AN1324 [PANASONIC]

Quadruple Operational Amplifiers; 翻两番运算放大器
AN1324
型号: AN1324
厂家: PANASONIC    PANASONIC
描述:

Quadruple Operational Amplifiers
翻两番运算放大器

运算放大器
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中文:  中文翻译
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AN1324 (AN6564),  
AN1324NS (AN6564NS)  
Quadruple Operational Amplifiers  
AN1324 (AN6564)  
Unit :mm  
Overview  
1
2
3
4
5
6
7
14  
13  
12  
11  
10  
9
The AN1324 (AN6564)and the AN1324NS  
(AN6564NS)are quadruple operational amplifiers with  
phase compensation circuits built-in, and with wide range  
of operating voltages, allowing single power supply  
operation. They have electrical characteristics equal to  
the conventional operational amplifiers, and are low  
powered and suitable for application to various circuits.  
8
1.1±0.25  
4.7±0.25 3.05±0.25  
6.35±0.3  
3–15˚  
7.62±0.25  
Features  
14-pin DIL Plastic Package (DIP014-P-0300D)  
• Built-in phase compensation circuit  
• Wide range of common-mode input voltage  
0V to VCC–1.5V  
AN1324NS (AN6564NS)  
Unit:mm  
• Wide range of operating voltages  
Single supply:3 to 30V  
1
14  
13  
12  
11  
10  
9
2
3
4
5
6
7
Dual supply:±1.5 to 15V  
8
0.3  
4.2±0.3  
6.5±0.3  
14-pin PANAFLAT Plastic Package (SOP014-P-0225A)  
Block Diagram  
GND  
+
+
VO4 Vin4 Vin4 (VEE) Vin3 Vin3 VO3  
14  
13  
12  
11  
10  
+
9
8
+
4
3
1
2
2
+
+
5
1
3
4
6
7
+
+
Vin1 Vin1 VCC Vin2 Vin2 VO2  
VO1  
Pin Descriptions  
Pin No.  
Pin No.  
Pin name  
Pin name  
Ch.3 output  
Ch.3 inverting input  
1
2
3
4
5
6
7
Ch.1 output  
8
9
Ch.1 inverting input  
Ch.1 non inverting input  
VCC  
10 Ch.3 non inverting input  
11 GND (VEE  
)
Ch.2 non inverting input  
Ch.2 inverting input  
Ch.2 output  
12 Ch.4 non inverting input  
13 Ch.4 inverting input  
14 Ch.4 output  
Absolute Maximum Ratings (Ta=25˚C)  
Parameter  
Symbol  
Rating  
32  
Unit  
V
Supply voltage  
VCC  
VID  
Differential input voltage  
Common-mode input voltage  
Output voltage  
32  
V
Voltage  
VICM  
VO  
–0.3 to 32  
24  
V
V
AN1324 (AN6564)  
570  
Power dissipation  
PD  
Topr  
Tstg  
mW  
˚C  
AN1324NS (AN6564NS)  
380  
Operating ambient temperature  
AN1324 (AN6564)  
AN1324NS (AN6564NS)  
–20 to +75  
–55 to +150  
–55 to +125  
˚C  
Storage temperature  
Electrical Characteristics (V =5V, Ta=25˚C)  
CC  
Parameter  
Symbol  
VI (offset)  
IBias  
Condition  
min  
typ  
max  
Unit  
Input offset voltage  
RS=50  
2
7
mV  
nA  
nA  
V
Input bias current  
500  
50  
Input offset current  
IIO  
Common-mode input voltage range  
Supply current  
VCM  
0
VCC–1.5  
2
ICC  
RL=∞  
mA  
dB  
V
Voltage gain  
RL2kΩ  
RL=2kΩ  
GV  
100  
Maximum output voltage  
Common-mode rejection ratio  
Supply voltage rejection ratio  
Channel separation  
VO(max.)  
CMR  
SVR  
CS  
VCC–1.5  
65  
85  
100  
120  
40  
dB  
dB  
dB  
mA  
mA  
65  
f=1kHz to 20kHz  
Vin+=1V, Vin=0V  
Vin+=0V, Vin=1V  
Output source current  
Output sink current  
IO(source)  
ISINK  
20  
10  
20  
Characteristics Curve  
II (offset)–VCC  
VI (offset)–VCC  
IBias–VCC  
5
4
15  
10  
5
80  
70  
60  
50  
40  
30  
20  
10  
0
Ta=25˚C  
3
2
1
0
0
–1  
–2  
–3  
–4  
–5  
–5  
–10  
–15  
20 24 28 32  
0
4
8
12 16 20 24 28 32  
0
4
8
12 16  
0
4
8
12 16 20 24 28 32  
Supply Voltage VCC (V)  
Supply Voltage VCC (V)  
Supply Voltage VCC (V)  
ICC–VCC  
GV–f  
IO–Ta  
1.8  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
120  
100  
80  
60  
40  
20  
0
60  
50  
40  
30  
20  
10  
0
V
CC  
V
=5V  
CC  
A
I
I
Osink  
(1) Ta=–20˚C  
(2) Ta=25˚C  
(3) Ta=75˚C  
V
CC=15V  
V
in  
+
in  
Ta=25˚C  
+
V
Osource  
IOsource  
+
(1)  
(2)  
(3)  
IOsink  
0
4
8 12 16 20 24 28 32 36 40  
1
10  
100  
1k  
10k 100k 1M  
–20  
0
20  
40  
60  
80  
100  
Frequency f (Hz)  
Supply Voltage VCC (V)  
Ambient Temperature Ta (˚C)  
VO–fi  
Vi, VO–t  
GV–VCC  
16  
14  
12  
10  
8
140  
V
CC  
=15V  
100k  
f
=20Hz  
in  
Ta=25˚C  
V
in  
Duty 50%  
V
O
V
O
+
1kΩ  
2kΩ  
V
CC  
2
V
in  
4
3
2
1
0
120  
100  
80  
+
2kΩ  
V
–15V  
CC  
6
4
3
2
1
0
2
0
60  
100 300 1k 3k 10k 30k 100k 300k 1M  
0
20  
40  
60  
80  
100  
0
4
8
12 16 20 24 28 32  
Time t (µs)  
Input Frequency fi (Hz)  
Supply Voltage VCC (V)  
Application Circuit  
Positive Phase Amplifier  
R2  
VCC  
OP. Amp.  
VO  
R1  
+
R2  
R1  
Vin  
VO= 1 +  
Vin  

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