11-25-2025, 03:47 PM
SMEG has earned global recognition for delivering high-precision laboratory equipment built with Italian craftsmanship and advanced engineering. The Glassware Washers of Small Dimensions from SMEG’s GW Series exemplify this excellence, offering reliable, traceable, and customizable washing cycles suitable for research labs, hospitals, pharmaceutical facilities, and industrial sectors across Egypt. Through Gemicatech—the authorized SMEG agent in Egypt—laboratories gain direct access to official products, expert consultations, rapid quotations, and exceptional technical support.
Premium Construction for Maximum Durability
The SMEG GW Series is designed using high-grade materials to ensure long-lasting performance. The internal chamber and door are made from AISI 316L stainless steel with nickel-chromium molybdenum, guaranteeing resistance to corrosion, high temperatures, chemical detergents, and organic solvents. External panels feature AISI 304 stainless steel for added durability, making the Glassware Washers of Small Dimensions ideal for demanding laboratory conditions. All plastic components are engineered to withstand heat and aggressive washing chemicals, ensuring safety and stability throughout every cycle.
Advanced Controls and Flexible Programs
Each washer is equipped with an electronic microprocessor system that includes up to 7 preset programs and 6 customizable cycles (except for model GW0160). This allows laboratories to adapt washing processes to different types of glassware, contamination levels, and experimental needs. Users benefit from a clear digital interface with a four-digit display, clock, calendar, and intuitive controls.
Temperature is precisely regulated from room level up to 85°C, supported by highly accurate PT1000 sensors. Optional detergent level sensors further enhance consistency and repeatability.
Safety, Traceability, and Data Management
Safety is central to the SMEG design, with features such as electromagnetic door locks, thermostatic protection, and automatic door operations. The washers include an intelligent alarm system capable of displaying up to 30 alerts and can connect to a PC through an RS232 port for troubleshooting (not available on GW0160). Data logging functions allow storage of up to 250 recent cycles, providing essential traceability for quality audits and regulatory requirements.
Water, Heating, and Customization Options
The system incorporates cold and demineralized water inlets, optional booster pump, integrated water softening, and a recirculation pump delivering up to 400 L/min. Heating elements support both single-phase and three-phase power configurations, ensuring compatibility with diverse laboratory setups. Optional accessories include forced hot air drying, steam condensers, and additional detergent pumps.
Industries Served and Local Support
The Glassware Washers of Small Dimensions cater to pharmaceuticals, hospitals, cosmetics, food and beverage, oil and gas, environmental testing, and materials processing. In Egypt, Gemicatech enhances the value of SMEG equipment by offering expert installation, spare parts, maintenance, and immediate technical assistance via WhatsApp or direct contact.
By choosing SMEG’s advanced small-dimension washers, laboratories secure unmatched hygiene, efficient performance, and long-term reliability—elevating operational standards across all scientific workflows.
Premium Construction for Maximum Durability
The SMEG GW Series is designed using high-grade materials to ensure long-lasting performance. The internal chamber and door are made from AISI 316L stainless steel with nickel-chromium molybdenum, guaranteeing resistance to corrosion, high temperatures, chemical detergents, and organic solvents. External panels feature AISI 304 stainless steel for added durability, making the Glassware Washers of Small Dimensions ideal for demanding laboratory conditions. All plastic components are engineered to withstand heat and aggressive washing chemicals, ensuring safety and stability throughout every cycle.
Advanced Controls and Flexible Programs
Each washer is equipped with an electronic microprocessor system that includes up to 7 preset programs and 6 customizable cycles (except for model GW0160). This allows laboratories to adapt washing processes to different types of glassware, contamination levels, and experimental needs. Users benefit from a clear digital interface with a four-digit display, clock, calendar, and intuitive controls.
Temperature is precisely regulated from room level up to 85°C, supported by highly accurate PT1000 sensors. Optional detergent level sensors further enhance consistency and repeatability.
Safety, Traceability, and Data Management
Safety is central to the SMEG design, with features such as electromagnetic door locks, thermostatic protection, and automatic door operations. The washers include an intelligent alarm system capable of displaying up to 30 alerts and can connect to a PC through an RS232 port for troubleshooting (not available on GW0160). Data logging functions allow storage of up to 250 recent cycles, providing essential traceability for quality audits and regulatory requirements.
Water, Heating, and Customization Options
The system incorporates cold and demineralized water inlets, optional booster pump, integrated water softening, and a recirculation pump delivering up to 400 L/min. Heating elements support both single-phase and three-phase power configurations, ensuring compatibility with diverse laboratory setups. Optional accessories include forced hot air drying, steam condensers, and additional detergent pumps.
Industries Served and Local Support
The Glassware Washers of Small Dimensions cater to pharmaceuticals, hospitals, cosmetics, food and beverage, oil and gas, environmental testing, and materials processing. In Egypt, Gemicatech enhances the value of SMEG equipment by offering expert installation, spare parts, maintenance, and immediate technical assistance via WhatsApp or direct contact.
By choosing SMEG’s advanced small-dimension washers, laboratories secure unmatched hygiene, efficient performance, and long-term reliability—elevating operational standards across all scientific workflows.

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