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Printed Circuit Board Manufacturing

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Printed Circuit Board Manufacturing. Maintenance. Power & Grounding. GlueX Electronics Review ... Schematics. System/Wiring Diagrams. Maintain Firmware ... – PowerPoint PPT presentation

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Title: Printed Circuit Board Manufacturing


1
GlueX Electronics Review Jefferson Lab July
23-24, 2003 R. Chris Cuevas Jefferson
Lab Physics Division Group Leader -- Fast
Electronics
Topics Printed Circuit Board
Manufacturing Maintenance Power
Grounding
2
PCB Manufacturing
  • JLAB Electronics Group GlueX collaborators
    have extensive experience with design and
    ordering PCBs in industry.
  • PCB is not a mechanical part!
  • Electrical characteristics more important than
    mechanical tolerances
  • Design Tools are essential for verification
  • We have PCAD, Gerber View Tools but,,,
  • More extensive simulation tools would be useful
  • (e.g.) PCB layout simulation, signal integrity
    modeling

3
PCB Manufacturing
  • 1000s of custom PCBs have been manufactured in
    industry for CLAS. Drift Chamber, Level II
    Trigger, Timing distribution
  • Typical PCB development procedure
  • Design requirements -- Specifications/Format
  • EECAD -- Schematic capture -- Board layout
  • Prototype ordered -- Assembled on site
  • TEST -- Verify circuit performance -- Record
    results
  • Capture all ECOs Egineering Change Order

4
PCB Manufacturing
  • Procedure continued
  • Verify all ECOs in new layout
  • Prepare order for contract manufacturing
    assembly
  • Evaluate manufacturers -- Not on price alone!
  • Long term reputation/experience
  • Documented Quality Control standards IPC,ISO
  • Automated assembly equipment
  • Bare board test equipment
  • 1st Article assembly very important

5
Maintenance
  • No glamour, but planning NOW is critical for high
    availability
  • Must plan for spare PCBs for each custom design
  • Crucial components must be identified
  • Spare devices purchased for long term
    replacement
  • DOCUMENTATION -- Must archive and provide
    on-line
  • Schematics
  • System/Wiring Diagrams
  • Maintain Firmware Development Tools and Code
  • Test Programs

6
Maintenance
  • High Availability Demands
  • Low Mean-Time-to-Repair
  • Example Powered Card Enclosures Crate
  • Removable power supply units
  • Removable fan tray
  • Easy access to circuit boards -- test points
  • Remote monitoring of Crate systems -- V, I,
    Temperature
  • Remote reset feature where applicable

7
Maintenance
  • Planning for the repair shop
  • Must provide training for technicians on new
    designs
  • Test Stations for all custom and commercial
    boards
  • Ability to repair/rework circuit cards, power
    supplies
  • Assure proper tools and test equipment are
    provided
  • Establish circuit board calibration/repair/track
    ing database
  • Use new technologies for keeping track of all
    modules in the experiment. RF Id,, Bar code

8
Power Grounding
  • Very extensive topic and,
  • We have good experience with the Hall B CLAS
  • Careful planning of power grid and grounding grid
  • Extensive review of AC Mains requirements
  • Must include grounding grid requirements to civil
    Engineers
  • Must identify all large consumers of AC Mains
  • Superconducting Magnet system
  • Building utilities HVAC, LCW, Pumps, Crane

9
Power Grounding
  • Reasons for Grounding
  • Shock and Safety Hazard Control
  • Reduce lightning related gradients
  • Avoid injury to personnel
  • Avoid damage to Electrical/Electronic equipment
  • Establish return reference
  • EMI control
  • Shield reference for cables, isolation
    transformers

10
Power Grounding
  • Learn from ommissions CLAS example
  • Plan for dedicated network conduit(s)
  • High speed network gear beamline diagnostic
  • equipment not in close proximity to detector
    power supplies
  • Low radiation levels in Hall D
  • Should allow extensive use of Fiber Optics for
  • Communication links --
  • Data acquisition --
  • Optical isolation for control circuits where
    applicable
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