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PDF NE5592N Data sheet ( Hoja de datos )

Número de pieza NE5592N
Descripción Video amplifier
Fabricantes Philipss 
Logotipo Philipss Logotipo



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Philips Semiconductors
Video amplifier
Product specification
NE5592
DESCRIPTION
The NE5592 is a dual monolithic, two-stage, differential output,
wideband video amplifier. It offers a fixed gain of 400 without
external components and an adjustable gain from 400 to 0 with one
external resistor. The input stage has been designed so that with the
addition of a few external reactive elements between the gain select
terminals, the circuit can function as a high-pass, low-pass, or
band-pass filter. This feature makes the circuit ideal for use as a
video or pulse amplifier in communications, magnetic memories,
display, video recorder systems, and floppy disk head amplifiers.
FEATURES
110MHz unity gain bandwidth
Adjustable gain from 0 to 400
Adjustable pass band
No frequency compensation required
Wave shaping with minimal external components
ORDERING INFORMATION
DESCRIPTION
14-Pin Plastic Dual In-Line Package (DIP)
14-Pin Small Outline (SO) package
PIN CONFIGURATION
D, N Packages
IN A1 1
IN A2 2
GA 3
GA 4
VEE 5
OUT B1 6
OUT B2 7
14 OUT A2
A 13 OUT A1
12 VCC
11 GB
10 GB
B 9 IN B2
8 IN B1
Figure 1. Pin Configuration
SL00582
APPLICATIONS
Floppy disk head amplifier
Video amplifier
Pulse amplifier in communications
Magnetic memory
Video recorder systems
TEMPERATURE RANGE
0 to 70°C
0 to 70°C
ORDER CODE
NE5592N
NE5592D
DWG #
SOT27-1
SOT108-1
EQUIVALENT CIRCUIT
INPUT 1
G
R1 R2
R8
R10 R9
INPUT 2
Q1 Q2
G
R4 R6
Q4 Q3
Q5
R11
R12
+V
Q6
OUTPUT 1
OUTPUT 2
1987 Oct 20
Q7A Q7B
R1
R7A
R7B
R15
Q9
R16
Q10
Figure 2. Equivalent Circuit
Q11
R13 R14
–V
2
SL00583
853-0888 91020

1 page




NE5592N pdf
Philips Semiconductors
Video amplifier
Product specification
NE5592
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
Voltage Gain as a Function of Temperature
Gain vs Frequency as a Function of Supply Voltage
1.6
1.2 Vs = + 6V
0.8
RL = 1k
f = 1MHz
0.4
0
–0.4
–0.8
–1.2
–1.6
0
10 20 30 40 50 60 70
TEMPERATURE: °C
Figure 10.
SL00591
60
VS = +8V
50
TA = 25oC
RL = 1k
40
VS = +6V
30 VS = +3V
20
10
105
106 107 108
fFREQUENCY—Hz
109
Figure 13.
SL00594
Gain vs Frequency as a Function of Temperature
60
50 TA = 0oC
40
TA = 25oC
30
20
10
105
TA = 70oC
Vs = + 6V
RL = 1k
106 107 108
FREQUENCY — Hz
109
Figure 11.
SL00592
Phase vs Frequency as a Function of Supply Voltage
0
30
60
90
120
150
180
210
240
105
TA = 25oC
RL = 1k
VS = +8V
VS = +6V
VS = +3V
106 107 108
fFREQUENCY—Hz
109
Figure 14.
SL00595
Voltage Gain as a Function of Supply Voltage
4
3
2
1
0
–1
–2
–3
–4
–5
–6
3
F = 100kHz
TA = 25oC
4 56
SUPPLY VOLTAGE—V
7
8
Figure 12.
SL00593
Voltage Gain as a Function of RADJ
103
102 TA = 25oC
RL = +6V
10
1
101
1
10 102 104 103 105 106
RADJ – OHMS
Figure 15.
SL00596
1987 Oct 20
6

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