ADE5569ASTZF62 Analog Devices Inc, ADE5569ASTZF62 Datasheet - Page 58

IC METER/8052/RTC/LCD DRV 64LQFP

ADE5569ASTZF62

Manufacturer Part Number
ADE5569ASTZF62
Description
IC METER/8052/RTC/LCD DRV 64LQFP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADE5569ASTZF62

Applications
Energy Measurement
Core Processor
8052
Program Memory Type
FLASH (62kB)
Controller Series
ADE55xx
Ram Size
2.25K x 8
Interface
I²C, SPI, UART
Number Of I /o
20
Voltage - Supply
3.135 V ~ 3.465 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
64-LQFP
Ic Function
Single Phase Energy Measurement IC
Supply Voltage Range
3.13V To 3.46V, 2.4V To 3.7V
Operating Temperature Range
-40°C To +85°C
Digital Ic Case Style
LQFP
No. Of Pins
64
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ADE5569ASTZF62
Manufacturer:
Analog Devices Inc
Quantity:
10 000
Part Number:
ADE5569ASTZF62-RL
Manufacturer:
Analog Devices Inc
Quantity:
10 000
ADE5166/ADE5169/ADE5566/ADE5569
Voltage Channel RMS Calculation
Figure 63 shows details of the signal processing chain for the rms
calculation on the voltage channel. This voltage rms estimation
is done in the ADE5166/ADE5169/ADE5566/ADE5569 using
the mean absolute value calculation, as shown in Figure 63. The
voltage channel rms value is processed from the samples used in
the voltage channel waveform sampling mode and is stored in
the unsigned 24-bit VRMS SFRs (VRMSL, Address 0xD1;
VRMSM, Address 0xD2; and VRMSH, Address 0xD3).
The update rate of the voltage channel rms measurement is
MCLK/5. To minimize noise in the reading of the register, the
VRMS SFRs can also be configured to update only with the zero
crossing of the voltage input. This configuration is done by setting
the ZXRMS bit (Bit 2) in the MODE2 register (Address 0x0C).
With the specified full-scale ac analog input signal of 0.5 V, the
output from the LPF1 in Figure 63 swings between 0x28F5 and
0xD70B at 60 Hz (see the Voltage Channel ADC section). The
equivalent rms value of this full-scale ac signal is approximately
0d1,898,124 (0x1CF68C) in the VRMS SFRs. The voltage rms
measurement provided in the ADE5166/ADE5169/ADE5566/
ADE5569 is accurate to within ±0.5% for signal input between
full scale and full scale/20. The conversion from the register
value to volts must be done externally in the microprocessor
using a V/LSB constant.
Voltage Channel RMS Offset Compensation
The ADE5166/ADE5169/ADE5566/ADE5569 incorporate the
voltage channel rms offset compensation register (VRMSOS,
Address 0x23). This 12-bit, signed register can be used to remove
offset in the voltage channel rms calculation. An offset can exist
in the rms calculation due to input noises and dc offset in the input
samples. One LSB of the voltage channel rms offset is equivalent to
VOLTAGE CHANNEL
LPF1
Figure 63. Voltage Channel RMS Signal Processing
VOLTAGE SIGNAL (V(t))
0xD70B
0x28F5
0x0
Rev. C | Page 58 of 156
| X |
LPF3
64 LSBs of the voltage channel rms register. Assuming that the
maximum value from the voltage channel rms calculation is
0d1,898,124 with full-scale ac inputs, then 1 LSB of the voltage
channel rms offset represents 3.37% of measurement error at
−60 dB down from full scale.
where V
ACTIVE POWER CALCULATION
Active power is defined as the rate of energy flow from source
to load. It is the product of the voltage and current waveforms.
The resulting waveform is called the instantaneous power signal
and is equal to the rate of energy flow at every instant of time.
The unit of power is the watt or joules/second. Equation 8 gives an
expression for the instantaneous power signal in an ac system.
where:
V is the rms voltage.
I is the rms current.
The average power over an integral number of line cycles (n) is
given by the expression in Equation 9.
where:
T is the line cycle period.
P is referred to as the active or real power.
sgn
2
V
P(t) = V(t) × I(t)
V
P
P
t I
16
VRMSOS[11:0]
( )
rms
) (
( )
2
t
=
t
rms0
15
= V
=
nT
=
=
1
+
is the rms measurement without offset correction.
VI
rms0
2
2
2
8
0
+
nT
×
×
+ 64 × VRMSOS
2
I
VI
P
7
V
0x28F5C2
) (
sin(
2
t
cos(
sin(
6
dt
0x00
ω
ω
V
2
=
t
rms
)
V
ω
t
VI
rms
)
t
(t)
)
[23:0]
(5)
(6)
(7)
(8)
(9)

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