Attachment D LMXUIID 418 XO LMXUIID 0067 Version 1 40.pdf

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Final RFP Geostationary Extended Observations (GeoXO) Lightning Mapper (LMX) Instrument Implementation Federal contract opportunity
Solicitation number
80GSFC23R0013
Issued by
National Aeronautics and Space Administration Goddard Space Center

About this file

This document is a Unique Instrument Interface Document (UIID) that allocates spacecraft resources from the Geostationary Extended Observations (GeoXO) program to the Lightning Mapper (LMX) instrument. It specifies requirements for command and data handling, power, mechanical, and thermal interfaces between the LMX instrument and the GeoXO spacecraft. It assigns maximum data rates, power limits, mass properties, volume constraints, fields of view, and mounting configurations. It also establishes design verification requirements for radiated emissions and identifies applicable documents and order of precedence. Deviations from the General Interface Requirements Document are noted. The National Aeronautics and Space Administration Goddard Space Center is managing the GeoXO program.

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Other files for this federal contract opportunity

Other files attached to Final RFP Geostationary Extended Observations (GeoXO) Lightning Mapper (LMX) Instrument Implementation, newest first.
File Type Posted
FRFP Q_A.pdf PDF
Enclosure B LMX FRFP PPQ1.pdf PDF
LMX SF33.pdf PDF
Attachment R RPT 418 XO RPT 0042 Version 1.20.pdf PDF
Attachment B LMXPORD 418 XOLMXPORD 0120 Version 1.0.pdf PDF
Attachment X DEIA Plan 1.pdf PDF
Attachment V Requirements Statements List1.0.pdf PDF
Attachment O LMX CWBS1.pdf PDF
Attachment M IT Security ADL1.pdf PDF
LMX FRFP Cover Letter 1.pdf PDF
Enclosure C LMX PEP1.pdf PDF
Attachment E IMAR 418 XO IMAR 0026 Version 2.20.pdf PDF
Attachment U FPGA 418 XO RPT 0045 Version 1.00.pdf PDF
Attachment I - OCI Plan DRD1.pdf PDF
Attachment W OCI Plan 1.pdf PDF
Attachment F CDRL 418 XO LMXCDRL 0068 Version 1.00.pdf PDF
Attachment S CONOPS 410 XO CONOPS 0004 V1.00.pdf PDF
Attachment Q GRDDP 418 XO RPT 0039 Version 1.00.pdf PDF
Attachment G EU PU EDU Risk Mitigation Efforts1.pdf PDF
Attachment H Financial Mgmt Reporting 1.pdf PDF
80GSFC23R0013 LMX FRFP Cost Exhibits R1-7C.pdf PDF
Enclosure B LMX FRFP PPQ1.pdf PDF
LMX FRFP 80GSFC23R0013.pdf PDF
Attachment C GIRD 418 XO GIRD 0041 Version 2.3.pdf PDF
Attachment A SOW 418 XO LMXSOW 0116 Version 1.00.pdf PDF
Attachment T DEIA Plan DRD1.pdf PDF
Enclosure A ITSMP Template 1.pdf PDF
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Effective Date: April 28, 2023 418-XO-LMXUIID-0067 Responsible Organization: GeoXO Flight Project/Code 418 Version 1.4

To verify the correct version of this document, please contact the GeoXO Series Configuration Management Office.

Geostationary Extended Observations (GeoXO) Lightning Mapper (LMX)

Unique Instrument Interface Document (UIID) Signature page

Prepared by:

Electronically approved 10/22/2021

Ruth W. Cholvibul Date GeoXO Flight Project, Instrument Systems Engineer NASA GSFC, Code 418

Reviewed by:

Electronically approved 10/19/2021

Alexander Krimchansky Date GeoXO Flight Project, Mission Systems Engineer NASA GSFC, Code 599

Approved by:

Electronically approved by Monica Todirita for: 10/21/2021

Jason H. Hair Date GeoXO Flight Project, Project Manager NASA GSFC, Code 418

/GeoXO Flight Project LMX Lightning Mapper

LMXUIID

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX) Unique Instrument Interface Document (UIID)

Version: 1.4 Printed by: hlhedger Printed on: Friday, June 30, 2023

No filter applied.

No sort applied.

Generated from DOORS 9.7.2.4

Contents

1 1Scope

1.1 1Document Overview

1.2 1Requirements Terminology

1.3 2Order of Precedence

2 3Applicable Documents

2.1 3Applicable Documents

2.2 3Reference Documents

3 4Allocations

3.1 4Command and Data Handling

3.1.1 4Instrument-to-Spacecraft Science Rate

3.1.2 4Telemetry Data Rate

3.1.3 4Application Process Identifiers

3.1.4 4GeoXO Reliable Data Delivery Protocol Packet Rate

3.2 4Power

3.2.1 4Average Operational Power

3.2.2 4Maximum Operational Power

3.2.3 4Average Survival Power

3.2.4 4Maximum Survival Power

3.3 5Mechanical

3.3.1 5Mass Properties

3.3.2 5Cabling Between Units

3.3.3 5Volume

3.3.4 5Optical Port Field-of-View

3.3.5 6Radiator Field-of-View

3.3.6 6Mounting

3.4 7Spacecraft Disturbances

3.4.1 7Externally Sourced Translation Acceleration Limits

3.5 8Thermal

3.6 8Reserved (CCR-X00165)

4 9Constraints

5 10GIRD Deviations

Project: GeoXO Flight Project LMX Lightning Mapper Module: LMXUIID Baseline Version: 1.4

Contents ii

6 11Design Verification Requirements

6.1 11Reserved (CCR-X00165)

6.2 11Radiated Emissions in DCS Receiver Bands

6.2.1 12Radiated Susceptibility in DCS Transmitter Bands

7 13Acronyms

Contents iii

Page 1 of 13 Printed Friday, June 30, 2023

ID

LMXUIID1

LMXUIID2

LMXUIID3

LMXUIID4

LMXUIID5

LMXUIID6

LMXUIID7

LMXUIID8

LMXUIID9

LMXUIID10

LMXUIID11

LMXUIID12

LMXUIID13

LMXUIID14

LMXUIID15

Object Number

1.0-1

1.0-2

1.0-3

1.0-4

1.0-5

1.0-6

1.1

1.1.0-1

1.2

1.2.0-1

1.2.0-2

1.2.0-3

1.2.0-4

1.2.0-5

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

1 Scope

The purpose of this Unique Instrument Interface Document (UIID) is two-fold.

The first is to allocate GeoXO series spacecraft resources to the Lightning Mapper Instrument (LMX). The second is to serve as a core building block on which the LMX-spacecraft interfaces can be designed.

The spacecraft integrating contractor and the LMX contractor will meet each of their respective interface requirements as defined in this document.

This UIID will govern the development of an Interface Control Document (ICD) which will be a joint activity of the LMX and spacecraft contractors.

The LMX ICD establishes the details of the electrical, communications, mechanical, thermal, integration and test, and command and data handling (C&DH) interfaces between the LMX instrument and the GeoXO spacecraft.

After the ICD is signed and approved by all parties, the spacecraft contractor will maintain the ICD.

The LMX is a single-wavelength, non-scanning imaging instrument designed to detect lightning. The instrument collects data on a three-axis body-stabilized satellite in geosynchronous orbit. SNR, coverage, resolution and geolocation accuracy are prime requirements of the LMX. The instrument requires primary power and command input data from the spacecraft. Instrument output data to the spacecraft contains instrument telemetry and ancillary data. The sensor unit contains the optical system, detectors, and electronics. The electronics unit contains the power supply module, command, control, and data processing circuitry.

1.1 Document Overview

Together, the General Interface Requirements Document (GIRD) and the LMX UIID establish the LMX-spacecraft interface requirements. The GIRD applies to all GeoXO instruments while the LMX UIID is specific to the LMX. Section 1 explains the use of this document. Section 2 lists reference documents. Section 3 allocates spacecraft resources, such as mass, power, and data rate, to the LMX instrument. Section 4 contains government-accepted operation constraints.

Section 5 contains government-accepted deviations from the GIRD. Section 6 contains Design Verification Requirements. Section 7 contains a list of acronyms used within this document.

1.2 Requirements Terminology

The use of “shall” designates a requirement that must be met.

The use of “should” designates good practice.

The use of “will” is a statement of fact.

The use of “may” designates permission by the Government.

The term “(TBD)” means “to be determined” and is used when no value is available, and subsequent vendor study will be needed to obtain it.

Page 2 of 13 Printed Friday, June 30, 2023

ID

LMXUIID16

LMXUIID17

LMXUIID18

LMXUIID19

Object Number

1.2.0-6

1.2.0-7

1.3

1.3.0-1

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

The term “(TBR)”, which means “to be refined/reviewed”, means that the requirement is subject to review for appropriateness and subject to revision. The contractor is liable for compliance with the requirement as if the “TBR” notation did not exist. The “TBR” merely provides an indication that the value is more likely to change in a future modification than requirements not accompanied by a

“TBR”.

The term “(TBS)”, which means “to be specified”, means that the contractor will supply the missing information in the course of the contract. These serve as a placeholder for future requirements. The contractor is not liable for compliance with these “placeholder” requirements, as insufficient information is provided on which to base a design.

1.3 Order of Precedence

The order of precedence of interface requirements documents is the UIID at the highest level, followed in order by the GIRD, ICD, and Instrument Description Document (IDD).

Page 3 of 13 Printed Friday, June 30, 2023

ID

LMXUIID20

LMXUIID21

LMXUIID22

LMXUIID23

LMXUIID24

Object Number

2.1

2.1.0-1

2.2

2.2.0-1

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

2 Applicable Documents

2.1 Applicable Documents

The following documents of the exact issue shown form a part of this UIID to the extent specified herein. In the event of conflict between the documents referenced and the contents of this UIID the latter shall be the superseding requirement.

1. MIL-STD-461G – Requirements for the Control of Electromagnetic Interference Characteristics of Subsystems and Equipment, 11 December

2. 418-XO-GIRD-0041 - General Interface Requirements Document (GIRD)

(CCR-X00187)

2.2 Reference Documents

The following documents provide reference material for part of this document.

1. CCSDS 133.0-B-2 - Space Packet Protocol, Blue Book, Issue 2, June 2020

2. CCSDS 301.0-B-4 - Time Code Formats. Blue Book. Issue 4, November

3. 418-XO-RPT-0039 - GOES Reliable Data Delivery Protocol (GRDDP)

(CCR-X00187)

Page 4 of 13 Printed Friday, June 30, 2023

ID

LMXUIID25

LMXUIID26

LMXUIID27

LMXUIID28

LMXUIID29

LMXUIID30

LMXUIID31

LMXUIID32

LMXUIID33

LMXUIID34

LMXUIID35

LMXUIID36

LMXUIID37

LMXUIID38

LMXUIID39

LMXUIID40

LMXUIID41

LMXUIID42

LMXUIID43

Object Number

3.0-1

3.1

3.1.1

3.1.1.0-1

3.1.2

3.1.2.0-1

3.1.3

3.1.3.0-1

3.1.4

3.1.4.0-1

3.2

3.2.1

3.2.1.0-1

3.2.2

3.2.2.0-1

3.2.3

3.2.3.0-1

3.2.4

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

3 Allocations

The GeoXO spacecraft provides communications, power, and a mounting platform for the LMX instrument. The following paragraphs allocate these resources to LMX.

3.1 Command and Data Handling

3.1.1 Instrument-to-Spacecraft Science Rate

The instrument science and engineering data rate, including all overhead associated with Consultative Committee for Space Data Systems (CCSDS) packetization by the instrument, at the spacecraft interface shall not exceed 75 Mbps when averaged over any 5 second period.

3.1.2 Telemetry Data Rate

Housekeeping telemetry data rate, including all overhead associated with CCSDS packetization by the instrument, at the spacecraft interface shall not exceed 1024 bits per second when averaged over any 5 second period.

3.1.3 Application Process Identifiers

The LMX shall use no more than 255 consecutive Application Process Identifiers (APIDs) for science, telemetry, and command packets.

3.1.4 GeoXO Reliable Data Delivery Protocol Packet Rate

The LMX shall transmit to the spacecraft no more than 400 GOES Reliable Data Delivery Protocol (GRDDP) packets per second.

3.2 Power

3.2.1 Average Operational Power

The LMX shall draw operational average power, inclusive of heaters, of no more than 325 Watts from up to four total feeds including primary and redundant feeds. Operational average power is the total power into an instrument averaged over any 5 minute period.

3.2.2 Maximum Operational Power

The LMX shall draw operational maximum power of no more than 520 Watts.

Operational maximum power is the total power into an instrument averaged over any 20ms period.

3.2.3 Average Survival Power

The LMX shall draw average survival power of no more than 165 Watts from the spacecraft. Average survival power is the total power into an instrument averaged over any 72 minute period. (CCR-X00165) (CCR-X00201)

3.2.4 Maximum Survival Power

Page 5 of 13 Printed Friday, June 30, 2023

ID

LMXUIID44

LMXUIID45

LMXUIID46

LMXUIID47

LMXUIID48

LMXUIID49

LMXUIID50

LMXUIID51

LMXUIID52

LMXUIID53

LMXUIID54

LMXUIID55

LMXUIID56

LMXUIID57

LMXUIID58

Object Number

3.2.4.0-1

3.3

3.3.0-1

3.3.1

3.3.1.0-1

3.3.2

3.3.2.0-1

3.3.2.0-2

3.3.2.0-3

3.3.3

3.3.3.0-1

3.3.3.0-2

3.3.3.0-3

3.3.4

3.3.4.0-1

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

The LMX shall draw maximum survival power of no more than 248 Watts from the spacecraft. Survival maximum power is the total power into an instrument averaged over any 20 ms period. (CCR-X00165) (CCR-X00201)

3.3 Mechanical

The requirements in this section apply to the structural and mechanical components of the instrument flight units (sensor unit, electronics unit).

3.3.1 Mass Properties

The LMX, including all units and cabling between units, shall have mass less than 140 kilograms. (CCR-X00180)

3.3.2 Cabling Between Units

If there are external units mounted directly to the spacecraft, the LMX shall operate with cable length up to 4 meters between the units.

Cables between LMX units are the responsibility of the LMX contractor.

Spacecraft interface cabling is the responsibility of the spacecraft.

3.3.3 Volume

The LMX Sensor and Electronics Units stowed and operational (deployed) configurations, including mounts, thermal blankets and connectors, shall not exceed the dimension limits provided below.

Instrument Unit Envelopes Table

Component Width (cm)

(X)

Height (cm)

(Y)

Depth (cm)

(Z)

Sensor unit 125 123 150

Electronics unit 50 37.5 55.5

(CCR-X00201)

For the sensor unit, width is in the X direction of the body reference frame (BRF) defined in the GIRD. Height is measured in the Y direction of the BRF, and depth is in the Z direction of the BRF. For the electronic units, height is the direction normal to the mechanical interface plane.

In going from the stowed to the operational configuration, sensor unit depth (z-axis dimension) shall always be less than or equal to 186 cm.

3.3.4 Optical Port Field-of-View

The spacecraft shall provide the sensor unit’s optical port a clear field-of-view within 30o of nadir as shown in the following figure.

Page 6 of 13 Printed Friday, June 30, 2023

ID

LMXUIID58

LMXUIID59

LMXUIID60

LMXUIID61

LMXUIID103

LMXUIID62

LMXUIID63

LMXUIID64

LMXUIID65

LMXUIID66

LMXUIID67

LMXUIID68

LMXUIID69

Object Number

3.3.4.0-1

3.3.4.0-2

3.3.5

3.3.5.0-1

3.3.5.0-2

3.3.5.0-3

3.3.6

3.3.6.0-1

3.3.6.0-2

3.3.6.0-3

3.3.6.0-4

3.3.6.0-5

3.3.6.0-6

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

The Instrument LOS shall nominally be aligned with the +Z axis in the BRF as defined in the GIRD.

3.3.5 Radiator Field-of-View

The spacecraft shall provide the sensor unit’s radiator face a 2π steradian field-of-view to space excepting a field-of-view blockage with less than 40 W/m^2 infrared back loading. (CCR-X00165) (CCR-X00195)

The instrument shall meet its performance requirements with an incident 40 W/m^2 infrared back loading on the radiator surface. (CCR-X00165) (CCR- X00195)

The instrument shall dedicate the +Y face of the instrument for a radiator surface with the axis in the Body Reference Frame (BRF) as defined in the GIRD.

3.3.6 Mounting

The spacecraft shall provide the instrument sensor unit a nadir-facing mounting surface.

The spacecraft mounting surface shall have as a minimum the same dimensions of the sensor unit envelope anti-nadir plane.

The sensor unit mechanical interface shall lie within the anti-nadir plane of the sensor unit envelope.

The instrument sensor unit shall use kinematic mounts for its mechanical interface to the spacecraft.

The placement of the LMX reference frame with respect to the spacecraft instrument mounting reference frame shall be to within 0.125 degrees per axis, including variation over all launch and on-orbit environments.

Nominal LMX mounting orientations shall have the instrument Z axis parallel to the spacecraft Z axis and the instrument Y axis either parallel to or anti-parallel to the spacecraft Y axis.

Page 9 of 13 Printed Friday, June 30, 2023

ID

LMXUIID79

LMXUIID80

LMXUIID81

Object Number

4.0-1

4.0-2

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

4 Constraints

In order to ensure proper instrument performance or to prevent possible instrument damage, the following Government-approved constraints are imposed by the instrument developer on spacecraft integration and test activities, including launch, activation and operations.

No constraints have been identified at this time.

Page 10 of 13 Printed Friday, June 30, 2023

ID

LMXUIID82

LMXUIID83

LMXUIID84

LMXUIID101

LMXUIID102

LMXUIID105

Object Number

5.0-1

5.0-2

5.0-3

5.0-4

5.0-5

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

5 GIRD Deviations

This section identifies GIRD requirements that the Government has deviated from for this instrument. Where appropriate, corresponding GIRD paragraph titles and numbers are identified in parentheses.

For the LMX sensor unit only, GIRD109 is superseded by the following:

For the LMX sensor unit, the Spacecraft and Instrument profile of the mounting surfaces shall be less than 0.1 mm. (CCR-X00180)

GIRD385 is superseded by the following:

Instrument units not mounted on the Spacecraft nadir deck shall survive limit static positive and negative acceleration loads in each axis individually with an amplitude of 16 g. (CCR-X00180)

GIRD387 is superseded by the following:

Instrument units mounted on the Spacecraft nadir deck shall survive limit static positive and negative acceleration loads in each axis individually with an amplitude of 8 g. (CCR-X00180)

GIRD151 is superseded by the following:

The Instrument shall meet all performance requirements while the total bias and quasi-static attitude error of the instrument mounting frame relative to the desired ORF-referenced attitude is less than 2250 microradians, 3-sigma, per axis. Quasi-static error includes variation over timeframes longer than 24 hours.

(CCR-X00187)

Page 11 of 13 Printed Friday, June 30, 2023

ID

LMXUIID85

LMXUIID86

LMXUIID87

LMXUIID88

LMXUIID89

LMXUIID90

LMXUIID91

LMXUIID92

LMXUIID93

LMXUIID94

LMXUIID95

LMXUIID96

LMXUIID97

Object Number

6.0-1

6.1

6.1.0-1

6.1.0-2

6.1.0-3

6.2

6.2.0-1

6.2.0-2

6.2.0-3

6.2.0-4

6.2.0-5

6.2.0-6

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

6 Design Verification Requirements

The following requirements represents only a portion of the overall system verification (i.e., contractor derived requirements are not described) that must be integrated into the total system program which verifies that the system will meet the mission requirements. A system performance verification program documenting the overall verification plan, implementation, and results is required which will provide traceability from mission specification requirements to launch and initial on-orbit capability. This will also provide the baseline for tracking on-orbit performance versus pre-launch capability.

6.1 Reserved (CCR-X00165)

Reserved (CCR-X00165)

Reserved (CCR-X00165)

Reserved (CCR-X00165)

6.2 Radiated Emissions in DCS Receiver Bands

Radiated emission measurements in the Data Collection System (DCS) receiver bands shall be made in accordance with MIL-STD-461G, RE102 with the EMI meter replaced by a spectrum analyzer preceded by a low noise pre-amplifier such that the test system noise figure is equal to or less than 3 dB, e.g., an HP-8566 spectrum analyzer preceded by a MITEQ AU-2A-0550 pre-amplifier or equivalent.

The spectrum analyzer levels and the difference in the levels shall be recorded for both white noise and spurious signals before and after power is applied to the instrument clock and control signals.

The test antenna shall be tuned to the center of the frequency band specified in DCS EMC Test Parameters Table.

Prior to making the actual measurements, the test antenna shall be de-mated and the cable terminated with 50 ohms for self-calibration.

The noise floor of the measuring equipment shall be verified to be lower than the specified maximum signal level in a 100 Hz resolution bandwidth.

Radiated emission levels generated by the instrument shall not exceed the maximum signal levels specified in the DCS EMC Test Parameters Table below.

Page 13 of 13 Printed Friday, June 30, 2023

ID

LMXUIID98

LMXUIID99

Object Number

7.0-1

418-XO-LMXUIID-0067, RM Version, Geostationary eXtended Observations (GeoXO) Lightning Mapper Instrument (LMX)

Unique Instrument Interface Document (UIID)

7 Acronyms

APID Application Process Identifier BRF Body Reference Frame C&DH Command and Data Handling CCSDS Consultative Committee for Space Data Systems dBuV Decibel micro volt DCS Data Collection System GeoXO Geostationary Extended Observations GIRD General Interface Requirements Document GOES Geostationary Operational Environmental Satellite GRDDP GOES Reliable Data Delivery Protocol GSFC Goddard Space Flight Center Hz Hertz ICD Interface Control Document IDD Instrument Description Document kg kilogram LMX GeoXO Lightning Mapper m meter Mbps million bits per second NASA National Aeronautics and Space Administration SRS Shock Response Spectra TBD to be determined TBR to be resolved TBS to be specified UIID Unique Instrument Interface Document

(CCR-X00165)

Effective Date: April 28, 2023 418-XO-LMXUIID-0067 Responsible Organization: GeoXO Flight Project/Code 418 Version 1.4

To verify the correct version of this document, please contact the GeoXO Series Configuration Management Office.

Document Change Record (DCR)

CCR GeoXO#:X00026 Rev: A Title: 418-XO-LMXUIID-0067: Baselining LMXUIID phase A Contract # N/A GeoXO S/C: GeoXO Effectivity: Instruments CCB Status: Approved Doc #: 418-XO-LMXUIID-0067 CCB Date: 10/21/2021 Doc Version: 1.0 Contract Mod#: N/A DOORs Version: 1.0 Doc Change Date: Oct 21, 2021 DOORs ID #: All

CCR GeoXO#:X00180 Rev: Title: LMXUIID: Phase A GIRD deviations Contract # N/A GeoXO S/C: GeoXO Effectivity: None CCB Status: Approved Doc #: 418-XO-LMXUIID-0067 CCB Date: 04/18/2023 Doc Version: 1.1 Contract Mod#: N/A DOORs Version: 1.1 Doc Change Date: Apr. 18, 2023 DOORs ID #: Modify: LMXUIID48 (3.3.1.0-1), 84 (5.0-2)

Add: LMXUIID101 (5.0-3), 192 (5.0-4)

CCR GeoXO#:X00165 Rev: Title: LMXUIID: Phase A GIRD deviations Contract # 80GSFC22CA002, 80GSFC22CA02580, GSFC22CA025, 80GSFC22CA055, 80GSFC22CA059 GeoXO S/C: GeoXO Effectivity: None CCB Status: Approved Doc #: 418-XO-LMXUIID-0067 CCB Date: 03/10/2023 Doc Version: 1.2 Contract Mod#: P0004, P0008, P0009 DOORs Version: 1.2 Doc Change Date: Apr. 28, 2023 DOORs ID #: Modify: LMXUIID42 (3.2.3.0-1), 44 (3.2.4.0-1), 61 (3.3.5.0-1), 97 (6.2.0-6), 99 (7.0-1) Add: LMXUIID103 (3.3.5.0-2), 104 (6.2.1)

Modify: LMXUIID76 (3.6), 77 (3.6.0-1), 78 (3.6.0-2), 87 (6.1), 88 (6.1.0-1), 89 (6.1.0-2), 90 (6.1.0-3) [replaced original text with “Reserved’; DI retains for potential future use;]

CM Note: LMX Instrument is awarded for phase A, contract numbers are added.

CCR GeoXO#:X00187 Rev: Title: LMXUIID: Pre phase B updates Contract #: N/A GeoXO S/C: GeoXO Effectivity: None CCB Status: Approved Doc #: 418-XO-LMXUIID-0067 CCB Date: 06/13/2023 Doc Version: 1.3 Contract Mod#: DOORs Version: 1.3 Doc Change Date: June 13, 2023 DOORs ID #: Modify: LMXUIID22 (2.1.0-1), 24 (2.2.0-1) Add: LMXUIID105 (5.0-5)

CM Note: Phase B implementation; bypass contract negotiation.

CCR GeoXO#:X00195 Rev: Title: LMXUIID: Pre phase B remove TBD’s Contract #: N/A GeoXO S/C: GeoXO Effectivity: None CCB Status: Approved Doc #: 418-XO-LMXUIID-0067 CCB Date: 06/29/2023 Doc Version: 1.4 Contract Mod#: Phase B DOORs Version: 1.4 Doc Change Date: June 29, 2023 DOORs ID #: Modify: LMXUIID61 (3.3.5.0-1), 103 (3.3.5.0-2)

CCR GeoXO#:X00201 Rev: Title: LMXUIID: Changes to Phase B Contract #: N/A GeoXO S/C: GeoXO Effectivity: None CCB Status: Approved Doc #: 418-XO-LMXUIID-0067 CCB Date: 06/29/2023 Doc Version: 1.4 Contract Mod#: Phase B DOORs Version: 1.4 Doc Change Date: June 29, 2023 DOORs ID #: Modify: LMXUIID42 (3.2.3.0-1), 44 (3.2.4.0-1), 54 (3.3.3.0-1)

File details come from the government source that posted it. Updated .