OP196 Analog Devices, OP196 Datasheet

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OP196

Manufacturer Part Number
OP196
Description
Micropower, Rail-to-Rail Input and Output Operational Amplifiers
Manufacturer
Analog Devices
Datasheet

Specifications of OP196

-3db Bandwidth
450kHz
Slew Rate
300mV/µs
Vos
35µV
Ib
10nA
# Opamps Per Pkg
1
Input Noise (nv/rthz)
26nV/rtHz
Vcc-vee
3V to 12V
Isy Per Amplifier
60µA
Packages
SOIC

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a
GENERAL DESCRIPTION
The OP196 family of CBCMOS operational amplifiers features
micropower operation and rail-to-rail input and output ranges.
The extremely low power requirements and guaranteed opera-
tion from +3 V to +12 V make these amplifiers perfectly suited
to monitor battery usage and to control battery charging. Their
dynamic performance, including 26 nV/ Hz voltage noise
density, recommends them for battery-powered audio applica-
tions. Capacitive loads to 200 pF are handled without oscillation.
The OP196/OP296/OP496 are specified over the HOT extended
industrial (–40 C to +125 C) temperature range. +3 V opera-
tion is specified over the 0 C to +125 C temperature range.
The single OP196 and the dual OP296 are available in 8-lead
plastic DIP and SO-8 surface mount packages. The quad
OP496 is available in 14-lead plastic DIP and narrow SO-14
surface mount packages.
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.
FEATURES
Rail-to-Rail Input and Output Swing
Low Power: 60 A/Amplifier
Gain Bandwidth Product: 450 kHz
Single-Supply Operation: +3 V to +12 V
Low Offset Voltage: 300 V max
High Open-Loop Gain: 500 V/mV
Unity-Gain Stable
No Phase Reversal
APPLICATIONS
Battery Monitoring
Sensor Conditioners
Portable Power Supply Control
Portable Instrumentation
Micropower, Rail-to-Rail Input and Output
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700
Fax: 781/326-8703
8-Lead Narrow-Body SO
14-Lead Narrow-Body SO
OUT A
OUT B
8-Lead Narrow-Body SO
+IN A
+IN B
–IN A
–IN B
NULL
+IN A
–IN A
OUT A
OUT B
–IN A
+IN A
+IN B
–IN B
OUT A
V+
V–
OUT A
–IN A
+IN A
14-Lead TSSOP
–IN A
+IN A
+V
8-Lead TSSOP
NC = NO CONNECT
V–
1
7
V–
(RU Suffix)
1
2
3
4
1
2
3
4
5
6
7
1
2
3
4
4
OP196
1
OP496
OP496
OP296
OP296
OP196/OP296/OP496
PIN CONFIGURATIONS
Operational Amplifiers
8
5
8
7
6
5
World Wide Web Site: http://www.analog.com
14
13
12
11
10
9
8
V+
OUT B
–IN B
+IN B
14
8
NC
V+
OUT A
NULL
8
7
6
5
OUT D
–IN D
+IN D
V–
+IN C
–IN C
OUT C
OUT D
–IN D
+IN D
V–
+IN C
–IN C
OUT C
V+
OUT B
–IN B
+IN B
OUT A
OUT B
–IN A
+IN A
+IN B
–IN B
NULL
–IN A
+IN A
OUT A
–IN A
+IN A
+V
V–
14-Lead Plastic DIP
V–
© Analog Devices, Inc., 1998
8-Lead Plastic DIP
8-Lead Plastic DIP
1
2
3
4
5
6
7
1
2
3
4
1
2
3
4
NC = NO CONNECT
OP496
OP196
OP296
14
13
12
11
10
9
8
8
7
6
5
8
7
6
5
OUT D
–IN D
+IN D
+IN C
–IN C
OUT C
V–
NC
V+
OUT A
NULL
V+
OUT B
–IN B
+IN B

Related parts for OP196

OP196 Summary of contents

Page 1

... C to +125 C) temperature range opera- tion is specified over the +125 C temperature range. The single OP196 and the dual OP296 are available in 8-lead plastic DIP and SO-8 surface mount packages. The quad OP496 is available in 14-lead plastic DIP and narrow SO-14 surface mount packages ...

Page 2

... Offset voltage drift is the average of the – +25 C delta and the + +125 C delta. Specifications subject to change without notice +5 +2 +25 C unless otherwise noted Symbol Conditions V OP196G, OP296G, OP496G OS – +125 C A OP296H, OP496H – +125 – ...

Page 3

... Offset voltage drift is the average of the +25 C delta and the + +125 C delta. Specifications subject to change without notice. REV +3 +1 +25 C unless otherwise noted Symbol Conditions V OP196G, OP296G, OP496G +125 C A OP296H, OP496H +125 ...

Page 4

... Offset voltage drift is the average of the – +25 C delta and the + +125 C delta. Specifications subject to change without notice +12 +25 C unless otherwise noted Symbol Conditions V OP196G, OP296G, OP496G +125 C A OP296H, OP496H +125 – ...

Page 5

... V Output Short Circuit Duration . . . . . . . . . . . . . . . . . Indefinite Storage Temperature Range Package . . . . . . . . . . . . . . . . . . . . – +150 C Operating Temperature Range OP196G, OP296G, OP496G – +125 C Junction Temperature Range Package . . . . . . . . . . . . . . . . . . . – +150 C Lead Temperature Range (Soldering, 60 sec +300 C 3 ...

Page 6

... OP196/OP296/OP496–Typical Performance Characteristics 250 200 150 100 50 0 –250 –200 –150 –100 – INPUT OFFSET VOLTAGE – V Figure 1. Input Offset Voltage Distribution 250 200 150 100 50 0 –250 –200 –150 –100 – INPUT OFFSET VOLTAGE – V Figure 2. Input Offset Voltage Distribution ...

Page 7

... Figure 11. Output Voltage to Supply Rail vs. Load Current 1000 100 10 1.0 1.5 2.0 2.5 Figure 12. Output Voltage to Supply Rail vs. Load Current –7– OP196/OP296/OP496 V S SOURCE SINK 10 1 0.001 0.01 0.1 1 LOAD CURRENT – SOURCE SINK 1 0.001 0.01 0.1 1 LOAD CURRENT – ...

Page 8

... OP196/OP296/OP496–Typical Performance Characteristics 4. 100 1mA L 4.45 4 2mA 3.85 3.7 –75 –50 – TEMPERATURE – C Figure 13. Output Voltage Swing vs. Temperature 0.80 0. –1mA L 0.50 0.30 0. –100 A L –75 –50 – TEMPERATURE – C Figure 14. Output Voltage Swing vs. Temperature GAIN 50 40 ...

Page 9

... A 100 –20 –40 100k 100k 1M 1k Figure 24. Maximum Output Swing vs. Frequency –9– OP196/OP296/OP496 ALL CHANNELS 1k 10k 100k 1M 10M FREQUENCY – Hz Figure 22. CMRR vs. Frequency +PSRR –PSRR 100 ...

Page 10

... OP196/OP296/OP496–Typical Performance Characteristics –75 –50 –40 – TEMPERATURE – C Figure 25. Supply Current/Amplifier vs. Temperature SUPPLY VOLTAGE – Volts Figure 26. Supply Current/Amplifier vs. Supply Voltage ...

Page 11

... MKR: 1.00Hz BW: 145mHz Figure 35. 1/f Noise Corner Q11 Q12 Q6 D4 QC1 1x Q13 Q14 Q8 Q10 Q9 2x QC2 CC1 R4A I3 I2 Q15 R4B * 5 * OP196 ONLY Figure 36. Simplified Schematic –11– OP196/OP296/OP496 10k L 100 2. 100k 100 ...

Page 12

... V amplifier terminals should never be used to adjust system offset voltages. A 100 k potentiometer, connected as shown in Fig- ure 39, is recommended to null the OP196’s offset voltage. Offset nulling does not adversely affect TCV providing that the trimming potentiometer temperature coeffi- cient does not exceed 100 ppm/ C ...

Page 13

... The OP296, operating with a noninverting gain of 2.43, drives the base of the MJE350 to produce an output voltage of 3.0 V. Since the MJE350 operates in an inverting (common- emitter) mode, the output feedback is applied to the OP296’s noninverting input. –13– OP196/OP296/OP496 A is then a full-wave rectified OUT V+ 59k 8 ...

Page 14

... OP196/OP296/OP496 MJE 350 3. 1/2 1 OP296 2 4 1000pF 43k Figure 44 Low Dropout Voltage Regulator Figure 45 shows the regulator’s recovery characteristics when its output underwent step current change. 2V 50mA STEP 100 CURRENT 90 CONTROL WAVEFORM 30mA OUTPUT ...

Page 15

... Q29 47 Q30 44 2 QD10 Q31 46 2 QD8 47 1 QD9 Q32 49 Q33 49 .MODEL .MODEL .MODEL .ENDS –15– OP196/OP296/OP496 POLY(2) (99,0) (50,0) 0 0.5 0.5 15 POLY(2) (6,5) (13,12) 0 10U 10U 98 251.641MEG POLY(2) (1,98) (2,98) 0 0.5 0.5 17 1MEG 20U 50 POLY(1) (15,98) 1.42735 1 35 ...

Page 16

... OP196/OP296/OP496 8-Lead Plastic DIP (N-8) 0.430 (10.92) 0.348 (8.84 0.280 (7.11) 0.240 (6.10 0.060 (1.52) PIN 1 0.015 (0.38) 0.210 (5.33) MAX 0.130 (3.30) 0.160 (4.06) MIN 0.115 (2.93) SEATING 0.022 (0.558) 0.070 (1.77) PLANE 0.100 0.014 (0.356) 0.045 (1.15) (2.54) BSC 8-Lead Narrow Body SOIC (SO-8) 0.1968 (5.00) 0.1890 (4.80 0.1574 (4.00) 0.2440 (6.20 0.1497 (3.80) 0.2284 (5.80) PIN 1 0 ...

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