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Microwave antenna 3126 series
omnidirectionaldipolesleeve

Microwave antenna - 3126 series - ETS Lindgren - omnidirectional / dipole / sleeve
Microwave antenna - 3126 series - ETS Lindgren - omnidirectional / dipole / sleeve
Microwave antenna - 3126 series - ETS Lindgren - omnidirectional / dipole / sleeve - image - 2
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Characteristics

Network
microwave
Type
omnidirectional, dipole, sleeve, half-wave
Applications
measurement
Frequency

Min.: 440 MHz

Max.: 5,000 MHz

Gain

Min.: 1.5 dB

Max.: 2 dB

Description

ETS-Lindgren's 3126 Series of Precision Reference Sleeve Dipoles are true omnidirectional antennas, having an electric dipole pattern approaching that of a half-wave resonant dipole,​ with typical gains between 1.5 and 2.0 dB. The sleeve dipole design allows the antenna to be end-fed to avoid cable and feedpoint interactions that interfere with the performance of the antenna. Integral quarter wave chokes and/o​​r ferrite loading (depending on frequency range) also help to reduce cable interaction. This design also provides exceptional symmetry (typically better than +/- 0.1 dB (0.2 dB peak-to-null) to meet or exceed CTIA criteria for ripple test antennas. All 3126 Series Dipoles are designed with a VSWR less than 1.25: 1 at the center frequency. Gain values and +/- 0.1 dB symmetry certification are provided for a 200 MHz to 300 MHz band (depending on model) centered about the labeled frequency. This dipole has a typical VSWR <3: 1 across this entire band, and may be used for precision range calibrations across the entire band provided appropriate padding (~ 10 dB) is used to minimize possible standing wave effects on cables. The dipoles have a nominal 50 impedance, a maximum continuous transmit power of one watt, and are equipped with a female SMA connector. The dipoles are calibrated using an A2LA accredited process with a typical measurement uncertainty on the order of +/- 0.2 dB. Gain, VSWR, max. ripple, and measurement uncertainty values are provided with each calibration. The dipoles are calibrated using an A2LA accredited process with a typical measurement uncertainty on the order of +/- 0.2 dB. Gain, VSWR, max.

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