mirror of https://github.com/tLDP/LDP
fix minor typos in XFree86-Video-Timings-HOWTO.xml
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@ -148,7 +148,7 @@ here.</para>
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<para>In X.org (and for 4.0.0 and later versions of the now-obsolete
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<para>In X.org (and for 4.0.0 and later versions of the now-obsolete
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XFree86) you no longer have to generate modelines at all under most
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XFree86) you no longer have to generate modelines at all under most
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circumstances. Instead they are computed internally by the server at
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circumstances. Instead they are computed internally by the server at
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startup time, based on the resolution you specify in the the monitor
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startup time, based on the resolution you specify in the monitor
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capabilities your X server gets via an EDID query to the monitor (and
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capabilities your X server gets via an EDID query to the monitor (and
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the Modes part of the Screen section part of your X configuration
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the Modes part of the Screen section part of your X configuration
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file, if you have one). </para>
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file, if you have one). </para>
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@ -209,7 +209,7 @@ installation; it may be that most of the factory mode lines are OK and
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you just happened to default to one that doesn't fit your
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you just happened to default to one that doesn't fit your
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hardware. Instead, cycle through all your installed modes with
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hardware. Instead, cycle through all your installed modes with
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<keysym>CTRL-ALT-KP+</keysym>. If some of the modes look OK, try
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<keysym>CTRL-ALT-KP+</keysym>. If some of the modes look OK, try
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commenting out all but a 640x480 and check that that mode works. If it
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commenting out all but a 640x480 and check that the mode works. If it
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does then uncomment a couple of other modes, e.g. an 800x600 and a
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does then uncomment a couple of other modes, e.g. an 800x600 and a
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1024x768 at a frequency that your monitor should be able to
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1024x768 at a frequency that your monitor should be able to
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handle.</para>
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handle.</para>
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@ -304,7 +304,7 @@ only every second line is swept during one half-frame and the others
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are filled in during a second half-frame.</para>
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are filled in during a second half-frame.</para>
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<para>Starting the beams at the top left of the display is called the
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<para>Starting the beams at the top left of the display is called the
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beginning of a frame. The frame ends when the beams reach the the top
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beginning of a frame. The frame ends when the beams reach the top
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left corner again as they come from the bottom right corner of the
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left corner again as they come from the bottom right corner of the
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display. A frame is made up of all of the lines the beams traced from
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display. A frame is made up of all of the lines the beams traced from
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the top of the display to the bottom.</para>
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the top of the display to the bottom.</para>
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@ -647,7 +647,7 @@ constrains the sharpness of intensity and color changes on the screen.
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A high bandwidth means smaller visible details.</para>
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A high bandwidth means smaller visible details.</para>
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<para>Your monitor uses electronic signals to present an image to your
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<para>Your monitor uses electronic signals to present an image to your
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eyes. Such signals always come in in wave form once they are
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eyes. Such signals always come in wave form once they are
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converted into analog form from digitized form. They can be
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converted into analog form from digitized form. They can be
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considered as combinations of many simpler wave forms each one of
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considered as combinations of many simpler wave forms each one of
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which has a fixed frequency, many of them are in the Mhz range, eg,
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which has a fixed frequency, many of them are in the Mhz range, eg,
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@ -904,7 +904,7 @@ VFL, multiply that by 1.05 to get 740 ticks.</para>
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<para>The 4:3 is not technically magic; nothing prevents you from using a
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<para>The 4:3 is not technically magic; nothing prevents you from using a
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different ratio if that will get the best use out of your screen real
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different ratio if that will get the best use out of your screen real
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estate. It does make figuring frame height and frame width from the
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estate. It does make figuring frame height and frame width from the
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diagonal size convenient, you just multiply the diagonal by by 0.8 to
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diagonal size convenient, you just multiply the diagonal by 0.8 to
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get width and 0.6 to get height.</para>
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get width and 0.6 to get height.</para>
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<para>So, HFL=1176 and VFL=740. Dividing 65MHz by the product of the two gives
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<para>So, HFL=1176 and VFL=740. Dividing 65MHz by the product of the two gives
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