CDB5467U Cirrus Logic Inc, CDB5467U Datasheet - Page 15

BOARD EVAL FOR CS5467 ADC

CDB5467U

Manufacturer Part Number
CDB5467U
Description
BOARD EVAL FOR CS5467 ADC
Manufacturer
Cirrus Logic Inc
Type
A/Dr
Datasheets

Specifications of CDB5467U

Main Purpose
Power Management, Energy/Power Meter
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
CS5467
Primary Attributes
Watt-Hour Meter
Secondary Attributes
Graphical User Interface, SPI™ & USB Interfaces
Product
Data Conversion Development Tools
Maximum Clock Frequency
4 MHz
Interface Type
USB
Supply Voltage (max)
5 V
Supply Voltage (min)
3.3 V
For Use With/related Products
CS5467
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant
Other names
598-1555
CDB-5467U
4.4 DC Offset and Gain Correction
The system and chip inherently have gain and offset er-
rors which can be removed using the gain and offset
registers. (See
40). Each measurement channel has its own registers.
For every channel, the output of the IIR filter is added to
the offset register and multiplied by the gain register.
4.5 High-pass Filters
Optional high-pass filters (HPF in Figures
move any DC from the selected signal paths. Subse-
quently, DC will also be removed from power, and all
low-rate results. (see Figures 5).
Each energy channel has a current and voltage path. If
an HPF is enabled in only one path, a phase-matching
filter (PMF) is applied to the other path which matches
the amplitude and phase delay of the HPF in the band
DS714F1
Section 9. System Calibration
3
and 4) re-
on page
of interest, but passes DC. For more information, see
6.5 High-pass Filters
plexers drive the I1 , V1 , I2 , and V2 result registers.
4.6 Low-Rate Calculations
Low-rate results are derived from sample-rate results
integrated over N samples, where N is the value stored
in the Cycle Count register. The low-rate interval is the
sample interval multiplied by N .
4.7 RMS Results
The root mean square ( RMS in
are performed on N instantaneous voltage and current
samples, using the formula:
I RMS
on page 20. The HPF filter multi-
=
-------------------- -
n
N 1
=
N
0
Figure
I n
2
5) calculations
CS5467
15

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