The S8055R67RP is a versatile electronic component that belongs to the category of power transistors. This product is widely used in various electronic applications due to its unique characteristics and functional features.
The S8055R67RP power transistor has the following specifications: - Maximum Collector-Emitter Voltage (Vce): 700V - Maximum Collector Current (Ic): 8A - DC Current Gain (hfe): 40 - 320 - Power Dissipation (Pd): 40W - Transition Frequency (ft): 4MHz
The S8055R67RP power transistor typically has three pins: Collector (C), Base (B), and Emitter (E). The pin configuration is as follows: - Collector (C): Pin 1 - Base (B): Pin 2 - Emitter (E): Pin 3
The S8055R67RP offers the following functional features: - High Voltage and Current Handling Capacity - Low Saturation Voltage - Fast Switching Speed - Robust Construction for Reliability
The S8055R67RP operates based on the principles of bipolar junction transistors. When a small current flows through the base-emitter junction, it controls a larger current flow between the collector and emitter, allowing for amplification or switching of electrical signals.
The S8055R67RP power transistor finds extensive use in the following application fields: - Power Supplies - Motor Control - Audio Amplifiers - Lighting Control - Switching Regulators
Some alternative models to the S8055R67RP power transistor include: - S8055R67TP - S8055R67WP - S8055R67QP
In conclusion, the S8055R67RP power transistor is a crucial component in electronic circuits, offering high voltage and current handling capabilities, fast switching speed, and efficient power control. Its versatility makes it suitable for a wide range of applications, from power supplies to audio amplifiers.
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What is S8055R67RP?
What are the key specifications of S8055R67RP?
In what technical solutions is S8055R67RP commonly used?
What are the thermal considerations when using S8055R67RP?
How does S8055R67RP compare to other transistors in its class?
What are the typical operating conditions for S8055R67RP?
Are there any specific circuit design considerations when using S8055R67RP?
What are the potential failure modes of S8055R67RP?
Can S8055R67RP be used in parallel configurations for higher power applications?
Where can I find detailed application notes and reference designs for S8055R67RP?