CDB5460AU Cirrus Logic Inc, CDB5460AU Datasheet - Page 30

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CDB5460AU

Manufacturer Part Number
CDB5460AU
Description
EVALUATION BOARD FOR CS5460A
Manufacturer
Cirrus Logic Inc
Datasheets

Specifications of CDB5460AU

Main Purpose
Power Management, Energy/Power Meter
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
CS5460A
Primary Attributes
1-Phase Current & Voltage Monitoring
Secondary Attributes
Graphical User Interface, SPI™ & USB Interfaces
Processor To Be Evaluated
CS5460A, C8051F320
Interface Type
USB
Operating Supply Voltage
5 V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant
pins of the voltage/current channels to their ground
reference level. (See Figure 17.)
Offset and gain calibration cannot be done at the
same time. This will cause undesirable calibration
results.
3.8.7 Description of Calibration Algo-
rithms
The computational flow of the CS5460A’s AC and
DC gain/offset calibration sequences are illustrat-
ed in Figure 18. This figure applies to both the volt-
age channel and the current channel. The
30
(DC or AC)
Full Scale
In
CM + -
0V + -
CM + -
External
Connections
Figure 17. System Calibration of Offset.
Figure 16. System Calibration of Gain.
+
-
External
Connections
M odulator
AIN+
AIN-
AIN+
AIN-
Filter
+
-
XGAIN
+
-
* Denotes readable/writable register
D C O ffse t*
XGAIN
-X
+
+
+
Figure 18. Calibration Data Flow
G a in *
x
1
x
+
-
+
-
Σ
÷
N
N
to V *, I*, P *, E * R egisters
X
2
following descriptions of calibration sequences will
focus on the voltage channel, but apply equally to
the current channel.
Note: For proper calibration, it is assumed that the value
3.8.7.1 AC Offset Calibration Sequence
The idea of the AC offset calibration is to obtain an
offset value that reflects the square of the RMS
output level when the inputs are grounded. During
normal operation, when the CS5460A is calculat-
ing the latest result for the RMS Voltage Register,
this AC offset register value will be subtracted from
the square of each successive voltage sample in
order to nullify the AC offset that may be inherent
in the voltage-channel signal path. Note that the
value in the AC offset register is proportional to the
square of the AC offset.
First, the inputs are grounded, and then the AC off-
set calibration command is sent to the CS5460A.
When the AC offset calibration sequence is initiat-
ed, a valid RMS Voltage Register value is acquired
and squared. This value is then subtracted from
the square of each voltage sample that comes
through the RMS data path. See Figure 18.
A C O ffse t*
+
+
-
of the Voltage-/Current-Channel Gain Registers
are set to default (1.0) before running the gain
calibration(s),
Voltage-/Current Channel AC and DC Offset
Registers is set to default (0) before running
calibrations.
software or hardware reset of the device. The
values in the voltage/current calibration registers
do affect the results of the calibration sequences.
S IN C
2
X
0 .6
x
2
N
This can be accomplished by a
and
X
the
÷
N
value
CS5460A
DS487F4
V R M S
in
*
the

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