71M6543F-IGT/F Maxim Integrated Products, 71M6543F-IGT/F Datasheet - Page 13

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71M6543F-IGT/F

Manufacturer Part Number
71M6543F-IGT/F
Description
PMIC Solutions Precision Energy Meter IC
Manufacturer
Maxim Integrated Products
Type
Metering SoCr
Datasheet

Specifications of 71M6543F-IGT/F

Core
8051
Core Architecture
8051
Data Bus Width
8 bit
Data Ram Size
5 KB
Device Million Instructions Per Second
5 MIPS
Interface Type
I2C, ICE, SPI, UART
Maximum Clock Frequency
5 MHz
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Number Of Programmable I/os
51
Number Of Timers
2
On-chip Adc
22 bit
Operating Supply Voltage
3 V to 3.6 V
Package / Case
LQFP-100
Processor Series
8051
Program Memory Size
64 KB
Program Memory Type
Flash
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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The 71M6543 AFE can also be directly interfaced to Current Transformers (CTs), as seen in
this case, all voltage and current channels are multiplexed into a single second-order sigma-delta ADC in
the 71M6543 and the 71M6xx3 remote isolated sensors are not used. The fourth CT and the
measurement of Neutral current via the IADC0-IADC1 current channel are optional.
See
2.2.1 Signal Input Pins
The 71M6543 features eleven ADC input pins.
IADC0 through IADC7 are intended for use as current sensor inputs. These eight current sensor inputs can
be configured as eight single-ended inputs, or can be paired to form four differential inputs. For best
performance, it is recommended to configure the current sensor inputs as differential inputs (i.e., IADC0-
IADC1, IADC2-IADC3, IADC4-IADC5 and IADC6-IADC7). The first differential input (IADC0-IADC1)
features a pre-amplifier with a selectable gain of 1 or 8, and is intended for direct connection to a shunt
resistor sensor, and can also be used with a Current Transformer (CT). The three remaining differential
pairs (i.e., IADC2-IADC3, IADC4-IADC5 and IADC6-IADC7) may be used with CTs, or may be enabled to
interface to a remote 71M6xx3 isolated current sensor providing isolation for a shunt resistor sensor using a
low cost pulse transformer.
The remaining three inputs VADC8 (VA), VADC9 (VB) and VADC10 (VC) are single-ended, and are
intended for sensing each of the phase voltages in a polyphase meter application. These three single-ended
inputs are referenced to the V3P3A pin.
All ADC input pins measure voltage. In the case of shunt current sensors, currents are sensed as a voltage
drop in the shunt resistor sensor. In the case of Current Transformers (CT), the current is measured as a
voltage across a burden resistor that is connected to the secondary of the CT. Meanwhile, line voltages are
sensed through resistive voltage dividers. The VADC8 (VA), VADC9 (VB) and VADC10 (VC) pins are
single-ended and their common return is the V3P3A pin. See
30
schematic and bill of materials for typical component values used in these and other circuits.
v1.2
for detailed connections for each type of sensor. Also refer to the 71M6543 Demonstration Board
Figure 32
for the meter wiring configuration corresponding to
CT
CT
CT
CT
IN*
IC
IA
IB
© 2008–2011 Teridian Semiconductor Corporation
VADC10 (VC)
VADC9 (VB)
VADC8 (VA)
Figure 3. AFE Block Diagram (Four CTs)
IADC6
IADC7
IADC0
IADC1
IADC4
IADC5
IADC2
IADC3
*IN = Neutral Current
MUX
VREF
VADC
VREF
71M6543
71M6543F/H and 71M6543G/GH Data Sheet
Figure
CONVERTER
VREF
∆Σ ADC
FIR
Figure
27,
22
Figure
3.
CE RAM
9/17/2010
28,
Figure 29
Figure
and
Figure
3. In
13

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