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AD652AQ Datasheet(PDF) 16 Page - Analog Devices |
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AD652AQ Datasheet(HTML) 16 Page - Analog Devices |
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16 / 16 page ![]() AD652 REV. B –16– Figure 30. Delta Modulator lnput Signal and Ramp-Wise Approximation Figure 31. Delta Modulator Input Signal, Ramp-Wise Approximation and Output Frequency Figure 32. Maximum Integrating Cap Value vs. Input Signal Bandwidth BRIDGE TRANSDUCER INTERFACE The circuit of Figure 33 illustrates a simple interface between the AD652 and a bridge-type transducer. The AD652 is an ideal choice because its buffered 5 volt reference can be used as the bridge excitation thereby ratiometrically eliminating the gain drift related errors. This reference will provide a minimum of 10 mA of external current, which is adequate for bridge resis- tance of 600 Ω and above. If, for example, the bridge resistance is 120 Ω or 350 Ω, an external pull-up resistor (R PU) is required and can be calculated using the formula: RPU (max ) = +VS – 5V 5 V RBRIDGE – 10 mA An instrumentation amplifier is used to condition the bridge sig- nal before presenting it to the SVFC. The AD625, with its high CMRR, minimizes common-mode errors and also can be set to arbitrary gains between 1 and 10,000 via three resistors, simpli- fying the scaling for the AD652’s calibrated 10 volt input range. These resistors should be selected such that the following equa- tion holds: 10 V = VBRIDGE 2 RF RG +1 where 10 k Ω ≤ RF ≤ 20 kΩ, and VBRIDGE is the maximum output voltage of the bridge. The bridge output may be unipolar, as is the case for most pressure transducers, or it may be bipolar as in some strain mea- surements. If the signal is unipolar, the reference input of the AD625 (Pin 7) is simply grounded. If the bridge has a bipolar output, however, the AD652 reference can be tied to Pin 7, thereby, converting a ±5 volt signal (after gain) into a 0 volt to +10 volt input for the SVFC. Figure 33. Bridge Transducer Interface OUTLINE DIMENSIONS Dimensions shown in inches and (mm). Cerdip (Q-16) 16 1 8 9 0.310 (7.87) 0.220 (5.59) PIN 1 0.005 (0.13) MIN 0.080 (2.03) MAX SEATING PLANE 0.023 (0.58) 0.014 (0.36) 0.200 (5.08) MAX 0.840 (21.34) MAX 0.150 (3.81) MIN 0.070 (1.78) 0.030 (0.76) 0.200 (5.08) 0.125 (3.18) 0.100 (2.54) BSC 0.060 (1.52) 0.015 (0.38) 15° 0° 0.320 (8.13) 0.290 (7.37) 0.015 (0.38) 0.008 (0.20) PLCC (P-20A) 3 PIN 1 IDENTIFIER 4 19 18 8 9 14 13 TOP VIEW (PINS DOWN) 0.395 (10.02) 0.385 (9.78) SQ 0.356 (9.04) 0.350 (8.89) SQ 0.048 (1.21) 0.042 (1.07) 0.048 (1.21) 0.042 (1.07) 0.020 (0.50) R 0.050 (1.27) BSC 0.021 (0.53) 0.013 (0.33) 0.330 (8.38) 0.290 (7.37) 0.032 (0.81) 0.026 (0.66) 0.180 (4.57) 0.165 (4.19) 0.040 (1.01) 0.025 (0.64) 0.056 (1.42) 0.042 (1.07) 0.025 (0.63) 0.015 (0.38) 0.110 (2.79) 0.085 (2.16) |
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