Tetrahedron rack and pinion drive
A spindle assembly drive system that includes a rack unit, a drive gear, a motor, and a plurality of bearings, such that said rack unit laterally moves in a first axis with little or no movement in or rotation about any other axis.
1 . A spindle assembly drive system comprising:
a rack unit, having a plurality of teeth;
a drive gear, engaged to said rack unit, providing a first contact point and a second contact point to said rack unit;
a motor, engaged to said drive gear, providing rotational force to said drive gear; and
a plurality of bearings, configured to operate having at least a third contact point and a fourth contact point engaged with said rack unit, wherein said rack unit laterally moves in a first axis.
2 . The drive system of claim 1 wherein said motor is a servo.
3 . The drive system of claim 1 wherein a motor current corresponding to said motor is utilized to facilitate touchdown force measurement.
4 . The drive system of claim 1 wherein said drive gear further comprises a plurality of rollers operably placed to facilitate precision positional movement of the drive system.
5 . The drive system of claim 1 , wherein said rack unit further comprises means to prevent lateral movement of said rack unit along a second axis.
6 . The drive system of claim 3 , wherein said rollers act in consort with said plurality of bearings to prevent lateral movement of said rack unit along a third axis.
7 . The drive system of claim 1 wherein said plurality of bearings is two bearings, and further wherein said two bearings prevent said rack unit from rotating about said second axis.
8 . The drive system of claim 4 wherein said means to prevent lateral movement of said rack unit further prevents said rack unit from rotating about said third axis.
9 . The drive system of claim 1 wherein the operable placement said rollers prevent said rack unit from rotating about a first axis.
10 . A component pick and place machine comprising:
a means for transporting a circuit board through said machine;
a means for selecting from a plurality of components; and
a plurality of vacuum spindles, each of said vacuum spindles having a drive system, said drive system comprising the system of claim 1 .
11 . A method comprising:
providing a rack unit, having a plurality of teeth;
rotatably engaging a drive gear to said rack unit;
providing a plurality of bearings rotatably engaged with said rack unit; and
moving said rack unit along a first axis by engaging a motor providing rotational force with said drive gear operable with said rack unit;
wherein said plurality of bearings and said drive gear prevent movement of said rack unit along a second axis and a third axis.
12 . The method of claim 11 , further wherein said plurality of bearings and said drive gear prevent rotation of said rack unit about at least one of said first axis, second axis, and third axis.
13 . The method of claim 11 further comprising measuring touchdown force of a vacuum nozzle via a motor current corresponding to said motor.
14 . A drive system comprising:
a motor;
a drive gear, operatively attached to said motor;
a rack unit, engaged to said drive gear, said rack unit further comprising a first roller surface; and
two bearings rotatably engaged to said first roller surface;
wherein said drive gear and two bearings provide at least four support points to said rack unit.
15 . The drive system of claim 14 , wherein said drive gear further comprises at least one roller configured to engage said rack unit.
16 . The drive system of claim 15 , wherein said rack unit further comprises a second roller surface configured to engage at least one roller.
17 . The drive system of claim 16 , wherein said first roller surface and said second roller surface are along opposed faces of said rack unit.