EL5293C Elantec Semiconductor, EL5293C Datasheet
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EL5293C
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EL5293C Summary of contents
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... EL5293C Dual 300MHz Current Feedback Amplifier General Description The EL5293C is a dual current feedback amplifier with a bandwidth of 300MHz. This makes these amplifiers ideal for today’s high speed video and monitor applications. With a supply current of just 4mA per amplifier and the ability to run from a single supply voltage from 5V to 10V, these amplifiers are also ideal for hand held, portable or battery powered equipment ...
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... EL5293C Dual 300MHz Current Feedback Amplifier Absolute Maximum Ratings Values beyond absolute maximum ratings can cause the device to be pre- maturely damaged. Absolute maximum ratings are stress ratings only and functional device operation is not implied. Supply Voltage between V + and Maximum Continuous Output Current Important Note: All parameters having Min/Max specifications are guaranteed ...
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... R =500 F R =150 L -360 Frequency Response for Various 1pF added - =500 F - EL5293C =10 V 10M 100M 1G Frequency (Hz =-3 V 10M 100M 1G Frequency (Hz ...
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... EL5293C Dual 300MHz Current Feedback Amplifier Typical Performance Curves Frequency Response for Various 33pF V R =150 =500 8pF -2 0pF -6 1M 10M 100M Frequency (Hz) Group Delay vs Frequency 3 =500 2 1 =750 F 0 10M ...
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... F R =150 L 2 1 -3dB Bandwidth vs Temperature for Inverting Gains 250 R =750 F R =150 L 200 150 100 50 0 110 160 -40 5 EL5293C Total Supply Voltage (V) R =500 F R =150 ...
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... EL5293C Dual 300MHz Current Feedback Amplifier Typical Performance Curves Peaking vs Temperature 2.5 R =150 1.5 1 0 -0.5 - Ambient Temperature (°C) Closed Loop Output Impedance vs Frequency 100 10 1 0.1 0.01 0.001 100 1k 10k 100k 1M Frequency (Hz) 2nd and 3rd Harmonic Distortion vs Frequency -20 A =+2 V -30 ...
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... Output Voltage Swing vs Frequency THD<0. 100 1 Large Signal Step Response V =± =150 =500 F G 1V/div 7 EL5293C =1 =750 F dP =500 L dG -0.5 0 0.5 DC Input Voltage =500 L =150 L 10 Frequency (MHz) V =± =150 =500 F G ...
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... EL5293C Dual 300MHz Current Feedback Amplifier Typical Performance Curves Settling Time vs Settling Accuracy 0.01 0.1 Settling Accuracy (%) PSRR and CMRR vs Temperature - Die Temperature (°C) Offset Voltage vs Temperature - Die Temperature (°C) ...
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... Negative Output Swing vs Temperature for Various Loads -3.5 -3.6 -3.7 -3.8 -3.9 -4 -4.1 -4.2 110 160 -40 Slew Rate vs Temperature 4000 3500 3000 2500 110 160 -40 9 EL5293C 10 60 110 160 Temperature (°C) 150 110 160 Temperature (° =500 =150 110 160 Die Temperature (° ...
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... EL5293C Dual 300MHz Current Feedback Amplifier Typical Performance Curves Channel-to-Channel Isolation vs Frequency 0 -20 -40 -60 -80 -100 100k 1M 10M Frequency (Hz) Package Power Dissipation vs Ambient Temp. JEDEC JESD51-3 Low Effective Thermal Conductivity Test Board 0.7 625mW 0.6 0.5 0.4 0.3 0.2 0.1 0 100M 400M 100 125 150 Ambient Temperature (°C) ...
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... Non-inverting input, channel B 6 INB- Inverting input, channel B 7 OUTB Output, channel Positive supply S Dual 300MHz Current Feedback Amplifier Function IN+ (See circuit 2) (See circuit 2) (See circuit 2) (See circuit 1) 11 EL5293C Equivalent Circuit OUT Circuit IN Circuit2 ...
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... Feedback Resistor Values The EL5293C has been designed and specified at a gain of +2 with R approximately 500 . This value of feed- F back resistor gives 200MHz of -3dB bandwidth at A with 2dB of peaking ...
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... EL5293C has dG and dP specifications of 0.03% and 0.04°. Output Drive Capability In spite of its low 4mA of supply current, the EL5293C is capable of providing a minimum of ±95mA of output current. With a minimum of ±95mA of output drive, the EL5293C is capable of driving 50 making it an excellent choice for driving isolation trans- formers in telecommunications applications ...
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... EL5293C Dual 300MHz Current Feedback Amplifier remain in the safe operating area. These parameters are calculated as follows JMA where: PD for each amplifier can be calculated as follows: MAX – SMA MAX where MAX ...
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... EL5293C Dual 300MHz Current Feedback Amplifier General Disclaimer Specifications contained in this data sheet are in effect as of the publication date shown. Elantec, Inc. reserves the right to make changes in the cir- cuitry or specifications contained herein at any time without notice. Elantec, Inc. assumes no responsibility for the use of any circuits described herein and makes no representations that they are free from patent infringement ...