이미지는 참조용입니다.
BSC066N06NS
+BOMMOSFETs TRENCH 40<-<100V
-
제조업체인피니티 테크놀로지
-
제조업체 부품 #BSC066N06NS
-
데이터시트 BSC066N06NS DataSheet
-
재고3550
365 1일 품질 보증
7*24 영업 시간 서비스 보증
90-판매 후 1일 보증
정품 보증
사양
| 속성 | 가치 |
| Packaging | MouseReel |
| Standard Pack Qty | 5000 |
개요
Description
1. Course Overview: Understand the main themes and objectives. Courses often cover specific subject matter within broader fields like science, technology, humanities, etc.
2. Prerequisites: Ensure you meet any prerequisites or required knowledge, which might include previous coursework or foundational concepts.
3. Learning Outcomes: Familiarize yourself with the skills or knowledge you are expected to gain by the end of the course.
4. Materials and Resources: Identify textbooks, articles, or online resources required for the course.
5. Assessment Methods: Understand how your performance will be evaluated, such as exams, projects, or participation.
6. Schedule and Format: Note the timeline, including important dates for lectures, assignments, and exams.
For specific information, refer to the syllabus or contact the course instructor.
Equivalent
Features
1. Voltage Rating: It typically has a maximum drain-source voltage (V_DS) of 60V, making it suitable for mid-range voltage applications.
2. Current Handling: The device can handle a continuous drain current (I_D) of approximately 66A, ensuring robust performance in power-intensive scenarios.
3. Low On-Resistance: The MOSFET features a low on-state resistance (R_DS(on)) around 6.6 mΩ, minimizing power loss and enhancing efficiency.
4. Fast Switching: It is designed for fast switching, which is crucial for high-frequency applications, reducing switching losses.
5. Thermal Performance: The component is typically housed in a compact, standard package with good thermal conductivity, facilitating efficient heat dissipation.
6. Ruggedness: It offers excellent avalanche and dv/dt capabilities, providing high reliability under demanding conditions.
Overall, the BSC066N06NS is ideal for applications in power management, motor control, and DC-DC converters, where efficiency and reliability are paramount.
Pinout
1. Pin 1 (Gate): This pin is used to control the MOSFET. A voltage applied here regulates the current flow between the drain and source.
2. Pin 2 (Drain): The drain is where the current flows into the MOSFET from the connected load. It is connected to the tab for enhanced heat dissipation.
3. Pin 3 (Source): This pin allows the current to exit the MOSFET. It is typically connected to ground in low-side switching applications.
4. Tab (Drain): The package's metal tab is electrically connected to the drain and is used for heat dissipation. It is often soldered to a heatsink or PCB pad to manage thermal performance effectively.
This MOSFET is designed for efficient power handling and is used in various applications including DC-DC converters and motor drives.