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Concepts of Planning & Designing Tahiem Williams Science Undergraduate Laboratory Internship August 14, 2008.

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Presentation on theme: "Concepts of Planning & Designing Tahiem Williams Science Undergraduate Laboratory Internship August 14, 2008."— Presentation transcript:

1 Concepts of Planning & Designing Tahiem Williams Science Undergraduate Laboratory Internship August 14, 2008

2 Overview  Objective  Introduction  Background Information  Procedure  Data/Observation  Results  Conclusion  Acknowledgements

3 Objective  30ft Ladder Evaluation Relocate 6 inches from the wall 12” Steel Rod

4 Objective  Surveillance Camera Design  Brainstorm ideas for Radio Frequency (RF) Distribution Structure

5 Introduction  The Phases of Design Recognition of need Definition of problem Synthesis Analysis and optimization Evaluation Presentation  Oral  Writing  Graphical

6 Background Information  Ladder Evaluation Weight Density of Steel:

7 Background Information Cont.  Shear Stress – stress applied parallel to the face of a material  - the applied force  - area to which the force is applied  Moment of Inertia – rotational analog of mass  - the diameter

8 Background Information Cont.  Maximum Deflection  - the elasticity of the material  - the length  Bending Stress  - the moment of fixed ends  - the perpendicular distance to the neutral axis

9 Procedure  Surveillance Camera Design Excel Spreadsheet  Presented to others Installation  Radio Frequency Structure Aluminum Sheets  Measured sections of RF  Drew Sketches Sent to machine shop  Installed

10 Data/Observations Surveillance Camera Price SNC-RZ30N $1,158.00 SNC-RX550N(Japan) $1,749.00 Vivotek PZ6112 $552.99 VC-CA-IPPZ6114 $580.00 Samsung SPD-2300N $974.00 + $590 w/ keyboard Dimensions(W x H x D)Image Size (H x V) 5.625in x 7in x 5.75inN/A 6.375in x 6.375in x 9.125in640 x 480, 320 x 240, 160 x 120 (JPEG, MPEG-4, H.264) 4.1in x 4.1in x 4.9inN/A 4.13in x 4.48in x 4.13inN/A Ø155(W) x 243.4(H)mm811 x 508  Surveillance Camera Design Pan Angle/Pan SpeedTilt Angle/Tilt SpeedNumber of pixelsZoom Ratio -170° to +170° /2 sec. per 340°-90° to +25°/1.5 sec. per 115°6.8 x10^525x optical zoom, 300x w/ digital zoom 360° endless motion/360° per sec.(max.)90° to 0°/300° per sec.(max.)3.8x10^5(768 x 494)26x optical zoom, 312x w/ digital zoom ±135°/ 10° to 50° per sec.+90° to -45°/ 7° to 25° per sec.2.7x 10^510x optical zoom, 10x w/ digital zoom ±135°/ 10° to 50° per sec.+90° to -45°/ 7° to 25° per sec.2.7x 10^510x optical zoom, 10x w/ digital zoom 360° endless/240° per sec-4° to 184°/240° per sec4.1x 10^523x optical zoom, 230x w/ digital zoom

11 Results  Ladder Evaluation

12 Results  Surveillance Camera Design End Station A  Ethernet Crossover Cord Same function as Straight-through Ethernet Cord

13 Results  Radio Frequency Distribution Structure Aluminum Sheets

14 Conclusion  Ladder Evaluation Ultimate Stress of Steel:  L – Brackets were installed to relieve stress L-Bracket

15 Conclusion  Surveillance Camera End Station A

16 Conclusion  Radio Frequency Structure

17 Acknowledgements  Department of Energy, Office of Science  Science Undergraduate Laboratory Internship Stephen Rock Farah Rahbar Susan Schultz  Stanford Linear Accelerator Center Mentor: Bobby McKee

18 References  Joseph E. Shigley, Mechanical Engineering Design, Second ed., St. Louis: McGraw-Hill Book Company, 1963.  A. Johnson and K.Sherwin, Foundations of Mechanical Engineering, First ed., Oxford: Alden Press, 1996.  lamswww.epfl.ch/.../bpmds08/processlifecy cle.jpg


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