Description SO-8. series. Furthermore, in the 8-pin configuration Very low-dropout voltage (0.2 V typ.)

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1 ery low-dropout voltage regulator with inhibit function TO-92 Bag TO-92 Tape and reel Ammopack SO-8 Description Datasheet - production data The is a very low-dropout voltage regulator available in SO-8, TO-92 packages and over a wide range of output voltages. The very low-dropout voltage (0.2 ) and low quiescent current make it particularly suitable for low-noise, low-power applications and in batterypowered systems. This device is pin-to-pin compatible with the L78L Features series. Furthermore, in the 8-pin configuration ery low-dropout voltage (0.2 typ.) (SO-8), it uses a shutdown logic control (pin 5, TTL compatible). This means that when the ery low quiescent current (typ. 50 µa in OFF device is used as a local regulator, a part of the mode, 0.5 ma in ON mode, no load) board can be put in standby, decreasing the total Output current up to 100 ma power consumption. In the three-terminal Output voltages: 3, 3.3, 4.5, 5, 8 configuration (TO-92), the device is always in onstate. It requires a 2.2 µf capacitor for stability, Internal current and thermal limit reducing the component size and cost. Small 2.2 µf capacitor for stability Available in ± 1% (A) or ± 2% (C) selection at 25 C Supply voltage rejection: 80 db (typ.) Temperature range: - 40 to 125 C Table 1. Device summary SO-8 LE30CD-TR TO-92 (bag) Order codes TO-92 (ammopack) TO-92 (tape and reel) LE30ABZ-TR Output voltages LE33CD-TR LE33CZ LE33CZ-AP LE33CZ-TR 3.3 LE45CD-TR LE50ABD-TR LE33ABZ-AP 5 LE50CD-TR LE80CD-TR March 2014 DocID2573 Rev 14 1/27 This is information on a product in full production.

2 Contents Contents 1 Diagram Pin configuration Maximum ratings Electrical characteristics Typical performance characteristics Package mechanical data Packaging information Revision history /27 DocID2573 Rev 14

3 Diagram 1 Diagram Figure 1. Block diagram DocID2573 Rev 14 3/27 27

4 Pin configuration 2 Pin configuration Figure 2. Pin connections (SO-8 top view, TO-92 bottom view) PIN 1 = OUT PIN 2 = GND PIN 3 = IN SO-8 TO-92 4/27 DocID2573 Rev 14

5 Maximum ratings 3 Maximum ratings Table 2. Absolute maximum ratings Symbol Parameter alue Unit I DC input voltage 20 I O Output current Internally limited (1) P TOT Power dissipation Internally limited T STG Storage temperature range -65 to 150 C T OP Operating junction temperature range -40 to 125 C 1. Our SO-8 package, used for voltage regulators, is modified internally to have pins 2, 3, 6 and 7 electrically fused to the die attach pad. This frame decreases the total thermal resistance of the package and increases its ability to dissipate power when an appropriate area of copper on the printed circuit board is available for heatsinking. The external dimensions are the same as SO-8 standard. Table 3. Thermal data Symbol Parameter SO-8 TO-92 Unit R thjc Thermal resistance junction-case 20 C/W R thja Thermal resistance junction-ambient C/W Figure 3. Test circuit Note: If the INHIBIT pin is left floating, the regulator is in ON mode. However, when the inhibit function is not used, it should be grounded to avoid any noise. DocID2573 Rev 14 5/27 27

6 Electrical characteristics 4 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 4. LE30AB electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 5, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit 150 ma Δ O Line regulation I = 3.7 to 18, I O = 0.5 ma 3 15 m Δ O Load regulation I = 4, I O = 0.5 to 100 ma 3 15 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 5 ± 1 I = 4 to 18, I O = 0 ma ON mode I = 4 to 18, I O = 100 ma I = 6 OFF mode µa f = 120 Hz 81 f = 1 khz 76 f = 10 khz 60 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 6, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db 6/27 DocID2573 Rev 14

7 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 5. LE30C electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 5, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit 150 ma Δ O Line regulation I = 3.7 to 18, I O = 0.5 ma 3 20 m Δ O Load regulation I = 4, I O = 0.5 to 100 ma 3 25 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 5 ± 1 I = 4 to 18, I O = 0 ma ON mode I = 4 to 18, I O = 100 ma I = 6 OFF mode µa f = 120 Hz 81 f = 1 khz 76 f = 10 khz 60 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 6, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db DocID2573 Rev 14 7/27 27

8 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 6. LE33C electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 5.3, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit 150 ma Δ O Line regulation I = 4 to 18, I O = 0.5 ma 3 20 m Δ O Load regulation I = 4.3, I O = 0.5 to 100 ma 3 25 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 5.3 ± 1 I = 4.3 to 18, I O = 0 ma ON mode I = 4.3 to 18, I O = 100 ma I = 6 OFF mode µa f = 120 Hz 80 f = 1 khz 75 f = 10 khz 60 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 6, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db 8/27 DocID2573 Rev 14

9 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 7. LE45C electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 6.5, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit 150 ma Δ O Line regulation I = 5.2 to 18, I O = 0.5 ma 4 30 m Δ O Load regulation I = 5.5, I O = 0.5 to 100 ma 3 25 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 6.5 ± 1 I = 5.5 to 18, I O = 0 ma ON mode I = 5.5 to 18, I O = 100 ma I = 6 OFF mode µa f = 120 Hz 77 f = 1 khz 72 f = 10 khz 60 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 6, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db DocID2573 Rev 14 9/27 27

10 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 8. LE50AB electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 7, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit ma Δ O Line regulation I = 5.7 to 18, I O = 0.5 ma 4 20 m Δ O Load regulation I = 6, I O = 0.5 to 100 ma 3 15 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 7 ± 1 I = 6 to 18, I O = 0 ma ON mode I = 6 to 18, I O = 100 ma I = 6 OFF mode µa f = 120 Hz 76 f = 1 khz 71 f = 10 khz 60 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 6, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db 10/27 DocID2573 Rev 14

11 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 9. LE50C electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 7, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit ma Δ O Line regulation I = 5.7 to 18, I O = 0.5 ma 4 30 m Δ O Load regulation I = 6, I O = 0.5 to 100 ma 3 25 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 7 ± 1 I = 6 to 18, I O = 0 ma ON mode I = 6 to 18, I O = 100 ma I = 6 OFF mode µa f = 120 Hz 76 f = 1 khz 71 f = 10 khz 60 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 6, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db DocID2573 Rev 14 11/27 27

12 Electrical characteristics Refer to test circuits, T J = 25 C, C I = 0.1 µf, C O = 2.2 µf unless otherwise specified. Table 10. LE80C electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O Output voltage I O = 10 ma, I = I O = 10 ma, I = 10, T J = -25 to 85 C I Operating input voltage I O = 100 ma 18 I O Output current limit 150 ma Δ O Line regulation I = 8.7 to 18, I O = 0.5 ma 5 35 m Δ O Load regulation I = 9, I O = 0.5 to 100 ma 3 25 m I d Quiescent current SR Supply voltage rejection I O = 5 ma, I = 10 ± 1 I = 9 to 18, I O = 0 ma ON mode I = 9 to 18, I O = 100 ma I = 9 OFF mode µa f = 120 Hz 72 f = 1 khz 66 f = 10 khz 57 en Output noise voltage B = 10 Hz to 100 khz 50 µ d Dropout voltage I O = 100 ma I O = 100 ma, T J = -40 to 125 C 0.5 IL Control input logic low T J = -40 to 125 C 0.8 IH Control input logic high T J = -40 to 125 C 2 I I Control input current I = 9, C = 6 10 µa C O Output bypass capacitance ESR = 0.1 to 10 Ω, I O = 0 to 100 ma 2 10 µf ma db 12/27 DocID2573 Rev 14

13 Typical performance characteristics 5 Typical performance characteristics Unless otherwise specified, O(NOM) = 3.3 Figure 4. Dropout voltage vs. output current Figure 5. Dropout voltage vs. temperature Figure 6. Shutdown current vs. temperature Figure 7. Supply current vs. input voltage DocID2573 Rev 14 13/27 27

14 Typical performance characteristics Figure 8. Short-circuit current vs. dropout voltage Figure 9. SR vs. frequency Figure 10. Logic-controlled precision 3.3/5.0 selectable output 14/27 DocID2573 Rev 14

15 Typical performance characteristics Figure 11. Sequential multi-output supply Figure 12. Basic inhibit functions DocID2573 Rev 14 15/27 27

16 Package mechanical data 6 Package mechanical data In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions and product status are available at: ECOPACK is an ST trademark. Figure 13. SO-8 drawings _G_FU 16/27 DocID2573 Rev 14

17 Package mechanical data Table 11. SO-8 mechanical data Dim. mm Min. Typ. Max. A 1.75 A A b b c c D E E e 1.27 h L L L k 0 8 ccc 0.10 DocID2573 Rev 14 17/27 27

18 Package mechanical data Figure 14. SO-8 recommended footprint Footprint_ _G_FU 18/27 DocID2573 Rev 14

19 Package mechanical data Figure 15. TO-92 bag drawings D Table 12 TO-92 bag mechanical data Dim. mm Min. Typ. Max. A b D E e e L R S W DocID2573 Rev 14 19/27 27

20 Packaging information 7 Packaging information Figure 16. SO-8 tape and reel drawings 20/27 DocID2573 Rev 14

21 Packaging information Table 13 SO-8 tape and reel mechanical data Dim. mm Min. Typ. Max. A 330 C D 20.2 N 60 T 22.4 Ao Bo Ko Po P DocID2573 Rev 14 21/27 27

22 Packaging information Figure 17. TO-92 tape and reel drawings delta P A1 T2 T T1 H1 delta H H H0 L d W2 l1 W0 W1 W F1 P2 F2 P0 D0 t 22/27 DocID2573 Rev 14

23 Packaging information Table 14. TO-92 tape and reel mechanical data Dim. mm Min. Typ. Max. A T 3.80 T T d P P F1, F F delta H W W W W H H H H D t 0.90 L l delta P Ø Ø u DocID2573 Rev 14 23/27 27

24 Packaging information Figure 18. TO-92 ammopack A1 T2 T T1 H1 delta H H H0 L H3 d W2 l1 F1 F2 W0 W1 W P2 F3 P0 D0 t S_Rev_U 24/27 DocID2573 Rev 14

25 Packaging information Table 15. TO-92 ammopack mechanical data Dim. mm Min. Typ. Max. A T 3.80 T T d P P F1, F F delta H W W W W H H H H D t 0.90 L l delta P DocID2573 Rev 14 25/27 27

26 Revision history 8 Revision history Table 16. Document revision history Date Revision Changes 09-Jul I O typ. and max. are changed in tab. 24 and 25 - pag Mar Add Tape & Reel for TO-92 - Note on Table Feb Change value T OP on Table Jul Add Table 1 in cover page. 29-Nov Modified: Table Feb Modified: Table Jul Modified: Table 1 and Table May Mar Updated: Table 1 on page 1. Changed: T A in T J test conditions from table 4 to table 10. Changed the part numbers LExxAB and LExxC to. Updated the title. Added the ammopack package to the figure in cover page. Updated the Table 1: Device summary. Updated the Description. Updated Figure 3. Changed the title of Figure 6. Updated mechanical data. 26/27 DocID2573 Rev 14

27 Please Read Carefully: Information in this document is provided solely in connection with ST products. STMicroelectronics N and its subsidiaries ( ST ) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notice. All ST products are sold pursuant to ST s terms and conditions of sale. Purchasers are solely responsible for the choice, selection and use of the ST products and services described herein, and ST assumes no liability whatsoever relating to the choice, selection or use of the ST products and services described herein. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted under this document. If any part of this document refers to any third party products or services it shall not be deemed a license grant by ST for the use of such third party products or services, or any intellectual property contained therein or considered as a warranty covering the use in any manner whatsoever of such third party products or services or any intellectual property contained therein. UNLESS OTHERWISE SET FORTH IN ST S TERMS AND CONDITIONS OF SALE ST DISCLAIMS ANY EXPRESS OR IMPLIED WARRANTY WITH RESPECT TO THE USE AND/OR SALE OF ST PRODUCTS INCLUDING WITHOUT LIMITATION IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE (AND THEIR EQUIALENTS UNDER THE LAWS OF ANY JURISDICTION), OR INFRINGEMENT OF ANY PATENT, COPYRIGHT OR OTHER INTELLECTUAL PROPERTY RIGHT. ST PRODUCTS ARE NOT DESIGNED OR AUTHORIZED FOR USE IN: (A) SAFETY CRITICAL APPLICATIONS SUCH AS LIFE SUPPORTING, ACTIE IMPLANTED DEICES OR SYSTEMS WITH PRODUCT FUNCTIONAL SAFETY REQUIREMENTS; (B) AERONAUTIC APPLICATIONS; (C) AUTOMOTIE APPLICATIONS OR ENIRONMENTS, AND/OR (D) AEROSPACE APPLICATIONS OR ENIRONMENTS. WHERE ST PRODUCTS ARE NOT DESIGNED FOR SUCH USE, THE PURCHASER SHALL USE PRODUCTS AT PURCHASER S SOLE RISK, EEN IF ST HAS BEEN INFORMED IN WRITING OF SUCH USAGE, UNLESS A PRODUCT IS EXPRESSLY DESIGNATED BY ST AS BEING INTENDED FOR AUTOMOTIE, AUTOMOTIE SAFETY OR MEDICAL INDUSTRY DOMAINS ACCORDING TO ST PRODUCT DESIGN SPECIFICATIONS. PRODUCTS FORMALLY ESCC, QML OR JAN QUALIFIED ARE DEEMED SUITABLE FOR USE IN AEROSPACE BY THE CORRESPONDING GOERNMENTAL AGENCY. Resale of ST products with provisions different from the statements and/or technical features set forth in this document shall immediately void any warranty granted by ST for the ST product or service described herein and shall not create or extend in any manner whatsoever, any liability of ST. ST and the ST logo are trademarks or registered trademarks of ST in various countries. Information in this document supersedes and replaces all information previously supplied. The ST logo is a registered trademark of STMicroelectronics. All other names are the property of their respective owners STMicroelectronics - All rights reserved STMicroelectronics group of companies Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan - Malaysia - Malta - Morocco - Philippines - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States of America DocID2573 Rev 14 27/27 27

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