71m6203-ilr/f Maxim Integrated Products, Inc., 71m6203-ilr/f Datasheet

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71m6203-ilr/f

Manufacturer Part Number
71m6203-ilr/f
Description
Isolated Sensor Ics
Manufacturer
Maxim Integrated Products, Inc.
Datasheet
GENERAL DESCRIPTION
The 71M6103/71M6113/71M6201/71M6203/71M6601/71M6603
(71M6xxx) isolated sensor ICs enable Teridian’s 4th-generation
polyphase-metering 71M654x systems-on-chips (SoCs) to use
nonisolating sensors such as resistive shunts without the need
for costly and nonlinear isolation transformers or CTs. Isolation is
provided by low-cost pulse transformers that form a bidirectional
digital communication link between the 71M654x and the
isolated sensor ICs.
The 71M6xxx isolated sensor ICs contain a 22-bit delta-sigma
ADC, an amplifier with differential inputs, a precision voltage
reference, a temperature sensor, and a supply voltage generator
that is energized by power pulses provided by the 71M654x.
In conjunction with the 71M654x metering SoCs, the isolated
sensor ICs offer unprecedented BOM cost reduction, immunity to
magnetic tampering, and enhanced reliability for single-phase
and polyphase applications.
v1.11
NEUTRAL
C
B
A
A Maxim Integrated Products Brand
Shunt Current Sensors
Pulse Transformers
HOST
AMR
IR
3x TERIDIAN
71M6xx3
Note: This system is referenced to Neutral
NEUTRAL
IADC0
IADC1
VADC10 (VC)
IADC6
IADC7
VADC9 (VB)
IADC4
IADC5
VADC8 (VA)
IADC2
IADC3
SPI INTERFACE
SERIAL PORTS
MODUL-
POWER FAULT
COMPARATOR
MUX and ADC
ATOR
*IN = Neutral Current
TX
RX
VREF
}
}
}
}
IN*
IC
IB
IA
TX
RX
TEMPERATURE
© 2008–2011 Teridian Semiconductor Corporation
V3P3A V3P3SYS
71M6543F/
71M6543H
TERIDIAN
COMPUTE
MEMORY
SENSOR
ENGINE
TIMERS
FLASH
MPU
RAM
RTC
ICE
POWER SUPPLY
LOAD
GNDA GNDD
OSCILLATOR/
REGULATOR
LCD DRIVER
DIO, PULSES
VBAT_RTC
PWR MODE
CONTROL
BATTERY
MONITOR
WAKE-UP
COM0...5
SEG/DIO
PLL
VBAT
9/17/2010
V3P3D
XOUT
SEG
DIO
XIN
BATTERY
RTC
BATTERY
8888.8888
LCD DISPLAY
32 kHz
I
2
PULSES,
EEPROM
C or µWire
DIO
FEATURES
• 0.1% Accuracy Over 2000:1 Current
• Exceeds IEC 62053/ANSI C12.20
• Compatible with Shunt Resistors as Low
• On-Chip Temperature Sensor Enables
• 22-Bit ADC
• Powered from the 71M654x Using Pulses
• 3.3mW Typical Consumption
• On-Chip Power Monitoring
• Industrial Temperature Range
• 8-Pin Lead(Pb)-Free SO Package
Range
Standards
as 50µΩ
Localized Digital Temperature
Compensation by the 71M654x
Sent Through the Transformer
Isolated Sensor ICs
71M6103/71M6113/
71M6201/71M6203/
71M6601/71M6603
19-5704; Rev 3/11
DATA SHEET
MARCH 2011
1

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71m6203-ilr/f Summary of contents

Page 1

... A Maxim Integrated Products Brand GENERAL DESCRIPTION The 71M6103/71M6113/71M6201/71M6203/71M6601/71M6603 (71M6xxx) isolated sensor ICs enable Teridian’s 4th-generation polyphase-metering 71M654x systems-on-chips (SoCs) to use nonisolating sensors such as resistive shunts without the need for costly and nonlinear isolation transformers or CTs. Isolation is provided by low-cost pulse transformers that form a bidirectional digital communication link between the 71M654x and the isolated sensor ICs ...

Page 2

PDS_6xxx_010 1 Hardware Description ................................................................................................................. 4 2 Functional Description ............................................................................................................... 4 3 Applications Information ........................................................................................................... 5 3.1 Product Selection ...................................................................................................................... 5 3.2 External Components for the 71M6xxx ................................................................................... 6 3.2.1 Current Sensor Side ........................................................................................................ 6 3.2.2 Pulse Transformer ........................................................................................................... 6 ...

Page 3

... Figure 4: Current Sensors Connected to the 71M6543F/H or 71M6545/H with Three 71M6xx3 ................. 9 Figure 5: Copper Separation and Signal Traces for a Polyphase PCB ...................................................... 10 Figure 6: Wh Error at Room Temperature (71M6203, 100A/0.1A, 60Hz/240V AC) ................................... 15 Figure 7: VARh Error at Room Temperature (71M6203, 100A/0.1A, 60Hz/240V AC) ............................... 15 Figure 8: SOIC-8 Package Outline ............................................................................................................. 16 Figure 9: Pinout for 8-Pin SO Package ....................................................................................................... 17 Table 1: Remote Interface Commands ...

Page 4

... PDS_6xxx_010 1 HARDWARE DESCRIPTION The 71M6103/71M6113/71M6201/71M6203/71M6601/71M6603 (71M6xxx) remote sensor ICs integrate all functional blocks required to implement an isolated front-end with digital communication capability. Figure 1 shows the 71M6xxx IC block diagram. The chip includes the following: • Preamplifier with a fixed gain • 22-bit delta-sigma ADC • ...

Page 5

PDS_6xxx_010 The 71M6xxx isolated sensors provide a continuous data stream of ADC data plus an independent data stream that contains auxiliary information as requested by the 71M654x. The ADC data is processed by CE code in the 71M654x and stored ...

Page 6

... P 100 71M6113 71M6201 S 200 71M6203 P Note single phase polyphase. Note 2: Accuracy over temperature (-40°C to +85°C for 71M620x parts, -20°C to +60° for all other parts), when combined with 71M654x or 71M654xH IC. Note 3: Maximum resistance at maximum current. Note 4: Power at maximum current and typical shunt resistance. ...

Page 7

PDS_6xxx_010 Voltage Sensing Figure 2: External Components Connected to the 71M6xxx 3.3 Connections to Sensors and to the 71M654x Figure 3 shows the sensor connections for single-phase meter application using a 71M6541D/F and 71M6x01. This single-phase configuration uses one local ...

Page 8

PDS_6xxx_010 Shunt NEUTRAL Shunt LINE TERIDIAN 71M6x01 Pulse Trans- former AMR IR HOST Figure 3: Current Sensors Connected to the 71M6541D/F Using One 71M6x01 v1.11 © 2008–2011 Teridian Semiconductor Corporation LOAD Note: This system is referenced to LINE NEUTRAL POWER ...

Page 9

PDS_6xxx_010 Shunt Current Sensors C NEUTRAL TERIDIAN Pulse Transformers AMR IR HOST Figure 4: Current Sensors Connected to the 71M6543F/H or 71M6545/H with Three 71M6xx3 3.4 PCB Layout Considerations To limit emissions and susceptibility to electromagnetic and ...

Page 10

PDS_6xxx_010 Figure 5: Copper Separation and Signal Traces for a Polyphase PCB 3.5 Compatibility with the 71M654x The 71M6xxx isolated sensor ICs are designed to be operated in conjunction with the 71M654x energy- metering ICs. Operation of the 71M6xxx isolated ...

Page 11

PDS_6xxx_010 4 SPECIFICATIONS 4.1 Absolute Maximum Ratings Table 3 shows the absolute maximum ranges for the device. Stresses beyond Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only and functional operation at these or ...

Page 12

... Temperature Equation for: 71M6601, 71M6603, 71M6103 and 71M6113 (Note: This is a definition—it is not a measured quantity.) Temperature Equation for: 71M6201 and 71M6203 (Note: This is a definition—it is not a measured quantity.) Temperature Error (Note 1) TETIME: Duration of Temperature Measurement Note 1: Guaranteed by design; not production tested. ...

Page 13

... PARAMETER VREF Output Voltage VREF Output Impedance VREF Power-Supply Sensitivity: ΔVREF/ΔVCC VREF Chop Step (Trimmed) VNOM Definition 71M6201 AND 71M6203 (0.2% ACCURACY CLASS) VNOM Temperature Coefficients: TC1, TC2 VREF(T) Deviation from VNOM(T) (Note 1) 71M6113 (0.5% ACCURACY CLASS) VNOM Temperature Coefficients: TC1, TC2 ...

Page 14

PDS_6xxx_010 4.4.6 ADC Converter Table 11: ADC Converter Specifications PARAMETER Input Current THD (First 10 Harmonics) v1.1 © 2008–2011 Teridian Semiconductor Corporation CONDITIONS MIN INP INP and INN at GND potential INN VIN = 65Hz, 64kpts FFT, Blackman-Harris window 71M6xxx ...

Page 15

... Figure 6: Wh Error at Room Temperature (71M6203, 100A/0.1A, 60Hz/240V AC) VARh Polyphase Load Line with 150µΩ Shunt 0.5 0.4 0.3 0.2 0 0.1 - 0.2 - 0.3 - 0.4 - 0.5 0.1 Figure 7: VARh Error at Room Temperature (71M6203, 100A/0.1A, 60Hz/240V AC) v1.1 © 2008–2011 Teridian Semiconductor Corporation 0 ° 60 ° 300 ° 180 ° 71M6xxx Data Sheet 100 90 ° ...

Page 16

PDS_6xxx_010 4.6 Package Outline Drawing Controlling dimensions are in mm. 9 5.99 +0.21 -0.05 TOP VIEW 0.41 +0.08 1.27 BSC -0.06 +0.08 -0.07 1.63 +0.10 -0.08 3 4.93 -0.13 +0.05 0.15 4 SEATING +0.1 - PLANE 0.023 SIDE VIEW NOTES: ...

Page 17

PDS_6xxx_010 4.7 IC Pinout 4.8 Pin Description Pin Name 1 VCC Supply Voltage Output. A 1.0µF capacitor to GND should be provided. Positive Bidirectional Communication Port for the Connection of the Pulse 2 SP Transformer Negative Bidirectional Communication Port for ...

Page 18

... CE Code EQU0-60 EQU5-60 EQU5-100 EQU5-100 EQU1-200, EQU2-200 EQU5-200 71M6xxx Data Sheet Recommended Max Shunt Meter Accuracy Resistance Class (µΩ) (°C) (%) 1 736 1 196 0.5 0.2 63 Ordering Number 71M6601-IL/F 71M6601-ILR/F 71M6603-IL/F 71M6603-ILR/F 71M6103-IL/F 71M6103-ILR/F 71M6113-IL/F 71M6113-ILR/F 71M6201-IL/F 71M6201-ILR/F 71M6203-IL/F 71M6203-ILR/F 18 ...

Page 19

PDS_6xxx_010 REVISION HISTORY REVISION REVISION NUMBER DATE 1.0 12/10 1.1 3/11 Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to ...

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