1461156653-c0bbb6ab-a92e-4d04-b801-6bb1503ef5cf

1. A method to manufacture a workpiece comprising:
directing a first species through a first aperture in a first mask toward a workpiece, said first mask spaced apart from said workpiece, wherein said first species is one of a n-type dopant and a p-type dopant;
directing said first species through a second aperture in a second mask toward said workpiece, said second mask spaced apart from said workpiece, wherein said first species forms a pattern defining a plurality of independent regions surrounded by a processed region and wherein said processed region is a sum of said first species directed through said first aperture and said second aperture; and
directing a second species into said independent regions through a third aperture in a third mask, wherein said second species is an opposite conductivity from said first species.
2. The method of claim 1, wherein said first species and said second species are ions and said directing is configured to implant said first species and said second species in said workpiece.
3. The method of claim 1, wherein each of said independent regions is surrounded by said processed region.
4. The method of claim 1, wherein said directing is configured to deposit said first species and said second species on said workpiece.
5. The method of claim 1, wherein said directing is configured to etch said workpiece with said first species and said second species.
6. The method of claim 1, wherein said processed region encompasses an entirety of a surface of said workpiece except for said plurality of independent regions.
7. The method of claim 1, wherein said second species forms doped regions, each of said doped regions within one of said independent regions and wherein said doped regions and said processed region define a gap therebetween.
8. A method to implant a workpiece comprising:
selectively implanting a first ion species into a workpiece to form a first pattern, wherein said first ion species is selected from the group consisting of an n-type dopant and a p-type dopant;
selectively implanting said first ion species into a workpiece to form a second pattern, said second pattern disposed between said first pattern, wherein said first pattern and said second pattern define a plurality of non-implanted regions surrounded by said first pattern and said second pattern; and
selectively implanting a second ion species into said non-implanted regions, wherein said second ion species is an opposite conductivity from said first ion species.
9. The method of claim 8, wherein said selectively implanting to form said first pattern uses a first mask and said selectively implanting to form said second pattern uses a second mask, and wherein said first mask and said second mask each define at least one aperture.
10. The method of claim 9, wherein said first mask and said second mask are spaced apart from said workpiece.
11. The method of claim 9, wherein said second ion species is implanted using a third mask spaced apart from said workpiece.
12. The method of claim 8, wherein said first pattern and said second pattern encompass an entirety of a surface of said workpiece except for said non-implanted regions.
13. The method of claim 8, wherein said second ion species forms second doped regions, each of said second doped regions being within one of said non-implanted regions and wherein each of said second doped regions, said first pattern, and said second pattern define a gap therebetween.
14. A method to implant a workpiece comprising:
selectively implanting a first ion species into a workpiece to form a first pattern;
selectively implanting said first ion species into a workpiece to form a second pattern, said second pattern disposed between said first pattern, wherein said first pattern and said second pattern define a plurality of non-implanted regions encircled by said first pattern and said second pattern; and
selectively implanting a second ion species different from said first ion species into said non-implanted regions.
15. The method of claim 14, wherein said selectively implanting to form said first pattern uses a first mask and said selectively implanting to form said second pattern uses a second mask, and wherein said first mask and said second mask each define at least one aperture.
16. The method of claim 15, wherein said first mask and said second mask are spaced apart from said workpiece.
17. The method of claim 15, wherein said second ion species is an opposite conductivity from said first ion species and wherein said second ion species is implanted using a third mask.
18. The method of claim 14, wherein said first ion species is selected from the group consisting of an n-type dopant and a p-type dopant and wherein said second ion species is an opposite conductivity from said first ion species.
19. The method of claim 14, wherein said first pattern and said second pattern encompass an entirety of a surface of said workpiece except for said non-implanted regions.
20. The method of claim 14, wherein said second ion species forms second doped regions, each of said second doped regions being within one of said non-implanted regions and wherein each of said second doped regions, said first pattern, and said second pattern define a gap therebetween.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A freestyle peg for a motorcycle, comprising:
a first cylindrical member having an open end and a closed end;
a peg lock attached to said closed end of the first cylindrical member;
a connecting rod, said connecting rod having a proximate end and a distal end, said proximate end extending through said peg lock and attached to said closed end of said first cylindrical member;
a second cylindrical member having an open end and a closed end, said distal end of said connecting rod is attached to the closed end of said second cylindrical member.
2. A freestyle peg for a motorcycle as recited in claim 1, wherein said distal end of said connecting rod is threaded and including a locknut employed to attach the distal end to the closed end of said second cylindrical member.
3. A freestyle peg for a motorcycle as recited in claim 1, wherein said first cylindrical member and said second cylindrical member have respective outer surface areas, and wherein a portion of said areas is knurled.
4. A freestyle peg for a motorcycle as recited in claim 1, wherein the closed end of said first cylindrical member is recessed in said first cylindrical member.
5. A freestyle peg for a motorcycle as recited in claim 1, wherein said closed end of said second cylindrical member has a smooth bore therein and wherein said distal end of said connecting rod extends through said smooth bore.
6. A freestyle peg for a motorcycle, comprising:
a first cylindrical member having an open end and a closed end;
a peg lock attached to said closed end of the first cylindrical member;
a connecting rod, said connecting rod having a proximate end and a threaded distal end, said proximate end extending through said peg lock and attached to said closed end of said first cylindrical member;
a second cylindrical member having an open end and a closed end;
a smooth bore formed in said closed end of said second cylindrical member, wherein said distal end of said connecting rod extends through said smooth bore and is attached to the closed end of said second cylindrical member.
7. A freestyle peg for a motorcycle as recited in claim 6, including a locknut employed to attach the distal end to the closed end of said second cylindrical member.
8. A freestyle peg for a motorcycle as recited in claim 6, wherein said first cylindrical member and said second cylindrical member have respective outer surface areas, and wherein a portion of said areas is knurled.
9. A freestyle peg for a motorcycle as recited in claim 6, wherein a first keyway slot is formed in said connecting rod adjacent said threaded distal end and a second keyway slot is formed in said smooth bore.
10. A freestyle peg for a motorcycle as recited in claim 9 including, a key adapted for insertion into said first keyway slot and said second keyway slot.
11. The combination of a freestyle peg and a motorcycle, said motorcycle having a wheel with an axle cavity, comprising:
a first cylindrical member having an open end and a closed end;
a peg lock attached to said closed end of the first cylindrical member;
a connecting rod disposed in said axle cavity, said connecting rod having a proximate end and a distal end, said proximate end extending through said peg lock and attached to said closed end of said first cylindrical member;
a second cylindrical member having an open end and a closed end, said distal end of said connecting rod is attached to the closed end of said second cylindrical member.
12. The combination as recited in claim 11, wherein said distal end of said connecting rod is threaded and including a locknut employed to attach the distal end to the closed end of said second cylindrical member.
13. The combination as recited in claim 11, wherein said first cylindrical member and said second cylindrical member have respective outer surface areas, and wherein a portion of said areas is knurled.
14. The combination as recited in claim 11, wherein the closed end of said first cylindrical member is recessed in said first cylindrical member.
15. The combination as recited in claim 11, wherein said closed end of said second cylindrical member has a smooth bore therein and wherein said distal end of said connecting rod extends through said smooth bore.