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  <NumericalData>
    <ResourceID>spase://NASA/NumericalData/Wind/EPACT/STEP/DifferentialFlux/Ion/PT1H</ResourceID>
    <NamingAuthority>NASA</NamingAuthority>
    <ResourceType>NumericalData</ResourceType>
    <ResourceHeader>
      <ResourceName>Wind Energetic Particle Acceleration Composition Transport (EPACT) SupraThermal Energetic Particle Telescope (STEP) Differential Ion Fluxes, 1 h Data</ResourceName>
      <DOI>https://doi.org/10.48322/6654-mc20</DOI>
      <ReleaseDate>2025-12-04T13:32:50Z</ReleaseDate>
      <RevisionHistory>
        <RevisionEvent>
          <ReleaseDate>2021-05-31T12:34:56.789</ReleaseDate>
          <Note>Updated to SPASE Version 2.3.2 if needed, Applied quality control for DOI usage, LFB</Note>
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      <Description>The EPACT Instrument on Wind STEP - SupraThermal Energetic Particle Telescope measures Ion Fluxes of Protons (H) in 0.12.5 MeV Energy Range and He-Fe Nuclei in the ~0.032 MeV/nucleon Energy Ranges in two identical Telescopes, each with a Geometrical Factor of 0.4 cm^2 sr and a Rectangular Field</Description>
      <Acknowledgement>Mihir Desai</Acknowledgement>
      <PublicationInfo>
        <Authors>Mihir, Desai; Mukherjee, Joey; &amp; Filwett, Rachael J.</Authors>
        <PublicationDate>2021-01-01T00:00:00</PublicationDate>
        <PublishedBy>Space Physics Data Facility</PublishedBy>
      </PublicationInfo>
      <Contact>
        <PersonID>spase://SMWG/Person/Mihir.Desai</PersonID>
        <Role>PrincipalInvestigator</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Robert.E.McGuire</PersonID>
        <Role>MetadataContact</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Lee.Frost.Bargatze</PersonID>
        <Role>MetadataContact</Role>
      </Contact>
      <InformationURL>
        <Name>Wind Project Web Site - Comprehensive Solar Wind Laboratory for Long-Term Solar Wind Observations</Name>
        <URL>https://wind.nasa.gov/</URL>
        <Description>Wind Project Web Site</Description>
      </InformationURL>
      <PriorID>spase://VSPO/NumericalData/Wind/EPACT/STEP/DifferentialFlux/Ion/PT1H</PriorID>
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      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
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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 NASA Heliophysics data products</Note>
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      </RightsList>
      <AccessURL>
        <Name>FTPS from SPDF (not with most browsers)</Name>
        <URL>ftps://spdf.gsfc.nasa.gov/pub/data/wind/epact/step/differential-ion-flux-1hr/</URL>
        <Description>Access to Data in CDF Format via ftp from SPDF</Description>
      </AccessURL>
      <AccessURL>
        <Name>HTTPS from SPDF</Name>
        <URL>https://spdf.gsfc.nasa.gov/pub/data/wind/epact/step/differential-ion-flux-1hr/</URL>
        <Description>Access to Data in CDF Format via http from SPDF</Description>
      </AccessURL>
      <AccessURL>
        <Name>CDAWeb</Name>
        <URL>https://cdaweb.gsfc.nasa.gov/index.html/</URL>
        <ProductKey>WI_EPACT_STEP-DIFFERENTIAL-ION-FLUX-1HR</ProductKey>
        <Description>Access to ASCII, CDF, and Plots via NASA/GSFC CDAWeb</Description>
      </AccessURL>
      <Format>CDF</Format>
      <Encoding>None</Encoding>
      <Acknowledgement>Mihir Desai. 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>
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      <AccessURL>
        <Name>CDAWeb HAPI Server</Name>
        <URL>https://cdaweb.gsfc.nasa.gov/hapi</URL>
        <Style>HAPI</Style>
        <ProductKey>WI_EPACT_STEP-DIFFERENTIAL-ION-FLUX-1HR</ProductKey>
        <Description>Web Service to this product using the HAPI interface.</Description>
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      <Format>CSV</Format>
      <Acknowledgement>Mihir Desai. Please acknowledge the Data Providers and CDAWeb when using these Data.</Acknowledgement>
    </AccessInformation>
    <ProcessingLevel>Calibrated</ProcessingLevel>
    <InstrumentID>spase://SMWG/Instrument/Wind/EPACT</InstrumentID>
    <MeasurementType>EnergeticParticles</MeasurementType>
    <MeasurementType>Ephemeris</MeasurementType>
    <MeasurementType>MagneticField</MeasurementType>
    <MeasurementType>ThermalPlasma</MeasurementType>
    <TemporalDescription>
      <TimeSpan>
        <StartDate>1994-11-21T00:00:00.000</StartDate>
        <StopDate>2017-01-01T23:59:59.999</StopDate>
      </TimeSpan>
      <Cadence>PT1H</Cadence>
    </TemporalDescription>
    <ObservedRegion>Heliosphere</ObservedRegion>
    <ObservedRegion>Heliosphere.Inner</ObservedRegion>
    <ObservedRegion>Heliosphere.NearEarth</ObservedRegion>
    <Parameter>
      <Name>Epoch Time</Name>
      <ParameterKey>Epoch</ParameterKey>
      <Description>Epoch Time, Beginning of Interval</Description>
      <Caveats>Average Type: standard This parameter exhibits an increasing monotonic progression.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>ms</Units>
      <UnitsConversion>1.0e-3&gt;s</UnitsConversion>
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        <AxisLabel>Epoch</AxisLabel>
        <ValueFormat>E14.8</ValueFormat>
        <ScaleMin>6.2951018619904e+13</ScaleMin>
        <ScaleMax>6.3745034619904e+13</ScaleMax>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <ValidMin>03-Nov-1994 00:00:00.000</ValidMin>
      <ValidMax>01-Jan-2020 00:00:00.000</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>H Energy, Minimum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_energy_min</ParameterKey>
      <Description>Hydrogen Energy, Minimum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_min</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy, Center</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_energy_center</ParameterKey>
      <Description>Hydrogen Energy, Center Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy, Maximum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_energy_max</ParameterKey>
      <Description>Hydrogen Energy, Maximum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_max</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy Efficiency, Low</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_energy_efficiency_low</ParameterKey>
      <Description>Hydrogen Efficiency, Low Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_efficiency_low</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy Efficiency, High</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_energy_efficiency_high</ParameterKey>
      <Description>Hydrogen Efficiency, High Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_efficiency_high</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy Efficiency, Average</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_energy_efficiency_avg</ParameterKey>
      <Description>Hydrogen Energy Efficiency, Average Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_efficiency_avg</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Average</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy, Center, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_ENERGY_CENTER_T1</ParameterKey>
      <Description>Hydrogen Energy, Center, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: H_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>10</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
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            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 8</Name>
          <Index>8</Index>
          <RenderingHints>
            <AxisLabel>8</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 9</Name>
          <Index>9</Index>
          <RenderingHints>
            <AxisLabel>9</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 10</Name>
          <Index>10</Index>
          <RenderingHints>
            <AxisLabel>10</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Energy, Center, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_ENERGY_CENTER_T2</ParameterKey>
      <Description>Hydrogen Energy, Center, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: H_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV</Units>
      <UnitsConversion>1.602176565e-13&gt;J</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
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      <Structure>
        <Size>10</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
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        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 8</Name>
          <Index>8</Index>
          <RenderingHints>
            <AxisLabel>8</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 9</Name>
          <Index>9</Index>
          <RenderingHints>
            <AxisLabel>9</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 10</Name>
          <Index>10</Index>
          <RenderingHints>
            <AxisLabel>10</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Flux</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_flux</ParameterKey>
      <Description>Hydrogen Flux Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Flux Uncertainty, Sigma</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_flux_sigma</ParameterKey>
      <Description>Hydrogen Flux Uncertainty, Sigma Column 1 Labels: [1, 2, 3, 4, 5, 6, 7, 8, 9, 10] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>H_flux_sigma</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>10 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Differential</Qualifier>
        <Qualifier>Uncertainty</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Flux, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_FLUX_T1</ParameterKey>
      <Description>Hydrogen Flux, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: H_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>H_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>10</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Flux, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_FLUX_T2</ParameterKey>
      <Description>Hydrogen Flux, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: H_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>H_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>10</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>H Index</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>H_index</ParameterKey>
      <Description>Hydrogen Index</Description>
      <Cadence>PT1H</Cadence>
      <RenderingHints>
        <ValueFormat>I2</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>10</Size>
      </Structure>
      <ValidMin>1</ValidMin>
      <ValidMax>10</ValidMax>
      <FillValue>-9</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>He Energy, Minimum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_energy_min</ParameterKey>
      <Description>Helium Energy, Minimum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_min</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy, Center</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_energy_center</ParameterKey>
      <Description>Helium Energy, Center</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy, Maximum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_energy_max</ParameterKey>
      <Description>Helium Energy, Maximum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_max</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy Efficiency, Low</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_energy_efficiency_low</ParameterKey>
      <Description>Helium Efficiency, Low Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_efficiency_low</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy Efficiency, High</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_energy_efficiency_high</ParameterKey>
      <Description>Helium Efficiency, High Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_efficiency_high</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy Efficiency, Average</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_energy_efficiency_avg</ParameterKey>
      <Description>Helium Energy Efficiency, Average Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_efficiency_avg</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Average</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy, Center, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>HE_ENERGY_CENTER_T1</ParameterKey>
      <Description>Helium Energy, Center, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: He_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Energy, Center, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>HE_ENERGY_CENTER_T2</ParameterKey>
      <Description>Helium Energy, Center, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: He_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Flux</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_flux</ParameterKey>
      <Description>Helium Flux Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Flux Uncertainty, Sigma</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_flux_sigma</ParameterKey>
      <Description>Helium Flux Uncertainty, Sigma Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>He_flux_sigma</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Differential</Qualifier>
        <Qualifier>Uncertainty</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Flux, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>HE_FLUX_T1</ParameterKey>
      <Description>Helium Flux, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: He_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>He_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Flux, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>HE_FLUX_T2</ParameterKey>
      <Description>Helium Flux, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: He_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>He_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>AlphaParticle</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
        <AtomicNumber>2</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>He Index</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>He_index</ParameterKey>
      <Description>Helium Index</Description>
      <Cadence>PT1H</Cadence>
      <RenderingHints>
        <ValueFormat>I2</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>1</ValidMin>
      <ValidMax>7</ValidMax>
      <FillValue>-9</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>CNO Energy, Minimum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_energy_min</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Energy, Minimum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_min</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy, Center</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_energy_center</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Energy, Center Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy, Maximum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_energy_max</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Energy, Maximum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_max</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy Efficiency, Low</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_energy_efficiency_low</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Efficiency, Low Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_efficiency_low</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy Efficiency, High</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_energy_efficiency_high</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Efficiency, High Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_efficiency_high</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy Efficiency, Average</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_energy_efficiency_avg</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Energy Efficiency, Average Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_efficiency_avg</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Average</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy, Center, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_ENERGY_CENTER_T1</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Energy, Center, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: CNO_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Energy, Center, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_ENERGY_CENTER_T2</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Energy, Center, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: CNO_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Flux</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_flux</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Flux Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Flux Uncertainty, Sigma</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_flux_sigma</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Flux Uncertainty, Sigma Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>CNO_flux_sigma</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <Qualifier>Uncertainty</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Flux, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_FLUX_T1</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Flux, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: CNO_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>CNO_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Flux, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_FLUX_T2</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Flux, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: CNO_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>CNO_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>CNO Index</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>CNO_index</ParameterKey>
      <Description>Carbon, Nitrogen, Oxygen Index</Description>
      <Cadence>PT1H</Cadence>
      <RenderingHints>
        <ValueFormat>I2</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>1</ValidMin>
      <ValidMax>7</ValidMax>
      <FillValue>-9</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>NeS Energy, Minimum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_energy_min</ParameterKey>
      <Description>Neon, Sulfur Energy, Minimum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_min</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy, Center</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_energy_center</ParameterKey>
      <Description>Neon, Sulfur Energy, Center Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy, Maximum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_energy_max</ParameterKey>
      <Description>Neon, Sulfur Energy, Maximum Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_max</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy Efficiency, Low</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_energy_efficiency_low</ParameterKey>
      <Description>Neon, Sulfur Efficiency, Low Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_efficiency_low</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy Efficiency, High</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_energy_efficiency_high</ParameterKey>
      <Description>Neon, Sulfur Efficiency, High Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_efficiency_high</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy Efficiency, Average</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_energy_efficiency_avg</ParameterKey>
      <Description>Neon, Sulfur Energy Efficiency, Average Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_efficiency_avg</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Average</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy, Center, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NES_ENERGY_CENTER_T1</ParameterKey>
      <Description>Neon, Sulfur Energy, Center, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: NeS_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Energy, Center, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NES_ENERGY_CENTER_T2</ParameterKey>
      <Description>Neon, Sulfur Energy, Center, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: NeS_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 7</Name>
          <Index>7</Index>
          <RenderingHints>
            <AxisLabel>7</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Flux</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_flux</ParameterKey>
      <Description>Neon, Sulfur Flux Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Flux Uncertainty, Sigma</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_flux_sigma</ParameterKey>
      <Description>Neon, Sulfur Flux Uncertainty, Sigma Column 1 Labels: [1, 2, 3, 4, 5, 6, 7] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>NeS_flux_sigma</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <Qualifier>Uncertainty</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Flux, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NES_FLUX_T1</ParameterKey>
      <Description>Neon, Sulfur Flux, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: NeS_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>NeS_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Flux, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NES_FLUX_T2</ParameterKey>
      <Description>Neon, Sulfur Flux, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: NeS_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>NeS_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>NeS Index</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>NeS_index</ParameterKey>
      <Description>Neon, Sulfur Index</Description>
      <Cadence>PT1H</Cadence>
      <RenderingHints>
        <ValueFormat>I2</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>7</Size>
      </Structure>
      <ValidMin>1</ValidMin>
      <ValidMax>7</ValidMax>
      <FillValue>-9</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Fe Energy, Minimum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_energy_min</ParameterKey>
      <Description>Iron Energy, Minimum Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_min</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy, Center</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_energy_center</ParameterKey>
      <Description>Iron Energy, Center Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy, Maximum</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_energy_max</ParameterKey>
      <Description>Iron Energy, Maximum Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_max</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy Efficiency, Low</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_energy_efficiency_low</ParameterKey>
      <Description>Iron Efficiency, Low Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_efficiency_low</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Minimum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy Efficiency, High</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_energy_efficiency_high</ParameterKey>
      <Description>Iron Efficiency, High Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_efficiency_high</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Maximum</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy Efficiency, Average</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_energy_efficiency_avg</ParameterKey>
      <Description>Iron Energy Efficiency, Average Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_efficiency_avg</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Average</Qualifier>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy, Center, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>FE_ENERGY_CENTER_T1</ParameterKey>
      <Description>Iron Energy, Center, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: Fe_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Energy, Center, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>FE_ENERGY_CENTER_T2</ParameterKey>
      <Description>Iron Energy, Center, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: Fe_energy_center.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>MeV/n</Units>
      <UnitsConversion>1.602176565e-13&gt;J/n</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_energy_center</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 3</Name>
          <Index>3</Index>
          <RenderingHints>
            <AxisLabel>3</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 4</Name>
          <Index>4</Index>
          <RenderingHints>
            <AxisLabel>4</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 5</Name>
          <Index>5</Index>
          <RenderingHints>
            <AxisLabel>5</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 6</Name>
          <Index>6</Index>
          <RenderingHints>
            <AxisLabel>6</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <ParticleQuantity>Energy</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Flux</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_flux</ParameterKey>
      <Description>Iron Flux Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Flux Uncertainty, Sigma</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_flux_sigma</ParameterKey>
      <Description>Iron Flux Uncertainty, Sigma Column 1 Labels: [1, 2, 3, 4, 5, 6] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Fe_flux_sigma</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <Qualifier>Uncertainty</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Flux, Telescope 1</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>FE_FLUX_T1</ParameterKey>
      <Description>Iron Flux, Telescope 1</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: Fe_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>Fe_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Flux, Telescope 2</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>FE_FLUX_T2</ParameterKey>
      <Description>Iron Flux, Telescope 2</Description>
      <Caveats>This parameter is virtual. It is calculated by calling the function ARR_SLICE with the following input parameters: Fe_flux.</Caveats>
      <Cadence>PT1H</Cadence>
      <Units>(cm^2 s sr MeV/n)^-1</Units>
      <UnitsConversion>6.24161e-19&gt;(m^2 s sr J/n)^-1</UnitsConversion>
      <RenderingHints>
        <DisplayType>Spectrogram</DisplayType>
        <AxisLabel>Fe_flux</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>6</Size>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>100000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Differential</Qualifier>
        <ParticleQuantity>NumberFlux</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Fe Index</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Fe_index</ParameterKey>
      <Description>Iron Index</Description>
      <Cadence>PT1H</Cadence>
      <RenderingHints>
        <ValueFormat>I2</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>6</Size>
      </Structure>
      <ValidMin>1</ValidMin>
      <ValidMax>6</ValidMax>
      <FillValue>-9</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Telescope Index</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>TELESCOPE_index</ParameterKey>
      <Description>Telescope Index</Description>
      <Cadence>PT1H</Cadence>
      <RenderingHints>
        <ValueFormat>I2</ValueFormat>
        <ScaleType>LinearScale</ScaleType>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
      </Structure>
      <ValidMin>1</ValidMin>
      <ValidMax>2</ValidMax>
      <FillValue>-9</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Magnetic Field, Magnitude</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>B</ParameterKey>
      <Description>Magnetic Field, Magnitude</Description>
      <Cadence>PT1H</Cadence>
      <Units>nT</Units>
      <UnitsConversion>1.0e-9&gt;T</UnitsConversion>
      <RenderingHints>
        <AxisLabel>B</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>-1000.0</ValidMin>
      <ValidMax>1000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Field>
        <Qualifier>Magnitude</Qualifier>
        <FieldQuantity>Magnetic</FieldQuantity>
      </Field>
    </Parameter>
    <Parameter>
      <Name>Magnetic Field, Theta Angle</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Btheta</ParameterKey>
      <Description>Magnetic Field, Theta Angle</Description>
      <Cadence>PT1H</Cadence>
      <Units>°</Units>
      <UnitsConversion>0.0174532925&gt;rad</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Btheta</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>-90.0</ValidMin>
      <ValidMax>90.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Field>
        <Qualifier>DirectionAngle.PolarAngle</Qualifier>
        <FieldQuantity>Magnetic</FieldQuantity>
      </Field>
    </Parameter>
    <Parameter>
      <Name>Magnetic Field, Phi Angle</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Bphi</ParameterKey>
      <Description>Magnetic Field, Phi Angle</Description>
      <Cadence>PT1H</Cadence>
      <Units>°</Units>
      <UnitsConversion>0.0174532925&gt;rad</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Bphi</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>360.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Field>
        <Qualifier>DirectionAngle.AzimuthAngle</Qualifier>
        <FieldQuantity>Magnetic</FieldQuantity>
      </Field>
    </Parameter>
    <Parameter>
      <Name>Magnetic Field, RMS</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Brms</ParameterKey>
      <Description>Magnetic Field, Root Mean Square (RMS)</Description>
      <Cadence>PT1H</Cadence>
      <Units>nT</Units>
      <UnitsConversion>1.0e-9&gt;T</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Brms</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>1000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Field>
        <Qualifier>Variance</Qualifier>
        <FieldQuantity>Magnetic</FieldQuantity>
      </Field>
    </Parameter>
    <Parameter>
      <Name>Spacecraft Radial Distance</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>R</ParameterKey>
      <Description>Spacecraft Radial Distance</Description>
      <Cadence>PT1H</Cadence>
      <Units>Re</Units>
      <UnitsConversion>6.3712e6&gt;m</UnitsConversion>
      <RenderingHints>
        <AxisLabel>R</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>300.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Support>
        <Qualifier>Magnitude</Qualifier>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Spacecraft Position, Geocentric Solar Ecliptic, GSE, Cartesian Coordinates</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>xyzGSE</ParameterKey>
      <Description>Spacecraft Position, Geocentric Solar Ecliptic, GSE, Cartesian Coordinates Column 1 Labels: [x (GSE),y (GSE),z (GSE)]</Description>
      <Cadence>PT1H</Cadence>
      <Units>Re</Units>
      <UnitsConversion>6.3712e6&gt;m</UnitsConversion>
      <CoordinateSystem>
        <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
        <CoordinateSystemName>GSE</CoordinateSystemName>
      </CoordinateSystem>
      <RenderingHints>
        <AxisLabel>xyz gse</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>3 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Support>
        <Qualifier>Vector</Qualifier>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Solar Wind Velocity</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Vsw</ParameterKey>
      <Description>Solar Wind Velocity, Vsw</Description>
      <Cadence>PT1H</Cadence>
      <Units>km/s</Units>
      <UnitsConversion>1.0e3&gt;m/s</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Vsw</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>-3000.0</ValidMin>
      <ValidMax>3000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Magnitude</Qualifier>
        <ParticleQuantity>Velocity</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Spacecraft Velocity, Geocentric Solar Ecliptic, GSE, Cartesian Coordinates</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>velocity</ParameterKey>
      <Description>Spacecraft Velocity, Geocentric Solar Ecliptic, GSE, Cartesian Coordinates Column 1 Labels: [Vx,Vy,Vz] Column 2 Labels: [1, 2]</Description>
      <Cadence>PT1H</Cadence>
      <Units>km/s</Units>
      <UnitsConversion>1.0e3&gt;m/s</UnitsConversion>
      <CoordinateSystem>
        <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
        <CoordinateSystemName>GSE</CoordinateSystemName>
      </CoordinateSystem>
      <RenderingHints>
        <AxisLabel>velocity</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>3 2</Size>
      </Structure>
      <FillValue>-9.99e+32</FillValue>
      <Support>
        <Qualifier>Vector</Qualifier>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Proton Number Density</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Np</ParameterKey>
      <Description>Proton Number Density</Description>
      <Cadence>PT1H</Cadence>
      <Units>cm^-3</Units>
      <UnitsConversion>1.0e6&gt;m^-3</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Np</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>10000.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Proton</ParticleType>
        <Qualifier>Scalar</Qualifier>
        <ParticleQuantity>NumberDensity</ParticleQuantity>
        <AtomicNumber>1</AtomicNumber>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Solar Wind Thermal Velocity</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>Vth</ParameterKey>
      <Description>Solar Wind Thermal Velocity, Vth</Description>
      <Cadence>PT1H</Cadence>
      <Units>km/s</Units>
      <UnitsConversion>1.0e3&gt;m/s</UnitsConversion>
      <RenderingHints>
        <AxisLabel>Vth</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>500.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Particle>
        <ParticleType>Ion</ParticleType>
        <Qualifier>Magnitude</Qualifier>
        <ParticleQuantity>ThermalSpeed</ParticleQuantity>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Spin Rate</Name>
      <Set>Time series defined by using: EPOCH</Set>
      <ParameterKey>spin_rate</ParameterKey>
      <Description>Wind Spacecraft Spin Rate</Description>
      <Cadence>PT1H</Cadence>
      <Units>°/s</Units>
      <UnitsConversion>0.0174532925&gt;rad/s</UnitsConversion>
      <RenderingHints>
        <AxisLabel>spin_rate</AxisLabel>
        <ValueFormat>E12.5</ValueFormat>
      </RenderingHints>
      <Structure>
        <Size>2</Size>
        <Element>
          <Name>Element 1</Name>
          <Index>1</Index>
          <RenderingHints>
            <AxisLabel>1</AxisLabel>
          </RenderingHints>
        </Element>
        <Element>
          <Name>Element 2</Name>
          <Index>2</Index>
          <RenderingHints>
            <AxisLabel>2</AxisLabel>
          </RenderingHints>
        </Element>
      </Structure>
      <ValidMin>0.0</ValidMin>
      <ValidMax>360.0</ValidMax>
      <FillValue>-9.99e+32</FillValue>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
  </NumericalData>
</Spase>
