AD8009AR Analog Devices Inc, AD8009AR Datasheet

IC OPAMP CF LDIST 175MA 8SOIC

AD8009AR

Manufacturer Part Number
AD8009AR
Description
IC OPAMP CF LDIST 175MA 8SOIC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD8009AR

Slew Rate
5500 V/µs
Mounting Type
Surface Mount
Rohs Status
RoHS non-compliant
Amplifier Type
Current Feedback
Number Of Circuits
1
-3db Bandwidth
1GHz
Current - Input Bias
50µA
Voltage - Input Offset
2000µV
Current - Supply
16mA
Current - Output / Channel
175mA
Voltage - Supply, Single/dual (±)
5 V ~ 12 V, ±2.5 V ~ 6 V
Operating Temperature
-40°C ~ 85°C
Package / Case
8-SOIC (3.9mm Width)
No. Of Amplifiers
1
Bandwidth
1GHz
No. Of Pins
8
Operating Temperature Range
-40°C To +85°C
Settling Time
10ns
Temperature Min
-40°C
Output Type
-
Gain Bandwidth Product
-
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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a
REV. F
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties that
may result from its use. No license is granted by implication or otherwise
under any patent or patent rights of Analog Devices. Trademarks and
registered trademarks are the property of their respective owners.
Figure 1. Large Signal Frequency Response; G = +2 and +10
FEATURES
Ultrahigh Speed
Low Distortion over Wide Bandwidth
Good Video Specifications
High Output Drive
Supply Operation
APPLICATIONS
Pulse Amplifier
IF/RF Gain Stage/Amplifiers
High Resolution Video Graphics
High Speed Instrumentations
CCD Imaging Amplifier
5,500 V/ s Slew Rate, 4 V Step, G = +2
545 ps Rise Time, 2 V Step, G = +2
Large Signal Bandwidth
Small Signal Bandwidth (–3 dB)
Settling Time 10 ns to 0.1%, 2 V Step, G = +2
SFDR
Third Order Intercept (3IP)
Gain Flatness 0.1 dB to 75 MHz
0.01% Differential Gain Error, R
0.01 Differential Phase Error, R
175 mA Output Load Drive
10 dBm with –38 dBc SFDR @ 70 MHz, G = +10
+5 V to
14 mA (Typ) Supply Current
440 MHz, G = +2
320 MHz, G = +10
1 GHz, G = +1
700 MHz, G = +2
–66 dBc @ 20 MHz, Second Harmonic
–75 dBc @ 20 MHz, Third Harmonic
26 dBm @ 70 MHz, G = +10
–1
–2
–3
–4
–5
–6
–7
–8
2
1
0
1
V
O
= 2V p-p
5 V Voltage Supply
FREQUENCY RESPONSE (MHz)
10
G = +10
R
R
L
L
100
F
L
= 150
= 150
= 200
= 100
G = +2
R
R
F
L
= 301
= 150
1000
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700
Fax: 781/326-8703
PRODUCT DESCRIPTION
The AD8009 is an ultrahigh speed current feedback amplifier
with a phenomenal 5,500 V/µs slew rate that results in a rise
time of 545 ps, making it ideal as a pulse amplifier.
The high slew rate reduces the effect of slew rate limiting and
results in the large signal bandwidth of 440 MHz required for
high resolution video graphic systems. Signal quality is main-
tained over a wide bandwidth with worst-case distortion of
–40 dBc @ 250 MHz (G = +10, 1 V p-p). For applications with
multitone signals, such as IF signal chains, the third order
intercept (3IP) of 12 dBm is achieved at the same frequency. This
distortion performance coupled with the current feedback
architecture make the AD8009 a flexible component for a gain
stage amplifier in IF/RF signal chains.
The AD8009 is capable of delivering over 175 mA of load current
and will drive four back terminated video loads while maintaining
low differential gain and phase error of 0.02% and 0.04°,
respectively. The high drive capability is also reflected in the
ability to deliver 10 dBm of output power @ 70 MHz with
–38 dBc SFDR.
The AD8009 is available in a small SOIC package and will
operate over the industrial temperature range –40°C to +85°C.
The AD8009 is also available in an SOT-23-5 and will operate
over the commercial temperature range of 0°C to 70°C.
8-Lead Plastic SOIC (R-8)
–V
–IN
+IN
NC
NC = NO CONNECT
–100
S
–30
–40
–50
–60
–70
–80
–90
Figure 2. Distortion vs. Frequency; G = +2
1
2
3
4
1
FUNCTIONAL BLOCK DIAGRAMS
G = 2
R
V
AD8009
F
O
= 301
= 2V p-p
Low Distortion Amplifier
© 2004 Analog Devices, Inc. All rights reserved.
8
7
6
5
150
FREQUENCY RESPONSE (MHz)
NC
+V
OUT
NC
SECOND
S
1 GHz, 5,500 V/ s
LOAD
THIRD
150
100
SECOND
10
LOAD
LOAD
5-Lead SOT-23 (RT-5)
V
–V
OUT
+IN
S
THIRD
100
AD8009
1
2
3
LOAD
AD8009
www.analog.com
5
4
70
–IN
+V
S

Related parts for AD8009AR

AD8009AR Summary of contents

Page 1

FEATURES Ultrahigh Speed 5,500 V/ s Slew Rate Step 545 ps Rise Time Step Large Signal Bandwidth 440 MHz 320 MHz +10 Small Signal ...

Page 2

... P R Package = 0.7 W 150 MIN MAX = ± ± –2– = 100 ; for R Package 301 for G = +1, + 191 for G = +10, unless otherwise noted.) F AD8009AR/JRT Min Typ Max 1,000 845 480 700 300 350 390 440 235 320 45 75 4,500 5,500 10 25 0.725 – ...

Page 3

... MHz 20 MHz 70 MHz MHz MHz, + MHz, –In +Input –Input +Input Ω Package = –3– AD8009 = 301 for G = +1, +2, F AD8009AR/JRT Min Typ Max Unit 630 MHz 430 MHz 300 MHz 365 MHz 250 MHz 65 MHz 2,100 V/µ 0.725 ns –74 dBc – ...

Page 4

... Range AD8009AR –40°C to +85°C AD8009AR-REEL –40°C to +85°C AD8009AR-REEL7 –40°C to +85°C AD8009ARZ* –40°C to +85°C AD8009ARZ-REEL* –40°C to +85°C AD8009ARZ-REEL7* –40°C to +85°C AD8009JRT-R2 0°C to 70°C AD8009JRT-REEL 0°C to 70°C AD8009JRT-REEL7 0°C to 70°C AD8009JRTZ-REEL* 0° ...

Page 5

PACKAGE : – 100 +2, R AND 200mV p–p – + 301 +10, ...

Page 6

AD8009 + 200 100 p FREQUENCY (MHz) TPC 7. Large Signal Frequency Response vs. Temperature; ...

Page 7

P (dBm) OUT TPC 13. Third Harmonic Distortion vs 22 ...

Page 8

AD8009 100 301 0.1 0.01 0.03 0 FREQUENCY (MHz) TPC 19. Output Resistance vs. Frequency 100 1k 10k 100k FREQUENCY (Hz) TPC 20. ...

Page 9

C 2.0 COMP 49.9 49.9 1.8 200 1.6 22.1 1.4 C 1.2 C 1 FREQUENCY (MHz) TPC 25. Output VSWR +10 V 100 OUT STEP ...

Page 10

AD8009 200 100 p-p O 500mV TPC 31 Transient Response + + 200 100 ...

Page 11

HP8753D OUT +5V 0.001 F 0 AD8009 49 49.9 4 301 301 0.001 F 0.1 F –5V TPC 37. AD8009 Driving a Band-Pass RF Filter APPLICATIONS All current feedback op ...

Page 12

AD8009 I OUT ADV7160/ ADV7162 I OUT I OUT Figure 4. Driving an Additional High Resolution Monitor Using Three AD8009s RGB Monitor Driver High resolution computer monitors require very high full power bandwidth signals to maximize their display resolution. The ...

Page 13

Driving a Capacitive Load A capacitive load, like that presented by some A/D converters, can sometimes be a challenge for an op amp to drive depending on the architecture of the op amp. Most of the problem is caused by ...

Page 14

AD8009 0.25 (0.0098) 0.10 (0.0040) COPLANARITY 1.30 1.15 0.90 0.15 MAX OUTLINE DIMENSIONS 8-Lead Standard Small Outline Package [SOIC] (R-8) Dimensions shown in millimeters and (inches) 5.00 (0.1968) 4.80 (0.1890 6.20 (0.2440) 4.00 (0.1574) 5.80 (0.2284) 3.80 (0.1497) ...

Page 15

Revision History Location 9/04—Data Sheet changed from REV REV. F. Changes to ORDERING GUIDE . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 16

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