Electrode temperature diagnostics and a two-dimensional electrode model have been developed to improve our understanding of electrode behaviour in ceramic metal halide lamps. Using transparent YAG arc tubes in dc and ac operation, anode and cathode characteristics, like the effective work function, anode fall and electrode input power, could be derived from the measured temperature profiles. It is found that Dy-iodide in the metal halide lamp filling has a strong so-called gas-phase emitter effect. In order to improve our understanding of the observed phenomena and to help design electrodes for future lamps, a rotational symmetric two-dimensional electrode model has been created. The model is completely phase resolved so that time-dependent...
Ceramic metal halide lamps with rated powers of 70W and 150W are dimmed by reducing their operating ...
Worldwide, 20% of all electricity is used for lighting. For this reason, efficient lamps are economi...
The development of mercury–free metal halide lamps requires a modification of the burner vessel desi...
Electrode temperature diagnostics and a two-dimensional electrode model have been developed to impro...
A diagnostic technique is presented to determine the electrode work function in ac-operated metal ha...
The lifetime of HID lamps is limited by thermal stress of their electrodes. The cathode temperature ...
Based on physical laws, a phase resolved model of the terminal voltage / current (V-I) characteristi...
Worldwide about 20% of all electricity is used for lighting. It is therefore of great interest to de...
The temperature profiles of electrodes in discharge lamps are important as they radically affect the...
Abstract—Large starting voltages in metal halide lamps result in sputtering of the electrodes and re...
Convection and diffusion in the discharge region of a metal–halide lamp are studied using a computer...
The discharge vessels of advanced metal halide lamps are made of polycrystalline alumina (PCA). Such...
The mixture of argon and mercury vapor with temperature-dependent composition is used as the backgro...
This contribution gives a description of numerical models constructed with the PLASIMO toolkit and a...
Ceramic metal halide lamps with rated powers of 70W and 150W are dimmed by reducing their operating ...
Worldwide, 20% of all electricity is used for lighting. For this reason, efficient lamps are economi...
The development of mercury–free metal halide lamps requires a modification of the burner vessel desi...
Electrode temperature diagnostics and a two-dimensional electrode model have been developed to impro...
A diagnostic technique is presented to determine the electrode work function in ac-operated metal ha...
The lifetime of HID lamps is limited by thermal stress of their electrodes. The cathode temperature ...
Based on physical laws, a phase resolved model of the terminal voltage / current (V-I) characteristi...
Worldwide about 20% of all electricity is used for lighting. It is therefore of great interest to de...
The temperature profiles of electrodes in discharge lamps are important as they radically affect the...
Abstract—Large starting voltages in metal halide lamps result in sputtering of the electrodes and re...
Convection and diffusion in the discharge region of a metal–halide lamp are studied using a computer...
The discharge vessels of advanced metal halide lamps are made of polycrystalline alumina (PCA). Such...
The mixture of argon and mercury vapor with temperature-dependent composition is used as the backgro...
This contribution gives a description of numerical models constructed with the PLASIMO toolkit and a...
Ceramic metal halide lamps with rated powers of 70W and 150W are dimmed by reducing their operating ...
Worldwide, 20% of all electricity is used for lighting. For this reason, efficient lamps are economi...
The development of mercury–free metal halide lamps requires a modification of the burner vessel desi...