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AN2299 Datasheet(PDF) 14 Page - STMicroelectronics

Part # AN2299
Description  Fast digital calibration procedure
PDF  26 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN2299 Datasheet(HTML) 14 Page - STMicroelectronics

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Fast digital calibration procedure
AN2299
14/26
Rev2
Through hardwired formulas, Kv and Ki tune measured values varying from 0,75 to 1 in 256
steps, according to the value of Cv and Ci (from 0 to 255).
To obtain the greatest correction dynamic, calibrators are initially set in the middle of the
range, thus obtaining a calibration range of ±12.5% per voltage or current channel:
●
Calibrators' value
–
Kv = Ki = 0.875
–
Ci = Cv = 128
In this way it is possible to tune Kv and Ki having a precise measurement: for example Cv=0
generates a correction factor of -12.5% (Kv=0.75) and Cv=255 determines a correction
factor of +12.5% (Kv=1), and so on.
According to what pointed out above, the following formulas, which relate Kv,i and Cv,i are
obtained:
Indicating with IA and VA average values and with XI and XV ideal values of RMS current
and voltage readings (as calculated in the next steps), from what explained the following
can be written:
3.3.2
Algorithm choice
It is possible to use two different algorithms to calculate the parameters to be used during
the calibration:
1. R1 and R2 constants in order to carry out the sensor sensitivity KS;
2. Current sensor sensitivity and R2 constants in order to carry out R1.
The methods are equivalent. The choice is left to the designer.
According to the algorithm chosen, the next calibration step will produce the value of sensor
KS or resistor R1 to be mounted in the measure board to achieve calibration.
Algorithms formulas are reported below for both current transformer/shunt and Rogowski
coil current sensors.
Kv i
,
Cv i
,
128
------------
0.125
0.75
+
•
=
Eq.7
Cv i
1024
Kv i
,
•
768
–
=
,
Eq.8
X
V
K
v
V
A
•
0.875
-------------------
=
Eq.9
Eq.10
X
I
Ki
I
A
•
0.875
----------------
=



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