Features: The Output Frequency Range Of 1.5Ghz, The Output Impedance Default 50 Ohms. The Transistor Constant Current Source To Drive The Noise Diode To Produce A Wide Range Of Noise Sources, The Output Noise Spectrum Is More Density And More Balanced. Low Power Consumption And Heat, 9-12V @ 0.15A Power Supply, Anti-Power Reverse Protection, Led Instructions. 0.2M-1.5Ghz Within The Very High Level Flatness. 100% Brand New And High Quality.
Specifications: Output Frequency Range: 1.5Ghz Output Impedance Default: 50 Ohms Power Supply: Dc12V/0.15A Output Connect: Sma Size: Approx. 55 X 47Mm / 2.17 X 1.85Inch Weight: 15G
Please Note: This Is A Circuit Board Without Case. The Circuit Board Will Become Heat When Used. You Need To Pay Attention To Heat Dissipation, And Can&Nbsp; Add Heat Sinks On The Back. Package Include: 1 X 1.5Ghz Noise Source
⚠️ WARNING (California Proposition 65): This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm. For more information, please visit www.P65Warnings.ca.gov.
Frequently Asked Questions
Q: What is the output frequency range of the noise source module?A: The output frequency range is one point five gigahertz. This allows for a comprehensive spectrum of noise suitable for various applications.
Q: What is the size of the noise source board module?A: The size of the module is approximately fifty-five millimeters by forty-seven millimeters. This compact size makes it easy to integrate into various setups.
Q: What is the output impedance of this noise source?A: The output impedance is fifty ohms by default. This specification is essential for ensuring compatibility with other audio or electronic equipment.
Q: How do I power the noise source module?A: You can power the module using a direct current power supply of twelve volts at zero point fifteen amperes. This power setup ensures proper functionality and performance.
Q: What type of connection does this module use?A: The module uses an SMA connector for output. This type of connection is commonly used in RF applications for its reliability.
Q: Is this noise source board easy to install?A: Yes, it's designed for straightforward installation. Simply connect it to the appropriate power supply and output device using the SMA connector.
Q: Can I use this noise source for high-frequency applications?A: Yes, it is suitable for high-frequency applications up to one point five gigahertz. Its design ensures stable performance across this frequency range.
Q: Does this module come with a protective case?A: No, this is a circuit board without a case. Users should ensure proper heat dissipation and consider adding heat sinks for safety.
Q: How do I ensure safe operation of the noise source?A: To ensure safe operation, monitor the heat during use and provide adequate ventilation. Adding heat sinks can help manage temperature effectively.
Q: What should I do if the module gets too hot?A: If the module overheats, turn it off immediately and allow it to cool down. Consider adding heat sinks or improving ventilation to prevent future issues.
Q: How does this noise source compare to similar products?A: This noise source provides a denser and more balanced output noise spectrum compared to others. It excels in performance while maintaining lower power consumption.
Q: Is this noise source suitable for beginners?A: Yes, it is user-friendly and suitable for beginners. The setup is simple, making it accessible for those new to RF applications.
Q: What are the safety features of this module?A: The module features anti-power reverse protection, ensuring it operates safely even if the power supply is mistakenly connected incorrectly.
Q: What if the module arrives damaged?A: If the module arrives damaged, please contact customer support for a replacement or refund. Ensure to report any issues within the return policy timeframe.
Q: How can I achieve better performance with this noise source?A: To achieve better performance, ensure a stable power supply and consider external cooling solutions if used continuously at high frequencies.