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Data Sheet
Triple 600MHz Current Feedback Amplifier
with Enable
The EL5392A is a triple current feedback amplifier with a
very high bandwidth of 600MHz. This makes this amplifier
ideal for today’s high speed video and monitor applications.
With a supply current of just 6mA per amplifier and the ability
to run from a single supply voltage from 5V to 10V, the
EL5392A is also ideal for hand held, portable or battery
powered equipment.
The EL5392A also incorporates an enable and disable
function to reduce the supply current to 100µA typical 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 EL5392A
is offered in the 16 Ld QSOP package, as well as an
industry-standard 16 Ld SO (0.150"). The EL5392A operates
over the industrial temperature range of -40°C to +85°C.
EL5392A
March 9, 2006
FN7194.1
Features
• 600MHz -3dB bandwidth
• 6mA supply current (per amplifier)
• Single and dual supply operation, from 5V to 10V
• Fast enable/disable
• Available in 16 Ld QSOP package
• Single (EL5192) and dual (EL5292) available
• High speed, 1GHz product available (EL5191)
• Low power, 4mA, 300MHz product available (EL5193,
EL5293, and EL5393)
• Pb-free plus anneal available (RoHS compliant)
Applications
• Video amplifiers
• Cable drivers
• RGB amplifiers
Ordering Information
PART NUMBER
• Test equipment
PART
TAPE &
MARKING REEL
PACKAGE
PKG.
DWG. #
• Instrumentation
• Current to voltage converters
EL5392ACS
EL5392ACS
-
16 Ld SOIC
(0.150")
MDP0027
EL5392ACS-T7
EL5392ACS
7”
16 Ld SOIC
(0.150")
MDP0027
EL5392ACS-T13
EL5392ACS
13”
16 Ld SOIC
(0.150")
MDP0027
EL5392ACU
5392ACU
-
16 Ld QSOP
MDP0040
INA+ 1
EL5392ACU-T13
(Note)
5392ACU
13”
16 Ld QSOP
(Pb-free)
MDP0040
CEA 2
EL5392ACUZ
(Note)
5392ACUZ
-
16 Ld QSOP
(Pb-free)
MDP0040
EL5392ACUZ-T7
(Note)
5392ACUZ
7”
16 Ld QSOP
(Pb-free)
MDP0040
EL5392ACUZ-T13 5392ACUZ
(Note)
13”
16 Ld QSOP
(Pb-free)
MDP0040
Pinout
EL5392
[16 LD SOIC (0.150") & QSOP]
TOP VIEW
16 INA+
VS- 3
CEB 4
NOTE: Intersil Pb-free plus anneal products employ special Pb-free
material sets; molding compounds/die attach materials and 100% matte
tin plate termination finish, which are RoHS compliant and compatible
with both SnPb and Pb-free soldering operations. Intersil Pb-free
products are MSL classified at Pb-free peak reflow temperatures that
meet or exceed the Pb-free requirements of IPC/JEDEC J STD-020.
1
14 VS+
+
-
INB+ 5
INC+ 8
13 OUTB
12 INB-
NC 6
CEC 7
15 OUTA
11 NC
+
-
10 OUTC
9 INC-
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
1-888-INTERSIL or 1-888-468-3774 | Intersil (and design) is a registered trademark of Intersil Americas Inc.
Copyright © Intersil Americas Inc. 2004, 2006. All Rights Reserved. Elantec is a registered trademark of Elantec Semiconductor, Inc.
All other trademarks mentioned are the property of their respective owners.
EL5392A
Absolute Maximum Ratings (TA = 25°C)
Supply Voltage Between VS+ and VS-. . . . . . . . . . . . . . . . . . . . . 11V
Maximum Continuous Output Current . . . . . . . . . . . . . . . . . . . 50mA
Operating Junction Temperature . . . . . . . . . . . . . . . . . . . . . . . 125°C
Power Dissipation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . See Curves
Pin Voltages. . . . . . . . . . . . . . . . . . . . . . . . .VS- - 0.5V to VS+ +0.5V
Storage Temperature . . . . . . . . . . . . . . . . . . . . . . . .-65°C to +150°C
Operating Temperature . . . . . . . . . . . . . . . . . . . . . . .-40°C to +85°C
CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the
device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
IMPORTANT NOTE: All parameters having Min/Max specifications are guaranteed. Typical values are for information purposes only. Unless otherwise noted, all tests
are at the specified temperature and are pulsed tests, therefore: TJ = TC = TA
Electrical Specifications
PARAMETER
VS+ = +5V, VS- = -5V, RF = 750Ω for AV = 1, RF = 375Ω for AV = 2, RL = 150Ω, TA = 25°C unless otherwise
specified.
DESCRIPTION
CONDITIONS
MIN
TYP
MAX
UNIT
AC PERFORMANCE
BW
-3dB Bandwidth
AV = +1
600
MHz
AV = +2
300
MHz
25
MHz
2300
V/µs
BW1
0.1dB Bandwidth
SR
Slew Rate
VO = -2.5V to +2.5V, AV = +2
tS
0.1% Settling Time
VOUT = -2.5V to +2.5V, AV = -1
9
ns
CS
Channel Separation
f = 5MHz
60
dB
eN
Input Voltage Noise
4.1
nV/√Hz
iN-
IN- Input Current Noise
20
pA/√Hz
iN+
IN+ Input Current Noise
50
pA/√Hz
dG
Differential Gain Error (Note 1)
AV = +2
0.015
%
dP
Differential Phase Error (Note 1)
AV = +2
0.04
°
2000
DC PERFORMANCE
VOS
Offset Voltage
TCVOS
Input Offset Voltage Temperature Coefficient Measured from TMIN to TMAX
ROL
Transimpediance
-10
1
10
mV
5
µV/°C
200
400
kΩ
INPUT CHARACTERISTICS
CMIR
Common Mode Input Range
±3
±3.3
V
CMRR
Common Mode Rejection Ratio
42
50
dB
+IIN
+ Input Current
-60
3
60
µA
-IIN
- Input Current
-40
4
40
µA
RIN
Input Resistance
37
kΩ
CIN
Input Capacitance
0.5
pF
OUTPUT CHARACTERISTICS
VO
RL = 150Ω to GND
±3.4
±3.7
V
RL = 1kΩ to GND
±3.8
±4.0
V
Output Current
RL = 10Ω to GND
95
120
mA
ISON
Supply Current - Enabled
No load, VIN = 0V
5
6
7.5
mA
ISOFF
Supply Current - Disabled
No load, VIN = 0V
100
150
µA
IOUT
Output Voltage Swing
SUPPLY
2
FN7194.1
March 9, 2006
EL5392A
Electrical Specifications
PARAMETER
VS+ = +5V, VS- = -5V, RF = 750Ω for AV = 1, RF = 375Ω for AV = 2, RL = 150Ω, TA = 25°C unless otherwise
specified. (Continued)
DESCRIPTION
CONDITIONS
MIN
TYP
75
PSRR
Power Supply Rejection Ratio
DC, VS = ±4.75V to ±5.25V
55
-IPSR
- Input Current Power Supply Rejection
DC, VS = ±4.75V to ±5.25V
-2
MAX
UNIT
dB
2
µA/V
ENABLE
tEN
Enable Time
40
ns
tDIS
Disable Time
600
ns
IIHCE
CE Pin Input High Current
CE = VS+
0.8
6
µA
IILCE
CE Pin Input Low Current
CE = VS-
0
-0.1
µA
VIHCE
CE Input High Voltage for Power-down
VILCE
CE Input Low Voltage for Power-down
VS+ - 1
V
VS+ - 3
V
NOTE:
1. Standard NTSC test, AC signal amplitude = 286mVP-P, f = 3.58MHz
3
FN7194.1
March 9, 2006
EL5392A
Typical Performance Curves
Non-Inverting Frequency Response (Gain)
Non-Inverting Frequency Response (Phase)
6
90
AV=2
2
0
-2
-90
AV=1
AV=2
Phase (°)
Normalized Magnitude (dB)
AV=1
AV=5
-6
AV=5
AV=10
-180
AV=10
-10
-270
RF=750Ω
RL=150Ω
-14
1M
RF=750Ω
RL=150Ω
10M
100M
-360
1M
1G
10M
Frequency (Hz)
Inverting Frequency Response (Gain)
90
AV=-1
2
AV=-2
AV=-1
0
Phase (°)
-2
AV=-5
-6
-10
-90
AV=-2
AV=-5
-180
-270
RF=375Ω
RL=150Ω
-14
1M
RF=375Ω
RL=150Ω
10M
100M
-360
1M
1G
10M
Frequency (Hz)
100M
Frequency Response for Various RL
10
6
RL=150Ω
Normalized Magnitude (dB)
2pF added
6
1pF added
2
-2
-6
1G
Frequency (Hz)
Frequency Response for Various CIN-
Normalized Magnitude (dB)
1G
Inverting Frequency Response (Phase)
6
Normalized Magnitude (dB)
100M
Frequency (Hz)
0pF added
AV=2
RF=375Ω
RL=150Ω
RL=100Ω
2
RL=500Ω
-2
-6
-10
AV=2
RF=375Ω
-10
1M
10M
100M
Frequency (Hz)
4
1G
-14
1M
10M
100M
1G
Frequency (Hz)
FN7194.1
March 9, 2006
EL5392A
Typical Performance Curves
(Continued)
Frequency Response for Various CL
Frequency Response for Various RF
6
AV=2
RF=375Ω
RL=150Ω
10
250Ω
Normalized Magnitude (dB)
Normalized Magnitude (dB)
14
12pF added
6
8pF added
2
0pF added
-2
-6
1M
10M
100M
475Ω
-2
620Ω
-6
750Ω
-10
AV=2
RG=RF
RL=150Ω
-14
1M
1G
10M
Frequency (Hz)
100M
1G
Frequency (Hz)
Frequency Response for Various Common-Mode
Input Voltages
Group Delay vs Frequency
3.5
6
VCM=3V
2.5
Normalized Magnitude (dB)
3
Group Delay (ns)
375Ω
2
AV=2
RF=375Ω
2
1.5
1
AV=1
RF=750Ω
0.5
0
1M
100M
10M
-2
VCM=-3V
-6
-10
AV=2
RF=375Ω
RL=150Ω
-14
1M
1G
VCM=0V
2
10M
100M
1G
Frequency (Hz)
Frequency (Hz)
Transimpedance (ROL) vs Frequency
PSRR and CMRR vs Frequency
20
10M
0
Phase
100k
-180
10k
-270
Gain
1k
PSRR/CMRR (dB)
0
-90
Phase (°)
Magnitude (Ω)
1M
PSRR+
-20
PSRR-40
-60
CMRR
-360
100
1k
10k
100k
1M
10M
Frequency (Hz)
5
100M
1G
-80
10k
100k
1M
10M
100M
1G
Frequency (Hz)
FN7194.1
March 9, 2006
EL5392A
Typical Performance Curves
(Continued)
-3dB Bandwidth vs Supply Voltage for Non-Inverting
Gains
-3dB Bandwidth vs Supply Voltage for Inverting Gains
800
350
300
600
-3dB Bandwidth (MHz)
-3dB Bandwidth (MHz)
RF=750Ω
RL=150Ω
AV=1
400
AV=2
200
AV=5
AV=10
AV=-1
250
AV=-2
200
AV=-5
150
100
50
0
RF=375Ω
RL=150Ω
0
5
6
7
8
9
5
10
6
7
Total Supply Voltage (V)
Peaking vs Supply Voltage for Non-Inverting Gains
10
4
RF=750Ω
RL=150Ω
3
3
AV=1
2
1
RF=375Ω
RL=150Ω
AV=-1
Peaking (dB)
Peaking (dB)
9
Peaking vs Supply Voltage for Inverting Gains
4
AV=-2
2
1
AV=2
AV=10
AV=-5
0
0
5
6
7
8
9
5
10
6
7
Total Supply Voltage (V)
9
10
-3dB Bandwidth vs Temperature for Inverting Gains
1400
500
RF=750Ω
RL=150Ω
AV=1
400
-3dB Bandwidth (MHz)
1200
8
Total Supply Voltage (V)
-3dB Bandwidth vs Temperature for Non-Inverting
Gains
-3dB Bandwidth (MHz)
8
Total Supply Voltage (V)
1000
800
600
400
AV=5
AV=10
AV=2
300
RF=375Ω
RL=150Ω
AV=-1
AV=-2
200
AV=-5
100
200
0
-40
10
60
110
Ambient Temperature (°C)
6
160
0
-40
10
60
110
160
Ambient Temperature (°C)
FN7194.1
March 9, 2006
EL5392A
Typical Performance Curves
(Continued)
Peaking vs Temperature
Voltage and Current Noise vs Frequency
2
1k
RL=150Ω
AV=1
Voltage Noise (nV/√Hz)
Current Noise (pA/√Hz)
Peaking (dB)
1.5
1
AV=-1
0.5
AV=-2
0
i n+
100
i n10
en
AV=2
-0.5
-50
-50
0
50
1
100
100
1k
10k
100
10
10
8
Supply Current (mA)
Output Impedance (Ω)
1M
10M
Supply Current vs Supply Voltage
Closed Loop Output Impedance vs Frequency
1
0.1
0.01
6
4
2
0.001
0
100
1k
10k
1M
100k
10M
100M
1G
0
2
4
6
8
10
12
Supply Voltage (V)
Frequency (Hz)
2nd and 3rd Harmonic Distortion vs Frequency
Two-Tone 3rd Order
Input Referred Intermodulation Intercept (IIP3)
-20
30
AV=+2
VOUT=2VP-P
RL=100Ω
-40
-50
2nd Order
Distortion
-60
-70
3rd Order
Distortion
-80
-90
20
15
10
5
0
-5
-10
-100
1
10
Frequency (MHz)
7
AV=+2
RL=150Ω
25
Input Power Intercept (dBm)
-30
Harmonic Distortion (dBc)
100k
Frequency (Hz)
Ambient Temperature (°C)
100
AV=+2
RL=100Ω
-15
10
100
200
Frequency (MHz)
FN7194.1
March 9, 2006
EL5392A
Typical Performance Curves
(Continued)
Differential Gain/Phase vs DC Input
Voltage at 3.58MHz
Differential Gain/Phase vs DC Input
Voltage at 3.58MHz
0.03
0.03
AV=2
RF=RG=375Ω
RL=150Ω
0.02
dP
0.01
dG (%) or dP (°)
0.01
dG (%) or dP (°)
AV=1
RF=750Ω
RL=500Ω
0.02
0
dG
-0.01
-0.02
-0.03
dP
0
dG
-0.01
-0.02
-0.03
-0.04
-0.04
-0.05
-0.05
-1
-0.5
0
0.5
-0.06
-1
1
-0.5
DC Input Voltage
Output Voltage Swing vs Frequency
THD
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