OP727 Analog Devices, OP727 Datasheet

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OP727

Manufacturer Part Number
OP727
Description
Precision Rail-to-Rail Output Single Supply Dual Op Amp
Manufacturer
Analog Devices
Datasheet

Specifications of OP727

-3db Bandwidth
700kHz
Slew Rate
200mV/µs
Vos
30µV
Ib
5.5nA
# Opamps Per Pkg
2
Input Noise (nv/rthz)
15nV/rtHz
Vcc-vee
3V to 36V
Isy Per Amplifier
290µA
Packages
SOIC,SOP

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Company
Part Number
Manufacturer
Quantity
Price
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ST
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SIMILAR LOW POWER PRODUCTS
Supply Voltage/
Supply Current
Single
Dual
Quad
a
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.
The OP777 , OP727 , and OP747 are precision single , dual,
and quad rail-to-rail output single- supply amplifiers featuring
micropower operation and rail-to-rail output ranges.
amplifier s provide improved performance over the industry
OP07 with 15 V supplies , and offer the further advantage of true
single -supply operation down to
options than any other high-voltage precision bipolar amplifier.
Outputs are stable with capacitive loads of over 500 pF. Supply
current is less than 300 A per amplifier at 5 V. 500
tors protect the inputs, allowing input signal levels several volts above
the positive supply without phase reversal.
Applications for these amplifiers include both line-powered and
portable instrumentation, remote sensor signal conditioning, and
precision filters.
The OP777, OP727, and OP747 are specified over the extended
industrial (–40 C to +85 C) temperature range. The OP777,
single, is available in 8-lead MSOP and 8-lead SOIC packages.
The OP747, quad, is available in 14-lead TSSOP and narrow
14-lead SO packages. Surface-mount devices in TSSOP and MSOP
packages are available in tape and reel only.
The OP727, dual, is available in 8-lead TSSOP and 8-lead
SOIC packages. The OP727 8-lead SOIC pin configuration
differs from the standard 8-lead operational amplifier pinout.
REV.
Low Supply Current: 300 A/Amp Max
Unity Gain Stable
No Phase Reversal
APPLICATIONS
Current Sensing (Shunt)
Line or Battery-Powered Instrumentation
Remote Sensors
Precision Filters
OP727 SOIC Pin-Compatible with LT1013
FEATURES
Low Offset Voltage: 100 V Max
Low Input Bias Current: 10 nA Max
Single-Supply Operation:
Dual-Supply Operation:
D
1.8 V/1 μA
AD8500
AD8502
AD8504
3.0
1.5
3.0
1.8 V/20 μA
ADA4051-1
ADA4051-2
V to 30 V
V , and smaller package
V to
15 V
1.8 V/25 μA
AD8505
AD8506
AD8508
series resis-
These
-standard
1.8 V/50 μA
AD8603/AD8613
AD8607/AD8617
AD8609/AD8619
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700
Fax:
OUT A
–IN A
781/461-3113
IN A
V
+IN
NC
NC
V
IN
IN
V–
IN
NC = NO CONNECT
NC = NO CONNECT
1
2
3
4
1
2
3
4
(Not to Scale)
1
4
TOP VIEW
OP777
OP777
OP727
NOTE: THIS PIN CONFIGURATION DIFFERS
8
5
2.5 V/1 mA
ADA4528-1
–IN B
8
7
6
5
FROM THE STANDARD 8-LEAD
OPERATIONAL AMPLIFIER PINOUT.
IN A
IN B
8
7
6
5
V–
NC
V+
NC
OUT
NC
V+
OUT
NC
V
OUT B
–IN B
IN B
1
2
3
4
(Not to Scale)
TOP VIEW
OP727
3.0 V/200 μA
ADA4091-2
ADA4091-4
OUT A
OUT B
OUT A
OUT B
–IN A
–IN B
–IN A
–IN B
IN A
IN B
IN A
IN B
V
V
8
7
6
5
© Analog Devices, Inc.,
–IN A
OUT A
V
OUT B
1
2
3
4
5
6
7
1
2
3
4
5
6
7
(Not to Scale)
(Not to Scale)
TOP VIEW
TOP VIEW
OP747
OP747
www.analog.com
4 V/215 μA
AD8622
AD8624
14
13
12
11
10
14
13
12
11
10
9
8
9
8
OUT D
–IN D
V–
–IN C
OUT C
OUT D
–IN D
V–
–IN C
OUT C
IN D
IN C
IN D
IN C
2011

Related parts for OP727

OP727 Summary of contents

Page 1

... Remote Sensors Precision Filters OP727 SOIC Pin-Compatible with LT1013 The OP777 , OP727 , and OP747 are precision single , dual, and quad rail-to-rail output single- supply amplifiers featuring micropower operation and rail-to-rail output ranges. amplifier s provide improved performance over the industry ...

Page 2

... Offset Voltage OP727/OP747 Input Bias Current Input Offset Current Input Voltage Range Common-Mode Rejection Ratio Large Signal Voltage Gain Offset Voltage Drift OP777 Offset Voltage Drift OP727/OP747 OUTPUT CHARACTERISTICS Output Voltage High Output Voltage Low Output Circuit POWER SUPPLY Power Supply Rejection Ratio ...

Page 3

... Offset Voltage OP727/OP747 Input Bias Current Input Offset Current Input Voltage Range Common-Mode Rejection Ratio Large Signal Voltage Gain Offset Voltage Drift OP777 Offset Voltage Drift OP727/OP747 OUTPUT CHARACTERISTICS Output Voltage High Output Voltage Low Output Circuit POWER SUPPLY Power Supply Rejection Ratio ...

Page 4

... Output Short-Circuit Duration to GND . . . . . . . . . Indefinite Storage Temperature Range RM Packages . . . . . . . . . . . . . . . . – +150 C Operating Temperature Range OP777/OP727/OP747 . . . . . . . . . . . . . . . – +85 C Junction Temperature Range RM Packages . . . . . . . . . . . . . . . . – +150 C Lead Temperature Range (Soldering, 60 sec 300 C Electrostatic Discharge (Human Body Model 2000 V max ESD (electrostatic discharge) sensitive device ...

Page 5

... TPC 5. OP747 Input Offset Voltage Distribution 600 V = 15V 500 400 300 200 100 0 140 120 120 80 40 OFFSET VOLTAGE – V TPC 8. OP727 Input Offset Voltage Distribution –5– 15V + 0.2 0.4 0.6 0.8 1.0 1.2 INPUT OFFSET DRIFT – ...

Page 6

V = 15V SINK 100 SOURCE 10 1.0 0.1 0 0.001 0.01 0 100 LOAD CURRENT – mA TPC 10. Output Voltage to Supply Rail vs. Load Current 500 400 ...

Page 7

270 240 210 180 150 120 100 100 1k 10k 100k 1M 10M 100M FREQUENCY – Hz TPC 19. Output ...

Page 8

INPUT 15V SY 200mV R = 10k 100 200mV IN 10V OUTPUT 0V TIME – 40 s/DIV TPC 28. Positive Overvoltage Recovery V = 15V INPUT ...

Page 9

V = 15V SY GAIN = 10M TIME – 1s/DIV TPC 37. 0 Input Voltage Noise 15V 500 1k 1.5k 2.0k 2.5k FREQUENCY ...

Page 10

... V/V) and CMRR of 110 dB (3 V/V) offset is mini- mally affected by power supply or common-mode voltages. Dual supply operation is also fully specified. The OP777/OP727/OP747 is rated with an input common-mode voltage which extends from the minus supply to within the positive supply. However, the amplifier can still operate with input voltages slightly below V ...

Page 11

... EE CC (V–) or the positive supply (V+), respectively, to the input pins which can destroy the device. In the case of OP777/OP727/ OP747, differential voltages equal to the supply voltage will not cause any problem (see Figure 3). OP777/OP727/OP747 has built- in 500 internal current limiting resistors, in series with the inputs, to minimize the chances of damage ...

Page 12

... Matching is the key. CMRR is 100 dB 1M with 0.1% mismatched resistor network. To maximize CMRR, one of the resistors such as R4 should be trimmed. Tighter match- 15V ing of two op amps in one package (OP727) offers a significant 10.1k boost in performance over the triple op amp configuration. V 1/4 OP747 ...

Page 13

... BSC 1.75 (0.0688) 1.35 (0.0532) 8° 0° 0.51 (0.0201) 0.31 (0.0122) 0.25 (0.0098) SEATING 0.17 (0.0067) PLANE COMPLIANT TO JEDEC STANDARDS MS-012-AA Figure 13. 8-Lead Standard Small Outline Package [SOIC_N] Narrow Body (R-8) Dimensions shown in millimeters and (inches) –13– OP777/OP727/OP747 0.80 0.23 0.55 0.09 0.40 0.50 (0.0196) 45° 0.25 (0.0099) 1.27 (0.0500) 0.40 (0.0157) ...

Page 14

... OP777/OP727/OP747 4.00 (0.1575) 3.80 (0.1496) 0.25 (0.0098) 0.10 (0.0039) COPLANARITY 0.10 CONTROLLING DIMENSIONS ARE IN MILLIMETERS; INCH DIMENSIONS (IN PARENTHESES) ARE ROUNDED-OFF MILLIMETER EQUIVALENTS FOR REFERENCE ONLY AND ARE NOT APPROPRIATE FOR USE IN DESIGN. 3.10 3.00 2. 4.50 6.40 BSC 4.40 4. PIN 1 0.65 BSC 0.15 1.20 0.05 MAX 0.30 COPLANARITY SEATING 0.20 0.19 PLANE 0.10 0.09 COMPLIANT TO JEDEC STANDARDS MO-153-AA Figure 14. 8-Lead Thin Shrink Small Outline Package [TSSOP] ...

Page 15

... OP727AR-REEL7 –40°C to +85°C OP727ARUZ –40°C to +85°C OP727ARUZ-REEL –40°C to +85°C OP727ARZ –40°C to +85°C OP727ARZ-REEL –40°C to +85°C OP727ARZ-REEL7 –40°C to +85°C OP747ARU –40°C to +85°C OP747ARU-REEL –40°C to +85°C OP747ARUZ – ...

Page 16

... OP777/OP727/OP747 REVISION HISTORY 10/11—Rev Rev. D 9/01—Rev Rev. C ©2011 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. D02051-0-10/11(D) –16– REV. D ...

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