Multiband 2-Way Low Pim Passive High Power Splitter, 694-3800MHz, 7/16 DIN Female
2 way power splitter
2 way power splitter

Multiband 2-Way Low Pim Passive High Power Splitter, 694-3800MHz, 7/16 DIN Female

SYMAIR's multiband 2-way high power splitter is designed to divide one RF input evenly into two output paths across the 694–3800 MHz frequency range. With 500 W power handling, low insertion loss and low PIM performance of ≤-155 dBc, it supports reliable signal distribution in passive DAS, indoor coverage and cellular network applications. The unit features 7/16 DIN female connectors, a rugged IP65 enclosure and a wide operating temperature range, making it suitable for both indoor and outdoor installations.


Features of Multiband 2-Way Low Pim Passive High Power Splitter, 694-3800MHz, 7/16 DIN Female

  • Wide 694–3800 MHz operating range supports multiple cellular frequency bands in a single RF distribution system.

  • Two-way equal power division distributes one RF input to two output paths with a nominal split loss of 3 dB.

  • High power handling of up to 500 W makes the splitter suitable for demanding cellular, indoor coverage and passive DAS applications.

  • Low PIM performance of ≤-155 dBc helps maintain signal quality in high-power, multiband wireless networks.

  • Low insertion loss of ≤0.1 dB and VSWR of ≤1.25 help reduce unnecessary signal loss and reflection.

  • Rugged IP65-rated construction and an operating temperature range of -40°C to +65°C support indoor and outdoor installation.

  • 7/16 DIN female connectors provide a robust RF interface for high-power feeder and distribution networks.

SYMAIR provides a broad range of RF power splitter, including 2-way, 3-way and 4-way configurations for different signal distribution requirements.

Technical Datasheet

Compliances

Specification of Multiband 2-Way Low Pim Passive High Power Splitter, 694-3800MHz, 7/16 DIN Female

General Specifications

Product TypeRF power splitter, power divider
Frequency Band694-3800 MHz
Branches2-way
Connector Interface7/16 DIN female


Electrical Specifications

Frequency Band (MHz)694-3800 MHz
Insertion Loss≤0.1dB
Split Loss Nominal3dB
Split Loss Ripple±0.3 dB
VSWR≤1.25
Power Handling500W
Intermodulation, 2×43dBm≤-155dBc
Impedance50 ohms


Material Specifications

CavityCavity EnclosureAluminum alloy

Cavity Outer Surface TreatmentBlack painting

Cavity Inner Surface TreatmentCu3Ag1

Inner ConductorAluminum alloy

Inner Conductor Surface TreatmentAg1
ConnectorOuter ConductorBrass

Outer Conductor Surface TreatmentTri-metal CuSnZn3

Inner ConductorBrass

Inner Conductor Surface TreatmentAg1

InsulatorPTFE/TPX

GasketSilicon rubber


Mechanical Specifications

Dimension210×38×38 mm (Excluding connectors and brackets)
Weight0.7 kg
Connectors Type7/16 DIN female
MountingWall or rack
Packing1pcs in box


Environmental Specifications

Operating Temperature-40 °C to +65 °C
Storage Temperature-45 °C to +85 °C
Relative Humidity5% - 95%
ApplicationIP65, indoor and outdoor


Regulatory Compliance

ISO 9001:2015Compliant
ROHSCompliant
China RoHSCompliant
UK RoHSCompliant
REACHCompliant
EU/CECompliant


Applications in Passive DAS Networks

This 2-way high-power splitter can be used with antennas, feeder cables, couplers and other passive DAS components to distribute cellular signals across different coverage branches. Its wide frequency range, low PIM performance and 500 W power handling make it suitable for multiband indoor coverage systems, commercial buildings, transport facilities and other high-power RF distribution applications.

For network designs that require unequal signal allocation rather than an equal 2-way split, RF tappers can be used to direct different power levels to separate branches according to cable length, antenna quantity and coverage requirements.


Products
By SYMAIR
TO KNOW MORE ABOUT SYMAIR DAS ANTENNA?
WE'RE WAITING FOR YOUR CONTACT!
  • sales@symair.com
  • Block A, Chang'an Culture Center, Chang'an District, Xi'an, China
To Know SYMAIR More
Address
Block A, Chang'an Culture Center, Chang'an District, Xi'an, China