2300 MHz to 2600 MHz SMA-Female Precision Sleeve Dipole Antenna

Model No: SL-2450-SF

Made in Taiwan
Frequency Range: 2300 - 2600 MHz
Antenna Type: Omnidirectional Fiberglass
Nominal Gain: 2.15 dBi ± 1 dBi
Connector Port: SMA-Female Interface
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2.4 GHz Precision Reference Antenna

Model: SL-2450-SF | 2300 MHz - 2600 MHz | CTIA Symmetry Compliant
The SL-2450-SF is a high-performance Collinear Sleeve Dipole radiator specifically engineered for anechoic chamber calibration and OTA testing. Featuring an ultra-precise radiation pattern with roundness differences of less than 0.1dB (up to 2500MHz), it serves as the definitive reference for Signal Defense gain measurements. The 1/4 wavelength design and specialized sleeve isolate the feed point from cable contacts, ensuring the Signal Integrity required for mission-critical CTIA ripple test measurements and professional antenna efficiency characterization.
Technical Specifications
Frequency Range 2300 MHz to 2600 MHz
Nominal Gain 2.15 dBi ± 1 dBi
V.S.W.R (2400MHz - 2500MHz) 1.5 : 1 (Max 3.0 : 1 over full band)
Pattern Symmetry (2300 - 2500MHz) < 0.1 dB (CTIA Compliance)
Maximum Power Handling 150 Watts
Radiation / Polarization Omni-Directional / Vertical
Beam-width (Horizontal / Vertical) 360° / 68°
Impedance 50 Ohm
Material & Mechanical Parameters
Dimensions (Length x Diameter) 245.5 mm x 18.9 mm
Net Weight (N.W.) 160 g
Internal Radiator Material Precision Copper
Radome Material Fiberglass
Mount Style Round 19mm / Hollow 13mm (Acrylic Mount)
Connector Interface SMA-Female (N-Female Available)
Operating Temperature -20°C to +60°C
Compliance Ratings CE, FCC, RoHS, CTIA
Key Tactical & Engineering Features

CTIA Ripple Test Precision

Engineered to meet strict +/- 0.1 dB symmetry standards, providing the high-level accuracy necessary for OTA chamber reflectivity evaluation.

Interference-Free Architecture

The 1/4 wavelength sleeve dipole design isolates the antenna from the feed cable, preventing pattern distortion and feedpoint interference.

Reference Grade Dominance

Serves as a reliable gain reference and low-gain efficiency standard for calibrating high-frequency monitoring sub-systems.

Rugged Structural Integrity

Encased in a premium fiberglass radome with a lightweight 160g build, suitable for high-precision indoor lab and controlled outdoor environments.

Get a Quote / Custom Reference Solutions

Contact our engineering team for full calibration data sheets, VSWR plots, or specialized mounting hardware requirements.

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