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MCP6071-E/ST データシート(PDF) 18 Page - Microchip Technology |
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MCP6071-E/ST データシート(HTML) 18 Page - Microchip Technology |
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18 / 34 page ![]() MCP6071/2/4 DS22142A-page 18 © 2009 Microchip Technology Inc. 4.7 Application Circuits 4.7.1 GYRATOR The MCP6071/2/4 op amps can be used in gyrator applicaitons. The gyrator is an electric circuit which can make a capacitive circuit behave inductively. Figure 4- 7 shows an example of a gyrator simulating induc- tance, with an approximately equivalent circuit below. The two ZIN have similar values in typical applications. The primary application for a gyrator is to reduce the size and cost of a system by removing the need for bulky, heavy and expensive inductors. For example, RLC bandpass filter characteristics can be realized with capacitors, resistors and operational amplifiers without using inductors. Moreover, gyrators will typi- cally have higher accuracy than real inductors, due to the lower cost of precision capacitors than inductors. . FIGURE 4-7: Gyrator. 4.7.2 INSTRUMENTATION AMPLIFIER The MCP6071/2/4 op amps are well suited for condi- tioning sensor signals in battery-powered applications. Figure 4-8 shows a two op amp instrumentation amplifier, using the MCP6072, that works well for applications requiring rejection of common mode noise at higher gains. The reference voltage (VREF) is supplied by a low impedance source. In single supply applications, VREF is typically VDD/2. FIGURE 4-8: Two Op Amp Instrumentation Amplifier. To obtain the best CMRR possible, and not limit the performance by the resistor tolerances, set a high gain with the RG resistor. 4.7.3 PRECISION COMPARATOR Use high gain before a comparator to improve the latter’s input offset performance. Figure 4-9 shows a gain of 11 V/V placed before a comparator. The reference voltage VREF can be any value between the supply rails. FIGURE 4-9: Precision, Non-inverting Comparator. MCP6071 RL VOUT Gyrator ZIN R C Z IN R L j ωL + = LR LRC = RL L ZIN Equivalent Circuit V OUT V 1 V 2 – () 1 R 1 R 2 ------ 2R 1 R G --------- ++ ⎝⎠ ⎛⎞ V REF + = VREF R1 R2 R2 R1 VOUT RG V2 V1 ½ MCP6072 ½ MCP6072 VIN 1M Ω VOUT MCP6071 100 k Ω MCP6541 VREF |
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