REV. C
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a
AD8017
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700 www.analog.com
Fax: 781/326-8703 © Analog Devices, Inc., 2002
Dual High Output Current,
High Speed Amplifier
PIN CONFIGURATION
8-Lead Thermal Coastline SOIC (SO-8)
8
7
6
5
1
2
3
4
OUT1
–IN1
+IN1
–V
S
+V
S
OUT2
–IN2
+IN2
AD8017
+
+
FEATURES
High Output Drive Capability
20 V p-p Differential Output Voltage, R
L
= 50
10 V p-p Single-Ended Output Voltage While
Delivering 200 mA to a 25 Load
Low Power Operation
5 V to 12 V Voltage Supply @ 7 mA/Amplifier
Low Distortion
–78 dBc @ 500 kHz SFDR, R
L
= 100 , V
O
= 2 V p-p
–58 dBc Highest Harmonic @ 1 MHz, I
O
= 270 mA
(R
L
= 10 )
High Speed
160 MHz, –3 dB Bandwidth (G = +2)
1600 V/s Slew Rate
APPLICATIONS
xDSL PCI Cards
Consumer DSL Modems
Line Driver
Video Distribution
PRODUCT DESCRIPTION
The AD8017 is a low cost, dual high speed amplifier capable of
driving low distortion signals to within 1.0 V of the supply rail.
It is intended for use in single supply xDSL systems where low
distortion and low cost are essential. The amplifiers will be able
to drive a minimum of 200 mA of output current per amplifier.
The AD8017 will deliver –78 dBc of SFDR at 500 kHz, required
for many xDSL applications.
Fabricated in ADI’s high speed XFCB process, the high bandwidth
and fast slew rate of the AD8017 keep distortion to a minimum, while
dissipating a minimum amount of power. The quiescent current of
the AD8017 is 7 mA/amplifier.
Low distortion, high output voltage drive, and high output current
drive make the AD8017 ideal for use in low cost Customer Premise
End (CPE) equipment for ADSL, SDSL, VDSL and proprietary
xDSL systems.
The AD8017 drive capability comes in a very compact form.
Utilizing ADI’s proprietary Thermal Coastline SOIC package,
the AD8017’s total (static and dynamic) power on 12 V supplies
is easily dissipated without external heat sink, other than to place
the AD8017 on a 4-layer PCB.
The AD8017 will operate over the commercial temperature
range –40°C to +85°C.
LOAD RESISTANCE
0
1
1000
OUTPUT VOLTAGE SWING V p-p
6
10010
2
4
8
10
12
V
S
= 2.5V
V
S
= 6V
Figure 1. Output Swing vs. Load Resistance
+V
S
R1
+
V
S
R2
N
P
:N
S
TRANSFORMER
V
IN
V
REF
V
OUT
LINE
POWER
IN dB
+
R
L
= 100
OR
135
Figure 2. Differential Drive Circuit for xDSL Applications
AD8017* PRODUCT PAGE QUICK LINKS
Last Content Update: 02/23/2017
COMPARABLE PARTS
View a parametric search of comparable parts.
EVALUATION KITS
Universal Evaluation Board for Dual High Speed
Operational Amplifiers
DOCUMENTATION
Application Notes
AN-649: Using the Analog Devices Active Filter Design
Tool
Data Sheet
AD8017: Dual High Output Current, High Speed Amplifier
Data Sheet
User Guides
UG-128: Universal Evaluation Board for Dual High Speed
Op Amps in SOIC Packages
TOOLS AND SIMULATIONS
AD8017 SPICE Macro-Model
REFERENCE MATERIALS
Product Selection Guide
High Speed Amplifiers Selection Table
Tutorials
MT-034: Current Feedback (CFB) Op Amps
MT-051: Current Feedback Op Amp Noise Considerations
MT-057: High Speed Current Feedback Op Amps
MT-059: Compensating for the Effects of Input
Capacitance on VFB and CFB Op Amps Used in Current-to-
Voltage Converters
MT-093: Thermal Design Basics
DESIGN RESOURCES
AD8017 Material Declaration
PCN-PDN Information
Quality And Reliability
Symbols and Footprints
DISCUSSIONS
View all AD8017 EngineerZone Discussions.
SAMPLE AND BUY
Visit the product page to see pricing options.
TECHNICAL SUPPORT
Submit a technical question or find your regional support
number.
DOCUMENT FEEDBACK
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–2–
REV. C
AD8017–SPECIFICATIONS
Parameter Conditions Min Typ Max Unit
DYNAMIC PERFORMANCE
–3 dB Bandwidth G = +2, V
OUT
< 0.4 V p-p 100 160 MHz
0.1 dB Bandwidth V
OUT
< 0.4 V p-p 70 MHz
Large Signal Bandwidth V
OUT
= 4 V p-p 105 MHz
Slew Rate Noninverting, V
OUT
= 4 V p-p, G = +2 1600 V/µs
Rise and Fall Time Noninverting, V
OUT
= 2 V p-p 2.0 ns
Settling Time 0.1%, V
OUT
= 4 V Step 35 ns
Overload Recovery V
IN
= 5 V p-p 74 ns
NOISE/HARMONIC PERFORMANCE
Distortion V
OUT
= 2 V p-p
Second Harmonic 500 kHz, R
L
= 100 /25 –78/–71 dBc
1 MHz, R
L
= 100 /25 –76/–69 dBc
Third Harmonic 500 kHz, R
L
= 100 /25 –105/–91 dBc
1 MHz, R
L
= 100 /25 –81/–72 dBc
IP3 500 kHz, R
L
= 100 /25 40/35 dBm
IMD 500 kHz, R
L
= 100 /25 –76/–66 dBc
MTPR 26 kHz to 1.1 MHz –66 dBc
Input Noise Voltage f = 10 kHz 1.9 nV/Hz
Input Noise Current f = 10 kHz (+ Inputs) 23 pA/Hz
f = 10 kHz (– Inputs) 21 pA/Hz
Crosstalk f = 5 MHz, G = +2 –66 dB
DC PERFORMANCE
Input Offset Voltage 1.8 3.0 mV
T
MIN
to T
MAX
4.0 mV
Open Loop Transimpedance V
OUT
= 2 V p-p 185 700 k
T
MIN
to T
MAX
143 k
INPUT CHARACTERISTICS
Input Resistance +Input 50 k
Input Capacitance +Input 2.4 pF
Input Bias Current (+) 16 ±45 µA
T
MIN
to T
MAX
±67 µA
Input Bias Current (–) 1.0 ±25 µA
T
MIN
to T
MAX
±32 µA
CMRR V
CM
= ±2.5 V 59 63 dB
Input CM Voltage Range ±5.1 V
OUTPUT CHARACTERISTICS
Output Resistance 0.2
Output Voltage Swing R
L
= 25 Ω±4.6 ±5.0 V
Output Current
1
Highest Harmonic < –58 dBc, 200 270 mA
f = 1 MHz, R
L
= 10
T
MIN
to T
MAX
, Highest Harmonic < –52 dBc 100 mA
Short-Circuit Current 1500 mA
POWER SUPPLY
Supply Current/Amp 7.0 7.7 mA
T
MIN
to T
MAX
7.8 mA
Operating Range Dual Supply ±2.2 ±6.0 V
Power Supply Rejection Ratio 58 61 dB
Operating Temperature Range –40 +85 °C
NOTE
1
Output current is defined here as the highest current load delivered by the output of each amplifier into a specified resistive load ( R
L
= 10 ), while maintaining an
acceptable distortion level (i.e., less than –60 dBc highest harmonic) at a given frequency (f = 1 MHz).
Specifications subject to change without notice.
(@ 25C, V
S
= 6 V, R
L
= 100 , R
F
= R
G
= 619 , unless otherwise noted.)

AD8017ARZ-REEL7

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
High Speed Operational Amplifiers Crnt Hi Outpt VTG Line Dvr
Lifecycle:
New from this manufacturer.
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