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SA4101ASAR Datasheet(PDF) 8 Page - Sames

Part # SA4101ASAR
Description  Single Phase Kilowatt-hour Metering IC
PDF  15 Pages
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Manufacturer  SAMES [Sames]
Direct Link  http://www.sames.co.za
Logo SAMES - Sames

SA4101ASAR Datasheet(HTML) 8 Page - Sames

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SPEC-1081 (REV. 2)
8/15
29-09-2017
SA4101A
The feedback loops from the outputs of the amplifiers AI and
AV generate virtual shorts on the signal inputs. Exact
duplications of the input currents are generated for the analog
signal processing circuitry.
The current and voltage sense inputs are both identical. Both
inputs are differential current driven up to ±25μA peak. One
input of the voltage sense amplifier is internally connected to
AGND. This is possible because the voltage sense input is
much less sensitive to externally induced parasitic signals
compared to the current sense inputs.
Power Consumption
The power consumption of the SA4101A integrated circuit is
less than 25mW.
INPUT SIGNALS
Voltage Reference (VREF)
A bias resistor of 47k
 sets optimum bias and reference
conditions on chip. Calibration of the SA4101A should be
done on the voltage input and not on the VREF input.
Current Sense Inputs (IIP and IIN)
Figure 6 shows the typical connections for the current sensor
input when using a shunt or a current transformer as a current
sensing element. At maximum rated mains current (IMAX) the
resistor values should be selected for an input current of
16µARMS. The current sense inputs saturate at an input
current of
±17.6μARMS (±25μAPEAK), so this allows about 10%
headroom until saturation occurs.
The resistor RSH is the shunt resistor. The voltage drop
across RSH at maximum rated mains current (IMAX) should
not be less than 5mVRMS and not exceed 100mVRMS.
The resistors RA and RB form the current transformers
termination resistor. The reference level is connected in the
centre of the termination resistor to achieve purely differential
input currents. The voltage drop across the termination
resistors at maximum rated mains current (IMAX) should be in
the order of 100mVRMS. The termination resistance should
also be significantly smaller than the DC resistance of the
current transformers secondary winding.
The resistors R1 to R4 define the current flowing into the
device. For best performance the SA4101A requires anti-
alias filters on the current sense inputs. These filters are
realized by means of the capacitors C1 and C2. The typical
cut-off frequency of these filters should be between 10kHz
and 20kHz. The optimum input network is achieved by setting
the input resistors equal, i.e. setting R1 = R2 = R3 = R4 = RC.
This sets the equivalent resistance associated with each
capacitor to RC/2.
Figure 6: Current sense input configuration
Voltage Sense Input (IVP)
Figure 7 shows the voltage sense input configuration. The
voltage sense input saturates at an input current of
±17.6μARMS (±25μAPEAK). The current into the voltage sense
input at nominal mains voltage VNOM should be set to 14
μARMS
For best performance the SA4101A also requires an anti-
alias filter on the voltage sense input. Referring to Figure 7,
the capacitor C1 is used to implement the anti-alias filter. If a
current transformer is used as a current sensing element then
C1 is also used to compensate for any phase shift caused by
the current transformer. The resistor R4 defines the input
current into the device. The optimum input network is
achieved by setting R4 smaller than 100k
. If R4 is made too
large the capacitor C1 will be very small and the phase shift
of the input network could be affected by stray capacitances.
The potentiometer P1 is used for calibration purposes.
Figure 7: Voltage sense input configuration
R3
R1
IIN
IIP
GND
Current In
I
MAX
16µA
RMS
R4
R2
Current Out
GND
GND
C1
C2
R3
R1
RA
IIN
IIP
GND
CT1
Current In
I
MAX
16µA
RMS
R4
R2
RB
Current Out
C1
C2
RSH
R4
R3
IVP
GND
C1
R2
R1
GND
V
NOM
14µA
RMS
Voltage In
Neutral
GND
R5
P1
(P1 + R5) << R4 << (R1 + R2 + R3)



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