71M6511-IGTR/F Maxim Integrated Products, 71M6511-IGTR/F Datasheet - Page 68

no-image

71M6511-IGTR/F

Manufacturer Part Number
71M6511-IGTR/F
Description
IC ENERGY METER RESIDENT 64-LQFP
Manufacturer
Maxim Integrated Products
Type
Metering SoCr
Datasheet

Specifications of 71M6511-IGTR/F

Mounting Style
SMD/SMT
Package / Case
LQFP-64
Core
80515 MPU
Data Bus Width
32 bit
Data Ram Size
7 KB
Device Million Instructions Per Second
5 MIPS
Interface Type
UART
Maximum Clock Frequency
70 Hz
Maximum Operating Temperature
+ 85 C
Number Of Programmable I/os
12
Operating Supply Voltage
3.3 V
Processor Series
71M6511
Program Memory Size
64 KB
Program Memory Type
Flash
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
71M6511-IGTR/F
Manufacturer:
Maxim Integrated
Quantity:
10 000
For generating proper status information, the CE is initialized by the MPU using SAG_THR (default of 80V RMS at the meter
input if VMAX=600V) and SAG_CNT (default 80 samples). Using the default value for SAG_CNT, the peak-to-peak signal has to
be below SAG_THR value for 32 milliseconds to activate the SAG_X status bits.
CE Transfer Variables
When the MPU receives the XFER_BUSY interrupt, it knows that fresh data is available in the transfer variables. CE transfer
variables are modified during the CE code pass that ends with an XFER_BUSY interrupt. They remain constant throughout
each accumulation interval. In this data sheet, the names of CE transfer variables always end with _X.
Fundamental Power Measurement Variables
The table below describes each transfer variable for fundamental power measurement. All variables are signed 32 bit integers.
Accumulated variables such as WSUM are internally scaled so they have at least 2x margin before overflow when the
integration time is 1 second. Additionally, the hardware will not permit output values to ‘fold back’ upon overflow.
WxSUM_X is the Wh value accumulated for element ‘X’ in the last accumulation interval and can be computed based on the
specified LSB value.
For example with VMAX = 600V and IMAX = 208A, LSB (for WxSUM_X ) is 0.08356 µWh (MUX_DIV = 1).
Page: 68 of 98
Address
Address
0x31
0x32
CE
CE
42
43
44
45
46
47
48
49
A Maxim Integrated Products Brand
Name
SAG_THR
G_
NT
RESERVED
RESERVED
RESERVED
VAR0SUM_X
VAR1SUM_X
RESERVED
SA
C
W0SUM_X
W1SUM_X
Name
Default
(0x361837C)
+56,722,300
80
© 2005–2010 Teridian Semiconductor Corporation
Description
The sum of Watt samples from each wattmeter element (In_8 is the gain
configured by IA_SHUNT or IB_SHUNT).
LSB = 6.6952*10
LSB = 5.1501*10
The sum of VAR samples from each wattmeter element (In_8 is the gain
configured by IA_SHUNT or IB_SHUNT).
LSB = 6.6952*10
LSB = 5.1501*10
Description
Meter voltage inputs must be above this threshold to prevent sag alarms.
LSB = VMAX * 3.3243*10
For example, if a sag threshold of 80V RMS is desired,
Number of consecutive voltage samples below SAG_THR before a sag alarm
is declared. 80*397µs = 31.8ms (for MUX_DIV = 1).
SAG
_
THR
-13
-13
-13
-13
=
VMAX IMAX / In_8 Wh (for MUX_DIV = 1)
VMAX IMAX / In_8 Wh (for MUX_DIV = 2)
VMAX IMAX / In_8 Wh (for MUX_DIV = 1)
VMAX IMAX / In_8 Wh (for MUX_DIV = 2)
Single-Phase Energy Meter IC
VMAX
-9
80
V peak.
. 3
71M6511/71M6511H
3243
2
10
DATA SHEET
9
NOVEMBER 2010
V2.7

Related parts for 71M6511-IGTR/F