AMP02FSZ-RL Analog Devices Inc, AMP02FSZ-RL Datasheet - Page 9

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AMP02FSZ-RL

Manufacturer Part Number
AMP02FSZ-RL
Description
SOL-16 WITH TAPE & REEL
Manufacturer
Analog Devices Inc
Type
Instrumentation Ampr
Datasheet

Specifications of AMP02FSZ-RL

Amplifier Type
Instrumentation
Number Of Circuits
1
Slew Rate
6 V/µs
-3db Bandwidth
1.2MHz
Current - Input Bias
4nA
Voltage - Input Offset
40µV
Current - Supply
5mA
Current - Output / Channel
32mA
Voltage - Supply, Single/dual (±)
±4.5 V ~ 18 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (0.300", 7.5mm Width)
Number Of Channels
1
Number Of Elements
1
Power Supply Requirement
Dual
Common Mode Rejection Ratio
75dB
Voltage Gain Db
80dB
Input Resistance
16500@±15VMohm
Input Offset Voltage
0.2@±15VmV
Input Bias Current
0.02@±15VnA
Single Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (typ)
±5/±9/±12/±15V
Power Supply Rejection Ratio
75dB
Rail/rail I/o Type
No
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (min)
±4.5V
Dual Supply Voltage (max)
±18V
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
16
Package Type
SOIC W
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
Gain Bandwidth Product
-
Lead Free Status / Rohs Status
Compliant
Figure 4 shows the triple op amp configuration of the AMP02.
With all instrumentation amplifiers of this type, it is critical not
to exceed the dynamic range of the input amplifiers. The ampli-
fied differential input signal and the input common-mode volt-
age must not force the amplifier’s output voltage beyond ± 12 V
(V
where:
If V
input voltage range is:
REV. E
The input stage amplifier’s output voltages at V
S
V
V
G
1
= ± 15 V) or nonlinear operation will result.
D
CM
and V
= Differential input voltage
= (+IN) – (–IN)
= Common-mode input voltage
= Gain of instrumentation amplifier
2
can equal ± 12 V maximum, the common-mode
CMVR
V
V
1
2
=
=
=
=
G
1
G
V
1
+
= ±
2
V
D
+
2
2
R
D
2
R
R
+
G
12
R
+
G
V
V
CM
V
V
CM
2
V
D
R
R
2
+IN
–IN
D
G2
G1
+
GV
+
V
V
2
R
CM
G
CM
D
3
8
1
2
Figure 4. Triple Op Amp Topology
1
and V
25k
25k
R
R
V
V
2
2
1
equal:
25k
25k
–9–
25k
25k
Grounding
The majority of instruments and data acquisition systems have
separate grounds for analog and digital signals. Analog ground may
also be divided into two or more grounds that will be tied together
at one point, usually at the analog power supply ground. In
addition, the digital and analog grounds may be joined—normally
at the analog ground pin on the A/D converter. Following this
basic practice is essential for good circuit performance.
Mixing grounds causes interactions between digital circuits and the
analog signals. Since the ground returns have finite resistance
and inductance, hundreds of millivolts can be developed between
the system ground and the data acquisition components. Using
separate ground returns minimizes the current flow in the sensitive
analog return path to the system ground point. Consequently, noisy
ground currents from logic gates interact with the analog signals.
Inevitably, two or more circuits will be joined together with
their grounds at differential potentials. In these situations, the
differential input of an instrumentation amplifier, with its high
CMR, can accurately transfer analog information from one
circuit to another.
Sense and Reference Terminals
The sense terminal completes the feedback path for the instrumen-
tation amplifier output stage and is internally connected directly
to the output. For SOIC devices, connect the sense terminal to
the output. The output signal is specified with respect to the refer-
ence terminal, which is normally connected to analog ground.
The reference may also be used for offset correction level shift-
ing. A reference source resistance will reduce the common-mode
rejection by the ratio of 25 kΩ/R
tance is 1 Ω, the CMR will be reduced 88 dB (25 kΩ/1 Ω = 88 dB).
6
5
SENSE
OUT
REFERENCE
(SOIC-16 ONLY)
REF
. If the reference source resis-
AMP02

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