Energy-saving, high-efficiency fryer that enables precise cooking.
The blast-type gas fryer "DBC-B" is an energy-saving fryer that uses a blast method (forced combustion) to reduce gas consumption. It features a detachable conveyor frame that allows for complete cleaning of the conveyor, improving sanitation. Additionally, it is equipped with comprehensive HACCP-compliant features, managing cooking conditions through a touch panel and digital display, and designed to minimize oil usage. 【Features】 ■ The upper and lower conveyors sandwich the ingredients, eliminating the need for flipping. ■ Even thick ingredients are securely "sandwiched and fried." ■ Energy-efficient and high-efficiency forced combustion method. ■ Digital management of cooking conditions via touch panel. ■ Comprehensive safety devices. *For more details, please feel free to contact us.
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【Energy-saving and high-efficiency fryer that enables precise cooking】 Energy-saving and high-efficiency with blast (forced combustion) method! By forcibly supplying the air needed for combustion and ensuring clean burning, this forced combustion method reduces unnecessary gas consumption, allowing for the same performance with less gas than conventional methods. It features an excellent energy-saving combustion method that is also environmentally friendly. With three-point temperature control, it produces crispy, juicy, and delicious fried foods.
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The deliciousness of Japan. It is not just the food for special occasions, but the deliciousness that supports our everyday lives, whether on sunny days or not. Familiar flavors and warmth at home, at school, and at convenience stores. Asahi Sōsetsu, based on the technology cultivated over many years, contributes to the production and development of safe and secure food, while combining technology and ideas with consideration for the environment. From the development and design of food processing and cooking machinery to the construction of production lines, we pursue the creation of machines with "deliciousness" as the central measure.