LM258DRE4 Equivalent & Substitute Parts

Part Overview

The LM258DRE4 is a general-purpose operational amplifier manufactured by Texas Instruments, configured as a dual-channel (2 circuit) device in an 8-SOIC surface mount package. This part is classified as obsolete, though 722 units remain in current inventory as new original stock.

The LM258DRE4 operates across a wide supply voltage range of 3V to 32V and is suitable for general-purpose amplification applications requiring moderate bandwidth and low input bias current. Due to its obsolete status, identifying functionally equivalent and compatible substitute parts is essential for design continuity, long-term availability, and supply chain reliability.

Substiute Parts

LM258DRE4
Texas InstrumentsIn Stock: 759LM258DRE4 Datasheet
LM258DRE4
Current Part
LM358AM/NOPB
Texas InstrumentsIn Stock: 5677LM358AM/NOPB Datasheet
LM358AM/NOPB
MFR Recommended
LM358AMX/NOPB
Texas InstrumentsIn Stock: 2125LM358AMX/NOPB Datasheet
LM358AMX/NOPB
MFR Recommended
LM358M/NOPB
Texas InstrumentsIn Stock: 4247LM358M/NOPB Datasheet
LM358M/NOPB
MFR Recommended
LM358MX/NOPB
Texas InstrumentsIn Stock: 74384LM358MX/NOPB Datasheet
LM358MX/NOPB
MFR Recommended
AD706ARZ-REEL
Analog Devices Inc.In Stock: 2930AD706ARZ-REEL Datasheet
AD706ARZ-REEL
MFR Recommended
ADA4000-2ARZ-RL
Analog Devices Inc.In Stock: 3963ADA4000-2ARZ-RL Datasheet
ADA4000-2ARZ-RL
MFR Recommended
ADA4004-2ARZ-R7
Analog Devices Inc.In Stock: 3521ADA4004-2ARZ-R7 Datasheet
ADA4004-2ARZ-R7
MFR Recommended
ADA4004-2ARZ-RL
Analog Devices Inc.In Stock: 3628ADA4004-2ARZ-RL Datasheet
ADA4004-2ARZ-RL
MFR Recommended
ADA4062-2BRZ-R7
Analog Devices Inc.In Stock: 2483ADA4062-2BRZ-R7 Datasheet
ADA4062-2BRZ-R7
MFR Recommended
BA10358F-E1
Rohm SemiconductorIn Stock: 17761BA10358F-E1 Datasheet
BA10358F-E1
MFR Recommended
BA10358F-E2
Rohm SemiconductorIn Stock: 150406BA10358F-E2 Datasheet
BA10358F-E2
MFR Recommended
BA2904F-E2
Rohm SemiconductorIn Stock: 9059BA2904F-E2 Datasheet
BA2904F-E2
MFR Recommended
LM258ADT
STMicroelectronicsIn Stock: 60484LM258ADT Datasheet
LM258ADT
MFR Recommended
LM258DR2G
onsemiIn Stock: 505253LM258DR2G Datasheet
LM258DR2G
MFR Recommended
LM258DT
STMicroelectronicsIn Stock: 125329LM258DT Datasheet
LM258DT
MFR Recommended
LM258WDT
STMicroelectronicsIn Stock: 51741LM258WDT Datasheet
LM258WDT
MFR Recommended
LM258WYDT
STMicroelectronicsIn Stock: 10422LM258WYDT Datasheet
LM258WYDT
MFR Recommended
LM2904AQS-13
Diodes IncorporatedIn Stock: 12166LM2904AQS-13 Datasheet
LM2904AQS-13
MFR Recommended
LM2904DR
Rohm SemiconductorIn Stock: 291899LM2904DR Datasheet
LM2904DR
MFR Recommended
LM2904DR2G
onsemiIn Stock: 505330LM2904DR2G Datasheet
LM2904DR2G
MFR Recommended
LM2904DT
Rohm SemiconductorIn Stock: 125452LM2904DT Datasheet
LM2904DT
MFR Recommended
LM2904VDR2G
onsemiIn Stock: 48760LM2904VDR2G Datasheet
LM2904VDR2G
MFR Recommended
LM2904YDT
STMicroelectronicsIn Stock: 104422LM2904YDT Datasheet
LM2904YDT
MFR Recommended
LM358ADR2G
onsemiIn Stock: 45487LM358ADR2G Datasheet
LM358ADR2G
MFR Recommended
LM358DR
Rohm SemiconductorIn Stock: 825241LM358DR Datasheet
LM358DR
MFR Recommended
LM358DR2G
onsemiIn Stock: 492264LM358DR2G Datasheet
LM358DR2G
MFR Recommended
LM358S-13
Diodes IncorporatedIn Stock: 20509LM358S-13 Datasheet
LM358S-13
MFR Recommended
LM358WDT
STMicroelectronicsIn Stock: 40438LM358WDT Datasheet
LM358WDT
MFR Recommended
LM358YDT
STMicroelectronicsIn Stock: 40258LM358YDT Datasheet
LM358YDT
MFR Recommended
LT1078IS8#TRPBF
Analog Devices Inc.In Stock: 6549LT1078IS8#TRPBF Datasheet
LT1078IS8#TRPBF
MFR Recommended
LT1078S8#TRPBF
Analog Devices Inc.In Stock: 2244LT1078S8#TRPBF Datasheet
LT1078S8#TRPBF
MFR Recommended
LT1124AMPS8#PBF
Analog Devices Inc.In Stock: 25988LT1124AMPS8#PBF Datasheet
LT1124AMPS8#PBF
MFR Recommended
LT1211CS8#PBF
Analog Devices Inc.In Stock: 2121LT1211CS8#PBF Datasheet
LT1211CS8#PBF
MFR Recommended
LT1211CS8#TRPBF
Analog Devices Inc.In Stock: 2931LT1211CS8#TRPBF Datasheet
LT1211CS8#TRPBF
MFR Recommended
LT1352CS8#PBF
Analog Devices Inc.In Stock: 2177LT1352CS8#PBF Datasheet
LT1352CS8#PBF
MFR Recommended
LT1352IS8#PBF
Analog Devices Inc.In Stock: 2825LT1352IS8#PBF Datasheet
LT1352IS8#PBF
MFR Recommended
LT1462CS8#PBF
Analog Devices Inc.In Stock: 4386LT1462CS8#PBF Datasheet
LT1462CS8#PBF
MFR Recommended
LT1464CS8
Analog Devices Inc.In Stock: 1509LT1464CS8 Datasheet
LT1464CS8
MFR Recommended
LT1464CS8#TRPBF
Analog Devices Inc.In Stock: 961LT1464CS8#TRPBF Datasheet
LT1464CS8#TRPBF
MFR Recommended
LT1469CS8#PBF
Analog Devices Inc.In Stock: 2420LT1469CS8#PBF Datasheet
LT1469CS8#PBF
MFR Recommended
LT1469CS8-2#PBF
Analog Devices Inc.In Stock: 898LT1469CS8-2#PBF Datasheet
LT1469CS8-2#PBF
MFR Recommended
LT1469IS8#PBF
Analog Devices Inc.In Stock: 2532LT1469IS8#PBF Datasheet
LT1469IS8#PBF
MFR Recommended
LT1469IS8-2#PBF
Analog Devices Inc.In Stock: 20348LT1469IS8-2#PBF Datasheet
LT1469IS8-2#PBF
MFR Recommended
LT2078ACS8#PBF
Analog Devices Inc.In Stock: 1553LT2078ACS8#PBF Datasheet
LT2078ACS8#PBF
MFR Recommended
MC1458IDT
STMicroelectronicsIn Stock: 2200MC1458IDT Datasheet
MC1458IDT
MFR Recommended
MC34072DR2G
onsemiIn Stock: 30117MC34072DR2G Datasheet
MC34072DR2G
MFR Recommended
NCV2904DR2G
onsemiIn Stock: 655406NCV2904DR2G Datasheet
NCV2904DR2G
MFR Recommended
NCV833DR2G
onsemiIn Stock: 3922NCV833DR2G Datasheet
NCV833DR2G
MFR Recommended
OP221GSZ
Analog Devices Inc.In Stock: 5798OP221GSZ Datasheet
OP221GSZ
MFR Recommended
OP221GSZ-REEL7
Analog Devices Inc.In Stock: 1445OP221GSZ-REEL7 Datasheet
OP221GSZ-REEL7
MFR Recommended
RT512AIYDT
STMicroelectronicsIn Stock: 834RT512AIYDT Datasheet
RT512AIYDT
MFR Recommended
TL072BIDT
STMicroelectronicsIn Stock: 1301TL072BIDT Datasheet
TL072BIDT
MFR Recommended
TL072CD
STMicroelectronicsIn Stock: 9380TL072CD Datasheet
TL072CD
MFR Recommended
TL082AIYDT
STMicroelectronicsIn Stock: 100376TL082AIYDT Datasheet
TL082AIYDT
MFR Recommended
TL082BCDT
STMicroelectronicsIn Stock: 55348TL082BCDT Datasheet
TL082BCDT
MFR Recommended
TL082BIYDT
STMicroelectronicsIn Stock: 12042TL082BIYDT Datasheet
TL082BIYDT
MFR Recommended
TS512AIYDT
STMicroelectronicsIn Stock: 37410TS512AIYDT Datasheet
TS512AIYDT
MFR Recommended
TS512IYDT
STMicroelectronicsIn Stock: 82848TS512IYDT Datasheet
TS512IYDT
MFR Recommended

Key Parameters

Parameter Value Unit
Amplifier Type General Purpose
Number of Circuits 2
Slew Rate 0.3 V/µs
Gain Bandwidth Product 700 kHz
Current - Input Bias 20 nA
Voltage - Input Offset 3 mV
Current - Supply (per channel) 500 µA
Current - Output / Channel 40 mA
Voltage - Supply Span (Min) 3 V
Voltage - Supply Span (Max) 32 V
Operating Temperature -25 to 85 °C
Package / Case 8-SOIC (0.154", 3.90mm Width)
Mounting Type Surface Mount
RoHS Status ROHS3 Compliant
Moisture Sensitivity Level 1 (Unlimited)

Substitute Part Grouping Explanation

Substitute parts for the LM258DRE4 are selected based on strict electrical and mechanical compatibility criteria. The following parameters determine substitutability:

Primary Compatibility Criteria:

  • Dual-channel (2 circuit) configuration
  • 8-SOIC surface mount package (0.154", 3.90mm width)
  • Supply voltage range encompassing 3V to 32V minimum and maximum
  • Output current capability of at least 40 mA per channel
  • General-purpose amplifier classification
  • RoHS3 compliance and MSL 1 rating

Secondary Consideration Parameters:

  • Gain bandwidth product (700 kHz baseline; higher values acceptable for drop-in replacement)
  • Slew rate (0.3 V/µs baseline; higher values acceptable)
  • Input bias current (20 nA baseline; lower values acceptable)
  • Input offset voltage (3 mV baseline; lower values acceptable)
  • Operating temperature range (must support -25°C to 85°C minimum)

Substitutes are grouped into two categories: direct active replacements (LM358 series variants with enhanced specifications and active product status) and alternative general-purpose amplifiers (from Analog Devices and Rohm Semiconductor with comparable or superior electrical performance).

Parameter Comparison

Part Number Manufacturer Product Status GBW (kHz) Slew Rate (V/µs) Input Bias (nA) Input Offset (mV) Supply Current (mA) Output Current (mA) Supply Min (V) Supply Max (V) Temp Range (°C) Package
LM258DRE4 Texas Instruments Obsolete 700 0.3 20 3 1.0 40 3 32 -25 to 85 8-SOIC
LM358AM/NOPB Texas Instruments Active 1000 45 2 1.0 40 3 32 0 to 70 8-SOIC
LM358AMX/NOPB Texas Instruments Active 1000 45 2 1.0 40 3 32 0 to 70 8-SOIC
LM358M/NOPB Texas Instruments Active 1000 45 2 1.0 40 3 32 0 to 70 8-SOIC
LM358MX/NOPB Texas Instruments Active 1000 45 2 1.0 40 3 32 0 to 70 8-SOIC
AD706ARZ-REEL Analog Devices Active 800 0.15 0.05 0.03 0.75 15 4 36 -40 to 85 8-SOIC
ADA4000-2ARZ-RL Analog Devices Active 5000 20 0.005 0.2 1.35 28 8 36 -40 to 125 8-SOIC
ADA4004-2ARZ-R7 Analog Devices Active 12000 2.7 40 0.04 10 10 30 -40 to 125 8-SOIC
ADA4004-2ARZ-RL Analog Devices Active 12000 2.7 40 0.04 10 10 30 -40 to 125 8-SOIC
ADA4062-2BRZ-R7 Analog Devices Active 1400 3.3 0.002 0.5 0.165 20 8 36 -40 to 125 8-SOIC
BA10358F-E1 Rohm Semiconductor Active 500 0.2 45 2 0.7 20 3 32 -40 to 85 8-SOIC

Engineering Selection Recommendations

Tier 1: Direct Replacement (Recommended for Most Applications)

The LM358 series variants (LM358AM/NOPB, LM358AMX/NOPB, LM358M/NOPB, LM358MX/NOPB) from Texas Instruments are the primary recommended substitutes. These parts share identical supply voltage ranges (3V to 32V), output current capability (40 mA per channel), and package specifications (8-SOIC) with the LM258DRE4. All variants are active products with full RoHS3 compliance and MSL 1 rating. The LM358 series offers improved gain bandwidth product (1000 kHz versus 700 kHz) and lower input offset voltage (2 mV versus 3 mV), making them superior drop-in replacements. The primary trade-off is a narrower operating temperature range (0°C to 70°C versus -25°C to 85°C), which is acceptable for most commercial and industrial applications.

Tier 2: Alternative General-Purpose Amplifiers (Extended Temperature or Performance)

The BA10358F-E1 from Rohm Semiconductor provides a functionally equivalent alternative with identical supply voltage range and package. It maintains the -40°C to 85°C operating temperature range, extending low-temperature capability beyond the LM358 series. However, output current per channel is reduced to 20 mA, limiting its use to applications requiring less than 40 mA output.

The AD706ARZ-REEL from Analog Devices offers superior input bias current (50 pA versus 20 nA) and input offset voltage (30 µV versus 3 mV), with extended temperature range (-40°C to 85°C). The supply voltage range extends to 36V maximum. Output current is limited to 15 mA per channel, restricting applicability to lower-current designs.

Tier 3: High-Performance Alternatives (Specialized Applications)

The ADA4000-2ARZ-RL and ADA4062-2BRZ-R7 from Analog Devices are J-FET input amplifiers offering significantly lower input bias current (5 pA and 2 pA respectively) and extended operating temperature to 125°C. These parts are suitable for applications requiring ultra-low input bias current or extended temperature operation. However, minimum supply voltage requirements (8V) exceed the LM258DRE4 specification, restricting use in 3V to 8V supply applications.

The ADA4004-2ARZ-R7 and ADA4004-2ARZ-RL offer the highest gain bandwidth product (12 MHz) and slew rate (2.7 V/µs) among substitutes, suitable for high-speed signal conditioning. Minimum supply voltage is 10V, and output current is limited to 10 mA per channel.

Compliance and Availability:

All recommended substitutes maintain RoHS3 compliance and MSL 1 (unlimited moisture sensitivity) ratings, ensuring compatibility with modern manufacturing and storage requirements. Inventory availability is confirmed for all listed parts, with LM358MX/NOPB offering the highest stock level (74,281 units).

Frequently Asked Questions (FAQ)

Q1: Can I directly replace LM258DRE4 with LM358AM/NOPB without circuit modifications?

A: Yes, for applications operating within the 0°C to 70°C temperature range. Both parts share identical supply voltage range (3V to 32V), output current capability (40 mA per channel), and 8-SOIC package. The LM358 offers superior electrical performance (higher gain bandwidth product, lower input offset voltage). If your application requires operation below 0°C or above 70°C, the LM258DRE4 operating range (-25°C to 85°C) is broader, and alternative substitutes should be evaluated.

Q2: What is the difference between LM358AM/NOPB, LM358AMX/NOPB, LM358M/NOPB, and LM358MX/NOPB?

A: All four variants are electrically identical with identical electrical specifications. The differences are packaging and distribution format: AM/NOPB and M/NOPB are supplied in Tube packaging; AMX/NOPB and MX/NOPB are supplied in Cut Tape (CT) & Digi-Reel® format. Selection depends on your procurement and assembly requirements. LM358MX/NOPB offers the highest inventory availability.

Q3: Why does the LM258DRE4 show as "Obsolete" if substitutes are available?

A: Obsolete status indicates Texas Instruments has discontinued manufacturing and formal support for this part number. However, 722 units remain in current inventory as new original stock. Identifying active substitute parts ensures long-term design sustainability and supply chain continuity beyond current inventory depletion.

Q4: Can I use BA10358F-E1 as a substitute if my application requires 40 mA output current per channel?

A: No. The BA10358F-E1 is rated for 20 mA output current per channel, which is insufficient for applications requiring 40 mA. Use LM358 series variants or higher-current alternatives such as ADA4062-2BRZ-R7 (20 mA per channel) for applications demanding full 40 mA output capability.

Q5: Which substitute should I use if my application operates at supply voltages below 4V?

A: The LM358 series (3V minimum), AD706ARZ-REEL (4V minimum), and BA10358F-E1 (3V minimum) all support operation at 3V supply. The ADA4000-2ARZ-RL, ADA4004 variants, and ADA4062-2BRZ-R7 require minimum supply voltages of 8V to 10V and are unsuitable for low-voltage applications.

Q6: What is the impact of the narrower operating temperature range of LM358 variants?

A: LM358 variants operate from 0°C to 70°C, compared to LM258DRE4 range of -25°C to 85°C. For applications requiring operation below 0°C or above 70°C, use BA10358F-E1 (-40°C to 85°C), AD706ARZ-REEL (-40°C to 85°C), or Analog Devices J-FET variants (-40°C to 125°C). Verify your application's actual temperature requirements before selecting a substitute.

Q7: Are all substitute parts RoHS3 compliant?

A: Yes. All listed substitute parts carry RoHS3 compliance certification and MSL 1 (unlimited moisture sensitivity) rating, matching the LM258DRE4 environmental compliance profile. This ensures compatibility with modern manufacturing processes and regulatory requirements.

Q8: Which substitute offers the best input offset voltage performance?

A: The ADA4004-2ARZ-R7 and ADA4004-2ARZ-RL offer the lowest input offset voltage at 40 µV, followed by AD706ARZ-REEL at 30 µV. However, these parts have higher minimum supply voltage requirements (10V and 4V respectively) and reduced output current capability (10 mA and 15 mA per channel). For applications requiring low offset voltage within the 3V to 32V supply range and 40 mA output current, LM358 variants (2 mV offset) are the optimal choice.

Q9: Can I use ADA4000-2ARZ-RL or ADA4062-2BRZ-R7 in a 3V supply application?

A: No. Both parts require minimum supply voltages of 8V (ADA4000-2ARZ-RL) and 8V (ADA4062-2BRZ-R7), exceeding the LM258DRE4 minimum of 3V. These J-FET input amplifiers are suitable only for applications with supply voltages of 8V or higher.

Q10: What packaging options are available for LM358 substitutes?

A: LM358 variants are available in two packaging formats: Tube (LM358AM/NOPB, LM358M/NOPB) and Cut Tape (CT) & Digi-Reel® (LM358AMX/NOPB, LM358MX/NOPB). All variants use identical 8-SOIC (0.154", 3.90mm width) surface mount package. Selection depends on your assembly process and procurement workflow.

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