SKU: EN-P10048
A visualization helps explain how color gamut's changed. What you're getting with Ultra HD Premium is a huge hit of color. We're talking a 64x increase in the shades you'll be able to view. In phones using the Snapdragon 835 chip, you'd get 16.7 million shades of color. 845 will let you capture video with over 1 billion shades. Technically called color depth or deep color, this absolute leap forward occurs by increasing the number of bits of data you get for each primary color -- roughly red, yellow and blue. Qualcomm used to use 8 bits, but the Ultra HD Premium standard uses 10.
In addition to color depth, you're also getting 97 percent more color gamut, which means your phone camera can capture new colors it couldn't before, These are minute variances that make the jump from real life to screen possible, As my colleague Geoffrey Morrison put it in his explainer: "The e ink iphone case reds of a fire truck, the deep violet of an eggplant, even the green of many street signs, You may have never noticed before that these weren't exactly how they looked in real life, but you sure will now."Qualcomm's Snapdragon 835 chip (the one in the Galaxy S8, LG V30 and OnePlus 5T) could already support Ultra HD Premium playback, which means you could watch HDR content that other people made on Netflix, Amazon and YouTube HDR, With 845, you'll be able to make these videos yourself, without even thinking about it, and view radically improved video on your HDR TV..
The technical term is luminance, which refers to the amount of brightness and darkness your video recording can record. Also included in the standard for Ultra HD Premium, more luminance means that your already more colorful video also comes out much brighter than before, which is all part of transforming the video capture experience. How much? Up to 10,000 nits of brightness. Lest you think that increasing brightness will drain the battery faster, Qualcomm claims that the 30 percent more battery efficiency in the Snapdragon 845 chip will mitigate any battery tax here.
Imagine a picture of a girl watching her goldfish, The girl is still as a portrait, The goldfish swims, This is what Qualcomm calls ImMotion, a form of computational processing that takes a portion of the photo as video while the rest remains motionless, It's not quite a live photo because in that approach, the entire picture moves for three seconds, In this scenario, only a single portion of the photo gains e ink iphone case life, Cameras on phones using Snapdragon 845 will be able to act a lot more like Apple's new iPhone X with Face ID unlocking, and that's due to a process called active depth-sensing..
Snapdragon 845 contains its own version of Apple's face-mapping. In the iPhone X, Face ID works by spraying your mug with 30,000 points of invisible infrared light. That's the "active" part; the camera is going out and collecting data about the world around it. Qualcomm's 845 chip uses up to 50,000 points of infrared light now to create a point map. But using it to unlock your phone isn't the only benefit of a depth-sensing camera. Put it in the rear camera and you've now got a way to track your hands in VR, which means you wouldn't have to use expensive, bulky controllers. Or for AR, imagine interacting with the world around you using your hands. Maybe instead of tossing a ball at a Pokemon creature sitting on top of a fire hydrant, you reach out and use your camera-tracked hands to grab it up.
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