Patents: New 50mm, 85mm & 135mm Lenses

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<p><strong>New fast primes</strong>

The often talked about 50 f/1.4 and 135 f/2 have appeared in a new patent this week. We’ve heard that a replacement to the 50 f/1.4 would come first. A new 135 f/2L is a desired lens if they put IS into the upgrade. We’ve also heard a new 85 f/1.2L with reduced weight and approved AF performance was also on the horizon.</p>
<ul>
<li>Patent Publication No. 2013-114133 (Google Translated)
<ul>
<li>Publication date 2013.6.10</li>
<li>Filing date 2011.11.30</li>
</ul>
</li>
</ul>
<table summary="embodiment" frame="box" rules="all">
<thead>
<tr>
<th></th>
<th>Focal length</th>
<th>Fno.</th>
<th>The overall length of the lens</th>
<th>BF</th>
<th>Lens constitution</th>
</tr>
</thead>
<tbody>
<tr>
<td>One</td>
<td>85.00</td>
<td>1.24</td>
<td>122.56</td>
<td>38.35</td>
<td>10 pieces of six groups</td>
</tr>
<tr>
<td>Two</td>
<td>83.30</td>
<td>1.80</td>
<td>116.11</td>
<td>39.11</td>
<td>10 sheets in 7 groups</td>
</tr>
<tr>
<td>Three</td>
<td>132.30</td>
<td>2.06</td>
<td>162.67</td>
<td>43.23</td>
<td>10 sheets in 7 groups</td>
</tr>
<tr>
<td>Four</td>
<td>51.70</td>
<td>1.41</td>
<td>87.84</td>
<td>38.94</td>
<td>7 group nine</td>
</tr>
</tbody>
</table>
<ul>
<li>Factors that chromatic aberration of magnification chromatic aberration or axial chromatic aberration occurs
<ul>
<li>Reducing the total length</li>
<li>Focal length for a long time</li>
</ul>
</li>
<li>Glass material Abbe number 70-90, of 1.4-1.5 refractive index
<ul>
<li>Possible correction of axial chromatic aberration</li>
<li>Must increase a curvature, spherical aberration and curvature of field is generated</li>
</ul>
</li>
<li>Canon patent
<ul>
<li>I use a glass material having an anomalous partial dispersion of the predetermined</li>
<li>Consisting of organic and inorganic compound</li>
</ul>
</li>
</ul>
<p><strong>Source: [<a href="http://translate.google.com/translate?sl=auto&tl=en&u=http://egami.blog.so-net.ne.jp/2013-06-11">EG</a>]</strong></p>
<p><strong><span style="color: #ff0000;">c</span>r</strong></p>
 
Re: Patents: New 50mm, 85mm & 135mm Lenses

Dylan777 said:
Rienzphotoz said:
135 f/2.0 with IS would be awesome ... if they do release it, I hope Canon goes easy on its pricing.

RLPhoto will like this rumor. He might wait for BigValue sale though ;D
Rumor (CR1) has it that the has already tried to pre-order it !!! ;D ;D ;D
 
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Re: Patents: New 50mm, 85mm & 135mm Lenses

Harry Muff said:
I still predict we won't see any MkIII lenses until the big megapixel camera is out.


Nice to know they are coming though.
Only one of the four, the 85 f1.2 is for a MkIII lens, the other three would only be MkII's.

The 135 patent is not IS, indeed only the 50 f1.4 contains enough elements and groups to be IS but it is a stretch.
 
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Re: Patents: New 50mm, 85mm & 135mm Lenses

Yet another patent based on Canon's new DO technology that has yet to be put into production. Thery carefully avoid the word DO, and talk about particle dispersion in a resin. The advantages arte substantial if they can actually make it. It allows for shorter lenses.

There is a mixture which distributed the following inorganic oxide nano particles in the synthetic resin as an optical material with the different characteristic from general ** material. There are TiO2 (Nd=2.758, nud=9.54, thetagF=0.76) etc. When TiO2 fine particles are distributed by a volume ratio suitable in a synthetic resin, the optical material with which it is satisfied of a conditional expression (2) is obtained. If it is the material with which it is satisfied of a conditional expression (2), it will not limit to these.
[0028]
TiO2 is a material used for various uses, and it is used as a charge of vacuum evaporation material which constitutes optical thin films, such as an antireflection film, from an optical field. The TiO2 fine particles as [ a photocatalyst, a white pigment, etc. ] and are used for others as a cosmetic material.
[0029]
Considering the influence of dispersion etc., as for the pitch diameter of the fine particles which resin is made to distribute in each working example, 2 nm - about 50 nm are good, and in order to suppress an aggregation, it may add a dispersing agent etc. As a medium material which distributes fine particles, polymer is good and high mass production nature can be acquired by photopolymerization-molding or thermal polymerization molding using a molding die etc. The dispersion property N of the mixture which distributed nano particles (lambda) is easily calculable with the following formula drawn from the formula of Drude known well.
[0030]
Namely, the refractive index N in the wavelength lambda (lambda)
N(lambda) = [1+V{Npar(lambda) 2-1}+ {Npoly(lambda) 2-1} (1-V)] 1/2
It comes out. Here, lambda is a molar fraction of the whole fine particle product [ as opposed to / as opposed to / as opposed to / in any wavelength and Npar / the refractive index of fine particles / in Npoly / the refractive index of polymer / polymer volume in V ]. Thus, the organic composite which distributed fine particles in resin or resin is an optical material which fills a conditional expression (2).
[0031]
The above-mentioned organic composite is used as a material which uses optical inorganic materials, such as glass, as a material which fills the above-mentioned conditional expression (1) with each working example, and fills a conditional expression (2). Thus, when it is a positive lens contained in the 1st lens group L1 in each working example and abnormal portion dispersibility of material is set to deltathetagF,
0.0100<deltathetagF
At least one of at least two positive lenses to satisfy is the material consisting of an organic composite. At least one consists of inorganic materials.
 
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