MAX110BCPE Maxim Integrated Products, MAX110BCPE Datasheet - Page 21

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MAX110BCPE

Manufacturer Part Number
MAX110BCPE
Description
ADC Single Delta-Sigma 0.05KSPS 14-Bit Serial 16-Pin PDIP N
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX110BCPE

Package
16PDIP N
Resolution
14 Bit
Sampling Rate
50 SPS
Architecture
Delta-Sigma
Number Of Adcs
1
Number Of Analog Inputs
2
Differential Input
Yes
Digital Interface Type
Serial (SPI, QSPI, Microwire)
Input Type
Voltage
Polarity Of Input Voltage
Bipolar

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Figure 12. Thermocouple Circuit with Software Compensation
unloaded, and subtracting this value from actual weight
measurements. The lowpass filtering action of the
MAX111’s sigma-delta converter helps minimize noise.
The resolution of the weigh scale can be further
increased by averaging several conversions.
A thermocouple is created by the junction of dissimilar
metals, and generates a voltage proportional to temper-
ature (Seebeck voltage), making it useful for tempera-
ture-measurement instruments. When a thermocouple
probe is connected to a measurement instrument, other
thermoelectric potentials are created between the alloys
of the probe and the copper connectors of the instru-
ment. These potentials introduce a temperature-depen-
dent error that must be subtracted from the temperature
measurement to obtain an accurate result. According to
the law of intermediate metals, the junction of the ther-
mocouple-probe alloys with the copper of the instrument
junction block can be treated as another thermocouple
of the same type. The voltage measured by the instru-
ment can be expressed as:
K-TYPE
Thermocouple Circuit with Software
Low-Cost, 2-Channel, ±14-Bit Serial ADCs
V = (T1 - T
______________________________________________________________________________________
MAX874
+5V
V
IN
TEMP
OUT
REF
)
Compensation
10k
1M
1k
243k
243k
10k
1/4 MAX479
1/4 MAX479
1/4 MAX479
where
couple, T1 is the temperature being measured, and
T
one method to obtain T
to a known temperature (0°C), a more popular
approach is to measure T
or PN junction voltage.
The circuit in Figure 12 shows a k-type thermocouple
going through a 54dB gain stage to channel 1 of the
MAX110. A MAX874 voltage reference provides both
the 3V reference voltage and reference junction tem-
perature information to the MAX110. Armed with the
temperature information provided by the MAX874, the
thermocouple voltage created at the junction block can
be subtracted out in software. The TEMP output of the
MAX874 is nominally 690mV at room temperature, and
increases with temperature at about 2.3mV/°C. Place
the MAX874 as close as possible to the terminal block,
and ensure good thermal contact between them. This
circuit employs a common k-type thermocouple and,
with the component values shown, can indicate tem-
peratures in the range of -150°C to +125°C.
REF
1k
1k
is the temperature of the junction block. Although
is the Seebeck constant for the type of thermo-
1µF
1µF
10k
REF
REF
is to force the junction block
directly using a thermistor
IN2+
IN2-
IN1+
IN1-
REF+
REF-
MAX110
+5V
V
V
-5V
DD
SS
DOUT
SCLK
DIN
CS
21

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