AD8021ARMZ Analog Devices Inc, AD8021ARMZ Datasheet - Page 9

IC OPAMP VF LN LP LDIST 8MSOP

AD8021ARMZ

Manufacturer Part Number
AD8021ARMZ
Description
IC OPAMP VF LN LP LDIST 8MSOP
Manufacturer
Analog Devices Inc
Datasheets

Specifications of AD8021ARMZ

Slew Rate
460 V/µs
Design Resources
Driving the AD7366/7 Bipolar SAR ADC in Low-Distortion DC-Coupled Appls (CN0042)
Amplifier Type
Voltage Feedback
Number Of Circuits
1
-3db Bandwidth
560MHz
Current - Input Bias
7.5µA
Voltage - Input Offset
400µV
Current - Supply
7.8mA
Current - Output / Channel
70mA
Voltage - Supply, Single/dual (±)
4.5 V ~ 24 V, ±2.25 V ~ 12 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Op Amp Type
High Speed
No. Of Amplifiers
1
Bandwidth
560MHz
Supply Voltage Range
± 2.25V To ± 12V
Amplifier Case Style
MSOP
No. Of Pins
8
Common Mode Rejection Ratio
-98
Current, Input Bias
7.5 μA
Current, Input Offset
±0.1 μA
Current, Output
60 mA
Current, Supply
6.7 mA
Harmonic Distortion
-108 dBc
Impedance, Thermal
145 °C/W
Package Type
MSOP-8
Power Dissipation
34 mW
Resistance, Input
10 Megohms
Temperature, Operating, Range
-40 to +85 °C
Voltage, Input
-4.1 to +4.6 V (Common-Mode)
Voltage, Noise
2.1 nV/sqrt Hz
Voltage, Offset
0.4 mV
Voltage, Output, High
+3.4 V
Voltage, Output, Low
-3.8 V
Voltage, Supply
±5 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
Gain Bandwidth Product
-
Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device

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TYPICAL PERFORMANCE CHARACTERISTICS
T
frequency = 1 MHz, unless otherwise noted.
A
= 25°C, V
Figure 5. Small Signal Frequency Response vs. Frequency and Gain,
Figure 6. Small Signal Frequency Response vs. Frequency and
–1
Figure 7. Small Signal Frequency Response vs. Frequency and
24
21
18
15
12
–3
–6
24
21
18
15
12
–3
–6
9
8
7
6
5
4
3
2
1
0
9
6
3
0
Compensation Capacitor, V
0.1M
9
6
3
0
0.1M
0.1M
S
G = +2
G = +10, R
G = +5, R
G = +2, R
G = +1, R
= ±5 V, R
G = –10, R
R
G = –5, R
R
G = –2, R
R
G = –1, R
R
Gain, V
V
IN
IN
IN
IN
OUT
= 100Ω, C
= 66.5Ω, C
= 63.4Ω, C
= 56.2Ω, C
= 50 mV p-p, Noninverting (See Figure 48)
F
F
F
OUT
F
F
F
F
= 1kΩ, R
= R
= 75Ω, C
F
= 1kΩ, R
= 499Ω, R
= 499Ω, R
1M
= 1kΩ, R
1M
L
1M
= 1kΩ, R
= 50 mV p-p Inverting (See Figure 48)
G
C
= 1 kΩ, G = +2, R
C
C
C
= 0pF
= 499Ω, C
= 1.5pF
= 4pF
= 7pF
G
C
G
G
FREQUENCY (Hz)
FREQUENCY (Hz)
FREQUENCY (Hz)
G
G
G
= 249Ω, C
= 10pF
= 200Ω,
= 110Ω, C
= 100Ω,
= 249Ω,
= 499Ω,
C
OUT
10M
10M
= 7pF
10M
= 50 mV p-p (See Figure 48)
C
C
= 2pF
= 0pF
C
F
C
C
C
= R
C
= 9pF
C
100M
= 9pF
100M
100M
= 7pF
G
= 499 Ω, R
C
C
C
C
= 5pF
= 7pF
1G
1G
1G
S
Rev. F | Page 9 of 28
= 49.9 Ω, R
O
= 976 Ω, R
Figure 8. Small Signal Frequency Response vs. Frequency and Supply,
Figure 9. Small Signal Frequency Response vs. Frequency and Supply,
Figure 10. Frequency Response vs. Frequency and V
–1
–1
–1
–2
–3
–4
–5
–6
–7
9
8
7
6
5
4
3
2
1
0
9
8
7
6
5
4
3
2
1
0
3
2
1
0
1M
D
1M
1M
= 53.6 Ω, C
G = +2
G = –1
G = +2
V
OUT
V
OUT
= 50 mV p-p, Noninverting (See Figure 48)
V
= 50 mV p-p, Inverting (See Figure 50)
OUT
V
OUT
C
= 4V p-p
= 7 pF, C
= 1V p-p
10M
10M
10M
FREQUENCY (Hz)
(See Figure 48)
FREQUENCY (Hz)
FREQUENCY (Hz)
L
V
V
OUT
= 0, C
S
V
V
= ±12V
S
S
V
V
= 0.1V AND 50mV p-p
= ±2.5V
= ±2.5V
S
S
= ±2.5V
= ±2.5V
100M
100M
F
100M
= 0, V
V
V
S
OUT
S
OUT
= ±5V
= ±5V
V
, Noninverting
AD8021
S
= ±12V
= 2 V p-p,
1G
1G
1G

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