With over 30 years of experience in the manufacturing of molecular beam cells, we provide products that are optimal for our customers' usage environments and purposes, based on our extensive experience and knowledge.
In addition to standard products, we design and manufacture according to customer specifications by utilizing our extensive experience and CAD. To date, we have a wealth of delivery records, including standard products, special specification cells, and alternatives for various MBE devices, ranging from research and development to large-scale production equipment.
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**Features** - By pursuing optimal materials, structures, and surface treatments, gas emission is extremely low, allowing for film formation with minimal contamination. - In addition to standard specifications, we also accept special specifications. We have numerous achievements in cracking cells, gas source cells, ionization cells, and more. Please contact us separately for inquiries. - This is an original power supply designed specifically for substrate heating mechanisms and molecular beam cell heating, combining a temperature controller and a switching power supply. It achieves miniaturization, high precision, high output, and low cost through optimal design. - Energy-saving due to high-efficiency switching power supply. - The temperature controller can be selected according to specifications, including programmable and PID control methods. - Rack mountable (H200 JIS size) and floor placement options are available. - Compatible with input voltages of 100V and 200V, unaffected by the power conditions of the installation location. For more details, please contact us or refer to the catalog.
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In 1972, the first president, Horita, established Taisei Sangyo Co., Ltd. using the entrance of his home as a workplace, and since then, we have been dedicated to technology development and research. Initially, we were involved in the development of devices such as the Polack counter for the Meteorological Research Institute, starting our work in the field of atmospheric science. Subsequently, we expanded our work into the vacuum world by starting maintenance services for leak detectors. Around the 10th anniversary of our founding, work in ultra-high vacuum began to increase, and by the 15th anniversary, we were able to manufacture small devices. Currently, our scope of work has significantly expanded, not only covering ultra-high vacuum, MBE, CVD, ECR, and RF radical sources, but also advancing the development of functional components utilizing various plasmas, ions, or electrons. In the future, we aim to become a small enterprise that can truly compete in the world of cutting-edge technology.