onsemi NCV51561BBDWR2G, Gate Driver, 9 A 16-Pin 30 V, SOIC
- RS Stock No.:
- 254-7650
- Mfr. Part No.:
- NCV51561BBDWR2G
- Manufacturer:
- onsemi
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Subtotal (1 unit)*
PHP273.22
(exc. VAT)
PHP306.01
(inc. VAT)
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In Stock
- 1,000 unit(s) ready to ship from another location
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Units | Per Unit |
|---|---|
| 1 - 9 | PHP273.22 |
| 10 - 99 | PHP244.94 |
| 100 - 249 | PHP231.44 |
| 250 - 499 | PHP200.58 |
| 500 + | PHP190.31 |
*price indicative
- RS Stock No.:
- 254-7650
- Mfr. Part No.:
- NCV51561BBDWR2G
- Manufacturer:
- onsemi
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | onsemi | |
| Product Type | Gate Driver Module | |
| Output Current | 9A | |
| Pin Count | 16 | |
| Fall Time | 19ns | |
| Package Type | SOIC | |
| Driver Type | Gate Driver | |
| Rise Time | 30ns | |
| Minimum Supply Voltage | 30V | |
| Maximum Supply Voltage | 30V | |
| Minimum Operating Temperature | -40°C | |
| Maximum Operating Temperature | 150°C | |
| Standards/Approvals | No | |
| Series | NCV51 | |
| Mount Type | PCB | |
| Automotive Standard | No | |
| Select all | ||
|---|---|---|
Brand onsemi | ||
Product Type Gate Driver Module | ||
Output Current 9A | ||
Pin Count 16 | ||
Fall Time 19ns | ||
Package Type SOIC | ||
Driver Type Gate Driver | ||
Rise Time 30ns | ||
Minimum Supply Voltage 30V | ||
Maximum Supply Voltage 30V | ||
Minimum Operating Temperature -40°C | ||
Maximum Operating Temperature 150°C | ||
Standards/Approvals No | ||
Series NCV51 | ||
Mount Type PCB | ||
Automotive Standard No | ||
The ON Semiconductor NCV series of isolated dual-channel gate drivers with 4.5A peak source and 9A source and sink peak current. They are designed for fast switching to drive power mosfets, and sic mosfet power switches. It offers short and matched propagation delays. It also offers other important protection functions such as independent under-voltage lockout for both gate drivers and enable function.
Improve efficiency and allow direct drive of high power switches
Offer flexibility in design and topologies
Provide safety and protection in applications requiring high isolation level
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