Datasheets
LT1026CN8#PBF by:

LT1026 - Voltage Converter; Package: PDIP; Pins: 8; Temperature Range: 0°C to 70°C

Part Details for LT1026CN8#PBF by Linear Technology

Results Overview of LT1026CN8#PBF by Linear Technology

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LT1026CN8#PBF Information

LT1026CN8#PBF by Linear Technology is a Switching Regulator or Controller.
Switching Regulator or Controllers are under the broader part category of Power Circuits.

A power circuit delivers electricity in order to operate a load for an electronic device. Power circuits include transformers, generators and switches. Read more about Power Circuits on our Power Circuits part category page.

Price & Stock for LT1026CN8#PBF

Part # Distributor Description Stock Price Buy
Bristol Electronics   1000
RFQ
Quest Components   800
  • 1 $5.1840
  • 314 $2.8512
  • 702 $2.5920
$2.5920 / $5.1840 Buy Now
Vyrian Other Function Semiconductors 379
RFQ

Part Details for LT1026CN8#PBF

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LT1026CN8#PBF Part Data Attributes

LT1026CN8#PBF Linear Technology
Buy Now Datasheet
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LT1026CN8#PBF Linear Technology LT1026 - Voltage Converter; Package: PDIP; Pins: 8; Temperature Range: 0°C to 70°C
Rohs Code Yes
Part Life Cycle Code Transferred
Ihs Manufacturer LINEAR TECHNOLOGY CORP
Part Package Code DIP
Package Description 0.300 INCH, PLASTIC, DIP-8
Pin Count 8
Manufacturer Package Code N
Reach Compliance Code compliant
ECCN Code EAR99
HTS Code 8542.39.00.01
Analog IC - Other Type SWITCHED CAPACITOR CONVERTER
Input Voltage-Max 10 V
Input Voltage-Min 4 V
Input Voltage-Nom 5 V
JESD-30 Code R-PDIP-T8
JESD-609 Code e3
Moisture Sensitivity Level 1
Number of Functions 1
Number of Terminals 8
Operating Temperature-Max 70 °C
Operating Temperature-Min
Output Current-Max 0.015 A
Output Voltage-Nom 18.5 V
Package Body Material PLASTIC/EPOXY
Package Code DIP
Package Equivalence Code DIP8,.3
Package Shape RECTANGULAR
Package Style IN-LINE
Peak Reflow Temperature (Cel) 260
Qualification Status Not Qualified
Seated Height-Max 3.937 mm
Surface Mount NO
Switcher Configuration DOUBLER INVERTER
Technology BIPOLAR
Temperature Grade COMMERCIAL
Terminal Finish MATTE TIN
Terminal Form THROUGH-HOLE
Terminal Pitch 2.54 mm
Terminal Position DUAL
Time@Peak Reflow Temperature-Max (s) 30
Width 7.62 mm

Alternate Parts for LT1026CN8#PBF

This table gives cross-reference parts and alternative options found for LT1026CN8#PBF. 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 LT1026CN8#PBF, 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 Manufacturer Composite Price Description Compare
LT1026MJ8 Linear Technology Check for Price IC SWITCHED CAPACITOR CONVERTER, CDIP8, 0.300 INCH, HERMETIC SEALED, CERDIP-8, Switching Regulator or Controller LT1026CN8#PBF vs LT1026MJ8
LT1026CN8#PBF Analog Devices Inc Check for Price Voltage Converter LT1026CN8#PBF vs LT1026CN8#PBF
Part Number Manufacturer Composite Price Description Compare
LT1026CS8#PBF Analog Devices Inc $4.7779 Voltage Converter LT1026CN8#PBF vs LT1026CS8#PBF
LT1026IS8#PBF Analog Devices Inc $5.5054 Voltage Converter LT1026CN8#PBF vs LT1026IS8#PBF
LT1026CN8 Linear Technology Check for Price LT1026 - Voltage Converter; Package: PDIP; Pins: 8; Temperature Range: 0°C to 70°C LT1026CN8#PBF vs LT1026CN8
LT1026CN Linear Technology Check for Price IC SWITCHED CAPACITOR CONVERTER, PDIP8, MINI, PLASTIC, DIP-8, Switching Regulator or Controller LT1026CN8#PBF vs LT1026CN
LT1026CJ8 Linear Technology Check for Price IC SWITCHED CAPACITOR CONVERTER, CDIP8, 0.300 INCH, HERMETIC SEALED, CERDIP-8, Switching Regulator or Controller LT1026CN8#PBF vs LT1026CJ8
LT1026CN8 Analog Devices Inc Check for Price Switched Capacitor Converter, BIPolar, PDIP8 LT1026CN8#PBF vs LT1026CN8
MAX680ESA-T Maxim Integrated Products Check for Price Switched Capacitor Converter, 0.01A, 8kHz Switching Freq-Max, CMOS, PDSO8, 0.150 INCH, SOP-8 LT1026CN8#PBF vs MAX680ESA-T
TCM680COATR Microchip Technology Inc Check for Price SWITCHED CAPACITOR CONVERTER, 8 kHz SWITCHING FREQ-MAX, PDSO8, SOIC-8 LT1026CN8#PBF vs TCM680COATR
LT1026CS8#TR Linear Technology Check for Price LT1026 - Voltage Converter; Package: SO; Pins: 8; Temperature Range: 0°C to 70°C LT1026CN8#PBF vs LT1026CS8#TR
MAX680ESA+T Maxim Integrated Products Check for Price Switched Capacitor Converter, 0.01A, 8kHz Switching Freq-Max, CMOS, PDSO8, 0.150 INCH, SOP-8 LT1026CN8#PBF vs MAX680ESA+T

LT1026CN8#PBF Frequently Asked Questions (FAQ)

  • A good PCB layout for the LT1026CN8 involves keeping the input and output traces short and separate, using a solid ground plane, and placing the bypass capacitors close to the device. A 4-layer PCB with a dedicated power plane and a dedicated ground plane is recommended.

  • To ensure stability, make sure to follow the recommended capacitor values and types, keep the output capacitor ESR low, and avoid capacitive loads. Also, ensure that the input voltage is within the recommended range and the device is operated within its specified temperature range.

  • The maximum power dissipation of the LT1026CN8 is dependent on the package type and the ambient temperature. For the CN8 package, the maximum power dissipation is approximately 1.4W at 25°C ambient temperature. However, it's recommended to derate the power dissipation based on the ambient temperature and the device's thermal resistance.

  • The LT1026CN8 is rated for operation up to 125°C junction temperature. However, the device's performance and reliability may degrade at high temperatures. It's recommended to derate the device's performance and ensure proper thermal management to prevent overheating.

  • To troubleshoot oscillations or instability issues, check the PCB layout, ensure that the input and output capacitors are properly selected and placed, and verify that the device is operated within its specified voltage and temperature ranges. Also, check for any parasitic inductance or capacitance in the circuit that may be causing the issue.

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