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instrumentation amplifier : ウィキペディア英語版
instrumentation amplifier

An instrumentation (or instrumentational) amplifier is a type of differential amplifier that has been outfitted with input buffer amplifiers, which eliminate the need for input impedance matching and thus make the amplifier particularly suitable for use in measurement and test equipment. Additional characteristics include very low DC offset, low drift, low noise, very high open-loop gain, very high common-mode rejection ratio, and very high input impedances. Instrumentation amplifiers are used where great accuracy and stability of the circuit both short and long-term are required.
Although the instrumentation amplifier is usually shown schematically identical to a standard operational amplifier (op-amp), the electronic instrumentation amp is almost always internally composed of 3 op-amps. These are arranged so that there is one op-amp to buffer each input (+,−), and one to produce the desired output with adequate impedance matching for the function.〔R.F. Coughlin, F.F. Driscoll ''Operational Amplifiers and Linear Integrated Circuits'' (2nd Ed.1982. ISBN 0-13-637785-8) p.161.〕〔Moore, Davis, Coplan ''Building Scientific Apparatus'' (2nd Ed. 1989 ISBN 0-201-13189-7)p.407.〕
The most commonly used instrumentation amplifier circuit is shown in the figure. The gain of the circuit is
:\frac = \left (1 +
The rightmost amplifier, along with the resistors labelled R_} is just the standard differential amplifier circuit, with gain = R_} and differential input resistance = 2·R_} removed (open circuited), they are simple unity gain buffers; the circuit will work in that state, with gain simply equal to R_} and high input impedance because of the buffers. The buffer gain could be increased by putting resistors between the buffer inverting inputs and ground to shunt away some of the negative feedback; however, the single resistor R_}, providing easy changes to the gain of the circuit, without the complexity of having to switch matched pairs of resistors.
The ideal common-mode gain of an instrumentation amplifier is zero. In the circuit shown, common-mode gain is caused by mismatch in the resistor ratios R_} and by the mis-match in common mode gains of the two input op-amps. Obtaining very closely matched resistors is a significant difficulty in fabricating these circuits, as is optimizing the common mode performance.〔Smither, Pugh and Woolard: ‘CMRR Analysis of the 3-op-amp instrumentation amplifier', Electronics letters, Volume 13, Issue 20, 29 September 1977, page 594.〕
An instrumentation amp can also be built with two op-amps to save on cost, but the gain must be higher than two (+6 dB).
Instrumentation amplifiers can be built with individual op-amps and precision resistors, but are also available in integrated circuit form from several manufacturers (including Texas Instruments, Analog Devices, Linear Technology and Maxim Integrated Products). An IC instrumentation amplifier typically contains closely matched laser-trimmed resistors, and therefore offers excellent common-mode rejection. Examples include (AD8221 ), (MAX4194 ), (LT1167 ) and (INA128 ).
Instrumentation Amplifiers can also be designed using "Indirect Current-feedback Architecture", which extend the operating range of these amplifiers to the negative power supply rail, and in some cases the positive power supply rail. This can be particularly useful in single-supply systems, where the negative power rail is simply the circuit ground (GND). Examples of parts utilizing this architecture are (MAX4208/MAX4209 ) and (AD8129/AD8130 ).
Feedback-free instrumentation amplifier is the high input impedance differential amplifier designed without the external feedback network. This allows reduction in the number of amplifiers (one instead of three), reduced noise (no thermal noise is brought on by the feedback resistors) and increased bandwidth (no frequency compensation is needed).
Chopper stabilized (or zero drift) instrumentation amplifiers such as the (LTC2053 ) use a switching input front end to eliminate DC offset errors and drift.
==See also==

* Isolation amplifier
* Operational amplifier applications

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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