Principles of Induction light
based on these well-known principles, light can be generated via a gas discharge using simple magnetism.
Electromagnetic transformers, constructed from rings of metal coils and powered by a high frequency electronic ballast, create an electromagnetic field around a glass tube which contains the gas. The discharge path, induced by the coils, forms a closed loop allowing acceleration of free electrons, which collide with mercury atoms and excite the electrons. As the excited electrons from these atoms fall back from this higher energy level to a lower stable state, they emit ultraviolet radiation. This UV energy is converted to visible light as it passes through a phosphor coating on the surface of the tube. The unusual shape of an induction lamp maximizes the efficiency of the electromagnetic fields that are generated.
Benefits of Induction Lighting
Long Life - 60, 000 hours
Color rendering - 85 CRI
Color Temperature - 2, 700K-6, 500K
Energy Efficient - 85+ Lumens per Watt
Lumen maintenance - 70% of its light output at 60, 000 hours
Maintenance costs- go 5 years with out a change out
Instant on Capability - Can be used with photocell or motion sensor
High Output - 40W to 400W
High power factor- 0.99
No flickering, No Strobing, No Noise
Minimal Color shifting
Starting temperatures as low as -25degree centigrade
Low operating frequency: 250 KHz
Instant strike/re-strike
Applications of Induction Lighting
Street light
Tunnel light
Factory light
Parking light
Gas Station Luminaire
Office and Hotel Lighting
Industrial lighting
Home lighting
Outdoor lighting



