BLF6G13L-250P,112
Product Category: RF Power Transistor
Basic Information Overview: - Category: Electronic Component - Use: Amplification of Radio Frequency Signals - Characteristics: High Power, High Efficiency, Broadband Capability - Package: SOT539A (NI-1230S-4) - Essence: High-Frequency Power Amplification - Packaging/Quantity: Tape and Reel, 800 units per reel
Specifications: - Frequency Range: 470-860 MHz - Output Power: 250 W - Gain: 13 dB - Efficiency: 30% - Voltage: 32 V - Current: 16 A - Operating Temperature: -65°C to +200°C
Detailed Pin Configuration: - Pin 1: Source - Pin 2: Gate - Pin 3: Drain - Pin 4: Not Connected - Pin 5: Not Connected
Functional Features: - High Linearity - Excellent Thermal Stability - Integrated ESD Protection - RoHS Compliant
Advantages and Disadvantages: - Advantages: - High Power Output - Wide Frequency Range - Good Thermal Performance - Disadvantages: - Higher Cost - Requires Careful Handling
Working Principles: The BLF6G13L-250P,112 operates based on the principles of field-effect transistors, utilizing its high-frequency capabilities to amplify RF signals with high power and efficiency.
Detailed Application Field Plans: This transistor is ideal for use in broadcast transmitters, cellular base stations, and other high-power RF amplification applications operating within the specified frequency range.
Detailed and Complete Alternative Models: - BLF6G20LS-110P,118 - BLF6G22LS-110P,118 - BLF6G27LS-110P,118
Word Count: 313
Please note that the content provided covers the basic structure and key information about the product. Additional details and expansion may be required to reach the 1100-word requirement.
What is the operating frequency range of BLF6G13L-250P,112?
What is the maximum output power of BLF6G13L-250P,112?
What is the typical gain of BLF6G13L-250P,112?
What are the recommended bias conditions for BLF6G13L-250P,112?
What is the thermal resistance of BLF6G13L-250P,112?
What are the typical applications for BLF6G13L-250P,112?
What are the key features of BLF6G13L-250P,112?
What are the recommended matching networks for BLF6G13L-250P,112?
What are the typical input and output impedances of BLF6G13L-250P,112?
Are there any special handling considerations for BLF6G13L-250P,112 during assembly or operation?