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ZSSC3036CC1C датащи(PDF) 13 Page - List of Unclassifed Manufacturers |
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ZSSC3036CC1C датащи(HTML) 13 Page - List of Unclassifed Manufacturers |
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13 / 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. 13 of 49 Table 2.2 Amplifier Gain: Stage 2 Gain_stage2 BM_config Bit G4 BM_config Bit G3 BM_config Bit G2 Stage 2 Gain Setting 0 0 0 1.1 0 0 1 1.2 0 1 0 1.3 0 1 1 1.4 1 0 0 1.5 1 0 1 1.6 1 1 0 1.7 1 1 1 1.8 If needed, the polarity of the sensor bridge gain can be reversed by setting the Gain_polarity bit, which is bit 5 in the BM_config register (see section 3.6.3). Changing the gain polarity is achieved by inverting the chopper clock. Table 2.3 gives the settings for the Gain_polarity bit. This feature enables applying a sensor to the ZSSC3036 with swapped input signals at INN and INP; e.g., to avoid cro ssing wires for the final sensor module’s assembly. Table 2.3 Gain Polarity Gain_polarity (BM_config Bit 5) Gain Setting Description 0 +1 No polarity change. 1 -1 Gain polarity is inverted. The inherent amplifier offset is suppressed by means of auto-zero and chopper techniques. The optimal gain (and offset) setup for a specific sensor element can be determined by these steps: 1) Collect sensor elements’ characteristic, statistical data (over temperature, ambient sensor parameter, and over production tolerances): a. Minimum differential output voltage: Vmin b. Maximum differential output voltage: Vmax Note: The best possible setup can only be determined if the absolute value of Vmax is bigger than the absolute value of Vmin. If this is not the case, the gain polarity should be reversed. 2) If Vmin and Vmax have different signs (normally: Vmax is positive and Vmin is negative), then the required ADC offset shift can be selected using this ratio: RatioOffset = |Vmin| / (Vmax – Vmin). In this case, the respective offset setup (A2D_offset) is the nearest integer of multiples of 1/16 in the range of 1/16 to 8/16 (see Table 2.8): A2D_offset = Round_to_x16 th{Ratio Offset}. |
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