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71M6534 Datasheet(PDF) 15 Page - Maxim Integrated Products

Part No. 71M6534
Description  Exceeds IEC 62053/ANSI C12.20 Standards
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Maker  MAXIM [Maxim Integrated Products]
Homepage  http://www.maxim-ic.com
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71M6534 Datasheet(HTML) 15 Page - Maxim Integrated Products

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FDS_6533_6534_004
71M6533/G/H and 71M6534/H Data Sheet
Rev 2
15
Table 4: XRAM Locations for ADC Results
Address (HEX)
Name
Description
0x00
IA
Phase A current
0x01
VA
Phase A voltage
0x02
IB
Phase B current
0x03
VB
Phase B voltage
0x04
IC
Phase C current
0x05
VC
Phase C voltage
0x06
ID
Neutral current
0x07 – 0x09
Not used
0x0A
TEMP
Temperature
0x0B
VBAT
Battery Voltage
The CE is aided by support hardware to facilitate implementation of equations, pulse counters, and
accumulators. This hardware is controlled through I/O RAM locations EQU[2:0] (equation assist), the
DIO_PV and DIO_PW (pulse count assist) bits, and PRE_SAMPS[1:0] and SUM_CYCLES[5:0] (accumulation
assist).
PRE_SAMPS[1:0] and SUM_CYCLES[5:0] support a dual-level accumulation scheme where the first
accumulator accumulates results from PRE_SAMPS[1:0] samples and the second accumulator accumulates
up to SUM_CYCLES[5:0] of the first accumulator results. The integration time for each energy output is
PRE_SAMPS[1:0] * SUM_CYCLES[5:0] / 2520.6 (with MUX_DIV[3:0] = 6). CE hardware issues the
XFER_BUSY interrupt when the accumulation is complete.
1.3.1 Meter Equations
The 71M6533 and 71M6534 provide hardware assistance to the CE in order to support various meter
equations. This assistance is controlled through the I/O RAM field EQU[2:0] (equation assist). The
Compute Engine (CE) firmware for industrial configurations can implement the equations listed in Table 5.
EQU[2:0] specifies the equation to be used based on the meter configuration and on the number of phases
used for metering.
Table 5: Inputs Selected in Regular and Alternate Multiplexer Cycles
EQU[2:0]
Description
Wh and VARh formula
Mux
Sequence
ALT Mux
Sequence
Element
0
Element
1
Element
2
0
1 element, 2 W,
1φ with neutral
current sense
VA ∙ IA
VA ∙ IB
N/A
Sequence is
programmable
with
SLOTn_SEL[3:0]
Sequence is
programmable with
SLOTn_ALTSEL[3:0]
1
1 element, 3 W, 1φ VA(IA-IB)/2
N/A
N/A
2
2 element, 3 W,
3φ Delta
VA ∙ IA
VB ∙ IB
N/A
3
2 element, 4 W,
3φ Delta
VA(IA-IB)/2
N/A
VC ∙IC
4
2 element, 4 W,
3φ Wye
VA(IA-IB)/2 VB(IC-IB)/2
N/A
5
3 element, 4 W,
3φ Wye
VA ∙ IA
VB ∙ IB
VC ∙ IC
Not all CE codes support all equations.


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