MCP3909-I/SS Microchip Technology, MCP3909-I/SS Datasheet - Page 80

IC POWER METERING-1 PHASE 24SSOP

MCP3909-I/SS

Manufacturer Part Number
MCP3909-I/SS
Description
IC POWER METERING-1 PHASE 24SSOP
Manufacturer
Microchip Technology
Datasheets

Specifications of MCP3909-I/SS

Package / Case
24-SSOP (0.200", 5.30mm Width)
Input Impedance
390 KOhm
Measurement Error
0.1%
Voltage - I/o High
2.4V
Voltage - I/o Low
0.85V
Current - Supply
2.3mA
Voltage - Supply
4.5 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Meter Type
Single Phase
Operating Temperature Range
- 40 C to + 85 C
Mounting Style
SMD/SMT
Supply Voltage Range
4.5V To 5.5V
Digital Ic Case Style
SSOP
No. Of Pins
24
Interface Type
Serial, SPI
Supply Voltage Max
5.5V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
MCP3909EV-MCU16 - EVALUATION BOARD FOR MCP3909MCP3909RD-3PH1 - REF DESIGN MCP3909 3PH ENGY MTR
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCP3909-I/SS
Manufacturer:
MICROCHIP/微芯
Quantity:
20 000
MCP3909 / dsPIC33F 3-Phase Energy Meter Reference Design
DS51723A-page 80
N-th iteration:
Where ρ
Complex rectangular quadrature algorithm or complex trapezoidal quadrature
algorithm is usually used in quasi-synchronous sampling.
Figure C-2 shows a 3-cycle interative process.
FIGURE C-2:
In practical applicatons, a frequency offset Δ is usually small, and good results may
usually be obtained through 3-5 iterations.
As mentioned above, the iterative process will result in a group of weight coefficients
η
from the numeric quadrature formula. The relationship between the iterative result and
original data is shown in Equation C-9.
EQUATION C-9:
i
, called weight coefficients of quasi-synchronous algorithm, they may be deduced
Original data
First Iteration
Second Iteration
Third Iteration
i
is the weight coefficient which is decided by the digital quadrature formula.
F
F
F
f
0
0
0
3-Cycle Iterative Process.
0
1
2
3
F
F
f
1
1
1
1
2
F
f
F
2
2
F
1
2
F
2
0
0
n
......
n
...... F
...... F
=
=
=
=
-------------- -
i
--------------- -
n
i
----- -
N
=
N
1
f
=
×
N
N
n
i
1
n
N
0
1
1
N
=
0
×
2
ρ
η
N
n
F
i
0
i
f
i
=
R
×
N+1
1
N+1
i
N
i
0
n
i
=
N
η
=
×
f x
0
i
( )
N
0
ρ
F
f
η
i
1
f x
i
N+2
( )
N+2
i
F
i
f x
i
( )
n 1
......
...... F
i
f
1
2N
2N
© 2009 Microchip Technology Inc.
f
2N+1
f
2N+2
......
f
3N

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