BLF6G20-45,112
Product Category: RF Power Transistor
Basic Information Overview: - Category: Electronic Component - Use: Amplification of Radio Frequency Signals - Characteristics: High Power, High Frequency, Low Distortion - Package: SOT539A (LFPAK) - Essence: Gallium Nitride (GaN) Technology - Packaging/Quantity: Tape and Reel, 800 units per reel
Specifications: - Frequency Range: 0.03 - 2.5 GHz - Output Power: 45 Watts - Gain: 20 dB - Efficiency: 65% - Voltage: 28 V - Current: 16 A
Detailed Pin Configuration: - Pin 1: Source - Pin 2: Gate - Pin 3: Drain - Pin 4: Not Connected - Pin 5: Not Connected
Functional Features: - High Power Amplification - Broad Frequency Range - High Efficiency - Compact Package - High Gain
Advantages: - High Power Output - Wide Frequency Coverage - Efficient Power Usage - Small Form Factor - Suitable for Broadband Applications
Disadvantages: - Higher Cost Compared to Traditional Transistors - Sensitive to Voltage and Current Fluctuations - Requires Careful Heat Management
Working Principles: The BLF6G20-45,112 utilizes GaN technology to amplify radio frequency signals. When a signal is applied to the gate terminal, the transistor allows a larger current to flow from the drain to the source, effectively amplifying the input signal.
Detailed Application Field Plans: - Telecommunications Infrastructure - Radar Systems - Wireless Base Stations - Satellite Communications - Test and Measurement Equipment
Detailed and Complete Alternative Models: - BLF888A: 30W, 2-6 GHz, LDMOS Technology - MRF13750H: 50W, 1.8-400 MHz, LDMOS Technology - MGFC47H4506: 45W, 4.5-6 GHz, GaN Technology
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What is the maximum power dissipation of BLF6G20-45,112?
What is the typical gain of BLF6G20-45,112 at 2.14 GHz?
What is the operating frequency range of BLF6G20-45,112?
What is the recommended supply voltage for BLF6G20-45,112?
What is the typical efficiency of BLF6G20-45,112 at 2140 MHz and 45 watts output power?
What is the input and output impedance of BLF6G20-45,112?
Does BLF6G20-45,112 require external matching networks?
What is the recommended bias conditions for BLF6G20-45,112?
Is BLF6G20-45,112 suitable for use in base station amplifiers?
What thermal management considerations should be taken into account when using BLF6G20-45,112?