TL064BCN [STMICROELECTRONICS]

LOW POWER J-FET QUAD OPERATIONAL AMPLIFIERS; 低功率J-FET四路运算放大器
TL064BCN
型号: TL064BCN
厂家: ST    ST
描述:

LOW POWER J-FET QUAD OPERATIONAL AMPLIFIERS
低功率J-FET四路运算放大器

运算放大器 放大器电路 光电二极管
文件: 总10页 (文件大小:115K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TL064  
TL064A - TL064B  
LOW POWER J-FET QUAD OPERATIONAL AMPLIFIERS  
VERY LOW POWER CONSUMPTION : 200µA  
WIDE COMMON-MODE (UP TO VCC+) AND  
DIFFERENTIAL VOLTAGE RANGES  
LOW INPUT BIAS AND OFFSET CURRENTS  
OUTPUT SHORT-CIRCUIT PROTECTION  
HIGH INPUT IMPEDANCE J-FET INPUT  
STAGE  
INTERNAL FREQUENCY COMPENSATION  
LATCH UP FREE OPERATION  
HIGH SLEW RATE : 3.5V/µs  
N
D
DIP14  
SO14  
(Plastic Package)  
(Plastic Micropackage)  
DESCRIPTION  
ORDER CODES  
The TL064, TL064A and TL064B are high speed  
J-FET input quad operational amplifiers. Each of  
these J-FET input operational amplifiers incorpo-  
rates well matched, high voltage J-FET and bipolar  
transistors in a monolithic integrated circuit.  
Package  
Part Number  
Temperature Range  
N
D
TL064M/AM/BM  
TL064I/AI/BI  
-55oC, +125oC  
-40oC, +105oC  
0oC, +70oC  
The device features high slew rate, low input bias  
and offsetcurrents, andlow offsetvoltagetempera-  
ture coefficient.  
TL064C/AC/BC  
Example : TL064IN  
PIN CONNECTIONS (top view)  
Output 1 1  
14 Output 4  
Inverting Input 1 2  
-
13 Inverting Input 4  
-
+
+
Non-inverting Input 1 3  
12 Non-inverting Input 4  
-
11 V  
CC  
+
V
CC  
4
5
6
7
Non-inverting Input 2  
Inverting Input 2  
Output 2  
10 Non-inverting Input 3  
+
-
+
-
9
8
Inverting Input 3  
Output 3  
October 1997  
1/10  
TL064 - TL064A - TL064B  
SCHEMATIC DIAGRAM  
VCC  
220Ω  
Inverting  
Input  
Non-inverting  
Input  
1/4 TL064  
Output  
64  
45k  
270Ω  
3.2k  
4.2k Ω  
100Ω  
VCC  
MAXIMUM RATINGS  
Symbol  
Parameter  
TL064M,AM,BM  
TL064I,AI,BI  
±18  
TL064C,AC,BC  
±18  
Unit  
V
VCC  
Vi  
Supply Voltage - (note 1)  
±18  
±15  
Input Voltage - (note 3)  
±15  
±15  
V
Vid  
Ptot  
Differential Input Voltage - (note 2)  
Power Dissipation  
±30  
±30  
±30  
V
680  
680  
680  
mW  
Output Short-Circuit Duration (Note 4)  
Infinite  
-55 to +125  
Infinite  
-40 to +105  
Infinite  
0 to +70  
Toper  
Tstg  
Operating Free-Air Temperature  
Range  
oC  
oC  
Storage Temperature Range  
-65 to +150  
-65 to +150  
-65 to +150  
Notes : 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 VCC+ and VCC  
.
2. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal.  
3. The magnitude of the input voltage must never exceed the magnitude of the supply voltage or 15 volts, whichever is less.  
4. 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.  
2/10  
TL064 - TL064A - TL064B  
ELECTRICAL CHARACTERISTICS  
VCC = ± 15V, Tamb = 25oC (unless otherwise specified)  
TL064M  
TL064I  
TL064C  
Unit  
Symbol  
Parameter  
Min. Typ. Max. Min. Typ. Max. Min. Typ. Max.  
Vio  
Input Offset Voltage (Rs = 50)  
mV  
Tamb = 25oC  
3
6
15  
3
6
9
3
15  
20  
T
min. Tamb Tmax.  
DVio  
Iio  
Temperature Coefficient of Input  
Offset Voltage (Rs = 50)  
µV/oC  
10  
5
10  
5
10  
5
Input Offset Current *  
Tamb = 25oC  
100  
20  
100  
10  
200  
5
pA  
nA  
Tmin. Tamb Tmax.  
Iib  
Input Bias Current *  
Tamb = 25oC  
30  
200  
50  
30  
200  
20  
30  
400  
10  
pA  
nA  
T
min. Tamb Tmax.  
Vicm  
Input Common Mode Voltage  
Range  
V
±11.5 +15  
±11.5 +15  
±11 +15  
-12  
-12  
-12  
VOPP  
Output Voltage Swing (RL = 10k)  
V
Tamb = 25oC  
20  
20  
27  
6
20  
20  
27  
6
20  
20  
27  
6
T
min. Tamb Tmax  
.
Avd  
Large Signal Voltage Gain  
(RL = 10k, Vo = ± 10V)  
Tamb = 25oC  
V/mV  
MHz  
4
4
4
4
3
3
T
min. Tamb Tmax  
.
GBP  
Gain Bandwidth Product  
(Tamb = 25oC, RL = 10kΩ  
CL = 100pF)  
1
1
1
Ri  
Input Resistance  
1012  
1012  
1012  
CMR  
Common Mode Rejection Ratio  
(Rs = 50)  
dB  
80  
80  
86  
95  
80  
80  
86  
95  
70  
70  
76  
95  
SVR  
Icc  
Supply Voltage Rejection Ratio  
(Rs = 50)  
dB  
µA  
Supply Current (Per Amplifier)  
(Tamb = 25oC, no load, no signal)  
200 250  
120  
200 250  
120  
200 250  
120  
VO1/VO2 Channel Separation  
(Av = 100, Tamb = 25oC)  
dB  
PD  
Total Power Consumption  
mW  
(Tamb = 25oC, no load, no signal)  
6
7.5  
6
7.5  
6
7.5  
* The input bias currents of a FET-input operational amplifier are normal junction reverse currents, which are temperature sensitive.  
Pulse techniques must be used that will maintain the junction temperature as close to the ambient temperature as possible.  
ELECTRICAL CHARACTERISTICS (continued)  
VCC = ± 15V, Tamb = 25oC  
TL064C,I,M  
Symbol  
Parameter  
Unit  
Min.  
Typ.  
3.5  
Max.  
SR  
tr  
Slew Rate (Vi = 10V, RL = 10k, CL = 100pF, AV = 1)  
1.5  
V/µs  
µs  
Rise Time (Vi = 20mV, RL = 10k, CL = 100pF, AV = 1) (see Figure 1)  
0.2  
KOV  
Overshoot Factor (Vi = 20mV, RL = 10k, CL = 100pF, AV = 1)  
(see figure 1)  
%
10  
42  
en  
Equivalent Input Noise Voltage  
(Rs = 100, f = 1KHz)  
nV  
Hz  
3/10  
TL064 - TL064A - TL064B  
ELECTRICAL CHARACTERISTICS (continued)  
VCC = ± 15V, Tamb = 25oC (unless otherwise specified)  
TL064AC,AI,AM  
TL064BC,BI,BM  
Symbol  
Parameter  
Unit  
Min. Typ. Max. Min. Typ. Max.  
Vio  
Input Offset Voltage (Rs = 50)  
mV  
Tamb = 25oC  
3
6
7.5  
2
3
5
T
min. Tamb Tmax.  
DVio  
Iio  
Temperature Coefficient of Input Offset Voltage  
(Rs = 50)  
µV/oC  
10  
5
10  
5
Input Offset Current *  
Tamb = 25oC  
100  
3
100  
3
pA  
nA  
Tmin. Tamb Tmax.  
Iib  
Input Bias Current *  
Tamb = 25oC  
30  
200  
7
30  
200  
7
pA  
nA  
Tmin. Tamb Tmax.  
Vicm  
Input Common Mode Voltage Range  
±11.5 +15  
±11.5 +15  
V
V
-12  
-12  
VOPP  
Output Voltage Swing (RL = 10k)  
Tamb = 25oC  
20  
20  
27  
6
20  
20  
27  
6
T
min. Tamb Tmax.  
Avd  
Large Signal Voltage Gain (RL = 10k, Vo = ± 10V)  
V/mV  
MHz  
Tamb = 25oC  
4
4
4
4
T
min. Tamb Tmax.  
GBP  
Gain Bandwidth Product  
(Tamb = 25oC, RL = 10k, CL = 100pF)  
1
1
Ri  
Input Resistance  
1012  
1012  
CMR  
Common Mode Rejection Ratio (Rs = 50)  
dB  
80  
80  
86  
95  
80  
80  
86  
95  
SVR  
Icc  
Supply Voltage Rejection Ratio (Rs = 50)  
dB  
Supply Current (Per Amplifier)  
(Tamb = 25oC, no load, no signal)  
µA  
200 250  
120  
200 250  
120  
VO1/VO2 Channel Separation  
(Av = 100, Tamb = 25oC)  
dB  
PD  
Total Power Consumption (Each Amplifier)  
mW  
(Tamb = 25oC, no load, no signal)  
6
7.5  
6
7.5  
SR  
tr  
Slew Rate (Vi = 10V, RL = 10k, CL = 100pF, AV = 1)  
Rise Time (Vi = 20mV, RL = 10k, CL = 100pF, AV = 1)  
1.5  
3.5  
0.2  
1.5  
3.5  
0.2  
V/µs  
µs  
KOV  
Overshoot Factor (Vi = 20mV, RL = 10k, CL = 100pF,  
AV = 1) - (see figure 1)  
%
10  
10  
en  
Equivalent Input Noise Voltage  
(Rs = 100, f = 1KHz)  
nV  
Hz  
42  
42  
* The input bias currents of a FET-input operational amplifier are normal junction reverse currents, which are temperature sensitive.  
Pulse techniques must be used that will maintain the junction temperature as close to the ambient temperature as possible.  
4/10  
TL064 - TL064A - TL064B  
MAXIMUM PEAK-TO-PEAK OUTPUT  
VOLTAGE VERSUS SUPPLY VOLTAGE  
MAXIMUM PEAK-TO-PEAK OUTPUT  
VOLTAGE VERSUS FREE AIR TEMP.  
30  
3 0  
2 5  
2 0  
1 5  
R
L= 10 kΩ  
25  
Tam b= +25°C  
See figure 2  
20  
15  
10  
1 0  
5
VC C  
=
1 5 V  
R
L
= 10k Ω  
5
See Figure 2  
0
0
2
4
6
8
10  
12  
14  
16  
-7 5 -5 0 - 25  
0
2 5  
5 0  
7 5  
-50 125  
FREE AIR TEMPERATURE (°C)  
SUPPLY VOLTAGE (V)  
MAXIMUM PEAK-TO-PEAK OUTPUT  
VOLTAGE VERSUS LOAD RESISTANCE  
MAXIMUM PEAK-TO-PEAK OUTPUT  
VOLTAGE VERSUS FREQUENCY  
30  
30  
R
L = 10kΩ  
25  
20  
Tamb  
= +25°C  
See Figure 2  
25  
20  
=
VCC  
15V  
=
=
=
VC C  
VCC  
VCC  
12V  
5V  
15  
10  
15  
10  
=
15V  
VCC  
T
amb = +25°C  
See Figure 2  
5
2V  
5
0
0
1k  
100 200 400  
700  
2k  
4k  
7k 10k  
10K  
100K  
1M  
10M  
1k  
LOAD RESISTANCE (k )  
FREQUENCY (Hz)  
DIFFERENTIAL VOLTAGE AMPLIFICATION  
VERSUS FREE AIR TEMPERATURE  
LARGE SIGNAL DIFFERENTIAL VOLTAGE  
AMPLIFICATION AND PHASE SHIFT VERSUS  
FREQUENCY  
6
10  
7
10  
VCC  
=
5V to 15V  
5
= 2kΩ  
RL  
10  
T
amb  
= +25°C  
4
0
10  
DIFFERENTIAL  
VOLTAGE  
AMPLIFICATION  
(left scale)  
4
2
3
2
1
45  
90  
10  
10  
PHASE SHIFT  
(right scale)  
VCC  
=
15V  
135  
10  
R L = 10kΩ  
180  
1
100k  
10M  
10 100  
1k  
10k  
1M  
-25  
-50  
0
25  
50  
75 100 125  
-75  
1
FREE AIR TEMPERATURE (°C)  
FREQUENCY (Hz)  
5/10  
TL064 - TL064A - TL064B  
SUPPLY CURRENT PER AMPLIFIER VERSUS  
SUPPLY VOLTAGE  
SUPPLY CURRENT PER AMPLIFIER VERSUS  
FREE AIR TEMPERATURE  
250  
200  
250  
200  
150  
150  
100  
100  
Tamb = +25°C  
No signal  
No load  
VCC  
No signal  
Noload  
= 15V  
50  
0
50  
0
-75 -50  
FREE AIR TEMPERATURE (°C)  
0
2
125  
50 75 100  
-25  
4
10 12 14 16  
0
25  
6
8
SUPPLY VOLTAGE ( V)  
TOTAL POWER DISSIPATED VERSUS  
FREE AIR TEMPERATURE  
COMMON MODE REJECTION RATIO  
VERSUS FREE AIR TEMPERATURE  
30  
87  
25  
20  
86  
85  
15  
10  
84  
83  
VCC  
15V  
=
VC C  
1 5V  
=
No signal  
No load  
5
82  
R L = 10kΩ  
0
81  
-75 -50 -25  
0
25 50  
75 100 125  
-75 -50  
-25  
0
25  
50  
75 100 125  
FREE AIR TEMPERATURE(°C)  
FREE AIR TEMPERATURE (°C)  
NORMALIZED UNITY GAIN BANDWIDTH  
SLEW RATE, AND PHASE SHIFT VERSUS  
TEMPERATURE  
INPUT BIAS CURRENT VERSUS FREE AIR  
TEMPERATURE  
100  
1.3  
1.03  
15V  
VCC  
=
PHASE SHIFT  
(right scale)  
UNITY-GAIN-BANDWIDTH  
(left scale)  
1.2  
1.1  
1.02  
1.01  
10  
1
SLEW RATE  
(left scale)  
1
1
0.9  
0.99  
VCC  
15V  
=
0.1  
RL  
= 10k  
0.8  
0.98  
f = B forphase shift  
1
0.7  
0.97  
-75 -50 -25  
0
25 50  
75 100 125  
0.01  
-50 -25  
0
25  
50  
75  
100 125  
FREE AIR TEMPERATURE(°C)  
FREE AIR TEMPERATURE (°C)  
6/10  
TL064 - TL064A - TL064B  
VOLTAGE FOLLOWER LARGE SIGNAL  
RESPONSE  
OUTPUT VOLTAGE VERSUS  
ELAPSED TIME  
6
28  
24  
20  
16  
12  
INPUT  
4
OVERSHOOT  
90%  
2
0
OUTPUT  
V
RL  
C
= 15V  
CC= 10k  
8
V CC  
R L  
= 15V  
-2  
4
0
L = 100pF  
= 10k  
10%  
Tamb = +25°C  
Tamb  
= +25°C  
-4  
-6  
t
r
-4  
0.6  
TIME ( µs)  
1
0
0.2  
0.4  
0.8  
12  
14  
0
2
4
6
8
10  
TIME (µs)  
EQUIVALENT INPUT NOISE VOLTAGE  
VERSUS FREQUENCY  
100  
90  
=
15V  
VC C  
80  
70  
60  
R S = 100Ω  
Ta m b  
= +25°C  
50  
40  
30  
20  
10  
0
40  
100  
400 1k  
4k 10k  
40k 100k  
10  
FREQUENCY (Hz)  
7/10  
TL064 - TL064A - TL064B  
PARAMETER MEASUREMENT INFORMATION  
Figure 1 : Voltage follower  
Figure 2 : Gain-of-10 inverting amplifier  
10k Ω  
10k Ω  
1k Ω  
1k Ω  
-
-
eI  
eI  
1/4  
1/4  
e
e
o
o
TL064  
TL064  
R
CL= 100pF  
R
CL= 100pF  
L
L
TYPICAL APPLICATION  
AUDIO DISTRIBUTION AMPLIFIER  
f
= 100kHz  
O
-
-
-
1/4  
Output A  
TL064  
1M  
-
1/4  
µ
1
F
TL064  
1/4  
Output B  
Input  
TL064  
100k Ω  
100k Ω  
100k Ω  
+
V
CC  
µ
1OO  
F
100k  
1/4  
Output C  
TL064  
8/10  
TL064 - TL064A - TL064B  
PACKAGE MECHANICAL  
14 PINS - PLASTIC DIP  
Millimeters  
Typ.  
Inches  
Dimensions  
Min.  
Max.  
Min.  
0.020  
0.055  
Typ.  
Max.  
a1  
B
b
0.51  
1.39  
1.65  
0.065  
0.5  
0.020  
0.010  
b1  
D
E
e
0.25  
20  
0.787  
8.5  
2.54  
0.335  
0.100  
0.600  
e3  
F
15.24  
7.1  
5.1  
0.280  
0.201  
i
L
3.3  
0.130  
Z
1.27  
2.54  
0.050  
0.100  
9/10  
TL064 - TL064A - TL064B  
PACKAGE MECHANICAL  
14 PINS - PLASTIC MICROPACKAGE (SO)  
Millimeters  
Dimensions  
Inches  
Typ.  
Min.  
Typ.  
Max.  
1.75  
0.2  
Min.  
Max.  
0.069  
0.008  
0.063  
0.018  
0.010  
A
a1  
a2  
b
0.1  
0.004  
1.6  
0.35  
0.19  
0.46  
0.25  
0.014  
0.007  
b1  
C
0.5  
0.020  
c1  
D
45o (typ.)  
8.55  
5.8  
8.75  
6.2  
0.336  
0.228  
0.334  
0.244  
E
e
1.27  
7.62  
0.050  
0.300  
e3  
F
3.8  
4.6  
0.5  
4.0  
5.3  
0.150  
0.181  
0.020  
0.157  
0.208  
0.050  
0.027  
G
L
1.27  
0.68  
M
S
8o (max.)  
Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsibility  
for the consequences of use of such information nor for any infringement 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 SGS-THOMSON Microelectronics.  
Specification mentioned in this publication are subject to change without notice. This publication supersedes and replaces all  
information previously supplied. SGS-THOMSON Microelectronics products are not authorized for use as critical components in life  
support devices or systems without express written approval of SGS-THOMSON Microelectronics.  
1997 SGS-THOMSON Microelectronics – Printed in Italy – AllRights Reserved  
SGS-THOMSON Microelectronics GROUP OF COMPANIES  
Australia - Brazil - Canada - China - France - Germany - Hong Kong - Italy - Japan - Korea - Malaysia - Malta - Morocco  
The Netherlands - Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A.  
10/10  

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