TL072AIDT [STMICROELECTRONICS]

Low noise JFET dual operational amplifiers; 低噪声JFET双通道运算放大器
TL072AIDT
型号: TL072AIDT
厂家: ST    ST
描述:

Low noise JFET dual operational amplifiers
低噪声JFET双通道运算放大器

运算放大器 放大器电路 光电二极管
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中文:  中文翻译
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TL072, TL072A, TL072B  
Low noise JFET dual operational amplifiers  
Datasheet — production data  
Features  
Wide common-mode (up to VCC+) and  
differential voltage range  
Low input bias and offset current  
Low noise en = 15 nV/Hz (typ)  
Output short-circuit protection  
High input impedance JFET input stage  
Low harmonic distortion: 0.01% (typical)  
Internal frequency compensation  
Latch-up free operation  
N
DIP8  
(Plastic package)  
D
SO-8  
High slew rate: 16 V/µs (typ)  
(Plastic micropackage)  
Description  
The TL072, TL072A and TL072B are high speed  
JFET input dual operational amplifiers  
incorporating well matched, high voltage JFET  
and bipolar transistors in a monolithic integrated  
circuit.  
Pin connections (top view)  
The devices feature high slew rates, low input  
bias and offset current, and low offset voltage  
temperature coefficient.  
1
2
3
4
8
7
6
5
-
+
-
+
1 - Output 1  
2 - Inverting input 1  
3 - Non-inverting input 1  
-
4 - VCC  
5 - Non-inverting input 2  
6 -Inverting input 2  
7 - Output 2  
+
8 - VCC  
July 2012  
Doc ID 2298 Rev 7  
1/16  
This is information on a product in full production.  
www.st.com  
16  
Schematic diagram  
TL072, TL072A, TL072B  
1
Schematic diagram  
Figure 1.  
Schematic diagram  
VCC  
Non-inverting  
input  
Inverting  
input  
Ω
Ω
10 0  
10 0  
Ω
200  
Output  
30k  
1/2 TL072  
8.2k  
10 0  
Ω
1.3k  
1.3k  
35k  
35k  
VCC  
2/16  
Doc ID 2298 Rev 7  
TL072, TL072A, TL072B  
Absolute maximum ratings and operating conditions  
2
Absolute maximum ratings and operating conditions  
Table 1.  
Symbol  
Absolute maximum ratings  
Parameter  
TL072C, AC,  
BC  
TL072I, AI, BI  
Unit  
VCC  
Vin  
Supply voltage (1)  
18  
15  
30  
V
V
V
Input voltage (2)  
Vid  
Differential input voltage (3)  
Thermal resistance junction to ambient(4)  
Rthja  
125  
85  
°C/W  
°C/W  
SO-8  
DIP8  
Thermal resistance junction to case (4)  
Rthjc  
40  
41  
SO-8  
DIP8  
Output short-circuit duration (5)  
Storage temperature range  
HBM: human body model(6)  
MM: machine model(7)  
Infinite  
Tstg  
-65 to +150  
°C  
kV  
V
1
ESD  
200  
1.5  
CDM: charged device model(8)  
kV  
1. All voltage values, except differential voltage, are with respect to the zero reference level (ground) of the  
+
-
supply voltages where the zero reference level is the midpoint between V  
and V  
.
CC  
CC  
2. The magnitude of the input voltage must never exceed the magnitude of the supply voltage or 15 volts,  
whichever is less.  
3. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal.  
4. Short-circuits can cause excessive heating. Destructive dissipation can result from simultaneous short-  
circuits on all amplifiers.  
5. The output may be shorted to ground or to either supply. Temperature and/or supply voltages must be  
limited to ensure that the dissipation rating is not exceeded.  
6. Human body model: 100 pF discharged through a 1.5 kΩ resistor between two pins of the device, done for  
all couples of pin combinations with other pins floating.  
7. Machine model: a 200 pF cap is charged to the specified voltage, then discharged directly between two  
pins of the device with no external series resistor (internal resistor < 5 Ω). This is done for all couples of pin  
combinations with other pins floating.  
8. Charged device model: all pins plus package are charged together to the specified voltage and then  
discharged directly to the ground.  
Table 2.  
Symbol  
Operating conditions  
Parameter  
TL072C, AC,  
BC  
TL072I, AI, BI  
Unit  
VCC  
Supply voltage  
6 to 36  
V
Toper  
Operating free-air temperature range  
-40 to +105  
0 to +70  
°C  
Doc ID 2298 Rev 7  
3/16  
 
 
Electrical characteristics  
TL072, TL072A, TL072B  
3
Electrical characteristics  
Table 3.  
Electrical characteristics at VCC = 15V, Tamb = +25°C (unless otherwise specified)  
TL072I,AC,AI  
TL072C  
BC,BI  
Symbol  
Parameter  
Unit  
Min. Typ. Max. Min. Typ. Max.  
Input offset voltage (Rs = 50Ω)  
Tamb = +25°C  
TL072  
TL072A  
TL072B  
3
3
1
10  
6
3
10  
13  
Vio  
mV  
3
Tmin Tamb Tmax  
TL072  
13  
TL072A  
TL072B  
7
5
DVio  
Iio  
Input offset voltage drift  
10  
5
10  
5
µV/°C  
Input offset current (1)  
Tamb = +25°C  
Tmin Tamb Tmax  
100  
4
100  
10  
pA  
nA  
Input bias current (1)  
Tamb = +25°C  
Tmin Tamb Tmax  
Iib  
20  
200  
86  
200  
20  
20  
200  
86  
200  
20  
pA  
nA  
Large signal voltage gain (RL = 2kΩ, Vo = 10V)  
Tamb = +25°C  
Tmin Tamb Tmax  
Avd  
50  
25  
25  
15  
V/mV  
dB  
Supply voltage rejection ratio (RS = 50Ω)  
SVR  
80  
80  
70  
70  
Tamb = +25°C  
Tmin Tamb Tmax  
Supply current, no load  
Tamb = +25°C  
Tmin Tamb Tmax  
ICC  
Vicm  
CMR  
1.4  
2.5  
2.5  
1.4  
2.5  
2.5  
mA  
V
11 -12to  
+15  
11 -12to  
+15  
Input common mode voltage range  
Common mode rejection ratio (RS = 50Ω)  
80  
86  
40  
70  
86  
40  
dB  
Tamb = +25°C  
Tmin Tamb Tmax  
80  
70  
Output short-circuit current  
Tamb = +25°C  
Tmin Tamb Tmax  
Ios  
10  
10  
60  
60  
10  
10  
60  
60  
mA  
4/16  
Doc ID 2298 Rev 7  
TL072, TL072A, TL072B  
Electrical characteristics  
Table 3.  
Symbol  
Electrical characteristics at VCC = 15V, Tamb = +25°C (unless otherwise specified)  
(continued)  
TL072I,AC,AI  
TL072C  
BC,BI  
Parameter  
Unit  
Min. Typ. Max. Min. Typ. Max.  
Output voltage swing  
Tamb = +25°C  
RL = 2kΩ  
RL = 10kΩ  
10  
12  
12  
10  
12  
12  
Vopp  
13.5  
13.5  
V
Tmin Tamb Tmax  
RL = 2kΩ  
RL = 10kΩ  
10  
12  
10  
12  
Slew rate  
SR  
tr  
8
16  
8
16  
V/µs  
µs  
Vin = 10V, RL = 2kΩ, CL = 100pF, unity gain  
Rise time  
Vin = 20mV, RL = 2kΩ, CL = 100pF, unity gain  
0.1  
10  
0.1  
10  
Overshoot  
Kov  
%
Vin = 20mV, RL = 2kΩ, CL = 100pF, unity gain  
Gain bandwidth product  
GBP  
Ri  
2.5  
4
2.5  
4
MHz  
Vin = 10mV, RL = 2kΩ, CL = 100pF, F= 100kHz  
Input resistance  
1012  
1012  
Ω
Total harmonic distortion  
THD  
%
F= 1kHz, RL = 2kΩ,CL = 100pF, Av = 20dB,  
Vo = 2Vpp  
0.01  
0.01  
Equivalent input noise voltage  
nV  
en  
m  
15  
45  
15  
45  
-----------  
RS = 100Ω, F= 1kHz  
Hz  
Phase margin  
degrees  
Channel separation  
Av = 100  
Vo1/Vo2  
120  
120  
dB  
1. The input bias currents are junction leakage currents which approximately double for every 10° C increase in the junction  
temperature.  
Doc ID 2298 Rev 7  
5/16  
Electrical characteristics  
TL072, TL072A, TL072B  
Figure 2.  
Maximum peak-to-peak output  
voltage versus frequency (RL= 2kΩ)  
Figure 3.  
Maximum peak-to-peak output  
voltage versus frequency  
(RL= 10kΩ)  
Figure 4.  
Maximum peak-to-peak output  
voltage versus frequency  
Figure 5.  
Maximum peak-to-peak output  
voltage versus free air temperature  
Figure 6.  
Maximum peak-to-peak output  
voltage versus load resistance  
Figure 7.  
Maximum peak-to-peak output  
voltage versus supply voltage  
30  
25  
= 10 k  
Ω
RL  
Tamb = +25˚C  
20  
15  
10  
5
0
2
4
6
8
10  
14  
16  
12  
SUPPLY VOLTAGE ( V)  
6/16  
Doc ID 2298 Rev 7  
TL072, TL072A, TL072B  
Electrical characteristics  
Figure 8.  
Input bias current versus free air  
temperature  
Figure 9.  
Large signal differential voltage  
amplification versus free air temp  
1000  
100  
VCC  
15V  
=
400  
200  
100  
10  
1
40  
20  
10  
VCC  
=
15V  
10V  
L = 2k  
VO  
0.1  
=
4
2
Ω
R
0.01  
1
-75 -50  
-25  
0
25  
50  
75  
125  
100  
-50  
-25  
0
25  
50  
75  
100  
125  
TEMPERATURE (˚C)  
TEMPERATURE (˚C)  
Figure 10. Large signal differential voltage  
amplification and phase shift  
versus frequency  
Figure 11. Total power dissipation versus free  
air temperature  
250  
VCC  
225  
200  
175  
150  
125  
100  
75  
15V  
=
No signal  
No load  
50  
25  
0
-75 -50  
-25  
0
50  
75  
100 125  
25  
TEMPERATURE (˚C)  
Figure 12. Supply current per amplifier versus Figure 13. Common mode rejection ratio  
free air temperature versus free air temperature  
2.0  
1.8  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0
89  
88  
VCC  
15V  
RL  
= 10 k  
Ω
=
No signal  
No load  
VC C  
=
15V  
87  
86  
85  
84  
83  
-75 -50  
-25  
0
25  
50  
75 100  
125  
-75 -50  
-25  
0
50  
75  
100 125  
25  
TEMPERATURE (˚C)  
TEMPERATURE (˚C)  
Doc ID 2298 Rev 7  
7/16  
Electrical characteristics  
TL072, TL072A, TL072B  
Figure 14. Voltage follower large signal pulse Figure 15. Output voltage versus elapsed time  
response  
6
4
28  
24  
20  
16  
12  
8
OUTPUT  
OVERSHOOT  
INPUT  
90%  
2
0
VCC  
=
15V  
-2  
VCC  
=
15V  
= 2 k  
W
RL  
4
0
R L  
= 2k  
Ω
C
T
L= 100pF  
10%  
-4  
-6  
Tamb  
= +25˚C  
amb = +25°C  
t r  
-4  
0
0.5  
1
1.5  
2
2.5  
3
3.5  
0.3  
TIME (  
0.5  
0.6  
0
0.1  
0.2  
0.4  
s)  
0.7  
μ
TIME ( s)  
m
Figure 16. Equivalent input noise voltage  
versus frequency  
Figure 17. Total harmonic distortion versus  
frequency  
70  
1
=
= 10  
= 100  
= +25˚C  
15V  
VCC  
A V  
R S  
V
=
15V  
CC  
60  
0.4  
= 1  
A V  
V
O
50  
40  
30  
Ω
= 6V  
(rms)  
0.1  
Tamb  
T
= +25˚C  
amb  
0.04  
0.01  
20  
0.004  
10  
0
0.001  
10  
40  
100  
400 1k  
4k 10k  
40k 100k  
100  
400  
1k  
4k  
10k  
40k  
100k  
FREQUENCY (Hz)  
FREQUENCY (Hz)  
8/16  
Doc ID 2298 Rev 7  
TL072, TL072A, TL072B  
Parameter measurement information  
4
Parameter measurement information  
Figure 18. Voltage follower  
Figure 19. Gain-of-10 inverting amplifier  
10k  
Ω
1k  
Ω
-
eI  
1/2  
TL072  
e
o
R
CL= 100pF  
L
Doc ID 2298 Rev 7  
9/16  
Typical application  
TL072, TL072A, TL072B  
5
Typical application  
Figure 20. 100 kHz quadruple oscillator  
18k  
Ω
*
1N 4148  
18pF  
-15V  
18pF  
Ω
1k  
-
Ω
88.4k  
1/2  
TL072  
-
1/2  
TL072  
88.4k  
Ω
ω
6 cos  
t
ω
6 sin  
t
Ω
1k  
18pF  
88.4k  
Ω
1N 4148  
18k  
Ω
*
+15V  
* These resistor values may be adjusted for a symmetrical output  
10/16  
Doc ID 2298 Rev 7  
TL072, TL072A, TL072B  
Package information  
6
Package information  
In order to meet environmental requirements, ST offers these devices in different grades of  
ECOPACK® packages, depending on their level of environmental compliance. ECOPACK®  
specifications, grade definitions and product status are available at: www.st.com. ECOPACK  
is an ST trademark.  
Doc ID 2298 Rev 7  
11/16  
Package information  
TL072, TL072A, TL072B  
6.1  
DIP8 package information  
Figure 21. DIP8 package mechanical drawing  
Table 4.  
Ref.  
DIP8 package mechanical data  
Millimeters  
Dimensions  
Inches  
Min.  
Typ.  
Max.  
Min.  
Typ.  
Max.  
A
A1  
A2  
b
5.33  
0.210  
0.38  
2.92  
0.36  
1.14  
0.20  
9.02  
7.62  
6.10  
0.015  
0.115  
0.014  
0.045  
0.008  
0.355  
0.300  
0.240  
3.30  
0.46  
1.52  
0.25  
9.27  
7.87  
6.35  
2.54  
7.62  
4.95  
0.56  
1.78  
0.36  
10.16  
8.26  
7.11  
0.130  
0.018  
0.060  
0.010  
0.365  
0.310  
0.250  
0.100  
0.300  
0.195  
0.022  
0.070  
0.014  
0.400  
0.325  
0.280  
b2  
c
D
E
E1  
e
eA  
eB  
L
10.92  
3.81  
0.430  
0.150  
2.92  
3.30  
0.115  
0.130  
12/16  
Doc ID 2298 Rev 7  
TL072, TL072A, TL072B  
Package information  
6.2  
SO-8 package information  
Figure 22. SO-8 package mechanical drawing  
Table 5.  
Ref.  
SO-8 package mechanical data  
Millimeters  
Dimensions  
Inches  
Min.  
Typ.  
Max.  
Min.  
Typ.  
Max.  
A
A1  
A2  
b
1.75  
0.25  
0.069  
0.010  
0.10  
1.25  
0.28  
0.17  
4.80  
5.80  
3.80  
0.004  
0.049  
0.011  
0.007  
0.189  
0.228  
0.150  
0.48  
0.23  
5.00  
6.20  
4.00  
0.019  
0.010  
0.197  
0.244  
0.157  
c
D
4.90  
6.00  
3.90  
1.27  
0.193  
0.236  
0.154  
0.050  
E
E1  
e
h
0.25  
0.40  
1°  
0.50  
1.27  
8°  
0.010  
0.016  
1°  
0.020  
0.050  
8°  
L
k
ccc  
0.10  
0.004  
Doc ID 2298 Rev 7  
13/16  
Ordering information  
TL072, TL072A, TL072B  
7
Ordering information  
Table 6.  
Order codes  
Order code  
Temperature range  
Package  
Packing  
Marking  
TL072IN  
TL072IN  
TL072AIN  
TL072BIN  
TL072AIN  
TL072BIN  
DIP8  
Tube  
TL072ID  
072I  
072AI  
072BI  
-40°C, +105°C  
TL072IDT  
TL072AID  
SO-8  
DIP8  
SO-8  
Tube or tape & reel  
TL072AIDT  
TL072BID  
TL072BIDT  
TL072CN  
TL072CN  
TL072ACN  
TL072BCN  
TL072ACN  
TL072BCN  
Tube  
TL072CD  
072C  
072AC  
072BC  
0°C, +70°C  
TL072CDT  
TL072ACD  
Tube or tape & reel  
Tube or tape & reel  
TL072ACDT  
TL072BCD  
TL072BCDT  
TL072IYDT(1)  
TL072AIYDT(1)  
TL072BIYDT(1)  
072IY  
072AIY  
072BIY  
SO-8  
-40°C, +105°C  
(Automotive grade)  
1. Qualification and characterization according to AEC Q100 and Q003 or equivalent, advanced screening according to AEC  
Q001 & Q 002 or equivalent.  
14/16  
Doc ID 2298 Rev 7  
 
TL072, TL072A, TL072B  
Revision history  
8
Revision history  
Table 7.  
Date  
Document revision history  
Revision  
Changes  
28-Mar-2001  
02-Apr-2004  
04-Dec-2006  
1
2
3
Initial release.  
Correction to pin connection diagram on cover page. Unpublished.  
Modified graphics in package mechanical data.  
Expanded order codes table and added automotive grade order  
codes. See Table 6 on page 14.  
Added thermal resistance and ESD tolerance in Table 1 on page 3.  
Added Table 2: Operating conditions on page 3.  
06-Mar-2007  
13-Mar-2008  
4
5
Updated package mechanical data to make it compliant with the  
latest JEDEC standards.  
ESD HBM value modified in AMR table.  
Re-ordered order codes table.  
Removed TL072BIY and TL072AIY order codes from order code  
table.  
Corrected footnote for automotive grade order codes in order codes  
table.  
Removed information concerning military temperature range  
(TL072Mx, TL072AMx, TL072BMx).  
15-Jul-2008  
04-Jul-2012  
6
7
Added order codes for automotive grade products in Table 6: Order  
codes.  
Removed part numbers TL072IYD, TL072AIYD, TL072BIYD.  
Updated Table 6: Order codes.  
Doc ID 2298 Rev 7  
15/16  
TL072, TL072A, TL072B  
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16/16  
Doc ID 2298 Rev 7  

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TL072B

LOW NOISE J-FET DUAL OPERATIONAL AMPLIFIERS
STMICROELECTR

TL072B

LOW-NOISE JFET-INPUT OPERATIONAL AMPLIFIERS
TI