LM2577.fm

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1 SIMPLE SWITCHER ( ) / 12V 15V ADJ 3.0A NPN 52kHz Straight Leads 5-Lead TO-220 (T) SIMPLE SWITCHER TM SIMPLE SWITCHER TM LM ds Converted to nat2000 DTD re-release for the book because migration failed to create assembly. CN Remove "Series" in the prescriptive title and put it in prod.name.title. CN Insert Trademark for SIMPLE SWITCHER. CN V 3A NPN 3.5V 40V 52kHz ( ) Bent, Staggered Leads 5-Lead TO-220 (T) SIMPLE SWITCHER Top View Order Number T-12, T-15, or T-ADJ See NS Package Number T05A Top View Order Number T-12 Flow LB03, T-15 Flow LB03, or T-ADJ Flow LB03 See NS Package Number T05D SIMPLE SWITCHER National Semiconductor Corporation DS JP 1

2 ( ) 16-Lead DIP (N) 24-Lead Surface Mount (M) *No internal Connection Top View Order Number N-12, N-15, or N-ADJ See NS Package Number N16A *No internal Connection Top View Order Number M-12, M-15, or M-ADJ See NS Package Number M24B TO-263 (S) 5-Lead Surface-Mount Package Top View Side View Order Number S-12, S-15, or S-ADJ See NS Package Number TS5B 2

3 Note: TO-220(T) 3

4 (Note 1) 45V 65V (Note 2) 6.0A ( 10 ) ESD (C 100 pf R 1.5 k ) 2 kv (Notes 10) 3.5V V IN 40V 0V V SWITCH 60V I SWITCH 3.0A 40 T J T J 25 V IN 5V I SWITCH 0 4

5 -12 ( ) T J 25 V IN 5V I SWITCH 0-15 T J 25 V IN 5V I SWITCH 0 5

6 -15 ( ) T J 25 V IN 5V I SWITCH 0 6

7 -15 ( ) T J 25 V IN 5V V FEEDBACK V REF I SWITCH 0 -ADJ T J 25 V IN 5V V FEEDBACK V REF I SWITCH 0 7

8 -ADJ ( ) T J 25 V IN 5V V FEEDBACK V REF I SWITCH 0 Note 1: Note 2: IC IC IC IC IC IC 6A Note 3: ( ) Note 4: ( ) Note 5: ( ) ( ) 100 (SQC) Note 6: Figure 1 3 Note 7: 1.0M A VOL COMP ( ) 10M A VOL 2 8

9 -ADJ ( ) Note 8: Note 9: 1 Switchers Made Simple TO-263 PC 0.5 JA 50 /W 1 JA 37 /W 1.6 JA 32 /W Note 10: V V -ADJ 2.5V Reference Voltage vs Temperature Reference Voltage vs Temperature Reference Voltage vs Supply Voltage Reference Voltage vs Temperature Reference Voltage vs Supply Voltage Reference Voltage vs Supply Voltage 9

10 ( ) Error Amp Transconductance vs Temperature Error Amp Transconductance vs Temperature Error Amp Transconductance vs Temperature Error Amp Voltage Gain vs Temperature Error Amp Voltage Gain vs Temperature Error Amp Voltage Gain vs Temperature 10

11 ( ) Quiescent Current vs Temperature Quiescent Current vs Switch Current Current Limit vs Temperature Current Limit Response Time vs Overdrive Switch Saturation Voltage Switch Current Switch Transconductance Temperature 11

12 ( ) Feedback Pin Bias Current vs Temperature Oscillator Frequency vs Temperature Maximum Power Dissipation (TO-263) (Note 9) 12

13 -12 L (AIE) D any manufacturer C OUT Sprague Type 673D Electrolytic 680 F, 20V Note: TO-220(T) FIGURE 1. Circuit Used to Specify System Parameters for 12V Versions -15 L (AIE) D any manufacturer COUT Sprague Type 673D Electrolytic 680 F, 20V Note: TO-220(T) FIGURE 2. Circuit Used to Specify System Parameters for 15V Versions 13

14 -ADJ L (AIE) D any manufacturer C OUT Sprague Type 673D Electrolytic 680 F, 20V R1 48.7k in series with 511 (1 ) R2 5.62k (1 ) Note: TO-220(T) FIGURE 3. Circuit Used to Specify System Parameters for ADJ Versions Note: TO-220(T) * 12V 15V FIGURE 4. Block Diagram and Boost Regulator Application 14

15 ( ) ( ) Figure 4 -ADJ V 15V 52kHz / (L) NPN V IN /L (V OUT V IN )/L (D) (C OUT ) 1.230V ( ) 2 Figure 5 Figure 6 V F Forward Biased Diode Voltage I LOAD Output Load Current FIGURE6. Step-Up Regulator Formulas Figure 4 : V IN(min) V OUT I LOAD (max) V IN V OUT I LOAD(max) V OUT I LOAD(max) V OUT 60V FIGURE 5. Step-Up Regulator Waveforms V OUT 10 V IN(min) 15

16 ( ) 1. (L) A V 15V Figure 7 (12V ) Figure 8 (15V ) V IN(min) I LOAD(max) 3.5V C 2. ADJ 3 D (max) : (0 D 0.9) 1. L MIN 2. E T L H E T L H H V F 0.5V 0.8V( ) E T: FIGURE Inductor Selection Guide I IND,DC : B. 1. Figure 9 E T I IND,DC ( : ) L H E T 90V s (L) 250V s (H) 2. D 0.85 C D 0.85 FIGURE Inductor Selection Guide B1 L MIN C B1 16

17 ( ) Note: ( ) C. Figure 10 3 AIE : (EMI) ( ) E T Pulse : EMI E T Renco : E T EMI FIGURE 9. -ADJ Inductor Selection Graph 17

18 ( ) C. C C 90 C C 0.22 F Figure 11 (WVDC) : 20 Schott Corp., (612) Parkers Lake Rd., Wayzata, MN Pulse Engineering, (619) P.O. Box 12235, San Diego, CA Renco Electronics Inc., (516) Jeffryn Blvd. East, Deer Park, NY FIGURE 10. Table of Standardized Inductors and Manufacturer's Part Numbers 2. (R C C C ) (C OUT ) R C C C R C C C I LOAD(max) L C OUT R C C C C OUT R C C C (I LOAD V OUT ) (Figure 15 ) A. R C : RMS 52kHz 50 (ESR) : R C C C C C R C ESR ここで 3k B. 2 C OUT および ESR 52kHz Hz ESR 20 ESR 2 ESR (C 470 F) WVDC

19 ( ) 3. (R1 R2) -ADJ ADJ V OUT 1.23V (1 R1/R2) R1 R2 -ADJ 1.23V V OUT R1 R2 5. (D) I LOAD(max) I D(PK) ( ) 1A 3A Figure (C IN ) ESR 0.1 F Cornell Dublier Types 239, 250, 251, UFT, 300, or 350 P.O. Box 128, Pickens, SC (803) Nichicon Types PF, PX, or PZ 927 East Parkway, Schaumburg, IL (708) Sprague Types 672D, 673D, or 674D Box 1, Sprague Road, Lansing, NC (919) United Chemi-Con Types LX, SXF, or SXJ 9801 West Higgins Road, Rosemont, IL (708) FIGURE 11. Aluminum Electrolytic Capacitors Recommended for Switching Regulators ( 4 F) FIGURE 12. Diode Selection Chart TO-263 PCB * PD GND (Figure 13 ) Figure 14 Figure 15 Figure

20 ( ) Note: TO-220(T) FIGURE 13. Step-up Regulator Delivers 12V from a 5V Input FIGURE 14. Line Regulation (Typical) of Step-Up Regulator of Figure 13 A: Output Voltage Change, 100 mv/div. (AC-coupled) B: Load current, 0.2 A/div Horizontal: 5 ms/div FIGURE 15. Load Transient Response of Step-Up Regulator of Figure 13 A: Switch pin voltage, 10 V/div B: Switch pin current, 2 A/div C: Inductor current, 2 A/div D: Output ripple voltage, 100 mv/div (AC-coupled) Horizontal: 5 s/div FIGURE 16. Switching Waveforms of Step-Up Regulator of Figure

21 ( ) ( )1 Figure ( ) Figure 17 Figure 19 A. R C I LOAD(max) 2 3k B. C OUT (2 C OUT ) および 1. 10V 15V (Figure 18 ) Figure (C C R C ) (C OUT ) C C R C C OUT ( ) I LOAD(max) I LOAD(max) 2 FIGURE 17. Flyback Regulator Waveforms 21

22 ( ) T1 Pulse Engineering, PE D1, D2 1N5821 FIGURE 18. -ADJ Flyback Regulator with Outputs 22

23 ( ) FIGURE 19. Flyback Regulator Formulas C. C C R1 R2 -ADJ 1.23V V OUT R1 R2 D. V OUT V OUT ESR 4. ESR C OUT Figure ADJ ADJ V OUT 1.23V (1 R1/R2) 23

24 ( ) 5. V IN V IN ESR 1.0 F ( ) V CLAMP FIGURE 21. Snubber Circuit FIGURE 20. Flyback Transformer Selection Guide (47 F ) 6. 10V L P 200 H 65V Figure 21 RC V SW(OFF) 5V 10V (V CLAMP ) R C Figure 22 5V 15V ( 225mA) Figure 23 Figure 25 Figure 24 Figure 26 Figure

25 ( ) T1 Pulse Engineering, PE D1, D2 1N5821 FIGURE 22. Flyback Regulator Easily Provides Dual Outputs A: Output Voltage Change, 100 mv/div B: Output Current, 100 ma/div Horizontal: 10 ms/div FIGURE 23. Line Regulation (Typical) of Flyback Regulator of Figure 22, 15V Output FIGURE 24. Load Transient Response of Flyback Regulator of Figure 22, 15V Output 25

26 ( ) A: Output Voltage Change, 100 mv/div B: Output Current, 100 ma/div Horizontal: 10 ms/div FIGURE 25. Line Regulation (Typical) of Flyback Regulator of Figure 22, 15V Output FIGURE 26. Load Transient Response of Flyback Regulator of Figure 22, 15V Output A: Switch pin voltage, 20 V/div B: Primary current, 2 A/div C: 15V Secondary current, 1 A/div D: 15V Output ripple voltage, 100 mv/div Horizontal: 5 s/div FIGURE 27. Switching Waveforms of Flyback Regulator of Figure 22, Each Output Loaded with 60 RC Figure 28 R IN C IN 40 sec FIGURE 28. Input Line Filter 26

27 inches (millimeters) Wide SO Package (M) Order Number M-12, M-15 or M-ADJ NS Package Number M24B 27

28 inches (millimeters) ( ) Molded Dual-In-Line Package (N) Order Number N-12, N-15, or N-ADJ NS Package Number N16A TO-220, Straight Leads (T) Order Number T-12, T-15, or T-ADJ NS Package Number TO5A 28

29 inches (millimeters) ( ) TO-220, Bent Staggered Leads (T) Order Number T-12 Flow LB03, T-15 Flow LB03, or T-ADJ Flow LB03 NS Package Number T05D 29

30 SIMPLE SWITCHER inches (millimeters) ( ) 5-Lead TO-263 (S) Order Number S-12, S-15 or S-ADJ NS Package Number TS5B 1. (a) (b) 2. CSP-9-111C2 (Customer Products Stewardship Specification) CSP-9-111S2 (Banned Substances and Materials of Interest Specification) CSP-9-111S TEL.(03) /

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