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Teknologi Sel Surya (3 - 4)

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Teknologi Sel Surya (3 - 4)

  1. 1. TeknologiSel Surya <br />SatwikoSidopekso<br />Sesion #03-04<br />JurusanFisika<br />FakultasMatematikadanIlmuPengetahuanAlam<br />
  2. 2. Solar Cell<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />2<br />06/01/2011<br />
  3. 3. 3<br /> IV characteristic curve for two resistors.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  4. 4. 4<br />An IV characteristic curve for a diode.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  5. 5. 5<br />Analog and digital shaft encoders.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  6. 6. 6<br /> Digitizing an analog waveform.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  7. 7. 7<br /> Generation of a sinusoidal waveform from the projection of a rotating vector.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  8. 8. 8<br />Time-domain and frequency-domain representations of a sinusoidal wave.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  9. 9. 9<br /> Odd harmonics combine to produce a square wave.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  10. 10. 10<br /> Comparison of the frequency spectrum of repetitive and nonrepetitive waves.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  11. 11. 11<br /> Thevenin’s equivalent for a dc circuit.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  12. 12. 12<br /> Simplifying a circuit with Thevenin’s theorem.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  13. 13. 13<br /> Norton circuit. The arrow in the current source symbol always points to the positive side of the source.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  14. 14. 14<br /> Simplifying a circuit with Norton’s theorem.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  15. 15. 15<br />Exemple<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  16. 16. 16<br /> Load line for the circuit in Figure <br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  17. 17. 17<br /> Load line and a resistor IV curve showing the Q-point.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  18. 18. Transfer curve for a linear amplifier.<br />18<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  19. 19. Oscilloscope display.<br />19<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  20. 20. Basic amplifier models showing the equivalent input resistance and dependent output circuits.<br />20<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  21. 21. Cascaded stages in an amplifier.<br />21<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  22. 22. Two-stage cascaded amplifier.<br />22<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  23. 23. Test instruments <br />23<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  24. 24. Square-wave response of wide-band amplifiers.<br />24<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  25. 25. 25<br /> A small system consisting of a two-channel amplifier and four microphones.<br />06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />
  26. 26. 06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />26<br />
  27. 27. 06/01/2011<br />© 2010 Universitas Negeri Jakarta | www.unj.ac.id |<br />27<br />TerimaKasih<br />

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