Datasheet LM340, LM340A, LM7805, LM7812, LM7815 (Texas Instruments) - 4

ManufacturerTexas Instruments
DescriptionWide VIN 1.5-A Fixed Voltage Regulators
Pages / Page34 / 4 — LM340,. LM340A. , LM7805,. LM7812. , LM7815. www.ti.com. 6 …
RevisionL
File Format / SizePDF / 3.8 Mb
Document LanguageEnglish

LM340,. LM340A. , LM7805,. LM7812. , LM7815. www.ti.com. 6 Specifications. 6.1 Absolute Maximum Ratings. MIN. MAX. UNIT. 6.2 ESD Ratings. VALUE

LM340, LM340A , LM7805, LM7812 , LM7815 www.ti.com 6 Specifications 6.1 Absolute Maximum Ratings MIN MAX UNIT 6.2 ESD Ratings VALUE

Text Version of Document

LM340, LM340A , LM7805, LM7812 , LM7815
SNOSBT0L – FEBRUARY 2000 – REVISED SEPTEMBER 2016
www.ti.com 6 Specifications 6.1 Absolute Maximum Ratings
over operating free-air temperature range (unless otherwise noted)(1)(2)
MIN MAX UNIT
DC input voltage 35 V Internal power dissipation(3) Internally Limited Maximum junction temperature 150 °C TO-3 package (NDS) 300 °C Lead temperature (soldering, 10 sec.) Lead temperature 1,6 mm (1/16 in) from case for 10 s 230 °C Storage temperature −65 150 °C (1) Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, which do not imply functional operation of the device at these or any other conditions beyond those indicated under Recommended Operating Conditions. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. (2) If Military/Aerospace specified devices are required, please contact the Texas Instruments Sales Office/Distributors for availability and specifications. (3) The maximum allowable power dissipation at any ambient temperature is a function of the maximum junction temperature for operation (TJMAX = 125°C or 150°C), the junction-to-ambient thermal resistance (θJA), and the ambient temperature (TA). PDMAX = (TJMAX − TA)/θJA. If this dissipation is exceeded, the die temperature rises above TJMAX and the electrical specifications do not apply. If the die temperature rises above 150°C, the device goes into thermal shutdown. For the TO-3 package (NDS), the junction-to-ambient thermal resistance (θJA) is 39°C/W. When using a heat sink, θJA is the sum of the 4°C/W junction-to-case thermal resistance (θJC) of the TO-3 package and the case-to-ambient thermal resistance of the heat sink. For the TO-220 package (NDE), θJA is 54°C/W and θJC is 4°C/W. If SOT-223 is used, the junction-to-ambient thermal resistance is 174°C/W and can be reduced by a heat sink (see Applications Hints on heat sinking).If the DDPAK\TO-263 package is used, the thermal resistance can be reduced by increasing the PCB copper area thermally connected to the package: Using 0.5 square inches of copper area, θJA is 50°C/W; with 1 square inch of copper area, θJA is 37°C/W; and with 1.6 or more inches of copper area, θJA is 32°C/W.
6.2 ESD Ratings VALUE UNIT
Electrostatic V(ESD) Human-body model (HBM)(1) ±2000 V discharge (1) ESD rating is based on the human-body model, 100 pF discharged through 1.5 kΩ.
6.3 Recommended Operating Conditions
over operating free-air temperature range (unless otherwise noted)
MIN MAX UNIT
Temperature (TA) LM340A, LM340 0 125 °C
6.4 Thermal Information LM340, LM7805 Family NDE KTT DCY NDS THERMAL METRIC(1) UNIT (TO-220) (DDPAK/TO-263) (SOT-223) (TO-3) 3 PINS 3 PINS 4 PINS 2 PINS
RθJA Junction-to-ambient thermal resistance 23.9 44.8 62.1 39 °C/W RθJC(top) Junction-to-case (top) thermal resistance 16.7 45.6 44 2 °C/W RθJB Junction-to-board thermal resistance 5.3 24.4 10.7 — °C/W ψJT Junction-to-top characterization parameter 3.2 11.2 2.7 — °C/W ψJB Junction-to-board characterization parameter 5.3 23.4 10.6 — °C/W RθJC(bot) Junction-to-case (bottom) thermal resistance 1.7 1.5 — — °C/W (1) For more information about traditional and new thermal metrics, see the Semiconductor and IC Package Thermal Metrics application report. 4 Submit Documentation Feedback Copyright © 2000–2016, Texas Instruments Incorporated Product Folder Links: LM340 LM340A LM7805 LM7812 LM7815 Document Outline 1 Features 2 Applications 3 Description Table of Contents 4 Revision History 5 Pin Configuration and Functions 6 Specifications 6.1 Absolute Maximum Ratings 6.2 ESD Ratings 6.3 Recommended Operating Conditions 6.4 Thermal Information 6.5 LM340A Electrical Characteristics, VO = 5 V, VI = 10 V 6.6 LM340 / LM7805 Electrical Characteristics, VO = 5 V, VI = 10 V 6.7 LM340 / LM7812 Electrical Characteristics, VO = 12 V, VI = 19 V 6.8 LM340 / LM7815 Electrical Characteristics, VO = 15 V, VI = 23 V 6.9 Typical Characteristics 7 Detailed Description 7.1 Overview 7.2 Functional Block Diagram 7.3 Feature Description 7.3.1 Output Current 7.3.2 Current Limiting Feature 7.3.3 Thermal Shutdown 7.4 Device Functional Modes 8 Application and Implementation 8.1 Application Information 8.1.1 Shorting the Regulator Input 8.1.2 Raising the Output Voltage Above the Input Voltage 8.1.3 Regulator Floating Ground 8.1.4 Transient Voltages 8.2 Typical Applications 8.2.1 Fixed Output Voltage Regulator 8.2.1.1 Design Requirements 8.2.1.2 Detailed Design Procedure 8.2.1.3 Application Curve 8.3 System Examples 9 Power Supply Recommendations 10 Layout 10.1 Layout Guidelines 10.2 Layout Example 10.3 Heat Sinking DDPAK/TO-263 and SOT-223 Package Parts 11 Device and Documentation Support 11.1 Documentation Support 11.1.1 Related Documentation 11.2 Related Links 11.3 Receiving Notification of Documentation Updates 11.4 Community Resources 11.5 Trademarks 11.6 Electrostatic Discharge Caution 11.7 Glossary 12 Mechanical, Packaging, and Orderable Information Page 1
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