Microchip 3300 V 90 A Rectifier & Schottky Diode Schottky 2-Pin TO-247 MAX
- RS Stock No.:
- 249-4131
- Mfr. Part No.:
- MSC090SDA330B2
- Brand:
- Microchip
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- RS Stock No.:
- 249-4131
- Mfr. Part No.:
- MSC090SDA330B2
- Brand:
- Microchip
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | Microchip | |
| Product Type | Rectifier & Schottky Diode | |
| Mount Type | Through Hole | |
| Package Type | TO-247 MAX | |
| Maximum Continuous Forward Current If | 90A | |
| Peak Reverse Repetitive Voltage Vrrm | 3300V | |
| Series | MSC090SDA330B2 | |
| Diode Configuration | Anti-Parallel Pair | |
| Rectifier Type | Schottky | |
| Pin Count | 2 | |
| Peak Non-Repetitive Forward Surge Current Ifsm | 615A | |
| Maximum Forward Voltage Vf | 2.4V | |
| Minimum Operating Temperature | -50°C | |
| Maximum Operating Temperature | 175°C | |
| Height | 41.78mm | |
| Standards/Approvals | RoHS | |
| Length | 16.26mm | |
| Automotive Standard | No | |
| Select all | ||
|---|---|---|
Brand Microchip | ||
Product Type Rectifier & Schottky Diode | ||
Mount Type Through Hole | ||
Package Type TO-247 MAX | ||
Maximum Continuous Forward Current If 90A | ||
Peak Reverse Repetitive Voltage Vrrm 3300V | ||
Series MSC090SDA330B2 | ||
Diode Configuration Anti-Parallel Pair | ||
Rectifier Type Schottky | ||
Pin Count 2 | ||
Peak Non-Repetitive Forward Surge Current Ifsm 615A | ||
Maximum Forward Voltage Vf 2.4V | ||
Minimum Operating Temperature -50°C | ||
Maximum Operating Temperature 175°C | ||
Height 41.78mm | ||
Standards/Approvals RoHS | ||
Length 16.26mm | ||
Automotive Standard No | ||
The Microchip's silicon carbide (SiC), power Schottky barrier diode (SBD) product line increases the performance over silicon diode solutions while lowering the total cost of ownership for high-voltage applications. The device is a 3300 V, 90 A SiC SBD in a two-lead T-MAX package. It has features like no reverse recovery, low forward voltage and low leakage current.
High switching frequency and low switching losses
Low noise (EMI) switching and higher reliability systems
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