參數(shù)資料
型號: MAX1452
廠商: Maxim Integrated Products, Inc.
英文描述: Low-Cost Precision Sensor Signal Conditioner
中文描述: 低成本、高精度傳感器信號調(diào)理器
文件頁數(shù): 14/24頁
文件大?。?/td> 283K
代理商: MAX1452
M
allel. The MAX1452 allows for a high degree of flexibili-
ty in system calibration design. This is achieved by use
of single-wire digital communication and three-state
output nodes. Depending upon specific calibration
requirements one may connect all the OUTs in parallel
or connect DIO and OUT on each individual module.
Sensor Compensation Overview
Compensation requires an examination of the sensor
performance over the operating pressure and tempera-
ture range. Use a minimum of two test pressures (e.g.,
zero and full-span) and two temperatures. More test
pressures and temperatures will result in greater accu-
racy. A typical compensation procedure can be sum-
marized as follows:
Set reference temperature (e.g., 25
°
C):
Initialize each transducer by loading their respec-
tive registers with default coefficients (e.g., based
on mean values of offset, FSO and bridge resis-
tance) to prevent overload of the MAX1452.
Set the initial bridge voltage (with the FSODAC) to
half of the supply voltage. Measure the bridge volt-
age using the BDR or OUT pins, or calculate based
on measurements.
Calibrate the output offset and FSO of the transduc-
er using the ODAC and FSODAC, respectively.
Store calibration data in the test computer or
MAX1452 EEPROM user memory.
Set next test temperature:
Calibrate offset and FSO using the ODAC and FSO-
DAC, respectively.
Store calibration data in the test computer or
MAX1452 EEPROM user memory.
Calculate the correction coefficients.
Download correction coefficients to EEPROM.
Perform a final test.
Sensor Calibration and
Compensation Example
The MAX1452 temperature compensation design cor-
rects both sensor and IC temperature errors. This
enables the MAX1452 to provide temperature compen-
sation approaching the inherent repeatability of the
sensor. An example of the MAX1452
s capabilities is
shown in Figure 8.
A repeatable piezoresistive sensor with an initial offset
of 16.4mV and a span of 55.8mV was converted into a
compensated transducer (utilizing the piezoresistive
sensor with the MAX1452) with an offset of 0.5000V and
a span of 4.0000V. Nonlinear sensor offset and FSO
temperature errors, which were on the order of 20% to
30% FSO, were reduced to under ±0.1% FSO. The fol-
lowing graphs show the output of the uncompensated
sensor and the output of the compensated transducer.
Six temperature points were used to obtain this result.
MAX1452 Evaluation Kit
To expedite the development of MAX1452
based transducers and test systems, Maxim has pro-
duced the MAX1452 evaluation kit (EV kit). First-time
users of the MAX1452 are strongly encouraged to use
this kit.
Low-Cost Precision Sensor
Signal Conditioner
14
______________________________________________________________________________________
DRIVEN BY TESTER
THREE-STATE
NEED WEAK
PULLUP
THREE-STATE
NEED WEAK
PULLUP
S
L
M
S
1 1 1 1 1 0 1 0 0 1 1 0 1 0 1
1 1 1 1 1 1 1
1 1 1 1 1 1 1 1
1 1
1 1 1 1
1 1 1
1 1
1
1 1
THREE-STATE
2
ATIM
+1 BYTE
TIMES
DIO
OUT
VALID OUT
HIGH IMPEDANCE
Figure 6. Analog Output Timing
相關(guān)PDF資料
PDF描述
MAX1452AAE Low-Cost Precision Sensor Signal Conditioner
MAX1452CAE Low-Cost Precision Sensor Signal Conditioner
MAX1452EAE Low-Cost Precision Sensor Signal Conditioner
MAX1457 0.1%-Accurate Signal Conditioner for Piezoresistive Sensor Compensation
MAX1457ACJ 0.1%-Accurate Signal Conditioner for Piezoresistive Sensor Compensation
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