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Microwave / Millimeter-Wave Devices

We at AET take pride in our engineers who have in-depth technical knowledge in the areas of microwave and millimeter wave technology. We hope that we can serve you to benefit your research and development, production and purchase strategies.

Microwave/Millimeter-wave Power Supply

AET, Inc.

The Microwave/Millimeter-wave Power Supply has a frequency range of 2GHz to 30GHz, and can deliver 650W output power. This power supply consists of a high power amplifier*, a solid-state signal source and a pulse generator for microwave modulation. It has excellent stability in output power and allows variable frequencies and pulse modulation. It can be utilized for various industrial applications and researches such as ECR plasma and accelerators. *A TWT amplifier or a solid-state amplifier can be chosen.

Microwave/Millimeter-wave Power Supply (2P/319KB)

Pulse Modulation Type Microwave Power Supply

AET, Inc.

Pulse Modulation Type Microwave Power Supply developed by AET, Inc. has a 1W-1.5kW range of average power with a continuously variable pulse width and repetition. Since the systm contains an isolator and is quite durable against reflection from the load, its magnetron remains stable. This microwave power supply can be utilized for various RF experiments as well as plasma.

Pulse Modulation Type Microwave Power Supply (1P/539KB)

Solid State Microwave Amplifier

AET, Inc.

The solid-state microwave amplifier developed by AET, Inc. has a frequency range of 2.45GHz ±50MHz, and can deliver 100W output power. As it is composed of all solid-state components, it has more excellent stability in frequency and output power, and is more economical without the need for replacement parts compared to the conventional magnetron-mode microwave amplifier. It is compact, thin, and rack-mounted; and allows cascading of amplifiers by using two or more units in a stack.

It can be used for microwave heating and as a plasma generation source in industrial and medical treatments. Moreover, since it allows pulse modulation by an external trigger, it can also be utilized for experiments and researches that require a pulse modulated microwave source.

Solid State Microwave Amplifier (1P/425KB)

 

Pulse Generator for Microwave Modulation

AET, Inc.

Pulse Generator for Microwave Modulation developed by AET, Inc. connects to a power supply and a magnetron head, and controls microwave output with pulse widths of 1μs - 990ms. This pulse generator has a frequency counter, and can set up and read the frequency from panel input. A BNC monitor terminal on the panel allows easy connection to an oscilloscope.


Pulse Generator for Microwave Modulation (1P/534KB)

Microwave Power Monitor

AET, Inc.

Microwave Power Monitor developed by AET, Inc. can monitor forward and reflected microwave power. It uses a directional coupler as connecting sensor, and uses an advanced active detector. Therefore, it detects power easily at a low cost.This handy microwave power monitor can be used for plasma as well as various microwave experiments.

Microwave Power Monitor (1P/534KB)


Microwave Heating and Drying Systems

PUSCHNER

PUSCHNER has many years of experience in the microwave system engineering and process techniques, and develops and manufactures microwave heating and drying systems. Their microwave heating technique allows homogeneous heating in a short drying time for temperature sensitive products.Types of the microwave heating and drying plants are vacuum driers, flow heater, continuous driers, and chamber oven.They can be utilized for various field such as chemical, medical treatment, ceramic, plastics, foods and printing industries.

Klystron microwave generators

SAIREM

SAIREM S.A., set up in 1978, is one of the most important manufacturer of microwave and radio frequency systmes for laboratory and industry.
The klystron microwave generators can operate at frequencies of 10GHz and 14GHz with output power of 2500W CW. They have the characteristics of power stability whatever the load and very fast response time at a pulse. They can be utilized for varied applications as low-pressure and atomospheric pressure plasmas, for heat treatment by dielectric loss or as ion sources in industory or research.