Product Description
N Female to FME Male. Adapter piece for joining components of cell phone signal booster kits.
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Product Description N Female to FME Female. Adapter piece for joining components of cell phone signal booster kits
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Product DescriptionFME Male to TNC Male. Adapter piece for joining components of cell phone signal booster kits.
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Product Description FME Male to Mini UHF Male. Adapter piece for joining components of cell phone signal booster kits.
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Product DescriptionFME Female to TNC Female Connector. Adapter piece for joining components of cell phone signal booster kits.
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Product Description FME Female to Mini UHF Female. Adapter piece for joining components of cell phone signal booster kits.
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Product Description Dual Band Diplexer/Combiner (50 Ohm, 800-900 MHz/1850-1990 MHz Bands)
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Product DescriptionF-Female Connectors. 75 Ohm Surge Protector for Cell Phone Signal Booster Outdoor Antennas. Frequency Range up to 3 GHz. Attenuation is less than 0.2 dB. Requires additional ground cable. Replaceable gas discharge element part 859921
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Product Description N-Female Connectors. 50 Ohm Surge Protector for Cell Phone Signal Booster Outdoor Antennas. Frequency Range up to 3 GHz. Attenuation is less than 0.2 dB. Requires additional ground cable. Replaceable gas discharge element part 859920 Commonly used with Connect 4G-X and Connect 3G-X.
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Product Description3 Way Splitter, 75 Ohm with F Female Connectors. -4.8 dB, 700-2500 MHz. For use in signal distribution systems to split the amplified signal with minimum signal loss. Equal amounts of signal sent to multiple antennas for similarly sized areas.
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Product Description2 Way Splitter, 75 Ohm with F Female Connectors. -3 dB, 700-2500 MHz. For use in signal distribution systems to split the amplified signal with minimum signal loss. Equal amounts of signal sent to multiple antennas for similarly sized areas.
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Product Description4 Way Splitter, 50 Ohm with N Female Connectors. -6 dB, 700-2700 MHz. For use in signal distribution systems to split the amplified signal with minimum signal loss. Equal amounts of signal sent to multiple antennas for similarly sized areas.