el400 Intersil Corporation, el400 Datasheet

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el400

Manufacturer Part Number
el400
Description
200mhz Current Feedback Amplifier
Manufacturer
Intersil Corporation
Datasheet

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200MHz Current Feedback Amplifier
process. This amplifier uses current-mode feedback to
achieve more bandwidth at a given gain than conventional
operational amplifiers. Designed for closed-loop gains of ±1
to ±8, the EL400 has a 200MHz -3dB bandwidth (A
and 12ns settling to 0.05% while consuming only 15mA of
supply current.
The EL400 is an obvious high-performance solution for video
distribution and line-driving applications. With low 15mA
supply current, differential gain/phase of 0.02%/0.01°, an d a
minimum 50mA output drive, performance in these areas is
assured.
The EL400's settling to 0.05% in 12ns, low distortion, and
ability to drive capacitive loads make it an ideal flash A/D
driver. The wide 200MHz bandwidth and extremely linear
phase allow unmatched signal fidelity. D/A systems can also
benefit from the EL400, especially if linearity and drive levels
are important.
Ordering Information
EL400CN
EL400CS
NUMBER
PART
TEMP. RANGE
-40° C to +85°C
-40° C to +85°C
The EL400 is a wide bandwidth, fast
settling monolithic amplifier built using
an advanced complementary bipolar
®
1
PACKAGE
8-Pin PDIP
8-Pin SO
Data Sheet
Copyright © Intersil Americas Inc. 2003. All Rights Reserved. Elantec is a registered trademark of Elantec Semiconductor, Inc.
PKG. NO.
MDP0031
MDP0027
V
= +2),
1-888-INTERSIL or 321-724-7143
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
Features
• 200MHz -3dB bandwidth, A
• 12ns settling to 0.05%
• V
• Low distortion: HD2, HD3 @
• Differential gain 0.02% at NTSC, PAL
• Differential phase 0.01° at NTSC, PAL
• Overload/short-circuit protected
• ±1 to ±8 closed-loop gain range
• Low cost
• Direct replacement for CLC400
Applications
• Video gain block
• Video distribution
• HDTV amplifier
• High-speed A/D conversion
• D/A I-V conversion
• Photodiode, CCD preamps
• IF processors
• High-speed communications
Pinout
September 20, 2002
-60dBc at 20MHz
S
= ±5V @ 15mA
All other trademarks mentioned are the property of their respective owners.
Manufactured under U.S. Patent No. 4,893,091
|
Intersil (and design) is a registered trademark of Intersil Americas Inc.
(8-PIN PDIP, SO)
TOP VIEW
EL400
V
= 2
EL400
FN7156

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el400 Summary of contents

Page 1

... The EL400's settling to 0.05% in 12ns, low distortion, and ability to drive capacitive loads make it an ideal flash A/D driver. The wide 200MHz bandwidth and extremely linear phase allow unmatched signal fidelity. D/A systems can also benefit from the EL400, especially if linearity and drive levels are important ...

Page 2

... Output Voltage Swing OUTL R Transimpedance OL NOTES: 1. Measured from MIN MAX 2. Common-Mode Input Range for Rated Performance. 2 EL400 Operating Temperature . . . . . . . . . . . . . . . . . . . . . . .-40°C to +85°C Pin Temperature (Soldering, 5 Seconds 300°C Junction Temperature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 175°C Storage Temperature . . . . . . . . . . . . . . . . . . . . . . . .-60°C to +15 0°C Thermal Resistance:T S  ± ...

Page 3

... P d Differential Gain (Note Differential Phase (Note 2) P VBW -0.1dB Bandwidth (Note 2) NOTES: 1. Noise Tests are Performed from 5MHz to 200MHz. 2. Differential Gain/Phase Tests are R = 100:. For other values EL400 V = ±5V 250 + TEST CONDITIONS ) < ...

Page 4

... Typical Performance Curves Non-Inverting Frequency Response Open-Loop Transimpedance Gain and Phase Equivalent Input Noise Settling Time 4 EL400 Inverting Frequency Frequency Response for Response Various R 2-Tone 3rd Order 2nd and 3rd Intermodulation Intercept Harmonic Distortion Power-Supply Common-Mode Rejection Ratio Rejection Ratio Settling Time vs ...

Page 5

... Typical Performance Curves Recommended Load Capacitance Differential Gain and Phase (3.58MHz) 5 EL400 (Continued) Pulse Response A Pulse Response Differential Gain and Phase (4.43MHz Differential Gain and Phase (30MHz) ...

Page 6

... Applications Information Theory of Operation The EL400 has a unity gain buffer from the non-inverting input to the inverting input. The error signal of the EL400 is a current flowing into (or out of) the inverting input. A very small change in current flowing through the inverting input will cause a large change in the output voltage ...

Page 7

... EL400 Offset Adjustment Pin Output offset voltage of the EL400 can be nulled by tying a 10k potentiometer between +V attached to pin 1. A full-range variation of the voltage at pin 1 to ±5V results in an offset voltage adjustment of at least ±10mV. For best settling performance pin 1 should be ...

Page 8

... EL400 Macromodel * Revision A. March 1992 * Enhancements include PSRR, CMRR, and Slew Rate Limiting * Connections: +input * | -input * | | +Vsupply * | | | -Vsupply * | | | | output * | | | | | .subckt M400 Input Stage * 1.0 vis vxx 1 48nH iinp 3 0 8µA iinm 2 0 8µA ...

Page 9

... EL400 Macromodel (Continued) vxx r10 r11 Models * .model qn npn (is=5e-15 bf=200 tf=0.5nS) .model qp pnp (is=5e-15 bf=200 tf=0.5nS) .model dclamp d(is=1e-30 ibv=0.266 bv=1.3 n=4) .ends All Intersil U.S. products are manufactured, assembled and tested utilizing ISO9000 quality systems. ...

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