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TLE42664 Dropout Fixed Voltage Regulator Automotive Power
Top Searches for this datasheetData Sheet, Rev. 1.01, September 2009 TLE42664 Dropout Fixed Voltage Regulator Automotive Power Dropout Fixed Voltage Regulator TLE42664G Features Overview Output Voltage Output Currents Output Voltage Output Currents Very Dropout Voltage Very Current Consumption: typ. Enable Input Output Current Limitation Reverse Polarity Protection Overtemperature Shutdown Wide Temperature Range From Suitable Automotive Electronics Green Product (RoHS compliant) Qualified PG-SOT223-4 Description TLE42664 monolithic integrated dropout fixed voltage regulator load currents 1-to-1 replacement product TLE4266-2. functional compatible TLE4266, reduced quiescent current typ. 40µA. TLE42664 especially designed applications requiring very standby currents, e.g. with permanent connection car's battery. disabled/enabled integrated pin. device available small surface mounted PG-SOT223-4 package compatible TLE4266-2 TLE4266. device designed harsh environment automotive applications. Therefore protected against overload, short circuit overtemperature conditions implemented output current limitation overtemperature shutdown circuit. TLE42664 also used other applications requiring stabilized voltage. input voltage regulated VQ,nom with precision accuracy kept load currents logical "HIGH" ENABLE enables device. Type TLE42664G Data Sheet Package PG-SOT223-4 Marking 42664 Rev. 1.01, 2009-09-30 TLE42664 Block Diagram Block Diagram Temperature Sensor Saturation Control Protection Circuit Control Amplifier Adjustment Bandgap Reference Buffer AEB02874-2 Figure Block Diagram Data Sheet Rev. 1.01, 2009-09-30 TLE42664 Configuration Configuration Assignment PG-SOT223-4 AEP02872-2 Figure Configuration (top view) Definitions Functions PG-SOT223-4 Symbol Function Input block ground directly with ceramic capacitor Enable Input high level enables device; level disables device; integrated pull-down resistor Output block ground with capacitor close terminals, respecting values given capacitance "Functional Range" Page Ground Heat Slug internally connected leadframe GND; connect heatsink area Heat Slug Data Sheet Rev. 1.01, 2009-09-30 TLE42664 General Product Characteristics General Product Characteristics Absolute Maximum Ratings Absolute Maximum Ratings1) voltages with respect ground, (unless otherwise specified) Pos. Parameter Symbol Min. Input Enable 4.1.1 Output 4.1.2 4.1.3 4.1.4 4.1.5 4.1.6 Voltage Junction temperature Storage temperature Absorption Voltage Limit Values Max. 1500 Human Body Model (HBM)2) Charge Device Model (CDM)3) pins Unit Test Condition Tstg VESD,HBM VESD,CDM -0.3 -1500 Temperature Susceptibility subject production test, specified design susceptibility Human Body Model "HBM" according AEC-Q100-002 JESD22-A114 susceptibility Charged Device Model "CDM" according ESDA STM5.3.1 Note: Stresses above ones listed here cause permanent damage device. Exposure absolute maximum rating conditions extended periods affect device reliability. Note: Integrated protection functions designed prevent destruction under fault conditions described data sheet. Fault conditions considered "outside" normal operating range. Protection functions designed continuous repetitive operation. Pos. 4.2.1 4.2.2 4.2.3 4.2.4 Functional Range Parameter Input voltage Output Capacitor's Requirements Stability Junction temperature Symbol Limit Values Min. Max. Unit Remarks ESR(CQ) relevant value Note: Within functional operating range, operates described circuit description. electrical characteristics specified within conditions given Electrical Characteristics table. Data Sheet Rev. 1.01, 2009-09-30 TLE42664 General Product Characteristics Thermal Resistance Note: This thermal data generated accordance with JEDEC JESD51 standards. more information, www.jedec.org. Pos. Parameter Symbol Min. TLE42664G (PG-SOT223-4) 4.3.1 4.3.2 4.3.3 4.3.4 4.3.5 Junction Case1) Junction Ambient1) Limit Values Typ. Max. measured heat slug Unit Conditions RthJC RthJA footprint only3) heatsink area3) heatsink area3) subject production test, specified design. Specified RthJA value according Jedec JESD51-2,-5,-7 natural convection 2s2p board; Product (Chip+Package) simulated 76.2 114.3 board with inner copper layers 70µm 35µm Cu). Where applicable thermal array under exposed contacted first inner copper layer. Specified RthJA value according Jedec JESD 51-3 natural convection 1s0p board; Product (Chip+Package) simulated 76.2 114.3 board with copper layer 70µm Cu). Data Sheet Rev. 1.01, 2009-09-30 TLE42664 Electrical Characteristics Electrical Characteristics Electrical Characteristics Voltage Regulator Electrical Characteristics =13.5 voltages with respect ground (unless otherwise specified) Pos. Parameter Symbol Limit Values Min. Output 5.1.1 5.1.2 5.1.3 5.1.4 5.1.5 5.1.6 5.1.7 5.1.8 5.1.9 5.1.10 Output Voltage Output Currents Dropout Voltage Load Regulation Line Regulation Output Current Limitation Power Supply Ripple Rejection2) Overtemperature Shutdown Threshold2) Overtemperature Shutdown Threshold Hysteresis2) Current Consumption Device Disabled Quiescent Current Current Consumption High Level Input Voltage Level Input Voltage Enable Input Current Pull-down Resistor Output Voltage Typ. Max. 5.15 5.20 IQ<100 IQ<5 VQ1) 13.5 Unit Measuring Condition 4.85 4.80 PSRR Tj,sd Tj,sdh increasing decreasing Current Consumption 5.1.11 5.1.12 5.1.13 5.1.14 Iq,OFF Enable Input 5.1.15 5.1.16 5.1.17 5.1.18 VEN,ON VEN,OFF IEN,ON Measured when output voltage dropped from nominal value obtained 13.5 subject production test, specified design Data Sheet Rev. 1.01, 2009-09-30 TLE42664 Electrical Characteristics Typical Performance Characteristics Voltage Regulator Current Consumption versus Output Current AED03342.VSD Current Consumption versus Output Current AED03341.VSD Output Voltage Variation versus Junction Temperature 5.15 5.10 AED03344.VSD Dropout Voltage versus Output Current AED03385.VSD TLE42664G 125°C 25°C 5.05 5.00 -40°C 4.95 4.90 Data Sheet Rev. 1.01, 2009-09-30 TLE42664 Electrical Characteristics Output Voltage versus Input Voltage AED03386.VSD Maximum Output Current versus Input Voltage AED03387.VSD IQ,max [mA] Enable Input Current versus Enable Input Voltage AED03384.VSD Region Stability: Output Capacitor's ESR(CQ) versus Output Current Unstable Region AED03388.VSD ESR(C Stable Region 13.5 0,01 [mA] Data Sheet Rev. 1.01, 2009-09-30 TLE42664 Package Outlines Package Outlines ±0.2 ±0.1 1.6±0.1 MAX. 0.25 ±0.1 0.25 MIN. 0.28 ±0.04 0.10° SOT223-PO Figure PG-SOT223-4 Green Product (RoHS compliant) meet world-wide customer requirements environmentally friendly products compliant with government regulations device available green product. Green products RoHS-Compliant (i.e Pb-free finish leads suitable Pb-free soldering according IPC/JEDEC J-STD-020). further information alternative packages, please visit website: Data Sheet Dimensions Rev. 1.01, 2009-09-30 ±0.2 ±0.3 TLE42664 Revision History Revision 1.01 Revision History Date 2009-06-26 2009-09-30 Changes initial version data sheet updated version data sheet; typing error corrected Table "Absolute Maximum Ratings" Page Item 4.1.1 min. value corrected from "-42V" "-30V" Data Sheet Rev. 1.01, 2009-09-30 Edition 2009-09-30 Published Infineon Technologies 81726 Munich, Germany 2009 Infineon Technologies Rights Reserved. Legal Disclaimer information given this document shall event regarded guarantee conditions characteristics. With respect examples hints given herein, typical values stated herein and/or information regarding application device, Infineon Technologies hereby disclaims warranties liabilities kind, including without limitation, warranties non-infringement intellectual property rights third party. Information further information technology, delivery terms conditions prices, please contact nearest Infineon Technologies Office (www.infineon.com). Warnings technical requirements, components contain dangerous substances. information types question, please contact nearest Infineon Technologies Office. Infineon Technologies components used life-support devices systems only with express written approval Infineon Technologies, failure such components reasonably expected cause failure that life-support device system affect safety effectiveness that device system. 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