Category: Uncategorized

  • Go with the glow: How to effectively use Orton Layers in post processing

    This image was taken in the summer of 2015 on the Skyline Trail near Panorama Point on the slopes of Mt. Rainier, WA.  The image is composed of 8 focus stacked frames and was shot at the following settings: 16mm, f/8, 1/25sec, ISO 400 using a Sony a7R and a Canon 16-35mm f/2.8L II lens.

    Photo: Chris Williams Exploration Photography

    Have you ever wondered how some of the top landscape photographers achieve that dreamy yet sharp look in their photos? It turns out that the answer is really quite simple. The Orton effect, as it has been dubbed in recent years, is achieved by selectively adding a Gaussian Blur layer in Photoshop. When applied correctly the technique can add depth, atmosphere and an almost surreal feeling to your images.  It can also help reverse some of the ‘crunchiness’ that sometimes results from web sharpening and compressing a large scene dynamic range into one, tone-mapped image. 

    The technique itself was developed by photographer Michael Orton in the darkroom some years ago. This ‘Orton’ effect was achieved through the process of sandwiching two slightly over exposed images; one of which was slightly out of focus while the other remained tack sharp. The result of this process yielded a soft glowy image that retained much of its edge detail. 

    Lucky for us this effect is now easily attained and even simplified in the digital age through the use of tools like Photoshop. In the following steps I will outline how to use and refine the technique that has been made popular by landscape photographers like Ryan Dyar over the past few years. 

    Apply the Blur

    The first step to this process is to take care of your focus stacking, exposure blending and touch up work before you apply the blur layer. Once that has been completed, sharpen your image as you would normally and merge the visible layers. Right click on your merged image layer and duplicate it.  

    Now that you have the duplicated layer you can begin the process of applying the Orton effect. Select your duplicated layer (leave it at 100% opacity and normal blending mode) and apply the Gaussian filter to your layer. The radius at which you blur the pixels really depends upon your camera’s resolution and the desired outcome for your finished product. 

    Selecting the Gaussian Blur layer is as simple as browsing through the filter options in Photoshop and selecting the appropriately named layer.

    I typically blur the Raw files from my Sony a7R at a pixel radius of around 37. If you’re using a lower resolution file from something like a Sony a7S or even an APS-C camera I wouldn’t go further than a pixel radius blur of 25. The methodology behind this is that you don’t want to lose all of your edge detail and compromise the contrast in your blur layer, so choosing the correct blur radius is important. It’s a balance, and one that you should really play with to determine what blur radius works best for your needs and file types. Generally speaking, you want to stay within a pixel radius blur range of 15-40.  

    A preview of the effect of your Gaussian blur settings can be seen prior to applying the setting to the layer; adjust the pixel blur radius here to determine what works best for your image.

    Once you have selected the Gaussian blur settings that work best for your image click ‘okay’ to apply the filter to your layer. Leave the opacity of the layer at 100% for now.  

    Bring Back the Contrast and Select the Opacity

    One of the most important steps to this process is to apply a ‘levels’ adjustment to this layer. More often than not, when photographers first start to experiment with this type of technique in post processing, their images are left with haloing and a lack of contrast. Applying a levels adjustment selectively to your Orton layer can make a huge difference in your final result by bringing back the blacks and highlights that the Orton layer tends to bleed out. I normally bring the blacks in to between 10-25 and the highlights to around 245. Applying this step to your layer will ensure that you lose a minimal amount of contrast and will help to blend the layer in areas of harsh transition.   

    Choose the ‘levels’ tool and adjust the blacks and lights to your taste.

    Once you have completed this step it’s now time to adjust the opacity of your Orton layer. I typically aim for between 10-20% opacity. This really depends on your style and what the overall desired look and feel of your image is.  The example below illustrates what can happen if you increase your Orton layer to 35%, which can be a bit on the excessive side depending upon your image.   

    10% Orton Layer 35% Orton Layer

    The Devil is in the Details

    Now that you’ve got this great atmosphere and glow going on in your image, you may ask yourself what happened to the detail? Loss of detail can happen when this layer is applied in your workflow, but there is a very easy solution to remedy this issue; the High-Pass filter. 

    The first step is to duplicate your original background image layer (that has no Orton applied to it), select it, pull it to the top of your workflow and navigate to the filters tab.  Scroll down to find the ‘other’ category and select ‘High Pass’. A high-pass filter brings the detail out in the areas that tend to be most effected by the Gaussian layer: the edges of the elements in your composition. 

    Choosing the high-pass filter follows many of the same steps as locating the Gaussian filter only this time the filter is located in the sub-menu titled ‘other’.

    Once you have done this you will be given an option to select the pixel radius you wish to apply to your layer. I normally try to stay within a pixel radius of 4-5.5 (any larger and the image detail can get grainy). Pick your desired radius and click OK.  

    Once you have selected the high-pass filter you can choose your pixel radius size; I normally choose between 4 and 5.5.

    If you aren’t familiar with this type of application your first thought will probably be: ‘what did I just do to my image?’ as you stare at the grey layer on your screen. Fear not! There’s a very easy solution; you will need to select the layer and choose the ‘Soft Light’ blending mode.  

    Make sure to apply the ‘soft light’ blending mode to your layer to blend the high-pass pixel detail seamlessly into your exposure.

    This mode seamlessly blends the High-Pass pixel detail back into your image. You may want to adjust the opacity of this layer to your tastes after its application, but that’s all there is to it!  If you feel like you’ve got your settings down to a science you may want to even record this as an action. Be aware that every image will be a bit different from a processing stand point, however, so you may want to make subtle changes on a case by case basis.

    Toggle the application of your layers off and on and make changes in opacity, detail and contrast as you see fit.

    The Final Product

    No Orton applied Orton applied

    If you’ve completed all of these steps successfully, you now know how to effectively utilize an Orton layer in your workflow. This type of layer can be added to anything from landscapes, to wildlife, and even to portraits in some cases. The limits are only bound by your creativity. Have fun with it and happy shooting!    

    Articles: Digital Photography Review (dpreview.com)

  • Under the hood: A look inside the Panasonic Lumix DMC-LX100

    A look inside the Panasonic Lumix DMC-LX100

    Panasonic’s LX100 is an ambitious little camera. It steps right over the 1″ sensor compact class with a 16MP Four Thirds sensor (though only 12.7MP is truly available), a 24-75mm equiv. F1.7-2.8 lens and 4K video recording. It all added up to a very favorable score and a gold award when we reviewed the camera. Now, thanks to the folks at iFixit, we can take a look at what’s inside the LX100 without ever picking up a screwdriver. 

    A look inside the Panasonic Lumix DMC-LX100

    Removing the battery is a first and very important step. 

    A look inside the Panasonic Lumix DMC-LX100

    After removing plenty of screws from the body of the camera, removing this metal piece from the hotshoe reveals yet another set of screws.

    A look inside the Panasonic Lumix DMC-LX100

    A spudger is the best tool for this job – with all of the screws out of the way the back of the chassis can be pried away from the camera body.

    A look inside the Panasonic Lumix DMC-LX100

    Here’s a view of the back panel with the cover out of the way. The motherboard lies just below the buttons seen here.

    A look inside the Panasonic Lumix DMC-LX100

    To get to the motherboard, the LCD needs to be removed. Here, the silver metal backing is pried away with a spudger. A ribbon cable also connects the screen to the rest of the device and is carefully removed.

    A look inside the Panasonic Lumix DMC-LX100

    With the LCD gone, the motherboard and its related ribbon cables are visible.

    A look inside the Panasonic Lumix DMC-LX100

    A couple more screws out of the way and the EVF pops right out. In that housing is an XGA 1024×768 panel.

    A look inside the Panasonic Lumix DMC-LX100

    Next goes the motherboard, which is gently pried back and pulled away from the camera.

    A look inside the Panasonic Lumix DMC-LX100

    Next to go is this copper plate. On the other side we’ll find the lens, but only after the next batch of screws is removed. 

    A look inside the Panasonic Lumix DMC-LX100

    No fewer than four different sized screws, from 4mm down to 3.1mm are used here. 

    A look inside the Panasonic Lumix DMC-LX100

    With the last (well, almost last) screws out of the way the lens casing is free…

    A look inside the Panasonic Lumix DMC-LX100

    …and then the lens can be removed as well. 

    A look inside the Panasonic Lumix DMC-LX100

    The top panel is ready to go too…

    A look inside the Panasonic Lumix DMC-LX100

    …and we can see what goes on under the dials and shutter release up there.

    A look inside the Panasonic Lumix DMC-LX100

    And there you have it, the LX100 in all disassembled. 

    Articles: Digital Photography Review (dpreview.com)

  • Week in Review: The flagships are here! The flagships are here!

    Week in Review: The flagships are here!

    It’s been a busy week here as three high profile cameras have come sailing through our doors in (roughly) the past seven days: the Pentax K-1, the Canon EOS-1D X II and the Nikon D500. As a result, lots of studio work and samples made their way onto the site. And in an exciting plot twist, we actually had some decent weather! In early May! In Seattle! Let’s recap, shall we?

    Week in Review: The K-1 impresses early

    We waited a long time for the Pentax K-1 to arrive. And let’s not even start on how long Pentax shooters have been waiting for full-frame digital. Here at last, the K-1 has already impressed us in the studio. And we don’t have to wonder any longer what the camera’s Pixel Shift mode will be like – so far it’s nothing short of spectacular.

    Week in Review: Nikon D500 on the town

    Fate smiled upon Seattle last weekend and bestowed us with summer-like weather, which is by no means guaranteed on any day before July 4th around here. The Nikon D500 had already made its way through our preliminary round of studio tests so plenty of shooting out and about was in order for Nikon’s APS-C flagship, and that’s just what happened. 

    Week in Review: Canon’s revamped sport shooter arrives

    Completing the triple threat is Canon’s update to its full-frame sports shooter, the EOS-1D X II. And with a new 20.2MP sensor, improved 61-point AF system and 14 fps shooting with AF, it is a thing to behold. We’re just getting started and have plenty of fast-action shooting to do with the 1D X II, but for starters we took a look at its performance in our studio tests. In short, we saw a slight dip in high ISO performance compared to its rivals, but the 1D X II shows a marked improvement in dynamic range. Check out the full results for yourself.

    Week in Review: Samyang throws an AF curveball

    It was a quiet week in terms of new gear but Samyang surprised us with its first ever autofocus lenses: a 50mm F1.4 and 14mm F2.8. They’ll debut for Sony FE and no pricing has been made public yet, but we’re optimistic that this means more AF Samyang lenses are in the works.

    Week in Review: Round ’em up

    We rounded up the current crop of 1″ sensor long zoom compacts to help make the tough job of picking a camera a little easier. If you want something pocketable or want to shoot for the moon, you’ll find it in this group.

    Week in Review: Sony on a winning streak

    It’s pretty much a given that every camera maker is selling fewer cameras than they were in the past. Financial reports have tended to follow the same trend of bad news in recent years too, but Sony seems to have found a path through the darkness. In its latest financial year, the company’s imaging division posted some impressive gains in income, even with a decrease in sales.

    Until Elon Musk can find a way to get average schmoes like us into orbit, this neat footage from a GoPro on a rocket might be as close as we get. The HERO4 took a ride on UP Aerospace Inc.’s SL-10 rocket and made a quick roundtrip return back to Earth with a NASA-designed capsule. 

    Articles: Digital Photography Review (dpreview.com)

  • 4K from Space: ISS astronauts shoot 3D movie of planet Earth

    Astronauts based on the International Space Station have been working as movie makers to help create a 3D film featuring the planet Earth as viewed from space. A Beautiful Planet was shot in 4K using Canon’s cinema camera system, and will be shown in IMAX theaters from the end of the month. The film includes dramatic views of the planet lit up at night as well as overhead perspectives on weather systems and the Northern Lights.

    A Beautiful Planet IMAX® Trailer

    Footage for the film was collected by six space station astronauts over the course of three missions from November 2014, after Canon EOS C500 and EOS-1D C cameras were delivered to the ISS via an unmanned supply ship with a collection of lenses. Made in association with NASA, the film aims to educate viewers about Earth, but also to highlight the effects humanity has on the planet.

    For more information on the film and where you can see it visit the IMAX website.

    Press release

    IMAX® Film ‘A Beautiful Planet’ Features “Out Of This World” Canon 4K Imagery

    Using Canon Cameras and Lenses, Teams Shooting from the International Space Station Capture Breathtaking Images of Our Planet from a Vantage Point Few Get to See

    MELVILLE, N.Y., April 14, 2016 – The future of 4K filmmaking is looking up — in fact, all the way to space. A Beautiful Planet, the latest 3D space documentary from acclaimed filmmaker Toni Myers and IMAX Entertainment, made in cooperation with NASA, will premiere in IMAX in New York on April 16 and was shot primarily in space using Canon cameras and lenses.  The film will be shown to the public exclusively in IMAX® and IMAX® 3D theaters beginning April 29.

    The Canon EOS C500 4K Digital Cinema Camera and EOS-1D C 4K cameras were transported from Earth to the International Space Station (ISS) in November 2014 via an unmanned supply ship, and were received by NASA astronaut Terry Virts, astronaut Samantha Cristoforetti from the European Space Agency and Cosmonaut Anton Shkaplerov. This was the first time that 4K cameras were brought aboard the space station for a commercial film project. During a six-month mission at the ISS, Virts, Cristoforetti and Shkaplerov worked closely with NASA astronauts Kjell Lindgren, Butch Wilmore, Scott Kelly, and Kimiya Yui of the Japan Aerospace Exploration Agency (JAXA) to take turns using Canon’s advanced digital cameras and lenses to film footage of lightning storms, the continents, volcanoes, coral reefs and bright city lights on Earth for the film. One of the film’s greatest and most dramatic highlights, the striking imagery of the Northern Lights–or the aurora borealis– was captured by NASA astronaut Kjell Lindgren. These awe-inspiring images were previously unattainable in such stunning resolution.

    The Canon EOS C500 4K (4096 x 2160-pixel) Digital Cinema Camera is capable of originating uncompressed RAW output for external recording to meet the demands of premium cinematic productions and other top-quality production markets. It features a Super 35mm, 8.85-megapixel CMOS image sensor, DIGIC DV III Image Processor and an expansive range of recording and output options specifically for 4K and 2K image acquisition. The compact, lightweight Canon EOS-1D C Digital SLR camera delivers outstanding video performance and provides video recording at 4K (4096 x 2160-pixel) or Full HD (1920 x 1080-pixel) resolution to support high-end motion picture, television production and other advanced imaging applications.

    ‘A Beautiful Planet’ joins Canon at NAB
    A gallery of still images taken on the ISS with the Canon EOS-1D C camera and Canon lenses during the shooting of the film will be shown at the Canon booth # C4325 at the National Association of Broadcasters (NAB) trade show, April 18-21, 2016 in Las Vegas, NV. During NAB, the film’s Director of Photography, James Neihouse, ASC, will speak at Canon’s stage on the challenges and benefits of shooting in space. Joining him will be Marsha Ivins, a consultant on the film, former NASA astronaut, and a veteran of five space shuttle missions. Neihouse has worked on more than 30 IMAX films including Space Station 3D and Hubble 3D and trained more than 25 shuttle and space-station crews on the intricacies of large-format filmmaking.

    The documentary, A Beautiful Planet was produced, written, and directed by Toni Myers, and is narrated by Academy Award®-winning actress Jennifer Lawrence.

    About A Beautiful Planet
    A Beautiful Planet is a breathtaking portrait of Earth from space, providing a unique perspective and increased understanding of our planet and galaxy as never seen before. Made in cooperation with the National Aeronautics and Space Administration (NASA), the film features stunning footage of our magnificent blue planet — and the effects humanity has had on it over time — captured by the astronauts aboard the International Space Station (ISS). From space, Earth blazes at night with the electric intensity of human expansion — a direct visualization of our changing world. But it is within our power to protect the planet. As we continue to explore and gain knowledge of our galaxy, we also develop a deeper connection to the place we all call home. From IMAX Entertainment and Toni Myers — the acclaimed filmmaker behind celebrated IMAX® documentaries Hubble 3D, and Space Station 3D — A Beautiful Planet presents an awe-inspiring glimpse of Earth and a hopeful look into the future of humanity.

    Articles: Digital Photography Review (dpreview.com)

  • TIME names Kodak and Polaroid cameras two of the ‘most influential gadgets’ in history

    TIME Magazine has published its list of ‘the 50 most influential gadgets of all time,’ and included among them is the Kodak Brownie Camera (#8) and the Polaroid Camera (#27). According to the publication, the list is ordered by each gadget’s influence on subsequent technologies and devices, such as the Brownie camera that helped bring photography ‘into everyday use.’

    The Kodak Brownie Camera, launched in February 1900, was priced at $ 1 and used inexpensive film, making it possible for anyone to capture snapshots of daily life. The low price and subsequent ease by which anyone could get into photography boosted film sales for Kodak, but that was only a small part of the Brownie’s role in our history and its influence on our future. Says TIME, the Brownie camera ‘helped capture countless moments and shape civilization’s relationship to images.’

    Arriving later on (and further down the list) is Polaroid and its OneStep Land instant camera launched in 1977. This model holds the distinction of having been the first affordable and easy to use camera of its kind, says TIME, going on to become so popular that the influence of its ‘square-framed, often off-color snaps’ lives on today in apps like Instagram.

    Are the Brownie and Polaroid cameras deserving of their spots on the list? Let us know what you think in the comments.

    Via: TIME Magazine

    Articles: Digital Photography Review (dpreview.com)

  • Two in one: LG G5 camera review

    DPReview smartphone reviews are written with the needs of photographers in mind. We focus on camera features, performance, and image quality.

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    The LG G5 succeeds last year’s G4 and is the first LG smartphone with a dual-camera setup. With an F1.8 aperture and optical image stabilization, the main 16MP module is very similar to the G4 in terms of specification and provides a 78-degree angle of view which is in line with most current high-end smartphone cameras.

    But here’s where things get interesting: the second lens comes with an F2.4 aperture and 8MP sensor and captures a 135-degree super wide-angle image. In the camera app you can switch between lenses via a button, and when using the digital zoom the camera switches seamlessly between the two modules. As before, the autofocus is assisted by a laser that measures the subject distance.  

    There is also an optional camera grip that should make the G5 particularly appealing to mobile photographers. The G5’s 2,800mAh battery is removable and slots into the device from the bottom. The latter clips away when a release button is pressed which allows you to attach a number of replaceable modules, one of which is the CAM Plus camera grip. It comes with an additional 1,200mAh of battery capacity and offers power, shutter, video and zoom buttons. It also lets you lock exposure and provides a more comfortable grip. We’ve put the G5 and the CAM Plus grip through its paces. Read our full review to find out how they performed.

    Key Photographic / Video Specifications

    • 16MP main camera
    • F1.8 aperture
    • Optical image stabilization
    • 8MP secondary super wide angle camera with F2.4 aperture
    • 8MP, F2.0 front camera
    • 4K video
    • 120 fps 720p slow motion video
    • Optional camera grip with shutter button and control dial

    Other Specifications

    • 5.3-inch 1440p display
    • Snapdragon 820 chipset
    • 4GB RAM
    • 32GB internal storage
    • microSD support
    • 2,800 mAh battery

    Our 9-page review

    We’ve considered every aspect of the LG G5 with the photographer in mind. We examined the user interface of the native camera app and its special features. We experimented with the camera’s performance when taking stills and video, and had a play with the device’s many special feature modes. Click any of the links below for more information of specific functions and continue to our conclusion for a final summary of our findings.

    • Page 2: Design and Hardware
    • Page 3: Camera Operation
    • Page 4: Camera Features
    • Page 5: Camera Features cont.
    • Page 6: Image Quality and Performance
    • Page 7: Image Quality Wide Angle
    • Page 8: Video Mode
    • Page 9: Conclusion and gallery

    Articles: Digital Photography Review (dpreview.com)

  • No alias: Pentax K-1 Pixel Shift shows impressive early results

    It’s been a long wait for the arrival of our Pentax K-1, but it finally is here. We wasted no time taking Ricoh’s new flagship DSLR to our studio to see how the long-awaited full frame 36MP sensor stacks up to the competition. Huge thanks to LensRentals for renting us the lens for these tests.

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    Pixel Shift

    It’s worth calling out in particular one of the major highlights of the K-1: its Pixel Shift Resolution mode that debuted in the APS-C format K-3 II last spring. We’re only showing you this mode at ISO 100 for the time being, but we’ll be updating our widget with higher ISOs once ACR support is updated.

    The K-1’s Pixel Shift Resolution mode takes four consecutive shots and moves the sensor by a single pixel each time. This means that each of the original pixel positions gets sampled by a red, a blue and two green pixels. This has a few major benefits. First, it removes the need to demosaic: you don’t have to interpolate data from the surrounding area to build up color information, which leads to less color aliasing. It also brings a modest increase in resolution because you’re sampling luminance (green) information at every pixel position and not effectively blurring it by borrowing it from surrounding pixels. The increased resolution can easily be seen by looking at the color resolution targets, or looking at the text in the center of the studio scene, which shows no aliasing and can be read down to the very last line.

    Another benefit to Pixel Shift is better noise performance: because you’re taking four shots, the camera essentially captures four times as much light, which decreases relative shot noise contributions. The decreased noise levels lead to better high ISO performance, and increased dynamic range.

    There’s yet another benefit to Pixel Shift: the camera locks up the mechanical shutter and mirror, and uses a fully electronic shutter instead. This removes any risk of vibrations that might be caused by the mechanical shutter. For example, there’s a very tiny amount of blur in single shot mode at 1/40 sec, although it’s near-imperceptible without a direct comparison to a sharper, Pixel Shift image.

    Articles: Digital Photography Review (dpreview.com)

  • Ready for takeoff: GoPro records rocket trip into space

    While you’re waiting for Space X to get you into orbit, there’s an easier way to enjoy an otherworldly view. A GoPro HERO 4 camera was used to record a UP Aerospace Inc. SL-10 rocket’s travel into space, showing the flight at speeds of up to Mach 5.5 from Earth to an altitude of 120,700m / 396,000ft and back again. The video was recorded on November 6, 2015 during a mission to deploy the Maraia Capsule designed by NASA, and was recently showcased by GoPro on its YouTube channel.

    This isn’t the first time GoPro’s action cameras have been used to record space missions. In April 2015, for example, NASA published a pair of videos showing astronauts on a spacewalk, both of which were recorded using the small action cameras. A GoPro was also used to record Felix Baumartner’s ‘Red Bull Stratos,’ a space jump that took place 24 miles above Earth. 

    Articles: Digital Photography Review (dpreview.com)

  • Padcaster VERSE is a mobile media case for iOS and Android devices

    A few days ago we wrote about the Helium Core Kickstarter project which aims to turn your iPhone into a full-blown imaging rig with a large number of accessory ports and mounting options. The Padcaster VERSE is the subject of another Kickstarter project and presents a very similar concept. However, it differs from the Helium in some fundamental ways. The original Padcaster was designed a couple of years ago for the iPad Mini but thanks to a universal bracket that is compatible with any phone or tablet up to 5.31 inches, the VERSE is much more (you guessed it) versatile. It works with both Apple iOS and Android devices.

    While the Helium Core is made from aluminum the Padcaster VERSE is polycarbonate plastic. It comes with twelve ¼-inch threads and five cold shoe mounts, allowing you to mount it to any type of camera support and attach an abundance of accessories such as lights, microphones or teleprompters. Like the Helium Core the Padcaster Verse is targeted at filmmakers, video bloggers, mobile journalists, photographers and other such creatives. Its adjustable mount makes it look like an ideal solution for those who use more than one device or want to be prepared for eventual upgrades. You can secure yourself an early-bird Padcaster VERSE by pledging $ 50 on the project’s Kickstarter page where you’ll also find additional information.

    Articles: Digital Photography Review (dpreview.com)

  • Sony patents contact lens camera with blink-triggered shutter

    Sony has patented a contact lens that comes with an integrated miniature camera module and all its components, such as image sensor, lens, processor, storage and even a wireless module to transfer images to a smartphone or other connected device. The camera is triggered by a “conscious” eyelid aperture and closure. A sensor measures the pressure of your eyelid, and other settings such as aperture and zoom can be controlled via eyelid movement as well. A display unit allows you to view captured images directly on the lens. The patent document says the following about the camera module:

    “The image pickup unit includes, for example, a lens system including the image pickup lens, an aperture stop, a zoom lens, a focus lens, and the like, a drive system that causes the lens system to perform focusing operation and zooming operation.”

    There is even a digital image stabilization system to counteract image blur caused by motion of the eyeball. Google and Samsung have filed for similar patents before but with its range of controls the Sony variant is, at least on paper, the most advanced so far. It’s impossible to know if a product like this will ever hit the market but if it does, it’s certain to raise even more privacy concerns than Google Glass at the time. You can read the full document here. 

    Via: Sony Alpha Rumors | Via: PetaPixel

    Articles: Digital Photography Review (dpreview.com)