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5962-9063302MCA 데이터시트 PDF




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기능 Quad Precision/ Low Cost/ High Speed/ BiFET Op Amp
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5962-9063302MCA 데이터시트, 핀배열, 회로
a
Quad Precision, Low Cost,
High Speed, BiFET Op Amp
FEATURES
Enhanced Replacement for LF347 and TL084
AC PERFORMANCE
1 s Settling to 0.01% for 10 V Step
20 V/s Slew Rate
0.0003% Total Harmonic Distortion (THD)
4 MHz Unity Gain Bandwidth
DC PERFORMANCE
0.5 mV max Offset Voltage (AD713K)
20 V/°C max Drift (AD713K)
200 V/mV min Open Loop Gain (AD713K)
2 V p-p typ Noise, 0.1 Hz to 10 Hz
True 14-Bit Accuracy
Single Version: AD711, Dual Version: AD712
Available in 16-Pin SOIC, 14-Pin Plastic DIP and
Hermetic Cerdip Packages and in Chip Form
MIL-STD-883B Processing Available
Standard Military Drawing Available
APPLICATIONS
Active Filters
Quad Output Buffers for 12- and 14-Bit DACs
Input Buffers for Precision ADCs
Photo Diode Preamplifier Applications
PRODUCT DESCRIPTION
The AD713 is a quad operational amplifier, consisting of four
AD711 BiFET op amps. These precision monolithic op amps
offer excellent dc characteristics plus rapid settling times, high
slew rates, and ample bandwidths. In addition, the AD713 pro-
vides 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 it 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. Further-
more, the AD713’s 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 and is available in seven performance grades. The
AD713J and AD713K are rated over the commercial tempera-
ture range of 0°C to +70°C. The AD713A and AD713B are
rated over the industrial temperature of –40°C to +85°C. The
AD713S and AD713T are rated over the military temperature
range of –55°C to +125°C and are available processed to
MIL-STD-883B, Rev. C.
AD713
CONNECTION DIAGRAMS
Plastic (N) and
Cerdip (Q) Packages
SOIC (R) Package
OUTPUT 1
–IN 2
+IN 3
+VS 4
+IN 5
–IN 6
OUTPUT 7
14
AD713
(TOP VIEW)
23
OUTPUT 1
14 OUTPUT
13 –IN
–IN 2
+IN 3
12 +IN
11 –VS
10 +IN
9 –IN
+VS 4
+IN 5
–IN 6
OUTPUT 7
8 OUTPUT NC 8
14
AD713
(TOP VIEW)
23
16 OUTPUT
15 –IN
14 +IN
13 –VS
12 +IN
11 –IN
10 OUTPUT
9 NC
NC = NO CONNECT
The AD713 is offered in a 16-pin SOIC, 14-pin plastic DIP and
hermetic cerdip package, or in chip form.
PRODUCT HIGHLIGHTS
1. The AD713 is a high speed BiFET op amp that offers excel-
lent performance at competitive prices. It upgrades the per-
formance of circuits using op amps such as the TL074/
TL084, LT1058, LF347 and OPA404.
2. Slew rate is 100% tested for a guaranteed minimum of
16 V/µs (J, A and S Grades).
3. The combination of Analog Devices’ advanced processing
technology, laser wafer drift trimming and well-matched
ion-implanted JFETs provides outstanding dc precision. In-
put offset voltage, input bias current and input offset current
are specified in the warmed-up condition and are 100%
tested.
4. Very close matching of ac characteristics between the four
amplifiers makes the AD713 ideal for high quality active filter
applications.
REV. B
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
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 617/329-4700
Fax: 617/326-8703




5962-9063302MCA pdf, 반도체, 판매, 대치품
AD713–Typical Characteristics
Figure 1. Input Voltage Swing vs.
Supply Voltage
Figure 2. Output Voltage Swing vs.
Supply Voltage
Figure 3. Output Voltage Swing
vs. Load Resistance
Figure 4. Quiescent Current vs.
Supply Voltage
Figure 5. Input Bias Current vs.
Temperature
Figure 6. Output Impedance vs.
Frequency, G = 1
Figure 7. Input Bias Current vs.
Common Mode Voltage
Figure 8. Short Circuit Current
Limit vs. Temperature
Figure 9. Gain Bandwidth Product
vs. Temperature
–4– REV. B

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5962-9063302MCA 전자부품, 판매, 대치품
AD713
MEASURING AD713 SETTLING TIME
The photos of Figures 24 and 25 show the dynamic response of
the AD713 while operating in the settling time test circuit of
Figure 23. 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, ampli-
fied by op amp A2 and then clamped again.
The error signal is thus clamped twice: once to prevent over-
loading amplifier A2 and then a second time to avoid overload-
ing the oscilloscope preamp. A Tektronix oscilloscope preamp
type 7A26 was carefully chosen because it recovers from the ap-
proximately 0.4 volt overload quickly enough to allow accurate
measurement of the AD713’s 1 µs settling time. Amplifier A2 is
a very high speed FET input op amp; it provides a voltage gain
of 10, amplifying the error signal output of the AD713 under
test (providing an overall gain of 5).
Figure 23. Settling Time Test Circuit
Figure 25. Settling Characteristics to –10 V Step.
Upper Trace: Output of AD713 Under Test (5 V/div).
Lower Trace: Amplified Error Voltage (0.01%/ div)
POWER SUPPLY BYPASSING
The power supply connections to the AD713 must maintain a
low impedance to ground over a bandwidth of 4 MHz or more.
This is especially important when driving a significant resistive
or capacitive load, since all current delivered to the load comes
from the power supplies. Multiple high quality bypass capacitors
are recommended for each power supply line in any critical ap-
plication. A 0.1 µF ceramic and a 1 µF electrolytic capacitor as
shown in Figure 26 placed as close as possible to the amplifier
(with short lead lengths to power supply common) will assure
adequate high frequency bypassing in most applications. A
minimum bypass capacitance of 0.1 µF should be used for any
application.
Figure 24. Settling Characteristics 0 V to +10 V Step.
Upper Trace: Output of AD713 Under Test (5 V/div).
Lower Trace: Amplified Error Voltage (0.01%/div)
Figure 26. Recommended Power Supply Bypassing
REV. B
–7–

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5962-9063302MCA

Quad Precision/ Low Cost/ High Speed/ BiFET Op Amp

Analog Devices
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