OP27E Analog Devices, OP27E Datasheet

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OP27E

Manufacturer Part Number
OP27E
Description
Manufacturer
Analog Devices
Datasheet

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a
GENERAL DESCRIPTION
The OP27 precision operational amplifier combines the low
offset and drift of the OP07 with both high speed and low noise.
Offsets down to 25 µV and drift of 0.6 µV/°C maximum make
the OP27 ideal for precision instrumentation applications.
Exceptionally low noise, e
noise corner frequency of 2.7 Hz, and high gain (1.8 million),
allow accurate high-gain amplification of low-level signals. A
gain-bandwidth product of 8 MHz and a 2.8 V/µsec slew rate
provides excellent dynamic accuracy in high-speed, data-
acquisition systems.
A low input bias current of ± 10 nA is achieved by use of a
bias-current-cancellation circuit. Over the military temperature
range, this circuit typically holds I
respectively.
The output stage has good load driving capability. A guaranteed
swing of ± 10 V into 600 Ω and low output distortion make the
OP27 an excellent choice for professional audio applications.
NONINVERTING
INVERTING
INPUT (+)
INPUT (–)
R1 AND R2 ARE PERMANENTLY
ADJUSTED AT WAFER TEST FOR
MINIMUM OFFSET VOLTAGE.
n
= 3.5 nV/√Hz, at 10 Hz, a low 1/f
Q6
Q3
B
and I
Q1A
R1
R3
OS
±
Q1B
to ±20 nA and 15 nA,
V
1
OS
ADJ.
(Continued on page 7)
8
Q2B
Q2A
R4
R2
Hz
Q11
Q21
Q12
Q27
Q23
C2
R23
R5
R24
Q24
Q28
Q22
C3
V
OS
–IN 2
TRIM
PIN CONNECTIONS
Operational Amplifier
R9
R12
BAL 1
8-Pin Hermetic DIP
Low-Noise, Precision
–IN
+IN
+IN 3
V–
Epoxy Mini-DIP
C1
NC = NO CONNECT
C4
NC = NO CONNECT
1
2
3
4
(P-Suffix)
(Z-Suffix)
(S-Suffix)
(J-Suffix)
8-Pin SO
Q26
4V– (CASE)
TO-99
Q20
OP27
OP27
BAL
Q19
8
7
6
5
V+
NC
V
V+
OUT
NC
OUT
OS
Q46
Q45
TRIM
V+
OUTPUT
V–
OP27

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OP27E Summary of contents

Page 1

GENERAL DESCRIPTION The OP27 precision operational amplifier combines the low offset and drift of the OP07 with both high speed and low noise. Offsets down to 25 µV and drift of 0.6 µV/°C maximum make the OP27 ideal for ...

Page 2

OP27 –SPECIFICATIONS ELECTRICAL CHARACTERISTICS Parameter Symbol Conditions INPUT OFFSET 1 VOLTAGE V OS LONG-TERM STABILITY V /Time OS INPUT OFFSET CURRENT I OS INPUT BIAS CURRENT I B INPUT NOISE 3, 4 VOLTAGE e 0.1 Hz ...

Page 3

ELECTRICAL CHARACTERISTICS Parameter Symbol Conditions INPUT OFFSET 1 VOLTAGE V OS AVERAGE INPUT 2 OFFSET DRIFT TCV OS 3 TCV OSn INPUT OFFSET CURRENT I OS INPUT BIAS CURRENT I B INPUT VOLTAGE RANGE IVR COMMON-MODE REJECTION RATIO CMRR V ...

Page 4

... V 110 124 CM = ± 4 ≥ 2 kΩ ± 750 1500 O ≥ 2 kΩ ± 11.7 ± 13 kΩ kΩ. TCV P ≤ for OP27EP, A OP27F OP27G Min Typ Max Min Typ Max 40 140 55 220 0.3 1 1.8 0.3 1 1.8 ...

Page 5

WAFER TEST LIMITS = ± Parameter Symbol INPUT OFFSET VOLTAGE V INPUT OFFSET CURRENT I INPUT BIAS CURRENT IB INPUT VOLTAGE RANGE IVR COMMON-MODE REJECTION RATIO CMRR POWER SUPPLY PSRR LARGE-SIGNAL VOLTAGE GAIN A A ...

Page 6

OP27 TYPICAL ELECTRICAL CHARACTERISTICS Parameter Symbol AVERAGE INPUT OFFSET VOLTAGE DRIFT TCV TCV AVERAGE INPUT OFFSET CURRENT DRIFT TCI AVERAGE INPUT BIAS CURRENT DRIFT TCI INPUT NOISE VOLTAGE DENSITY INPUT NOISE CURRENT DENSITY ...

Page 7

... Storage Temperature Range . . . . . . . . . . . . –65°C to +150°C Operating Temperature Range OP27A, OP27C ( –55°C to +125°C OP27E, OP27F ( –25°C to +85°C OP27E, OP27F ( 0°C to 70°C OP27G ( –40°C to +85°C Lead Temperature Range (Soldering, 60 sec 300°C Junction Temperature . . . . . . . . . . . . . . . . . –65°C to +150° 25° ...

Page 8

OP27 –Typical Performance Characteristics 100 TEST TIME OF 10sec FURTHER LIMITS LOW FREQUENCY 40 (<0.1Hz) GAIN 30 0.01 0 100 FREQUENCY – 15V S ...

Page 9

OP27C 50 40 OP27A OP27A 0 –10 OP27A –20 –30 –40 TRIMMING WITH 10k POT DOES –50 NOT CHANGE –60 TCV OS OP27C –70 –75 –50 – 100 125 150 175 TEMPERATURE ...

Page 10

OP27 1.0 0 TOTAL SUPPLY VOLTAGE – V 100 V = 15V 100mV IN ...

Page 11

F 100k OP27 D.U. VOLTAGE 22 F 4.3k GAIN OP12 = 50,000 SCOPE R 100k IN 4.7 F 2.2 F 110k 0.1 F 24.3k APPLICATION INFORMATION OP27 series units may be inserted directly into 725 and OP07 ...

Page 12

OP27 3. Sudden motion in the vicinity of the device can also “feedthrough” to increase the observed noise. 4. The test time to measure 0 noise should not exceed 10 seconds. As shown in the noise-tester ...

Page 13

Therefore, for low-frequency applications, the OP07 is better than the OP27/OP37 when R > 3 kΩ. The only exception is S when gain error is important. Figure 6 illustrates the 10 Hz noise. As expected, the results are between the ...

Page 14

OP27 against the RlAA-amplified low-frequency noise components and pickup-produced low-frequency disturbances. A preamplifier for NAB tape playback is similar to an RIAA phono preamp, though more gain is typically demanded, along with equalization requiring a heavy low-frequency boost. The circuit ...

Page 15

Some comment on noise is appropriate to understand the capability of this circuit. A 150 Ω resistor and R1 and R2 gain resistors connected to a noiseless amplifier will generate 220 nV of noise kHz bandwidth, or ...

Page 16

Revision History Location 9/01—Data Sheet changed from REV REV. A. Edits to ORDERING INFORMATION . . . . . . . . . . . . . . . . . . . . . . . . ...

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