Products
Signal Reduction Module 30 W 5000-6000 MHz

Signal Reduction Module 30 W 5000-6000 MHz

The 30W 5000-6000MHz Signal Jamming Module is a powerful jamming device specially designed for the 5000-6000MHz frequency range, which can effectively block signal transmission in this frequency range and provide a reliable signal jamming solution in certain scenarios. And TeXin, as a professional manufacturer, we would like to provide you with high quality Small Scale seat.

Signal suppression module 30 W 5000-6000 MHz

The 30 W signal jammer module, operating in the frequency range 5000-6000 MHz, is equipped with a professional heat dissipation system. This allows the heat generated during module operation to be quickly and efficiently removed, ensuring stable operation of the equipment over a long period. It also avoids performance degradation or failure due to excessive heat.

Signal suppression module 30 W 5000-6000 MHz Specification

No.

Element

Data

Unit

1

Frequency

5000-6000(customized)

MHz

2

Test voltage

28

V

3

Flow

2.8

A

4

Exit

30-40W

W

5

Gain

45

dB

6

Output stability

1

dB

7

Connector

SMA / Female

8

SWR output connector

≤1.30 (no power and VNA test)

9

Power cord

Red+black+on wire

10

Enabling Control

High ON Low Off

11

Case size

132*53*16

mm

12

Mounting hole

46*125

mm

13

Weight

243

g

14

Operating temperature

-40~+65

15

Outer shell material

Outer shell material

16

The need for vibration

The need for vibration


Hot Tags: Signal Reduction Module 30W 5000-6000MHz China Manufacturer Supplier Factory
Send Inquiry
Contact Info
  • Address

    201, Building A, No. 1, Xinghua Road, Pingxi Community, Pingdi Road, Longgang District, Shenzhen City, Guangdong Province, China

Welcome to our website! For information about our products or price, please leave your email address to us and we will be in touch within 24 hours.
X
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies. Privacy Policy
Reject Accept