Description
The High Pressure Facial Lamp 1450-1530W offers a professional-grade solution for high-intensity tanning systems requiring a 230V power supply. Notably, this premium quartz lamp features a round Pin (R) connection to ensure a secure and efficient electrical fit. Consequently, users can expect a consistent and powerful UV output that delivers superior facial tanning results every session.
Operating within the 230V range, the High Pressure Facial Lamp 1450-1530W is engineered to withstand the significant thermal demands of commercial equipment. Furthermore, the high-quality quartz construction allows for optimal UV transmission and a long operational lifespan. Before you complete your purchase, please verify your unit’s dimensions against the technical specifications provided below.
Technical Dimensions and Specifications
The High Pressure Facial Lamp 1450-1530W requires precise fitting for safe and efficient performance. Most importantly, you should confirm the following measurements for your specific fixture:
- Dimension A (Arc Length): 48mm
- Dimension C (Total Length): 128mm
- Dimension D (Diameter): 28mm
- Wattage: 1450-1530W High Output
- Voltage: 230V Professional Grade
- Connection Type: Round Pin (R)
Benefits of Premium Quartz Technology
Standard glass often clouds or fails under high-wattage stress, but the High Pressure Facial Lamp 1450-1530W utilizes premium quartz to maintain clarity. However, this material also provides superior resistance to thermal shock. Most importantly, this durability ensures that your tanning equipment continues to provide the deep, even color that clients expect from professional salons.
Installation and Maintenance Tips
Because the Facial Lamp 1450-1530W operates on a high-wattage system, always ensure your power supply is compatible before installation. Furthermore, avoiding direct skin contact with the quartz surface during handling will prevent premature failure caused by oils. By maintaining these high-performance lamps properly, you ensure your tanning bed operates at peak efficiency.



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