AD8221ARZ Analog Devices Inc, AD8221ARZ Datasheet - Page 17

IC AMP INST PREC LN 18MA 8SOIC

AD8221ARZ

Manufacturer Part Number
AD8221ARZ
Description
IC AMP INST PREC LN 18MA 8SOIC
Manufacturer
Analog Devices Inc
Type
Instrumentation Ampr
Datasheets

Specifications of AD8221ARZ

Design Resources
Low Cost, High Voltage, Programmable Gain Instrumentation Amplifier Using AD5292 and AD8221 (CN0114) Low Cost Programmable Gain Instrumentation Amplifier Circuit Using ADG1611 and AD620 (CN0146)
Amplifier Type
Instrumentation
Number Of Circuits
1
Slew Rate
2 V/µs
-3db Bandwidth
825kHz
Current - Input Bias
500pA
Voltage - Input Offset
60µV
Current - Supply
900µA
Current - Output / Channel
18mA
Voltage - Supply, Single/dual (±)
4.6 V ~ 36 V, ±2.3 V ~ 18 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Number Of Channels
1
Number Of Elements
1
Power Supply Requirement
Dual
Common Mode Rejection Ratio
130dB
Voltage Gain Db
60dB
Input Resistance
100000@±15VMohm
Input Offset Voltage
0.06@±15VmV
Input Bias Current
0.0015@±15VnA
Single Supply Voltage (typ)
Not RequiredV
Power Supply Rejection Ratio
130dB
Power Dissipation
200mW
Rail/rail I/o Type
No
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (min)
±2.3V
Dual Supply Voltage (max)
±18V
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
8
Package Type
SOIC N
No. Of Amplifiers
1
Gain Db Min
1dB
Bandwidth
825kHz
Amplifier Output
Single Ended
Cmrr
130dB
Supply Voltage Range
± 2.3V To ± 18V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
Gain Bandwidth Product
-
Lead Free Status / RoHS Status
Compliant, Lead free / RoHS Compliant

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THEORY OF OPERATION
The AD8221 is a monolithic instrumentation amplifier based
on the classic 3-op amp topology. Input transistors Q1 and Q2
are biased at a fixed current so that any differential input signal
forces the output voltages of A1 and A2 to change accordingly.
A signal applied to the input creates a current through R
and R2, such that the outputs of A1 and A2 deliver the correct
voltage. Topologically, Q1, A1, R1 and Q2, A2, R2 can be
viewed as precision current feedback amplifiers. The amplified
differential and common-mode signals are applied to a
difference amplifier that rejects the common-mode voltage
but amplifies the differential voltage. The difference amplifier
employs innovations that result in low output offset voltage as
well as low output offset voltage drift. Laser-trimmed resistors
allow for a highly accurate in-amp with gain error typically less
than 20 ppm and CMRR that exceeds 90 dB (G = 1).
Using superbeta input transistors and an I
scheme, the AD8221 offers extremely high input impedance,
low I
extremely low voltage noise of 8 nV/√Hz.
The transfer function of the AD8221 is
Users can easily and accurately set the gain using a single
standard resistor.
B
G
, low I
=
1+
B
49
I
B
–IN
drift, low I
COMPENSATION
4 .
R
G
+V
S
400Ω
OS
–V
, low input bias current noise, and
S
Q1
I
C1
R1 24.7kΩ
B
A1
compensation
+V
–V
S
S
R
G
V
Figure 43. Simplified Schematic
B
G
, R1,
+V
–V
R2
Rev. C | Page 17 of 24
S
S
A2
24.7kΩ
C2
Q2
Because the input amplifiers employ a current feedback
architecture, the gain-bandwidth product of the AD8221
increases with gain, resulting in a system that does not suffer
from the expected bandwidth loss of voltage feedback
architectures at higher gains.
To maintain precision even at low input levels, special attention
was given to the design and layout of the AD8221, resulting in
an in-amp whose performance satisfies the most demanding
applications.
A unique pinout enables the AD8221 to meet a CMRR
specification of 80 dB at 10 kHz (G = 1) and 110 dB at 1 kHz
(G = 1000). The balanced pinout, shown in Figure 44, reduces
the parasitics that had, in the past, adversely affected CMRR
performance. In addition, the new pinout simplifies board
layout because associated traces are grouped together. For
example, the gain setting resistor pins are adjacent to the
inputs, and the reference pin is next to the output.
I
–V
I
B
COMPENSATION
S
400Ω
+V
S
10kΩ
10kΩ
+IN
+IN
–IN
R
R
G
G
Figure 44. Pinout Diagram
1
2
3
4
10kΩ
TOP VIEW
AD8221
A3
10kΩ
+V
–V
S
S
8
7
6
5
+V
V
REF
–V
OUT
+V
–V
S
S
S
S
OUTPUT
REF
AD8221

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