Technical Specifications & Details for MEAN WELL XLG-200-12-A Power Supply
- Output Power: 192 W
- Output Voltage: 12 V DC
- Output Current: 16 A (Default)
- Input Voltage Range: 100 – 305 V AC / 142 – 431 V DC, 47 – 63 Hz
- Efficiency: up to 92 %
- Ripple & Noise: ≤ 150 mVp-p
- Inrush Current: max. 65 A @ 230 VAC (Cold Start)
- No Load Power Consumption: < 0.5 W
- Operating Temperature: −40 °C to +90 °C (Tcase)
- Cooling: Fanless free air convection
- Protection Functions: Short circuit, Over current, Over voltage, Over temperature
- Surge Protection: 6KV/4KV immunity (10KV/6KV optional)
- Isolation Voltage: 3750 V AC between Input and Output
- Dimensions (L x W x H): 199 mm x 63 mm x 35.5 mm
- Weight: approx. 850 g
- Safety & EMC Certificates: UL8750, EN61347-1, EN62384, IP67, CE, CB
- Special Feature: A-Type: Output current adjustable via built-in potentiometer (8 - 16 A)
- Manufacturer Warranty: 5 Years
Information about the MEAN WELL XLG-200-12-A
The MEAN WELL XLG-200-12-A is a state-of-the-art LED driver engineered for high-performance lighting applications where durability and efficiency are paramount. Its defining characteristic is the Constant Power Mode operation, which grants users significantly more flexibility in configuring LED systems compared to traditional drivers. Encased in a ruggedized metal housing with an IP67 rating, it is fully protected against dust and water ingress, making it the ideal choice for harsh outdoor environments like skyscraper lighting and stage installations. The unit excels with a wide input range of 100 to 305 VAC, ensuring stable operation even in regions with unstable power grids. As an A-Type model, it features an internal potentiometer that allows for manual adjustment of the current from 8A up to 16A, providing a tailored power solution for specific luminaire requirements. Furthermore, its advanced thermal management allows for a fanless design that maintains a service life of over 50,000 hours at high case temperatures, ensuring long-term project stability and reducing maintenance costs significantly.