Category: Uncategorized

  • Google demos technology that scrubs objects from photographs

    During its I/O 2017 conference yesterday, Google demonstrated a new algorithm-based technology that can remove unwanted objects from existing photographs. The demonstration showed the technology removing a chainlink fence from the foreground of an image, with the final result offering no discernible indications that the fence had ever existed (around 10:45 in the video below).

    The technology was demonstrated on stage by Google’s CEO Sundar Pichai during a conversation about the company’s expanding visual technology. ‘Coming very soon,’ Pichai explained, ‘if you take a picture of your daughter at a baseball game and there’s something obstructing it, we can do the hard work and remove that structure and have the picture of what matters to you in front of you.’

    It looks to be an evolution of the research Google and MIT have been collaborating on for some time – in fact, their demonstration from 2015 includes a very similar chain-link fence demo. This method takes advantage of the parallax effect to identify and remove obstructions from photos. 

    Unfortunately, Pichai didn’t elaborate on when this technology will be made available aside from ‘very soon,’ nor did he specify where the technology will be available. Given the company’s Google Photos announcements, however, it seems likely the technology will be implemented within that product.

    Via: Google

    Articles: Digital Photography Review (dpreview.com)

  • A Taste of New York is a stunning Big Apple time-lapse

    A Taste of New York is the third installment of the popular “A Taste of…” series of time-lapses by Film Spektakel. To produce this breathtaking video the team around Peter Jablonowski, Thomas Pöcksteiner, and Lorenz Pritz spent 10 days in New York in 2016, shooting 65,000 photos and accumulating 2.6TB of image data on their hard drives.

    ‘In September 2016 we visited this awesome city to try out some new time-lapse stuff.
    It took us 10 days, a lot of burgers and one helicopter ride to produce this video. 10 days is very little time to discover this city of endless opportunities, so we hardly slept anything and shot day and night for this time lapse film. The city that never sleeps indeed!’

    The team used a variety of equipment including a Sony a7R II, Sony a6300 and two Canon 6Ds. The final three minute long video took 36 hours to render on a high-end Apple iMac. The stunning imagery is perfectly complemented by Alex Clement’s sound design. 

    Articles: Digital Photography Review (dpreview.com)

  • Canon warns of defective focusing in some EF 24-105mm F4L IS II lenses

    Canon has issued a service notice for a collection of lenses with specific serial numbers that need to be checked for faulty focusing systems. The lens affected is the EF 24-105mm F4L IS II USM standard zoom, but users are advised that only particular production batches have the problem.

    Canon says that some units with serial numbers beginning with 48, 49, 50 or 51 suffer from poor focusing when used with an AF point close to the edges of the host camera’s focusing array. The fault is only apparent when the lens is used at wide-angle focal lengths.

    All defective lenses will be taken back for testing and repair at no cost to the owner, the company says. The Canon website carries a service section that allows owners of the lens to type in the serial number of their lens to check whether it will need to be returned.
    For more information see the Canon USA, Europe or Asia service pages, or those for your local area.

    Manufacturer’s information

    Service Notice: EF 24-105mm f/4L IS II USM Lens

    Thank you for using Canon products.

    We have determined that some EF 24-105mm f/4L IS II USM lenses exhibit an AF operation-related malfunction. The details of the phenomenon and Canon’s service policy are described below.

    We would like to offer our sincere apologies to users who have been inconvenienced by this issue. Going forward, we will spare no effort in our quality management to make sure our customers can use our products with confidence.

    Phenomenon
    At the wide-angle end, focus is not achieved properly when a peripheral AF points are selected, regardless of the AF area selection mode.

    Affected Lenses
    If the first two digits in the serial number (see the image below) of your lens are ”48”, ”49”, ”50” or ”51”, then your lens MAY POSSIBLY be affected.

    How to check if your lens is affected:
    1. Click the search button below to display the serial number input screen.
    2. Input your lens’ serial number (10 digits) and then click the [Submit] button.
    * Please double check the serial number you entered before you click the [Submit] button.
    3. One of the following three messages will be displayed.
    “Your lens is NOT an affected product”?
    “Your lens is an affected product”
    “Invalid number”

    Support
    As soon as preparations have been completed, we will inform users about the start date for accepting support requests for lenses affected by this issue.

    Potentially affected products will be inspected and repaired free of charge. If you own one of the potentially affected products please contact our Customer Support Center

    Articles: Digital Photography Review (dpreview.com)

  • Throwback Thursday: Olympus C-8080 Wide Zoom

    Announced in 2004, the Olympus C-8080 Wide Zoom wasn’t the first camera with a focal range starting at 28mm, nor was it the highest resolution camera at the time with its 8 megapixel CCD. What made the C-8080 interesting was the amount of work that Olympus put into the lens, claiming that it was designed to be on par with the Zuiko Digital lenses found on its DSLRs.

    The lens had an equivalent focal length of 28-140mm and an impressive maximum aperture range of F2.4-3.5. It used three ED glass elements to reduce chromatic aberration, something not normally found on a compact camera. In DPReview’s testing, seeing CA in the real world was a rarity. The lens was threaded and supported both telephoto and wide conversion lenses. One bummer about the lens was that the zoom was electronically controlled, rather than mechanically, a feature found on the Minolta DiMAGE A2 and Sony DSC-F828 at the time.

    Those are who are familiar with the Olympus E-10 will definitely notice some similarities with the control layout and LCD/viewfinder placement.

    The C-8080WZ wasn’t the smallest camera out there, but there’s a lot of glass plus an EVF and tilting LCD that you’ll see in a moment. It was made of magnesium alloy that Phil Askey said was ‘heavier grade than we’re used to seeing.’ Phil also complimented the well-designed front and rear grips.

    Something worth pointing out is that the camera had an external phase detection sensor (to the left of the Olympus logo). Phil’s review praised the fast AF speeds of the camera, though he was less keen about how quickly the lens zoomed and that there were only five ‘stops’ along the way.

    The C-8080’s 1.8″ LCD could be pulled away from the body and tilted up or down. The resolution of 134k wasn’t great, but hey, it was 2004 (the user interface from back then is worth a look, as well). There’s also a pretty big electronic viewfinder, which had 240k dots. 

    The camera had two memory card slots: one for CompactFlash and the other for – you guessed it – xD Picture Cards. Sadly, despite all of the semi-pro features on the C-8080WZ, it only had one control dial.

    So what about photo quality? The C-8080WZ tied for the best resolution among a group of five 8MP cameras, with low noise at high ISOs. The lens had very little barrel distortion but some unexpected pincushion distortion, though Phil noted that it was unlikely that you’d notice this in the real world.

    In the end, the C-8080 Wide Zoom earned a coveted ‘highly recommended’ award, due in large part to its lens. The main negatives were the aforementioned zoom speed and number of stops issues as well as camera lockup while Raw images are saved and an aging menu system. 

    Do you have fond memories of the C-8080 Wide Zoom? Share them in the comments below. And let us know if you have suggestions for future Throwback Thursday articles!

    Olympus C-8080WZ Sample Gallery

    $ (document).ready(function() { SampleGalleryStripV2({“galleryId”:”7875368385″}) })

    Sample photoSample photoSample photoSample photoSample photo

    Articles: Digital Photography Review (dpreview.com)

  • Sony a9: all that speed appears to have dynamic range cost

    The Sony a9 is a powerhouse of technology, particularly when it comes to speed and autofocus. But does its image quality stack up? We’ve taken an initial look at Raw and JPEG image quality and have come away impressed, but how does the a9 stack up in terms of dynamic range?

    At the recent launch in New York City, I had a chance to shoot our standard ISO-invariance test but on a real-world scene (our studio scene isn’t so portable…). Have a look at the performance below.

    $ (document).ready(function() { ImageComparisonWidget({“containerId”:”reviewImageComparisonWidget-19343974″,”widgetId”:522,”initialStateId”:null}) })

    It’s immediately obvious the a9 is not ISO-invariant (what is ‘ISO-invariance’?). This means the camera is adding a fair amount of read noise that results in noisy shadows, limiting dynamic range at base ISO. That’s why, for the same focal plane exposure, performing analog amplification by increasing ISO in-camera gets you a cleaner image than performing that amplification (or brightening) in post-processing.

    It’s not the typical performance we’ve come to expect from Sony sensors and we suspect the higher readout speed is leading to greater noise. In other words, it appears this sensor was likely optimized for speed at the expense of low ISO dynamic range.

    This sensor was likely optimized for speed at the expense of dynamic range

    Ultimately, this limits the exposure latitude of a9 Raws so, much like with older Canon DSLRs, you’ll have limited ability to expose high contrast scenes for the highlights, then tonemap* (raise) shadows in post. You can check the effect of changing the Drive mode in the widget (EFCS = electronic first curtain, S = single, C = continuous), but there’s not much difference between them.

    Effect of Drive mode

    There is little to no difference in base ISO dynamic range in different drive modes. So the good news is that the drop to 12-bit in continuous drive comes at no cost. The bad news is that the 14-bit Raws aren’t any better than the 12-bit ones. Click here to load the above as a widget.

    As we mentioned above, there’s no difference in shadow noise as you change Drive mode. This is particularly interesting because all Single drive modes, including fully electronic, support full 14-bit Raw (we shot uncompressed). The Continuous drive modes, however, switch the sensor into a 12-bit** readout mode which, by definition, means files with no more than 12 stops of dynamic range.

    This indicates that even the 14-bit Raws have at most 12 EV of dynamic range at the pixel level, placing our estimates of base ISO dynamic range almost a full stop behind the a7, and likely further behind the a7R II at equivalent viewing size (normalized).

    ‘Dual Gain’ helps improve high ISO dynamic range

    In our widget up top, you may have noticed that noise suddenly starts increasing once you fall below ISO 640 (how’s that for sounding completely back-to-front?). Below you’ll see this more clearly: shadow noise dramatically clears up as you go from an ISO 500 image (with a 3.7 EV push) to an ISO 640 image (with 3.3 EV push):

    $ (document).ready(function() { ImageComparisonWidget({“containerId”:”reviewImageComparisonWidget-12344692″,”widgetId”:521,”initialStateId”:null}) })

    Things clean up at ISO 640 (as with the a7R II) because of the sensor’s ‘dual gain’ architecture, where the camera increases the conversion gain (effectively amplification) at the pixel-level during readout, helping overcome the camera’s relatively high (for a Sony design) read noise.

    Above ISO 640, the camera is fairly ISO-invariant, since it’s overcome most of its downstream read noise, but there’s still some benefit to increasing ISO to keep noise levels low if your scene demands it. Below ISO 640, the lower conversion gain means that you’ll start to see read noise if you push shadows.

    Take home

    The good news is that those worried about the camera dropping to 12-bit readout in continuous shooting needn’t worry: there’s no decrease in quality, since a 12 bit file can contain all its dynamic range. The bad news is that this is because the a9 doesn’t appear to have more than 12 EV pixel-level dynamic range to begin with, putting its base ISO dynamic range well behind that of the a7R II. By high ISO, general image quality catches up as the higher downstream read noise is overcome by the sensor’s (similar to the a7R II) dual gain architecture. Take a look at this ISO 51,200 comparison with the a7R II:

    ISO 51,200 comparison of a7R II vs a9. Not much difference at all. In fact, normalized signal:noise ratio (SNR) measurements place the two neck-to-neck: 1.82 vs. 1.48 for the a7R II and a9 at the dark patches here, respectively. At ISO 25,600, the normalized SNR is exactly the same.

    This means that if you’re shooting in conditions demanding high ISO, for any given focal plane exposure you may wish to at least increase in-camera amplification to ISO 640 to get most tones above the noise floor, if your scene demands the extra amplification to get a usable image. Dropping below ISO 640 to preserve highlights, and then raising shadows afterwards, will come at a greater noise cost than, say, Sony’s own a7R II.

    Interestingly, this means there’s little advantage to those large (47MB) uncompressed 14-bit Raw files, save for the lack of compression artifacts. In a perfect world, Sony would have offered a 12-bit Raw mode with a lossless compression curve (without that second stage of localized compression that leads to edge artifacts) for smaller file sizes with minimal loss in quality.


    Footnotes:

    * There’s a very specific reason I like to use the word ‘tonemap’ instead of ‘raise the shadows’. We’re forced to raise shadows of high contrast Raw files exposed for the highlights today because of the limited brightness of most current displays. Future displays capable of far higher brightnesses (perhaps even ten-fold) will need less shadow pushing, or tone-mapping, to make visible what you currently see as ‘shadows’ in such traditionally underexposed Raw files. For example, shadows you currently push +4 EV will likely be visible without any pushing at all on a 4,000 nit-capable display. 

    ** We confirmed that continuous modes were in fact 12-bit, while single modes were in fact 14-bit, by comparing histograms of respective Raw files. The 14-bit single drive files do, in fact, have 14-bits of data compared to the 12-bit files (the histogram shows the latter missing levels 1, 2, and 3, in between 0 and 4, but the 14-bit files do have pixels with these values).

    Articles: Digital Photography Review (dpreview.com)

  • Google Photos update encourages sharing, adds photo book creation

    Google’s I/O conference today included some information about updates for the company’s photo organization app. Google Photos will use machine learning to analyze who’s in your photos and automatically suggest photos to share. Suggestions will appear in the sharing tab on the Photos apps for Android, iOS and web ‘in the coming weeks.’ You’ll also be able to set up shared libraries to automatically send photos to designated people – with the ability to share everything, or just photos of certain people, for example.

    Google also announced it will allow you to create photo books from your Photos library, streamlined by a largely automated photo selection process. They’ll be available to US users only at launch, and will start at $ 10 for a softcover book and $ 20 for hardcover.

    Articles: Digital Photography Review (dpreview.com)

  • 10 cool DIY photography techniques that anyone can do

    Are you in a creative rut? Do you need some ideas to break out and do something different? This short video by COOPH highlights ten cool photography techniques that anybody can do.
    Do you have a favorite DIY technique that’s not in the video? Share it with us!

    Articles: Digital Photography Review (dpreview.com)

  • Drone footage helps scientists understand how narwhals use their tusks

    Narwhals are famous for their long ivory tusks, which reach lengths of up to nine feet. Documentary filmmaker Adam Ravetch and Fisheries and Oceans Canada used video captured by drones to discover a previously unknown use for the tusk: it’s used to tap and stun fish before eating them.

    Articles: Digital Photography Review (dpreview.com)

  • Hasselblad launches A6D 100MP aerial camera

    Hasselblad has updated its aerial camera offering with a new model that features a 100MP sensor. The A6D appears to have replaced the A5D series, which had a number of sensor options, with a single body using the company’s highest resolution back. The new model has many features similar to the previous incarnation and allows synchronization of up to eight cable-connected bodies with a delay of just 20 microseconds.

    The use of the 100MP sensor increases the system’s dynamic range from a maximum of 14 to 15 stops, and the company has installed a slot for CFast 2.0 memory media.

    Hasselblad has nine H lenses that have been adapted especially for aerial use. With focal lengths from 24mm to 300mm the system offers angles of view of 96-10.2° and a new top shutter speed of 1/4000sec. Hasselblad says that because its lenses use leaf shutters they are less exposed to issues of the plane’s movements than focal plane shutter systems that can only compensate for motion in a single direction – usually forward.

    The A6D will be available with or without an infrared cut filter so it can be used with sensitivity to extended wave lengths of 750-1000nm. For more information see the Hasselblad website.

    Warning: sample image is 68MB

    Press release

    Hasselblad Introduces a 100 Megapixel Aerial Camera System

    Aerial photography delivers better results today than ever before and Hasselblad continues to grow its presence in the market, introducing more advanced products and applications for the aerial photographic industry. This is reflected in the Hasselblad A6D-100c, the latest evolution of Hasselblad aerial cameras.

    Hasselblad cameras are developed by building on the shoulders of the previous generation of models which enables all of the prior advancements and branch-demanding features to be automatically included. This process allows Hasselblad to continually enhance and develop models. The A6D heralds a technological improvement that is noticeably greater than earlier generations.

    The A6D Aerial camera includes a feature that allows up to eight cameras to be synchronized within 20 ?s. A simple bus-type cable connection is required between all cameras in the set-up. This feature completely eliminates any issues in post-production caused by un-synchronized exposures.

    Product Manager Bjarne Hjörlund commented, “Available in 100 megapixel resolutions, the A6D camera combines the world’s best optics and sensors with a modern, compact design, resulting in a system that will ensure you attain the highest possible image quality. Hasselblad aerial cameras provide a range of important features that help deliver your imaging requirements”.

    Nine H System lenses are available in aerial versions with secure locking mounts to minimize vibration and flexing which guarantees the image plane and sensor stay parallel at all times. These units ship with their focus precisely adjusted and fixed at infinity. The focal length range from 24 to 300mm of these lenses results in a horizontal AFOV of 96° to 10.2° covering most applications. The new generation of leaf shutters for the H lenses has an extended lifetime, which ensures reliability during flight.

    In addition, the exposure time for the aerial lenses has been improved up to 1/4000 of a second, for sharp and crisp images. Traditionally, FMC systems typically only compensate for movement in a single direction, but the fast leaf shutter-based exposure time can both compensate for ground speed and the roll and pitch of the plane.

    Near Infra-Red Photography
    The A6D camera is available with or without Infra-Red filter for infra-red captures from 750nm to 1000nm to serve the needs of aerial analysis, such as environment surveying and crop management. NDVI, CIR and NIR imaging is possible with third party software.

    Phocus SDK by Hasselblad
    To facilitate the development of user specific software, Hasselblad offers a complete Software Developers Kit (SDK) which allows full control of camera and image processing from the user’s own software. To quickly get started using the A6D aerial cameras for photography, Hasselblad has created a simple but effective PC sample application which can capture and store RAW files coming from the camera. All source code for this application is supplied to allow the user to adapt to special individual requirements.

    Technical Data Sheet:
    Key Features

    • Medium format 100 Megapixel resolution
    • The A6D Aerial includes a feature that allows up to 8 cameras to be synchronized within 20 microseconds.
    • 9 of the H System lenses are available in aerial versions
    • The exposure time for the aerial lenses is increased up to 1/4000 of a second
    • The A6D camera is available with or without Infra-Red filter to allow infra-red captures from 750nm to 1000nm

    Additional Features

    • Reduced foot print designed to fit existing POD mountings
    • Up to 15 stops Dynamic
    • Improved external connectivity via stable LEMO connections
    • Fits plane power with a power requirement of 12 – 24 volt DC
    • FMS and multiple camera synchronization
    • Secure camera mounting via 4 x M4 screws
    • Lens locking mechanism with additional lens protector
    • Onboard fast 500+ Mbytes/sec CFast2.0 storage with a capacity of up to 512 GByte
    • External storage interface via locked USB3.0 type C-connection
    • Fully mechanically fixed system to minimize effects of vibrations

    Articles: Digital Photography Review (dpreview.com)

  • Sony FE 16-35mm F2.8 GM sample gallery

    The photographic ‘holy-trinity’ is an oft-described concept for the professional wedding, event and sports photographer. You have three cameras dangling from three straps around your body (and hopefully a chiropractor to help you with the aftereffects). These include cameras strapped to a 16-35mm (ish) F2.8 lens, a 24-70mm F2.8 and a 70-200mm F2.8 to make sure you don’t miss a thing.

    With the new a9, Sony is aiming at the high-end sports photographer market, so their new FE 16-35mm F2.8 GM is a natural next step to appeal to the wide-angle enthusiasts within that crowd. See how it stacks up in our preliminary samples gallery.

    See our Sony FE 16-35mm F2.8 GM gallery

    All images are processed through Adobe Camera Raw using a near-final build of that software where applicable for the new Sony a9 camera. Sharpness and noise reduction settings are left to default, the Adobe Standard color profile was used, and minor adjustments were made to white balance, highlights, shadows, whites and blacks. Due to bandwidth constraints, only JPEG images processed using the above settings are available at this time. Raw images will be coming shortly.

    Articles: Digital Photography Review (dpreview.com)