Datasheets
LM358N by:

Low-power dual op-amps with low input bias current

Part Details for LM358N by STMicroelectronics

Overview of LM358N by STMicroelectronics

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Price & Stock for LM358N

Part # Distributor Description Stock Price Buy
Bristol Electronics   50
RFQ
Bristol Electronics   12
RFQ
Bristol Electronics   13
RFQ
Bristol Electronics   274
RFQ
Quest Components Operational Amplifier, Dual AMP, Bipolar, 8 Pin, Plastic, DIP 9
  • 1 $0.9000
  • 7 $0.7200
$0.7200 / $0.9000 Buy Now
ComSIT USA LOW-POWER DUAL OPERATIONAL AMPLIFIERS Operational Amplifier, 2 Func, 9000uV Offset-Max, BIPolar, PDIP8 RoHS: Compliant Europe - 50
RFQ
Velocity Electronics Our Stock 7
RFQ
Chip 1 Exchange INSTOCK 2451
RFQ
Component Electronics, Inc IN STOCK SHIP TODAY 251
  • 1 $1.9200
  • 100 $1.4400
  • 1,000 $1.2500
$1.2500 / $1.9200 Buy Now
DISTI # 9755900
element14 Asia-Pacific OP AMP, DUAL, 1MHZ, L PWR, 8DIP RoHS: Compliant Min Qty: 5 Container: Each 0
  • 5 $0.2800
  • 10 $0.2572
  • 100 $0.2417
  • 500 $0.2263
  • 1,000 $0.2101
  • 5,000 $0.2065
  • 10,000 $0.2021
$0.2021 / $0.2800 Buy Now
DISTI # 9755900
Farnell OP AMP, DUAL, 1MHZ, L PWR, 8DIP RoHS: Compliant Min Qty: 1 Lead time: 41 Weeks, 1 Days Container: Each 0
  • 1 $0.5130
  • 10 $0.2865
  • 100 $0.2127
  • 250 $0.1677
  • 500 $0.1376
  • 2,000 $0.1239
  • 4,000 $0.1115
  • 20,000 $0.1003
$0.1003 / $0.5130 Buy Now

Part Details for LM358N

LM358N CAD Models

LM358N Part Data Attributes

LM358N STMicroelectronics
Buy Now Datasheet
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LM358N STMicroelectronics Low-power dual op-amps with low input bias current
Rohs Code Yes
Part Life Cycle Code Obsolete
Ihs Manufacturer STMICROELECTRONICS
Part Package Code DIP
Package Description ROHS COMPLIANT, PLASTIC, DIP-8
Pin Count 8
Reach Compliance Code unknown
ECCN Code EAR99
HTS Code 8542.33.00.01
Samacsys Manufacturer STMicroelectronics
Amplifier Type OPERATIONAL AMPLIFIER
Architecture VOLTAGE-FEEDBACK
Average Bias Current-Max (IIB) 0.2 µA
Bias Current-Max (IIB) @25C 0.15 µA
Common-mode Reject Ratio-Nom 85 dB
Frequency Compensation YES
Input Offset Voltage-Max 9000 µV
JESD-30 Code R-PDIP-T8
JESD-609 Code e3
Length 9.27 mm
Low-Offset NO
Number of Functions 2
Number of Terminals 8
Operating Temperature-Max 70 °C
Operating Temperature-Min
Package Body Material PLASTIC/EPOXY
Package Code DIP
Package Equivalence Code DIP8,.3
Package Shape RECTANGULAR
Package Style IN-LINE
Packing Method TUBE
Qualification Status Not Qualified
Seated Height-Max 5.33 mm
Slew Rate-Min 0.3 V/us
Slew Rate-Nom 0.6 V/us
Supply Current-Max 2 mA
Supply Voltage Limit-Max 32 V
Supply Voltage-Nom (Vsup) 5 V
Surface Mount NO
Technology BIPOLAR
Temperature Grade COMMERCIAL
Terminal Finish MATTE TIN
Terminal Form THROUGH-HOLE
Terminal Pitch 2.54 mm
Terminal Position DUAL
Unity Gain BW-Nom 1100
Voltage Gain-Min 25000
Width 7.62 mm

Alternate Parts for LM358N

This table gives cross-reference parts and alternative options found for LM358N. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of LM358N, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Description Manufacturer Compare
LM358NG Operational Amplifier, Single Supply, Dual, 8 LEAD PDIP, 50-TUBE onsemi LM358N vs LM358NG
LM358N Operational Amplifier, 2 Func, 9000uV Offset-Max, PDIP8, DIP-8 HTC Korea LM358N vs LM358N
LM358N IC DUAL OP-AMP, 9000 uV OFFSET-MAX, 1 MHz BAND WIDTH, PDIP8, 0.300 INCH, PLASTIC, DIP-8, Operational Amplifier NXP Semiconductors LM358N vs LM358N
LM358N/NOPB Dual, 32-V, 1-MHz op amp 8-PDIP 0 to 70 Texas Instruments LM358N vs LM358N/NOPB
LM358N DUAL OP-AMP, 9000uV OFFSET-MAX, 1MHz BAND WIDTH, PDIP8, PLASTIC, DIP-8 Texas Instruments LM358N vs LM358N
KA358 Dual Operational Amplifier, 3000-TUBE onsemi LM358N vs KA358
LM358N DUAL OP-AMP, 9000uV OFFSET-MAX, 1MHz BAND WIDTH, PDIP8 Intersil Corporation LM358N vs LM358N
LM358N Operational Amplifier, 2 Func, 9000uV Offset-Max, BIPolar, PDIP8, DIP-8 Fairchild Semiconductor Corporation LM358N vs LM358N
Part Number Description Manufacturer Compare
KA358 Dual Operational Amplifier, 3000-TUBE onsemi LM358N vs KA358
KA358DTF Dual Operational Amplifier, 3000-REEL onsemi LM358N vs KA358DTF
LM358DG Operational Amplifier, Single Supply, Dual, SOIC-8 Narrow Body, 98-TUBE onsemi LM358N vs LM358DG
LM358MX/NOPB Dual, 32-V, 1-MHz op amp 8-SOIC 0 to 70 Texas Instruments LM358N vs LM358MX/NOPB
KA358D Operational Amplifier, 2 Func, 9000uV Offset-Max, BIPolar, PDSO8, SOIC-8 Fairchild Semiconductor Corporation LM358N vs KA358D
LM358N DUAL OP-AMP, 9000uV OFFSET-MAX, 1MHz BAND WIDTH, PDIP8, PLASTIC, DIP-8 Texas Instruments LM358N vs LM358N
LM358N IC DUAL OP-AMP, 9000 uV OFFSET-MAX, 1 MHz BAND WIDTH, PDIP8, 0.300 INCH, PLASTIC, DIP-8, Operational Amplifier NXP Semiconductors LM358N vs LM358N
LM358N DUAL OP-AMP, 9000uV OFFSET-MAX, 1MHz BAND WIDTH, PDIP8 Intersil Corporation LM358N vs LM358N
LM358N Operational Amplifier, 2 Func, 9000uV Offset-Max, PDIP8, DIP-8 HTC Korea LM358N vs LM358N
LM358DR2G Operational Amplifier, Single Supply, Dual, SOIC-8 Narrow Body, 2500-REEL onsemi LM358N vs LM358DR2G

Resources and Additional Insights for LM358N

Reference Designs related to LM358N

  • High Efficiency and Low Total Harmonic Distortion 200W AC-DC LED Driver Reference Design
    The PMP20612 reference design is a high efficiency AC-DC LED driver reference design with very low total harmonic distortion (THD). This design uses CCM PFC with the UCC28180 controller to provide power factor correction (PFC) functionality from 108VAC to 305VAC input. A two-switch Flyback converter with the UCC28740 controller is used to provide 200V/1A constant current (CC)/ constant voltage (CV). The voltage sensing and current sensing circuit at the output side with the TL431 and INA180 allow an external circuit to process a dimming function. As a result this design achieves 92.9% peak efficiency at 230VAC/50Hz input. At 277VAC: the board also has less than 20% THD with 20% load.
  • 360-W PFC to full-bridge battery charger reference design
    This reference design is comprised of a PFC boost: hard-switched full-bridge and bias flyback to make a universal AC-input battery charger. The charging current is configurable with a maximum value of 6 A. The output voltage can vary from 18-V to 63-V maximum charge and is also configurable. The PFC stage utilizes the UCC28180 CCM PFC controller to maximize efficiency. The UCC2808A push-pull controller and two UCC27710 half-bridge drivers create the full-bridge power stage. The bias flyback uses the UCC28911 integrated MOSFET flyback converter.
  • 6-12V Input to 1.5V/1.5A Output Reference Design with CC/CV Controls
    The PMP10928 reference design uses the TPS5402 non-synchronous Buck controller along with INA213 current shunt monitor to achieve CC/CV control for an 1.5V/1.5A output from 6-12V input voltage.  +/-5% voltage regulation in CV mode and +/-5% in CC mode is achieved in this design. It is notable that this design allow the output voltage as low as 0.4V in CC mode.
  • 200W 92% Efficient Low THD 10% Dimmable AC/DC LED Driver Reference Design With Adjustable Output
    This reference design is a 200-W: dimmable: low THD AC/DC LED power supply with a tunable output voltage from 100 to 200 V. It is designed for use in outdoor lighting applications such as street lighting: road lighting: and so on. This design uses a CCM PFC as front end to achieve low  THD and high power factor and proposes two-switch flyback architecture as second stage which helps to meet the cost: efficiency : and design simplicity aspects of LED power supply with adjustable output voltage.
  • 200W PFC + LCC resonant converter reference design for LED lighting
    This reference design uses the UCC28180 CCM PFC controller and the UCC256301 Wide Vin resonant controller as an LCC controller with an integrated driver. It provides up to 200-W constant current or constant voltage output from a universal AC input. An external analog dimming voltage signal can be applied to dynamically adjust output current for dimming LED loads.

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