<Spase xmlns="http://www.spase-group.org/data/schema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="https://www.spase-group.org/data/schema https://www.spase-group.org/data/schema/spase-2.7.1.xsd">
  <Version>2.7.1</Version>
  <MetadataRightsList>
    <Rights>
      <SchemeURI>https://spdx.org/licenses/</SchemeURI>
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      <RightsName>Creative Commons Zero v1.0 Universal</RightsName>
      <Note>CC0 1.0 Universal is the Creative Commons license applicable to all publicly available SPASE metadata descriptions</Note>
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  <NumericalData>
    <ResourceID>spase://NASA/NumericalData/MAVEN/SWIA/Level2/Distributions3D/Coarse/Archive/PT8S</ResourceID>
    <NamingAuthority>NASA</NamingAuthority>
    <ResourceType>NumericalData</ResourceType>
    <ResourceHeader>
      <ResourceName>MAVEN SWIA Calibrated Coarse Archive 3D Data Collection</ResourceName>
      <AlternateName>MVN_SWI_L2_COARSEARC3D</AlternateName>
      <DOI>https://doi.org/10.17189/1414229</DOI>
      <ReleaseDate>2026-06-26T13:24:20Z</ReleaseDate>
      <RevisionHistory>
        <RevisionEvent>
          <ReleaseDate>2024-02-26T00:00:00Z</ReleaseDate>
          <Note>Draft metadata created by LFB (ADAPT code), final editing by AK</Note>
        </RevisionEvent>
        <RevisionEvent>
          <ReleaseDate>2025-09-30T14:25:20Z</ReleaseDate>
          <Note>Updated PublishedBy name to match ROR Registry. Added ResourceType and NamingAuthority. Changed http to https in top-level schemaLocation attribute. Fixed version number separator in top-level schemaLocation attribute. Matched version number in schemaLocation attribute to updated value in Version tag. ZCB</Note>
        </RevisionEvent>
        <RevisionEvent>
          <ReleaseDate>2025-12-04T13:29:54Z</ReleaseDate>
          <Note>Added MetadataRightsList and RightsList(s). Updated to 2.7.1. ZCB</Note>
        </RevisionEvent>
        <RevisionEvent>
          <ReleaseDate>2026-06-26T13:24:20Z</ReleaseDate>
          <Note>Add 'Z' to RevisionEvent:ReleaseDate(s), PublicationDate, TemporalDescription:TimeSpan:StartDate. ZCB</Note>
        </RevisionEvent>
      </RevisionHistory>
      <Description>MAVEN Solar Wind Ion Analyzer (SWIA) coarse archive 3d files with time-ordered fully calibrated ion distributions in units of differential energy flux derived from the SWIA Coarse distribution Archive telemetry, as well as a header of ancillary information needed to interpret the data. Description of the SWIA instrument can be found on the SWIA home page https://lasp.colorado.edu/maven/science/instrument-package/swia/ and in the SWIA instrument publication https://doi.org/10.1007/s11214-013-0029-z.</Description>
      <Acknowledgement>Please acknowledge the Principal Investigator J.S. Halekas for use of these data.</Acknowledgement>
      <PublicationInfo>
        <Authors>Halekas, J. S.</Authors>
        <PublicationDate>2023-01-01T00:00:00Z</PublicationDate>
        <PublishedBy>Planetary Data System; Space Physics Data Facility</PublishedBy>
      </PublicationInfo>
      <Contact>
        <PersonID>spase://SMWG/Person/Jasper.S.Halekas</PersonID>
        <Role>InstrumentLead</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Lan.Jian</PersonID>
        <Role>MetadataContact</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Andriy.Koval</PersonID>
        <Role>MetadataContact</Role>
      </Contact>
      <InformationURL>
        <Name>MAVEN Data Archive at PDS PPI Node</Name>
        <URL>https://pds-ppi.igpp.ucla.edu/search/?sc=MAVEN&amp;facet=SPACECRAFT_NAME</URL>
      </InformationURL>
      <InformationURL>
        <Name>MAVEN home page at LASP</Name>
        <URL>https://lasp.colorado.edu/maven/</URL>
      </InformationURL>
      <InformationURL>
        <Name>MAVEN home page at NASA.gov</Name>
        <URL>https://science.nasa.gov/mission/maven/</URL>
      </InformationURL>
    </ResourceHeader>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/PDS/PPI</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
      <AccessURL>
        <Name>PDS PPI</Name>
        <URL>https://pds-ppi.igpp.ucla.edu/search/view/?f=yes&amp;id=pds://PPI/maven.swia.calibrated/data/coarse_arc_3d</URL>
        <Description>Access to Data in CDF Format at the Planetary Data System, Planetary Plasma Interactions node</Description>
      </AccessURL>
      <Format>CDF</Format>
      <Encoding>None</Encoding>
      <Acknowledgement>Please acknowledge the Principal Investigator D. Larson</Acknowledgement>
    </AccessInformation>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/NASA/GSFC/SPDF</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
      <RightsList>
        <Rights>
          <SchemeURI>https://spdx.org/licenses/</SchemeURI>
          <RightsIdentifierScheme>SPDX</RightsIdentifierScheme>
          <RightsIdentifier>CC0-1.0</RightsIdentifier>
          <RightsURI>https://spdx.org/licenses/CC0-1.0.html</RightsURI>
          <RightsName>Creative Commons Zero v1.0 Universal</RightsName>
          <Note>CC0 1.0 Universal is the Creative Commons license applicable to all publicly available NASA Heliophysics data products</Note>
        </Rights>
      </RightsList>
      <AccessURL>
        <Name>FTPS from SPDF (not with most browsers)</Name>
        <URL>ftps://spdf.gsfc.nasa.gov/pub/data/maven/swia/l2/coarsearc3d/</URL>
        <Description>Access to Data in CDF Format via ftps from SPDF</Description>
      </AccessURL>
      <AccessURL>
        <Name>HTTPS from SPDF</Name>
        <URL>https://spdf.gsfc.nasa.gov/pub/data/maven/swia/l2/coarsearc3d/</URL>
        <Description>Access to Data in CDF Format via https from SPDF</Description>
      </AccessURL>
      <AccessURL>
        <Name>CDAWeb</Name>
        <URL>https://cdaweb.gsfc.nasa.gov/cgi-bin/eval2.cgi?dataset=MVN_SWI_L2_COARSEARC3D&amp;index=sp_phys</URL>
        <ProductKey>MVN_SWI_L2_COARSEARC3D</ProductKey>
        <Description>Access to ASCII, CDF, and Plots via NASA/GSFC CDAWeb</Description>
      </AccessURL>
      <Format>CDF</Format>
      <Encoding>None</Encoding>
            <AccessDirectoryTemplate>https://cdaweb.gsfc.nasa.gov/pub/data/maven/swia/l2/coarsearc3d/$Y/$m</AccessDirectoryTemplate>
            <AccessFilenameTemplate>mvn_swi_l2_coarsearc3d_$Y$m$d_v02_r00.cdf</AccessFilenameTemplate>
      <Acknowledgement>Please acknowledge the Principal Investigator J.S. Halekas. Please acknowledge the Data Providers and CDAWeb when using these data.</Acknowledgement>
    </AccessInformation>
        <AccessInformation>
            <RepositoryID>spase://SMWG/Repository/NASA/GSFC/SPDF</RepositoryID>
            <Availability>Online</Availability>
            <AccessRights>Open</AccessRights>
            <AccessURL>
                <Name>CDAWeb Programmatic Data Access</Name>
                <URL>https://cdaweb.gsfc.nasa.gov/WS/cdasr/1/dataviews/sp_phys/datasets/MVN_SWI_L2_COARSEARC3D/clientLibraryExample/</URL>
                <Style>WebService</Style>
                <ProductKey>MVN_SWI_L2_COARSEARC3D</ProductKey>
                <Description>Access to this data from common programming environments.  Note: this AccessInformation element was added by HDPWS.</Description>
            </AccessURL>
            <Format>Binary</Format>
            <Acknowledgement>Please acknowledge the Principal Investigator J.S. Halekas. Please acknowledge the Data Providers and CDAWeb when using these data.</Acknowledgement>
        </AccessInformation>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/NASA/GSFC/SPDF/CDAWeb</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
      <RightsList>
        <Rights>
          <SchemeURI>https://spdx.org/licenses/</SchemeURI>
          <RightsIdentifierScheme>SPDX</RightsIdentifierScheme>
          <RightsIdentifier>CC0-1.0</RightsIdentifier>
          <RightsURI>https://spdx.org/licenses/CC0-1.0.html</RightsURI>
          <RightsName>Creative Commons Zero v1.0 Universal</RightsName>
          <Note>CC0 1.0 Universal is the Creative Commons license applicable to all publicly available NASA Heliophysics data products</Note>
        </Rights>
      </RightsList>
      <AccessURL>
        <Name>CDAWeb HAPI Server</Name>
        <URL>https://cdaweb.gsfc.nasa.gov/hapi</URL>
        <Style>HAPI</Style>
        <ProductKey>MVN_SWI_L2_COARSEARC3D</ProductKey>
        <Description>Web Service to this product using the HAPI interface</Description>
      </AccessURL>
      <Format>CSV</Format>
      <Acknowledgement>Please acknowledge the Principal Investigator J.S. Halekas. Please also acknowledge the Data Providers and CDAWeb when using these data.</Acknowledgement>
    </AccessInformation>
    <ProcessingLevel>Calibrated</ProcessingLevel>
    <InstrumentID>spase://SMWG/Instrument/MAVEN/SWIA</InstrumentID>
    <MeasurementType>ThermalPlasma</MeasurementType>
    <TemporalDescription>
      <TimeSpan>
        <StartDate>2014-03-20T04:28:59Z</StartDate>
        <RelativeStopDate>-P6M</RelativeStopDate>
      </TimeSpan>
      <Cadence>PT8S</Cadence>
    </TemporalDescription>
    <ObservedRegion>Mars</ObservedRegion>
    <Parameter>
      <Name>Time, start of sample, in TT2000 time base</Name>
      <ParameterKey>epoch</ParameterKey>
      <Description>Time, start of sample, in TT2000 time base</Description>
      <Caveats>This Parameter exhibits an increasing Monotonic Progression</Caveats>
      <Units>ns</Units>
      <UnitsConversion>1.0e-9&gt;s</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>epoch</AxisLabel>
        <ValueFormat>I22</ValueFormat>
        <ScaleMin>6.3650426622691e+13</ScaleMin>
        <ScaleMax>6.3650513014271e+13</ScaleMax>
      </RenderingHints>
      <ValidMin>2013-11-17T23:59:59.999998080</ValidMin>
      <ValidMax>2030-12-31T23:58:59.999998080</ValidMax>
      <FillValue>9999-12-31T23:59:59.999999999</FillValue>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Time, start of sample, in raw mission elapsed time</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>time_met</ParameterKey>
      <Description>Time, start of sample, in raw mission elapsed time</Description>
      <Caveats>This Parameter exhibits an increasing Monotonic Progression</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>s</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>time_met</AxisLabel>
        <ValueFormat>F25.6</ValueFormat>
        <ScaleMin>5.36501e+08</ScaleMin>
        <ScaleMax>5.36587e+08</ScaleMax>
      </RenderingHints>
      <ValidMin>4.38005e+08</ValidMin>
      <ValidMax>9.78264e+08</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Time, start of sample, in Unix time</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>time_unix</ParameterKey>
      <Description>Time, start of sample, in Unix time</Description>
      <Caveats>This Parameter exhibits an increasing Monotonic Progression</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>s</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>time_unix</AxisLabel>
        <ValueFormat>F25.6</ValueFormat>
        <ScaleMin>1.48323e+09</ScaleMin>
        <ScaleMax>1.48332e+09</ScaleMax>
      </RenderingHints>
      <ValidMin>1.38473e+09</ValidMin>
      <ValidMax>1.92499e+09</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Attenuator state</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>atten_state</ParameterKey>
      <Description>Attenuator state, 1 = open, 2 = closed, 3 = cover closed</Description>
      <Cadence>PT8S</Cadence>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>atten_state</AxisLabel>
        <ValueFormat>I7</ValueFormat>
        <ScaleMin>1</ScaleMin>
        <ScaleMax>3</ScaleMax>
      </RenderingHints>
      <ValidMin>1</ValidMin>
      <ValidMax>3</ValidMax>
      <FillValue>255</FillValue>
      <Support>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Data Binning Flag</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>grouping</ParameterKey>
      <Description>Data Binning Flag: 0 = 48 energies, 1 = 24 energies, 2 = 16 energies</Description>
      <Cadence>PT8S</Cadence>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>grouping</AxisLabel>
        <ValueFormat>I7</ValueFormat>
        <ScaleMin>0</ScaleMin>
        <ScaleMax>2</ScaleMax>
      </RenderingHints>
      <ValidMin>0</ValidMin>
      <ValidMax>2</ValidMax>
      <FillValue>255</FillValue>
      <Support>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Number of Accumulations Summed</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>num_accum</ParameterKey>
      <Description>Number of Accumulations Summed</Description>
      <Cadence>PT8S</Cadence>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>num_accum</AxisLabel>
        <ValueFormat>I7</ValueFormat>
        <ScaleMin>0</ScaleMin>
        <ScaleMax>512</ScaleMax>
      </RenderingHints>
      <ValidMin>0</ValidMin>
      <ValidMax>512</ValidMax>
      <FillValue>-32768</FillValue>
      <Support>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Raw Instrument counts</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>counts</ParameterKey>
      <Description>Raw Instrument counts [vary with time, energy, deflection and anode angles]".

* Column 1 Labels from PHI_COARSE: [ 213.750, 236.750, 258.750, 281.250, 303.750, 326.250, 348.750, 11.2500, 33.7500, 56.2500, 78.7500, 101.250, 123.750, 146.250, 168.750, 191.250].
* Column 2 Labels from DINDEX: [ 0, 1, 2, 3].
* Column 3 Labels from ENERGY_COARSE: [ 23244.8, 20114.5, 17405.7, 15061.7, 13033.4, 11278.2, 9759.41, 8445.14, 7307.85, 6323.72, 5472.12, 4735.21, 4097.53, 3545.72, 3068.23, 2655.04, 2297.49, 1988.09, 1720.36, 1488.69, 1288.21, 1114.73, 964.611, 834.709, 722.301, 625.031, 540.859, 468.023, 404.996, 350.456, 303.261, 262.422, 227.082, 196.501, 170.039, 147.140, 127.325, 110.179, 95.3412, 82.5019, 71.3916, 61.7774, 53.4580, 46.2590, 40.0294, 34.6387, 29.9740, 25.9375].</Description>
      <Cadence>PT8S</Cadence>
      <RenderingHints>
        <AxisLabel>counts</AxisLabel>
        <ValueFormat>F18.7</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <ParticleQuantity>Counts</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Calibrated Differential Energy Flux [vary with time, energy, deflection index and anode angle] at 1st deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes</ParameterKey>
      <Description>Calibrated Differential Energy Flux [vary with time, energy, deflection index and anode angle] at 1st deflection index".

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 1st deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Movie [flux vs. energy and anode angle] at 1st deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_mv</ParameterKey>
      <Description>Movie [flux vs. energy and anode angle] at 1st deflection index.

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 1st deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 1st deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_spec1</ParameterKey>
      <Description>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 1st deflection index".

* Column 1 Labels from PHI_COARSE: ["Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def"].
* Column 2 Labels from DINDEX: [ 0, 1, 2, 3].
* Column 3 Labels from ENERGY_COARSE: [ 23244.8, 20114.5, 17405.7, 15061.7, 13033.4, 11278.2, 9759.41, 8445.14, 7307.85, 6323.72, 5472.12, 4735.21, 4097.53, 3545.72, 3068.23, 2655.04, 2297.49, 1988.09, 1720.36, 1488.69, 1288.21, 1114.73, 964.611, 834.709, 722.301, 625.031, 540.859, 468.023, 404.996, 350.456, 303.261, 262.422, 227.082, 196.501, 170.039, 147.140, 127.325, 110.179, 95.3412, 82.5019, 71.3916, 61.7774, 53.4580, 46.2590, 40.0294, 34.6387, 29.9740, 25.9375].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>Energy @ 1st deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Calibrated Differential Energy Flux [vary with time, energy, deflection and anode angles] at 2nd deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_2</ParameterKey>
      <Description>Calibrated Differential Energy Flux [vary with time, energy, deflection and anode angles] at 2nd deflection index".

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 2nd deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Movie [flux vs. energy and anode angle] at 2nd deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_2mv</ParameterKey>
      <Description>Movie [flux vs. energy and anode angle] at 2nd deflection index.

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 2nd deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 2nd deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_spec2</ParameterKey>
      <Description>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 2nd deflection index".

* Column 1 Labels from PHI_COARSE: ["Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def"].
* Column 2 Labels from DINDEX: [ 0, 1, 2, 3].
* Column 3 Labels from ENERGY_COARSE: [ 23244.8, 20114.5, 17405.7, 15061.7, 13033.4, 11278.2, 9759.41, 8445.14, 7307.85, 6323.72, 5472.12, 4735.21, 4097.53, 3545.72, 3068.23, 2655.04, 2297.49, 1988.09, 1720.36, 1488.69, 1288.21, 1114.73, 964.611, 834.709, 722.301, 625.031, 540.859, 468.023, 404.996, 350.456, 303.261, 262.422, 227.082, 196.501, 170.039, 147.140, 127.325, 110.179, 95.3412, 82.5019, 71.3916, 61.7774, 53.4580, 46.2590, 40.0294, 34.6387, 29.9740, 25.9375].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>Energy @ 2nd deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Calibrated Differential Energy Flux [vary with time, energy, deflection and anode angles] at 3rd deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_3</ParameterKey>
      <Description>Calibrated Differential Energy Flux [vary with time, energy, deflection and anode angles] at 3rd deflection index".

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 3rd deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Movie [flux vs. energy and anode angle] at 3rd deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_3mv</ParameterKey>
      <Description>Movie [flux vs. energy and anode angle] at 3rd deflection index.

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 3rd deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 3rd deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_spec3</ParameterKey>
      <Description>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 3rd deflection index".

* Column 1 Labels from PHI_COARSE: ["Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def"].
* Column 2 Labels from DINDEX: [ 0, 1, 2, 3].
* Column 3 Labels from ENERGY_COARSE: [ 23244.8, 20114.5, 17405.7, 15061.7, 13033.4, 11278.2, 9759.41, 8445.14, 7307.85, 6323.72, 5472.12, 4735.21, 4097.53, 3545.72, 3068.23, 2655.04, 2297.49, 1988.09, 1720.36, 1488.69, 1288.21, 1114.73, 964.611, 834.709, 722.301, 625.031, 540.859, 468.023, 404.996, 350.456, 303.261, 262.422, 227.082, 196.501, 170.039, 147.140, 127.325, 110.179, 95.3412, 82.5019, 71.3916, 61.7774, 53.4580, 46.2590, 40.0294, 34.6387, 29.9740, 25.9375].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>Energy @ 3rd deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Calibrated Differential Energy Flux [vary with time, energy, deflection and anode angles] at 4th deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_4</ParameterKey>
      <Description>Calibrated Differential Energy Flux [vary with time, energy, deflection and anode angles] at 4th deflection index".

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 4th deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Movie [flux vs. energy and anode angle] at 4th deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_4mv</ParameterKey>
      <Description>Movie [flux vs. energy and anode angle] at 4th deflection index.

* Column 1 Labels from PHI_COARSE: ["A1","A2","A3","A4","A5","A6","A7","A8","A9","A10","A11","A12","A13","A14","A15","A16"].
* Column 2 Labels from DINDEX: ["D0","D1","D2","D3"].
 * Column 3 Labels from ENERGY_COARSE: ["E1","E2","E3","E4","E5","E6","E7","E8","E9","E1","E11","E12","E13","E14","E15","E16","E17","E18","E19","E20","E21","E22","E23","E24","E25","E26","E27","E28","E29","E30","E31","E32","E33","E34","E35","E36","E37","E38","E39","E40","E41","E42","E43","E44","E45","E46","E47","E48"].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Differential energy flux: 4th deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 4th deflection index</Name>
      <Set>Time series defined by using: epoch</Set>
      <ParameterKey>diff_en_fluxes_spec4</ParameterKey>
      <Description>Spectrogram at selected anode angle bins 1,4,7,10,13,16 at 4th deflection index".

* Column 1 Labels from PHI_COARSE: ["Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def","Def"].
* Column 2 Labels from DINDEX: [ 0, 1, 2, 3].
* Column 3 Labels from ENERGY_COARSE: [ 23244.8, 20114.5, 17405.7, 15061.7, 13033.4, 11278.2, 9759.41, 8445.14, 7307.85, 6323.72, 5472.12, 4735.21, 4097.53, 3545.72, 3068.23, 2655.04, 2297.49, 1988.09, 1720.36, 1488.69, 1288.21, 1114.73, 964.611, 834.709, 722.301, 625.031, 540.859, 468.023, 404.996, 350.456, 303.261, 262.422, 227.082, 196.501, 170.039, 147.140, 127.325, 110.179, 95.3412, 82.5019, 71.3916, 61.7774, 53.4580, 46.2590, 40.0294, 34.6387, 29.9740, 25.9375].</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ALTERNATE_VIEW with the following input parameters: diff_en_fluxes.</Caveats>
      <Cadence>PT8S</Cadence>
      <Units>eV/[eV cm^2 sr s]</Units>
      <UnitsConversion>1.0e4&gt;J/(m^2 s sr J)</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>Energy @ 4th deflection index</AxisLabel>
        <ValueFormat>F20.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16 4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>EnergyFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Full Analyzer Geometric Factor</Name>
      <ParameterKey>geom_factor</ParameterKey>
      <Description>Full Analyzer Geometric Factor</Description>
      <Units>cm^2 sr eV/eV</Units>
      <UnitsConversion>1.0e-4&gt;m^2 sr J/J</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>geom_factor</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>0.01</ScaleMax>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <ValidMin>0.0</ValidMin>
      <ValidMax>1.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>GeometricFactor</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Coarse DeltaE/E</Name>
      <ParameterKey>de_over_e_coarse</ParameterKey>
      <Description>Coarse DeltaE/E</Description>
      <Units>eV/eV</Units>
      <UnitsConversion>1.0&gt;J/J</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>de_over_e_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>0.2</ScaleMax>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <ValidMin>0.0</ValidMin>
      <ValidMax>1.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Integration Time</Name>
      <ParameterKey>accum_time_coarse</ParameterKey>
      <Description>Coarse Integration Time</Description>
      <Units>s</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>accum_time_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>0.1</ScaleMax>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <ValidMin>0.0</ValidMin>
      <ValidMax>1.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Energy Table</Name>
      <ParameterKey>energy_coarse</ParameterKey>
      <Description>Coarse Energy Table</Description>
      <Units>eV</Units>
      <UnitsConversion>1.602176565e-19&gt;J</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>energy_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>30000.0</ScaleMax>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>48</Size>
      </Structure>
      <ValidMin>25.0</ValidMin>
      <ValidMax>25000.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Array</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Coarse Deflection Angle (Theta) Table for Attenuator Open</Name>
      <ParameterKey>theta_coarse</ParameterKey>
      <Description>Coarse Deflection Angle (Theta) Table for Attenuator Open</Description>
      <Units>°</Units>
      <UnitsConversion>0.0174532925&gt;rad</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>theta_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>WebService</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Deflection Angle (Theta) Table for Attenuator Closed</Name>
      <ParameterKey>theta_atten_coarse</ParameterKey>
      <Description>Coarse Deflection Angle (Theta) Table for Attenuator Closed</Description>
      <Units>°</Units>
      <UnitsConversion>0.0174532925&gt;rad</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>theta_atten_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>WebService</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Relative Sensitivity Table for Attenuator Open</Name>
      <ParameterKey>g_theta_coarse</ParameterKey>
      <Description>Coarse Relative Sensitivity Table for Attenuator Open</Description>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>g_theta_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Relative Sensitivity Table for Attenuator Closed</Name>
      <ParameterKey>g_theta_atten_coarse</ParameterKey>
      <Description>Coarse Relative Sensitivity Table for Attenuator Closed</Description>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>g_theta_atten_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>4 48</Size>
      </Structure>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Anode Angle (Phi) Table</Name>
      <ParameterKey>phi_coarse</ParameterKey>
      <Description>Coarse Anode Angle (Phi) Table</Description>
      <Units>°</Units>
      <UnitsConversion>0.0174532925&gt;rad</UnitsConversion>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>phi_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>360.0</ScaleMax>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>16</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>360.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>WebService</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Relative Sensitivity Table for Attenuator Open</Name>
      <ParameterKey>g_phi_coarse</ParameterKey>
      <Description>Coarse Relative Sensitivity Table for Attenuator Open</Description>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>g_phi_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>1.0</ScaleMax>
      </RenderingHints>
      <Structure>
        <Size>16</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>1.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Coarse Relative Sensitivity Table for Attenuator Closed</Name>
      <ParameterKey>g_phi_atten_coarse</ParameterKey>
      <Description>Coarse Relative Sensitivity Table for Attenuator Closed</Description>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>g_phi_atten_coarse</AxisLabel>
        <ValueFormat>F15.7</ValueFormat>
        <ScaleMin>0.0</ScaleMin>
        <ScaleMax>1.0</ScaleMax>
      </RenderingHints>
      <Structure>
        <Size>16</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>1.0</ValidMax>
      <FillValue>-1.0e+31</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Deflection Index for CDF compatibility</Name>
      <ParameterKey>dindex</ParameterKey>
      <Description>Deflection Index for CDF compatibility</Description>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>dindex</AxisLabel>
        <ValueFormat>I7</ValueFormat>
        <ScaleMin>0</ScaleMin>
        <ScaleMax>3</ScaleMax>
      </RenderingHints>
      <Structure>
        <Size>4</Size>
      </Structure>
      <ValidMin>0</ValidMin>
      <ValidMax>3</ValidMax>
      <FillValue>255</FillValue>
      <Support>
        <Qualifier>Array</Qualifier>
        <SupportQuantity>InstrumentMode</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Number of Coarse Distributions in File</Name>
      <ParameterKey>num_dists</ParameterKey>
      <Description>Number of Coarse Distributions in File</Description>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
        <AxisLabel>num_dists</AxisLabel>
        <ValueFormat>I7</ValueFormat>
        <ScaleMin>0</ScaleMin>
        <ScaleMax>21600</ScaleMax>
      </RenderingHints>
      <ValidMin>0</ValidMin>
      <ValidMax>21600</ValidMax>
      <FillValue>-32768</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
  </NumericalData>
</Spase>