Sony Xperia 1 II

Sony Xperia 1 II: Here is what pro photographer Nick Didlick thinks about the handset

As we all know, Japanese technology giant Sony has always put a lot of effort into the camera department of its smartphone product line. Well, today we have another proof of that on Sony's YouTube channel.

Sony Xperia 1 II: Here's what pro photographer Nick Didlick thinks about the handset.

The company has just released a new video that talks about photography. In particular, they asked the opinion of a well-known professional photographer, Nick Didlick. According to the news site GSMArena Didlick has 40 years of experience in photojournalism and sports photography. So he definitely knows what he's talking about.

In both cases, Nick was asked what he thought of the latest Sony Xperia 1 II. The photographer apparently had only good words for the handset and explained all the different functions it contains and how well they work. He also mentions that many of these features come from Sony's Alpha camera series. That said, we can expect some very interesting results from them.

Among his favorites we find the option to take 20 frames per second. Basically, the Sony Xperia 1 II supports continuous shooting at 20 frames per second with auto focus and automatic exposure. In addition, we have a continuous auto focus and an exposure of up to 60 times per second.

Another feature that Nick Didlick liked is real-time eye AF – for humans and animals. This function allows the camera to focus on the closer eye of the subject. Professional cameras can do that.

In summary, according to the famous photojournalist, the Sony Xperia 1 II seems to be a great camera phone. We would like to remind you quickly that the handset has a total of four sensors on the back. These include a 12-megapixel 1 / 1.7-inch Exmor RS image sensor with a 1: 1.7 aperture, a secondary ultra-wide-angle lens with 12 megapixel resolution and 1: 2.2 aperture, and a third telephoto lens -Camera (70 mm equivalent) with 12 megapixel resolution. and finally a 3D iToF sensor for capturing depth data.

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