In-Building & DAS Installation

Product category

    Interface 1: Size

      Interface 2: Size

        Power rating max.

          Frequency min.

            Frequency max.

            50 W load DC-4 GHz  4.3-10 male screw product photo
            50 W load DC-4 GHz 4.3-10 male screw
            BN:
            622016
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            900.0 g
            200 W load DC-4 GHz  4.3-10 female product photo
            200 W load DC-4 GHz 4.3-10 female
            BN:
            622017
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            2.7 kg
            100 W load DC-4 GHz  4.3-10 male screw product photo
            100 W load DC-4 GHz 4.3-10 male screw
            BN:
            622018
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            1.1 kg
            50 W load DC-4 GHz  4.3-10 male screw with measurement protocol product photo
            50 W load DC-4 GHz 4.3-10 male screw with measurement protocol
            BN:
            622019
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            900.0 g
            25 W load DC-4 GHz  4.3-10 female product photo
            25 W load DC-4 GHz 4.3-10 female
            BN:
            622020
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            600.0 g
            50 W load DC-4 GHz 4.3-10 female product photo
            50 W load DC-4 GHz 4.3-10 female
            BN:
            622029
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            900.0 g
            100 W load DC-4 GHz 4.3-10 female product photo
            100 W load DC-4 GHz 4.3-10 female
            BN:
            622030
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            1.1 kg
            200 W load DC-4 GHz 4.3-10 male push pull with measurement protocol product photo
            200 W load DC-4 GHz 4.3-10 male push pull with measurement protocol
            BN:
            622032
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 50
            Weight, approx.:
            2.7 kg
            200 W load DC-4 GHz 4.3-10 male push pull with measurement protocol IP 68 product photo
            200 W load DC-4 GHz 4.3-10 male push pull with measurement protocol IP 68
            BN:
            622035
            VSWR, max.:
            1.06 @ DC to 1 GHz
            1.14 @ 1 to 2 GHz
            1.20 @ 2 to 3 GHz
            1.30 @ 3 to 4 GHz
            Degree of protection:
            IP 68
            Weight, approx.:
            2.7 kg
            2 : 1 Hybrid combiner 694-3800 MHz 4.3-10 female DC port 2 to 3 product photo
            2 : 1 Hybrid combiner 694-3800 MHz 4.3-10 female DC port 2 to 3
            BN:
            753374
            Average power rating:
            80 W (per port)
            VSWR, max.:
            1.25 @ 694 to 2700 MHz
            1.30 @ 2700 to 3800 MHz
            Passive intermodulation (IM3), max.:
            -150 dBc @ 694 to 800 MHz
            -155 dBc @ 800 to 2700 MHz
            Degree of protection:
            IP 68
            Coaxial directional coupler 3 dB X-Style 380-3800 MHz 4.3-10 female product photo
            Coaxial directional coupler 3 dB X-Style 380-3800 MHz 4.3-10 female
            BN:
            753393
            Average power rating:
            500 W (per port)
            VSWR, max.:
            1.2
            Passive intermodulation (IM3), max.:
            -160 dBc
            Degree of protection:
            IP 65
            Coaxial directional coupler 3 dB X-Style 88-3800 MHz 4.3-10 female product photo
            Coaxial directional coupler 3 dB X-Style 88-3800 MHz 4.3-10 female
            BN:
            753393F001
            Average power rating:
            500 W (per port)
            VSWR, max.:
            1.2
            Passive intermodulation (IM3), max.:
            -160 dBc @ 380 to 3800 MHz
            Degree of protection:
            IP 65

            SPINNER coaxial components for in-building mobile communication

            As more than 80 percent of mobile traffic in the meantime takes place in buildings, this is a challenge for the mobile network coverage. Often, the transmission of mobile base stations outside the building does not reach inside, because behind concrete and glass facades, the reception is much weaker.

            Passive RF components from SPINNER provide good coverage in buildings. Especially where many people use their smartphone and the traffic volume increases, e.g. in office buildings, shopping centers, exhibition halls and venues, airports, train stations, sports stadiums and more.

            SPINNER in-building components save CAPEX

            Experience shows that the higher technical overhead of active solutions usually costs twice as much as their passive counterparts. Passive systems, with good planning, smart sectorization and high-tech design, can also serve both large areas and high traffic volumes.

            Passive components also lower your OPEX

            Passive solutions can be operated almost without costs. They require neither electricity nor air conditioning technology and work wear-free. This eliminates all expenses for operation, monitoring and maintenance of the system as well as for system updates or services. In fact, only the required area or space is the only item in the operating costs. That means you can save up to 99 percent in operating costs compared to active systems.

            SPINNER In-Building: future-proof solutions

            Today, mobile communication is in a dynamic environment with short innovation cycles and new transmission technologies. The available bandwidths are also being used more and more intensively.

            The components of SPINNER offer the chance that you can easily accept new tapes. Splitter and Tapper handle frequencies up to 3800 GHz. With such a wide band, these models also cover future requirements.

            In general, passive systems significantly reduce the complexity of networks and are maintenance-free. Passive solutions are better protected against eavesdroppers and less susceptible to sabotage than active solutions.

            Use bandwidth efficiently, high signal quality and transmission rate

            For many in-building projects, it is still underestimated how much the quality of the components installed affects the performance of the overall system. Comparing the data sheets, this is not immediately apparent. Passive intermodulation (PIM), isolation and reflection affect the signal-to-noise ratio, a measure of the quality of a useful signal that is disturbed by a noise signal. The lower the signal-to-noise ratio, the worse the transmission rate of a system.

            SPINNER Combining solutions offer the required premium quality with the least possible interferences - from development to the selection of materials and production methods. Thus, a maximum possible transmission rate can be achieved. An inadequate combining/distribution system is going to devalue your investment in expensive tech.

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