.2.1.2.2.4.2 MODERATE TEMPERATURE LOOP VOLUME

The Node 1 Moderate Temperature Loop (MTL) water coolant volume is 0.46 cubic feet.

3.2.1.2.2.4.3 DELETED

3.2.1.2.3 SUPPLY OXYGEN

The Node 1 shall supply oxygen to Node 3.

3.2.1.2.3.1 OXYGEN CHARACTERISTICS

3.2.1.2.3.1.1 DELETED

3.2.1.2.3.1.2 SUPPLY OXYGEN TEMPERATURE

The Node 1 shall supply oxygen to the Node 3 at a temperature range of 54 to 113 degrees F.

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3.2.1.2.3.1.3 SUPPLY OXYGEN PRESSURE

The Node 1 will supply oxygen to the Node 3 at a pressure range between 93 to 135 psia. The nominal pressure range while the oxygen system is in use/flowing shall abe 93 to 120 psia and while not in use/flowing is 110 to 135 psia. The maximum design pressure shall be 200 psia.

3.2.1.2.3.1.4 SUPPLY OXYGEN RATE

The Node 1 shall supply oxygen to the Node 3 at a flow rate of 0 to 0.2 lb/min.

3.2.1.2.4 SUPPLY NITROGEN

The Node 1 shall supply gaseous nitrogen to the Node 3.

3.2.1.2.4.1 NITROGEN CHARACTERISTICS

3.2.1.2.4.1.1 DELETED

3.2.1.2.4.1.2 SUPPLY NITROGEN TEMPERATURE

The Node 1 shall supply nitrogen to the Node 3 at a temperature range of 60 to 113 degrees F.

3.2.1.2.4.1.3 SUPPLY NITROGEN PRESSURE

The Node 1 will supply nitrogen to the Node 3 at a pressure range between 93 and 135 psia.

The nominal pressure range while the nitrogen system is in use/flowing shall be 93 to 120 psia and while not in use/flowing is 110 to 135 psia. The maximum design pressure shall be 200psia.

3.2.1.2.4.1.4 SUPPLY NITROGEN RATE

The Node 1 shall supply nitrogen to the Node 3 at a flow rate of 0 to 0.2 lb/min.

3.2.1.2.5 RECEIVE INTERMODULE ATMOSPHERE

The Node 1 shall receive intermodule air from the Node 3.

3.2.1.2.5.1 INTERMODULE ATMOSPHERE CHARACTERISTICS

3.2.1.2.5.1.1 DELETED

3.2.1.2.5.1.2 INTERMODULE ATMOSPHERE RECEIVE TEMPERATURE

The Node 1 shall receive intermodule air from the Node 3 at a temperature range of 65 to 85 degrees F.

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3.2.1.2.5.1.3 DELETED

3.2.1.2.5.1.4 INTERMODULE ATMOSPHERE RECEIVE RATE

The Node 1 shall receive 120 cfm of intermodule air from Node 3 and supply it to the United States Laboratory (USL).

3.2.1.2.6 RETURN INTERMODULE ATMOSPHERE

The Node 1 shall return intermodule air to the Node 3.

3.2.1.2.6.1 INTERMODULE ATMOSPHERE CHARACTERISTICS

3.2.1.2.6.1.1 RETURN INTERMODULE ATMOSPHERE OXYGEN CONCENTRATION

The Node 1 shall return intermodule air to the Node 3 with a maximum oxygen concentration of

24.1 percent by volume, when the Node 3 oxygen partial pressure control is not operating.

3.2.1.2.6.1.2 INTERMODULE ATMOSPHERE RETURN TEMPERATURE

The Node 1 shall return intermodule air to the Node 3 at a temperature range of 65 to 85 degrees F.

3.2.1.2.6.1.3 DELETED

3.2.1.2.6.1.4 INTERMODULE ATMOSPHERE RETURN RATE

The Node 1 shall return a minimum of 120 cfm of intermodule air to Node 3.

3.2.1.2.7 DELETED

3.2.1.2.8 SUPPLY WASTE WATER

The Node 1 shall supply waste water to the Node 3.

3.2.1.2.8.1 WASTE WATER SUPPLY CHARACTERISTICS

3.2.1.2.8.1.1 WASTE WATER SUPPLY QUALITY

The waste water free gas content shall not exceed 10 percent peak by volume at 40 degrees F and

20.7 psia. The particulate size shall not exceed 100 microns.

3.2.1.2.8.1.2 WASTE WATER SUPPLY TEMPERATURE

3.2.1.2.8.1.2.1 NOMINAL

The Node 1 shall supply waste water to the Node 3 at a temperature range of 55 to 113 degrees F at the nominal and maximum flow rates.

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3.2.1.2.8.1.2.2…

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