Никто еще не снимал АА фильтр со своих Д800/Д800е? Очень интересно было бы взглянуть на картинки...
заинтересовался хот-род модом еще во времена д200, но так и не осуществил. Сейчас снова захотелось)))
"Most consumer DSLR cameras have an OLPF. Nikon recently made news when they announced they would sell the Nikon D800 without an OLPF as a D800e. Nikon isn't exactly selling a camera without an OLPF, though. To make manufacturing easier, they have one OLPF layer displacing light one directlon, and then another displacing the light in the inverse so that the light ends up back where it started. It was easier for them to do this rather than make a completely different sensor.
However, our guess is that Nikon customers who try to test the difference between the Nikon D800 and D800e will be hard pressed. With a pixel pitch of 4.88 microns, the sensor is near the airy disk limit. The 36.3 megapixel sensor is probably beyond the limit of many lenses. However, the fact that Nikon has chosen to sell a more expensive version D800e without the OLPF lends credence to our long standing opinion that the OLPF is, in general, an unwanted thing for most camera uses. No medium format back camera has one because those customers wouldn't buy it. We suspect that the use of the OLPF in consumer DLSR's is more of a marketing concern where they don't want someone posting a picture of a test chart online showing how a camera without an OLPF could exhibit moire. In most real life photographs, moire isn't an issue.
When we perform an HR conversion, we remove the OLPF and ICF stack and replace it with a new ICF-Only. This gives the camera better resolution capability. Of course, you also need a good enough lens to see the results and everything else in the system (camera, lighting, lens, technique, target, etc) need to be operating correctly. When one takes a picture, the camera needs to start with the correct optical information. By the time the user sees something on their computer screen, the optical data has been transformed in many ways such as adjustments for dark level, dead pixels, hot pixels, de-noising, sharpening, white balance, debayering and many more steps. However, in our opinion, you always want to start with a clean optical signal. "