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Motorola LM358 LM258 LM2904 LM2904V Data Sheet

Summary

This dual operational amplifier (Op-Amp) provides reliable amplification with low power consumption and exceptional operational flexibility. Engineered for demanding single and split supply applications, it features a wide common mode input range extending to ground or negative supplies. The comprehensive datasheet details electrical characteristics, ensuring suitability for designs operating between 3V and 32V while maintaining high performance comparable to older industry standards. Ideal for electronics designers who require robust, low-drain amplification in diverse voltage environments.

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Order this document by LM358/D

DUAL DIFFERENTIAL INPUT

Utilizing the circuit designs perfected for recently introduced Quad Operational Amplifiers, these dual operational amplifiers feature 1) low OPERATIONAL AMPLIFIERS power drain, 2) a common mode input voltage range extending to ground/VEE, 3) single supply or split supply operation and 4) pinouts

SEMICONDUCTOR

compatible with the popular MC1558 dual operational amplifier. The LM158

series is equivalent to one–half of an LM124. TECHNICAL DATA

These amplifiers have several distinct advantages over standard operational amplifier types in single supply applications. They can operate at supply voltages as low as 3.0 V or as high as 32 V, with quiescent currents about one–fifth of those associated with the MC1741 (on a per amplifier basis). The common mode input range includes the negative supply, thereby eliminating the necessity for external biasing components in many applications. The output voltage range also includes the negative power supply voltage.

N SUFFIX

Short Circuit Protected Outputs

PLASTIC PACKAGE True Differential Input Stage CASE 626

Single Supply Operation: 3.0 V to 32 V Low Input Bias Currents Internally Compensated

D SUFFIX

Common Mode Range Extends to Negative Supply

PLASTIC PACKAGE

Single and Split Supply Operation CASE 751

(SO–8)

Similar Performance to the Popular MC1558 ESD Clamps on the Inputs Increase Ruggedness of the Device without Affecting Operation

MAXIMUM RATINGS (TA = +25°C, unless otherwise noted.) PIN CONNECTIONS

LM258 LM2904 Rating Symbol LM358 LM2904V Unit

Output A VCC

Power Supply Voltages Vdc Output B

Inputs A

Single Supply VCC

Inputs B

Split Supplies VCC, VEE ±16 ±13

VEE/Gnd

Input Differential Voltage VIDR ±32 ±26 Vdc

(Top View)

Range (Note 1)

Input Common Mode Voltage VICR –0.3 to 32 –0.3 to 26 Vdc Range (Note 2)

ORDERING INFORMATION

Output Short Circuit Duration t SC Continuous

Operating

Junction Temperature TJ °C Device Temperature Range Package Storage Temperature Range Tstg –55 to +125 °C LM2904D SO–8

TA = –40° to +105°C

Operating Ambient Temperature TA °C LM2904N Plastic DIP Range

LM2904VD SO–8

LM258 –25 to +85 TA = –40° to +125°C

LM358 0 to +70 LM2904VN Plastic DIP

LM2904 –40 to +105

LM258D SO–8

LM2904V –40 to +125 TA = –25° to +85°C

LM258N Plastic DIP

NOTES: 1. Split Power Supplies.

2. For Supply Voltages less than 32 V for the LM258/358 and 26 V for the LM2904, the LM358D SO–8 absolute maximum input voltage is equal to the supply voltage. TA = 0° to +70°C

LM358N Plastic DIP

Motorola, Inc. 1996 Rev 2

1MOTOROLA ANALOG IC DEVICE DATA

Page Summary Contents For Motorola LM358 LM258 LM2904 LM2904V Data Sheet

Page 1 Order this document by LM358/D DUAL DIFFERENTIAL INPUT Utilizing the circuit designs perfected for recently introduced Quad Operational Amplifiers, these dual operational amplifiers feature 1) low OPE...
Page 2 LM358, LM258, LM2904, LM2904V ELECTRICAL CHARACTERISTICS (VCC = 5.0 V, VEE = Gnd, TA = 25°C, unless otherwise noted.) LM258 LM358 LM2904 LM2904V Ch er ti ym Min Typ Max Min Typ Max Min Typ Max Min Typ...
Page 3 LM358, LM258, LM2904, LM2904V Single Supply Split Supplies 3.0 V to VCC(max) VCC VCC 1.5 V to VCC(max) 1.5 V to VEE(max) VEE/Gnd Representative Schematic Diagram (One–Half of Circuit Shown) Bias Circu...
Page 4 LM358, LM258, LM2904, LM2904V PO ER PP LY EN (m A) , O TP VO LT AG AN (V IN PU VO LT AG (V Figure 1. Input Voltage Range Figure 2. Large–Signal Open Loop Voltage Gain VCC = 15 V VEE = Gnd TA = 25°C Ne...
Page 5 LM358, LM258, LM2904, LM2904V Figure 7. Voltage Reference Figure 8. Wien Bridge Oscillator VCC 5.0 k 10 k VCC VO Vref LM358 1/2 LM358 VO MC1403 fo = 2 π RC Vref = VCC2 For: fo = 1.0 k Hz VO = 2.5 V (1...
Page 6 LM358, LM258, LM2904, LM2904V Figure 12. Function Generator Figure 13. Multiple Feedback Bandpass Filter Vref = VCC Triangle Wave R2 Output Vref R1 1/2 R3 Vin LM358 1/2 75 k VO LM358 LM358 R1 100 k Sq...
Page 7 LM358, LM258, LM2904, LM2904V OUTLINE DIMENSIONS N SUFFIX PLASTIC PACKAGE CASE 626–05 ISSUE K NOTES: 1. DIMENSION L TO CENTER OF LEAD WHEN FORMED PARALLEL. 2. PACKAGE CONTOUR OPTIONAL (ROUND OR SQUARE...
Page 8 LM358, LM258, LM2904, LM2904V Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitabili...

Manual Details

Brand Motorola
Pages 8
File Size 179.12 KB
Published May 27, 2026
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Frequently Asked Questions

What is the common mode input voltage range for the LM358 amplifier?

The Common Mode Input Voltage Range (ICR) is from -0.3 V to +70° C A in the plastic DIP package.

Can the LM358 operate on a split or single supply voltage?

Yes, it supports both single supply operation and split supply operation.

What key advantage does the LM358 have regarding negative supplies?

The common mode input range includes the negative supply, removing the need for external biasing components in many applications.