onsemi PowerTrench N-Channel MOSFET, 50 A, 250 V, 3-Pin TO-220 FDP2710
- RS Stock No.:
- 864-8546P
- Mfr. Part No.:
- FDP2710
- Brand:
- onsemi
Subtotal 20 units (supplied in a tube)*
£66.40
(exc. VAT)
£79.60
(inc. VAT)
FREE delivery for orders over £50.00
- 800 unit(s) ready to ship
Units | Per unit |
|---|---|
| 20 + | £3.32 |
*price indicative
- RS Stock No.:
- 864-8546P
- Mfr. Part No.:
- FDP2710
- Brand:
- onsemi
Select all | Attribute | Value |
|---|---|---|
| Brand | onsemi | |
| Channel Type | N | |
| Maximum Continuous Drain Current | 50 A | |
| Maximum Drain Source Voltage | 250 V | |
| Package Type | TO-220 | |
| Series | PowerTrench | |
| Mounting Type | Through Hole | |
| Pin Count | 3 | |
| Maximum Drain Source Resistance | 42 mΩ | |
| Channel Mode | Enhancement | |
| Minimum Gate Threshold Voltage | 3V | |
| Maximum Power Dissipation | 260 W | |
| Transistor Configuration | Single | |
| Maximum Gate Source Voltage | -30 V, +30 V | |
| Length | 10.67mm | |
| Typical Gate Charge @ Vgs | 78 nC @ 10 V | |
| Maximum Operating Temperature | +150 °C | |
| Number of Elements per Chip | 1 | |
| Width | 4.83mm | |
| Transistor Material | Si | |
| Height | 16.51mm | |
| Minimum Operating Temperature | -55 °C | |
| Select all | ||
|---|---|---|
Brand onsemi | ||
Channel Type N | ||
Maximum Continuous Drain Current 50 A | ||
Maximum Drain Source Voltage 250 V | ||
Package Type TO-220 | ||
Series PowerTrench | ||
Mounting Type Through Hole | ||
Pin Count 3 | ||
Maximum Drain Source Resistance 42 mΩ | ||
Channel Mode Enhancement | ||
Minimum Gate Threshold Voltage 3V | ||
Maximum Power Dissipation 260 W | ||
Transistor Configuration Single | ||
Maximum Gate Source Voltage -30 V, +30 V | ||
Length 10.67mm | ||
Typical Gate Charge @ Vgs 78 nC @ 10 V | ||
Maximum Operating Temperature +150 °C | ||
Number of Elements per Chip 1 | ||
Width 4.83mm | ||
Transistor Material Si | ||
Height 16.51mm | ||
Minimum Operating Temperature -55 °C | ||
PowerTrench® N-Channel MOSFET, 20A to 59.9A, Fairchild Semiconductor
ON Semi MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
