LM158W, LM258W, LM358W

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1 W, LM258W, LM358W Low power dual operational amplifiers Features Datasheet - production data N DIP8 (Plastic package) D and S SO8 and MiniSO8 (Plastic micropackage) P TSSOP8 (Thin shrink small outline package) 1 2 Pin connections (top view) Output Inverting input 3 - Non-inverting input 4 - V - CC 5 - Non-inverting input Inverting input Output V CC 8 7 ESD internal protection: 2 kv Internal frequency compensation implemented Large DC voltage gain: 100 db Wide bandwidth (unity gain): 1.1 MHz (temperature compensated) Very low supply current per operator - essentially independent of supply voltage Low input bias current: na (temperature compensated) Low input offset voltage: 2 mv Low input offset current: 2 na Input common mode voltage range includes ground Differential input voltage range equal to the power supply voltage Large output voltage swing 0 V to VCC V Description The W, LM258W, and LM358W circuits consist of two independent, high-gain, operational amplifiers (op-amps), which employ internal frequency compensation and are specifically designed to operate from a single power supply over a wide range of voltages. The low-power supply drain is independent of the power supply voltage magnitude. Application areas include transducer amplifiers, DC gain blocks, and all the conventional op-amp circuits, which can now be more easily implemented in single power supply systems. For example, these circuits can be directly supplied with the standard +5 V, which is used in logic systems and easily provide the required interface electronics with no additional power supply. In linear mode, the input common mode voltage range includes ground. The output voltage can also swing to ground, even though operated from a single power supply voltage. July 13 DocID9159 Rev 11 0 This is information on a product in full production.

2 Contents W, LM258W, LM358W Contents 1 Schematic diagram Absolute maximum ratings and operating conditions Electrical characteristics Typical applications Package information DIP8 package information SO8 package information MiniSO8 package information TSSOP8 package information Ordering information Revision history / DocID9159 Rev 11

3 W, LM258W, LM358W Schematic diagram 1 Schematic diagram Figure 1. Schematic diagram ( W/LM258W/LM358W) DocID9159 Rev 11 3/

4 Absolute maximum ratings and operating conditions W, LM258W, LM358W 2 Absolute maximum ratings and operating conditions Table 1. Absolute maximum ratings Symbol Parameter W/AW LM258W/AW LM358W/AW Unit V CC + Supply voltage +32 V in Input voltage -0.3 to V CC V V id Differential input voltage -0.3 to V CC Output short-circuit duration (1) Infinite I in Input current (2) 5 ma in DC or 50 ma in AC (duty cycle=10 %, T=1s) ma T oper Operating free-air temperature range -55 to to to +70 T stg Storage temperature range -65 to +150 C T j Maximum junction temperature 150 Thermal resistance junction to ambient (3) R thja R thjc DIP8 SO8 MiniSO8 TSSOP8 Thermal resistance junction to case (3) DIP8 SO8 MiniSO8 TSSOP C/W HBM: human body model (4) 2 kv ESD MM: machine model (5) 0 V CDM: charged device model (6) 1.5 kv 1. Short-circuits from the output to V CC can cause excessive heating if V CC > 15 V. The maximum output current is approximately 40 ma independent of the magnitude of V CC. Destructive dissipation can result from simultaneous shortcircuits on all amplifiers. 2. This input current only exists when the voltage at any of the input leads is driven negative. It is due to the collector-base junction of the input PNP transistor becoming forward biased and thereby acting as input diode clamps. In addition to this diode action, there is also NPN parasitic action on the IC chip. This transistor action can cause the output voltages of the Op-amps to go to the V CC voltage level (or to ground for a large overdrive) for the time during which an input is driven negative. This is not destructive and normal output will be restored for input voltage higher than -0.3 V. 3. Short-circuits can cause excessive heating and destructive dissipation. R th are typical values. 4. Human body model: a 100 pf capacitor is discharged through a 1.5 kω resistor between two pins of the device, done for all couples of pin combinations with other pins floating. 5. Machine model: a 0 pf capacitor is charged to the specified voltage, then discharged directly between two pins of the device with no external series resistor (internal resistor < 5 Ω), done for all couples of pin combinations with other pins floating. 6. Charged device model: all pins plus package are charged together to the specified voltage and then discharged directly to the ground. 4/ DocID9159 Rev 11

5 W, LM258W, LM358W Absolute maximum ratings and operating conditions Table 2. Operating conditions Symbol Parameter Value Unit V CC + Supply voltage 3 to 30 V icm Common mode input voltage range (1) V DD -0.3 to V CC -1.5 V T oper Operating free air temperature range W LM258W LM358W -55 to to to +70 C 1. When used in comparator, the functionality is guaranteed as long as at least one input remains within the operating common mode voltage range. DocID9159 Rev 11 5/

6 Electrical characteristics W, LM258W, LM358W 3 Electrical characteristics Table 3. V CC + = +5 V, V CC - = ground, V o = 1.4 V, T amb = +25 C (unless otherwise specified) Symbol Parameter Min. Typ. Max. Unit V io Input offset voltage (1) AW LM258AW, LM358AW W, LM258W LM358W mv T min T amb T max AW, LM258AW, LM358AW W, LM258W LM358W ΔV io /ΔT Input offset voltage drift AW, LM258AW, LM358AW W, LM258W, LM358W µv/ C I io Input offset current AW, LM258AW, LM358AW W, LM258W, LM358W T min T amb T max AW, LM258AW, LM358AW W, LM258W, LM358W na ΔI io /ΔT Input offset current drift AW, LM258AW, LM358AW W, LM258W, LM358W pa/ C Input bias current (2) I ib AW, LM258AW, LM358AW W, LM258W, LM358W T min T amb T max AW, LM258AW, LM358AW W, LM258W, LM358W na A vd SVR Large signal voltage gain + V CC = +15 V, R L = 2 kω, V o = 1.4 V to 11.4 V 50 T min T amb T max 25 Supply voltage rejection ratio R s 10 kω, V CC + = 5 V to 30 V T min T amb T max V/mV 100 db I CC Supply current, all amp, no load T min T amb T max, V CC + = +5 V T min T amb T max, V CC + = +30 V ma 6/ DocID9159 Rev 11

7 W, LM258W, LM358W Electrical characteristics Table 3. V CC + = +5 V, V CC - = ground, V o = 1.4 V, T amb = +25 C (unless otherwise specified) (continued) Symbol Parameter Min. Typ. Max. Unit V icm CMR I source I sink Input common mode voltage range V CC + = +30 V (3) T amb = +25 C 0 T min T amb T max 0 Common mode rejection ratio R s 10 kω T min T amb T max V CC V CC + -2 V 85 db Output current source V + CC = +15 V, V o = +2 V, V id = +1 V ma Output sink current V CC + = +15 V, V o = +2 V, V id = -1 V V CC + = +15 V, V o = +0.2 V, V id = -1 V ma µa V OH V OL SR GBP THD High level output voltage R L = 2 kω, V CC + = 30 V T min T amb T max R L = 10 kω, V CC + = 30 V T min T amb T max Low level output voltage R L = 10 kω 5 T min T amb T max Slew rate V CC + = 15 V, V i = 0.5 to 3 V, R L = 2 kω, C L = 100 pf, unity gain Gain bandwidth product V CC + = 30 V, f =100 khz, V in =10 mv, R L =2 kω, C L = 100 pf V mv V/µs MHz Total harmonic distortion f = 1 khz, A v = db, R L = 2 kω, V o = 2 V pp, 0.02 % C L = 100 pf, V O = 2 V pp Equivalent input noise voltage nv e n f = 1 khz, R s = 100 Ω, V CC = 30 V 55 Hz Channel separation (4) V o1 /V o2 1 khz f khz 1 db 1. V o = 1.4 V, R s = 0 Ω, 5 V < V + CC < 30 V, 0 < V ic < V + CC V 2. The direction of the input current is out of the IC. This current is essentially constant, independent of the state of the output so there is no change in the load on the input lines. 3. The input common-mode voltage of either input signal voltage should not be allowed to go negative by more than 0.3 V. + The upper end of the common-mode voltage range is V CC V, but either or both inputs can go to +32 V without damage. 4. Due to the proximity of external components ensure that there is no coupling originating via stray capacitance between these external parts. Typically, this can be detected at higher frequencies because then this type of capacitance increases. DocID9159 Rev 11 7/

8 Electrical characteristics W, LM258W, LM358W Figure 2. Open loop frequency response Figure 3. Large signal frequency response Figure 4. Voltage follower pulse response (large signal) Figure 5. Voltage follower pulse response (small signal) VOLTAGE FOLLOWER PULSE RESPONSE Figure 6. Input bias current vs. temperature Figure 7. Output characteristics (sink) n 8/ DocID9159 Rev 11

9 W, LM258W, LM358W Electrical characteristics Figure 8. Output characteristics (source) Figure 9. Current limiting Figure 10. Input voltage range Figure 11. Open loop gain Figure 12. Supply current Figure 13. Input bias current vs. positive supply voltage DocID9159 Rev 11 9/

10 Electrical characteristics W, LM258W, LM358W Figure 14. Gain bandwidth product Figure 15. Power supply rejection ratio Figure 16. Common mode rejection ratio Figure 17. Phase margin vs. capacitive load Phase Margin at Vcc=15V and Vicm=7.5V Vs. Iout and Capacitive load value 10/ DocID9159 Rev 11

11 W, LM258W, LM358W Typical applications 4 Typical applications Single supply voltage V CC = +5 V DC Figure 18. AC-coupled inverting amplifier C I R1 10k R f A=- R f V R1 (as shown A V = -10) C o 0 e o 2VPP Figure 19. Non-inverting DC amplifier 10k e O +5V A V =1+ R2 R1 (As shown = 101) A V e I ~ V CC R2 100k R 6.2k B R3 R 10k L R1 10k R2 1M e O (V) C1 10 F 0 e I (mv) Figure. AC-coupled non-inverting amplifier Figure 21. DC summing amplifier C1 0.1 F R1 C I R2 1M A =1+ R2 V R1 (as shown A V = 11) C o 0 e o 2VPP e 1 e 2 100k e O e I ~ R3 1M R 6.2k B R4 V CC R 10k L e 3 e 4 C2 10 F R5 e o = e 1 + e 2 - e 3 - e 4 where (e1 + e 2 ) (e 3 + e 4 ) to keep e o 0V Figure 22. High input Z, DC differential amplifier Figure 23. High input Z adjustable gain DC instrumentation amplifier R1 R1 R2 R4 R3 +V1 V o +V2 if R1 = R5 and R3 = R4 = R6 = R7 e o = [12R ] ((e 2 + e 1 ) R2 As shown e o = 101 (e 2 + e 1 ) e 2 e 1 R2 2k Gain adjust R5 R3 R6 R7 R4 if R1 = R5 and R3 = R4 = R6 = R7 e o 2R = [1 + ] ((e 2 + e 1 ) R2 e O As shown e o = 101 (e 2 + e 1 ) DocID9159 Rev 11 10

12 Typical applications W, LM258W, LM358W Figure 24. Using symmetrical amplifiers to reduce input current Figure 25. Low drift peak detector I I I B e o I B e I IB 2N F e I 1 F C I B 2I B Z o e o I B Z I 2N F I B 1.5M 3M I B Input current compensation 2I B R 1M I B 3R 3M I B Input current compensation Figure 26. Active band-pass filter R1 +V1 R2 R3 R4 10M C2 330pF R6 470k C1 330pF R5 470k R7 V o R8 C3 10 F V CC 12/ DocID9159 Rev 11

13 W, LM258W, LM358W Package information 5 Package information 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. DocID9159 Rev 11 13/

14 Package information W, LM258W, LM358W 5.1 DIP8 package information Figure 27. DIP8 package mechanical drawing e4 A I b B B1 e a1 L E b1 Z e3 Z D F Ref. Table 4. DIP8 package mechanical data Millimeters Dimensions Inches Min. Typ. Max. Min. Typ. Max. A a B B b b D E e e e F I L Z / DocID9159 Rev 11

15 W, LM258W, LM358W Package information 5.2 SO8 package information Figure 28. SO8 package mechanical drawing Table 5. SO8 package mechanical data Dimensions Ref. Millimeters Inches Min. Typ. Max. Min. Typ. Max. A A A b c D E E e h L L k ccc DocID9159 Rev 11 15/

16 Package information W, LM258W, LM358W 5.3 MiniSO8 package information Figure 29. MiniSO8 package mechanical drawing Table 6. MiniSO8 package mechanical data Dimensions Ref. Millimeters Inches Min. Typ. Max. Min. Typ. Max. A A A b c D E E e L L L k ccc / DocID9159 Rev 11

17 W, LM258W, LM358W Package information 5.4 TSSOP8 package information Figure 30. TSSOP8 package mechanical drawing Table 7. TSSOP8 package mechanical data Dimensions Ref. Millimeters Inches Min. Typ. Max. Min. Typ. Max. A A A b c D E E e k L L aaa DocID9159 Rev 11 17/

18 Ordering information W, LM258W, LM358W 6 Ordering information Table 8. Order codes Order code Temperature range Package Packaging Marking WDT -55 C, +125 C LM258WADT -40 C, +105 C SO8 Tube or tape and reel 158W 258WA LM258WN DIP8 Tube LM258WN LM258WDT SO8 Tube or tape and reel 258W LM258WPT LM258AWPT LM258AWYDT (1) LM258WYPT (2) LM258AWYPT (2) LM358WST LM358AWST LM358WYPT (2) LM358AWYST (1) LM358WYST (1) 0 C, +70 C TSSOP8 SO8 (Automotive grade) TSSOP8 (Automotive grade) MiniSO8 TSSOP8 (Automotive grade) MiniSO8 (Automotive grade) Tape and reel Tube or tape and reel Tape and reel 258W 258AW 258AWY 258WY K410 K417 K WY 1. Qualification and characterization according to AEC Q100 and Q003 or equivalent, advanced screening according to AEC Q001 & Q 002 or equivalent are qualified. 2. Qualification and characterization according to AEC Q100 and Q003 or equivalent, advanced screening according to AEC Q001 & Q 002 or equivalent are on-going. K414 K415 18/ DocID9159 Rev 11

19 W, LM258W, LM358W Revision history 7 Revision history Table 9. Document revision history Date Revision Changes 01-Nov-02 1 First release. 01-Jul Oct Jan Mar Apr Feb Aug Jul Jan Jul ESD protection inserted in Table 1: Absolute maximum ratings on page 4. ESD tolerance for model HBM improved to 2kV intable 1: Absolute maximum ratings on page 4. R thja and R thjc typical values added in Table 1: Absolute maximum ratings on page 4. Added Figure 17: Phase margin vs. capacitive load on page 10. Order codes added (automotive grade level) to Section 6: Ordering information. Previously called revision 4. Footnote for automotive grade order codes added to Section 6: Ordering information. Added missing Revision 4 of January 07 in revision history. Corrected revision number of March 07 to Revision 5. Reformatted electrical characteristics table. Reformatted package information. Corrected MiniSO8 package information. Corrected operating temperature range for automotive grade parts. Corrected ESD values in Table 1: Absolute maximum ratings. Added limitations on input current in Table 1: Absolute maximum ratings. Corrected title for Figure 11. Added E and L1 parameters in Table 5: SO8 package mechanical data. Added automotive grade products for MSO8 package in Table 8: Order codes. Automotive grade level updated in Table 8: Order codes. Removed order codes: LM358WYD, LM358AWYD, LM258WYD, LM258AWYD. Small text changes in Features and Description. Figure 1: Schematic diagram ( W/LM258W/LM358W): replaced. Table 8: Order codes: added order codes LM358WST and LM358AWST. Table 3: replaced DV io with ΔV io /ΔT and DI io with ΔI io /ΔT Table 8: Order codes: removed the following order codes: WN, WD, LM258AWYST, LM258WAN, LM258WAD, LM258WD, LM258WYST, LM358WN, LM358WD, LM358AWD, LM358WDT, LM358AWDT, LM358WPT, LM358AWPT, LM358WYDT, LM358AWYDT, LM358AWYPT; updated footnote 1. DocID9159 Rev 11 19/

20 W, LM258W, LM358W Please Read Carefully: Information in this document is provided solely in connection with ST products. STMicroelectronics NV 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 EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION), OR INFRINGEMENT OF ANY PATENT, COPYRIGHT OR OTHER INTELLECTUAL PROPERTY RIGHT. ST PRODUCTS ARE NOT AUTHORIZED FOR USE IN WEAPONS. NOR ARE ST PRODUCTS DESIGNED OR AUTHORIZED FOR USE IN: (A) SAFETY CRITICAL APPLICATIONS SUCH AS LIFE SUPPORTING, ACTIVE IMPLANTED DEVICES OR SYSTEMS WITH PRODUCT FUNCTIONAL SAFETY REQUIREMENTS; (B) AERONAUTIC APPLICATIONS; (C) AUTOMOTIVE APPLICATIONS OR ENVIRONMENTS, AND/OR (D) AEROSPACE APPLICATIONS OR ENVIRONMENTS. WHERE ST PRODUCTS ARE NOT DESIGNED FOR SUCH USE, THE PURCHASER SHALL USE PRODUCTS AT PURCHASER S SOLE RISK, EVEN IF ST HAS BEEN INFORMED IN WRITING OF SUCH USAGE, UNLESS A PRODUCT IS EXPRESSLY DESIGNATED BY ST AS BEING INTENDED FOR AUTOMOTIVE, AUTOMOTIVE 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 GOVERNMENTAL 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. 13 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 / DocID9159 Rev 11

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