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 AN4558 (AN6552), AN4558S (AN6552S)
Dual Operational Amplifiers
s Overview
TheAN4558 (AN6552) andthe AN4558S (AN6552S) are dual operational amplifiers with phase compensation circuits built-in, and suitable for application to various electronic circuits such as active filters and audio preamplifiers.
1 9.40.3 2 3 4 6.30.3 8 7 6 5 0.51min. 3.80.25 (3.45) 2.54
0.15+0.1 5
- 0.0
AN4558 (AN6552)
Unit:mm
s Features
* Phase compensation circuit * High voltage gain, low noise * Output short-circuit protection * Slew rate:SR=1V/ s typ.
3--15 7.620.25
8-pin DIL Plastic Package (DIP008-P-0300B)
AN4558S (AN6552S)
Unit:mm
0.60.3
0.40.25
1 2 3 4
8 7 6 5 5.00.3 0.15 0.65 6 5
1.27
0.10.1
0.3
4.20.3 6.50.3
8-pin PANAFLAT Plastic Package (SOP008-P-0225A)
s Block Diagram
VCC
8 R3 Q3 Q10 Q11 Q8 D1 R5 C2 Q4 R1 C1 Q5 R2 R4 1 4 Q6 Q12 Q7 R8 R9 R21 Q22 R17 R15 C3 Q9 R7 R12 DZ R13 R6 Q14 Q13 Q15 Q29 Q28 Q26 R19 Q24 R20 Q27 Q18 C4 Q21 Q20 Q19 R14 Q23 D2 Q25 R16 Q18 Q17 Q16
Vin1- Vin1+
2 3
Q1
Q2
Vin2- Vin2+
7
VO1
VEE
VO2
1.50.2
0.50.1 1.20.25
s Absolute Maximum Ratings (Ta=25C)
Parameter Supply voltage Voltage Differential input voltage Common-mode input voltage Power dissipation AN4558 (AN6552 ) AN4558S (AN6552S) AN4558 (AN6552) AN4558S (AN6552S) Symbol VCC VID VICM PD Topr Tstg Rating 18 30 15 500 360 -20 to +75 -55 to +150 -55 to +125 Unit V V V mW C C
Operating ambient temperature Temperature Storage temperature
s Electrical Characteristics (VCC=15V, VEE=-15V, Ta=25C)
Parameter Input offset voltage Input offset current Input bias current Voltage gain Maximum output voltage Common-mode input voltage width Common-mode rejection ratio Supply voltage rejection ratio Power consumption Slew rate Equivalent input noise voltage Symbol VI
(offset)
Condition > RS = 10k
min
typ 0.5 5
max 6 200 500
Unit mV nA nA dB V V V dB
IIO IBias GV VO (max.) VCM CMR SVR PC SR Vni RL= RL > 2k = RS=1k, B=10Hz to 30kHz RL > 2k, VO=10V = > RL =10 RL > 2k = 86 12 10 12 70
100 14 13 14 90 30 90 1.0 2.5 150 170
V/V mW V/s Vrms
s Pin Assignments
VO1 Vin1- Vin1+ VEE 1 2 3 4
-
s Pin Descriptions
Pin No.
8 7
-
Pin name Ch.1 output Ch.1 inverting input Ch.1 non inverting input VEE (GND) Ch.2 non inverting input Ch.2 inverting input Ch.2 output VCC
VCC VO2 Vin2- Vin2+
1 2 3 4 5 6 7 8
+
6 5
+
GV-f
120
VO (max.)-RL
Maximum Output Voltage VO (max.) (V)
VCC=15V VEE=-15V Ta=25C
Vni-f
Equivalent Input Noise Voltage Vni (nV/Hz)
25 VCC=15V VEE=-15V 20 RS=1k GV=40dB Ta=25C
30
100
26
Voltage Gain GV (dB)
80
22
60
15
18
40
10
20
14 VCC=15V VEE=-15V Ta=25C 10 100 1k 10k 100k
0
1
10 100 1k 10k 100k 1M 10M 100M
5
10
100
1k
10k
Frequency f (Hz)
Load Resistance RL ()
Frequency f (Hz)
VO (max.)-f
40 36 32 28 24 20 16 12 8 4 0 1 10 100 1k 10k 100k 1M 25
VO (max.)-VCC, VEE
12
VO-t
VCC=15V VEE=-15V RL=2k Ta=25C VCC 8 8 - DUT + 3, 5 4 VEE 2, 6 1, 7 RL 2k
Maximum Output Voltage VO (max.) (V)
Maximum Output Voltage VO (max.) (V)
VCC=15V VEE=-15V Ta=25C
20 15 10 5 0 -5 -10 -15 -20 -25 0 4 8 12 16 20 0 10
Output Voltage VO (V) Supply Voltage VCC=-VEE (V)
6
4
2
0 10 20 30 40 50 60 70 80 90 100
Frequency f (Hz)
Time t (s)
s Application Circuit
2200pF
0.01F
36k
390k VCC=8V--30V 100F
100k - 2.2k 33F + 47F 1k OP. Amp. 33F
100k
10k
RIAA Pre-Amp. (Single Voltage Operation)


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