Difference between revisions of "E-Beam 1 (Sharon)"

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|picture=e-beam1.jpg
 
|picture=e-beam1.jpg
 
|type = Vacuum Deposition
 
|type = Vacuum Deposition
|super= Brian Lingg
+
|super= Bill Millerski
|phone=(805)839-3918x210
+
|phone=(805)839-7975
 
|location=Bay 3
 
|location=Bay 3
|email=lingg@ece.ucsb.edu
+
|email=dfreeborn@ece.ucsb.edu
 
|description = Four Pocket Electron Beam Evaporator
 
|description = Four Pocket Electron Beam Evaporator
 
|manufacturer = Sharon Vacuum Co., Inc.
 
|manufacturer = Sharon Vacuum Co., Inc.
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The Sharon is a cryo-pumped thin film evaporator with a Temescal four hearth 270° bent electron beam evaporation source. The system incorporates a Commonwealth Scientific Corp. ion source for in-situ sample cleaning. Fixturing in the Sharon will accept any size sample up to 3.5-inch diameter. In addition, a rotation fixture is easily installed which permits adjustable angle, 360° variable speed rotation of any size sample, up to 1.5-inch diameter. This feature is particularly useful for promoting step coverage of irregular surfaces.
 
The Sharon is a cryo-pumped thin film evaporator with a Temescal four hearth 270° bent electron beam evaporation source. The system incorporates a Commonwealth Scientific Corp. ion source for in-situ sample cleaning. Fixturing in the Sharon will accept any size sample up to 3.5-inch diameter. In addition, a rotation fixture is easily installed which permits adjustable angle, 360° variable speed rotation of any size sample, up to 1.5-inch diameter. This feature is particularly useful for promoting step coverage of irregular surfaces.
   
  +
A new fixture allowing up to four - 4" diameter wafers is now installed.
The Sharon is used for the evaporation of high purity metals, e.a. Al, Au, Ni, Ge, AuGe, Ti, Pt etc., for interconnect and ohmic contact metalization for fabrication of III-V compound semiconductor and silicon device fabrication.
 
   
 
The Sharon is used for the evaporation of high purity metals, e.a. Al, Au, Ni, Ge, AuGe, Ti, Pt etc., for interconnect and ohmic contact metalization for fabrication of III-V compound semiconductor and silicon device fabrication.
= Materials Table =
 
For the materials tables and deposition parameters for various materials, please visit the [[E-Beam_Evaporation_Recipes#Materials_Table_(E-Beam #1)|E-Beam Recipe Page]].
 
   
 
= Detailed Specifications =
 
= Detailed Specifications =
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*Deposition Control: Inficon IC 6000, 6 film programs; 37 parameters for automatic or manual deposition control based on a resonating quartz crystal sensor
 
*Deposition Control: Inficon IC 6000, 6 film programs; 37 parameters for automatic or manual deposition control based on a resonating quartz crystal sensor
 
*Ion Source: Commonwealth Scientific Corp., MOD. 2. Kaufman-type, 3cm ion source; beam currents to 100mA at 1000eV
 
*Ion Source: Commonwealth Scientific Corp., MOD. 2. Kaufman-type, 3cm ion source; beam currents to 100mA at 1000eV
  +
*Pieces up to Four - 4" wafers in one run.
  +
*For single wafers: tilt with motorized rotation and sample lowering for higher effective rates, sidewall coverage, angled evaporation.
   
=Documentation=
+
= Documentation =
*[[media:New Operating Instructions Ebeam.pdf|Operating Instructions]]
+
*[https://wiki.nanotech.ucsb.edu/w/images/b/be/EB-1_operation_instructions.pdf Operating Instructions]
  +
= Recipes =
  +
* See the [[E-Beam_Evaporation_Recipes#Materials_Table_(E-Beam #1)|'''<u>E-Beam Recipe Page</u>''']], for the materials tables and deposition parameters for various materials.

Revision as of 08:33, 28 October 2021

E-Beam 1 (Sharon)
E-beam1.jpg
Tool Type Vacuum Deposition
Location Bay 3
Supervisor Bill Millerski
Supervisor Phone (805) 893-2655
Supervisor E-Mail wmillerski@ucsb.edu
Description Four Pocket Electron Beam Evaporator
Manufacturer Sharon Vacuum Co., Inc.
Vacuum Deposition Recipes
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About

The Sharon is a cryo-pumped thin film evaporator with a Temescal four hearth 270° bent electron beam evaporation source. The system incorporates a Commonwealth Scientific Corp. ion source for in-situ sample cleaning. Fixturing in the Sharon will accept any size sample up to 3.5-inch diameter. In addition, a rotation fixture is easily installed which permits adjustable angle, 360° variable speed rotation of any size sample, up to 1.5-inch diameter. This feature is particularly useful for promoting step coverage of irregular surfaces.

A new fixture allowing up to four - 4" diameter wafers is now installed.

The Sharon is used for the evaporation of high purity metals, e.a. Al, Au, Ni, Ge, AuGe, Ti, Pt etc., for interconnect and ohmic contact metalization for fabrication of III-V compound semiconductor and silicon device fabrication.

Detailed Specifications

  • Cryopump: CTI Cryotorr 8F with air-cooled compressor
  • Pumping speed: 4,000 l/sec. for H2O, 1,500 l/sec. for air, 2,200 l/sec. for H2, 200 l/sec. for Ar
  • Mechanical Pump: Varian, Model SD700, 35 CFM
  • Electron Beam Source: Temescal, Model STIH-270-2MB, four 15 cc hearths
  • Electron Beam Power Supply: Temescal, Model CV8A-111, -5 to -10 kV dc, 0.8A dc max. beam current; XYS-8 Sweep Control
  • Deposition Control: Inficon IC 6000, 6 film programs; 37 parameters for automatic or manual deposition control based on a resonating quartz crystal sensor
  • Ion Source: Commonwealth Scientific Corp., MOD. 2. Kaufman-type, 3cm ion source; beam currents to 100mA at 1000eV
  • Pieces up to Four - 4" wafers in one run.
  • For single wafers: tilt with motorized rotation and sample lowering for higher effective rates, sidewall coverage, angled evaporation.

Documentation

Recipes

  • See the E-Beam Recipe Page, for the materials tables and deposition parameters for various materials.