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<div id="fb_share_1" style="float: right; margin-left: 10px;;width: 55px;" name="fb_share"><div id="fb-root"></div><script src="http://connect.facebook.net/en_US/all.js#appId=125029517579627&xfbml=1"></script><fb:like href="http://www.canonrumors.com/2011/07/patents-diffractive-optic-2-0x-1-8x-teleconverters/" send="false" layout="box_count" width="55" show_faces="false" font="arial"></fb:like></div><div class="tweetmeme_button" style="float: right; margin-left: 10px;"><a class="tm_button" rel="&style=normal&b=2" href="http://www.canonrumors.com/2011/07/patents-diffractive-optic-2-0x-1-8x-teleconverters/"></a></div>
<div id="attachment_6719" class="wp-caption aligncenter" style="width: 283px"><img class="size-full wp-image-6719" title="tc2" src="http://www.canonrumors.com/wp-content/uploads/2011/07/tc2.png" alt="" width="273" height="229" /><p class="wp-caption-text">2.0x Teleconverter</p></div>
<div id="attachment_6720" class="wp-caption aligncenter" style="width: 350px"><img class="size-full wp-image-6720" title="tc18" src="http://www.canonrumors.com/wp-content/uploads/2011/07/tc18.png" alt="" width="340" height="304" /><p class="wp-caption-text">1.8x Teleconverter</p></div>
<p><strong>Patent Publication No. 2011-123336</strong></p>
<ul>
<li>2011.6.23 Release Date</li>
<li>2009.12.11 filing date</li>
<li>Related 2011-123334</li>
</ul>
<p><!--more--><strong>Example 1</strong></p>
<ul>
<li>f =- 124.47mm</li>
<li>= 1.95 magnification</li>
</ul>
<p><strong>Example 9</strong></p>
<ul>
<li>f =- 251.89mm</li>
<li>= 1.80 magnification</li>
<li>Rear attachment lens</li>
<li>Master a longer focal length</li>
<li>Smaller than the front converter</li>
<li>Because of the negative refractive power and degrade the curvature</li>
<li>Without a diaphragm</li>
<li>Beam passes through the upper and lower</li>
<li>Can not compensate for the aberrations caused by light passing through the off-axis</li>
<li>Magnification chromatic aberration only expanded</li>
<li>Correcting the axial chromatic aberration in the most object side lens group, to compensate for inadequate performance of the chromatic aberration and curvature of the most image-side lens group</li>
<li>Diffractive optics (DO lens = Diffractive Optics)</li>
<li>For example, the material is UV cured resin, wavelength 530nm design degree</li>
<li>Diffraction efficiency decreases at wavelengths other than orders for the design and will not require light fraction decreased, causing a flare</li>
<li>Transmittance is reduced when used in multiple locations</li>
</ul>
<p><strong>Patent Technology</strong></p>
<ul>
<li>Positive refractive power as a whole, group 4 consists</li>
<li>Applicable to telephoto and telephoto zoom</li>
<li>Share in compensating the chromatic aberration of magnification and lens and the next most image side lens</li>
<li>Multi-layer diffractive optical element</li>
<li>Than 95% diffraction efficiency across the visible light</li>
</ul>
<p>Source [<a href="http://egami.blog.so-net.ne.jp/2011-06-30">EG</a>]</p>
<p><em>thanks Evgenii</em></p>
<p><strong><span style="color: #ff0000;">c</span>r</strong></p>
<p> </p>