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put a datum flag on .75 +/- .01. make the holes in position to that datum by whatever tolerance you want them to do.
can't we consider the width size .75 +/- .01 and ask manufacturer to maintain half the size for Centerline location ? Ex: .76/2 , .75/2, .74/2 or is it mandatory to show dimension of centerline from one end with tolerance?There's no tolerance for the location of the holes relative to the width. "Their best" is the standard that will be applied.
does it means the dimension for the hole position not needed, if not what will be the tolerance will manufacturer control.Position tolerances of these holes depend on width tolerances and its straightness due to your material's camber.
There are solutions, proposed above, but I was answering the original question, which is why there were solutions proposed above.can't we consider the width size .75 +/- .01 and ask manufacturer to maintain half the size for Centerline location ? Ex: .76/2 , .75/2, .74/2 or is it mandatory to show dimension of centerline from one end with tolerance?
As stated before, datums added to the width and length. A true position with fcf typ on all holes.does it means the dimension for the hole position not needed, if not what will be the tolerance will manufacturer control.
does it means the dimension for the hole position not needed, if not what will be the tolerance will manufacturer control.
Yes, I think so. It looks like datum feature A would be two planar surfaces at the outer ends, with a raised surface between them. The two outer holes could be "B" as a 2X pattern if they're the same diameter, or one could be B and the other C, for B-C. Then the three holes in the center and the outer edges (faces) could be controlled with size and position.So, A primary| B-C | secondary is the way to go? Where A is a planar surface and B and C are the holes shown in the OP's picture.
Then the width could be positioned to |A|B-C|