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MPXM2102AS Datasheet(PDF) 470 Page - Motorola, Inc |
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MPXM2102AS Datasheet(HTML) 470 Page - Motorola, Inc |
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470 / 670 page ![]() AN1525 3–324 Motorola Sensor Device Data www.motorola.com/semiconductors • Since the third op–amp contributes a gain of two to the overall system, design the gain that the two op–amp circuit contributes to the system to be one–half the desired sys- tem gain. The gain term for the two op–amp circuit is: G = R4 R3 + 2R4 RG + 1 which is the same as presented in Equation 16. • Similarly, since the third op–amp also amplifies VREF by two (refer to Equation 22), the resistor divider that creates VREF should be designed to provide one–half the desired positive dc voltage level shift needed for the final output. When designing the voltage divider for VREF, use the same design constraints as were given in the section on Applica- tion to Pressure Sensor Circuits. With the above simplification of R5 = R6, the negative dc level shift, V–shift, which is also created by a voltage divider, is now amplified by a factor of unity. When designing the voltage divider, use the same design constraints as were presented in the section on Application to Pressure Sensor Circuits. CONCLUSION The amplifier circuits discussed in this paper apply to pressure sensor applications, but the amplifier circuits can be interfaced to low–level, differential–voltage output sensors, in general. All of the circuits exhibit the desired instrumentation amplifier characteristics of high input impedance, low output impedance, high gain capability, and differential to single–ended conversion of the sensor signal. Each amplifier circuit provides positive dc level shift capability, while the last two circuit topologies presented are also able to provide a negative dc voltage level shift. This enables the user to position the sensor’s dynamic output within a specified range (e.g., within the high and low references of an A/D converter). Also detailed is a method of using an additional feedback resistor to adjust easily the differential voltage gain, while not sacrificing common mode rejection. Combining the appropriate sensor device and amplifier interface circuit provides sensor users with a versatile system solution for applications in which the ideal fully single–conditioned sensor does not exist or in which such signal flexibility is warranted. Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com |
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