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NE592D8 데이터시트 PDF




Philipss에서 제조한 전자 부품 NE592D8은 전자 산업 및 응용 분야에서
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부품번호 NE592D8 기능
기능 Video amplifier
제조업체 Philipss
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NE592D8 데이터시트, 핀배열, 회로
Philips Semiconductors RF Communications Products
Video amplifier
Product specification
NE592
DESCRIPTION
The NE592 is a monolithic, two-stage, differential output, wideband
video amplifier. It offers fixed gains of 100 and 400 without external
components and adjustable gains 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.
Now available in an 8-pin version with fixed gain of 400 without
external components and adjustable gain from 400 to 0 with one
external resistor.
FEATURES
120MHz unity gain bandwidth
Adjustable gains from 0 to 400
Adjustable pass band
No frequency compensation required
Wave shaping with minimal external components
MIL-STD processing available
PIN CONFIGURATIONS
D, N Packages
INPUT 2 1
NC 2
G2B GAIN SELECT
G1B GAIN SELECT
V-
3
4
5
NC 6
OUTPUT 2 7
14 INPUT 1
13 NC
12 G2A GAIN SELECT
11 G1A GAIN SELECT
10 V+
9 NC
8 OUTPUT 1
TOP VIEW
D, N Packages
INPUT 2
G1B GAIN SELECT
V-
OUTPUT 2
1
2
3
4
8 INPUT 1
7 G1A GAIN SELECT
6 V+
5 OUTPUT 1
TOP VIEW
APPLICATIONS
Floppy disk head amplifier
Video amplifier
Pulse amplifier in communications
Magnetic memory
Video recorder systems
BLOCK DIAGRAM
R1 R2
R8
INPUT 1
G1A
G2A
INPUT 2
Q1 Q2
G1B
R3 R5
G2B
Q7A
Q7B
Q8
R7A
R7B
R15
R10 R9
Q4 Q3
Q5
R11
R12
+V
Q6
OUTPUT 1
OUTPUT 2
Q9
R16
Q10
Q11
R13 R14
-V
April 15, 1992
250 853-0911 06456




NE592D8 pdf, 반도체, 판매, 대치품
Philips Semiconductors RF Communications Products
Video amplifier
Product specification
NE592
DC ELECTRICAL CHARACTERISTICS
DC Electrical CharacteristicsVSS=±6V, VCM=0, 0°C TA70°C, unless otherwise specified. Recommended operating supply voltages VS=±6.0V.
All specifications apply to both standard and high gain parts unless noted differently.
SYMBOL
PARAMETER
TEST CONDITIONS
NE592
UNIT
Min Typ Max
AVOL
Differential voltage gain,
standard part
Gain 11
Gain 22, 4
RL=2k, VOUT=3VP-P
250
80
600 V/V
120 V/V
RIN Input resistance
Gain 22, 4
8.0 k
IOS
IBIAS
VIN
CMRR
PSRR
Input offset current
Input bias current
Input voltage range
Common-mode rejection ratio
Gain 24
Supply voltage rejection ratio
VCM±1V, f<100kHz
±1.0
50
6.0 µA
40 µA
V
dB
Gain 24
Output offset voltage
VOS
Gain 1
Gain 24
Gain 33
VS=±0.5V
RL=
50
dB
1.5
1.5
V
1.0
VOUT
Output voltage swing differential
ICC Power supply current
NOTES:
1. Gain select Pins G1A and G1B connected together.
2. Gain select Pins G2A and G2B connected together.
3. All gain select pins open.
4. Applies to 14-pin versions only.
RL=2k
RL=
2.8
V
27 mA
AC ELECTRICAL CHARACTERISTICS
TA=+25°C VSS=±6V, VCM=0, unless otherwise specified. Recommended operating supply voltages VS=±6.0V. All specifications apply to both
standard and high gain parts unless noted differently.
SYMBOL
PARAMETER
TEST CONDITIONS
NE/SA592
UNIT
Min Typ Max
Bandwidth
BW Gain 11
Gain 22, 4
40 MHz
90 MHz
Rise time
tR Gain 11
Gain 22, 4
VOUT=1VP-P
10.5 12 ns
4.5 ns
Propagation delay
tPD Gain 11
Gain 22, 4
VOUT=1VP-P
7.5 10 ns
6.0 ns
NOTES:
1. Gain select Pins G1A and G1B connected together.
2. Gain select Pins G2A and G2B connected together.
3. All gain select pins open.
4. Applies to 14-pin versions only.
April 15, 1992
253

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NE592D8 전자부품, 판매, 대치품
Philips Semiconductors RF Communications Products
Video amplifier
Phase Shift as a
Function of Frequency
0
GAIN 2
-5
VS = +6V
TA = 25oC
-10
-15
-20
-25
0 1 2 3 4 5 6 7 8 9 10
FREQUENCY – MHz
Voltage Gain as a
Function of Frequency
60
50 GAIN 1
40 GAIN 2
VS = +6V
Tamb = 25oC
RL = 1K
30
20
10
0
1 10 100 1000
FREQUENCY – MHz
TEST CIRCUITS TA = 25°C, unless otherwise specified.
VIN 592 RL VOUT
5151
ein
51
0.2µF
592 0.2µF
eout eout
511k 1k
Product specification
NE592
0
-50
-100
-150
-200
-250
-300
-350
1
Phase Shift as a
Function of Frequency
VS = +6V
TA = 25oC
GAIN 1
GAIN 2
10 100
FREQUENCY – MHz
1000
Voltage Gain as a
Function of Frequency
40
30
20
10
0
-10
-20
-30
-40
-50
.01
VS = +6V
TA = 25oC
GAIN 3
.1 1 10 100 1000
FREQUENCY – MHz
April 15, 1992
256

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