SSP_50314-Rev_C.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 document describes a solicitation for the Human Space Flight Technical Integration Contract (HSFTIC). Key details include that NASA/JSC plans to issue a Request for Proposal for the HSFTIC on or about November 1, 2019, with an anticipated offer due date of December 11, 2019. The solicitation will be available over the Internet at specific websites listed. The procurement is a total small business set-aside with a NAICS Code of 541715 and 1,250 employee size standard. Potential offerors are responsible for monitoring the websites for release of the solicitation and any amendments, and for downloading their own copy. All contractual technical questions must be submitted in writing by email or fax, with no phone questions accepted.

SSP 50314-Rev C

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Water Recovery System Rack #2 to Node 3 Interface Control Document

International Space Station Program

October 20, 2010

REVISION C

Type 1 NASA Approved

National Aeronautics and Space Administration International Space Station Program Johnson Space Center Houston, TX Contract # PIC-NNJ09GA18B DRD # PIC-SI-01 European Space Agency

REVISION AND HISTORY PAGE

REV.

DESCRIPTION

PUB. DATE

-
Initial Release per SSCN 002328, EFF. 12-16-99
02/02/00
A
Revision A release per SSCD 005875 EFF. 08-23-01

Incorporates the following IRNs, EFF 05/18/01: IRN 50314-01 (PIRN 50314-NA-0002C), IRN 50314-02 (PIRN 50314-NA-0006), IRN 50314-03 (PIRN 50314-NA-0009), and IRN 50314-04 (PIRN 50314-NA-0014)

03/11/02

IRN 0005 per SSCN 006782 IRN 50314-0005 (PIRN 50314-NA-0004B) CCBD ND3-00-0013 modifies page 3-19 in accordance with the IRN 50314-0005, EFF 5-23-02 06/06/06

IRN 0006 per SSCN 006782 IRN 50314-0006 (PIRN 50314-NA-0008B) CCBD ND3-00-0013 modifies page 2-2 in accordance with the IRN 50314-0006, EFF 5-23-02 06/06/06

IRN 0007 per SSCN 006782 IRN 50314-07 (PIRN 50314-NA-0011A) CCBD ND3-00-0013 modifies pages 3-20, 3-21 & 3-45, and adds pages 3-21a, 3-21b, 3-21c & 3-21d in accordance with the IRN 50314-0007, EFF 5-23-02 06/06/06

B
Revision B (Reference per SSCD 009647, EFF. 02/02/06)

Incorporates the following IRNS: IRN 50314-05 (PIRN 50314-NA-0004B), IRN 50314-06 (PIRN 50314-NA-0008B), IRN 50314-07 (PIRN 50314-NA-0011A), IRN 50314-08 (PIRN 50314- NA-0012B), IRN 50314-09 (PIRN 50314-NA-0015), IRN 50314-10 (PIRN 50314-NA-0007A), IRN 50314-11 (PIRN 50314-NA-0005A), IRN 50314-12 (PIRN 50314-NA-0017), 50314-13 (PIRN 50314-NA-0003G), 50314-14 (PRIN 50314-NA-0016A) 06/12/06

C
Revision C (Reference SSCD 012696, Eff 04/12/11)

Revision C incorporates the following approved PIRNs:

05/04/11

PIRN SSCN

50314-NA-0018 012696

50314-NA-0019 012696

50314-NA-0020 012696

50314-NA-0021 010169

50314-NA-0022A 012696

50314-ES-0001 012696

50314-NA-0023A 012696

PREFACE

The contents of this document are intended to be consistent with the tasks and products to be prepared by Program participants. The Water Recovery System Rack #2 to Node 3 Interface Control Document shall be implemented on all new ISS contractual and internal activities and shall be included in any existing contracts through contract changes. This document is under the control of the Vehicle Control Board as designated by the Space Station Control Board, and any changes or revisions will be approved by the Vehicle Control Board Chairperson.

/s/ Kevin Window4/12/11
SignatureDate

Kevin Window Vehicle Office Manager ISS Program Office

INTERNATIONAL SPACE STATION PROGRAM

Water Recovery System Rack #2 to Node 3

CONCURRENCE

Created by:
Gregg D. Singer

OM/ARES

(PRINT NAME)

ORG

/s/ Gregg D. Singer

3/28/11

(SIGNATURE)

DATE

Prepared by:
Sharon E. Hock

OM/ARES

(PRINT NAME)

ORG

/s/ Sharon E. Hock

3/28/11

(SIGNATURE)

DATE

Approved by:
Tyson E. Richmond

OM/NASA

(PRINT NAME)

ORG

/s/ Tyson E. Richmond

4-6-11

(SIGNATURE)

DATE

DQA:
Victoria C. Rodriguez

OM/ARES

(PRINT NAME)

ORG

/s/ Victoria C. Rodriguez

3/28/2011

(SIGNATURE)

DATE

INTERNATIONAL SPACE STATION PROGRAM

Water Recovery System Rack #2 to Node 3

LIST OF CHANGES

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

Board Name

Entry Date

Change

Paragraph(s)

February 2000

Baseline

All

March 2002

Revision A

All

June 2006

IRN 005

3.2.1.5.2

June 2006

IRN 006

2.1 Table 3.2.1.5-4

June 2006

IRN 007

3.2.2.5.2.1 Tables 3.2.1.5-5 3.2.1.5-6 3.2.1.5-7

June 2006

Revision B

All

January 2011

Revision C

All

TABLE OF CONTENTS

1.INTRODUCTION1-1
1.1Purpose1-1
1.2scope1-1
1.3precedence1-1
1.4delegation of authority1-1
1.5responsibility and change authority1-1
2.DOCUMENTS2-1
2.1APPLICABLE documents2-1
3.Interfaces3-1
3.1GENERAL3-1
3.1.1INTERFACE DESCRIPTION3-1
3.1.1.1Water Recovery System Rack #2 Description3-2
3.1.1.2Node 3 DESCRIPTION3-2
3.1.2INTERFACE RESPONSIBILITIES3-2
3.1.2.1RESPONSIBILITY FOR Water Recovery System3-2
3.1.2.2RESPONSIBILITY FOR Node 33-2
3.1.2.3RESPONSIBILITY FOR interconnect cabling/tubing/connectors3-2
3.1.3COORDINATE SYSTEMS3-2
3.1.4engineering units, tolerances and conversions3-2
3.1.4.1engineering units and tolerances3-2
3.1.4.1.1Tolerances3-3
3.2INTERFACE REQUIREMENTS3-3
3.2.1WATER RECOVERY SYSTEM Rack #2 REQUIREMENTS3-3
3.2.1.1ENVELOPE REQUIREMENTS3-3
3.2.1.2MASS PROPERTIES3-3
3.2.1.2.1MASS3-3
3.2.1.2.2center of MASS3-3
3.2.1.3STRUCTURAL/MECHANICAL ATTACHMENT3-3
3.2.1.3.1Rack Interface Panel3-3
3.2.1.3.1.1Accessibility3-3
3.2.1.4FLuid Interfaces3-6
3.2.1.4.1Fire Suppressant3-6
3.2.1.4.2RECEIVE COOLANT3-6
3.2.1.4.2.1WRS Rack #2 heat transport capability3-6
3.2.1.4.2.1.1WRS Rack #2 AIR HEAT LOAD3-6
3.2.1.4.2.1.2WRS Rack #2 Moderate Temperature Loop Heat Load3-6
3.2.1.4.2.2receive Coolant characteristics3-6
3.2.1.4.2.2.1receive coolant specification3-6
3.2.1.4.2.2.2receive coolant temperature3-6
3.2.1.4.2.2.3RECEIVE COOLANT PRESSURE3-6
3.2.1.4.2.2.4RECEIVE coolant Flow rate3-6
3.2.1.4.2.2.5RECEIVE coolant quantity3-6
3.2.1.4.2.2.6RECEIVE coolant leakage rate3-7
3.2.1.4.2.3rECEIVE Coolant connector3-7
3.2.1.4.3RETURN COOLANT3-8
3.2.1.4.3.1Return COOLANT CHARACTERISTICS3-8
3.2.1.4.3.1.1Return COOLANT SPECIFICATIONS3-8
3.2.1.4.3.1.2Return COOLANT TEMPERATURE3-8
3.2.1.4.3.1.3RETURN coolant pressure drop3-8
3.2.1.4.3.2RETURN coolant cONNECTOR3-8
3.2.1.4.4Receive pre-treated urine3-8
3.2.1.4.4.1Receive pre-treated urine Temperature3-8
3.2.1.4.4.2Receive pre-treated urine Pressure3-8
3.2.1.4.4.2.1Receive pre-treated urine maximum design Pressure3-8
3.2.1.4.4.3Receive pre-treated urine Flow rate3-8
3.2.1.4.4.4Receive pre-treated urine Interface control3-8
3.2.1.4.4.5Receive Pre-Treated Urine pH3-9
3.2.1.4.4.6reCEIVE PRE-TREATED URINE CONNECTOR3-9
3.2.1.4.4.7receive pre-treated urine gas content3-9
3.2.1.4.4.8receive pre-treated urine maximum particulate size3-9
3.2.1.4.4.9DELETED3-9
3.2.1.4.4.10Receive PreTreated Urine QUALITY3-9
3.2.1.4.5WPA Process Water3-9
3.2.1.4.5.1WPA Process Water Temperature3-10
3.2.1.4.5.2WPA Process Water Pressure3-10
3.2.1.4.5.2.1WPA Process Water maximum design Pressure3-10
3.2.1.4.5.2.2WPA Process Water Maximum Pressure Drop3-10
3.2.1.4.5.3WPA Process Water Flow rate3-11
3.2.1.4.5.4WPA Process Water Interface control3-11
3.2.1.4.5.5wpa process water connectors3-11
3.2.1.4.6Supply vent GAS to Cabin Atmosphere3-11
3.2.1.4.6.1Supply vent Gas to Cabin Temperature3-11
3.2.1.4.6.2Supply Vent Gas to Cabin Pressure3-11
3.2.1.4.6.3Supply vent Gas to Cabin Flow rate3-12
3.2.1.4.6.4Supply vent Gas to Cabin Interface control3-12
3.2.1.4.6.5supply vent gas to cabin CONNECTOR3-12
3.2.1.4.7Receive Oxygen (Scar)3-15
3.2.1.4.7.1Receive Oxygen Temperature3-15
3.2.1.4.7.2Receive Oxygen Pressure3-15
3.2.1.4.7.2.1Receive Oxygen Maximum Pressure3-15
3.2.1.4.7.3Receive Oxygen Flow Rate3-15
3.2.1.4.7.4Receive Oxygen Interface Control3-15
3.2.1.4.7.5Receive Oxygen CONNECTOR3-15
3.2.1.4.8receive Waste water3-15
3.2.1.4.8.1receive Waste water Temperature3-15
3.2.1.4.8.2receive Waste water Pressure3-15
3.2.1.4.8.2.1Receive Waste water maximum design Pressure3-15
3.2.1.4.8.3receive Waste water Flow rate3-15
3.2.1.4.8.4receive waste water Interface control3-15
3.2.1.4.8.5Receive waste water connector3-16
3.2.1.4.8.6Receive Waste Water Particulate Size3-16
3.2.1.4.8.7Receive Waste Water Gas Content3-16
3.2.1.5ELECTRICAL INTERFACES3-17
3.2.1.5.1RECEIVE POWER3-17
3.2.1.5.1.1POWER QUALITY3-18
3.2.1.5.1.2steady-state current3-18
3.2.1.5.2Supply Electrical Power3-18
3.2.1.5.2.1Power Connectors3-26
3.2.1.6Command and Data Handling (C&DH) INTERFACES3-27
3.2.1.6.1mil-std-1553B interfaces3-30
3.2.1.6.1.1respond to input amplitude3-33
3.2.1.6.1.21553B bus signal characteristics3-33
3.2.1.6.1.2.11553B bus coupling3-33
3.2.1.6.1.2.21553B Connectors3-33
3.2.1.6.1.3terminal operations3-33
3.2.1.6.1.41553B bus interface functions3-33
3.2.1.6.2C&DH Connectors3-33
3.2.1.6.3Time distribution3-33
3.2.1.7SOFTWARE INTERFACES3-34
3.2.1.8environments3-34
3.2.1.8.1WRS Rack #2 Bonding Interface3-34
3.2.1.8.2STRUCTURAL LOADS3-34
3.2.1.8.2.1Acceleration3-34
3.2.1.8.3vibroacoustics3-34
3.2.1.8.4ATMOSPHERE3-34
3.2.1.8.4.1ATMOSPHERE CHARACTERISTICS3-34
3.2.1.8.4.1.1atmosphere temperature3-34
3.2.1.8.4.1.2atmosphere pressure3-34
3.2.1.8.4.1.3Atmosphere humidity3-34
3.2.1.8.4.1.4REPRESSURIZATION/DEPRESSURIZATION3-35
3.2.1.8.4.1.5OXYGEN concentration3-35
3.2.2NODE 3 INTERFACE REQUIREMENTS3-35
3.2.2.1ENVELOPE REQUIREMENTS3-35
3.2.2.2MASS PROPERTIES3-35
3.2.2.2.1MASS3-35
3.2.2.2.2center of MASS3-35
3.2.2.3STRUCTURAL/MECHANICAL ATTACHMENT3-35
3.2.2.3.1Rack Interface Panel3-35
3.2.2.3.1.1Accessibility3-35
3.2.2.4FLUID INTERFACES3-35
3.2.2.4.1Fire suppressant3-35
3.2.2.4.2SUPPLY COOLANT3-36
3.2.2.4.2.1Node 3 HEAT TRANSPORT CAPABILITY3-36
3.2.2.4.2.1.1Air Heat Load3-36
3.2.2.4.2.1.2Moderate Temperature Loop Heat Load3-36
3.2.2.4.2.2supply Coolant characteristics3-36
3.2.2.4.2.2.1supply coolant specification3-36
3.2.2.4.2.2.2supply coolant temperature3-36
3.2.2.4.2.2.3supply coolant pressure3-36
3.2.2.4.2.2.4RECEIVE coolant Flow rate3-36
3.2.2.4.2.2.5SUPPLY coolant rate/PRESSURE DROP3-36
3.2.2.4.2.2.6SUPPLY coolant quantity3-36
3.2.2.4.2.2.7SUPPLY coolant leakage rate3-36
3.2.2.4.2.3supply coolant Interface control3-36
3.2.2.4.2.4supply coolant connector3-37
3.2.2.4.3receive RETURN COOLANT3-37
3.2.2.4.3.1receive RETURN COOLANT CHARACTERISTICS3-37
3.2.2.4.3.1.1receive RETURN COOLANT SPECIFICATIONS3-37
3.2.2.4.3.1.2receive RETURN COOLANT TEMPERATURE3-37
3.2.2.4.3.2Return coolant connector3-37
3.2.2.4.4SUPPLY Pre-treated URINE3-37
3.2.2.4.4.1SUPPLY Pre-treated URINE Temperature3-37
3.2.2.4.4.2SUPPLY Pre-treated URINE Pressure3-37
3.2.2.4.4.2.1SUPPLY Pre-treated URINE maximum design Pressure3-37
3.2.2.4.4.3SUPPLY Pre-treated URINE Flow rate3-37
3.2.2.4.4.4supply Pre-Treated Urine pH3-37
3.2.2.4.4.5supply Pre-Treated Urine connector3-38
3.2.2.4.4.6supply pre-treated urine gas content3-38
3.2.2.4.4.7supply pre-treated urine maximum particulate size3-38
3.2.2.4.4.8DELETED3-38
3.2.2.4.4.9supply pretreated urine quality3-38
3.2.2.4.5WPA Process Water3-38
3.2.2.4.5.1WPA Process Water Temperature3-38
3.2.2.4.5.2WPA Process Water Pressure3-38
3.2.2.4.5.2.1WPA Process Water maximum design Pressure3-39
3.2.2.4.5.2.2WPA Process Water Maximum Pressure Drop3-39
3.2.2.4.5.3WPA Process Water Flow rate3-39
3.2.2.4.5.4WPA Process Water Interface control3-40
3.2.2.4.5.5WPA process water connectors3-40
3.2.2.4.6receive vent Gas to Cabin Atmosphere3-40
3.2.2.4.6.1receive vent Gas to Cabin Atmosphere Temperature3-40
3.2.2.4.6.2receive vent Gas to Cabin Atmosphere Pressure3-40
3.2.2.4.6.3receive vent Gas to Cabin Atmosphere Flow rate3-40
3.2.2.4.6.4Receive vent Gas to Cabin Atmosphere Connector3-40
3.2.2.4.7supply OXYGEN3-40
3.2.2.4.7.1supply OXYGEN Temperature3-40
3.2.2.4.7.2supply OXYGEN Pressure3-40
3.2.2.4.7.2.1supply OXYGEN maximum design Pressure3-41
3.2.2.4.7.3supply CABIN OXYGEN Flow rate3-41
3.2.2.4.7.4Supply Cabin Oxygen Connector3-41
3.2.2.4.8Supply Waste water3-41
3.2.2.4.8.1Supply Waste water Temperature3-41
3.2.2.4.8.2Supply Waste water Pressure3-41
3.2.2.4.8.2.1Supply Waste water maximum design Pressure3-41
3.2.2.4.8.3Supply Waste water Flow rate3-41
3.2.2.4.8.4Supply waste water Interface control3-41
3.2.2.4.8.5Supply waste water connector3-41
3.2.2.4.8.6Supply Waste Water Particulate Size3-41
3.2.2.4.8.7Supply Waste Water Gas Content3-41
3.2.2.5ELECTRICAL INTERFACES3-42
3.2.2.5.1SUPPLY POWER3-42
3.2.2.5.1.1power quality3-42
3.2.2.5.1.2POWER CONTROL3-44
3.2.2.5.1.3steady state current3-44
3.2.2.5.2Transfer Power3-44
3.2.2.5.2.1Transfer electrical power/data line length3-44
3.2.2.6C&DH INTERFACES3-44
3.2.2.6.1mil-std-1553B interfaces3-45
3.2.2.6.1.11553B BUS format/standard3-45
3.2.2.6.1.21553B bus signal characteristics3-45
3.2.2.6.1.2.11553B bus coupling3-45
3.2.2.6.1.3terminal operations3-45
3.2.2.6.1.4data bus interface functions3-45
3.2.2.6.2C&DH Connectors3-45
3.2.2.6.3TIME DISTRIBUTION3-45
3.2.2.7SOFTWARE INTERFACES3-46
3.2.2.8environments3-46
3.2.2.8.1Bonding Interface3-46
3.2.2.8.2STRUCTURAL LOADS3-46
3.2.2.8.2.1Acceleration3-46
3.2.2.8.3vibroacoustics3-46
3.2.2.8.4ATMOSPHERE3-46
3.2.2.8.4.1Atmosphere characteristics3-46
3.2.2.8.4.1.1atmosphere temperature3-46
3.2.2.8.4.1.2atmosphere pressure3-46
3.2.2.8.4.1.3atmosphere humidity3-46
3.2.2.8.4.1.4REPRESSURIZATION/DEPRESSURIZATION3-47
3.2.2.8.4.1.5OXYGEN concentration3-47

appendix list

A ABBREVIATIONS AND ACRONYMS A - 1

List of figures

3.1.1.1-1 Water Recovery System Rack #2 to Node 3 Functional Interface

Diagram3-1
3.2.1.3-1 WRS Rack #2/Node 3 rack Interface Plane3-4
3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations3-5
3.2.1.4-1 wpa/upa interfaces with rack faceplate3-13
3.2.1.42 WPA GAS Vent fitting (section c-c of figure 3.2.1.4-1)3-14
3.2.1.43 UPA Gas vent fitting (detail E of figure 3.2.1.4-1)3-14
3.2.2.5-1 Inrush Current Characteristics3-43

LIST OF TABLES

3.1.4.1-1 Linear Tolerances3-3
3.2.1.4-2 Fluid interface connectors3-9
3.2.1.41 Urine pretreatment quality3-9
3.2.1.5-1 Maximum Rack Power Input3-17
3.2.1.5-2 J2 Main Power Connector Description and Pin Assignments3-17
3.2.1.5-3 Maximum Allowable Steady-State Current (116-126 VDC)3-18
3.2.1.5-4 J6 Power Connector Description and Pin Assignments3-19
3.2.1.5-5 J7 Power Connector Description and Pin Assignments3-20
3.2.1.5-6 J8 Power Connector Description and Pin Assignments3-21
3.2.1.5-7 J9 Power Connector Description and Pin Assignments3-22
3.2.1.6-1 J3 Hardwire Data Connector Description and Pin Assignments3-28
3.2.1.6-2 J4 1553B A Data Connector Description and Pin Assignments3-31
3.2.1.6-3 J5 1553B B Data Connector Description and Pin Assignments3-32

SSP 50314C

SSP 50314C October 20, 2010 xv iv

INTRODUCTION

Purpose The purpose of this document is to define the physical, functional, and environmental interface between the Water Recovery System Rack #2 (WRS Rack #2) and the Node 3.

scope The scope of this document is limited to the interfaces between the WRS Rack #2 and the Node 3. This document also includes limited information on the electrical interfaces between WRS Racks #1 and #2.

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

delegation of authority NASA may delegate the responsibility for preparation and maintenance of this ICD.

responsibility and change authority This document is prepared and maintained in accordance with SSP 30459, NASA Space Station Interface Control Plan.

1- 2-2

DOCUMENTS

APPLICABLE documents The following documents of the exact issue shown form a part of this document to the extent specified herein.

ASTM E380Standard Practice for Use of the International System of
Units (SI) (the Modernized Metric System)
(Reference 3.1.4.1.1)
MIL-STD-1553BDigital Time Division Command/Response Multiplex Data
Rev BBus
Notice 2(Reference 3.2.1.6.1, 3.2.1.6.1.1, 3.2.1.6.1.2,
8-Sept-19863.2.1.6.1.2.1, 3.2.1.6.1.3, 3.2.1.6.1.4, 3.2.2.6.1, 3.2.2.6.1.1, 3.2.2.6.1.2, 3.2.2.6.1.2.1, 3.2.2.6.1.3, 3.2.2.6.1.4)
RR00022V2Remote Power Controller Module, Component Data Interface Specification
(Reference 3.2.1.7, 3.2.2.7)
SSP 41002International Standard Payload Rack to NASA/ESA/JAXA Modules ICD
(Reference 3.1.1.1)
SSP 30459NASA Space Station Interface Control Plan
(Reference 1.5)
SSP 30482Electrical Power Specifications and Standards, Volume 1: EPS Electrical Performance Specifications
(Reference 3.2.1.5.1.1, 3.2.2.5.1.1)
SSP 30261:002Space Station Multiplexer/ Demultiplexer Standard ICD
(Reference 3.2.1.6, 3.2.2.6)
SSP 30573Fluid Procurement and Use Control Specification
(Reference 3.2.1.4.2.2.1, 3.2.1.4.3.1.1, 3.2.2.4.2.2.1, 3.2.2.4.3.1.1)
SSP 41017Rack to Mini Pressurized Logistics Module Interface
Part 1Control Document
(Reference 3.2.1.1, 3.2.1.2.1, 3.2.1.3, 3.2.1.8.1, 3.2.1.8.2, 3.2.1.8.2.1, 3.2.1.8.3, 3.2.1.8.4.1.4, 3.2.2.1, 3.2.2.2.1, 3.2.2.3, 3.2.2.8.2, 3.2.2.8.3, 3.2.2.8.4.1.4, Figure 3.2.1.3-1)
SSP 41017Rack to Mini Pressurized Logistics Module Interface
Part 2Control Document
(Reference 3.1.3, 3.2.1.3, 3.2.1.8.1, 3.2.1.8.4.1.4, 3.2.2.3, 3.2.2.8.1, 3.2.2.8.4.1.4, Figure 3.2.1.3-1)
SSP 41000ISS System Specification
(Reference 1.3)
SSP 50005International Space Station Flight Crew Standard
(Reference 3.2.1.3.1.1, 3.2.2.3.1.1)
SSP 50405-06Software Interface Control Document (ICD) Hub Control Zone (HCZ) Multiplexer/ Demultiplexer (MDM) to International Space Station (ISS) Book 6, HCZ to Urine Processor Assembly (UPA)
(Reference 3.2.1.7, 3.2.2.7)
683-16348Coupling, Quick Disconnect, Fluid, Self-Sealing, Internal Source Control Drawing
(Reference Table 3.2.1.4-2)
MIL-DTL-27500Cable, Electrical, Shielded and Unshielded, Aerospace, General Specification for
(Reference Tables 3.2.1.5-4, 3.2.1.5-5, 3.2.1.5-6, 3.2.1.5-7, 3.2.1.6-1)
SSQ 21656Wire and Cable, Electric, Fluoropolymer- Insulated, Nickel-coated Copper or Copper Alloy, General Specification for
(Reference Tables 3.2.1.5-4, 3.2.1.5-5, 3.2.1.5-6, 3.2.1.5-7, 3.2.1.6-1)

Interfaces

GENERAL

INTERFACE DESCRIPTION

The interfaces specified herein are applicable to the WRS Rack #2 and the Node 3. The Node 3 will provide power, data, thermal coolant, Water Processor Assembly (WPA) process water, environmental, cabin atmosphere, and the structural/mechanical interfaces at the rack location. The WRS Rack #2 will provide data, return thermal coolant, WPA process water, vent cabin gas, environmental, cabin atmosphere, and structural/mechanical interfaces. A functional interface diagram is shown in Figure 3.1.1.1-1 Water Recovery System Rack #2 to Node 3 Functional Interface Diagram.

The Node 3 to WRS Rack #2 interface plane is defined as the rack interface panel and rack structural/mechanical attach points. Note: The only exception to the interface plane definition is the vent cabin gas and cabin atmosphere exchange. In these cases the interface plane is not relevant.

Figure 3.1.1.1-1 Water Recovery System Rack #2 to Node 3 Functional Interface Diagram

Water Recovery System Rack #2 Description The WRS Rack #2 consists of an Environmental Control Life Support System (ECLSS) Equipment Rack, Urine Processor Assembly (UPA), components of the WPA, Remote Power Controller Module (RPCM), Rack Interface Panel (RIP), Bracket Assembly/Coldplate mounting, Rack Power Switch (RPS), coldplates, and rack secondary structure. The WRS Rack #2 is fully compatible with the International Standard Payload Rack attachment mechanisms and envelopes.

Node 3 DESCRIPTION The Node 3 is a pressurized element used to supplement and in some cases replace the Habitation Modules functions for crew accommodations. The Node 3 will contain the ECLSS, Fecal Control System, and Avionics Racks.

INTERFACE RESPONSIBILITIES

RESPONSIBILITY FOR Water Recovery System Unless otherwise noted herein, Marshall Space Flight Center, under agreement with the ISS Program Office, has the responsibility for designing the WRS Rack #2 to the interface requirements herein.

RESPONSIBILITY FOR Node 3 Unless otherwise noted herein, Agenzia Spaziale Italiana (ASI) has the responsibility for designing the Node 3 to the interface requirements herein.

RESPONSIBILITY FOR interconnect cabling/tubing/connectors The Node 3 is responsible for providing interconnecting cabling/tubing/connectors to the rack interface panel. The WRS Rack #2 is responsible for providing rack interface panel connectors.

COORDINATE SYSTEMS

The coordinate system applicable to the Node 3 to WRS Rack #2 interface is as defined in SSP 41017, Part 2, paragraph 3.1.3.

engineering units, tolerances and conversions engineering units and tolerances Dimensions in this document are shown in the English (inch, pound, second) system of units followed by the equivalent SI (metric) value in parenthesis. Measurements may be verified in either system of units.

Tolerances Linear tolerances on English dimensions are as indicated in Table 3.1.4.1-1 Linear Tolerances. Linear tolerances on metric dimensions are derived from English measurements and tolerances as defined in ASTM E380, Standard Practice for Use of the International System of Units (SI) (The Modernized Metric System), section 4.5. Angular tolerances are ±0.1° on all angles unless otherwise stated.

Table 3.1.4.1-1 Linear Tolerances

English dimension
Implied tolerance (inches)
x.xx
+/- 0.030
x.xxx
+/- 0.010

INTERFACE REQUIREMENTS

WATER RECOVERY SYSTEM Rack #2 REQUIREMENTS

ENVELOPE REQUIREMENTS

The WRS Rack #2 shall comply with the envelopes defined in SSP 41017, Part 1, paragraph 3.2.1.1, except for the presence of the Rack Interface Panel specified in 3.2.1.3.1.

MASS PROPERTIES

MASS

The WRS Rack #2 shall comply with the mass requirements defined in SSP 41017, Part 1, paragraph 3.2.1.2.

center of MASS Deleted.

STRUCTURAL/MECHANICAL ATTACHMENT

The structural/mechanical interface description is defined in SSP 41017, Part 1, paragraph 3.2.1.3.

The WRS Rack #2 structural/mechanical interface is as defined in SSP 41017, Part 2, paragraphs 3.2 and 3.3.

Rack Interface Panel The WRS Rack #2 shall incorporate provisions for a rack interface panel for connection of utilities between WRS Rack #2 and Node 3. The interface plane is at the rack interface panel located on the WRS Rack #2 Systems Rack as shown in Figure 3.2.1.3-1 WRS Rack #2/Node 3 Utility Interface Plane. Figure 3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations, defines the rack interface panel layout.

Accessibility The WRS Rack #2 to Node 3 utility shall comply with the accessibility requirements of SSP 50005.

WRS RACK #2

Figure 3.2.1.3-1 WRS Rack #2/Node 3 rack Interface Plane

3-47

Notes:

· View is from front of Rack Interface Panel

· Dimensions indicate center point of connector with respect to the center of the panel

· All connector master keyways are in the 12:00 o’clock position

Figure 3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations

FLuid Interfaces Fire Suppressant The WRS Rack #2 shall receive fire suppressant via injection into the front panel of the rack at the location defined in Figure 3.2.1.4-1.

RECEIVE COOLANT

The WRS Rack #2 shall receive moderate temperature loop water coolant from the Node 3 for active heat acquisition and transport. The receive coolant interfaces are at the rack interface panel shown in Figure 3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations.

WRS Rack #2 heat transport capability WRS Rack #2 AIR HEAT LOAD The sensible heat load directly rejected on the Node 3 air loop by the WRS Rack #2 shall be limited to 75 watts during Process mode and 35 watts during Standby mode.

WRS Rack #2 Moderate Temperature Loop Heat Load The heat load rejected by the WRS Rack #2 to the Node 3 Moderate Temperature Loop shall be limited to 555 watts during Process mode and 115 watts during Standby mode.

receive Coolant characteristics receive coolant specification The coolant shall comply with the requirements of SSP 30573, Fluid Procurement and Use Control Specification.

receive coolant temperature The WRS Rack #2 shall receive moderate temperature coolant at 61 to 65 deg Fahrenheit (16 to 18.3 deg Celsius).

RECEIVE COOLANT PRESSURE

The WRS Rack #2 shall receive moderate temperature coolant at an operating pressure of 18 to 100 psia.

RECEIVE coolant Flow rate The WRS Rack #2 shall receive moderate temperature loop coolant at a minimum flow rate of 100 lb./hr.

RECEIVE coolant quantity The WRS Rack #2 shall contain no more than 8.8 lbs (4 kg) of water in its internal cooling loop for the moderate temperature loop.

RECEIVE coolant leakage rate The WRS Rack #2 maximum coolant leakage rate, for coolant received at the maximum pressure specified in paragraph 3.2.1.4.2.2.3, shall be 9E-3 scc/hr for the moderate temperature loop.

rECEIVE Coolant connector The WRS Rack #2 shall receive coolant at the Rack Interface Panel via a “MT Water Supply” connector as defined in Table 3.2.1.4-2 Fluid Interface Connectors.

Table 3.2.1.4-2 Fluid Interface Connectors

Connection:
Category (1)
Keying (2)
QD Body Size
Rack Side Vendor Part Number (2)
Node 3 Side Vendor Part Number (2)
MT Water Supply
6
B(75°)
1/2 in
2003-XX04X-T06B
2000-XX12X-T06B
MT Water Return
6
C(105°)
1/2 in
2003-XX04X-T06C
2000-XX12X-T06C
Waste Water Supply
7
E(165°)
1/2 in
2003-XX12X-W07E
2000-XX08X-W07E
Pretreated Urine Supply
7
A(45°)
1/2 in
2003-XX08X-U07A (3)
2000-XX08X-U07A (3)
Process Water Line A
7
F(195°)
1/2 in
2003-XX04X-W07F
2000-XX08X-W07F
Process Water Line B
7
G(225°)
1/2 in
2003-XX04X-W07G
2000-XX08X-W07G
Process Water Line C
7
H(255°)
1/2 in
2003-XX04X-W07H
2000-XX08X-W07H
Process Water Line D
7
I(285°)
1/2 in
2003-XX04X-W07I
2000-XX08X-W07I

(1) Categories as defined in Boeing drawing 683-16348.

(2) Vendor part numbers and keying as defined by Symetrics drawing 200.

(3) Actual vendor part number will be different to meet pre-treated urine material compatibility requirements. Functional interface remains unchanged from noted part number.

RETURN COOLANT

The WRS Rack #2 shall return moderate temperature coolant to the Node 3. The return coolant interfaces are at the rack interface panel shown in Figure 3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations.

Return COOLANT CHARACTERISTICS Return COOLANT SPECIFICATIONS The return water coolant shall comply with the requirements of SSP 30573.

Return COOLANT TEMPERATURE The WRS Rack #2 shall return moderate temperature coolant at 61 to 120°F.

RETURN coolant pressure drop The WRS Rack #2 shall have a moderate temperature coolant pressure drop of 7.23 + 0.1 psid, at a flow rate of 100 lb/hr.

RETURN coolant cONNECTOR The WRS Rack #2 shall return coolant at the Rack Interface Panel via a “MT Water Return” connector as defined in Table 3.2.1.4-2 Fluid Interface Connectors.

Receive pre-treated urine The WRS Rack #2 shall receive pre-treated urine from the Node 3. The pre-treated urine interface is at the rack interface panel shown in Figure 3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations.

Receive pre-treated urine Temperature The WRS Rack #2 shall receive pre-treated urine from the Node 3 at a temperature range of 65 to 105 deg Fahrenheit (18.3 to 40.5 deg Celsius).

Receive pre-treated urine Pressure The WRS Rack #2 shall receive pre-treated urine from the Node 3 at a nominal pressure range of 0 to 3.2 psig.

Receive pre-treated urine maximum design Pressure The WRS Rack #2 shall receive pre-treated urine at a maximum design pressure of 11.8 psig (81 kPa gage).

Receive pre-treated urine Flow rate The WRS Rack #2 shall receive pre-treated urine from the Node 3 at a flow rate from 0 to 325 lb./hr (147 kg/hr).

Receive pre-treated urine Interface control Instrumentation and controls of the pre-treated urine interface shall be located within the WRS Rack #2.

Receive Pre-Treated Urine pH

a.The WRS Rack #2 shall receive pretreated urine from Node 3 with a pH in the range of 1.3 to 2.5 for each waste disposal.
b.Deleted

reCEIVE PRE-TREATED URINE CONNECTOR The WRS Rack #2 shall receive pre-treated urine at the Rack Interface Panel via a “Pre-treated Urine” connector as defined in Table 3.2.1.4-2 Fluid Interface Connectors.

receive pre-treated urine gas content The WRS Rack #2 will receive pre-treated urine from the Node 3 with a maximum free gas content of 0.25% by volume at 75 F (24C) and 14.7 psia (101 kPa), or equivalent.

receive pre-treated urine maximum particulate size The WRS Rack #2 shall receive pre-treated urine from the Node 3 with a maximum particulate size of 100 microns for contamination generated on-orbit. The pretreated urine line between the W&HC Rack and the WRS Rack #2 may be cleaned to Level 200 prior to integration in the Node 3.

DELETED

Receive PreTreated Urine QUALITY The WRS Rack #2 shall receive urine pretreated per Table 3.2.1.4-1.

Table 3.2.1.41 Urine pretreatment quality

Chemical
Quantity
Chromium Trioxide
9% by mass of stabilizer
Sulfuric Acid
36.5% by mass of stabilizer

Each liter of urine will be pretreated with a daily average of 16.7 ml of stabilizer and 250 ml of flush water. The stabilizer is 54.5% water.

WPA Process Water

a. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line A in the Node 3.

b. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line B in the Node 3.

c. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line C in the Node 3.

d. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line D in the Node 3.

WPA Process Water Temperature

a. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via the Node 3 at a temperature range of 63 to 113 deg Fahrenheit (17.2 to 45 deg Celsius).

b. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via the Node 3 at a temperature range of 63 to 113 deg Fahrenheit (17.2 to 45 deg Celsius).

WPA Process Water Pressure

a. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line A in the Node 3 at a pressure range of 0 to 88 psig.

b. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line B in the Node 3 at a pressure range of 0 to 3 psig.

c. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line C in the Node 3 at a pressure range of 0 to 108 psig.

d. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line D in the Node 3 at a pressure range of 0 to 75 psig.

WPA Process Water maximum design Pressure

a. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line A in the Node 3 at a maximum pressure of 125 psig.

b. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line B in the Node 3 at a maximum pressure of 85 psig.

c. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line C in the Node 3 at a maximum pressure of 125 psig.

d. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line D in the Node 3 at a maximum pressure of 125 psig.

WPA Process Water Maximum Pressure Drop

a. The maximum pressure drop in Process Water Line A in the Node 3 shall be 0.25 psid at a flow rate of 19 lb./hr. This pressure drop is for the Node supplied quick disconnects and plumbing.

b. The maximum pressure drop in Process Water Line B in the Node 3 shall be 0.25 psid at a flow rate of 19 lb./hr. This pressure drop is for the Node supplied quick disconnects and plumbing.

c. The maximum pressure drop in Process Water Line C in the Node 3 shall be 0.25 psid at a flow rate of 19 lb./hr. This pressure drop is for the Node supplied quick disconnects and plumbing.

d. The maximum pressure drop in Process Water Line D in the Node 3 shall be 0.25 psid at a flow rate of 19 lb./hr. This pressure drop is for the Node supplied quick disconnects and plumbing.

WPA Process Water Flow rate

a. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line A in the Node 3 at a flow rate up to 20 lb./hr.

b. The WRS Rack #2 shall receive WPA process water from the WRS Rack #1 via Process Water Line B in the Node 3 at a flow rate up to 20 lb./hr.

c. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line C in the Node 3 at a flow rate up to 20 lb./hr.

d. The WRS Rack #2 shall supply WPA process water to the WRS Rack #1 via Process Water Line D in the Node 3 at a flow rate up to 20 lb./hr.

WPA Process Water Interface control Instrumentation and controls of the WPA process water interface shall be located within both the WRS Rack #1 and WRS Rack #2.

wpa process water connectors The WRS Rack #2 shall exchange process water at the Rack Interface Panel via connectors “Process Water Line A”, “Process Water Line B”, “Process Water Line C” and “Process Water Line D” as defined in Table 3.2.1.4-2 Fluid Interface Connectors.

Supply vent GAS to Cabin Atmosphere The WRS Rack #2 shall supply the following gases to the Node 3 cabin atmosphere:

a. WPA gas (air, water vapor)

b. UPA gas (air, water vapor) Supply vent Gas to Cabin Temperature The WRS Rack #2 shall supply vent gases to the Node 3 at a temperature range of:

a. WPA gas at 65 to 129 F (18.3 to 53.9 C).

b. UPA gas at 65 to 80 F (18.3 to 26.7 C).

Supply Vent Gas to Cabin Pressure The WRS Rack #2 shall supply vent gases to the Node 3 at a pressure of:

a. WPA gas at 13.9 to 15.2 psia.

b. UPA gas at 13.9 to 15.2 psia.

Supply vent Gas to Cabin Flow rate The WRS Rack #2 shall supply vent gases to the Node 3 at a flow rate of:

a. WPA gas:

i. Air at 0 to 0.4 lb./hr.

ii. Water vapor at 0 to 0.003 lb./day

b. UPA gas:

i. Air at 0 to 0.004 lb./hr.

ii. Water vapor at 2.0 x10-4 lb./day Supply vent Gas to Cabin Interface control Instrumentation and controls of the WPA and UPA gas vent interfaces shall be located within the WRS Rack #2.

supply vent gas to cabin CONNECTOR Gases shall vent out the rack front panel as shown in Figure 3.2.1.4-1 and through the fittings depicted in Figure 3.2.1.4-2 WPA Gas Vent Fitting and Figure 3.2.1.4-3 UPA Gas Vent Fitting.

Figure 3.2.1.4-1 wpa/upa interfaces with rack faceplate

B C

Figure 3.2.1.42 WPA GAS Vent fitting (section c-c of figure 3.2.1.4-1)

Dia. 0.70 in Dia. 0.300 in

Figure 3.2.1.43 UPA Gas vent fitting (detail E of figure 3.2.1.4-1)

Receive Oxygen (Scar)

DELETED

Receive Oxygen Temperature

DELETED

Receive Oxygen Pressure

DELETED

Receive Oxygen Maximum Pressure

DELETED

Receive Oxygen Flow Rate

DELETED

Receive Oxygen Interface Control

DELETED

Receive Oxygen CONNECTOR

DELETED

receive Waste water The WRS Rack #2 shall receive waste water from the Node 3.

receive Waste water Temperature

a. The WRS Rack #2 shall receive waste water from the Node 3 at a temperature range of 55 to 113 F (12.8 to 45.0 C).

b. The WRS Rack #2 shall receive waste water from the Node 3 at a temperature range of 33 to 113F (0.6 to 45.0 C) when the Node 3 is receiving waste water from other elements at a transient flow rate of up to 132 lb./hr.

receive Waste water Pressure The WRS Rack #2 shall receive waste water from the Node 3 at a pressure of 0 to 8 psig.

Receive Waste water maximum design Pressure The WRS Rack #2 shall receive waste water from the Node 3 at a maximum pressure of 85 psig.

receive Waste water Flow rate The WRS Rack #2 shall receive waste water from the Node 3 at a flow rate from 0 to 500 lb./hr.

receive waste water Interface control Instrumentation and controls of the waste water interface shall be located within the WRS Rack #2.

Receive waste water connector The WRS Rack #2 shall receive waste water at the Rack Interface Panel via a “Waste Water Supply” connector as defined in Table 3.2.1.4-2 Fluid Interface Connectors.

Receive Waste Water Particulate Size The WRS Rack #2 shall receive waste water from the Node 3 with a maximum particulate size of 100 microns.

Receive Waste Water Gas Content The WRS Rack #2 shall receive waste water from the Node 3 with a maximum gas content of 10% by volume at 40 F and 20.7 psia.

ELECTRICAL INTERFACES

RECEIVE POWER

The WRS Rack #2 electrical power requirements shall not exceed those presented in Table 3.2.1.5-1 Maximum Rack Power Input.

Table 3.2.1.5-1 Maximum Rack Power Input

WRS Rack #2

3 kW (25 amp)

The WRS Rack #2 shall receive a single 3 kW (25 amp) main power feed.

The electrical power connector pin assignment is shown in Table 3.2.1.5-2 J2 Main Power Connector Description and Pin Assignments.

Table 3.2.1.5-2 J2 Main Power Connector Description and Pin Assignments CONNECTOR ID (J2 Power)

Plug Part No. (NODE 3)
NATC06G25LN3SA

(TBR)

Receptacle Part No. (WRS Rack #2)
NATC07T25LN3PA
Insert Arrangement
25L-3

PIN FUNCTION TABLE

Cont ID
Signal Function
EMC Class
AWG
Notes
A
120 VDC SUPPLY
EO
4
25 A For 3kW Minimum 8 Gage
B
NOT USED
C
120 VDC RETURN
EO
4
25 A For 3kW Minimum 8 Gage

POWER QUALITY

Applicable electrical power quality standards are defined in SSP 30482, Electrical Power Specifications and Standards, Volume 1 for “Interface B”. Inrush current characteristics are defined in this document in Figure 3.2.2.5-1 Inrush Current Characteristics.

steady-state current The WRS Rack #2 steady state current requirements shall not exceed those listed in Table 3.2.1.5-3 Maximum Allowable Steady-State Current (116-126 VDC).

Table 3.2.1.5-3 Maximum Allowable Steady-State Current (116-126 VDC)

WRS Rack #2

6.73 amp

Supply Electrical Power The WRS Rack #2 shall supply power to the WRS Rack #1 via the Node 3 through electrical RIP line J6.

The maximum length of the cable that connects WRS Rack #2 connector J6 to WRS Rack #1 connector J2 shall be 18 feet (5.48 meters).

Select WRS Rack #2 Orbit Replacement Units (ORUs) shall receive power from the WRS Rack #1 via the Node 3 through electrical RIP connectors J7, J8 and J9. The electrical power connector pin assignments are shown in the following tables:

Table 3.2.1.5-4 J6 Power Connector Description and Pin Assignments CONNECTOR ID (J6 Supply Power)

Mating Cable Connector Part No. (Node 3 Cable)
NATC06G21N11PN
Connector Part No. (WRS Rack #2)
NATC07T21N11SN
Insert Arrangement
21-11

J6 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
A
Not Used
B
Not Used
C
Not Used
D
3.5 Adc to ASD
EO
16
TP
12
TP
SSQ21656 or

MIL-DTL-27500

E
3.5 Adc to ASD RTN
EO
16
TP
12
TP
SSQ21656 or

MIL-DTL-27500

F
3.5 Adc to AAA
EO
16
TP
12
TP
SSQ21656 or

MIL-DTL-27500

G
3.5 Adc to AAA RTN
EO
16
TP
12
TP
SSQ21656 or

MIL-DTL-27500

H
3.5 Adc to WPA Controller
EO
16
TP
12
TP
SSQ21656 or

MIL-DTL-27500

J
3.5 Adc to WPA Controller RTN
EO
16
TP
12
TP
SSQ21656 or

MIL-DTL-27500

K
12 Adc to WPA Controller
EO
12
TP
12
TP
SSQ21656 or

MIL-DTL-27500

L
12 Adc to WPA Controller RTN
EO
12
TP
12
TP
SSQ21656 or

MIL-DTL-27500

Table 3.2.1.5-5 J7 Power Connector Description and Pin Assignments CONNECTOR ID (J7Receive Power/ Exchange Data)

Plug Part No. (NODE 3)
NATC06G15N19SA
Receptacle Part No. (WRS Rack #2)
NATC07T15N19PA
Insert Arrangement
15-19

J7 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
A
A210_PHASE1 B
EO
20
TST
20
TST
SSQ 21656 or

MIL-DTL-27500

B
NOT USED
C
A210_PHASE1 A
EO
20
TST
20
TST
SSQ 21656 or MIL-DTL-27500
D
NOT USED
E
NOT USED
F
A210_HED1 A
ML
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
G
A210_HED1 B
ML
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
H
A210_HED1 C
ML
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
J
NOT USED
K
NOT USED
L
A210_PHASE1 C
EO
20
TST
20
TST
SSQ 21656 or MIL-DTL-27500
M
NOT USED
N
NOT USED
P
NOT USED
R
A210_MTR1 P15 VDC
HO
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
S
NOT USED
T
NOT USED
U
A210_MTR1 15 RTN
HO
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
V
NOT USED

Table 3.2.1.5-6 J8 Power Connector Description and Pin Assignments CONNECTOR ID (J8 Receive Power/ Exchange Data)

Plug Part No. (NODE 3)
NATC06G15N19SN
Receptacle Part No. (WRS Rack #2)
NATC07T15N19PN
Insert Arrangement
15-19

J8 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
A
A210_PHASE2 B
EO
20
TST
20
TST
SSQ 21656 or MIL-DTL-27500
B
NOT USED
C
A210_PHASE2 A
EO
20
TST
20
TST
SSQ 21656 or MIL-DTL-27500
D
NOT USED
E
NOT USED
F
A210_HED2 A
ML
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
G
A210_HED2 B
ML
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
H
A210_HED2 C
ML
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
J
NOT USED
K
NOT USED
L
A210_PHASE2 C
EO
20
TST
20
TST
SSQ 21656 or MIL-DTL-27500
M
NOT USED
N
NOT USED
P
NOT USED
R
A210_MTR2 P15 VDC
HO
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
S
NOT USED
T
NOT USED
U
A210_MTR2 15 RTN
HO
22
TS5C
22
TS5C
SSQ 21656 or MIL-DTL-27500
V
NOT USED

Table 3.2.1.5-7 J9 Power Connector Description and Pin Assignments CONNECTOR ID (J9 Receive Power/ Exchange Data)

Plug Part No. (NODE 3)
NATC06G23N35SN
Receptacle Part No. (WRS Rack #2)
NATC07T23N35PN
Insert Arrangement
23-35

J9 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
1
A210_HHLSW1 EXC
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
2
A210_HHLSW1 RTN
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
3
A211_VLV1 HI
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
4
A211_VLV1 RTN
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
5
NOT USED
6
NOT USED
7
A211_VLV3 HI
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
8
A211_VLV3 RTN
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
9
NOT USED
10
NOT USED
11
A210_SOL1 HI
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
12
A210_SOL1 RTN
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
13
A210_LLLSW1 EXC
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
14
A210_LLLSW1 RTN
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
15
A210_T2 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
16
A210_T2 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
17
NOT USED
18
NOT USED
19
A210_TSW2 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
20
A210_TSW2 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
21
A211_PIN3 A1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
22
A211_PIN3 B1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
23
A210_PIN3 A1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
24
A210_PIN3 B1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
25
A211_PIN1 A1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
26
A211_PIN1 B1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
27
NOT USED
28
NOT USED
29
NOT USED
30
A210_HHLSW1 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
31
A210_HHLSW1 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
32
A211_VLV2 HI
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
33
A211_VLV2 RTN
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
34
A210_VLV2 HI
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
35
A210_VLV2 RTN
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
36
A210_VLV3 HI
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
37
A210_VLV3 RTN
EO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
38
A210_LLLSW1 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
39
A210_LLLSW1 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
40
A210_T1 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
41
A210_T1 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
42
A210_PG1 HI
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
43
A210_PG1 LO
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
44
A210_PG2 HI
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
45
A210_PG2 LO
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
46
A210_PIN2 A1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
47
A210_PIN2 B1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
48
A211_PIN2 A1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
49
A211_PIN2 B1
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
50
A212_PG1 HI
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
51
A212_PG1 LO
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
52
A210_HLSW1 EXC
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
53
A210_HLSW1 RTN
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
54
A210_HLSW1 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
55
A210_HLSW1 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
56
A210_LLSW1 EXC
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
57
A210_LLSW1 RTN
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
58
A210_LLSW1 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
59
A210_LLSW1 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
60
A211_QS1 EXC
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
61
A211_QS1 WPR
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
62
A211_QS1 REF
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
63
A211_QS1 RTN
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
64
A210_TSW1 HI
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
65
A210_TSW1 LO
ML
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
66
A211_QS2 EXC
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
67
A211_QS2 WPR
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
68
A211_QS2 REF
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
69
A211_QS2 RTN
HO
22
TS4C
22
TS4C
SSQ 21656 or MIL-DTL-27500
70
A211_LS1_P15 VDC
HO
22
TST
22
TST
SSQ 21656 or MIL-DTL-27500
71
A211_LS1_15 RTN
HO
22
TST
22
TST
SSQ 21656 or MIL-DTL-27500
72
A211_LS1_N15 VDC
HO
22
TST
22
TST
SSQ 21656 or MIL-DTL-27500
73
A211_LS1 HI
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
74
A211_LS1 LO
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
75
A212_CS1 HI
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
76
A212_CS1 LO
HO
22
TSP
22
TSP
SSQ 21656 or MIL-DTL-27500
77
A212_CS1_P15 VDC
HO
22
TST
22
TST
SSQ 21656 or MIL-DTL-27500
78
A212_CS1_15 RTN
HO
22
TST
22
TST
SSQ 21656 or MIL-DTL-27500
79
A212_CS1_N15 VDC
HO
22
TST
22
TST
SSQ 21656 or MIL-DTL-27500
80
NOT USED
81
NOT USED
82
NOT USED
83
NOT USED
84
NOT USED
85
NOT USED
86
NOT USED
87
NOT USED
88
NOT USED
89
NOT USED
90
NOT USED
91
NOT USED
92
NOT USED
93
NOT USED
94
NOT USED
95
NOT USED
96
NOT USED
97
NOT USED
98
NOT USED
99
NOT USED
100
NOT USED

Power Connectors

a. The WRS Rack #2 shall receive power at the rack interface panel via a “J2 - “ connector as specified in SSQ 21635 and defined in Table 3.2.1.5-2 J2 Main Power Connector Description and Pin Assignments.

b. The WRS Rack #2 shall supply power at the rack interface panel via a “J6 - “ connector as specified in SSQ 21635 and defined in Table 3.2.1.5-4 J6 Power Connector Description and Pin Assignments.

c. The WRS Rack #2 shall receive power and exchange data at the rack interface panel via connectors “J7”, “J8”, and “J9” as specified in SSQ 21635 and defined in Table 3.2.1.5-5 J7 Power Connector Description and Pin Assignments, Table 3.2.1.5-6 J8 Power Connector Description and Pin Assignments and Table 3.2.1.5-7 J9 Power Connector Description and Pin Assignments.

Command and Data Handling (C&DH) INTERFACES The following non-1553B, WRS components shall exchange data with the Node 3 in accordance with SSP 30261:002:

a. Avionics Air Assembly (Scar)

b. Rack Power Switch

c. Area Smoke Detector (Scar) The interface is at the rack interface panel shown in Figure 3.1.1.1-1 Water Recovery System Rack #2 to Node 3 Functional Interface Diagram. The hardwire data connector pin assignments are shown in Table 3.2.1.6-1 J3 Hardwire Data Connector Description and Pin Assignments.

The WRS Rack #2 to Node 3, non-1553B hardwire cables shall be less than 60 feet in length.

Table 3.2.1.6-1 J3 Hardwire Data Connector Description and Pin Assignments

CONNECTOR ID (J3 Hardwire Data)

Plug Part No. (NODE 3)
NATC06G15N35PB
Receptacle Part No. (WRS Rack #2)
NATC07T15N35SB
Insert Arrangement
15-35

J3 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
1
NOT USED
2
NOT USED
3
NOT USED
4
NOT USED
5
NOT USED
6
NOT USED
7
NOT USED
8
NOT USED
9
NOT USED
10
NOT USED
11
NOT USED
12
NOT USED
13
NOT USED
14
NOT USED
15
NOT USED
16
NOT USED
17
NOT USED
18
SMOKE DETECTOR SCATTER +
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
19
SMOKE DETECTOR SCATTER -
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
20
AAA ENABLE CMD +
HO
22
TP
22
TP
(Scar for WRS Rack #2)
21
AAA ENABLE CMD -
HO
22
TP
22
TP
(Scar for WRS Rack #2)
22
AAA FLOW TEMP1 MEAS +
ML
22
TSP
22
HO/ TSP
(Scar for WRS Rack #2)
23
AAA FLOW TEMP1 MEAS -
ML
22
TSP
22
HO/ TSP
(Scar for WRS Rack #2)
24
AAA FLOW TEMP2 MEAS +
ML
22
TSP
22
HO/ TSP
(Scar for WRS Rack #2)
25
AAA FLOW TEMP2 MEAS -
ML
22
TSP
22
HO/ TSP
(Scar for WRS Rack #2)
26
AAA SPEED CMD +
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
27
AAA SPEED CMD -
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
28
AAA SPEED FEEDBACK +
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
29
AAA SPEED FEEDBACK -
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
30
RPS LED ENABLE +
HO
22
TP
22
TP
(Scar for WRS Rack #2)
31
RPS LED ENABLE -
HO
22
TP
22
TP
(Scar for WRS Rack #2)
32
SMOKE DET OBSCURATION +
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
33
SMOKE DET OBSCURATION -
ML
22
TSP
22
TSP
(Scar for WRS Rack #2)
34
SMOKE DET BIT ENABLE +
HO
22
TP
22
TP
(Scar for WRS Rack #2)
35
SMOKE DET BIT ENABLE -
HO
22
TP
22
TP
(Scar for WRS Rack #2)
36
RPS SWITCH POS +
HO
22
TP
22
TP
SSQ21656 or MIL-DTL-27500
37
RPS SWITCH POS -
HO
22
TP
22
TP
SSQ21656 or MIL-DTL-27500

mil-std-1553B interfaces The following WRS Rack #2 to Node 3 1553B data interfaces shall be provided:

a. The RPCM interface on two separate, bi-directional stubs.

b. The UPA Firmware Controller interface on two, separate, bi-directional stubs.

The 1553B data interfaces are at the rack interface panel shown in Figure 3.2.1.3-2 WRS Rack #2 Specific Panel Connector Locations. The 1553B data connector pin assignments are shown in Table 3.2.1.6-2 J4 1553B A Data Connector Description and Pin Assignments and in Table 3.2.1.6-3 J5 1553B B Data Connector Description and Pin Assignments.

Table 3.2.1.6-2 J4 1553B A Data Connector Description and Pin Assignments

CONNECTOR ID (J4 1553B A)

Plug Part No. (NODE 3)
NATC06G13N35PN
Receptacle Part No. (WRS Rack #2)
NATC07T13N35SN
Insert Arrangement
13-35

J4 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
1
NOT USED
2
NOT USED
3
NOT USED
4
NOT USED
5
NOT USED
6
NOT USED
7
NOT USED
8
NOT USED
9
NOT USED
10
NOT USED
11
NOT USED
12
NOT USED
13
NOT USED
14
NOT USED
15
NOT USED
16
LB SYS-FLY-2 A HI
RF
22
TSP
22
TSP
UPA NOD3D4

SSQ 21655

17
LB SYS-FLY-2 A LO
RF
22
TSP
22
TSP
UPA NOD3D4

SSQ 21655

18
LB SEPS-HCZ-23 A HI
RF
22
TSP
22
TSP
RPCM NOD3D4-

2A2B-A

SSQ 21655

19
LB SEPS-HCZ-23 A LO
RF
22
TSP
22
TSP
RPCM NOD3D4-

2A2B-A

SSQ 21655

20
NOT USED
21
NOT USED
22
NOT USED

Table 3.2.1.6-3 J5 1553B B Data Connector Description and Pin Assignments

CONNECTOR ID (J5 1553B B)

Plug Part No. (NODE 3)
NATC06G13N35PA
Receptacle Part No. (WRS Rack #2)
NATC07T13N35SA
Insert Arrangement
13-35

J5 PIN FUNCTION TABLE

WRS RACK 2
NODE 3
Cont ID
Signal Function
EMC Class
AWG
Wire Type
AWG
Wire Type
Notes
1
NOT USED
2
NOT USED
3
NOT USED
4
NOT USED
5
NOT USED
6
NOT USED
7
NOT USED
8
NOT USED
9
NOT USED
10
NOT USED
11
NOT USED
12
NOT USED
13
NOT USED
14
NOT USED
15
NOT USED
16
LB SYS-FLY-2 B HI
RF
22
TSP
22
TSP
UPA NOD3D4

SSQ 21655

17
LB SYS-FLY-2 B LO
RF
22
TSP
22
TSP
UPA NOD3D4

SSQ 21655

18
LB SEPS-HCZ-23 B HI
RF
22
TSP
22
TSP
RPCM NOD3D4-2A2B-A

SSQ 21655

19
LB SEPS-HCZ-23 B LO
RF
22
TSP
22
TSP
RPCM NOD3D4-2A2B-A

SSQ 21655

20
NOT USED
21
NOT USED
22
NOT USED

respond to input amplitude When receiving addressed messages with MIL-STD-1553B defined waveforms at the Node 3 interface, the WRS Rack #2 shall provide response message in MIL-STD-1553B format.

1553B bus signal characteristics The WRS Rack #2 to Node 3 data interface signal characteristics shall be in accordance with MIL-STD-1553.

1553B bus coupling

a. The WRS Rack #2 to Node 3 data interfaces shall be transformer coupled, on the Node 3 side of the Interface, in accordance with MIL-STD-1553B.

b. The WRS Rack #2 to Node 3 1553B bus stub length shall be less than 10.0 ft.

1553B Connectors The 1553B connectors are as per Table 3.2.1.6-3 J5 1553B B Data Connector Description and Pin Assignments.

terminal operations The WRS Rack #2 components with software shall respond as a remote terminal to the Node 3 bus controller in accordance with MIL-STD-1553B.

1553B bus interface functions The WRS Rack #2 shall provide the MIL-STD-1553B interface capability defined in paragraph 3.2.1.7 herein.

C&DH Connectors

a. The WRS Rack #2 shall exchange non-1553B data at the rack interface panel via a “J3-Hardwire” connector as specified in SSQ 21635 defined in Table 3.2.1.6-1 J3 Hardwire Data Connector Description and Pin Assignments.

b. The WRS Rack #2 shall interface with Node 3 1553B busses at the rack interface panel via a “J4-1553B A” connector and a “J5-1553B B” connector as specified in SSQ 21635 and defined in Table 3.2.1.6-2 J4 1553B A Data Connector Description and Pin Assignments and Table 3.2.1.6-3 J5 1553B B Data Connector…

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