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Showing posts with label SLR camera. Show all posts
Showing posts with label SLR camera. Show all posts

Taypes of file formats for Digital Photography

The digital file format a photographer chooses for saving photos is determined by the intended use of the images, the hard drive space the photographer is comfortable with giving up for storage and whether the images will be edited after picture-taking.

JPEG


JPEG stands for Joint Photographic Experts Group. This file format is identified by .jpg at the end of the file name. It is a widely used format that is compatible with all software and hardware.
Most JPEG files are smaller than other file formats because JPEG saves space by compressing data. JPEG is both a file type and a compression type. JPEG compression employs what is termed lossy compression. That is, in saving storage space some image information is lost.The discarded information thrown out is considered a duplicate of information already captured. Although some information is restored when the file is opened for editing, printing, e-mailing or scanning, some information is lost forever.

How to Save JPEG Images For Best Quality

 

JPEG image quality will be suitable for the needs of most amateur photographers and  photographer who knows how to use image-editing software.After editing a JPEG image, the photographer should not save it in JPEG unless that is the final edit. That's because each time a JPEG image is saved, some of the image is compressed and, therefore, some image quality is lost.

 

TIFF

 

TIFF stands for Tagged Image File Format and has the file extension .tif. For the photographer who wants no loss of image data and, therefore, a higher quality unedited photo than JPEG offers, TIFF is the way to go. TIFF is compatible with a lot of hardware and sofrware. The drawbacks of TIFFare its very large files and that it is usually offfered only on DSLRs and high-end compact cameras.

TIFF files can be compressed using LZW (Limpel-Zev-Welch) compression. LZW compression is termed lossless, which means that no image information is lost. However, it is suggested that compression of TIFF images be limited to illustrations. Do not use it for color photos.


RAW

 

RAW. The RAW file extension is .raw. It is an alternative to TIFF. Even though TIFF files retain all the information captured by the camera, they do make use of in-camera processing. RAW files, on the other hand, retain all image date without using in-camera processing. RAW images are, therefore, unprocessed images that contain all the data captured by the camera's sensor.
Working with RAW is time-consuming, however, because all images need post-shooting processing. But RAW is the universally accepted file format for most professional photographers. They use it because it gives them complete control over how their images will look. But there is no universal RAW format. That is where DNG comes in.

 

DNG

 

DNG stands for Digital Negative and its extension is .dng. This format was developed by Adobe Systems in an attempt to establish a universal file format for storing RAW files for posterity. Since most RAW software is manufactuer-specific, Adobe has developed a RAW system that is not camera-specific.

 



information from suite101.com

 


 

 




Infrared Photography

Exposure setting 

All digital cameras I know measure the light through the lens. While this means that the light reaching the metering sensors is already filtered to IR only, there is still dependency on camera type: most non-SLRs use the CCD itself to evaluate the exposure, while current SLRs have dedicated metering sensors for which some of the light used for viewing is diverted.
This distinction is quite meaningful. It means that in non-SLR you can usually trust the exposure automation — as long as the metering system is capable of doing its job at very low light levels. It should be: a typical IR exposure with the R72 filter corresponds to exposure value of EV 3, while most cameras can cope with EV zero or close. Even so, however, you will be probably better off applying a negative exposure compensation, usually close to -1 EV, to avoid red channel overload, described below.
In SLRs, a separate light sensor does the metering; its sensitivity to the IR may be entirely different than that of the CCD imager (with any IR-blocking filters in front of one or the other accounted for); therefore you may have to apply a significant exposure compensation to get things right. A few test shots should be enough to establish the value appropriate for a particular camera. For example, in bright sunlight I can quite reliably shoot IR with the Olympus E-510 in the autoexposure mode, but I have to apply a +5 EV compensation.
Red channel overload. When setting the exposure compensation (SLR or not), you have to aim for a picture which will look like it is underexposed, too dark. This is because practically whole image information goes into just one of the RGB components: red, and you have to keep that component from saturation (i.e., running out of range). If your camera can display a brightness histogram for individual RGB components, make sure that the red one does not hit the upper limit. Otherwise use -1 EV or so of negative exposure compensation, adjusting this correction as you learn your camera/filter combination. 
Your exposures will be quite long: an IR filter combined with the camera's anti-IR one will let through less than 0.1% of the incoming light. A bright scene, requiring 1/500 s at F/8 in visible light will need about 1 s or longer at F/4 on most cameras. Not only this asks for using a tripod, but, if the air is not quite still, there will be a blur in the foliage, grass, water reflections, etc. This is not necessarily a bad thing, and it may add an extra feel to the image.  

Fogging
Certain cameras or lenses may exhibit some fogging, or image areas with extra exposure . This may be due to light scattered from inner surfaces of the lens, or to some peculiarities of anti-reflective lens coating which was not really designed for infrared. Sometimes the blackness of internal surfaces of the lens tube or mirror chamber may be "not black enough" in infrared.
Sometimes it happens to all cameras of a given model, sometimes — just to a particular specimen or a particular lens. Camera makers are not worried about this: very few users ever venture into the IR realm, and this is a mass market after all. There is no way to avoid this problem; once again, check an IR filter on your camera/lens combination before buying.
Note to SLR users: regardless of that effect, the image may be fogged, or otherwise affected, by the light entering through the viewfinder in spite of the raised mirror) and reaching the sensor after being scattered around the mirror chamber. To avoid that, close the eyepiece shutter before the exposure, or use the included eyepiece cover (or, at the very least, shield the eyepiece with your hand or hat). Users of non-SLR cameras, obviously, do not have to worry about this

Focusing
The focal length of your lens (and therefore the proper focus setting) depends on the wavelength. Lens makers try to keep that dependency to a minimum (achromatic lenses), but only within the visible light spectrum. A lens focused in visible light will be somewhat off-focus in infrared. Many film-era lenses had a separate focus marker on the barrel, to be used in infrared photography.
With autofocus, like with autoexposure, the outcome depends on the type of camera, although the difference is not as drastic. (Remember, we are talking about non-modified cameras here, where an IR filter is used on the lens.)
Non-SLR cameras have an easier job here. Autofocus is performed in the image sensor plane, by contrast detection. This means the circuitry will properly detect when the image is in focus, regardless of the light type. There may be a problem with the amount of light available for the job, but not with its kind; the AF action may be slower and less reliable, but there will be no systematic shift. If your camera is capable of autofocusing in low light down to EV 0 or not much above, you'll be just fine. Sort of.
Just in case, I would recommend taking more than one picture, every time forcing the camera to re-focus. This will increase your chances of getting at least one properly focused image.
In SLRs the AF is done by dedicated sensors behind a system of mirrors. These sensors are at the same effective distance from the lens as the imager. This should, in principle, work OK, as both the AF sensors and the imager are getting infrared light only. There may be, however, some inaccuracy caused by the fact that both sensors are receiving somewhat different kind of infrared (remember the anti-IR filter on top of the imager!), so both focus planes will be shifted with respect to each other: what the AF sensor will see as in focus, the imager may see somewhat out-of-focus.
The difference is not as large as the one between visible and IR light, so we just have to live with this (IR-adapted cameras, without a filter on the lens, face much more of a problem here). Just in case, stepping the lens down for more depth of field, is a reasonable precaution.
Some SLRs with the Live View feature offer an additional AF-by-imager mode. In that case, the system works exactly as in a non-SLR camera, just fine — as long as the camera does not do the final focusing, just before opening the shutter, using the "regular" AF sensors.
Manual focusing by scale is not really useful here, although with a bit of patience you may find the right setting for a given lens used for landscape shooting. If in doubt, try setting focus a little closer than the actual subject distance: at the equivalent focal length of 50 mm use about 4-5 m instead of infinity — but this actually depends on the particular lens.
Depth of field may, to a large extent, help masking the lack of proper focus. In case of problems, try to use wide zoom settings and shoot in aperture priority at F/8 or so; this may help.
You can run but you can't hide: at small apertures (large F-numbers) the image resolution is negatively affected by diffraction effects. This effect is more visible (i.e., starts at larger apertures) in infrared. Its magnitude depends on the ratio of the (absolute) aperture size to the average wavelength of light used for the image. That wavelength is about 50% more for near-infrared than for visible light (850 nm or so versus 550 nm; remember that IR wavelength is limited by the anti-IR filter), hence the difference in usable apertures will be about one F-stop, maybe a bit more. This means that if you could  use apertures up to F/11 in visible light (with a given lens), in infrared the limit will be F/8 or F/7. Still, it is often easier to live with diffraction than with an out-of-focus image.
While smaller imagers suffer from this at lower F-numbers, they also show more depth of field; both effects exactly compensate each other. 







information from wrotniak.net

DSLR camera by Yaniv Berg

The unique DSLR photo camera concept looks really like a cylindrical smoking pipe. It’s designed by Yaniv Berg, a designer from Israel. From the unique shaped  photo camera, it’s not hard to see the photo camera is inspired by retro reflex photo camera, for instance, the horizontal LCD viewfinder on the top of the photo camera, which allows you to capture images from low angles. No doubt, the way to hold the photo camera also can help you take clear photos.
Unfortunately, the digital single lens reflex photo camera is just a design concept. We have no idea whether the DSLR  photo camera will be on the market.



information from gadgetsin.com

Military camera - Canon OD F-1 Camera

Official model name: Canon ODF-1, officially launched in January, 1978. It has never been sold outside the main land of Japan. Total quantity produced was 2002 units. This is a limited edition  based on a revised Canon F-1body configuration. Most external parts are finished in olive drab (OD) military color. It was sold specifically in mainland Japan only. The set included a wide strap and soft case also finished in olive drab. This setup is the most complete seen so far from any sales. It looks so beautiful... Hey, this is tempting enough, I have the urge inside to ask - how much would this photo camera cost ?
Technical Specification
FORMAT: 24 x 36 mm; DIMENSIONS:
146.7 x 99.5 x 49.5 mm
WEIGHT: weighing 845 g (Body only)
LOADING: Multi-slot spool, emulsion-in winding
LENS MOUNT, COUPLING: CANON breech-lock bayonet, FD coupling
PENTAPRISM: Interchangeable prism SLR
MAG.: 0.77x w/50mm lens  
VIEWFINDER INFORMATION: Meter Needle, Following Needle, Battery Check Mark and Shutter Speeds
FIELD OF VIEW: Vertically 97%; Horizontally 97%
RANGE-FINDING AIDS: Split-image/Microprism (E) Screen standard, plus 8 other user-interchangeable screens.
SHUTTER: Mechanical, dual roller focal plane
CURTAIN: Metal blades
SHUTTER SPEEDS: B 1 2 4 8 15 30 60 125 250 500 1000 2000
BATTERY: H-D Mercury cell, 1.35V S
SELF TIMER: Mechanical, 10 sec.
SYNC: X, FP
FILM TRANSPORT: Stroke: 139°, Standoff: 30°, Short-stroke winding OK, Power winder F, Motor Drive MA, and Motor Drive Unit usable
FRAME COUNTER: Additive
MULTI-EXPOSURE: Yes, via Rewind button
REWIND: Manual crank rewind after pushing automatic resetting rewind button.
EXPOSURE MODES & METERING: TTL, CdS, center area (12%) maximum aperture match needle metering. Metering angle: 18% w/50mm lens. Range: EV 2.5 to 18 (1/4 sec., f/1.2 to l/2000, f/11) with f/1.2 lens at ISO 100.
FILM SPEED RANGE ISO (ASA): 25 to 3,200 in 1/3 stop intervals
BATTERY CHECKER: ASA100;1/2000 needle indicator
MISC. SPECS.: The OD finish is the same quality as the black finish of the normal Production unit of the F-1.

information taken from mir.com.my

Child of Ferrari and Hasselblad - Hasselblad H4






 For more than 6 decades Ferrari as well as Hasselblad are renowned for technological innovative solutions, passion for excellence and an extraordinary sense of style. Based upon that mutual and absorbing passion, Ferrari and Hasselblad partner in the launch of this new generation of H4 cameras.

Hasselblad H4 camera Ferrari


The H4D Ferrari Limited Edition is finished in Ferrari’s unique color “rosso fuoco”, and bears the legendary Racing Shield. The photo camera, which comes with an 80mm lens, is presented in an exclusively designed and engineered box with a glass top equally labeled with the distinctive Ferrari Racing Shield.  Dual layers, one for the camera, with the lens and accessories housed in a separate lower level, are lined with a soft and rich material. This striking case is housed in a special handmade case and therefore is ideal for both storage and display. This brand new model is dedicated to the new generation of photographers looking for the ultimate image quality, and will be produced in 499 units.

info: stupiddope.com

LIMITED Rollei 35





Bring back the 60s style with the world’s smallest camera, the Vintage Rollei 35 Photo Camera. The limited edition photo camera is distributed exclusively in Italy by Mafer and is available in 38 different versions.


The photographic camera can be customized, so in case you have a certain vintage design in your head go ahead and also, you can specify the type of lens you want. The Vintage Rollei stands true to its name with its titanium structure and a vintage style operation of a mechanical movement on a 135 film.

The designs offered by the company are classy as well as eye-catching. Our personal favorite is the gold finished photo camera which has 1,000 Swarovski crystals embedded on its body. This one here will cost you 5,800 Euros. And if you do not wish to go for something so loud and expensive you can buy the classic version which comes for 4,500 Euros.

text from www.therichtimes.com



GOLDEN EAY - PENTAX LX


It was March 16th, 1981, one year after the introduction of the Pentax LX. The ten-millionth Pentax SLR  photo camera, an LX, came out of AOC’s main plant in Mashiko and was given to the chief designer, then chairman of Asahi Opt. Co. Ltd. Minoru Suzuki. In order to celebrate this 10 million event, on August 25th, 1981 a limited edition "LX Gold" was introduced. It was 18 carat gold plated with brown leather (also-called lizard skin or snake skin) and was equipped with an SMC Pentax f/1.2 50mm lens also with brown leather and gold finish. All dark details of the LX Gold are dark-brown instead of black, including the front lens ring and film chamber, with only the film pressure plate and the small watch curtain in black. Of course, the natural titanium shutter curtains remain unchanged. Also a brown lens cap and everready case were provided with the LX Gold. The package included a wooden box with red lining and white silk gloves to handle the camera without leaving fingerprints on the sensitive gold plating. Both the photo camera and the case are provided with golden carton boxes sporting 10million logo and 1981 lettering.

Only 300 pieces of the LX Gold were manufactured, 200pcs for the Japanese home market and 100pcs for the international market. Serial numbers for the LX Gold ranged from XM001 to XM300 (XM meaning ten million). Sales started in November 1981 at 850,000 Yen, but not all of them, were sold, as some were either given to Pentax importers worldwide or became prizes for photo contests. In 1983, Mr. Greg Peck won an LX Gold as first prize in a photo contest held by British magazine Camera Weekly. Mr. Peck was already a Pentax LX user and member of the Pentax Club UK. As far as I know, today in Italy there are only three LX Gold cameras, two of them being owned by AOHC members and the third one gifted by Api to a sales representative on occasion of his retirement after many years of service with them. The LX Gold XM028 was also shown at 5th Pentax Day. An American friend of mine owns another one (XM011). Apparently, the LX Gold for the US market had a different type of leather, maybe for import laws about leather of endangered species.
information from  http://photo-photo4u.blogspot.com