SKU
ACC-ZC-00059
MPN
Z2400-8

Description

The ZCG WiFi 2.4 GHz High Gain Collinear Antenna (SKU: ACC-ZC-00059), part number Z2400-8, is expertly crafted by ZCG Scalar, an esteemed Australian radio frequency antenna specialist. Designed for optimal RF communication, this antenna operates within the 2400 to 2500 MHz frequency range, delivering a peak gain of 10 dBi. Its robust construction features fibreglass and stainless steel, ensuring durability in various environments.

With a 50 Ω impedance and a power handling capacity of up to 50 W, this antenna is ideal for applications requiring reliable connectivity and performance. It supports a single RF connection via its N Female interface, ensuring straightforward integration into existing systems. The antenna is vertically polarised and offers a 360° azimuth beamwidth, making it suitable for wide coverage needs.

ZCG Scalar, established in 1970, continues to lead in RF solutions with a commitment to quality and innovation. Based in Lindenow, Victoria, Australia, the company provides a comprehensive range of antennas tailored to meet diverse communication and broadcasting demands. This high-performance collinear antenna is perfect for enhancing WiFi networks, ensuring consistent and high-quality signal transmission.

RF Specification

Start Frequency
2400 MHz
Stop Frequency
2500 MHz
Max. Input Power
50 W
Polarisation
Vertical (V)
Input Impedance
50 Ω
RF Connectors
Ports RF Interface Body Shape
1
Frequency Test Data
Start Freq. Stop Freq. Peak Gain VSWR Azimuth
2400 MHz
2500 MHz
10 dBi
< 1.5:1
360°

Physical Specification

Subtype
Collinear
MIMO
1x1 SISO
Input Ports
1
Dimensions
850 x 47 (H x Dia)

Downloadable Resources

ZCG Scalar™ is a world class radio frequency antenna designer, manufacturer and consulting organisation that offer an integrated approach to identifying RF solutions in partnership with client needs.

ZCG Scalar™ is an Australian owned business operating since 1970. We manufacture hundreds of antenna models to suit your RF communication and broadcasting requirements. The design and development of ...