AD829ARZ Analog Devices Inc, AD829ARZ Datasheet - Page 15

IC VIDEO OPAMP HS LN 8-SOIC

AD829ARZ

Manufacturer Part Number
AD829ARZ
Description
IC VIDEO OPAMP HS LN 8-SOIC
Manufacturer
Analog Devices Inc
Datasheets

Specifications of AD829ARZ

Slew Rate
230 V/µs
Applications
Voltage Feedback
Number Of Circuits
1
-3db Bandwidth
120MHz
Current - Supply
5.3mA
Current - Output / Channel
32mA
Voltage - Supply, Single/dual (±)
±4.5 V ~ 18 V
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.154", 3.90mm Width)
Gain Bandwidth
120MHz
Supply Voltage Range
± 4.5V To ± 18V
No. Of Amplifiers
1
Output Current
32mA
Amplifier Output
Single Ended
Amplifier Type
High Speed, Low Noise
Bandwidth
600 MHz
Common Mode Rejection Ratio
120
Current, Input Bias
3.3 μA
Current, Input Offset
50 nA
Current, Output
32 mA
Current, Supply
5 mA
Impedance, Thermal
175 °C/W
Package Type
SOIC-8
Power Dissipation
0.9 W
Resistance, Input
13 Kilohms
Temperature, Operating, Range
0 to +70 °C
Voltage, Input
-13.8 to +14.3 V (Common-Mode)
Voltage, Noise
1.7 nV/sqrt Hz
Voltage, Offset
0.2 mV
Voltage, Output, High
+3.6 V
Voltage, Output, Low
-3.6 V
Voltage, Supply
±15 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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Figure 44 and Figure 45 show the closed-loop frequency
response of the AD829 for different closed-loop gains and
different supply voltages.
When a noninverting amplifier configuration using a current
feedback compensation is needed, the circuit shown in Figure 46 is
recommended. This circuit provides a slew rate twice that of the
shunt compensated noninverting amplifier of Figure 47 at the
expense of gain flatness. Nonetheless, this circuit delivers 95 MHz
bandwidth with 1 dB flatness into a back-terminated cable, with
a differential gain error of only 0.01% and a differential phase
error of only 0.015 at 4.43 MHz.
Figure 44. Closed-Loop Frequency Response for the Inverting Amplifier Using
Figure 45. Closed-Loop Frequency Response vs. Supply for the Inverting
–12
–15
–17
–20
–23
–26
–29
–32
–35
–38
–41
–44
–47
15
12
–3
–6
–9
9
6
3
0
1
1
Amplifier Using Current Feedback Compensation
V
R
R
V
V
R
R
GAIN = –1
C
GAIN = –4
C
GAIN = –2
C
GAIN = –1
C
S
L
F
IN
IN
L
F
COMP
COMP
COMP
COMP
= ± 15V
= 1k Ω
= 1k Ω
= 1k Ω
= 1k Ω
= –30dBm
= –20dBm
= 4pF
Current Feedback Compensation
= 2pF
= 3pF
= 4pF
FREQUENCY (MHz)
FREQUENCY (MHz)
10
10
± 5V
± 15V
100
100
Rev. H | Page 15 of 20
LOW ERROR VIDEO LINE DRIVER
The buffer circuit shown in Figure 47 drives a back-terminated
75 Ω video line to standard video levels (1 V p-p), with 0.1 dB
gain flatness to 30 MHz and with only 0.04° and 0.02% differential
phase and gain at the 4.43 MHz PAL color subcarrier frequency.
This level of performance, which meets the requirements for
high definition video displays and test equipment, is achieved
using only 5 mA quiescent current.
Figure 47. Video Line Driver with a Flatness over Frequency Adjustment
Figure 46. Noninverting Amplifier Connection Using Current Feedback
V
V
IN
IN
CABLE
COAX
50Ω
75Ω
0.1μF
50Ω
0.1μF
C
COMP
30pF
3
2
AD829
+
+15V
–15V
0.1μF
3
2
7
5
AD829
+
+15V
–15V
4
Compensation
7
4
5
0.1μF
3pF
C
6
COMP
6
300Ω
300Ω
2kΩ
2kΩ
75Ω
50Ω
CABLE
CABLE
COAX
COAX
50Ω
50Ω
OPTIONAL
2pF TO 7pF
FLATNESS
TRIM
75Ω
50kΩ
AD829
V
V
OUT
OUT

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