AD713 Analog Devices, AD713 Datasheet

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AD713

Manufacturer Part Number
AD713
Description
Precision, High Speed, BiFET Quad Op Amp
Manufacturer
Analog Devices
Datasheet

Specifications of AD713

-3db Bandwidth
4MHz
Slew Rate
20V/µs
Vos
300µV
Ib
40pA
# Opamps Per Pkg
4
Input Noise (nv/rthz)
16nV/rtHz
Vcc-vee
9V to 36V
Isy Per Amplifier
3mA
Packages
DIP,SOIC

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FEATURES
AC performance
DC performance
APPLICATIONS
Active filters
Quad output buffers for 12- and 14-bit DACs
Input buffers for precision ADCs
Photo diode preamplifier applications
GENERAL DESCRIPTION
The
AD711
offer excellent dc characteristics plus rapid settling times, high
slew rates, and ample bandwidths. In addition, the AD713 provides
the close matching ac and dc characteristics inherent to amplifiers
sharing the same monolithic die. The single-pole response of
the AD713 provides fast settling: l μs to 0.01%. This feature,
combined with its high dc precision, makes the AD713 suitable
for use as a buffer amplifier for 12- or 14-bit DACs and ADCs.
It is also an excellent choice for use in active filters in 12-, 14-
and 16-bit data acquisition systems. Furthermore, the AD713
low total harmonic distortion (THD) level of 0.0003% and very
close matching ac characteristics make it an ideal amplifier for
many demanding audio applications. The AD713 is internally
compensated for stable operation at unity gain. The AD713J is
rated over the commercial temperature range of 0°C to 70°C.
The AD713A is rated over the industrial temperature of −40°C
to +85°C.
The AD713 is offered in 16-lead SOIC, 14-lead PDIP, and
14-lead CERDIP packages.
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. Specifications subject to change without notice. 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.
1 μs settling to 0.01% for 10 V step
20 V/μs slew rate
0.0003% total harmonic distortion (THD)
4 MHz unity gain bandwidth
1.5 mV maximum offset voltage
8 μV/°C typical drift
150 V/mV minimum open-loop gain
2 μV p-p typical noise, 0.1 Hz to 10 Hz
True 14-bit accuracy
Single version: AD711, dual version: AD712
Available in 16-lead SOIC, 14-lead PDIP and CERDIP
AD713
BiFET op amps. These precision monolithic op amps
is a quad operational amplifier, consisting of four
Precision, High Speed, BiFET Quad Op Amp
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
Fax: 781.461.3113
PRODUCT HIGHLIGHTS
1.
2.
3.
4.
The AD713 is a high speed BiFET op amp that offers
excellent performance at competitive prices. It upgrades
the performance of circuits using op amps such as the
TL074, TL084, LT1058, LF347, and OPA404.
Slew rate is 100% tested for a guaranteed minimum of
16 V/μs (J and A grades).
The combination of Analog Devices, Inc., advanced
processing technology, laser wafer drift trimming, and
well-matched ion-implanted JFETs provides outstanding
dc precision. Input offset voltage, input bias current and
input offset current are specified in the warmed-up
condition and are 100% tested.
Very close matching of ac characteristics between the four
amplifiers makes the AD713 ideal for high quality active
filter applications.
Figure 1. 14-Lead PDIP (N) and CERDIP (Q) Packages
OUTPUT
OUTPUT
OUTPUT
OUTPUT
Figure 2. 16-Lead SOIC_W (RW) Package
CONNECTION DIAGRAMS
©2002–2011 Analog Devices, Inc. All rights reserved.
+V
+V
–IN
+IN
+IN
–IN
NC
–IN
+IN
+IN
–IN
NC = NO CONNECT. DO NOT
S
S
CONNECT TO THIS PIN.
1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
(Not to Scale)
(Not to Scale)
TOP VIEW
TOP VIEW
1
AD713
2
1
AD713
2
4
3
4
3
14
13
12
11
10
9
8
16
15
14
13
12
10
11
9
OUTPUT
–IN
+IN
–V
+IN
–IN
OUTPUT
OUTPUT
–IN
+IN
–V
+IN
–IN
OUTPUT
NC
S
S
www.analog.com
AD713

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AD713 Summary of contents

Page 1

... The single-pole response of the AD713 provides fast settling: l μs to 0.01%. This feature, combined with its high dc precision, makes the AD713 suitable for use as a buffer amplifier for 12- or 14-bit DACs and ADCs. ...

Page 2

... Added Typical Performance Characteristics Summary .............. 6 Change to Figure 7 ........................................................................... 7 Changes to Figure 15, Figure 17, and Figure 18 ........................... 8 Theory of Operation ...................................................................... 11 Measuring AD713 Settling Time ............................................. 11 Power Supply Bypassing ............................................................ 11 A High Speed Instrumentation Amplifier Circuit................. 12 A High Speed 4-Op-Amp Cascaded Amplifier Circuit ........ 12 High Speed Op Amp Applications and Techniques .............. 12 CMOS DAC Applications ...

Page 3

... MHz 200 kHz 20 V/μs 1.0 1.2 μs 0.0003 % 12 3 × 10 ||5.5 Ω|| × 10 ||5.5 Ω||pF ±20 V +14.5/−11 μV p-p 45 nV/√Hz 22 nV/√Hz 18 nV/√Hz 16 nV/√Hz 0.01 pA/√Hz 400 V/mV V/mV AD713 ...

Page 4

... Defined as the voltage between inputs, such that neither exceeds ±10 V from ground. 4 Typically exceeding −14.1 V negative common-mode voltage on either input results in an output phase reversal. Min +13/−12.5 ±12 MAX ±4.5 = 25°C. A Rev Page AD713J/AD713A Typ Max +13.9/−13.3 +13.8/−13.1 25 ±15 ±18 10.0 13.5 120 = 25° ...

Page 5

... Table 3. Thermal Resistance −40°C to +85°C Package Type 300°C 14-Lead PDIP (N-14) 14-Lead CERDIP (Q-14) 16-Lead SOIC_W (RW-16) ESD CAUTION Rev Page AD713 θ θ Unit JA JC 100 30 °C/W 110 30 °C/W ...

Page 6

... AD713 TYPICAL PERFORMANCE CHARACTERISTICS V = ± 25°C, unless otherwise noted 2kΩ 25° SUPPLY VOLTAGE (±V) Figure 3. Input Voltage Swing vs. Supply Voltage 2kΩ 25° OUT 10 – SUPPLY VOLTAGE (±V) Figure 4 ...

Page 7

... GAIN 100 1k 10k 100k 1M FREQUENCY (Hz 2kΩ 25° SUPPLY VOLTAGE (V) Figure 13. Open-Loop Gain vs. Supply Voltage +SUPPLY –SUPPLY = ±15V SUPPLIES WITH S 100 1k 10k 100k SUPPLY MODULATION FREQUENCY (Hz) Figure 14. Power Supply Rejection vs. Frequency AD713 100 –20 10M 20 1M ...

Page 8

... AD713 100 100 1k 10k FREQUENCY (Hz) Figure 15. Common-Mode Rejection vs. Frequency 100k 1M INPUT FREQUENCY (Hz) Figure 16. Large Signal Frequency Response 0.1% 0.01 0.01% ERROR 0.1% –2 –4 –6 –8 –10 0.5 0.6 0.7 0.8 SETTLING TIME (µs) Figure 17. Output Swing and Error vs. Settling Time ...

Page 9

... AD713 • • • • • • • • • • • • • • • • ...

Page 10

... SQUARE WAVE INPUT Figure 27. Unity Gain Follower Circuit for Figure 22 and Figure 23 7.5pF 2kΩ 2kΩ 1µF 0.1µ 1/4 AD713 R L SQUARE 11 2kΩ WAVE INPUT 1µF 0.1µF + –V S Figure 28. Unity Gain Inverter Circuit for Figure 24 and Figure 25 Rev Page ...

Page 11

... Figure 29. The input of the settling time fixture is driven by a flat-top pulse generator. The error signal output from the false summing node of A1, the AD713 under test, is clamped, amplified by Op Amp A2, and then clamped again. TO TEKTRONIX 7A26 ...

Page 12

... The instrumentation amplifier circuit shown in Figure 33 can provide a range of gains from unity up to 1000 and higher using only a single AD713. The circuit bandwidth is 1.2 MHz at a gain of 1 and 250 kHz at a gain of 10; settling time for the entire circuit is less than 5 μs to within 0.01% for step 10). ...

Page 13

... However, many amplifiers have relatively narrow bandwidths, yielding slow recovery from output transients. The AD713 is ideally suited as a driver for ADCs because it offers both a wide bandwidth and a high open-loop gain. ...

Page 14

... The AD713, with its guaranteed 1.5 mV input offset voltage, minimizes this effect, achieving 12-bit performance. Figure 42 and Figure 43 show the AD713 and a 12-bit CMOS DAC, the AD7545, configured for either a unipolar binary (two- quadrant multiplication) or bipolar (four-quadrant multiplication) operation. Capacitor C1 provides phase compensation, which reduces overshoot and ringing ...

Page 15

... Figure 47 and Figure 48 show the AD713 used in two typical active filters. The first shows a single AD713 simulating two coupled inductors configured as a one-third octave band-pass filter. A single section of this filter meets ANSI Class II specifications and handles a 7.07 V rms signal with < ...

Page 16

... AD713 PIN 4 AD713 PIN 11 1.74kΩ 330Ω 100kΩ 4700pF 13 130Ω 1kΩ 4700pF 10 1kΩ 1 1kΩ AD713 5 1/4 1.1kΩ AD713 +V S 0.1µF 4700pF COM 0.1µF –V S 1/4 AD713 14 OUTPUT 1kΩ AD713 PIN 4 + 1µF + 1µF AD713 ...

Page 17

... REFERENCE ONLY AND ARE NOT APPROPRIATE FOR USE IN DESIGN. Figure 50. 14-Lead Ceramic Dual In-Line Package [CERDIP] (Q-14) Dimensions shown in inches and (millimeters) Rev Page 0.325 (8.26) 0.310 (7.87) 0.300 (7.62) 0.195 (4.95) 0.130 (3.30) 0.115 (2.92) 0.014 (0.36) 0.010 (0.25) 0.008 (0.20) 0.430 (10.92) MAX 0.320 (8.13) 0.290 (7.37) 0.015 (0.38) 15° 0.008 (0.20) 0° AD713 ...

Page 18

... AD713JNZ 0°C to 70°C AD713JR-16 0°C to 70°C AD713JR-16-REEL 0°C to 70°C AD713JR-16-REEL7 0°C to 70°C AD713JRZ-16 0°C to 70°C AD713JRZ-16-REEL 0°C to 70°C AD713JRZ-16-REEL7 0°C to 70° RoHS Compliant Part. 10.50 (0.4134) 10 ...

Page 19

... NOTES Rev Page AD713 ...

Page 20

... AD713 NOTES ©2002–2011 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. D00824-0-7/11(F) Rev Page ...

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