MCP3909EV-MCU16 Microchip Technology, MCP3909EV-MCU16 Datasheet - Page 91

EVALUATION BOARD FOR MCP3909

MCP3909EV-MCU16

Manufacturer Part Number
MCP3909EV-MCU16
Description
EVALUATION BOARD FOR MCP3909
Manufacturer
Microchip Technology
Datasheets

Specifications of MCP3909EV-MCU16

Number Of Adc's
2
Number Of Bits
16
Sampling Rate (per Second)
15k
Data Interface
Serial
Inputs Per Adc
1 Differential
Input Range
±1 V
Voltage Supply Source
Analog and Digital
Operating Temperature
-40°C ~ 85°C
Utilized Ic / Part
MCP3909
Silicon Manufacturer
Microchip
Application Sub Type
ADC
Kit Application Type
Data Converter
Silicon Core Number
MCP3909
Kit Contents
Board
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
C.7
C.8
C.9
© 2009 Microchip Technology Inc.
MEASURING SECONDARY PARAMETERS
APPARENT POWER OF EACH PHASE AND TOTAL APPARENT POWER
POWER FACTOR OF EACH PHASE AND TOTAL POWER FACTOR
The methods of measuring parameters such as RMS values of voltage and current,
active power, reactive power and frequency have been discussed in previous sections.
These are primary parameters that need to be calculated from the original data. There
are some other parameters called secondary parameter, such as power factor of each
phase, total reactive power, total active power, total power factor, harmonic
components and cumulative energy. They are obtained indirectly from primary param-
eters.
The measurement of secondary parameters is discussed in this section.
C.7.0.1
For 3-phase 4-wire systems, 3-phase total active power and recative power are the
sum of power of each phase, respectively, which can be expressed as:
EQUATION C-54:
EQUATION C-55:
Apparent power is defined as:
EQUATION C-56:
Power factor is defined as the ratio of active power to apparent power. The definition
can be represented as shown in Equation C-57:
EQUATION C-57:
TOTAL ACTIVE POWER AND TOTAL REACTIVE POWER
Q
P
Power Calculation Theory
PF
=
S
=
=
Q
P
=
A
A
----------------------- -
+
+
Q
P
P
Q
2
2
B
+
P
B
+
+
+
p
Q
2
P
Q
2
C
C
DS51723A-page 91

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