ELANT EL5193CW-T7, EL5193CW-T13, EL5193CS-T7, EL5193CS-T13, EL5193CS Datasheet

EL5193C
Single 300MHz Current Feedback Amplifier
EL5193C

Features

300MHz -3dB band w idth
4mA supply current
Single and dual sup p l y op er a tion,
from 5V to 10V supply span
Available in 5-pin SOT23 package
Dual (EL5293C) and triple
(EL5393C) available
High speed, 1GHz product available (EL519 3C )
High speed, 6mA, 600MHz product available (EL5192C, EL5292C, and EL5392C

Applications

Battery Powered Equipment
Hand Held, Portable Devices
Video Amplifiers
Cable Drivers
RGB Amplifiers
Test Equipment
Instrumentation
Current to Voltage Converters

Ordering Information

Part No Package

EL5193CW-T7 5-Pin SOT23 7 MDP0038 EL5193CW-T13 5-Pin SOT23 13 MDP0038 EL5193CS 8-Pin SO - MDP0027 EL5193CS-T7 8-Pin SO 7 MDP0027 EL5193CS-T13 8-Pin SO 13 MDP0027

Tape &
Reel Outline #

General Description

The EL5193C is a current feedback amplifier with a bandwidth of 300MHz. This makes these amplifiers ideal for todays high speed video and monitor applications.
For applications where board space is critical, the EL5193C is offered in the 5-pin SOT23 package, as well as an industry standard 8-pin SO. The EL5193C operates over the industrial temperature range of -40°C to +85°C.

Pin Configurations

OUT
VS-
IN+
1
2
3

5-Pin SOT23

+
-
EL5193CW
5
4
IN-
IN+
IN-
VS-
NC
VS+
1
2
3
4
SO8
-
+
EL5193CS
NC*
8
VS+
7
OUT
6
NC
5
* This pin must be left disconnected
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 . W e recommend checking the revision level befo re finalization of your design documentation.
© 2001 Elantec Semiconductor, Inc.
April 12, 2001
EL5193C
Single 300MHz Current Feedback Amplifier
EL5193C
Absolute Maximum Ratings (T
Values beyond absolute maximum ratings can cause the device to be pre­maturely damaged. Absolute maximum ratings are stress ratings only and functional device operation is not implied.
Supply Voltage between V Maximum Continuous Output Current 50mA
+ and VS-11V
S
= 25°C)
A
Operating Junction Temperature 125°C Power Dissipation See Curves Pin Voltages V
- - 0.5V to VS+ +0.5V
S
Storage Temperature -65°C to +150°C Operating Temperature -40°C to +85°C
Important Note: All parameters having Min/Max specifications are guaranteed. Typ values are for information purposes only. Unless otherwise noted, all tests are at the
specified temperature and are pulsed tests, therefore: T
= TC = TA.
J

Electrical Characteristics

VS+ = +5V, VS- = -5V, RF = 750for AV = 1, RF = 400 for AV = 2, RL = 150, TA = 25°C unless otherwise specified.
Parameter Description Conditions Min Typ Max Unit
AC Performance
BW -3dB Bandwidth A
BW1 0.1dB Bandwidth 20 MHz SR Slew Rate V ts 0.1% Settling Time V e
n
i
- IN- input current noise 17 pA/Hz
n
i
+ IN+ input current noise 50 pA/Hz
n
dG Differential Gain Error dP Differential Phase Error
Input Voltage Noise 4.4 nV/Hz
[1]
[1]
DC Performance
V T R
OS CVOS OL
Offset Voltage -10 1 10 mV Input Offset Voltage Temperature Coefficient Measured from T Transimpedance 300 500 k
Input Characteristics

CMIR Common Mode Input Range ±3 ±3.3 V CMRR Common Mode Rejection Ratio 42 50 dB

-ICMR - Input Current Common Mode Rejection -6 6 µA/V +I
IN
-I
IN
R
IN
C
IN
+ Input Current -60 1 60 µA
- Input Current -30 1 30 µA Input Resistance 45 k Input Capacitance 0.5 pF
Output Characteristics
V
I
OUT
O

Output Voltage Swing RL = 150 to GND ±3.4 ±3.7 V

Output Current RL = 10Ω to GND 95 120 mA
Supply
Is
ON
Supply Current No Load, V
PSRR Power Supply Rejection Ratio DC, V
-IPSR - Input Current Power Supply Rejection DC, V
1. Standard NTSC test, AC signal amplitude = 286mV
P-P
= +1 300 MHz
V
A
= +2 200 MHz
V

= -2.5V to +2.5V, AV = +2 2400 2600 V/µs

O
= -2.5V to +2.5V, AV = -1 12 ns
OUT

AV = +2 0.03 % AV = +2 0.04 °

to T
MIN
MAX
R

= 1k to GND ±3.8 ±4.0 V

L
= 0V 3 4 5 mA
IN
= ±4.75V to ±5.25V 55 75 dB
S

= ±4.75V to ±5.25V -2 2 µA/V

S
V/°C
, f = 3.58MHz
2

Typical Performance Curves

EL5193C
EL5193C
Single 300M Hz Current F eedback Amplifier
Non-Inverting Frequency Response (Gain) SOT23 Package
6
AV=1
2
-2
-6
Normalized Magnitude (dB)
-10 RF=750
RL=150
-14
1M 10M 100M 1G
Inverting Frequency Response (Gain) SOT23 Package
6
2
-2
-6
Normalized Magnitude (dB)
-10 RF=500
=150
R
L
-14
1M 10M 100M 1G
AV=5
AV=10
Frequency (Hz)
AV=-1
AV=-3
Frequency (Hz)
AV=-2
AV=2
Non-Inverting Frequency Response (Phase) SOT23 Package
90
0
-90
Phase (°)
-180
-270 RF=750
RL=150
-360
1M 10M 100M 1G
Inverting Frequency Response (Phase)
90
0
-90
Phase (°)
-180
-270 RF=500
=150
R
L
-360
1M 10M 100M 1G
AV=5
AV=10
Frequency (Hz)
AV=-2
AV=-3
Frequency (Hz)
AV=1
AV=2
AV=-1
Frequency Response for Various CIN-
10
6
2
-2
Normalized Magnitude (dB)
AV=2
-6 RF=500
RL=150
-10 1M 10M 100M 1G
2pF added
0pF added
Frequency (Hz)
1pF added
Frequency Response for Various R
6
2
-2
-6
Normalized Magnitude (dB)
-10
AV=2 RF=500
-14 1M 10M 100M 1G
RL=100
RL=500
Frequency (Hz)
L
RL=150
3
EL5193C
Single 300MHz Current Feedback Amplifier
EL5193C

Typical Performance Curves

Frequency Response for Various C
14
AV=2
=150
R
L
10
R
=500
F=RG
6
2
Normalized Magnitude (dB)
-2
-6 1M 10M 100M 1G
Frequency (Hz)
Group Delay vs Frequency
3.5
3
2.5
2
Delay (ns)
1.5
1
0.5
0 1M 10M 100M 1G
AV=2
=500
R
F
AV=1
RF=750
Frequency (Hz)
L
33pF
8pF 0pF
22pF
15pF
Frequency Response for Various R
6
2
-2
-6
Normalized Magnitude (dB)
AV=2
-10 RG=R
F
RL=150
-14
1M 10M 100M 1G
Frequency (Hz)
Frequency Response for Various Common-mode Input Voltages
6
VCM=3V VCM=0V
2
-2
-6
Normalized Magnitude (dB)
AV=2
-10 RF=500
R
=150
L
-14
1M 10M 100M 1G
VCM=-3V
Frequency (Hz)
F
340 475
750
1.2k
620
Transimpedance (ROL) vs Frequency
10M
1M
)
100k
10k
Magnitude (
1k
100
1k
10k 100k 1M 10M 100M 1G
Phase
Gain
Frequency (Hz)
0
-90
-180
-270
-360
PSRR and CMRR vs Frequency
20
0
-20
Phase (°)
-40
PSRR/CMRR (dB)
-60
-80
10k 100k 1M 10M 1G100M
PSRR-
Frequency (Hz)
PSRR+
CMRR
4

Typical Performance Curves

EL5193C
EL5193C
Single 300M Hz Current F eedback Amplifier
-3dB Bandwidth vs Supply Voltage for Non­inverting Gains
400
RF=750
350
RL=150
300 250 200 150
-3dB Bandwidth (MHz) 100
50
0
56 910
Peaking vs Supply Voltage for Non-inverting Gains
4
3.5 3
2.5 2
Peaking (dB)
1.5 1
0.5 0
56 91078
78
Total Supply Voltage (V)
AV=1
AV=2
AV=10
Total Supply Voltage (V)
AV=1
AV=2
AV=5
AV=10
RF=750
=150
R
L
-3dB Bandwidth vs Supply Voltage for Inverting Gains
250
200
150
100
-3dB Bandwidth (MHz) 50
RF=500 RL=150
0
56 91078
Peaking vs Supply Voltage for Inverting Gains
2.5
2
1.5
Peaking (dB)
1
0.5
0
56 91078
AV=-1
AV=-2
AV=-5
Total Supply Voltage (V)
AV=-1
AV=-2
Total Supply Voltage (V)
RF=500 RL=150
Non-inverting Frequency Response (Gain) SO8 Package
6
2
-2
-6
Normalized Magnitude (dB)
-10 RF=750
RL=150
-14
1M 10M 100M 1G
AV=5
AV=10
Frequency (Hz)
AV=1
AV=2
Non-inverting Frequency Response (Phase) SO8 Package
90
0
-90
Phase (°)
-180
-270 RF=750
RL=150
-360
1M 10M 100M 1G
AV=1 AV=2
AV=5
AV=10
Frequency (Hz)
5
EL5193C
Single 300MHz Current Feedback Amplifier
EL5193C

Typical Performance Curves

Inverting Frequency Response (Gain) SO8 Package
6
2
-2 AV=-5
-6
Normalized Magnitude (dB)
-10 RF=500
RL=150
-14
1M 10M 100M 1G
Frequency (Hz)
-3dB Bandwidth vs Temperature for Non-inverting Gains
500
400
300
200
-3dB Bandwidth (MHz) 100
0
-40 10 110 160
AV=2
AV=5
AV=10
AV=1
60
Ambient Temperature (°C)
AV=-1
AV=-2
RF=750
=150
R
L
Inverting Frequency Response (Phase) SO8 Package
90
0
-90
Phase (°)
-180
-270 RF=500
RL=150
-360
1M 10M 100M 1G
-3dB Bandwidth vs Temperature for Inverting Gains
250
200
150
100
-3dB Bandwidth (MHz) 50
0
-40 10 110 160
AV=-1
AV=-2
AV=-5
AV=-1 AV=-2
AV=-5
Frequency (Hz)
60
Ambient Temperature (°C)
RF=500
=150
R
L
Peaking vs Temperature
2.5 RL=150
2
1.5
1
Peaking (dB)
0.5
0
-0.5
-40 10 110 160
AV=1
AV=-1
60
Ambient Temperature (°C)
Voltage and Current Noise vs Frequency
1000
Hz)
Hz)
100
10
Voltage Noise (nV/
, Current Noise (pA/
1 100
in+
in-
e
n
1000 10k 100k 10M1M
Frequency ()
6
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