STEVAL-IPE010V1 STMicroelectronics, STEVAL-IPE010V1 Datasheet - Page 44

KIT DEMO ENERGY METER STPMC1/S1

STEVAL-IPE010V1

Manufacturer Part Number
STEVAL-IPE010V1
Description
KIT DEMO ENERGY METER STPMC1/S1
Manufacturer
STMicroelectronics
Type
Other Power Managementr
Datasheets

Specifications of STEVAL-IPE010V1

Main Purpose
Power Management, Energy/Power Meter
Embedded
No
Utilized Ic / Part
STPMC1, STPMS1
Maximum Operating Temperature
+ 85 C
Product
Power Management Development Tools
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Secondary Attributes
-
Primary Attributes
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
STPMC1, STPMS1
Other names
497-10754
Theory of operation
9.16.3
44/77
Example 16: Phase compensation for PM = 1
Table 26.
Mutual current compensation
Mutual current compensation is available only when TCS is clear (Rogowski coil).
When PM is cleared, the CCA and CCB configuration bytes can be used for mutual current
influence compensation according to SYS value.
For monophase systems (SYS > 3) the correction factors,
computed as follows:
Equation 5
Equation 6
u
i
u
i
4.194 MHz
4.915 MHz
8.192 MHz
9.830 MHz
Phase shift current for -
CPC[1] = 0
K
Phase shift current for
CPC[1] = 1
K
phc
phc
CLK
= - (32 CpC[1:0] + 16 CPC[0] + CPX[3:0])
= 64 - (32 CpC[0] + 16 CPC[0] + CPX[3:0])
CPX[0]
CPX[0]
64
Phase compensation for PM = 1, f
1
1
CPX[1]
CPX[1]
2
HSA
2
X
phc
1
phc
1
Doc ID 15728 Rev 4
CCA
CCA
:
:
CPX[2]
CPX[2]
8
8192
8
8192
4
4
CCB
CCA
2.097 MHz
2.458 MHz
2.048 MHz
2.458 MHz
f
phc
7
7
CPX[3]
CPX[3]
0 :
0 :
8
8
line
= 50 Hz
CPC[0]
CPC[0]
+0.549°, -1.090°
+0.469°, -0.930°
+0.562°, -1.116°
+0.469°, -0.930°
16
16
(
(
(alpha) and
3.1 %)
3.1 %)
φ
phc
CpC[0]
CpC[0]
32
32
(beta), are
CpC[1]
64
0.009°
0.007°
0.009°
0.007°
STPMC1
φ
phc

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