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ADA4570WHRZ-R7 数据表(PDF) 9 Page - Analog Devices |
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ADA4570WHRZ-R7 数据表(HTML) 9 Page - Analog Devices |
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9 / 14 page ![]() Data Sheet ADA4570 TERMINOLOGY analog.com Rev. 0 | 9 of 14 Output Signals The output signals, VSIN+, VSIN−, VCOS+, and VCOS−, of the ADA4570 are biased around a common-mode voltage of VDD/2 as shown in Figure 14. Figure 14. Single-Ended Output Voltage Range The differential signal outputs, VSIN and VCOS, shown in Figure 15 are generated by sampling the corresponding positive and negative SIN and COS single-ended outputs. Figure 15. Differential Output Voltage Range Reference Position Error The reference position error is the deviation of the sensing element center from the nominal position shown in Figure 22. Reference Angle Error The reference angle error, indicated in Figure 16, is the absolute mounting angle error of the sensor from its nominal placement. The angle Φ = 0° is referred to the straight line between the top of Pin 2 and Pin 7. Figure 16. Sensor Alignment in Package Uncorrected Angular Error The uncorrected angular error is defined as the maximum deviation from an ideal angle without any calibration applied to the VSIN and VCOS differential signals. Single Point Calibration Angular Error The single point calibration angular error is defined as the deviation from an ideal angle after the offset calibration is applied to the VSIN and VCOS differential signals at 25°C. Dynamic Angular Error The dynamic angular error is defined as the maximum deviation from an ideal angle with the continuous offset and gain calibration applied to the VSIN and VCOS differential signals. Output Amplitude Synchronism The output amplitude synchronism (k) is defined as the ratio be- tween the differential amplitudes of both channels when under a continuously rotating magnetic field. To calculate the amplitude synchronism, use the following equations: k = 100% × VAMP(VSIN)/VAMP(VCOS) Propagation Delay The propagation delay is the amount of time taken for the signal to propagate to the VSIN and VCOS differential signal outputs in response to a magnetic stimulus change. Phase Error The phase error is defined as the average of the phase shift in the sine and cosine signal through the amplifier. The phase error in- creases with the rotation frequency due to the bandwidth limitation of the instrumentation amplifiers. As shown in Figure 12, the typical characteristics value can be used as a first-order compensation for the phase error. Orthogonality Error The orthogonality error is the internal phase error caused by mis- alignment of the sine and cosine sensor elements on-chip, with respect to the ideal 90° sine to cosine phase. Single-Ended Output Voltage Low The single-ended output voltage low is the maximum voltage level at the VSIN+, VSIN−, VCOS+, and VCOS− outputs when a broken bond wire is detected and all outputs are pulled low, see Figure 14. |
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