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Posts Tagged ‘Camera’

Camera Color Spaces Explained – sRGB vs Adobe RGB vs RAW

22 Dec

The post Camera Color Spaces Explained – sRGB vs Adobe RGB vs RAW appeared first on Digital Photography School. It was authored by Herb Paynter.

camera-color-spaces-explained

Your camera is probably able to capture color images in a variety of different color containers called “spaces.” These camera color spaces collect colors in one of several size light buckets labeled sRGB, AdobeRGB, and RAW.

Each bucket gathers slightly increased varieties of light, similar to the way Crayola crayons are packaged and sold in increasingly inclusive collections of colors; small, large, and jumbo.

Camera color spaces offer photographers a variety of different size boxes.

Camera color spaces

camera-color-spaces

Scenes that include both brilliant colors and bright lighting are excellent candidates for capture with AdobeRGB color space.
F/3.5, 1/1000, ISO 400, Lumix G Vario 2.8, 35mm

 

A debate in the photo community usually arises over which camera color spaces to choose in the camera’s preferences. Some color spaces capture more of the hues and saturated colors than others. Pictures captured in one space may include more colors than another.

Each space is ideally suited for certain purposes, and the question of which camera color space to choose needs a bit of explanation. In addition to the capture question, choosing a color space for post-production editing will depend on the image’s ultimate usage.

Your camera’s color spaces involve not just color data, but additional parking space on the drive. Larger color spaces provide more bit-depth (explained below), which occupies more digital real estate on the memory card. So, the choice of which to use does have practical importance.

What camera color space to use

There is no singularly perfect color space choice, so let’s examine which is best for specific situations.

camera-color-spaces

Images that do not include highly-saturated color but contain significant detail in the shadow areas will benefit from RAW format capture and high-bit processing. F/10, 1/1600, ISO 800, Lumix G Vario 2.8, 200mm

 

Unless the sole purpose of a photo is to display as a high-resolution digital image, you might want to convert the file’s original color space for a less demanding result. However, keep in mind that every time a file mutates from a larger color space to a smaller color space (RAW to AdobeRGB, or AdobeRGB to sRGB), the image’s color intensity and integrity may diminish in the process. Some imaging applications are less demanding than others.

While copies of digital files remain identical in size and intensity to the original regardless of how many times they have been copied, when a digital file mutates to a lesser color space, it will always lose some critical color information. Your camera color spaces in general, and device color spaces, in particular, are all unique. Each serves a particular purpose.

Image: The extreme dynamic range and saturated skies benefitted from the RAW capture and editing in...

The extreme dynamic range and saturated skies benefitted from the RAW capture and editing in AdobeRGB. Detail buried in the shadows was possible because of the 14-bit capture. F/14, 1/300, ISO 3200, Lumix G Vario 2.8, 12mm

 

It’s a matter of depth

The difference between camera color spaces boils down to an issue called bit depth. Bit depth is a mathematical description of how many visible distinctions between shades of color can be recognized and reproduced by different devices (a techie term for scanners, cameras, computer monitors, and printing machines). Unfortunately, not all devices can reproduce all colors the same (which is the primary stumbling block amidst all color issues).

Every device reads and reproduces color using a different process. While this sounds like a fixable problem, there is a sad and unsolvable reality behind the problem. There are at least three different interpretations of color at play in every capture-display-print cycle.

Image: These colorful seat cushions and deep shadows were captured in RAW format, edited in AdobeRGB...

These colorful seat cushions and deep shadows were captured in RAW format, edited in AdobeRGB, and saved in sRGB for upload to our camera club’s server for display as part of a club field trip slideshow. F/7.1, 1/320, ISO 400, Lumix G Vario 2.8, 19mm

 

First, cameras capture color by recording intensities of light as electrical signals and interpreting those signals as colors. Each color is assigned a specific number.

Second, these numbers are then sent to the computer. Here, they get translated into another process that interprets those electrical signals into a process that turns on tiny lights (called pixels) on a backlit screen.

And third, those pixels are then sent to a printing machine that instructs those pixel values to spit tiny splatters of colored ink onto paper.

It’s a very complicated process that color scientists have tried for years to make simple. Unfortunately, it just ain’t that simple!

Anyway, during this hair-on-fire digital transition, different methods are employed that utilize the various color spaces in a way that transforms the colors from one device to another as accurately as possible. Sometimes the color translations don’t convey the colors as accurately as we would like, which is why sometimes the monitor colors don’t match the printer colors.

camera-color-spaces-explained

Science uses charts like this to plot the characteristics of camera color spaces. While these charts are referred to as “theoretical” because they are not visible to the human eye but represent what each color “bucket” can capture versus what the eye can see.

 

The ultimate referee

The only comprehensive color space that plots the full scope of what the human eye can see is what the science community calls L*a*b* (inverted horseshoe diagram) space.

The human eye is the ultimate arbitrator in the color wars, and all device capabilities (camera, display, and printer) are defined by how they match up to the eye’s master gamut. This is why this strange horseshoe shape is referred to as the Reference Space. All other devices, whether camera, display, or printer, can only recognize and utilize portions of this “reference space,” and they usually disagree with each other.

Color is a very diverse and dysfunctional family. Each device speaks a different dialect of a similar language. Each produces colors that cannot be faithfully reproduced on other devices. Color is a very messy topic.

color-spaces-explained

Crayola crayon boxes contain varying numbers of colors just as color spaces collect varying amounts of color. The lightest and darkest color crayons are the same value, but larger boxes contain more colors than smaller ones.

 

Some devices can express color more completely than others. Unfortunately, no device created by humans can reproduce all the colors that can be seen by humans. Also, the colors captured by one device that fall outside the gamut (Crayola box size) of other devices, get clipped, lost, or compressed during the handoff. Those colors never come back home.

This is the tragic truth about digital color reproduction. The trick to color reproduction is in retaining as much of the common color as possible during the process. Fortunately, this same human eye (and brain) are very forgiving about accepting the limitations of non-human devices.

Color reproduction is a true application of the law of diminishing returns and the visual science of physics. Photographers understand this law quite well.

Very rarely can a camera actually capture all the color and dynamics of an original scene. Moreover, nature’s color gamut extends even further than the colors that the human eye can identify. Any time a digital image gets transposed from one form into any another form, that transformation is a diminished-value exchange.

As an image is transferred from one device to another, those pixel values located outside the color gamut of the destination device always get lost in the translation. The object of color management is to mitigate color loss and maintain as much of the appearance of the original as possible, all the way through the reproduction process.

RGB spaces (sRGB, AdobeRGB, ProPhoto RGB)

It all begins with the camera’s color settings that are in place when you capture the scene. All cameras capture light through red, green, and blue filters (RGB color space). While there are a number of RGB color spaces to choose from, each sports a slightly different color gamut.

camera-color-spaces-explained

Each device in the photography chain interprets colors slightly differently, and each responds to the individual color spaces uniquely.

 

Each color space (sRGB, AdobeRGB, ProPhoto RGB, etc.) provides a unique collection of color attributes, and each space satisfies specific display and reproduction requirements.

Gamuts are descriptions of the range of colors that a device can recognize, record, display, or print.

Shooting a vibrant, saturated scene with the camera requires a larger color space. Using a camera color space with a smaller gamut could significantly diminish the raw, harsh emotion of the scene. This is why most photography experts encourage photographers to set their cameras to capture images in AdobeRGB.

sRGB

Almost all digital cameras are factory-set to capture colors using sRGB as the default color space for a plausible reason; most of the pictures we take never get printed! At best, we view them on computer monitors or social media. Quite honestly, most of the pictures we capture never make it past the initial glance at the camera’s LCD screen. Capturing those images in higher-bit color space is a total waste of disk space.

camera-color-spaces-explained

sRGB color space remains largely unchanged since it was defined in the 1950s to compress video images into a manageable size for broadcast. While the format has been updated slightly, the basic intent is the same.

 

sRGB was developed by HP, Microsoft (and others) back in the early days of television to address the color gamut needs of most televisions (early versions of computer monitors), and the standard was set long ago. The airwaves and Internet browsers live on an sRGB diet. As such, the sRGB color space standardizes the way images are still viewed on monitors and televisions.

Adobe RGB

If the ultimate destination for your picture is monitor or display-based presence (presentations, Internet, or television displays), this is probably the best choice to capture images. However, if you shoot for print on paper, both AdobeRGB 1998 and ProPhoto RGB RGB contain a wider gamut of colors and are thus more suited for preparing images for print.

camera-color-spaces-explained

The brilliant dynamics and saturated colors are always captured best in the deepest color bucket of all – RAW. The degree of adjustments provided by RAW capture and ProPhoto RGB editing is perfect for images like this. F/6.3, 1/800, ISO 400, Lumix G Vario 2.8, 26mm

 

RAW

Actually, the most ideal bucket for capturing images actually exceeds the gamuts of all three of these camera color spaces. I’m speaking of course of your camera’s ability to capture images in RAW format. This is a format that supersedes any defined color spaces.

RAW files capture color in the highest bit depth possible; up to 14-bits per color. RAW is not an acronym; it is more of a description. It is the recording of all the limited color depth and uncompressed dynamic range of the original scene. Start RAW and strip down from there.

Camera color spaces explained – Conclusion

Congratulations on sticking with this article through all the minutia.

By now, it probably seems like camera color space is more like outer space, but it doesn’t have to remain this technical. Simply remember to capture images in RAW format (perhaps in addition to capturing them as JPG) and then transform the colors down the chain of reproduction as the need dictates.

Edit images in the camera color spaces of ProPhoto RGB or AdobeRGB to retain as much color elbow room as necessary. Those images destined for print should be transposed to AdobeRGB, and reduce those images destined for the Internet or slideshows to sRGB. Simple, enough!

The post Camera Color Spaces Explained – sRGB vs Adobe RGB vs RAW appeared first on Digital Photography School. It was authored by Herb Paynter.


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DJI patents land-based vehicle with built-in camera and new gimbal system

21 Dec

Newly discovered Chinese patents hint at the upcoming launch of two new DJI products, including a gimbal or sorts that looks like a smaller version of the Ronin 2, as well as a motorized vehicle with a built-in camera. The latter product may be a land-based alternative to the company’s expansive drone lineup, giving users a way to surveil an area from the ground and capture new types of action shots.

The camera car, which DroneDJ says is listed with the term ‘vehicle’ in the patents, resembles a mechanical rover with a camera attached to the top. Based on the patent illustration, the vehicle appears to have large rugged wheels, hinting at a design that may accommodate off-road use, as well as a series of shocks and dampeners to reduce vibrations.

According to DroneDJ, the patent reveals that the DJI camera car’s wheels can rotate 360-degrees and that the camera’s height can be adjusted.

Joining the camera car patent is another patent detailing a handheld device that looks like a gimbal similar to the company’s existing Ronin 2 product. The patent refers to this product as a ‘stabilizing device’ that includes a ‘handheld gimbal device.’ The product may feature a removable cage that makes it possible to attach the gimbal to different devices, potentially including the camera car detailed in the other DJI patent.

Based on the patent, this stabilizer features two handles, a removable camera, as well as physical controls that include a focus wheel and buttons.

As with any patent, it is possible that DJI will never actually bring either of these products to the market. However, the existence of both indicates the company is exploring an expansion of its product line that’ll appeal to filmmakers and that it may move beyond aerial vehicles to also offer land-based vehicles capable of transporting camera equipment.

Articles: Digital Photography Review (dpreview.com)

 
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Meet Leica’s newest limited-edition camera, the ‘White’ M10-P

19 Dec

German camera manufacturer Leica has announced a new limited edition M10-P camera that will be almost entirely white and silver, aside from the iconic red dot, of course. The ‘White’ edition will feature white leather trim and white paint on the top- and base-plates, as well as white lettering in the shutter speed and ISO dials.

The camera will come in a kit with a silver chrome Summilux-M 50mm F1.4 ASPH lens, and will have a white leather strap and a white case for the lens. Only 350 white kits will be made, and Leica says each will have a serial number unique to the White edition.
The Leica M10-P White kits are available now and retail for £12,750. The US$ price has yet to be revealed.

Press release:

Leica M10–P ‘White’: the new special edition comes in a set with a Summilux-M 50 mm f/1.4 ASPH. lens

Leica Camera is delighted to announce the Leica M10-P ‘White’, a new colour option of the iconic rangefinder camera. Limited to 350 sets only worldwide, the all-white design takes its cue from the extremely popular Leica M8 ‘White Edition’ released in 2009. The top and bottom plates are finished in white paint to match the camera’s white leather trim and the silver control elements feature white engravings, complementing the design concept of the Leica M10-P ‘White’.

The technical specifications of both camera and lens are identical to those of the standard models: particularly discreet and concentrating on the most essential camera functions only, the Leica M10-P embodies the essence of the M-Philosophy. Featuring the quietest shutter release of all M-Cameras ever built, the almost inaudible sound makes it the ideal tool for discreetly capturing authentic photographs in any situation. With its handling concept, the Leica M10-P fulfils everything that discerning photographers expect from a Leica M and reflects the philosophy of all past and present Leica M-Cameras.

The Leica M10-P ‘White’ comes as a set with the silver chrome Summilux-M 50 mm f/1.4 ASPH. lens, which complements the Leica M10-P by delivering consistent exceptional performance at all apertures and distance settings. Whether used for selective sharpness at short distances, high contrast available light photography or for landscapes with enormous depth of focus, the Summilux-M 50 mm f/1.4 ASPH. lens delivers outstanding results in all situations and superbly fulfils its tasks as a true universal lens.

The set is completed with a white leather carrying strap with Leica embossing and a white leather case for the lens. All Leica M10–P ‘White’ cameras have a unique serial number.

The Leica M10-P ‘White’ is available for sale from today.

RRP: £12,750 for the set

Articles: Digital Photography Review (dpreview.com)

 
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Zenit M full-frame rangefinder camera made in collaboration with Leica arrives in the US

18 Dec

The Zenit M full-frame rangefinder digital camera made in collaboration with Leica is now available to purchase in the United States. The rangefinder features a 24MP CMOS sensor and Leica M39 mount; it is being sold with a 35mm F1.0 Zenitar manual focus lens.

This rangefinder model first started shipping in Europe in late 2018, later arriving in Russia earlier this year. The Zenit M’s arrival in the US marks the latest expansion of this vintage brand camera, which was designed in Russia and produced in Wetzler, Germany.

The Zenit M is essentially a Leica M240 camera with the Zenit M logo, design changes and certain software-based differences, including support for only a few Zenit lenses. The model was first announced in 2016 by Russian factory Krasnogorsky Zavod and, after months of mystery, was finally unveiled in September 2018 as what is essentially a Leica camera.

A total of 500 Zenit M cameras are being put up for sale globally. Buyers in the US can get the camera as part of a kit that includes the 35mm F1.0 Zenitar lens, a case, a hardbound book and a collector’s card for $ 6,995. The silver version of the camera is available to purchase now; the black version will be available ‘soon.’

Articles: Digital Photography Review (dpreview.com)

 
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Nikon is now offering a 30-day trial for the Z50 camera with its ‘Yellow Program’ initiative

17 Dec

Nikon recently released the Z50, a compact mirrorless camera that starts at under $ 900. The company is so confident that photographers will love their product that they’ve recently introduced the Yellow Program. Besides offering expedited shipping upon placing an order with the Nikon store, customers can try out the Z50 for up to 30 days, upon receiving the camera, and return it free of charge if they’re not satisfied with their purchase.

‘We’re so confident that you’ll fall in love with the photos and videos you’ll get with your new mirrorless Z50 camera, especially when compared to the ones you get with your smartphone, we’ll let you try one at home for 30 days. If you don’t fall in love, send it back to us for a full refund, including shipping,’ reads the introductory paragraph to the Yellow Program’s site.

According to Nikon, the Z50 is the smallest interchangeable lens DX-format camera on the market and the first mirrorless camera in the company’s Z series. It features a 20.9MP CMOS sensor, an EXPEED 6 processor that can capture imagery up to 11 fps, and can record 4K/30p video that is also capable of slow motion and time-lapse. It’s connectivity includes both WiFi and Bluetooth.

There are 3 options available for purchasing the Z50.

There are three ways the Z50 can be purchased: the Body Only Kit, which includes a battery, charger, and 16MB memory card, the One Lens Kit that also comes with a 16-50mm VR lens, and the Two Lens Kit which gives you both the 16-50mm VR lens plus a 50–250mm VR telephoto zoom lens. All three kits include free expedited shipping.

In order to receive the free 30-day trial, a purchase is required up front. The option to use PayPal, to pay the total fee in installments, is also available. A full refund will be administered, granted the camera and accessories are returned in their original condition. The promotion also includes the FTZ lens adapter that is required for those wanting to use NIKKOR lenses with the Z50. The Yellow Program will run through March 31, 2020.

Articles: Digital Photography Review (dpreview.com)

 
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Nikon Z50 Mirrorless Camera Review

14 Dec

The post Nikon Z50 Mirrorless Camera Review appeared first on Digital Photography School. It was authored by Caz Nowaczyk.

This week, I thought I’d share some reviews of the Nikon Z50 APS-C mirrorless camera.

This is Nikon’s first APS-C mirrorless camera, and it looks to have some interesting features. The good news about this camera is it is a Z-mount camera, meaning lenses for the Z6 and Z7 cameras will also fit this lens. Moreover, with one adapter, all the Nikon autofocus lenses will work with this camera too.

When launching the Nikon Z50, Nikon also launched two DX zoom lenses: DX 16-50mm f3.5 and the DX 50-250mm f4.5/6.3.

Check out this review by Jared Polin.

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And this review from Ken Rockwell:

Also, this review from DP Review:

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You may also find the following helpful:

  • Video: Canon RF vs EF Lenses on the Canon Mirrorless System
  • Review: Sony A7R IV Mirrorless Camera
  • Nikon to Produce Mirrorless Crop-Sensor Camera and Two Z Lenses
  • Canon and Sony Announce New DSLRs and Mirrorless Cameras
  • Review of the Nikon Z6 Mirrorless Camera
  • Fujifilm X-T3 versus Fujifilm X-H1: The Best Mirrorless Camera for You?
  • Gear Review: Canon EOS M50 Mirrorless Camera Kit

 

The post Nikon Z50 Mirrorless Camera Review appeared first on Digital Photography School. It was authored by Caz Nowaczyk.


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Apple acquires Spectral Edge to boost iPhone camera performance

13 Dec

It looks like Apple might have just made another move to improve image quality on its iPhone camera. Bloomberg reports that according to filings made public in the U.K. on Thursday, Apple has acquired the Cambridge, U.K.-based startup Spectral Edge Ltd..

Spectral Edge has developed a technology that can improve detail and color on digital cameras by taking an infrared picture and merging it with a conventional color photo using machine learning. Apple is already using AI in some of its camera algorithms, for example to improve low light images, so using AI to improve other aspects of image quality would fit nicely into the concept.

The Spectral Edge technology can be applied via software or baked into hardware which would allow Apple to integrate it into a custom image signal processor.

No purchase price has been reported but last year Spectral Edge said it raised more than $ 5 million in funding.

We should not expect the technology to be integrated in the next iPhone generation but in the medium and long term it will be interesting to see if Spectral Edge can help improve smartphone imaging.

Articles: Digital Photography Review (dpreview.com)

 
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Oppo demonstrates its under-display front camera in prototype devices

13 Dec

Back in June Chinese smartphone maker OPPO announced a device with an under-display front camera at MWC Shanghai. This allows for the design of display without a ‘notch’ or front camera ‘pinhole’ but also means that incoming light has to first travel through the display before it hits the camera lens.

To make this possible the display section above the camera is made of a highly-transparent material and comes with a redesigned pixel structure that is optimized for the transmittance of light. In addition, the camera comes with a bigger than usual sensor to further make up for any loss of light and white balance and HDR algorithms have been customized to reduce the transparent display’s impact.

This week, Oppo now finally shared prototypes of devices with the new in-display camera with press and media and thanks to a Twitter post by David Imel from Android Authority we can see the new design fully in action.

The new under-display camera system is hardly visible on the front of the device and only becomes slightly visible when viewing the phone at certain angles. Of course, it’s way too early to make any judgments on image quality but in terms of usability, the new system appears to work just like any other smartphone front camera.

Just like their rear counterparts, front cameras have taken huge steps forward in terms of image quality over the last couple of years or so. However, manufacturers have not only been focused on image output but also the integration into the device. We’ve seen notches and pinholes as well as motorized pop-up and flip-up front cameras. If Oppo’s concept catches on 2020 might well be the year of the under-display front camera.

Articles: Digital Photography Review (dpreview.com)

 
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Video: Watch someone play DOOM on a Kodak digital camera from 1998

12 Dec

Retro tech and gaming YouTube channel LGR has published a new video showing the original DOOM video game being played on a 1998 Kodak DC260 digital camera. This model was quite expensive at the time with a price tag of $ 999.99; the cost was due, in part, to the surprisingly capable hardware packed into the camera, including a 66Mhz PowerPC CPU, 8MB of RAM and an 11khz sound chipset.

As explained in the video, the Kodak DC260 was unusual for its time in that it features USB and support for sideloading apps. Though this sideloading functionality was intended to expand the camera’s capabilities in unique ways, it also makes it possible to install and run a special version of the original DOOM video game, which appears to play without issue on the camera.

DOOM is one of the multiple apps demonstrated in the video, which includes instructions on downloading, sideloading and running the software.

Articles: Digital Photography Review (dpreview.com)

 
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It’s (most likely) alive! Adobe Camera Raw release includes support for Zeiss ZX1

11 Dec

Rumors of the death of the Zeiss project to introduce a full-frame compact camera appear to have been exaggerated if Adobe’s latest Camera Raw update is anything to go by. Sitting at the bottom of the list of new cameras supported by version 12.1 of the application is the Zeiss ZX1 and the DNG raw file type it will use.

The Android-based camera will offer in-camera RAW processing via an on-board version of Adobe’s Lightroom, which will allow users will be able to edit and share their images to email and social media directly from the camera. The full-frame sensor will have 37.4 million pixels and will be serviced by a 35mm F2 Distagon lens.

The camera was announced at Photokina in September 2018, but the company has been incredibly quiet about progress since the camera was shown at CP+ in February, to the extent that some commentators have suspected the camera would never become a reality. Inclusion on Adobe’s list of newly supported cameras though suggests otherwise, and even that the ZX1 may be almost ready to ship.

Other new models supported by Camera Raw 12.1 include Leica’s already released SL2, Canon’s EOS Ra and M200, the Google Pixel 4 and 4 XL, the Nikon Z50, Sigma fp and Sony’s a9 II. For more information see the Adobe Camera Raw web page.

Articles: Digital Photography Review (dpreview.com)

 
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