Fully automatic high-temperature vacuum drying and baking treatment... DY-P type. Additionally, equipped with a large displacement pump to significantly increase exhaust speed... DY-MP type.
This is an automatic vacuum drying and baking device designed as a production machine. It is a vacuum drying device that pursues the reliability, durability, and operability required for production lines, while enabling high-temperature processing up to 650°C. Please choose a model that suits your purpose and application from two types with different ultimate pressures and exhaust speeds (DY-P and DY-MP). ■ DY-P Type The exhaust system is composed solely of an oil rotary vacuum pump, achieving an ultimate pressure of ×10 Pa. ■ DY-MP Type The exhaust system consists of an oil rotary vacuum pump and a mechanical booster, achieving an ultimate pressure of ×1 Pa, which is one order of magnitude better than the DY-P type, and provides a large exhaust speed due to the mechanical booster. It is suitable for the bulk processing of workpieces containing a lot of gases.
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■Heating Mechanism An internal heating method using sheath micro-heaters installed under each shelf as the heat source. It is also possible to install heaters on the walls of the tank depending on the workpiece. Compared to external heating methods, the time to reach the set temperature is shortened, and the temperature distribution within the tank is improved. ■Heating Control Each heater is equipped with a temperature controller for individual PID control, ensuring accurate and reliable temperature control. Additionally, the heating pattern can be set via the programmable controller. ■Usability With the start button ON, the sequencer program automatically operates functions such as vacuum evacuation, heating, and valve opening/closing. The graphic panel displays the ON/OFF status of the equipment system and operating devices, making it easy to check the operating status. Even during individual operation, interlock functions prevent operational errors. ■Safety If an abnormality is detected in the system during automatic operation, the operation will completely stop or certain functions will halt based on the nature of the abnormality (such as low cooling water level, low air pressure, overheating, etc.). The details of the abnormality are indicated by lamps on the graphic panel. In the event of a power outage, the main valve closes to maintain the pressure in the vacuum heating tank, and a pump leak valve opens to prevent pump oil backflow, incorporating protective functions. ■Forced Cooling Function (Optional) can significantly reduce processing time.
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Currently, vacuum technology is showing significant expansion across various industrial fields, including space development, electronics, energy, physics and chemistry, electrical engineering, pharmaceuticals, food, optics, automotive, metals, and steel. These technologies have made substantial contributions at all stages, from research and development to production processes, in every sector of the industry. Furthermore, their results permeate every corner of our lives. At PHIL Sato Vacuum, we have continued to innovate as a vacuum equipment manufacturer for 75 years, developing component technologies that produce vacuum pumps, vacuum measuring instruments, and various vacuum parts, as well as a range of vacuum systems utilizing this vacuum technology, including vacuum drying, vacuum baking, vacuum heat treatment, vacuum deposition, vacuum film formation, ultra-high vacuum exhaust, vacuum injection, and vacuum impregnation. As a comprehensive vacuum manufacturer, we have always advanced research and development from the user's perspective. The corporate activities of PHIL Sato Vacuum, rooted in our "customer-first" principle, are based on our management philosophy that pursues the infinite possibilities of vacuum technology and believes that it is our mission to provide products that match user needs.