OP177GPZ Analog Devices Inc, OP177GPZ Datasheet - Page 10

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OP177GPZ

Manufacturer Part Number
OP177GPZ
Description
IC OPAMP GP PREC LN 8DIP
Manufacturer
Analog Devices Inc
Datasheets

Specifications of OP177GPZ

Slew Rate
0.3 V/µs
Design Resources
AD7266 SAR ADC in DC-Coupled Differential and Single-Ended Appls (CN0039) DC-Coupled, Single-Ended-to-Differential Conversion Using AD8138 and AD7352 (CN0040) DC-Coupled, Single-Ended-to-Differential Conversion Using AD8138 and AD7356 (CN0041) AD7265 in Differential and Single-Ended Configurations Using AD8022 (CN0048) Unipolar, Precision DC Digital-to-Analog Conversion using AD5450/1/2/3 8-14-Bit DACs (CN0052) DC-Coupled, Single-Ended-to-Differential Conversion Using AD8138 and AD7357 (CN0061)
Amplifier Type
General Purpose
Number Of Circuits
1
Gain Bandwidth Product
600kHz
Current - Input Bias
1.2nA
Voltage - Input Offset
20µV
Current - Supply
1.6mA
Voltage - Supply, Single/dual (±)
6 V ~ 36 V, ±3 V ~ 18 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Op Amp Type
Precision
No. Of Amplifiers
1
Bandwidth
600kHz
Supply Voltage Range
± 3V To ± 18V
Amplifier Case Style
DIP
No. Of Pins
8
Common Mode Rejection Ratio
140
Current, Input Bias
+1.2 nA
Current, Input Offset
0.3 nA
Current, Supply
1.6 mA
Impedance, Thermal
43 °C/W
Package Type
PDIP-8
Power Dissipation
50 mW
Resistance, Input
45 Megohms (Differential), 200 Gigaohms (Common-Mode)
Temperature, Operating, Range
-40 to +85 °C
Voltage, Gain
6000 V/mV
Voltage, Input
+14 V
Voltage, Noise
118 nV
Voltage, Offset
20 μV
Voltage, Output, High
+14 V
Voltage, Output, Low
-14 V
Voltage, Supply
±15 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
Current - Output / Channel
-
-3db Bandwidth
-
Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device

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Company
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Manufacturer
Quantity
Price
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OP177GPZ
Manufacturer:
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Manufacturer:
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Quantity:
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OP177
PRECISION HIGH GAIN DIFFERENTIAL AMPLIFIER
The high gain, gain linearity, CMRR, and low TCV
OP177 make it possible to obtain performance not previously
available in single stage, very high gain amplifier applications.
See Figure 28.
For best CMR,
In this example, with a 10 mV differential signal, the maximum
errors are listed in Table 6.
Table 6. High Gain Differential Amp Performance
Type
Common-Mode Voltage
Gain Linearity, Worst Case
TCV
TCI
OS
OS
Figure 28. Precision High Gain Differential Amplifier
R1
R2
1kΩ
1kΩ
must equal
R
R
1
3
1MΩ
R
4
2
3
OP177
+
+15V
–15V
R3
R4
7
4
Amount
0.1%/V
0.02%
0.0003%/°C
0.008%/°C
0.1µF
0.1µF
1MΩ
R
2
6
OS
of the
Rev. F | Page 10 of 16
ISOLATING LARGE CAPACITIVE LOADS
The circuit shown in Figure 29 reduces maximum slew rate but
allows driving capacitive loads of any size without instability.
Because the 100 Ω resistor is inside the feedback loop, its effect
on output impedance is reduced to insignificance by the high
open loop gain of the OP177.
BILATERAL CURRENT SOURCE
The current sources shown in Figure 30 supply both positive
and negative currents into a grounded load.
Note that
and that for Z
PRECISION ABSOLUTE VALUE AMPLIFIER
The high gain and low TCV
inputs from microvolts to volts. In this circuit, the signal always
appears as a common-mode signal to the op amps (for details,
see Figure 31).
INPUT
Z
R5
O
R2
+
=
R4
R5
R
R
O
must
S
5
R2
to be infinite
+
Figure 29. Isolating Capacitive Loads
R4
R2
R4
=
2
3
+
10pF
R3
R1
+
OP177
1
R3
R1
+15V
–15V
7
4
OS
0.1µF
0.1µF
assure accurate operation with
R
6
F
100Ω
C
LOAD
OUTPUT

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