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EL2260CS Datasheet(PDF) 13 Page - Elantec Semiconductor |
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EL2260CS Datasheet(HTML) 13 Page - Elantec Semiconductor |
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13 / 20 page ![]() EL2260CEL2460C DualQuad 130 MHz Current Feedback Amplifiers Applications Information Contd Supply Voltage Range The EL2260CEL2460C has been designed to op- erate with supply voltages from g2V to g15V Optimum bandwidth slew rate and video char- acteristics are obtained at higher supply voltages However at g2V supplies the 3 dB bandwidth at AV ea2 is a respectable 70 MHz The fol- lowing figure is an oscilloscope plot of the EL2260C at g2V supplies AV ea2 RF e RG e 560 X driving a load of 150X showing a clean g 600 mV signal at the output 2260 – 13 If a single supply is desired values from a4V to a 30V can be used as long as the input common mode range is not exceeded When using a single supply be sure to either 1) DC bias the inputs at an appropriate common mode voltage and AC couple the signal or 2) ensure the driving signal is within the common mode range of the EL2260CEL2460C Settling Characteristics The EL2260CEL2460C offer superb settling characteristics to 01% typically in the 35 ns to 40 ns range There are no aberrations created from the input stage which often cause longer settling times in other current feedback amplifi- ers The EL2260EL2460 are not slew rate limit- ed therefore any size step up to g10V gives ap- proximately the same settling time As can be seen from the Long Term Settling Er- ror curve for AV ea1 there is approximately a 0035% residual which tails away to 001% in about 40 ms This is a thermal settling error caused by a power dissipation differential (before and after the voltage step) For AV eb1 due to the inverting mode configuration this tail does not appear since the input stage does not experi- ence the large voltage change as in the non- inverting mode With AV eb1 001% settling time is slightly greater than 100 ns Power Dissipation The EL2260CEL2460C amplifiers combine both high speed and large output current drive capa- bility at a moderate supply current in very small packages It is possible to exceed the maximum junction temperature allowed under certain sup- ply voltage temperature and loading conditions To ensure that the EL2260CEL2460C remain within their absolute maximum ratings the fol- lowing discussion will help to avoid exceeding the maximum junction temperature The maximum power dissipation allowed in a package is determined by its thermal resistance and the amount of temperature rise according to PDMAX e TJMAX b TAMAX iJA The maximum power dissipation actually pro- duced by an IC is the total quiescent supply cur- rent times the total power supply voltage plus the power in the IC due to the load or PDMAX e N 2 VS ISa(VSbVOUT) VOUT RL J where N is the number of amplifiers per package and IS is the current per amplifier (To be more accurate the quiescent supply current flowing in the output driver transistor should be subtracted from the first term because under loading and due to the class AB nature of the output stage the output driver current is now included in the second term) In general an amplifier’s AC performance de- grades at higher operating temperature and lower supply current Unlike some amplifiers such as the LT1229 and LT1230 the EL2260CEL2460C 13 |
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