700-1050MHz 3.5dBi black fatty omni fiberglass antenna

2024-11-22

 

Customized 700-1050MHz 3.5dBi black fatty omni fiberglass antenna 

 

The black fatty is a kind of innovative product designed by Texin,to deal with conmon fiberglass disadvantage such as high consumption.The product combine the perfanmance of classical broden the wide of antennas that made it more sensitive and better dissipation.It widely use in many signal jammer of drone .Customers considerate real case choose suitable band .

 

Customized 700-1050MHz 3.5dBi black fatty omni fiberglass antenna

 

The product wider than conmon omni fiberglass antenna ,the jamming signal transmition has highly improved. Compare with traditional antenna same weight higher power .We offer personal customized such as range band700-1050MHz gain 3.5±0.5dBi length 23.5cm,high power and low consumption has achieved.And it set spring at bottom that makes it better anti shocking.

 

Customized 700-1050MHz 3.5dBi black fatty omni antenna Specification

 

FrequencyRange

700-1050MHz(customized)

Gain(dBi)

3.5±0.5dBi

VSWR

≤2

Polarization

vertical

Horizontal Beamwidth(0º)

Vertical Beamwidth(0º)

360º

55±5º

Connector

N-J

RFconnector impedance

50Ω

Maximum input power(W)

50W

Dimensions­mm(Height/Width/Depth)

ɸ60*235mm

weight

0.405KG

Rated Wind Velocity

60m/s

Color

black

Operating temperature

-40~55 º

length

23.5cm(customized)

 

Customized 700-1050MHz 3.5dBi black fatty omni antenna advantages  

Jamming signal transmit highly improved

Applicate bulk of huge drone jammer

High power and Low energy consumption

Injstalled spring better anti shocking

Multiple band offerd to users

Flexible and facilitate transport

Fiber glass material be not easy to damage

 

 

 

 

Customized 700-1050MHz 3.5dBi black fatty omni antenna announcements

Operating temperature between -40~55 º

Rated Wind Velocity 60m/s

Operating under 60m/s Wind Velocity

Before using read operation manual clearly

Testing within product working distance

Band 700-1050MHz the VSWR≤2