High gain 9-10GHz pulsed TWT RF Power Amplifier for Scientific Research and Medical Industry with linear amplification capability

High gain 9-10GHz pulsed TWT RF Power Amplifier for Scientific Research and Medical Industry with linear amplification capability

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High gain 9-10GHz pulsed TWT RF Power Amplifier for Scientific Research and Medical Industry with linear amplification capability

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The 9-10GHz 6kW TWT RF Power Amplifier is a high-power microwave amplifier designed for applications requiring significant power output in the 9-10GHz frequency band. This device employs Traveling Wave Tube (TWT) technology as the core amplification method, ensuring high gain, wide bandwidth, and stable output for a variety of high-frequency applications.


Key Features

  • Frequency Range: 9GHz – 10GHz

  • Output Power: 6kW (Peak Power)

  • Amplification Technology: Traveling Wave Tube (TWT)

  • Gain: High gain with linear amplification capability

  • Cooling System: Integrated air or liquid cooling to maintain stable performance

  • Power Supply: Customizable input power configurations

  • Efficiency: High-efficiency power conversion

  • Waveguide Interface: Standard waveguide output for seamless integration

  • Control System: Built-in monitoring and protection circuits for reliability


Performance Highlights

  1. High Power Output: Capable of delivering peak power up to 6kW, suitable for long-range and high-intensity signal transmission.

  2. Wide Bandwidth: Covers the 9GHz-10GHz frequency range, ensuring stable operation across the entire spectrum.

  3. Stable and Reliable: Advanced thermal management systems support continuous operation in demanding and harsh environments.

  4. Precision Amplification: High linear gain ensures minimal signal distortion, ideal for applications requiring signal fidelity.

  5. Robust Design: Durable construction with built-in protection circuits to safeguard the device against overvoltage, overheating, and load mismatches.


Applications

  • Radar Systems: High-power amplification for long-range radar systems in defense and aviation.

  • Electronic Warfare (EW): Signal jamming, electronic countermeasures, and defense-based communication systems.

  • Satellite Communication: Amplification for ground-based and airborne satellite transmitters.

  • Scientific Research: Used in high-frequency experiments, particle accelerators, and microwave plasma generation.

  • Medical Industry: Applications in oncology for radiation therapy systems, microwave ablation, and precision thermal therapies, providing efficient energy delivery for targeted treatments.

  • Test and Measurement: Provides a stable high-power RF source for system testing, calibration, and high-frequency equipment validation.


Summary

The 9-10GHz 6kW TWT RF Power Amplifier is a reliable and high-performance solution for applications requiring significant RF power in the 9-10GHz range. Its advanced TWT technology, high efficiency, and robust design make it ideal for radar systems, satellite communication, electronic warfare, scientific research, and medical applications such as microwave-based cancer treatments and precision thermal therapies.

                                                RF / ELECTRICAL

PARAMETER

MIN

TYP.

MAX

UNIT

Operating Frequency

9


10

GHz

Operating Mode


Pulsed



RF INPUT

-2

0

2

dBm

Power Gain


68


dB

P-sat Output Power

68

68


dBm

Power Gain Flatness


±2


dB

Pulse width

0.26


30

us

Repeat Rate



10

kHz

Duty cycle



5

%

Operating Voltage


220


V AC

Supply Power


2000

3000

W

Continuous operating

time in full power

(6kW)

 

15



 

minute

RF output reverse

power Samples

(coupler)


 

-60


 

dB

RF output forward

power Sample

(coupler)


 

-60


 

dB

RF Output Pulse Video Sample


 

10 mv/kw into 50Ω



Modulation Input imedance


50


Ω

Monitor


LCD, LED, ethernet



 

Control mode


Local

(button)/Remote(ethernet)



Input modulation pulse level


5V(TTL



Throughput delay(from input RF/modulation pulse to output video, 50% point)


<500ns



Spurious phase noise


<40dBc



Operating VSWR


<1.5:1



The specific dimensions are shown below.

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