SP6260AEK-L/TR Exar Corporation, SP6260AEK-L/TR Datasheet
SP6260AEK-L/TR
Specifications of SP6260AEK-L/TR
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SP6260AEK-L/TR Summary of contents
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... The SP6260 series is offered in the following fixed output voltage options: 1.2V, 1.5V, 1.8V, 2.5V, 2.8V, 3.0V, 3.2V and 3.3V. The SP6260 family is available in standard lead free, RoHS compliant 5-pin SOT-23 package. TYPICAL APPLICATION DIAGRAM Exar Corporation 48720 Kato Road, Fremont CA 94538, USA ...
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... Power Supply Rejection Ratio PSRR Output Voltage Temperature Coefficient Short Current Limit I LIMIT RMS Output Noise V NOISE CE “High” Voltage CE “Low” Voltage CE Pull-down Resistance R PD © 2011 Exar Corporation OPERATING RATINGS Input Voltage Range V Junction Temperature Range T Thermal Resistance θ ...
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... SP6260AEK (1.5V) Unless otherwise indicated 2.5V Parameter Output Voltage V OUT Input Voltage V IN Output Current I OUT Load Regulation V RLOAD Line Regulation V RLINE Dropout Voltage V DROP Quiescent Current I Q Standby Current I STD Power Supply Rejection Ratio PSRR Output Voltage Temperature Coefficient Short Current Limit I ...
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... CE “High” Voltage CE “Low” Voltage CE Pull-down Resistance R PD SP6260DEK (2.8V) Unless otherwise indicated 3.8V Parameter Output Voltage V OUT Input Voltage V IN Output Current I OUT Load Regulation V RLOAD Line Regulation V RLINE Dropout Voltage V DROP © 2011 Exar Corporation µVrms 1.5 V 0. MΩ ...
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... Short Current Limit I LIMIT RMS Output Noise V NOISE CE “High” Voltage CE “Low” Voltage CE Pull-down Resistance R PD SP6260FEK (3.2V) Unless otherwise indicated 4.2V Parameter Output Voltage V OUT Input Voltage V IN Output Current I OUT © 2011 Exar Corporation µA 0.1 1 µ ±280 µV/°C ± ...
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... Dropout Voltage V DROP Quiescent Current I Q Standby Current I STD Power Supply Rejection Ratio PSRR Output Voltage Temperature Coefficient Short Current Limit I LIMIT RMS Output Noise V NOISE CE “High” Voltage CE “Low” Voltage CE Pull-down Resistance R PD © 2011 Exar Corporation 150 300 ...
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... OUT ORDERING INFORMATION Junction Part Number Temperature Range SP6260HEK-L/TR -40°C to +85°C SP6260AEK-L/TR -40°C to +85°C SP6260BEK-L/TR -40°C to +85°C SP6260CEK-L/TR -40°C to +85°C SP6260DEK-L/TR -40°C to +85°C SP6260EEK-L/TR -40°C to +85°C SP6260FEK-L/TR -40°C to +85°C SP6260GEK-L/TR -40°C to +85°C “WW” = Work Week © ...
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... Fig. 6: Output Voltage vs. Output Current SP6260BEK (1.8V) Fig. 8: Output Voltage vs. Output Current SP6260EEK (3.0V) © 2011 Exar Corporation 25°C, unless otherwise specified - Schematic and BOM from Application J A Fig. 5: Output Voltage vs. Output Current Fig. 7: Output Voltage vs. Output Current 8/ SP6260AEK (1.5V) SP6260CEK (2.5V Rev. 2.1.0 ...
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... Fig. 9: Output Voltage vs. Input Voltage SP6260HEK (1.2V) Fig. 11: Dropout Voltage vs. Output Current SP6260HEK-L (1.2V) Fig. 13: Output Voltage vs. Junction Temparature SP6260HEK-L (1.2V) © 2011 Exar Corporation Fig. 10: Output Voltage vs. Input Voltage SP6260EEK (3.0V) Fig. 12: Dropout Voltage vs. Output Current SP6260EEK-L (3.0V) Fig. 14: Output Voltage vs. Junction Temperature SP6260EEK-L (3 ...
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... Fig. 15: Supply Current vs. Input Voltage SP6260HEK (1.2V) Fig. 17: Supply Current vs. Junction Temperature SP6260HEK (1.2V) Fig. 19: Line Transient SP6260HEK (1.2V) (Conditions: I =30mA, C OUT IN © 2011 Exar Corporation Fig. 18: Supply Current vs. Junction Temperature =1µF, C =1µF) (Conditions: I OUT 10/ Fig. 16: Supply Current vs. Input Voltage SP6260EEK (3 ...
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... Fig. 21: Line Transient SP6260HEK (1.2V) (Conditions: V =2.5V, C =1µ Fig. 23: PSRR vs. Frequency SP6260HEK (1.2V) © 2011 Exar Corporation Fig. 22: Line Transient SP6260EEK (3.0V) =1µF) (Conditions: V OUT Fig. 21: PSRR vs. Frequency 11/ =4V, C =1µF, C =1µ OUT SP6260EEK (3.0V) Rev. 2.1 ...
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... PACKAGE SPECIFICATION 5-P SOT-23 IN Unit: mm (inch) © 2011 Exar Corporation 12/ Rev. 2.1.0 ...
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... While the information in this publication has been carefully checked; no responsibility, however, is assumed for inaccuracies. EXAR Corporation does not recommend the use of any of its products in life support applications where the failure or malfunction of the product can reasonably be expected to cause failure of the life support system or to significantly affect its safety or effectiveness. Products are not authorized for use in such applications unless EXAR Corporation receives, in writing, assurances to its satisfaction that: (a) the risk of injury or damage has been minimized ...