Technical Document
Specifications
Brand
VishayMounting Type
Surface Mount
Package Type
SMP
Maximum Continuous Forward Current
1A
Peak Reverse Repetitive Voltage
60V
Diode Configuration
Single
Rectifier Type
Schottky Rectifier
Diode Type
Schottky
Pin Count
2
Number of Elements per Chip
1
Diode Technology
Schottky Barrier
Peak Non-Repetitive Forward Surge Current
50A
Country of Origin
China
Product details
High Performance Schottky Rectifiers, 1A to 1.5A, Vishay Semiconductor
A range of Schottky Rectifiers from Vishay Semiconductor. These diodes exhibit very low forward voltage drop with a very fast switching action. The reverse recovery times of Schottky diodes are extremely short and they are suitable for applications requiring fast switching and low power loss.
Schottky Rectifiers, Vishay Semiconductor
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0.130 OMR
Each (Supplied on a Reel) (ex VAT)
0.136 OMR
Each (Supplied on a Reel) (inc VAT)
Production pack (Reel)
20
0.130 OMR
Each (Supplied on a Reel) (ex VAT)
0.136 OMR
Each (Supplied on a Reel) (inc VAT)
Production pack (Reel)
20
Buy in bulk
quantity | Unit price | Per Reel |
---|---|---|
20 - 180 | 0.130 OMR | 2.600 OMR |
200 - 980 | 0.115 OMR | 2.300 OMR |
1000 - 1980 | 0.110 OMR | 2.200 OMR |
2000 - 4980 | 0.105 OMR | 2.100 OMR |
5000+ | 0.105 OMR | 2.100 OMR |
Technical Document
Specifications
Brand
VishayMounting Type
Surface Mount
Package Type
SMP
Maximum Continuous Forward Current
1A
Peak Reverse Repetitive Voltage
60V
Diode Configuration
Single
Rectifier Type
Schottky Rectifier
Diode Type
Schottky
Pin Count
2
Number of Elements per Chip
1
Diode Technology
Schottky Barrier
Peak Non-Repetitive Forward Surge Current
50A
Country of Origin
China
Product details
High Performance Schottky Rectifiers, 1A to 1.5A, Vishay Semiconductor
A range of Schottky Rectifiers from Vishay Semiconductor. These diodes exhibit very low forward voltage drop with a very fast switching action. The reverse recovery times of Schottky diodes are extremely short and they are suitable for applications requiring fast switching and low power loss.