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When comparing the specs between the cameras on today's hottest cell phones

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one starts running into an awful lot of Photography specific terminology being

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thrown around and the term that seems to have been all the rage lately is Optical

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image stabilization or oi if you happen to be into the whole brevity thing now

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many phones offered today such as the iPhone 6 Plus are touting ois as the

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next great thing in cell phone camera technology and well it's not exactly new

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and this form of stabilization has been readily available in ordinary cameras

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for some years now but it's not all marketing fluff and unnecessary Fanfare

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either because what makes it special is not how new the idea is but how small

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and efficient these systems have become now in the past the only image

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stabilization readily offered on cell phone cameras was that of the digital

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variety which worked all right for minimizing that annoying bobbing effect

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NVIDIA footage but did squat in the way of reducing Shake shiness or motion

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blur that is caused by camera movement and this is where Optical image

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stabilizers come in they help to produce higher quality images by reacting to

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stimulus in real time ensuring that the path between the lens and the sensor is

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perfectly aligned before the subject is captured thus allowing you the user or

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an end software to more easily Focus the image so to accomplish this

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manufacturers utilize highly sensitive gyroscopic sensors in any range of two

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to many which provide data as to the angle and movement of the camera and

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some even exist specifically to provide extra functionality such as improved

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vertical stability while taking panoramic shots these directional

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sensors work in combination with tiny electromagnets that affect the angle of

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either the lens or the image sensor depending on the type of ois employed so

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the first type we'll be looking at lens-based applications are found in

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high-end cameras and worked by affecting the axis of the lens in response to

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movement keeping the image tracked on the sensor as squarely as possible the

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main advantage to this style is that the image seen by the user is as stable and

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clear as possible but it fails in applications where no distance can be

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created between the lens and the sensor so you're pretty much hooped if you want

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to jam this kind of tech into a cell phone which brings us to the second type

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sensor-based or inbody stabilizers which by contrast affect the angle of the

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image sensor in response to stimulus and have the added benefit of being able to

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adjust the focal length between it and the lens as well this type of

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stabilization can be compact enough to fit into small things like cell phones

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while also being a much more affordable and practical option as it prevents the

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user from having to haul around a bunch of really heavy not to mention expensive

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camera lenses of course that's not to say that sensor-based options are

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without their disadvantages since the image projected onto the sensor is not

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already stabilized negative qualities such as reduced low light Auto Focus

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performance can be an issue especially in instances where there is noticeable

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leg in the electronic viewfinder or screen image also these types of

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stabilizers are greatly dependent on their movement speed and the size of the

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lens in front of them meaning to improve long distance and Motion Performance at

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some point the lens must get bigger and as many of us know getting bigger to

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improve performance is simply not always an option speaking of improving

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description also check out the like

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