MBR130T1G Onsemi
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ManufacturerOnsemi
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Mfg Part NumberMBR130T1G
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In StockNo Quantity Available
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Lifecycle StatusActive
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Description
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): | .35 V |
| Config: | SINGLE |
| Diode Type: | RECTIFIER DIODE |
| Maximum Output Current: | 1 A |
| Sub-Category: | Rectifier Diodes |
| Surface Mount: | YES |
| Terminal Finish: | MATTE TIN |
| No. of Terminals: | 2 |
| Terminal Position: | DUAL |
| Package Style (Meter): | SMALL OUTLINE |
| Technology: | SCHOTTKY |
| JESD-30 Code: | R-PDSO-G2 |
| No. of Elements: | 1 |
| Package Shape: | RECTANGULAR |
| Terminal Form: | GULL WING |
| Maximum Operating Temperature: | 125 Cel |
| Moisture Sensitivity Level (MSL): | 1 |
| Other Names: | ONSONSMBR130T1G<br>MBR130T1GOSDKR<br>MBR130T1GOSCT<br>2156-MBR130T1G-OS<br>MBR130T1GOSTR |
| No. of Phases: | 1 |
| Maximum Repetitive Peak Reverse Voltage: | 30 V |
| JESD-609 Code: | e3 |
| Minimum Operating Temperature: | -65 Cel |
| Maximum Non Repetitive Peak Forward Current: | 5.5 A |
| Diode Element Material: | SILICON |
| Qualification: | Not Qualified |
| Additional Features: | FREE WHEELING DIODE |
| Peak Reflow Temperature (C): | 260 |
Package Body Material: PLASTIC/EPOXY
Provides durability and protection for the diode, ensuring a longer lifespan.
Config: SINGLE
Simplified design with single configuration for easy installation and usage.
Surface Mount: YES
Allows for easy and efficient mounting on circuit boards, saving space.
Maximum Operating Temperature: 125 °C
Can operate efficiently at high temperatures, increasing versatility in different applications.
Diode Type: RECTIFIER DIODE
Specifically designed for rectifying alternating current, making it suitable for a wide range of applications.
Technology: SCHOTTKY
Schottky technology offers low forward voltage drop and fast switching, improving efficiency.