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<article article-type="research-article">
  <front>
    <journal-meta>
      <journal-id journal-id-type="aggregator">72010410</journal-id>
      <journal-title>NIP &amp; Digital Fabrication Conference</journal-title>
      <abbrev-journal-title>nip digi fabric conf</abbrev-journal-title>
      <issn pub-type="ppub">2169-4451</issn><issn pub-type="epub"/>
      <publisher>
        <publisher-name>Society of Imaging Science and Technology</publisher-name>
        <publisher-loc>7003 Kilworth Lane, Springfield, VA 22151, USA</publisher-loc>
      </publisher>
    </journal-meta>
    <article-meta><article-id pub-id-type="doi">10.2352/ISSN.2169-4451.1998.14.1.art00019_1</article-id>
      <article-id pub-id-type="sici">2169-4451(19980101)1998:1L.80;1-</article-id>
      <article-id pub-id-type="publisher-id">nip_v1998n1/splitsection19.xml</article-id>
      <article-id pub-id-type="other">/ist/nipdf/1998/00001998/00000001/art00019</article-id>
      <article-categories>
        <subj-group>
          <subject>Articles</subject>
        </subj-group>
      </article-categories>
      <title-group>
        <article-title>The Effect of Various Sputtering Parameters on Ta Phase Formation Using an I-Optimal Experimental Design</article-title>
      </title-group>
      <contrib-group>
        <contrib>
          <name>
            <surname>Whitman</surname>
            <given-names>Charles S.</given-names>
          </name>
        </contrib>
      </contrib-group>
      <pub-date>
        <day>01</day>
        <month>01</month>
        <year>1998</year>
      </pub-date>
      <volume>1998</volume>
      <issue>1</issue>
      <fpage>80</fpage>
      <lpage>84</lpage>
      <permissions>
        <copyright-year>1998</copyright-year>
      </permissions>
      <abstract>
        <p>Five process factors are varied to find conditions necessary for &#x3B1; and &#x3B2; phase formation in tantalum thin films deposited on SiC. These are: sputtering time, input power, pre-sputter etch time, preheat time at 250 C and sputtering temperature. An empirical model is developed
 which predicts the maximum or minimum amount of &#x3B2; phase possible over a large range of film thickness (&#x223C;25 to &#x223C;2,000 nm). The maximum predicted (average) % &#x3B2; phase at the maximum sputtering temperature is only 8%, with 95% confidence bounds of [5%, 12%]. The other factors
 place a much lower restriction on &#x3B2; phase formation. Pure &#x3B1; phase is easily produced over a wide range of operating conditions. Only a weak relationship is found between film thickness and phase composition. The Ta film resistivity increases with the amount of b phase, in agreement
 with the literature.</p>
      </abstract>
    </article-meta>
  </front>
</article>
