OP200EZ Analog Devices Inc, OP200EZ Datasheet - Page 8

IC OPAMP GP 500KHZ DUAL LP 8CDIP

OP200EZ

Manufacturer Part Number
OP200EZ
Description
IC OPAMP GP 500KHZ DUAL LP 8CDIP
Manufacturer
Analog Devices Inc
Datasheets

Specifications of OP200EZ

Slew Rate
0.15 V/µs
Rohs Status
RoHS non-compliant
Amplifier Type
General Purpose
Number Of Circuits
2
Gain Bandwidth Product
500kHz
Current - Input Bias
100pA
Voltage - Input Offset
25µV
Current - Supply
570µA
Voltage - Supply, Single/dual (±)
±3 V ~ 18 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Through Hole
Package / Case
8-CDIP (0.300", 7.62mm)
Op Amp Type
Low Offset Voltage
No. Of Amplifiers
2
Bandwidth
500kHz
Supply Voltage Range
± 3V To ± 18V
Amplifier Case Style
DIP
No. Of Pins
8
Rail/rail I/o Type
No
Number Of Elements
2
Unity Gain Bandwidth Product
0.5MHz
Common Mode Rejection Ratio
120dB
Input Offset Voltage
0.075@±15VmV
Input Bias Current
2nA
Single Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (typ)
±5/±9/±12/±15V
Voltage Gain In Db
140dB
Power Supply Requirement
Dual
Shut Down Feature
No
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (min)
±3V
Dual Supply Voltage (max)
±20V
Technology
Bipolar
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Through Hole
Pin Count
8
Package Type
CDIP
Channel Separation
145
Current, Input Bias
0.1 nA
Current, Input Offset
0.05 nA
Current, Supply
570 μA
Impedance, Thermal
16 °C/W
Number Of Amplifiers
Dual
Resistance, Input
10 Megohms (Differential), 125 Gigaohms (Common-Mode)
Temperature, Operating, Range
-40 to +85 °C
Voltage, Gain
12000 V/mV
Voltage, Input
±13 V
Voltage, Noise
22 nV/sqrt Hz
Voltage, Offset
25 μV
Voltage, Output, High
+12.2 V
Voltage, Output, Low
-12.2 V
Voltage, Supply
±15 V
Output Type
-
Current - Output / Channel
-
-3db Bandwidth
-
Lead Free Status / Rohs Status
Not Compliant

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Manufacturer
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APPLICATIONS INFORMATION
The OP200 is inherently stable at all gains and is capable of
driving large capacitive loads without oscillating. Nonetheless,
good supply decoupling is highly recommended. Proper supply
decoupling reduces problems caused by supply line noise and
improves the capacitive load driving capability of the OP200.
APPLICATIONS
Dual Low-Power Instrumentation Amplifier
A dual instrumentation amplifier that consumes less than 33 mW
of power per channel is shown in Figure 4. The linearity of the
instrumentation amplifier exceeds 16 bits in gains of 5 to 200
and is better than 14 bits in gains from 200 to 1000. CMRR is
above 115 dB (gain = 1000). Offset voltage drift is typically
0.2 µV/°C over the military temperature range, which is compa-
rable to the best monolithic instrumentation amplifiers. The
bandwidth of the low power instrumentation amplifier is a func-
tion of gain and is shown below:
OP200
Gain
5
10
100
1000
50
45
40
35
30
25
20
15
10
5
0
0
T
V
TPC 19. Overshoot vs.
Capacitive Load
TPC 22. Large Signal
Transient Response
A
S
= 25 C
=
0.5
15V
CAPACITIVE LOAD – nF
1.0
1.5
Bandwidth
150 kHz
67 kHz
7.5 kHz
500 Hz
1.0
FALLING
RISING
1.5
3.0
29
28
27
26
25
24
23
22
0
TPC 20. Short-Circuit
Current vs. Time
TPC 23. Small Signal
Transient Response
SOURCING
1
TIME – Minutes
SINKING
–8–
2
The output signal is specified with respect to the reference
input, which is normally connected to analog ground. The
reference input can be used to offset the output from –10 V
to +10 V if required.
3
Figure 4. Dual Low Power Instrumentation Amplifier
V
REF
V
IN
T
V
A
S
= 25 C
=
4
20k
15V
5
5
6
OP200AZ
1/2
5k
150
140
130
120
110
100
90
TPC 24. Small Signal Transient
Response C
10
7
TPC 21. Channel Separation
vs. Frequency
V
R
OUT
G
5k
= 5 +
100
40000
FREQUENCY – Hz
3
2
R
LOAD
G
OP200AZ
+15V
–15V
1/2
V
1k
20k
IN
= 1 nF
8
4
+ V
REF
1
10k
REV. B
V
OUT
100k

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