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ZSSC3036CC1C Datasheet(PDF) 41 Page - List of Unclassifed Manufacturers |
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ZSSC3036CC1C Datasheet(HTML) 41 Page - List of Unclassifed Manufacturers |
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41 / 49 page ![]() ZSSC3036 Low-Power 16-Bit Sensor Signal Conditioner IC Data Sheet May 28, 2013 © 2013 Zentrum Mikroelektronik Dresden AG — Rev. 1.20 All rights reserved. The material contained herein may not be reproduced, adapted, merged, translated, stored, or used without the prior written consent of the copyright owner. The information furnished in this publication is subject to changes without notice. 41 of 49 for temperature values: o A6HEX + 0000HEX: single temperature measurement for which the configuration register will be loaded from an internal temperature configuration register (preprogrammed by ZMDI in MTP); preprogramming of the respective configuration is done by ZMDI prior to IC delivery. This is the recommended approach for temperature data collection. o A7HEX + ssssHEX: single temperature measurement for which the configuration register (Gain, ADC, Offset, etc.) will be loaded as ssssHEX and must be provided externally via the interface. The data composition of the temperature configuration register is similar to the BM_config (address 10HEX) register for the bridge sensor. 3.7.3. Calibration Step 3 – Coefficient Calculations The math to perform the coefficient calculation is complicated and will not be discussed in detail. There is a brief overview in the next section. ZMDI will provide software (DLLs) to perform the coefficient calculation (external to the sensor-IC system) based on auto-zero corrected values. After the coefficients are calculated, the final step is to write them to the MTP memory of the ZSSC3036. 3.8. The Calibration Math 3.8.1. Bridge Signal Compensation The saturation check in the ZSSC3036 is enhanced compared with older SSCs from ZMDI. Even saturation effects of the internal calculation steps are detected, allowing the final correction output to still be determined. It is possible to get potentially useful signal conditioning results which have had an intermediate saturation during the calculations – these cases are detectable by observing the status bit[0] for each measurement result. Details about the saturation limits and the valid ranges for values are provided in the following equations. SOT_curve selects whether second-order equations compensate for sensor nonlinearity with a parabolic or S-shaped curve. The parabolic compensation is recommended. |
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