Difference between revisions of "Lab 23 TF EIM"
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#Measure the gain as a function of frequency between 100 Hz and 2 MHz for three values of R_2 = 10 k<math>\Omega</math>, 100 k<math>\Omega</math>, 1M<math>\Omega</math>. | #Measure the gain as a function of frequency between 100 Hz and 2 MHz for three values of R_2 = 10 k<math>\Omega</math>, 100 k<math>\Omega</math>, 1M<math>\Omega</math>. | ||
+ | #Graph the above measurements with the Gain in units of decibels (dB) and with a logarithmic scale for the frequency axis. | ||
+ | =Impedance= | ||
+ | ==Input Impedance== | ||
+ | #Measure <math>R_{in}</math> for the 10 fold and 100 fold amplifier at ~100 Hz and 10 kHz frequency. | ||
+ | ==Output Impedance== | ||
+ | #Measure <math>R_{out}</math> for the 10 fold and 100 fold amplifier at ~100 Hz and 10 kHz frequency. Be sure to keep the output (<math>V_{out}</math>) undistorted | ||
+ | = | ||
[[Forest_Electronic_Instrumentation_and_Measurement]] | [[Forest_Electronic_Instrumentation_and_Measurement]] |
Revision as of 04:04, 2 November 2010
Inverting OP Amp
- Construct the inverting amplifier according to the wiring diagram below.
- insert a 0.1 F capacitor between ground and the OP power supply input pin.
Gain measurements
- Measure the gain as a function of frequency between 100 Hz and 2 MHz for three values of R_2 = 10 k , 100 k , 1M .
- Graph the above measurements with the Gain in units of decibels (dB) and with a logarithmic scale for the frequency axis.
Impedance
Input Impedance
- Measure for the 10 fold and 100 fold amplifier at ~100 Hz and 10 kHz frequency.
Output Impedance
- Measure for the 10 fold and 100 fold amplifier at ~100 Hz and 10 kHz frequency. Be sure to keep the output ( ) undistorted
=