N-channel enhancement mode power MOSFET featuring a 30V drain-source voltage and 4A continuous drain current. This single-element transistor is housed in a compact 1.6mm x 1.6mm x 0.55mm DFN EP package with 6 pins and a 0.5mm pin pitch, designed for surface mounting. Key electrical characteristics include a maximum gate-source voltage of ±12V, a gate threshold voltage of 1.5V, and a low drain-source on-resistance of 54mΩ at 10V. The component offers typical gate charge values of 5.7nC at 10V and 2.6nC at 4.5V, with an input capacitance of 245pF at 15V. Maximum power dissipation is rated at 1800mW, with an operating temperature range from -55°C to 150°C.
Alpha & Omega AON1634 technical specifications.
| Basic Package Type | Non-Lead-Frame SMT |
| Package Family Name | DFN |
| Package/Case | DFN EP |
| Package Description | Dual Flat Package No Lead, Exposed Pad |
| Lead Shape | No Lead |
| Pin Count | 6 |
| PCB | 6 |
| Package Length (mm) | 1.6 |
| Package Width (mm) | 1.6 |
| Package Height (mm) | 0.55(Max) |
| Seated Plane Height (mm) | 0.55 |
| Pin Pitch (mm) | 0.5 |
| Package Material | Plastic |
| Mounting | Surface Mount |
| Configuration | Single |
| Category | Power MOSFET |
| Channel Mode | Enhancement |
| Channel Type | N |
| Number of Elements per Chip | 1 |
| Maximum Drain Source Voltage | 30V |
| Maximum Gate Source Voltage | ±12V |
| Maximum Continuous Drain Current | 4A |
| Maximum Gate Threshold Voltage | 1.5V |
| Maximum Drain Source Resistance | 54@10VmOhm |
| Typical Gate Charge @ Vgs | 5.7@10V|[email protected]nC |
| Typical Gate Charge @ 10V | 5.7nC |
| Typical Input Capacitance @ Vds | 245@15VpF |
| Maximum Power Dissipation | 1800mW |
| Min Operating Temperature | -55°C |
| Max Operating Temperature | 150°C |
| Cage Code | 6USE7 |
| EU RoHS | Yes with Exemption |
| HTS Code | 8541290095 |
| Schedule B | 8541290080 |
| ECCN | EAR99 |
| RoHS Versions | 2011/65/EU, 2015/863 |
Download the complete datasheet for Alpha & Omega AON1634 to view detailed technical specifications.
This datasheet cannot be embedded due to technical restrictions.