onsemi NVTFS N-Channel MOSFET, 28.3 A, 30 V, 8-Pin WDFN NVTFS4C02NTAG
- RS Stock No.:
- 221-6760
- Mfr. Part No.:
- NVTFS4C02NTAG
- Brand:
- onsemi
Bulk discount available
Subtotal (1 pack of 10 units)*
£13.39
(exc. VAT)
£16.07
(inc. VAT)
FREE delivery for orders over £50.00
Temporarily out of stock
- 1,430 unit(s) shipping from 04 November 2025
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units | Per unit | Per Pack* |
|---|---|---|
| 10 - 90 | £1.339 | £13.39 |
| 100 - 240 | £1.154 | £11.54 |
| 250 + | £1.001 | £10.01 |
*price indicative
- RS Stock No.:
- 221-6760
- Mfr. Part No.:
- NVTFS4C02NTAG
- Brand:
- onsemi
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | onsemi | |
| Channel Type | N | |
| Maximum Continuous Drain Current | 28.3 A | |
| Maximum Drain Source Voltage | 30 V | |
| Series | NVTFS | |
| Package Type | WDFN | |
| Mounting Type | Surface Mount | |
| Pin Count | 8 | |
| Maximum Drain Source Resistance | 0.0031 Ω | |
| Channel Mode | Enhancement | |
| Maximum Gate Threshold Voltage | 2.2V | |
| Number of Elements per Chip | 1 | |
| Transistor Material | Si | |
| Select all | ||
|---|---|---|
Brand onsemi | ||
Channel Type N | ||
Maximum Continuous Drain Current 28.3 A | ||
Maximum Drain Source Voltage 30 V | ||
Series NVTFS | ||
Package Type WDFN | ||
Mounting Type Surface Mount | ||
Pin Count 8 | ||
Maximum Drain Source Resistance 0.0031 Ω | ||
Channel Mode Enhancement | ||
Maximum Gate Threshold Voltage 2.2V | ||
Number of Elements per Chip 1 | ||
Transistor Material Si | ||
The ON Semiconductor Automotive power MOSFET in a 3x3mm flat lead package designed for compact and efficient designs and including high thermal performance. The wettable flank option available for enhanced optical inspection. It used AEC-Q101 Qualified MOSFET and PPAP capable suitable for automotive applications.
Low RDS(on) to minimize conduction losses
Low capacitance to minimize driver losses
Low capacitance to minimize driver losses
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