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PDF EL5396C Data sheet ( Hoja de datos )

Número de pieza EL5396C
Descripción Triple 400MHz Fixed Gain Amplifier
Fabricantes Elantec Semiconductor 
Logotipo Elantec Semiconductor Logotipo



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No Preview Available ! EL5396C Hoja de datos, Descripción, Manual

EL5396C - Preliminary
Triple 400MHz Fixed Gain Amplifier
Features
• Gain selectable (+1, -1, +2)
• 400MHz -3dB Bandwidth (AV = 1,
2)
• 9mA supply current (per amplifier)
• Single and dual supply operation,
from 5V to 10V
• Power-down
• Available in 16-pin QSOP package
• Single (EL5196C) available
• 200MHz, 3mA product available
(EL5197C, EL5397C)
Applications
• Video Amplifiers
• Cable Drivers
• RGB Amplifiers
• Test Equipment
• Instrumentation
• Current to Voltage Converters
General Description
The EL5396C is a triple channel, fixed gain amplifier with a band-
width of 400MHz, making these amplifiers ideal for today’s high
speed video and monitor applications. The EL5396C features internal
gain setting resistors and can be configured in a gain of +1, -1 or +2.
The same bandwidth is seen in both gain-of-1 and gain-of-2
applications.
The EL5396C can be run from a single or dual supply voltage of 5V to
10V and consumes just 9mA of supply current per channel. Each
channel of the EL5396C has a disable. Upon being disabled, the out-
puts are tri-stated and the power supply current reduces to less than
150µA per amplifier. Allowing the CE pin to float, or applying a low
logic level will enable the amplifier.
For applications where board space is critical, the EL5396C is offered
in the 16-pin QSOP package, as well as a 16-pin SO. The EL5396C is
specified for operation over the full industrial temperature range of ---
-40°C to +85°C.
Pin Configurations
Ordering Information
Part No
EL5396CS
EL5396CS-T7
EL5396CS-T13
EL5396CU
EL5396CU-T13
Package
16-Pin SO
16-Pin SO
16-Pin SO
16-Pin QSOP
16-Pin QSOP
Tape &
Reel
-
7”
13”
-
13”
Outline #
MDP0027
MDP0027
MDP0027
MDP0040
MDP0040
16-Pin SO & QSOP
INA+ 1
16 INA-
CEA 2
VS- 3
CEB 4
INB+ 5
-
+
+
-
15 OUTA
14 VS+
13 OUTB
12 INB-
NC 6
CEC 7
INC+ 8
+
-
11 NC
10 OUTC
9 INC-
EL5396CS, EL5396CU
Note: All information contained in this data sheet has been carefully checked and is believed to be accurate as of the date of publication; however, this data sheet cannot be a “controlled document”. Current revisions, if any, to these
specifications are maintained at the factory and are available upon your request. We recommend checking the revision level before finalization of your design documentation.
© 2001 Elantec Semiconductor, Inc.

1 page




EL5396C pdf
EL5396C - Preliminary
Triple 400MHz Fixed Gain Amplifier
Typical Performance Curves
Frequency Response for Various CL
14
AV=2
10
RL=150
RF=RG=500
33pF
6
2
22pF
15pF
-2 8pF
0pF
-6
1M
10M 100M
1G
Frequency (Hz)
Group Delay vs Frequency
3.5
3
AV=2
2.5 RF=500
2
1.5
1
AV=1
RF=750
0.5
0
1M 10M 100M
Frequency (Hz)
1G
Transimpedance (ROL) vs Frequency
10M
Phase
1M
100k
10k
Gain
1k
100
1k
10k 100k 1M 10M 100
Frequency (Hz)
0
-90
-180
-270
-360
1G
Frequency Response for Various RF
6
340
2
-2
-6
-10
AV=2
RG=RF
RL=150
-14
1M
750
1.2k
10M 100M
Frequency (Hz)
475
620
1G
Frequency Response for Various Common-mode Input
Voltages
6
VCM=3V
VCM=0V
2
-2 VCM=-3V
-6
-10
AV=2
RF=500
RL=150
-14
1M
10M 100M
Frequency (Hz)
PSRR and CMRR vs Frequency
20
0 PSRR+
1G
-20
PSRR-
-40
-60 CMRR
-80
10k
100k
1M 10M
Frequency (Hz)
100M
1G
5

5 Page





EL5396C arduino
EL5396C - Preliminary
Triple 400MHz Fixed Gain Amplifier
Typical Performance Curves
Positive Output Swing vs Temperature for Various Loads
4.2
4.1
1k
4
3.9
3.8
3.7 150
3.6
3.5
-40
10 60 110
Temperature (°C)
160
Output Current vs Temperature
130
Sink
125
Source
120
115
-40
10 60 110
Die Temperature (°C)
Channel-to-Channel Isolation vs Frequency
0
160
-20
-40
-60
-80
-100
100k
1M 10M 100M 400M
Frequency (Hz)
Negative Output Swing vs Temperature for Various Loads
-3.5
-3.6 150
-3.7
-3.8
-3.9
-4
1k
-4.1
-4.2
-40
10 60 110
Temperature (°C)
160
Slew Rate vs Temperature
4000
3500
3000
2500
-40
AV=2
RF=RG=500
RL=150
10 60 110
Die Temperature (°C)
160
Package Power Dissipation vs Ambient Temp.
JEDEC JESD51-3 Low Effective Thermal Conductivity Test Board
1
0.9 909mW
0.8
0.7
0.6 633mW
0.5
0.4
0.3
110°C/SWO16
158Q°CS/OWP16
0.2
0.1
0
0 25 50 75 100 125 150
Ambient Temperature (°C)
11

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