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Comparison Canon 85mm f/1.2L EF II USM vs Canon 50mm f/1.2L EF USM

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Canon 85mm f/1.2L EF II USM
Canon 50mm f/1.2L EF USM
Canon 85mm f/1.2L EF II USMCanon 50mm f/1.2L EF USM
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Main
Amazing drawing. Fairy bokeh. Correct colour reproduction and high microcontrast. Soft transitions in the blur zone. Quality build.
Fairy bokeh. Unique pattern with natural colour reproduction, Dust and water protection. Quality build.
Lens typefixfix
Main functionportraitportrait
DxOMark rating35
System
Canon
Canon
Mount
Canon EF
Canon EF
Specs
Focal length85 mm50 mm
Aperture valuef/1.2f/1.2
Viewing angles
28° 30’, 24°, 16° /diagonally, vertically, horizontally/
46°, 27°, 40° /diagonally, vertically, horizontally/
Min. diaphragm1616
Minimum focus distance0.95 m0.45 m
Maximum zoom0.11
Design
Sensor sizefull frame/APS-Cfull frame/APS-C
Autofocus driveultrasonic drive motorultrasonic drive motor
Design (elements/groups)8 elements in 7 groups8 elements in 6 groups
Number of diaphragm blades88
Filter diameter72 mm72 mm
Dimensions (diameter/length)91.5x84.0 mm85.4x65.5 mm
Weight1025 g545 g
Added to E-Catalognovember 2006november 2006

DxOMark rating

The result shown by the lens in the DxOMark rating.

DxOMark is one of the most popular and authoritative resources for expert testing of photography devices. According to the test results, the lens receives a certain number of points; The more points, the higher the final score.

Viewing angles

This parameter determines the size of the area of the scene being shot that falls into the frame. The wider the viewing angles, the larger the area the lens can capture in one shot. They are directly related to the focal length of the lens (see "Focal length"), and also depend on the size of the specific matrix with which the optics are used: for the same lens, the smaller the matrix, the smaller the viewing angles, and vice versa. On our website, in the characteristics of optics, viewing angles are usually indicated when used with the matrix for which the lens was originally designed (for more details, see "Matrix Size").

Minimum focus distance

Minimum focus distance (m) - the smallest distance from which you can focus on an object and take a photo. Usually it ranges from 20 cm for wide-angle lenses to several metres for telephoto. In the macro mode of the camera or with the help of macro lenses, this distance can be less than 1 centimeter.

Maximum zoom

The degree of magnification of the object being shot when using a lens for macro shooting (that is, shooting small objects at the maximum possible approximation, when the distance to the subject is measured in millimetres). The degree of magnification in this case means the ratio of the size of the image of the object obtained on the matrix of the camera to the actual size of the object being shot. For example, with an object size of 15 mm and a magnification factor of 0.3, the image of this object on the matrix will have a size of 15x0.3=4.5 mm. With the same matrix size, the larger the magnification factor, the larger the image size of the object on the matrix, the more pixels fall on this object, respectively, the clearer the resulting image, the more details it can convey and the better the lens is suitable for macro photography. It is believed that in order to obtain macro shots of relatively acceptable quality, the magnification factor should be at least 0.25 – 0.3.

Design (elements/groups)

The number of elements (in fact, the number of lenses) included in the design of the lens, as well as the number of groups in which these elements are combined. Usually, the more elements provided in the design, the better the lens handles with distortions (aberrations) when light passes through it. On the other hand, numerous lenses increases the dimensions and weight of the optics, reduces light transmission (for more details, see "Aperture") and also puts forward increased requirements for the quality of processing, which affects the cost of the lens.
Canon 85mm f/1.2L EF II USM often compared
Canon 50mm f/1.2L EF USM often compared