CompuServe Thread

#Flicker Flustered

10 messages in this thread
#111562From: Nancy PriceAug 26, 1993 2:58 PM
I have yet to install "MagicWB", even though I have been ready to do so for sometime. It is the Interlace flicker that bothers me. I have the same problem with "Autopilot." Is there any way at all to fix this problem without going out and buying a High Res monitor? I am using a TV/RGB monitor combination and I find the flicker very aggravating. Nancy
#111617From: Andrew PorterAug 27, 1993 10:17 AM
NO. The flicker is a result of the frequency that the monitor & computer run at. The only way is to buy a MultiScan or VGA monitor AND a scan doubling device (FlickerFixer). The Commodore display enhancer is on sale through mail order for $130 which is the losest I have ever seen it. You could probably get a second hand VGA for about the same or less. The only other solution is to reduce the contrast and choose "flicker friendly" colours. Andrew Porter
#111679From: Larry ShanahanAug 28, 1993 8:43 AM
Nancy, If you've got an AGA Amiga, the EURO 36 interlace modes have much more bearable flicker. Personally, I found that if you just force yourself to look at an interlace screen for several weeks, you get used to it. I use interlace exclusively. It took two or three weeks to get used to it, and now I don't notice it anymore. It also helps if you avoid using a lot of one-pixel horizontal lines, and don't use highly saturated (bright) and contrasting colors. Stay cool B-) -Larry
#111727From: Nancy PriceAug 28, 1993 4:51 PM
Thanks Larry, however, your reply was much too technical for me. What is the EURO 36 interlace mode and what do you mean by avoiding a lot of one- pixel horizontal lines? Sorry I'm such a thicky! Oh yes, I do have an AGA machine. A 'trying to be laid-back' Nancy
#111955From: Larry ShanahanAug 30, 1993 6:35 PM
Nancy, Ronald gave a fabulous explanation of Interlace, so I'll spare you a re-hash, except to say that one-pixel lines, when there are a lot of them, make interlace flicker more noticeable. If you look in your Sys:Storage/Monitors drawer, you'll see a bunch of icons that look like TV sets. Each one represents a different screen mode you can add to your system. The name under each is the mode name. you drag these icons over to your Devs:Monitors drawer, reboot, then open the ScreenMode Prefs Editor. You'll see the names of the modes added to the list in the window, and can select whatever screen mode you want to use. EURO 36 is one of the modes available. Its "scan rate" (i.e. how fast the monitor draws the screen) is faster than the default modes, so there's less noticeable flicker. Stay cool B-) -Larry
#112287From: Nancy PriceSep 1, 1993 5:33 PM
Larry… I inadvertently deleted Ronald's very detailed message on flicker, so if you're still out there Ron, thanks for going to all that trouble, I appreciate it. And Larry, I shall certainly give your suggestion a try…thanks! (Later that evening) Well I tried the Euro 36 in all the modes and they all produced a triple image effect. I don't quite know what to do next. Nancy (who's not feeling too cool at the moment! :-))
#112384From: Ronald B. RomineSep 2, 1993 4:12 AM
Nancy >> Well I tried the Euro 36 in all the modes and they all produced a triple image effect. I don't quite know what to do next. << When using the Euro36 mode, some monitors need you to adjust the Vertical Hold knob. The knob controls what vertical speed the monitor should be set to display at. This speed is normally 60-Hz, but can be turned down to 50-Hz and upto 73-Hz. The Euro36 uses a 72-Hz speed. Some monitor allow you to turn the knob "midway" and will display at both 60Hz & 72Hz (or 50Hz & 60Hz). The screen may "hop" each time it jumps between two speeds, but this is normal. Your monitor might only handle 50Hz & 60Hz vertical speeds. If so, you will not be able to use the Euro36 mode. Ron. – ap'ing with AP. (Eagles may fly, but weasels aren't sucked into jet engines.)
#111932From: Peter JonesAug 30, 1993 12:42 PM
Larry, Why don't you use the DBLPAL or DBLNTSC high res no flicker mode. You get similar resolution and….no flicker. Pete Jones, flying on AutoPilot from Brussels, Belgium
#111956From: Larry ShanahanAug 30, 1993 6:35 PM
Pete: But DBLPAL and DBLNTSC don't have Super-HiRes Interlace. I like LOTS and LOTS of room for windows. B-) My current EURO 36 WB is 1340×400. And as I said, the flicker doesn't bother me. For any other lurkers out there, I also remembered that flourescent lighting makes flicker more noticeable because those types of lights flicker very rapidly as well, and you get a "strobe" effect. Stay cool B-) -Larry
#111755From: Ronald B. RomineAug 28, 1993 11:33 PM
Interlace flicker is normal for a TV/RGB monitor. It part of the NTSC and PAL video standard. These standards are the "formats" used for drawing and re-drawing the TV's picture. — The screen is actually a large tube (or bulb), with a set of rayguns inside the "backend" — this tube is called a CRT. The inside of the "front" of the CRT (or screen) is coated with a phosphoresent (a chemical that glows when struck by light). Three rayguns (one red, one green, & one blue) start in the top left corner, and fire at the screen moving the raybeams from left to right. This draws a single straight line called a "scanline". After the scanline is drawn, the rayguns reset to the left and drop down to draw the next scan line under the previous, repeating until the bottom of the screen is reached. The rayguns then reset to the top of the tube and repeat. The phosphoresent "spots" the raybeams hit, are called phosphors. The phosphor will glow the color the of light beam that hits it, then slowly fade to black. The three rayguns are aligned to hit the same phosphor, at the same time. By mixing the raybeams' R,B,G beams, you create new colors. Since the phosphor's glow fades, it has to be "re-freshed", either to the same old color, or switched to a new color. If you wait too long before re-freshs, the human eye will see the fade. Under the NTSC standard, uses 525 scanlines drawn from left-to-right at a speed of ~15-kHz (15,000-Hz). The top-to-bottom speed is 60-Hz. This was still a little slow to hide the fade/re-fresh with TVs. The answer was to interlace the screen. This resulted in 262.5 scanlines being draw first then a reset to the top of the screen and the other 262.5 scanlines being drawn inbetween the first set. One "field" was the all the even numbered scanlines, and the other field was the odd numdered. Scanlines 1,3,5,etc. were drawn first, then 2,4,6, etc were drawn after the first set was. This interlacing worked for TV. NTSC-interlacing, fails with computers. The computer generates colors that are unused under the NTSC standard, being too bright. These bright phosphors fade faster than the duller ones, faster than the raygun can re-fresh them. Second, the computers draws the screen in finer detail, with the picture being "frozen" instead of moving to different scenes. The human eye sees the two fields, the differences between their brightness levels, and the detect refresh. By using dull & mid-bright colors, the color fade is less detectable. And "glare screens" can help hide much of the flixer. To fix this limit (flickering) some have switched to "VGA" monitors. These monitors refresh at ~31-kHz (31,000-Hz) and normally use one field of 480 scanlines. The VGA monitor can be interlaced to 960 scanlines, but the flicker then becomes as ugly as NTSC interlace. However, most VGA monitors can run only at ~31-kHz — not the ~15-kHz NTSC standard. This is like having a modem that runs at 9600bps, but not lower at 2400bps. Both the computer and the monitor must be "VGA" compatible to use "VGA." Some monitors can run at both NTSC and VGA speeds, and a few higher speeds, but they will cost more. Ron. – ap'ing with AP. (Eagles may fly, but weasels aren't sucked into jet engines.)