AD8211YRJZ-R2 Analog Devices Inc, AD8211YRJZ-R2 Datasheet - Page 10

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AD8211YRJZ-R2

Manufacturer Part Number
AD8211YRJZ-R2
Description
Current-Shunt Monitor 5-Pin SOT-23 T/R
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD8211YRJZ-R2

Package
5SOT-23
Operating Temperature
-40 to 125 °C
Function
Current Monitor
Sensing Method
High/Low-Side
Accuracy
±0.25%
Voltage - Input
-2 ~ 65 V
Mounting Type
Surface Mount
Package / Case
SOT-23-5, SC-74A, SOT-25
No. Of Amplifiers
1
Input Offset Voltage
1mV
Gain Db Max
20dB
Bandwidth
500kHz
Cmrr
120dB
Slew Rate
4.5V/µs
Supply Voltage Range
4.5V To 5.5V
Supply Current
1.2mA
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD8211YRJZ-R2
Manufacturer:
ADI
Quantity:
250
Part Number:
AD8211YRJZ-R2
Manufacturer:
AD
Quantity:
20 000
AD8211
THEORY OF OPERATION
In typical applications, the AD8211 amplifies a small differential
input voltage generated by the load current flowing through
a shunt resistor. The AD8211 rejects high common-mode
voltages (up to 65 V) and provides a ground-referenced,
buffered output that interfaces with an analog-to-digital converter
(ADC). Figure 23 shows a simplified schematic of the AD8211.
I
IN
Q1
R1
R
OUT
A1
R
I
SHUNT
SHUNT
GND
Figure 23. Simplified Schematic
PROPRIETARY
CIRCUITRY
OFFSET
AD8211
R
G = +20
V
V+
OUT
= (I
SHUNT
× R
SHUNT
) × 20
Rev. A | Page 10 of 16
A load current flowing through the external shunt resistor
produces a voltage at the input terminals of the AD8211. The
input terminals are connected to Amplifier A1 by Resistor R
and Resistor R1. The inverting terminal, which has very high
input impedance is held to
because negligible current flows through Resistor R. Amplifier
A1 forces the noninverting input to the same potential. Therefore,
the current that flows through Resistor R1, is equal to
This current (I
output buffer amplifier has a gain of 20 V/V and offers excellent
accuracy as the internal gain setting resistors are precision trimmed
to within 0.01% matching. The resulting output voltage is equal to
(V
I
V
IN
OUT
CM
= (I
) − (I
= (I
SHUNT
SHUNT
SHUNT
IN
) is converted back to a voltage via R
× R
× R
× R
SHUNT
SHUNT
SHUNT
)/R1
) × 20
)
OUT
. The

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