28119 Parallax Inc, 28119 Datasheet - Page 111
28119
Manufacturer Part Number
28119
Description
KIT UNDERSTANDING SIGNALS
Manufacturer
Parallax Inc
Datasheet
1.28119.pdf
(137 pages)
Specifications of 28119
Lead Free Status
Contains lead
Accessory Type
Oscilloscope
Interface Type
USB
For Use With/related Products
BASIC Stamp® 2 and Board of Education
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
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AN OP-AMP USED AS A VOLTAGE AMPLIFIER
An op-amp can be used to amplify voltage. To do this, you have two types of circuits to
choose from, inverting and non-inverting. As you can imagine, the inverting circuit will
produce an output signal that is inverted, or the negative value of the input signal,
creating a mirror image. Both inverting and non-inverting circuits use two resistors as a
feedback loop to set the gain of the amplifier. However, their formulas and circuit
characteristics are a little different, so let’s look at each in turn.
The inverting voltage amplifier shown in Figure 8-5 has the input signal connected to Ri.
Ri is then connected to Rf and the inverting input of the op-amp. In this circuit the
connection at Ri, Rf and the inverting input is called virtual ground. This means that each
Ri equals the approximate input impedance. Therefore, the inverting circuit doesn’t allow
high input impedance. However, it does allow a gain of less then one, allowing you to
take a large signal and scale it down to a smaller signal. This is called attenuation.
The formula to calculate gain is as follows:
For example, if Ri is a 10 kΩ resistor and you know you want a gain of 2, your
calculation to determine Rf would look like this:
Gain =
Rf
=
Ri
Rf/Ri
*
Remember: Ri refers to the input resistor and Rf refers to the feedback resistor.
Gain,
Signal
Rf
Vss
=
10
Ri
k
*
Vss
2,
Rf
Rf
=
20
k
Vss
Vout
Figure 8-5:
Inverting voltage
amplifier
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