Vishay Switching Diode, 2-Pin TO-220F UGF8JT-E3/45
- RS Stock No.:
- 818-5213P
- Mfr. Part No.:
- UGF8JT-E3/45
- Brand:
- Vishay
Save 22% when you buy 500 units
Subtotal 50 units (supplied in a tube)*
£93.50
(exc. VAT)
£112.00
(inc. VAT)
FREE delivery for orders over £50.00
Temporarily out of stock
- 245 unit(s) ready to ship
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units | Per unit |
---|---|
50 - 120 | £1.87 |
125 - 245 | £1.766 |
250 - 495 | £1.56 |
500 + | £1.452 |
*price indicative
- RS Stock No.:
- 818-5213P
- Mfr. Part No.:
- UGF8JT-E3/45
- Brand:
- Vishay
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | Vishay | |
Diode Configuration | Single | |
Mounting Type | Through Hole | |
Number of Elements per Chip | 1 | |
Package Type | TO-220F | |
Diode Technology | Silicon Junction | |
Pin Count | 2 | |
Maximum Forward Voltage Drop | 1.75V | |
Minimum Operating Temperature | -55 °C | |
Maximum Operating Temperature | +150 °C | |
Length | 10.26mm | |
Width | 4.83mm | |
Height | 15.24mm | |
Dimensions | 10.26 x 4.83 x 15.24mm | |
Select all | ||
---|---|---|
Brand Vishay | ||
Diode Configuration Single | ||
Mounting Type Through Hole | ||
Number of Elements per Chip 1 | ||
Package Type TO-220F | ||
Diode Technology Silicon Junction | ||
Pin Count 2 | ||
Maximum Forward Voltage Drop 1.75V | ||
Minimum Operating Temperature -55 °C | ||
Maximum Operating Temperature +150 °C | ||
Length 10.26mm | ||
Width 4.83mm | ||
Height 15.24mm | ||
Dimensions 10.26 x 4.83 x 15.24mm | ||
- COO (Country of Origin):
- CN
Ultrafast Recovery Rectifiers 6A to 12A, Vishay Semiconductor
Vishay ultrafast recovery rectifiers have very fast reverse recovery times as low as 15ns and voltage levels as high as 1500V. Typical applications include very high frequency switched mode power supplies (SMPS), inverters, and freewheeling diodes.
Diodes and Rectifiers, Vishay Semiconductor