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PDF RC5532D Data sheet ( Hoja de datos )

Número de pieza RC5532D
Descripción High Performance Dual Low Noise Operational Amplifier
Fabricantes Fairchild Semiconductor 
Logotipo Fairchild Semiconductor Logotipo



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RC5532/RC5532A
High Performance Dual Low Noise
Operational Amplifier
www.fairchildsemi.com
Features
• Small signal bandwidth – 10 MHz
• Output drive capability – 600W, 10 VRMS
• Input noise voltage – 5 nV/ Hz
• DC voltage gain – 50,000
• AC voltage gain – 2200 at 10 KHz
• Power bandwidth – 140 KHz
• Slew rate – 8 V/mS
• Large supply voltage range – ±3V to ±20V
Description
The RC5532 is a high performance, dual low noise opera-
tional amplifier. Compared to standard dual operational
amplifiers, such as the RC747, it shows better noise perfor-
mance, improved output drive capability, and considerably
higher small-signal and power bandwidths.
This makes the device especially suitable for application in
high quality and professional audio equipment, instrumenta-
tion, control circuits, and telephone channel amplifiers.
The op amp is internally compensated for gains equal to one.
If very low noise is of prime importance, it is recommended
that the RC5532A version be used which has guaranteed
noise specifications.
Block Diagram
Output A
–Input A
+Input A
–VS
+VS
Output B
AB
–Input B
+Input B
65-5532-01
Rev. 1.1.2

1 page




RC5532D pdf
PRODUCT SPECIFICATION
Typical Performance Characteristics
120
VS = 15V
TA = +25 C
80 RS = 10 W
A V = 40 dB
40
0-
40
10 100
1K 10K 100K 1M
F (Hz)
10M
Figure 3. Open Loop Gain vs. Frequency
40
VS = 15V
30
20
10
0
100 1K 10K 100K 1M 10M 100M
F (Hz)
Figure 5. Output Voltage Swing vs. Frequency
12
I oUT = 0
8
4
0
0 ±10 ±20 ±30
+VS/-VS (V)
Figure 7. Supply Current vs. Supply Voltage
RC5532/RC5532A
60
RF = 10 K W RE = 100 W
40
20 RF = 9 KW RE = 1 k W
0 RF = 1 K W RE =
-20
1K
10K 100K 1M 10M 100M
F (Hz)
1G
Figure 4. Closed Loop Gain vs. Frequency
80
VS = 15V
60
40
20
0
-55 -25
0 +25 +50
TA ( C)
+75 +150
Figure 6. Short Circuit Current vs. Temperature
1.4
VS = 15V
1.2
0.8
0.4
0
-55 -25
0 +25 +50
TA ( C)
+75 +150
Figure 8. Input Bias Current vs. Temperature
5

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RC5532D arduino
PRODUCT SPECIFICATION
Mechanical Dimensions (continued)
8-Lead Metal Can IC Header Package
RC5532/RC5532A
øD
øD1
L1
L2
L
e
e1
a
k
k1
F
QA
øb
BASE and
SEATING
PLANE
REFERENCE
PLANE
øb1
øD2
Symbol
A
øb
øb1
øD
øD1
øD2
e
e1
F
k
k1
L
L1
L2
Q
a
Inches
Min. Max.
.165 .185
.016 .019
.016 .021
.335 .375
.305 .335
.110 .160
.200 BSC
.100 BSC
— .040
.027 .034
.027 .045
.500 .750
— .050
.250 —
.010 .045
45¡ BSC
Millimeters
Min. Max.
4.19 4.70
.41 .48
.41 .53
8.51 9.52
7.75 8.51
2.79 4.06
5.08 BSC
2.54 BSC
— 1.02
.69 .86
.69 1.14
12.70 19.05
— 1.27
6.35 —
.25 1.14
45¡ BSC
Notes
1, 5
1, 5
2
1
1
1
Notes:
1. (All leads) øb applies between L1 & L2. øb1 applies between
L2 & .500 (12.70mm) from the reference plane. Diameter is
uncontrolled in L1 & beyond .500 (12.70mm) from the
reference plane.
2. Measured from the maximum diameter of the product.
3. Leads having a maximum diameter .019 (.48mm) measured in
gauging plane, .054 (1.37mm) +.001 (.03mm) –.000 (.00mm)
below the reference plane of the product shall be within
.007 (.18mm) of their true position relative to a maximum width
tab.
4. The product may be measured by direct methods or by gauge.
5. All leads – increase maximum limit by .003 (.08mm) when lead
finish is applied.
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