MBRS130LT3G by Onsemi

MBRS130LT3G Onsemi

  • Manufacturer
    Onsemi
  • Mfg Part Number
    MBRS130LT3G
  • In Stock
    No Quantity Available
  • Lifecycle Status
    Active

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Description

RECTIFIER DIODE; Terminal Position: DUAL; Terminal Form: C BEND; No. of Terminals: 2; Surface Mount: YES; Package Shape: RECTANGULAR;

We pick, pack, and dispatch all orders within 24-48 hours from order confirmation. Some parts may require additional testing to ensure the highest degree of quality.

Package Body Material: PLASTIC/EPOXY
Maximum Time At Peak Reflow Temperature (s): 30
Maximum Forward Voltage (VF): .445 V
Config: SINGLE
Diode Type: RECTIFIER DIODE
Maximum Output Current: 1 A
Sub-Category: Rectifier Diodes
Surface Mount: YES
Terminal Finish: MATTE TIN
Maximum Reverse Current: 1000 uA
No. of Terminals: 2
Terminal Position: DUAL
Package Style (Meter): SMALL OUTLINE
Technology: SCHOTTKY
JESD-30 Code: R-PDSO-C2
No. of Elements: 1
Package Shape: RECTANGULAR
Terminal Form: C BEND
Maximum Operating Temperature: 125 Cel
Moisture Sensitivity Level (MSL): 1
No. of Phases: 1
Reverse Test Voltage: 30 V
Maximum Repetitive Peak Reverse Voltage: 30 V
JEDEC-95 Code: DO-214AA
JESD-609 Code: e3
Minimum Operating Temperature: -65 Cel
Maximum Non Repetitive Peak Forward Current: 40 A
Diode Element Material: SILICON
Qualification: Not Qualified
Additional Features: FREE WHEELING DIODE
Peak Reflow Temperature (C): 260
Application: POWER

Package Body Material: PLASTIC/EPOXY

The use of plastic/epoxy material makes the package lightweight and durable, ideal for power applications.

Maximum Reverse Current: 1000 uA

Low reverse current ensures efficient operation and minimizes power loss.

Maximum Operating Temperature: 125 °C

Can withstand high temperatures, making it suitable for a wide range of operating environments.

Diode Type: RECTIFIER DIODE

Rectifier diodes are specifically designed for power applications, ensuring reliability and performance.

Technology: SCHOTTKY

Schottky diodes have low forward voltage drop and fast switching capabilities, making them efficient for power applications.

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