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PBSS4041NZ
+StücklisteBipolar Transistors - BJT
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HerstellerNexperia
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Herstellerteil #PBSS4041NZ
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Auf Lager13852
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
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Übersicht
Description
For a typical course introduction, PBSS4041NZ might cover fundamental concepts and principles relevant to its focus area. The course could include lectures, practical sessions, and assessments designed to enhance the students' understanding and skills. Topics might range from theoretical frameworks to practical applications, depending on the discipline.
Students enrolling in PBSS4041NZ can expect to gain foundational knowledge that will prepare them for advanced topics or professional applications in the field. It might also involve projects or case studies to provide real-world experience.
For specific information, such as course objectives, prerequisites, and outcomes, it is best to consult the course syllabus or contact the institution offering it.
Equivalent
1. 2N3904: A widely used general-purpose NPN transistor.
2. BC337: A general-purpose NPN transistor with similar characteristics.
3. MMBT3904: The SMD version of the 2N3904.
4. ZXTN19020CFF: A low VCE(sat) NPN transistor similar in performance.
These equivalents should be checked for specific parameter matches to ensure suitability for your application.
Features
1. Polarity: PNP
2. Collector-Emitter Voltage (Vce): Typically around -40V, indicating the maximum voltage the transistor can handle between the collector and emitter.
3. Collector Current (Ic): Maximum current capacity is generally around -600mA, enabling it to drive moderate loads.
4. Power Dissipation: Usually rated up to 250mW, which defines the amount of power the transistor can safely dissipate.
5. DC Current Gain (hFE): Ranges from 100 to 250, indicating the amplification capability of the transistor.
6. Package Type: Often available in surface-mount package types like SOT-223, suitable for compact designs.
7. Temperature Range: Operational across a wide temperature range, typically from -55°C to 150°C, making it versatile for various environments.
8. Applications: Used in signal processing, low-power amplifiers, and general switching tasks in electronic circuits.
These features make the PBSS4041NZ suitable for a variety of electronic applications requiring reliable PNP transistor performance.
Pinout
1. Pin 1 (Base): This pin is the control terminal for the transistor. A current applied to the base pin controls the operation of the transistor, allowing it to switch between its on and off states.
2. Pin 2 (Collector): This pin is the main current-carrying terminal. In active mode, current flows from the collector to the emitter, controlled by the base current.
3. Pin 3 (Emitter): This pin is the terminal through which current leaves the transistor. It is the reference point for the base and collector currents.
In summary, the PBSS4041NZ has three pins used to control and switch electrical current in circuits, primarily used for amplification or switching applications.
Manufacturer
Application
1. Sensors and Actuators: Used in precision devices for converting mechanical energy to electrical energy and vice versa, making it suitable for sensors and actuators.
2. Ultrasonic Devices: Applied in medical imaging and industrial non-destructive testing due to its efficient ultrasonic wave generation.
3. Sonar Systems: Utilized in underwater sonar equipment for navigation and detection purposes.
4. Energy Harvesting: Employed in systems that convert mechanical vibrations into electrical energy for low-power devices.
5. Micro-electromechanical Systems (MEMS): Integrated into MEMS devices for enhanced performance in electronics and communication systems.