Nixie Tube Clock Critical Design Review

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This critical design review of a Nixie tube clock conducted on March 9, 2015, by Team A highlights the system design, decomposition, schematic, power supply, LV and HV boards, testing, evaluation, project management, schedule, and key considerations including safety, stability, heat dissipation, and component ratings. It also discusses aspects like waveform smoothness, HV isolation, microcontroller performance, and lifetime indicators, culminating in key project management insights and questions for further exploration.

  • Nixie Tube Clock
  • Design Review
  • System Decomposition
  • Power Supply
  • Testing & Evaluation

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Presentation Transcript


  1. CRITICAL DESIGN REVIEW: NIXIE TUBE CLOCK 9 March 2015 Team A Paul Plotkin (Team Lead), Amanda Parks, Sean Holloway, Cory Tindall 1

  2. SYSTEM DESIGN 2

  3. SYSTEM DECOMPOSITION 3

  4. SYSTEM SCHEMATIC 4

  5. POWER SUPPLY 5

  6. LOW VOLTAGE (LV) BOARD 6

  7. HIGH VOLTAGE (HV) BOARD 7

  8. TESTING & EVALUATION LOW VOLTAGE HIGH VOLTAGE ENCLOSURE Supply Supply Safety Stability Heat dissipation Waveform smoothness Component ratings HV isolation User input insolation Grounding Microcontroller Performance Signal reception Cold-Cathode Tube Interaction Lifetime Digit filament inspection Time Indicators Lifetime Receivers Position triangulation Reception within enclosure TTL Decoder Performance LV to HV interface Heat dissipation 8

  9. PROJECT MANAGEMENT 9

  10. PROJECT SCHEDULE 10

  11. QUESTIONS? 11

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