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The LRPS-2-11+ is a high-performance RF power splitter/combiner. It belongs to the category of RF/microwave devices and is designed to handle signals in a specific frequency range. With its compact and well - defined case style (QQQ 130), it is suitable for various applications that require efficient power distribution or combination in the RF domain.
Category:RF and Wireless,RF Power Dividers/Splitters
Manufacturer:Mini-Circuits
Packaging:Tape & Reel
Part Status:Active
Insertion Loss:0.8dB
Frequency:20 MHz ~ 2 GHz
Specifications:Isolation (Min) 15dB, 5° Imbalance (Max)
Size / Dimension:0.310" L x 0.212" H (7.87mm x 5.38mm)
Package / Case:6-SMD, Flat Leads
Very Wideband:Covering a frequency range from 20 MHz to 2000 MHz, the LRPS-2-11+ can be utilized in a vast number of applications. Whether it is for low - frequency communication systems or high - frequency wireless applications, this wide - band nature provides great flexibility.
Low Insertion Loss:With a typical insertion loss of 0.7 dB, the device ensures that the RF signal experiences minimal degradation during the splitting or combining process. This is beneficial for maintaining the quality and strength of the signal, especially in systems where signal integrity is critical.
Good Isolation:The LRPS-2-11+ offers a typical isolation of 21 dB. High isolation between the output ports (in the case of a splitter) or input ports (in the case of a combiner) is important as it reduces the interference between different signal paths, improving the overall performance of the RF system.
The LRPS - 2 - 11+ is a versatile and high - performing RF power splitter/combiner. Its wide - band operation, low insertion loss, and good isolation make it suitable for a wide range of applications in the RF and wireless fields. Whether in communication systems, test equipment, or satellite applications, the LRPS - 2 - 11+ can effectively contribute to the efficient distribution and combination of RF power, thereby enhancing the performance of the overall RF system.
Industry Information