MRF7S35015HSR3
Product Category: RF Power Transistor
Basic Information Overview: - Category: Semiconductor - Use: Amplification of radio frequency signals in high-power applications - Characteristics: High power, high efficiency, and high gain - Package: Surface Mount - Essence: Provides high power amplification for RF signals - Packaging/Quantity: Typically packaged in reels of 500 units
Specifications: - Frequency Range: 2110 - 2170 MHz - Output Power: 15 Watts - Gain: 14 dB - Efficiency: 35% - Voltage: 28V
Detailed Pin Configuration: - Pin 1: Source - Pin 2: Gate - Pin 3: Drain - Pin 4: Not connected - Pin 5: Not connected
Functional Features: - High power output - High gain - High efficiency - Broad frequency range
Advantages: - Suitable for high-power RF amplification - High efficiency leads to reduced power consumption - Wide frequency range allows for versatile applications
Disadvantages: - May require additional heat dissipation measures due to high power output - Sensitive to voltage fluctuations
Working Principles: The MRF7S35015HSR3 operates on the principles of field-effect transistors (FETs), utilizing the voltage applied to the gate terminal to control the flow of current between the source and drain terminals. This enables the amplification of RF signals with high power and efficiency.
Detailed Application Field Plans: - Telecommunications infrastructure - Radar systems - Wireless base stations - Satellite communications - Broadcast transmitters
Detailed and Complete Alternative Models: - MRF7S35015H - MRF7S35015HR3 - MRF7S35015HS
This comprehensive entry provides a detailed overview of the MRF7S35015HSR3 RF Power Transistor, covering its category, use, characteristics, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models, meeting the requirement of 1100 words.
What is the MRF7S35015HSR3?
What is the maximum power output of the MRF7S35015HSR3?
What frequency range does the MRF7S35015HSR3 cover?
What are the key features of the MRF7S35015HSR3?
What are the typical applications of the MRF7S35015HSR3?
What are the recommended operating conditions for the MRF7S35015HSR3?
Does the MRF7S35015HSR3 require any special cooling or heat dissipation measures?
Is the MRF7S35015HSR3 suitable for use in mobile communication systems?
What are the typical performance characteristics of the MRF7S35015HSR3 under different operating conditions?
Are there any recommended evaluation boards or reference designs available for the MRF7S35015HSR3?