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ZSSC3036CC1C Datasheet(PDF) 40 Page - List of Unclassifed Manufacturers

Part # ZSSC3036CC1C
Description  Low-Power, High-Resolution 16-Bit Sensor Signal Conditioner
PDF  49 Pages
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Manufacturer  ETC2 [List of Unclassifed Manufacturers]
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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.
40 of 49
3.7.1.
Calibration Step 1
– Assigning Unique Identification
Assign a unique identification number to the ZSSC3036 by using the memory write command (40HEX + data and
41HEX + data; see Table 3.1 and Table 3.8) to write the identification number to Cust_ID0 at memory address
00HEX and Cust_ID1 at address 01HEX as described in section 3.6.1. These two 16-bit registers allow for more than
4 trillion unique devices.
3.7.2.
Calibration Step 2
– Data Collection
The number of unique points (measurand and/or temperature) at which calibration must be performed generally
depends on the requirements of the application and the behavior of the resistive bridge in use. The minimum
number of points required is equal to the number of bridge coefficients to be corrected with a minimum of three
different temperatures at three different bridge values. For a full calibration resulting in values for all 7 possible
bridge coefficients and 3 possible temperature coefficients, a minimum of 7 pairs of bridge with temperature
measurements must be collected.
Within this minimum 3x3 measurements field, data must be collected for the specific value pairs (at known
conditions) and then processed to calculate the coefficients. In order to obtain the potentially best and most robust
coefficients, it is recommended that measurement pairs (temperature vs. measurand) be collected at the outer
corners of the intended operation range or at least at points that are located far from each other. It is also
essential to provide highly precise reference values as nominal, expected values. The measurement precision of
the external calibration-measurement equipment should be ten times more accurate than the expected
ZSSC3036 output precision after calibration in order to avoid precision losses caused by the nominal reference
values (e.g., measurand signal and temperature deviations).
Note: An appropriate selection of measurement pairs can significantly improve the overall system performance.
The determination of the measurand-related coefficients will use all of the measurement pairs. For the
temperature-related correction coefficients, 3 (at three different temperatures) of the measurement pairs will be
used.
Note: There is an inherent redundancy in the 7 bridge-related and 3 temperature-related coefficients. Since the
temperature is a necessary output (which also needs correction), the temperature-related information is
mathematically separated, which supports faster and more efficient DSP calculations during the normal usage of
the sensor-IC system.
The recommended approach for data collection is to make use of the raw-measurement commands:
for bridge sensor values:
o
A2HEX + 0000HEX: single bridge measurement for which the configuration register will be loaded
from
the
BM_Config
register
(10HEX in MTP); preprogramming the
measurement setup in the MTP is required.
o
A3HEX + ssssHEX: single bridge measurement for which the BM_Config configuration register
(Gain, ADC, Offset, etc.) will be loaded as ssssHEX and must be provided
externally via the interface.



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