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PM9607AP データシートの表示(PDF) - South African Micro Electronic Systems

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PM9607AP
Sames
South African Micro Electronic Systems Sames
PM9607AP Datasheet PDF : 16 Pages
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PM9607AP
sames
MODULE OVERVIEW
ANALOG SECTION
The analog (metering) interface described in this section is
designed for measuring 230V/60A with precision better than
Class 1.
The most important external components for the SA9607
integrated circuit are the current sense resistors, the voltage
sense resistors and the bias setting resistor. The resistors used
in the metering section should be of the same type so
temperature effects are minimized.
Current Input IIN1, IIP1, IIN2, IIP2
Two current transformers are used to measure the current in
the live and neutral phases. The output of the current
transformer is terminated with a low impedance resistor. The
voltage drop across the termination resistor is converted to a
current that is fed to the differential current inputs of the
SA9607.
Neutral Line
CT1
R7
3.6R
Neutral Load Phase 1
GND
Live Line
Live Load
DR-01576
CT2
R16
6.2R
P1
10R
GND
Phase 2
R8
2.7k
R9
2.7k
R10
2.7k
R11
2.7k
IIN1
IIP1
IIN2
IIP2
Figure 3: Current input configuration
CT Termination Resistor
The voltage drop across the CT termination resistor at rated
current should be at least 20mV. The CTs have low phase shift
and a ratio of 1:2500. The CT is terminated with a 3.6W resistor
giving a voltage drop of 86.4mV across the termination resistor
at rated conditions (Imax for the meter).
The termination resistor on the second current channel is
adjustable by means of P2 to facilitate channel equalization
calibration. The termination resistor is chosen so that a 10W
trimpot in parallel will provide a sufficient channel range.
Current Sensor Input Resistors
The resistors R8, R9 and R10, R11 define the current level into
the current sense inputs of the SA9607. The resistor values
are selected for an input current of 16µA on the current inputs
of the SA9607 at rated conditions. For a 60A meter at 2500:1
CT the resistor values are calculated as follows:
R8 = R9 = ( IL/ 16µA ) x RSH / 2
= 60A / 2500 / 16µA x 3.6W / 2
= 2.7kW
IL= Line current
RSH = CT Termination resistor
2500 = CT ratio
The two current channels are identical so R8 = R9 = R10 =
R11.
Voltage Input Ivp
The voltage input of the SA9607 (IVP) is driven with a current
of 14µA at nominal mains voltage. This voltage input saturates
at approximately 17µA. At a nominal voltage current of 14µA
allows for 20% overdriving. The mains voltage is divided with a
voltage divider to 14V that is fed to the voltage input pins via a
1MW resistor.
Voltage Divider
The voltage divider is calculated for a voltage drop of 14V.
Equations for the voltage divider in figure 4 are:
RB = R1 + R2 + R3 + R4
RB = R6 || R5
Live
Neutral
DR-01577
R4
10R/2W
R1
120k
TZ1
TZ
R2
120k
R3
120k
C4
R6
1M
1u/16V
R5
24k
GND
GND
Figure 4: Mains voltage divider
IVP
GND
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