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Analog Electronics

Written by madelaine maloney. September 16, 2016. September 16, 2016. Breadboard Basics and Such. Building basic LED circuits. Written by madelaine maloney. December 16, 2016. December 16, 2016. Final Project: Synthia, the Monophonic Synthesizer. Written by madelaine maloney. December 14, 2016. Written by madelaine maloney. December 2, 2016. December 2, 2016. My final project, broadly, is composed of two parts. The first is the oscillator/synth component, and the second is the tremolo. I’ve...Part 1) Mea...

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Analog Electronics | analogelectronicsatnyu.wordpress.com Reviews
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Written by madelaine maloney. September 16, 2016. September 16, 2016. Breadboard Basics and Such. Building basic LED circuits. Written by madelaine maloney. December 16, 2016. December 16, 2016. Final Project: Synthia, the Monophonic Synthesizer. Written by madelaine maloney. December 14, 2016. Written by madelaine maloney. December 2, 2016. December 2, 2016. My final project, broadly, is composed of two parts. The first is the oscillator/synth component, and the second is the tremolo. I’ve...Part 1) Mea...
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Analog Electronics | analogelectronicsatnyu.wordpress.com Reviews

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Written by madelaine maloney. September 16, 2016. September 16, 2016. Breadboard Basics and Such. Building basic LED circuits. Written by madelaine maloney. December 16, 2016. December 16, 2016. Final Project: Synthia, the Monophonic Synthesizer. Written by madelaine maloney. December 14, 2016. Written by madelaine maloney. December 2, 2016. December 2, 2016. My final project, broadly, is composed of two parts. The first is the oscillator/synth component, and the second is the tremolo. I’ve...Part 1) Mea...

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1

Lab 9: Transistors – Analog Electronics

https://analogelectronicsatnyu.wordpress.com/2016/11/11/lab-9-transistors

Written by madelaine maloney. November 11, 2016. November 11, 2016. 1) Gain=Rl/1k, for a gain of 5, 5 =Rl/1k, so the closest value for Rl would be 4.7 k Ω. 3) 001=Ve/1k Ω, so VE=1. 4) 17= 9v(22k Ω. 19 (R1 22k Ω. R1 22,000=115,789. 22,000= 93,789 Ω. Close to 93 k Ω. So closest to 100k Ω. 5) Measured battery voltage: 7.53 V. VB should equal 7.53(22k/1ook 22k)=1.36 V. Measured VB: 1.35 V. VE should equal 1.36-.7=0.66 V. I’m not sure why the smaller wave looks strange in the photo.). Enter your comment here.

2

Final Project Status – Analog Electronics

https://analogelectronicsatnyu.wordpress.com/2016/12/02/final-project-status

Written by madelaine maloney. December 2, 2016. December 2, 2016. This means that I have one fairly well-tuned pushbutton, and others that are quite approximate. I also changed the setup of my interface a lot, placing the potentiometers as neatly as possible (not very) on one single side of the cardboard box that I’m using to hold my circuit. I forgot to draw the arrows that indicate a potentiometer here, so all of the things that look like 100k resistors are actually potentiometers! Blog at WordPress&#4...

3

Lab 7: Oscillators – Analog Electronics

https://analogelectronicsatnyu.wordpress.com/2016/10/27/lab-7-oscillators

Written by madelaine maloney. October 27, 2016. Original circuit with one switch and potentiometer to change frequency:. Leave a Reply Cancel reply. Enter your comment here. Fill in your details below or click an icon to log in:. Address never made public). You are commenting using your WordPress.com account. ( Log Out. You are commenting using your Twitter account. ( Log Out. You are commenting using your Facebook account. ( Log Out. You are commenting using your Google account. ( Log Out.

4

Lab 8: Sensors – Analog Electronics

https://analogelectronicsatnyu.wordpress.com/2016/11/04/lab-8-sensors

Written by madelaine maloney. November 4, 2016. Measured photo cell min/max resistance: 2.4 k Ω. And 105.5 k Ω. At first I chose a 100k resistor, since it was close to my maximum resistance value. Vout=-(-8.94 V)*(2.4k/100k)=.214 V. Vout =-(-8.94 V)*(105.5k/100k)=9.4 V. A) One battery was too low to get the op-amp working (it was drained to about 5.6 V). B) My breadboard is wonky. C) I chose too big of a resistor. But here’s the scope image of my circuit once we finally got it to work:. This is a text wi...

5

Final Project: Synthia, the Monophonic Synthesizer – Analog Electronics

https://analogelectronicsatnyu.wordpress.com/2016/12/16/final-project-synthia-the-monophonic-synthesizer

Written by madelaine maloney. December 16, 2016. December 16, 2016. Final Project: Synthia, the Monophonic Synthesizer. Output Frequency = (1/(4*1ook)(1ok/1k). Since the potentiometers are all the same value, the frequency range of each key is the same:. Output Frequency = (1/(4*Rt*C) *(R2/R1). Output Frequency = (1/(4*1ook)(1ok/1k). This sub-circuit’s LED light is pressed right against the photo cell in sub-circuit c, but is otherwise disconnected from the other two sub-circuits. The maximum and minimum...

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Written by madelaine maloney. September 16, 2016. September 16, 2016. Breadboard Basics and Such. Building basic LED circuits. Written by madelaine maloney. December 16, 2016. December 16, 2016. Final Project: Synthia, the Monophonic Synthesizer. Written by madelaine maloney. December 14, 2016. Written by madelaine maloney. December 2, 2016. December 2, 2016. My final project, broadly, is composed of two parts. The first is the oscillator/synth component, and the second is the tremolo. I’ve...Part 1) Mea...

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