BF244A_J35Z
Product Category: Integrated Circuit
Basic Information Overview: - Category: Transistor - Use: Amplification and switching of electronic signals - Characteristics: High voltage capability, low input and output capacitance, high gain - Package: TO-92 - Essence: NPN silicon epitaxial planar transistor - Packaging/Quantity: Bulk packaging, 1000 units per pack
Specifications: - Maximum Collector-Emitter Voltage: 400V - Maximum Collector Current: 2A - Power Dissipation: 625mW - Transition Frequency: 300MHz - Operating Temperature Range: -55°C to 150°C
Detailed Pin Configuration: - Pin 1 (Emitter): Connected to the ground - Pin 2 (Base): Input for controlling the transistor action - Pin 3 (Collector): Output of the transistor
Functional Features: - High voltage capability allows for use in various applications - Low input and output capacitance minimizes signal distortion - High gain enables effective signal amplification
Advantages: - Suitable for high voltage applications - Low power dissipation - Wide operating temperature range
Disadvantages: - Limited maximum collector current - Relatively low transition frequency
Working Principles: The BF244A_J35Z operates based on the principles of bipolar junction transistors. When a small current is applied to the base terminal, it controls the larger current flow between the collector and emitter terminals, allowing for signal amplification or switching.
Detailed Application Field Plans: - Audio amplification circuits - Switching circuits in power supplies - Signal amplification in instrumentation
Detailed and Complete Alternative Models: - BC547 - 2N3904 - MPS2222A - 2N4401
This comprehensive entry provides an in-depth understanding of the BF244A_J35Z transistor, covering its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
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What is BF244A_J35Z?
What are the key specifications of BF244A_J35Z?
How can BF244A_J35Z be used in amplifier circuits?
In what types of applications is BF244A_J35Z commonly used?
What are the typical operating conditions for BF244A_J35Z?
Can BF244A_J35Z be used for switching applications?
What are the advantages of using BF244A_J35Z in technical solutions?
Are there any limitations or considerations when using BF244A_J35Z?
How does BF244A_J35Z compare to other JFETs in similar applications?
Where can I find detailed application notes and reference designs for using BF244A_J35Z?