ADE7763ARSZRL Analog Devices Inc, ADE7763ARSZRL Datasheet - Page 37

IC ENERGY METERING 1PHASE 20SSOP

ADE7763ARSZRL

Manufacturer Part Number
ADE7763ARSZRL
Description
IC ENERGY METERING 1PHASE 20SSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADE7763ARSZRL

Input Impedance
390 KOhm
Measurement Error
0.1%
Voltage - I/o High
2.4V
Voltage - I/o Low
0.8V
Current - Supply
3mA
Voltage - Supply
4.75 V ~ 5.25 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
20-SSOP (0.200", 5.30mm Width)
Meter Type
Single Phase
Ic Function
Single-Phase Active And Apparent Energy Metering IC
Supply Voltage Range
4.75V To 5.25V
Operating Temperature Range
-40°C To +85°C
Digital Ic Case Style
SSOP
No. Of Pins
20
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
EVAL-ADE7763ZEB - BOARD EVALUATION FOR ADE7763
Lead Free Status / Rohs Status
Compliant
Other names
ADE7763ARSZRL
ADE7763ARSZRLTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ADE7763ARSZRL
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Equation 43 describes the relationship between the expected
LAENERGY value and the LAENERGY measured in the test
condition:
The nominal LAENERGY reading, LAENERGY
LAENERGY reading with the test current applied. The expected
LAENERGY reading is calculated from the following equation:
WGAIN = INT
Figure 72. Calibrating Watt Gain Using an Accurate Source
SET HALF LINE CYCLES FOR ACCUMULATION
WRITE CFDEN VALUE TO CFDEN REGISTER
CALCULATE CFDEN VALUE FOR DESIGN
CALCULATE WGAIN. SEE EQUATION 43.
ENABLE LINE CYCLE ACCUMULATION
ACCUMULATION ADDR. 0x09 = 0x0080
READ LINE ACCUMULATION ENERGY
WRITE WGAIN VALUE TO THE WGAIN
SET I
IN LINECYC REGISTER ADDR. 0x1C
RESET THE INTERRUPT STATUS
RESET THE INTERRUPT STATUS
INTERRUPT ADDR. 0x0A = 0x04
READ REGISTER ADDR. 0x0C
READ REGISTER ADDR. 0x0C
SET MODE FOR LINE CYCLE
TEST
REGISTER: ADDR. 0x12
ADDR. 0x15 = CFDEN
LAENERGY
LAENERGY
= I
INTERRUPT?
INTERRUPT?
ADDR. 0x04
YES
YES
b
, V
TEST
= V
IB
IB
NOM
(
(
expected
nominal
, PF = 1
NO
NO
)
)
1
IB(nominal)
×
2
12
, is the
(43)
Rev. B | Page 37 of 56
where CF
accumulation time is calculated from Equation 33, and the line
period is determined from the period register according to
Equation 34.
For this example:
Meter Constant:
Test Current:
Line Voltage:
Line Frequency:
Half Line Cycles:
CF Numerator:
CF Denominator:
Energy Reading at Base Current:
Period Register Reading:
Clock Frequency:
CF
LAENERGY
expected
LAENERGY
INT
CF
LAENERGY
INT
LAENERGY
INT
INT
. 3
CF
200
IB(expected)
is calculated to be 1.9556 Hz according to Equation 30.
IB
(
IB(expected)
19186
. 1
CF
(
imp/Wh
expected
9556
expected
IB
(Hz) =
(
expected
3600
.
) 4
IB(expected)
IB(expected)
)
IB(expected)
(Hz) is calculated from Equation 30,
×
CFNUM
is calculated to be 19186 using Equation 44.
CFDEN
×
=
2000
LINECYC
×
19186
)
s/h
CFNUM
220
CFDEN
×
Accumulati
2 /
=
=
=
V
+
+
×
MeterConstant(imp/Wh) = 3.2
I
V
f
LINECYC
CFNUM = 0
CFDEN = 489
PERIOD = 8959
CLKIN = 3.579545 MHz
×
1
LAENERGY
1
l
b
8959
489
nominal
= 50 Hz
10
IB
= 10 A
+
×
+
1
WDIV
1
2 /
1
A
+
×
×
×
= 220 V
1
×
on
WDIV
8
PERIOD
cos(
/(
IB
Time
. 3
= 2000
IB (nominal)
579545
ϕ
)
(s)
= 1.9556 Hz
×
/ 8
×
= 17174
ADE7763
CLKIN
10
6
)
1
(44)
=

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