Power Splitter / Power Combiner

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PD2130 - RF Power Splitter, Combiner, Divider

RoHS, 3 Way, SMA Female, 698 - 2700 MHz, 50 Ohms

Features & Benefits

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RoHS RF Splitter Combiner, 3 Way, SMA

three way wilkinson RF power divider combiner
with equal power split and amplitude balance

Overview

PD2130 is a RoHS compliant, 3 way, wideband, 50 ohm, power divider, power combiner furnished with SMA jack (female) coaxial connectors. All wireless band applications in the 698 to 2700 MHz frequency range are covered with optimal performance. Max microwave input power levels up to 40 watts can be handled in both power splitter and power combiner applications. See 3 way power divider input rating tables for additional details.

Electrical

The heart of the unit is a precision designed and etched Wilkinson type microstrip circuit on a low loss, high frequency, dielectric substrate. The Wilkinson microstrip circuit passes DC current to all ports making it ideal for use in active systems. Power splitter dividers passing DC to select ports and blocking DC to others are also available. See options (right). A true 3 way power divider, power combiner with equal power split and balance, the PD2130's electrical performance is highlighted by 0.6 dB max insertion loss (above the -4.77dB power split), 18 dB min isolation, 1.30:1 max input VSWR and 1.25:1 max output VSWR. Equal power split and balance is displayed by 0.2 dB max amplitude balance and 3 degrees max phase balance. Narrow band RF performance over your frequency range may be even better. See 3 way SMA female power divider test sweeps for specific details.

Mechanical

Mechanical features include precision CNC, brass, 50 ohm SMA female coaxial connectors with tri alloy plating to insure tarnish resistance and low PIM operation. Connector pins are gold plated beryllium copper for reliability and low contact resistance. Virgin electrical grade PTFE support insulators captivate the

contact pins enabling trouble free coaxial connector mating. Long term operation and superior shielding is maintained by the rugged CNC machined aluminum housing with clear chemical film finish. Secure mounting is provided by two 0.125" dia (3.18 mm) through holes. RoHS construction includes no-lead solder and a finish free of hexavalent chromium.

Physical

Housing dimensions are 2.98" wide by 2.98" deep by 0.88" high (75.7 x 75.7 x 22.2 mm). The SMA female (jack) connectors extend 0.44" (11.1 mm) from the housing. Operating temperature range is from -65°C to +85°C. Weight is 292 grams. See 3 way power divider outline drawing for more information.

Applications

The PD2130 3-way, SMA female (jack), power divider (splitter) combiner is ideal for a wide range of wireless radio frequency microwave applications on both transmit and receive sides, ranging from amplifier combining & receiver dividing to antenna splitting, and is deployed world wide in networks encompassing 700 MHz Public Safety Band, 800 MHz cellular, GSM 850, 900, 1800 & 1900, PCS 1900, 1 GHz to 2 GHz L-Band, GPS, W-CDMA-3G, UMTS, TETRA, RFID, IEEE802.11b/g, 2.45 GHz ISM, Wi Fi and 2.3 GHz & 2.5 GHz WiMAX.

Options / Additional Models

Standard Model: A standard version of this three way power combiner divider is available utilizing tin/lead solder and comprising a yellow iridite finish. PD1130

DC Blocking: Two DC blocking versions of this 3way SMA splitter combiner available:

PD5130: DC pass 1 port, DC block 2 ports. Typically used for powering an active antenna through the DC pass port of the RF power divider splitter.

PD5132: DC block 3 ports. Typically used in combining applications to prevent passing DC to sum port or other inputs.

GPS Splitter: 3-way GPS antenna signal splitter covering L1, L2, GLONASS and Galileo GNSS global navigation satellite system positioning frequency bands.

GPS310: 3 way SMA GPS signal splitter, DC pass one port - providing a means to power an active GPS antenna - other ports DC blocked and furnished with 200 ohm internal loads to simulate antenna preamp current draw, preventing the GPS receiver from sensing antenna fault.

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