
( Brand: Microlab/fxr ), ( Manufacturer Part Number: DN-14FN ), ( Type: See Description ), ( UPC: 646444311663 )
The Microlab/FXR DN-14FN Tappers are a high-quality set of coaxial cable tapping devices, designed for use in a wide range of applications. These tappers are ideal for installations where it's necessary to monitor or tap into existing coaxial cables without disrupting the signal.
The set includes four tappers, each rated for different frequencies: 350-5 MHz, 850 MHz, and two tappers for 1000 MHz. The 350-5 MHz tapper is suitable for applications such as CATV, satellite, and microwave communications. The 850 MHz tapper is ideal for mobile phone base stations, while the 1000 MHz tappers are suitable for broadband and wireless data applications.
Each tapper features a 30 dB attenuator, ensuring a minimal loss of signal strength. The tappers are designed with a female F-type connector, making them compatible with a wide range of coaxial cables. The tappers are also lightweight and compact, making them easy to install and transport.
The Microlab/FXR DN-14FN Tappers are built to last, with a rugged construction that can withstand harsh environmental conditions. They are also easy to use, with clear markings and a simple design that makes it easy to connect and disconnect cables.
In summary, the Microlab/FXR DN-14FN Tappers are a versatile and reliable solution for tapping into coaxial cables. With their wide range of frequencies, high attenuation, and rugged construction, they are suitable for a wide range of applications in the communications industry.
Pros of buying Microlab/FXR DN-14FN Tappers 350-5 850 1000 30db Female:1. Wide Frequency Range: The tappers cover a wide frequency range of 350 Hz to 1000 Hz with a 30 dB attenuation, which makes them suitable for a variety of applications.
2. High Quality Construction: The Microlab/FXR DN-14FN tappers are made with high-quality components and materials, ensuring durability and reliability.
3. Easy to Use: The tappers have a simple and intuitive design, making them easy to use even for those who are not familiar with audio test equipment.
4. Cost-Effective: The tappers are reasonably priced, making them a cost-effective solution for audio testing and troubleshooting.
Cons of buying Microlab/FXR DN-14FN Tappers 350-5 850 1000 30db Female:1. Limited Frequency Range: While the tappers cover a wide frequency range, they may not be suitable for applications that require a broader frequency range.
2. Limited Attenuation: The 30 dB attenuation may not be sufficient for some applications that require higher attenuation levels.
3. Not Suitable for High Power Applications: The tappers are not designed for high power applications and may not be able to handle high power levels without damage.
Conclusion:The Microlab/FXR DN-14FN Tappers 350-5 850 1000 30db Female are a cost-effective and reliable solution for audio testing and troubleshooting applications that require a wide frequency range and easy-to-use design. However, they may not be suitable for applications that require a broader frequency range or higher attenuation levels. Therefore, it is important to consider your specific application requirements before making a purchase decision.
Recommendation:If you are looking for a cost-effective and reliable solution for audio testing and troubleshooting, the Microlab/FXR DN-14FN Tappers 350-5 850 1000 30db Female are a good choice. However, if you require a broader frequency range or higher attenuation levels, you may want to consider other options that are better suited for your specific application requirements.
The lightweight design allows easy attachment to a wall using the supplied bracket. Tappers, 350-5,850 MHz, 1000:1, 30dB, N Female: Female Microlab DN-x4FD series of Tappers unevenly split high power cellular signals in fixed ratios from 1000:1 to 2:1 with minimal reflections or loss over the key wireless bands range 350 - 5,850 there is no coupling 1550 1650 MHz. Designed with only a few solder joints and an air dielectric, loss is minimized reliability enhanced. The innovative asymmetric design ensures an excellent input VSWR and coupling flatness across the specified bands, even down to a 2:1 split.