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  • Let there be light: Photographing Yosemite’s elusive ‘Firefall’

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    Once a year, photographers turn their lenses toward Yosemite’s Horsetail Fall and hope for the best. If the conditions are right, the waterfall will be transformed into a spectacle known as ‘Firefall’ as the mid-to-late February sun casts a blazing orange glow on the water – that is, if the water is flowing, and if the horizon isn’t too cloudy. And that’s not to mention the difficulty of nabbing a coveted spot in view of the falls, as well-informed photographers claim their spaces early in the day.

    After years of drought, the falls in Yosemite are finally flowing this month and photographers like Taylor Gray have been able to capture the event with a lot of patience and a little luck. It’s quite the effort to put in to get the shot, but the results are truly spectacular. Read Gray’s recounting of capturing the magic moment at the falls over at Resource Travel. You might just want to book a trip to Yosemite this time next year…

    Articles: Digital Photography Review (dpreview.com)

  • Something we’ve never seen before: LensRentals eviscerates the Fujifilm XF55-200mm F3.5-4.8R LM OIS

    Into ‘the land of Fuji’

    Roger and Aaron over at LensRentals have been tearing lenses down again. This week they’ve ‘eviscerated’ Fujifilm’s XF 55-200mm F3.5-4.8R LM OIS – the company’s mid-price tele zoom. The name may be redolent of a ‘$ 100 extra for a dual lens kit’ zoom but inside they found surprises at every turn. And not just with regards the number of screws holding the thing together.

    The 55-200mm doesn’t have the fastest aperture range but it’s a fast-focusing, weather sealed telephoto zoom that we’ve always been impressed with. Fujifilm has often hinted that the X Series was partly an opportunity for its lens designers to show-off what they could do, so it’s probably to be expected that the designs are quite creative.

    The system with the most screws

    Having only broken a minor element of the lens in trying to open it up (something Roger didn’t want to embarrass Aaron by mentioning, so we shan’t dwell on it), they found the front section of the lens was held together with a lot more screws than usual. And, that many of these were screwed into metal inserts, rather than easily stripped or broken plastic columns. This turns out to be something of a recurrent feature of the 55-200, prompting Roger’s assertion that: ‘If you want the system with the most screws, you want Fuji, no question.’

    Commenter helps Cicala find his orientation

    Things got interesting when they dug a little deeper. Having removed the rear screws from their metal-inlaid holes, they discovered two sensors attached around the lens’s rear element. Since the element is static, Roger wasn’t clear what their role was and hoped that he’d be able to rely-on (and recognise) the wisdom of the crowd. He was right to, as pro photographer Trenton Talbot immediately guessed that they were gyroscopic sensors. A look at the way they’re orientated, relative to one another, along with a bit of Googling, suggests he’s right: they appear to be Epson gyro sensors, presumably feeding information to the lens’s stabilisation system.

    The ‘R’ is for ‘by-wire’

    Digging further into the lens revealed one of the few conventional parts of the 55-200mm’s design: the spring ball-bearings used to provide clicks as you turn the aperture ring. That ring being secured in place with screws, of course. It’s a similar approach to the one we saw in LensRentals’ tear-down of the Sony FE 35mm F1.4 a little while ago: the ring itself doesn’t directly drive anything, its movement is registered with a sensor, then sprung ball bearings are added to provide a stepped feel to the dial. Unlike the Sony, they can’t be disengaged.

    Full metal barrel

    A few loosened screws later, our intrepid duo found themselves facing a solid-looking metal zoom barrel, attached with three similarly solid ‘keys’ with which the zoom barrel transfers its motion to the mechanisms below. Cicala says he’s impressed with this level of construction on such a modestly-priced lens: another recurrent feature.

    Fujifilm takes and eccentric path

    Roger noted the ‘complex dance’ performed by the lens elements in Leica’s SL 24-90mm F2.8-4 when he tore that apart. That lens featured six helicoid paths that different elements trace as the lens is zoomed. That’s a $ 5000 lens. By comparison, the Fujifilm drives five groups in a similarly intricate optical shuffle, in a package you can pick up for one tenth of the cost.

    Limited degrees of freedom

    Down past the IS mechanism and carefully screwed-down aperture assembly, Aaron and Roger reached the focus element. There’s a sensor detecting the position of the focus group within the lens barrel then, on the group itself, what appears to be another one to detect the focus element’s position within the group’s housing.

    But, wherever the focus element itself is, you can be fairly sure it’s not crooked: as Roger points out, the twin linear motors (10 o’clock and 2 o’clock in this image) and the rail along which the focus element moves (12 o’clock) are all broad, flat bars, rather than circular rods, meaning the element shouldn’t go askew as it races on its way.

    Conclusion

    Overall, Cicala says he’s impressed with the construction of the 55-200mm, especially given how much the lens sells for. He also seems pleased by the degree of optical adjustment that can be conducted on the lens, given the challenges of building lenses consistently. ‘This looks like a lens that was designed by people who know how to make reliable lenses,’ he concludes.

    When ‘modern’ lens design is discussed, it’s often in terms of the use of Computer Aided Design to develop the optical formulae. But, just like the Sony FE 35mm, the Fujifilm shows an innovative approach to construction and focus drive. LenRentals ventured into the land of Fuji, ‘where things are done differently,’ with some trepidation but seem to have returned with a healthy respect for what goes on there, as well as a couple of screws that were probably supposed to stay there.

    Articles: Digital Photography Review (dpreview.com)

  • 10 Ways to Use a 5-in-1 Reflector

    ten-ways-to-use-reflectors-1803

    In photography books, magazines, and websites, references to reflectors are often and many. They’re a quintessential tool for modifying light in just about every genre, and they’re an indispensable part of many photographers’ toolkits.

    If you’re new to the idea of using reflectors, or new to photography in general, the problem with reflectors is that, although they seem self-explanatory in use, their effects can often be too subtle to be noticed if you lack experience using them. To combat this, and make the learning process easier, this article will give you examples of 10 common uses for a 5-in-1 reflector. It will also show you what the reflector is doing in each instance, as well as provide diagrams for you to repeat the exercise in your own time.

    The best way to take full advantage of the information in this article, is to duplicate all of the following setups, using your own equipment and subjects. Once you understand the basics outlined here, you can start experimenting, and altering variables, to see how small changes can affect your images.

    What is a 5-in-1 reflector?

    5in1reflector

     

    A 5-in-1 reflector is a nifty gadget that incorporates several different types of reflector, into one portable and easy to use package. These include white, silver, gold, black reflectors (or flag), and a diffusion panel.

    05-westcott-photo-basics-reflectorThe way they are put together is that the four reflector sides are sewn into a sort of pouch, that fits around the diffusion panel; making a change to a different color as simple as unzipping it, removing the diffusion panel, turning the pouch inside out, and replacing it over the diffusion panel.

    Clarifications

    This article focuses on practical uses for 5-in-1 reflectors, but to use and understand them most effectively there a couple things to keep in mind.

    Quality of light

    When referring to the quality of light, this term has nothing to do with whether light is good or bad. The word quality refers to the physical properties, traits, or characteristics of the light. These properties include the softness or hardness, the shape, the color, and the intensity of the light.

    A little confusing, I know, but it’s just one of the many quirks of the English language. If it helps, try to remember there is no such thing as good or bad light; only light more suitable for a different subject.

    Softness, hardness and intensity

    In terms of reflectors, it is important to understand how they modify your light.

    Softness and hardness are affected by the apparent size of your light source. If you move your reflector closer to your subject, you get softer light. If you take it further back, you get harder light. The same applies to different sized reflectors. A larger reflector, at the same distance from the subject as a smaller one, will produce softer light, while the smaller one (in the same position) will produce harder light. However, if you put the larger one farther away from the subject, and the smaller one closer – they may become equal.

    When swapping between the colors on your 5-in-1 reflector, from white to silver for example, the properties of the light you are altering are the color and the intensity. Providing that the reflector hasn’t moved, a silver and a white reflector will give the same softness/hardness of light. However, a silver reflector will reflect more light than a white one, thereby providing more intensity. Because of this, anytime you change out your reflectors, you will also need to alter your exposure settings.

    Additionally, using a different colored reflector will change the color of the light and you may need to alter your white balance settings. The exception to this is when using a gold reflector which is often done to intentionally add a color cast to the image.

    Exercises

    Exercise One – white/silver on the side

    ten-ways-to-use-reflectors-diagramA

    This first example may be the most common way to use a reflector. The light is illuminating the subject from camera left. This is causing dark shadows on the subject’s face at camera right. While these shadows can often be pleasing and acceptable, at other times you may choose to fill them in with additional light. This is where the reflector comes into play.

    To do this, place your reflector, either silver or white, to the side and close to your subject, facing the light. This will fill in the shadows, brightening up the frame.

    Note: You can also vary the intensity of the light reflected by moving the reflector toward, or away from the subject. Move it closer to brighten the shadows more, move it away to have less fill-light and darken the shadows.

    ten-ways-to-use-reflectors-A

    Left: without reflector. Right: with reflector

    Exercise Two – white/silver from below

    ten-ways-to-use-reflectors-diagramB

    This setup is also very common, and is a slight variation on exercise one above. Here, the reflector is placed underneath your subject, and is filling in shadows from below.

    ten-ways-to-use-reflectors-B

    Left: no reflector. Right: with reflector.

    Note: be very careful doing this on a subject that is heavy-set or has a double chin, as it will highlight that and make it stand out more – not overly flattering for them. You could also light up the nostrils so be conscious of that as well.

    Exercise Three – white/silver bend it

    You can also take advantage of a 5-in-1 reflectors lack of rigidity, by shaping it. This will allow you to mould your light, to fill in shadows that may not have been affected by a flat reflector. To do this, simply hold two opposite sides of your reflector and bend it inwards, thus creating a curved surface that will fill in shadows that a flat surface could not reach.

    ten-ways-to-use-reflectors-diagramG

    ten-ways-to-use-reflectors-1817

    ten-ways-to-use-reflectors-G

    Left: no reflector. Right: reflector in place bent to fit.

    Exercise Four – white/silver

    In this example, the light source is coming from behind the subject. The reflector is used parallel to the light source in order to bring detail into the heavy shadows caused by the backlighting technique. While it is possible to use this technique for portraits, it can be tricky. However, it comes into its own in food photography and other still life situations.

    ten-ways-to-use-reflectors-diagramC

    ten-ways-to-use-reflectors-C

    Left: no reflector with strong backlight. Right: with reflector.

    Exercise Five – white/silver

    If your light source is small, and the light is too hard for the effect you are trying to achieve, 5-in-1 reflectors offer a few options to help you soften the light.

    Here, instead of lighting your subject directly with the light source, bounce the light off of the reflector. Doing this effectively increases the size of your light source, thereby softening it. You will lose some of the intensity of the light doing this, and you will need to meter for the reflected light, rather than the output from your flash.

    ten-ways-to-use-reflectors-diagramJ

    ten-ways-to-use-reflectors-J

    Left: direct, small light source. Right: light bounced off white reflector.

    Diffusion

    Exercise Six – diffusion panel

    Another way to soften hard light with a 5-in-1 reflector, is to use the diffusion panel. Simply place the diffusion panel somewhere between your light source and subject, making sure that all of the light is hitting the reflector. Diffusion panels do come with an inherent loss of light. Many are designed to cut down two stops of light, but this will depend on your exact reflector. As such, you will want to calculate your exposure with the diffusion panel in place, before taking any images.

    Where this technique really comes into its own, is that you can move the diffusion panel anywhere between your light source and the subject, without altering your exposure. This allows you to manipulate the shape and quality of your light in moments, without having to further alter your settings.

    ten-ways-to-use-reflectors-diagramI

    ten-ways-to-use-reflectors-I

    Left no diffusion, small hard light source. Right with diffusion panel in place, softens the light.

    Black reflector

    Exercise Seven – black reflector or flag

    For the first use of your flag, use it as you would a white or silver reflector, as in example one above. Doing this with the black side of your reflector will help to deepen, and intensify the shadows on your subject. This technique isn’t as common as the others, but it can be used to great creative effect.

    ten-ways-to-use-reflectors-diagramE

     

     

    ten-ways-to-use-reflectors-E-700

    The difference is subtle but look at the shadows.

     

    Exercise Eight – black reflector or flag

    Instead of reflecting light, you can also use your flag to block, and shape the light in your scene. With the black side of the reflector facing your subject, hold it so that it obscures a large portion of your light source. This technique can be use in lieu of time consuming modifier changes, and can allow for some dramatic lighting effects without a great deal of equipment.

    ten-ways-to-use-reflectors-diagramF

    ten-ways-to-use-reflectors-F

    Left: before. Right: after.

    Exercise Nine – black reflector or flag

    ten-ways-to-use-reflectors-diagramD

    Another use for your flag is to use it as a background. You probably won’t do this very often, as it isn’t an ideal solution in most cases, but in a pinch you can get rid of messy backgrounds with ease.

    ten-ways-to-use-reflectors-D

    Gold reflector

    Exercise Ten – gold

    To be honest, you will probably never want to use a gold reflector. The effect, and the color cast they provide are often far too intense for most purposes. However, with judicious care, they can be used to provide a warm colored rim light. Here, the reflector is placed behind the subject and is reflecting light back onto her hair.

    ten-ways-to-use-reflectors-diagramH

    ten-ways-to-use-reflectors-H

    Left: before. Right: after. Notice the warm tone added to her hair, it’s very subtle.

    Just the beginning

    These 10 examples barely scratch the surface of what can be accomplished with a 5-in-1 reflector. However, by going through these exercises a number of times, with a variety of subjects, you will quickly begin to notice how reflectors modify light in a given situation. From there you will be able to employ them effectively in your photography. Do you have any other uses or tips for using one? Please share in the comments below.

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    The post 10 Ways to Use a 5-in-1 Reflector by John McIntire appeared first on Digital Photography School.


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  • Winner Winner! See Who Won Our Game of Phones

    We played a super fun round of Game of Phones on Twitter yesterday.

    We tweeted out cards and you all replied. Scroll along to see the winners (and proud new owners of $ 50 Photojojo gift cards).

    If you didn’t win, we’ve still got a prize for you – take $ 4.43 off of your very own Game of Phones with the coupon code AnswerEm, in honor of Luke’s texts. Who’s Luke? You’ll see …

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  • Winners of the Portfolio Website CMS Giveaway

    A big thank you to all entrants of our recent portfolio website CMS giveaway. We were excited to see such a great response, you rock guys! We won’t drag things out any longer. Drumroll please… And the lucky winners of the MotoCMS giveaway are: 1st Place Winner – Wayne Johnson Prize: Full License for MotoCMS 3.0 “I’m Wayne a portrait Continue Reading

    The post Winners of the Portfolio Website CMS Giveaway appeared first on Photodoto.


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  • CP+ 2016: A look inside the G Master lenses at the Sony booth

    CP+ 2016: Sony stand report and G Master action

    Earlier this year, Sony announced a trio of new lenses dubbed G Master, which include the Sony FE 24-70 F2.8 GM, the Sony FE 70-200 F2.8 GM and the Sony FE 85mm F1.4 GM. These three lenses helped to fill noticeable gaps near the higher end of Sony’s lens lineup.

    And, no, we didn’t Photoshop in that gap in the lens lineup above just to make a point.

    CP+ 2016: Sony stand report and G Master action

    The G Master lenses are chock-full of new and advanced technologies meant to maximize image quality, autofocus speed and accuracy, durability, and bokeh. Let’s take a look inside…

    CP+ 2016: Sony stand report and G Master action

    Here’s the 24-70mm F2.8 GM lens cut in half. This lens comprises 18 elements in 13 groups, and features three aspherical elements, including an extreme aspherical (XA) element – more on that later. An ED (extra low dispersion) and Super ED glass element help minimize chromatic aberration while maintaining high resolution and bokeh characteristics. We believe it – our initial samples show very well-controlled chromatic aberration, and bordering on eye-popping sharpness even on a 42MP sensor, when shooting this lens wide open.

    A 9-bladed aperture helps confer a circular shape to out-of-focus highlights, but it’s the autofocus system in this lens that most excites us. A Direct Drive SSM (super sonic wave motor) positions a relatively small group of focus elements accurately and quickly, and when we say quickly we mean with nearly unprecedented speed for this type of lens. We’ve become fans of Direct Drive SSM for AF ever since we saw the speed it confers in the FE 35mm F1.4. Focus, including continuous tracking, is nearly instantaneous on this 24-70 GM, which is fairly unexpected considering its counterparts in the DSLR arena. Focus is also both smooth and quiet, making it a great lens for video as well as stills.

    CP+ 2016: Sony stand report and G Master action

    The new XA (extreme aspherical) element is claimed to reduce aberration and deliver high resolution throughout the entire zoom and aperture range, across the entire frame. Sony claims to have achieved this via extremely high surface precision, maintained to within 0.01 micron tolerances. This should help reduce imperfections that can lead to onion-ring bokeh, typically an issue with aspherical lenses. 

    And speaking of high precision, Sony claims to iterate their internal development of optical design by looking at actual lens MTF performance at 50 lines/mm. That doesn’t mean the lens only resolves to 50 lines/mm, it means that Sony’s threshold for acceptable performance in designing these lenses is quite high. Judging from the sharpness wide open on an a7R II, we’re inclined to believe it’s working for Sony.

    CP+ 2016: Sony stand report and G Master action

    Sony has also recently announced the FE 85mm F1.4 GM, shown here cut in half. This lens comprises 11 elements in 8 groups, and features a new XA (extreme aspherical) element as well as three ED (extra low dispersion) elements that help optimize both resolution and smooth transitions to out-of-focus areas. It’s also got a ‘Nano’ anti-reflective coating on its front element to reduce flare and ghosting, particularly useful for maintaining contrast in backlit portraits. 

    The 85mm GM lens utilizes a ring drive SSM (super sonic wave motor) to drive the lens’ large, heavy focus group. In other words, this lens is much like some of its DSLR counterparts in terms in focusing speed – very fast, but not quite as fast – in our initial impressions – as Sony’s own Direct Drive SSM combined with a relatively small focusing group in the 24-70mm F2.8 GM. Two position sensors support accurate positioning of the focus elements, which should ensure accuracy of focus.

    CP+ 2016: Sony stand report and G Master action

    Particularly nice is the 11-blade circular aperture in the 85mm F1.4 (and 70-200mm F2.8) GM lenses. The more blades you have, the more circular the aperture remains even when stopped down significantly – especially with the curved blades typical of almost all lenses today. Most modern lenses have between 7 and 9 blades these days, with 9 blades being reserved more pro-level lenses. 11 takes it a step further and, indeed, the opening retains a circular, less polygonal shape as you stop down (here it is in action). This should ensure circular out-of-focus highlights and increased quality of bokeh, even at smaller apertures.

    And why go from 9 to 11 blades, skipping 10? Odd numbers of aperture blades are generally better for their more favorable sunstar rendition, creating sunbursts with twice the number of rays as aperture blades when stopped down. Even-numbered designs only create sunbursts with as many rays as aperture blades, so while a 10-blade aperture would produce 10-ray stars, an 11-blade aperture would produce 22-blade stars. Of course, longer focal lengths and circular aperture designs are less prone to creating sunstars at all – and we have no idea if this was the actual thinking behind the choice – but it’s still nice to see the general trend toward odd numbers of aperture blades.

    CP+ 2016: Sony stand report and G Master action

    Pictured here is the new FE 70-200mm F2.8 GM OSS telephoto zoom lens Sony recently announced, cut in half of course. This lens, like the 24-70mm GM lens, features XA, Super ED, and ED glass elements to help achieve high resolution and desirable bokeh characteristics. It’s got 23 elements in 18 groups. A ‘Nano’ anti-reflective coating ensures reduced flare and ghosting. An additional fluorine coating to the front of the lens help keep it clean, and the lens is dust and moisture resistant.

    OSS (Optical Steady Shot) is built into the lens, despite the availability of IBIS in a7-series cameras, because for longer focal lengths, it’s beneficial to do a certain amount of the stabilization in-lens, because of how much the sensor would have to move to compensate for even slight angular displacements. The two systems – OSS and IBIS – theoretically work together to provide even more effective stabilization than any one method might provide.

    CP+ 2016: Sony stand report and G Master action

    The autofocus system on the FE 70-200mm GM OSS is quite intriguing: it’s a floating focus system, which sees its debut in an ? lens. This floating system design contributes to its impressive minimum focusing distance of 0.96m, and also helps control aberrations that might otherwise be problematic when focusing at close distances. 

    Pictured on the left is the more traditional ring-drive SSM motor that’s required to drive the large, heavy glass elements typical of this type of lens. The double linear motor of this system, pictured on the right, allows for effective ‘wobbling’ actuation (typically used in contrast-only AF), which is useful when shooting video. The entire focusing mechanism is also very quiet – and smooth – which ensures AF performance is optimized for both stills and video shooting. 

    The 70-200mm F2.8 GM OSS lens also functions with Sony’s newly announced 1.4x and 2x teleconverters, which may somewhat make up for the lack of longer telephoto lenses (for the time being anyway).

    CP+ 2016: Sony stand report and G Master action

    Lifting our heads back up from the tech demos and turning our attention to other things (wait, where’d Rishi go?), we see that in typical trade-show form, Sony’s provided some subject matter for eager attendees to test the latest tech. But if you were to show up to CP+ hoping to capture some model mayhem using the new GM lenses, you’d have to make do with the 85mm F1.4 GM, the only new GM lens available in front of this display.

    And don’t worry, if you’re already missing the lens-cut-in-half thing, you can get your fix when our Editor Barney returns with many more things cut in half later this week. Like nicely packed, and then cut in half (naturally) sandwiches.

    CP+ 2016: Sony stand report and G Master action

    At first glance, the 85mm F1.4 GM looks a little unwieldy on an a7-series camera, but in hand, the pair balance remarkably well. The lens has a pleasingly solid heft to it without feeling too front-heavy. At 820g, it’s significantly heavier than, say, Nikon’s counterpart (595g), but our initial impressions are that the sharpness wide open – even off-center – and lack of chromatic aberration might make the weight more than worth it.

    CP+ 2016: Sony stand report and G Master action

    Beyond the price of a CP+ admission ticket, there’s no charge to try out the new 85mm F1.4 GM – but to get one of your very own, you’ll need $ 1800 when it goes on sale in March. Also of note for video shooters is the ability to de-click the aperture dial for smoother operation.

    CP+ 2016: Sony stand report and G Master action

    Although you’re a little ways away from the real models, you can try out the FE 24-70mm F2.8 GM on some beleaguered Sony reps behind the counter. And though it appears a bit hefty on the smaller a7-series bodies, it balances well – particularly if you have a vertical grip attached. At 886g, it’s not unreasonably heavy, and the extra heft may be well worth it anyway – our preliminary impressions are that this is the sharpest 24-70mm zoom (particularly wide open) we’ve ever seen.

    It will be available in March for $ 2200.

    CP+ 2016: Sony stand report and G Master action

    Last up is the FE 70-200mm F2.8 GM. As you can probably tell from this image, the lens itself isn’t overly large, but it’s definitely got some weight to it. At 1480g, it’s around the weight of Canon’s equivalent lens, which means you’ll really want a grip on an a7-series camera to balance the weight well. The FE 70-200mm F2.8 GM OSS will be available in March, and the price is still TBD.

    Overall, the G Master lenses appear to be solid additions to Sony’s FE lens lineup, potentially addressing the need for professional-level lenses for the system. We’ve shot a few shots with these lenses on a 42MP a7R II, and it’s clear from the sharpness and chromatic aberration results, as well as AF speeds, that Sony is clearly targeting professionals, and high-end enthusiasts, with these lenses. And we expect them to compare favorably against even the best counterparts offered by the stalwarts in the industry. We’ll reserve judgement until we’ve had time to do more rigorous, side-by-side testing, but for the time being, it’s safe to say we’re very impressed.

    Articles: Digital Photography Review (dpreview.com)

  • Video: Hands-on with Sony’s G Master lenses and the a6300 at CP+ 2016

    There are lots of new products vying for attention at CP+ 2016, including Sony’s a6300 and new GM series lenses for its full-frame mirrorless cameras. And they are getting plenty of attention from show attendees, especially those eager to try out the FE 85mm F1.4 GM’s portrait capabilities. We took another look at the a6300 and the GM lenses on display at the buzzing Sony booth in Yokohama. 

    Articles: Digital Photography Review (dpreview.com)

  • Polaroid launches Eyeball panoramic tripod head

    A remote control spinning tripod head that is said to be ideal for shooting panoramas has been launched in the US and UK by Polaroid. The Panorama Eyeball Head fits on a tripod or stands freely on its own feet, and can accommodate DSLRs as well as compacts. The control unit connects with the head via an IR link and manages both the speed and direction of rotation. 

    The head is capable of turning a full 360° and the company says that careful gearing ensures the motion is always smooth. There are five speed modes as well as a mode that provides three fixed viewpoints up to 75° apart. 

    The head is powered by a built-in rechargeable battery that is said to provide up to five hours of standby time, and which can be recharged via a powered USB port. 

    The Polaroid Panorama Eyeball Head costs £44.99/$ 49.99 through Amazon. 


    Press release:

    RIDGEFIELD PARK, NJ – The versatile Polaroid remote-controlled 360° panorama eyeball head accessory is a compact, portable freestanding mini tripod that can also be placed on a tripod, slider or even selfie stick. Designed for Polaroid cameras, other small popular cameras and SLRs, the Polaroid remote-controlled 360° panorama eyeball head is ideal for creating the perfect panoramic video or picture. IR remote controls offer five speed modes, clockwise and counter clockwise rotation, as well as a triangle mode up to 75°.

    Panoramic Shooting Made Plenty Fun

    For the contemporary videographer, being able to capture expansive panoramic vistas without any shake or distortion is an absolute must. Thankfully, the Polaroid remote-controlled 360° panorama eyeball head delivers effortless and precisely controlled results. It is compatible with a range of action cameras such as the Polaroid Cube lifestyle action camera line and smaller digital cameras (with ¼” threaded hole). Attachment comes included.

    Turns on a Dime – or Quarter

    The Polaroid remote-controlled panorama eyeball head rotates your camera in its place, clockwise or counterclockwise, for smooth shooting action. Users can easily control the turning degree from 0 to 360°.

    Heeds Your Need for Speed

    Using the remote, shooters can also control the exact rotational speed. Press a button to speed up, and press a button to slow down. And thanks to finely calibrated gears, the action always remains perfectly smooth.

    Functions Free or Mounted

    At the top, a ¼” threaded screw connects to a wide variety of cameras. A padded platform prevents motion-related scratches. At the bottom, a ¼” threaded hole accepts tripod and slider connections for greater application flexibility.

    Runs on Built-In Battery

    To make this already compact and pocket-sized head as portable as possible, the built-in battery is rechargeable from any USB port or power outlet. A single charge provides five hours of standby and over three hours of non-stop runtime.

    The Polaroid remote-controlled 360° panorama eyeball head accessory is available now for $ 49.99.

    Articles: Digital Photography Review (dpreview.com)

  • Macphun offers Aurora HDR Pro 3-month payment plan

    Macphun has announced a new 3-month payment plan for Aurora HDR Pro, the image editing application for Mac OS X it launched in November. Rather than requiring the full $ 99 USD price at the time of purchase, the payment plan allows users to pay $ 33 per month for three months, while still gaining immediate access to the software license.

    According to Macphun, Aurora HDR has been downloaded more than 150,000 times since its launch. The payment plan doesn’t involve a subscription and does not charge interest. The company’s ‘bonus of the month’ gift to customers is also provided to users who opt for the 3-month installment.

    The payment plan is now available through the Aurora HDR website.

    Articles: Digital Photography Review (dpreview.com)

  • Smart Move: Domino Loft Maximizes Space in Micro Apartments

    [ By Steph in Design & Fixtures & Interiors. ]

    domino loft 1

    A 500-square-foot condo feels a lot larger when you can manage to fit a bedroom, guest bed, dining area, work space and closet in one tiny room without cluttering every possible surface. To prove that it’s possible, the designers at ICOSA teamed up with Peter Suen to make the most of a very modestly sized residence in San Francisco’s Financial District, creating a clean, contemporary, adaptable solution that translates to other small spaces.

    domino loft 2

    domino loft 3

    The Domino Loft is the result of testing a wide variety of space-saving features within the limited apartment, which has high ceilings, but only one room to work with aside from the kitchen and bathroom. The designers tried drop-down ceilings, movable walls and other more complex ideas, but ultimately settled on the tried-and-true loft concept as the simplest and most effective way to maximize every inch of available space.

    domino loft 4

    domino loft 5

    The room-within-a-room features a partially enclosed space topped with a sleeping loft, which is accessible via sliding library ladder from the closet area. Inside, a thin and light bed comes down from the wall, and its bottoms surface acts as a whiteboard when stowed away. There’s a built-in bench next to a fold-down dining table, a standing desk and lots of storage. The closet fits an impressive number of shoes and offers drawers as well as space for hanging garments.

    domino loft 6

    domino loft 7

    Made of concrete panels, wood slats, metalwork and custom cabinets, the components were fabricated off-site in an Oakland workshop before assembly within the apartment.

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    [ By Steph in Design & Fixtures & Interiors. ]

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