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ADE7933 数据表(PDF) 73 Page - Analog Devices

部件名 ADE7933
功能描述  Isolated Energy Metering Chipset for Polyphase Shunt Meters
PDF  125 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADE7933 数据表(HTML) 73 Page - Analog Devices

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Data Sheet
ADE7978/ADE7933/ADE7932/ADE7923
Rev. D | Page 73 of 125
ENERGY-TO-FREQUENCY CONVERSION
The ADE7978 provides three frequency output pins: CF1, CF2,
and CF3. The CF3 pin is multiplexed with the HSCLK pin of the
HSDC interface. When HSDC is enabled, the CF3 functionality
is disabled at the pin. The CF1 and CF2 pins are always available.
After initial calibration at manufacturing, the manufacturer or
end customer verifies the energy meter calibration. One
convenient way to verify the meter calibration is to provide an
output frequency proportional to the active, reactive, or apparent
power under steady load conditions. This output frequency can
provide a simple, single-wire, optically isolated interface to
external calibration equipment. Figure 92 illustrates the energy-
to-frequency conversion in the ADE7978.
The DSP computes the instantaneous values of all phase powers:
total active, fundamental active, total reactive, fundamental
reactive, and apparent. For information about how the energy is
sign accumulated in the xWATTHR, xFWATTHR, xVARHR,
xFVARHR, and xVAHR registers, see the Active Energy
Calculation, Reactive Energy Calculation, and Apparent Energy
Calculation sections.
In the energy-to-frequency conversion process, the instantaneous
powers generate signals at the frequency output pins (CF1, CF2,
and CF3). One energy-to-frequency converter is used for every
CFx pin. Each converter sums certain phase powers and
generates a signal proportional to the sum.
Two sets of bits specify the powers that are converted on the
CFx pins: the TERMSELx[2:0] bits and the CFxSEL[2:0] bits.
TERMSELx[2:0] BITS
Bits[2:0] (TERMSEL1[2:0]), Bits[5:3] (TERMSEL2[2:0]),
and Bits[8:6] (TERMSEL3[2:0]) of the COMPMODE register
(Address 0xE60E) specify which phases are summed in the
energy-to-frequency conversion.
The TERMSEL1[2:0] bits configure the CF1 pin.
The TERMSEL2[2:0] bits configure the CF2 pin.
The TERMSEL3[2:0] bits configure the CF3 pin.
The TERMSELx[0] bits manage Phase A. When these bits are
set to 1, Phase A power is included in the sum of powers at the
CFx converter; when these bits are cleared to 0, Phase A power
is not included in the sum of powers. The TERMSELx[1] bits
manage Phase B, and the TERMSELx[2] bits manage Phase C.
Setting all TERMSELx[2:0] bits to 1 means that the powers
from all three phases are added at the CFx converter. Clearing
all TERMSELx[2:0] bits to 0 means that no phase power is
added at the CFx converter and no CF pulse is generated.
CFxSEL[2:0] BITS
Bits[2:0] (CF1SEL[2:0]), Bits[5:3] (CF2SEL[2:0]), and Bits[8:6]
(CF3SEL[2:0]) in the CFMODE register (Address 0xE610)
specify what type of power is used at the inputs of the CF1, CF2,
and CF3 converters, respectively (see Table 30).
VA
WATT
VAR
FVAR
FWATT
CFxSEL BITS IN
CFMODE
INSTANTANEOUS
PHASE A
ACTIVE POWER
DIGITAL SIGNAL
PROCESSOR
INSTANTANEOUS
PHASE B
ACTIVE POWER
INSTANTANEOUS
PHASE C
ACTIVE POWER
TERMSELx BITS IN
COMPMODE
27
INTERNAL
ACCUMULATOR
27
THRESHOLD
FREQUENCY
DIVIDER
CFx PULSE
OUTPUT
CFxDEN
WTHR
34
27 26
0
0
REVPSUMx BIT OF
STATUS0[31:0]
Figure 92. Energy-to-Frequency Conversion
Table 30. Description of the CFxSEL[2:0] Bits in the CFMODE Register
CFxSEL[2:0]
CFx Signal Proportional to the Sum of
Registers Latched When CFxLATCH = 1
000
Total phase active powers
AWATTHR, BWATTHR, CWATTHR
001
Total phase reactive powers
AVARHR, BVARHR, CVARHR
010
Phase apparent powers
AVAHR, BVAHR, CVAHR
011
Fundamental phase active powers
AFWATTHR, BFWATTHR, CFWATTHR
100
Fundamental phase reactive powers
AFVARHR, BFVARHR, CFVARHR
101 to 111
Reserved



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