Extraction electrode
09793094 · 2017-10-17
Assignee
Inventors
Cpc classification
International classification
Abstract
The extraction electrode has a pair of sub-assemblies that define a gap. Each sub-assembly has a suppression plate and ground plate secured together in spaced relation by pairs of insulating assemblies. A plate assembly extends perpendicularly from the ground plate. The gap between the subassemblies is set by tabs on a centering fixture extension.
Claims
1. An extraction electrode for an ion implanter comprising a pair of sub-assemblies defining a gap therebetween; each said sub-assembly including a suppression plate of semi-circular shape having a rectangular notch in a side thereof facing a suppression plate of the other of said pair of sub-assemblies, a cover disposed over said notch of said suppression plate and spaced from a cover of the other of said pair of subassemblies to define a slit therewith, a ground plate spaced from said suppression plate and having a notch in a side thereof in alignment with said notch of said suppression plate, a pair of insulating assemblies connected to said suppression plate and passing through said ground plate, said insulating assemblies spacing said suppression plate from said ground plate, a shield secured to said ground plate and disposed within said notch of said suppression plate and within said notch of said ground plate to define a path for an ion beam thereby, and a plate assembly extending perpendicularly from said ground plate.
2. An extraction electrode as set forth in claim 1 further comprising a strap electrically connected at one end to said suppression plate of one of said sub-assemblies for connection to a source of electrical power.
3. An extraction electrode as set forth in claim 1 wherein said shield has a shielding flange disposed over said notch of said ground plate to protect said ground plate from erosion during use.
4. An extraction electrode as set forth in claim 1 wherein each said insulating assembly includes a first shielding cup, a second shielding cup opposite said shielding cup and disposed about said first shielding cup to define a first annular gap therebetween and an insulating standoff secured to and between said first cup and said second cup to define a second annular gap between said insulating standoff and said first shielding cup in communication with said first annular gap to define an optically dense path.
5. An extraction electrode as set forth in claim 1 wherein said plate assembly includes a pair of bores at one end thereof facing said ground plate, a pair of openings transverse to and in communication with said bores, an internally threaded washer within each said opening in alignment with a respective one of said bores, and a pair of socket head cap screws, each said cap screw having a reduced diameter end extending through a respective washer and externally of a respective bore into said ground plate and an enlarged diameter end abutting said washer within a respective opening.
6. In combination an extraction electrode including a pair of sub-assemblies defining a gap therebetween; each said sub-assembly including a suppression plate of semi-circular shape having a notch facing a suppression plate of the other of said pair of sub-assemblies, a ground plate spaced from said suppression plate and having a notch in a side thereof in alignment with said notch of said suppression plate, a pair of insulating assemblies disposed between said suppression plate and said ground plate to space said suppression plate from said ground plate, and a plate assembly extending perpendicularly from said ground plate; a centering fixture extension having a plurality of clamps for clamping said extraction electrode to said extension; and an original equipment fixture secured to said extension.
7. The combination as set forth in claim 6 further comprising a pair of mounting arms secured to opposite ends of said plate assembly of each said sub-assembly and extending laterally thereof.
8. The combination as set forth in claim 6 wherein said centering fixture extension has a pair of tabs projecting into said extraction electrode between said sub-assemblies thereof to set a gap therebetween.
Description
(1) These and other objects and advantages of the invention will become more apparent from the following detailed description taken in conjunction with the accompanying drawings wherein:
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(15) Referring to
(16) Referring to
(17) Each sub-assembly 11 also includes a ground plate 18 spaced from the suppression plate 13. As shown, each ground plate 18 is of semi-circular shape and has a notch 19 in a side thereof in alignment with the notch 14 of a suppression plate 13. As indicated, the outer diameter of the two ground plates 18 of the extraction electrode 10 is less than the outer diameter of the two suppression plates 13.
(18) Referring to
(19) Referring to
(20) As illustrated, each end of the insulating standoff 21 has an annular groove or slot 30 disposed at an acute angle to the longitudinal axis 31 as well as a blind bore 32 disposed on the longitudinal axis 31. Each groove 30 serves to improve the metallic material trap during a plasma process to avoid a short circuit.
(21) In addition, the inner cup 22 has a central aperture 33 in a flat end thereof aligned with one blind bore 32 and the outer cup 24 has a central aperture 34 in a flat end thereof aligned with the other blind bore 32.
(22) Referring to
(23) Referring to
(24) The opposite end of each insulating assembly 20 passes through an aperture 36 in a ground plate 18. As indicated, each aperture 36 has a rounded entrance shoulder 37 so that the outer cup 24 fits against the shoulder 37 to space the suppression plate 13 from the ground plate 18, while the smaller diameter inner cup 22 passes through the aperture 36.
(25) Referring to
(26) Referring to
(27) Referring to
(28) Referring to
(29) Referring to
(30) Each socket head cap screw 50 has a first cylindrical end section 51 of larger diameter than a second cylindrical end section 52 with a reduced diameter central section 53. The smaller diameter second cylindrical end section 52 has an external thread (not shown) and is sized to pass through the washer 49 and out through the bore 48 in the edge of the plate assembly as indicated in
(31) The first end section 51 of each cap screw 50 has a socket (not shown) that receives a tool (not shown) that is sized to pass into the bore 48 and engage in the end section 51 for rotating the cap screw 50.
(32) Each ground plate 18 has a pair of threaded bores (not shown) on the side facing the plate assembly 44, each of which threadably receives an end section 51 of a cap screw 50 that projects from the plate assembly 44 upon rotation of the tool extending through the bore 48.
(33) Referring to
(34) Also, each shield 39 is fitted into the ground plate 18 to provide smooth surfaces therebetween. For example, as shown in
(35) The shielding flange 43 also has a longitudinal cross-section such that the end of the flange 43 that extends into the notch of the ground plate 18 is stepped relative to the end of the flange 43 that extends into the notch 14 of the suppression plate 13. Also, the end of the flange 43 that extends into the notch 14 of the suppression plate 13 is rounded to fit into and complement the rounded shape of the roof 15′ of the cover 15 as indicated in
(36) Referring to
(37) The extraction electrode 10 is, thus, of compact construction and is made with a minimum of parts that can be readily assembled.
(38) Referring to
(39) Referring to
(40) A pair of mounting arms 64 are also secured to opposite ends of the plate assembly 44 of each sub-assembly 11 and extend laterally thereof. As illustrated, one mounting arm 64 is secured to and over the top of the two plate assemblies 44, while the other mounting arm 64 is secured to and below the bottoms of the two plate assemblies 44. Each arm 64 is of conventional structure and need not be further described.
(41) Referring to
(42) Referring to
(43) The invention thus provides an extraction electrode for an ion implanter that is made with a reduced number of parts and an extraction electrode that has an extended life and is of reduced weight.
(44) The invention also provides an extraction electrode that has an improved centering extension fixture for holding and centering the extraction electrode.