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ETS-Lindgren 3117 Double-Ridged Guide Horn Antenna 1 GHz – 18 GHz

Description

The Model 3117 Double-Ridged Waveguide Horn is the latest addition to a family of double-ridged waveguide for microwave and EMC measurement from ETS-Lindgren.

This model corrects the lower gain at the upper end of the frequency range, commonly found in ridged waveguide antennas. Users of this antenna benefit from uniform illumination of target surfaces and accurate gain measurement. In addition, the Model 3117 exhibits high gain and low VSWR across its operational frequency band, accepting moderate power input of 300 watts.

The electrical characteristics of this antenna were designed and modeled using powerful workstations running electromagnetic simulation software. Equally important, experienced RF engineers worked with our manufacturing team to produce a practical and affordable realization of the modeling process. All production units are individually calibrated at our A2LA accredited lab.

Single Lobe Radiation Pattern
The Model 3117 maintains a single main lobe pattern in the direction of the horn axis over its frequency range. This characteristic is essential for even distribution of electromagnetic energy on a target surface, and accurate measurement of gain and vector information. The Model 3117s unique design suppresses the propagation of high order modes. The result is an antenna with a well-defined single lobe radiation pattern that outperforms other antennas in its class.

Ultra Broadband
The Model 3117 sweeps from 1 GHz to 18 GHz without stopping for band breaks making it ideal for automated testing. It has the widest usable frequency range of any antenna in its class, with no performance degradation from high order modes.

Power Input
The Model 3117 uses a Type N connector and accepts up to 300 watts of continuing input power with up to 400 watts of peak power. The antennas high gain and low VSWR over its operating frequency translates into efficient amplifier use and high field strengths.

Uniform Gain, Low VSWR
The Model 3117 has a more uniform gain and antenna factor because of the better behavior of its radiation pattern. Since the pattern is stable over frequency, the gain and the AF also remain stable. Similar antennas of this class exhibit large variations of the gain and the AF as the frequency increases.

Flexible Mounting System
The Model 3117 antenna includes both an EMCO classic mount and a rear stinger mount.

Features

  • 300 W Power Input Capacity
  • Maintains Single Lobe Radiation Pattern Over Frequency
  • Uniform Gain
  • Ultra Broadband: 1 GHz - 18 GHz
  • Low VSWR
  • Flexible Mounting System
  • Antenna Assembly
  • Mounting bracket drilled to accept ETS-Lindgren or other tripod mounts with 1/4 in x 20 threads
  • Rear "Stinger" Mount
  • Individually calibrated at 1 m per SAE ARP 958 at our A2LA accredited lab. 3 m calibration per ANSI C63.5 available at additional cost. Actual antenna factors and a signed Certificate of Calibration Conformance included with manual

Specifications

Electrical Specifications

Frequency Minimum

1 GHz 

Frequency Maximum

18 GHz 

Connectors

Type N 

Impedance (Nominal)

50 Ω 

Maximum Continuous Power

300 W 

Pattern Type

directional 

Peak Power

400 W 

Polarization

linear 

VSWR

3.5:1 max 
<2:1 above 1.5 GHz 

Physical Specifications

Depth

17.5 cm + 15.5 cm mount 
6.9 in + 6.1 in mount 

Height

15.5 cm   (6.10 inches) 

Width

17.5 cm   (6.89 inches) 

Standards

CISPR
CISPR 11
CISPR 14 - 1
CISPR 14 - 2
CISPR 14 - 2
CISPR 16 - 1
CISPR 16 - 2
CISPR 16 - 3
CISPR 16 - 4
CISPR 22
CISPR 24
IEC
IEC/TR EN 61000 - 1 - 1
IEC/TR EN 61000 - 2 - 1
IEC/TR EN 61000 - 2 - 3
IEC EN 61000 - 3 - 2
IEC EN 61000 - 3 - 4
IEC/TC EN 61000 - 3 - 5
IEC EN 61000 - 4 - 2
IEC EN 61000 - 4 - 3
IEC EN 61000 - 4 - 4
IEC EN 61000 - 4 - 5
IEC EN 61000 - 4 - 6
IEC EN 61000 - 4 - 7
IEC EN 61000 - 4 - 8
IEC EN 61000 - 4 - 9
IEC EN 61000 - 4 - 11
European
EN 50 081 part 1
EN 50 081 part 2
EN 55 011
EN 55 013
EN 55 014
EN 55 015
EN 55 020
EN 55 022
EN 55 024
EN 50 082 part 1
EN 50 082 part 2
EN 50 093
American
FCC Part 15
MIL-STD - 461E