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The TP Series cavity combiners are ideally suited to combining multiple transmitters in analogue and digital communications systems. Unlike star' or parallel' harnessed cavity combiners, this user-friendly architecture provides a broadband solution allows services to be combined across the entire bandwidth of the antenna. The future expansion of the combiner can be easily performed in-the-field, without retuning or returning the combiner to the factory. The flexibility of the TP Series also caters for other combiner designs requiring multiple transmit, receive, and or transmit/receive frequencies operating in simplex, half duplex, or full duplex configurations. These may be implemented using either separate transmit and receive antennas, or single antenna systems.
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The TP Series cavity combiners are ideally suited to combining multiple transmitters in analogue and digital communications systems. Unlike star' or parallel' harnessed cavity combiners, this user-friendly architecture provides a broadband solution allows services to be combined across the entire bandwidth of the antenna. The future expansion of the combiner can be easily performed in-the-field, without retuning or returning the combiner to the factory. The flexibility of the TP Series also caters for other combiner designs requiring multiple transmit, receive, and or transmit/receive frequencies operating in simplex, half duplex, or full duplex configurations. These may be implemented using either separate transmit and receive antennas, or single antenna systems.
Price on Application
The TP Series cavity combiners are ideally suited to combining multiple transmitters in analogue and digital communications systems. Unlike star' or parallel' harnessed cavity combiners, this user-friendly architecture provides a broadband solution allows services to be combined across the entire bandwidth of the antenna. The future expansion of the combiner can be easily performed in-the-field, without retuning or returning the combiner to the factory. The flexibility of the TP Series also caters for other combiner designs requiring multiple transmit, receive, and or transmit/receive frequencies operating in simplex, half duplex, or full duplex configurations. These may be implemented using either separate transmit and receive antennas, or single antenna systems.
Price on Application
The TP Series cavity combiners are ideally suited to combining multiple transmitters in analogue and digital communications systems. Unlike star' or parallel' harnessed cavity combiners, this user-friendly architecture provides a broadband solution allows services to be combined across the entire bandwidth of the antenna. The future expansion of the combiner can be easily performed in-the-field, without retuning or returning the combiner to the factory. The flexibility of the TP Series also caters for other combiner designs requiring multiple transmit, receive, and or transmit/receive frequencies operating in simplex, half duplex, or full duplex configurations. These may be implemented using either separate transmit and receive antennas, or single antenna systems.
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Expandable Series Combiner transmit/receive multicouplers are ideally suited to the often challenging frequency plans of VHF base station applications. These channels utilise dual cavities to provide the transmitter carrier and noise suppression required for use on single (shared) transmit and receive antennas. Transmit channels may be ordered complete with dual isolators.
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The TP Series cavity combiners are ideally suited to combining multiple transmitters in analogue and digital communications systems. Unlike star' or parallel' harnessed cavity combiners, this user-friendly architecture provides a broadband solution allows services to be combined across the entire bandwidth of the antenna. The future expansion of the combiner can be easily performed in-the-field, without retuning or returning the combiner to the factory. The flexibility of the TP Series also caters for other combiner designs requiring multiple transmit, receive, and or transmit/receive frequencies operating in simplex, half duplex, or full duplex configurations. These may be implemented using either separate transmit and receive antennas, or single antenna systems.
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A Tower Top Amplifier (TTA) improves base station receiver performance at a communications network site by placing the base station receiver system's preselector and low-noise amplifiers close to the receive antenna(s), overcoming the increased system noise figure and receiver sensitivity degradation introduced in a communications system by the insertion loss of the coaxial feeder cables installed on the tower. This coaxial feeder cable loss degradation increases over longer cable lengths and at higher frequencies, and TTAs are therefore particularly beneficial for systems installed on large towers or buildings, or operating in the higher (i.e. 7/8/900MHz) frequency bands.
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These multi-channel combiners provide frequency-agile operation across their entire frequency range. Control Station Combiners may be used to reduce the number of antennas required on a communications site whilst also ensuring that predictable radio-to-radio isolation is maintained at all times - irrespective of individual radio's Tx or Rx operating mode or antenna isolation characteristics.
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On backorder
Cradlepoint endpoints provide industry-leading, Gigabit-Class LTE connectivity as well as Ethernet and Wi-Fi. The E3000 has the ports, interfaces, and software to make it optimized for 5G. The E3000 is sold with a subscription to NetCloud Service for Enterprise Branch which provides streamlined configuration and continuous cloud, modem, and router software feature enhancements.
On backorder
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The CommScope S-3-UW-H-NI6 3-Way High Power Splitter is an ultra-wideband, low PIM reactive high power splitter designed for a frequency range of 555-6000 MHz. This splitter is suitable for both indoor and outdoor applications, ensuring reliable performance in various environments. An additional mounting bracket (PN: 42396A-17) is sold separately.
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The CommScope S-2-CPUSE-H-DI6 Splitter is a rugged and high-performance RF component, designed for indoor and outdoor applications requiring efficient signal distribution with a 555-2700 MHz frequency range.
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CommScope C-15-UW-N-AI6 Air Directional Coupler is designed for efficient RF signal distribution across a broad frequency range of 555-6000 MHz with a 15 dB coupling value.
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CommScope C-20-UW-43-AI6 Air Directional Coupler is designed for high-performance RF signal distribution, covering a broad frequency range of 555-6000 MHz. With a 20 dB coupling value, it ensures low insertion loss, high isolation, and reliable performance in both indoor and outdoor environments.
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CommScope C-20-UW-N-AI6 Air Directional Coupler is a high-performance RF component designed for precise signal distribution across a broad frequency range of 555-6000 MHz. With a 20 dB coupling value, this coupler ensures low insertion loss, high isolation, and consistent performance in both indoor and outdoor environments.
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CommScope C-30-UW-N-AI6 Air Directional Coupler is designed for precise RF signal distribution across a broad frequency range of 555-2700 MHz. With a 30 dB coupling value, this coupler ensures low insertion loss, high isolation, and excellent performance for various indoor and outdoor RF applications.
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CommScope C-6-UW-N-AI6 Air Directional Coupler is designed for precise RF signal distribution across a broad frequency range of 555-6000 MHz with a 6 dB coupling value.
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CommScope H-3-CPUSE-43-AI6 2x2 Hybrid Coupler is a premium RF component engineered to split or combine signals across a wide frequency range of 555 to 2700 MHz with a coupling factor of 3 dB and 4.3-10-Female connectors.
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The CommScope H-3-UW-N-AI6 Air Dielectric Hybrid Coupler is a versatile, high-performance device designed for a frequency range of 555-6000 MHz. This hybrid coupler is suitable for both indoor and outdoor applications, ensuring reliable performance in various environments.
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The CommScope H-3X3-CPUSE-43-AI6 Hybrid Matrix is a versatile, high-performance device designed for a frequency range of 555-2700 MHz. This hybrid matrix is suitable for both indoor and outdoor applications, ensuring reliable performance in various environments.
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CommScope H-4X4-CPUSE-NAI6 Hybrid Matrix is a high-performance RF component designed to combine or distribute RF signals across a wide frequency range of 555 to 2700 MHz.
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CommScope C-13-UW-43-AI6 Air Directional Coupler is a high-performance RF component designed for precise signal distribution across a broad frequency range of 555-6000 MHz with a 13 dB coupling value.
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CommScope C-13-UW-N-AI6 Air Directional Coupler is a high-performance RF component designed for precise signal distribution across a broad frequency range of 555-2700 MHz with a 13 dB coupling value.
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The CommScope CNT400-FR is a high-quality, braided coaxial cable designed for a wide range of applications. This 50 Ohm cable features a black, non-halogenated, fire-retardant polyolefin jacket, ensuring reliable and efficient performance. It is an ideal choice for telecom networks, broadcasting, industrial environments, and data centers.
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The CommScope F1A-PNMNF-1M Jumper is a high-performance coaxial cable assembly designed for reliable connectivity in various communication systems. It features a Type-N Male connector on one end and a Type-N Female connector on the other, with a length of 1 meter.
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