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IC-MR Datasheet, PDF (25/44 Pages) IC-Haus GmbH – 13-BIT S&H SIN/COS INTERPOLATOR WITH CONTROLLER INTERFACES
iC-MR 13-BIT S&H SIN/COS
preliminary
INTERPOLATOR WITH CONTROLLER INTERFACES
Rev A1, Page 25/44
+5V
2,3kΩ
V(KTY84)
KTY84 12kΩ
V DDA
ADC
V(ADCSLOP)
12 Bit
16 Bit
12 Bit
ADC
16 Bit
ADCOFF
TEMP
Figure 11: Schematic circuit diagram for the evaluation of KTY sensors.
The temperature is output according to Table 36 as a
16-bit value in two’s complement format with a resolu-
tion of 1/10°C.
To obtain the output given in Table 36 the evaluation
circuitry is calibrated as follows:
TEMP
Code
0x7FFF
...
0x07D0
...
0x0001
0x0000
0xFFFF
...
0xFE70
...
0x8000
Addr 0x6B, 0x6A, bits: 15..8, 7..0
Temperature
Validity
+3276.7 °C
Out of
...
measuring range
+200.0 °C
...
+0.1 °C
0.0 °C
Measuring range
-0.1 °C
...
-40 °C
...
Out of
-3276.8 °C
measuring range
Table 36: Temperature data output format
1. The maximum convertible voltage is set and thus
the increase in the converter using register AD-
CSLOP. ADCSLOP’s register is set so that there
is a difference of 2,400 between the converter
values at R(KTY84) = 359 Ω and R(KTY84) =
1,722 Ω.
2. To map ADC’s output onto the range of values
given in Table 36, an offset is added through reg-
ister ADCOFF. The data in register ADCOFF is
set so that 0xFE70 is read at R(KTY84) = 359 Ω
and, correspondingly, 0x07D0 at R(KTY84) =
1,722 Ω.
(a) Read out converter data from regis-
ter TEMP with ADCOFF = 0x0000 at
R(KTY84) = 359 Ω.
(b) Calibration data = converter data + 400
(c) Write the calibration data to register AD-
COFF.
Figure 12: Calibrating the temperature sensor to the
output format