The PE20DV1287 2-way 4.3-10 low PIM power divider, also known as a 4.3-10 coaxial power splitter, is rated for a minimum frequency of 555 MHz and a maximum frequency of 6 GHz. This Pasternack 4.3-10 power divider/coaxial splitter has a 50 Ohm impedance and a maximum input power (CW) of 80 Watts. Our power splitter/divider features a 4.3-10 female input and 2 4.3-10 female output ports. This RF power divider allows the splitting of a single signal into multiple signals with equal magnitude and phase.
Pasternack’s PE20DV1287 power splitter has a brass housing with copper-tin-zinc plating. Our RF power divider provides a maximum passive intermodulation of -153 dBc. Additional power divider specifications and dimensions can be found on its PDF specification datasheet and CAD drawings above.
This 2-way 4.3-10 RF power divider from Pasternack has a maximum insertion loss of 0.5 dB. The maximum input VSWR of this 4.3-10 splitter/divider is 1.3:1, and the minimum isolation is 20 dB. The PE20DV1287 power divider from Pasternack is ideal for applications such as distributed antenna systems (DAS), cellular base stations, 4G LTE and 5G wireless networks, public safety communication systems, private LTE and private 5G networks, in-building wireless coverage, wireless infrastructure and multi-operator RF distribution systems. Our radio frequency power divider is built to operate at temperatures ranging from -40 to 75 deg C. This splitter has a length of 2.81 inches, a width of 1.97 inches, and a weight of 0.55 lbs.
Our 4.3-10 power divider is part of over one million RF, microwave, and millimeter wave components supplied by Pasternack. This 2-way 4.3-10 female coaxial RF power divider can be bought and shipped worldwide on the same business day as with Pasternack’s other in-stock RF parts. Make your online purchase right now to take advantage of our same-business-day shipping. For further information on similar products, our expert technical support and knowledgeable sales team can help you get the ideal power divider for your requirements.