Illumination apparatus including semiconductor light emitting diodes
An illumination apparatus of a high efficiency light emitting element and a driving circuit of a light emitting element controlling a series and parallel connection relationship between light emitting groups according to a voltage level of a driving voltage and controlling a sequential driving of the light emitting groups at the same time.
1. An illumination apparatus, comprising:
a rectifier configured to be connected to an alternating current (AC) power source and to perform a full-wave rectification for an applied AC voltage, and to provide a rectified voltage which is full-wave rectified to a light emitting unit as a driving voltage, the light emitting unit comprising a first light emitting group to an n-th light emitting group, n being a positive integer of at least two, and configured to emit light by receiving the driving voltage from the rectifier;
a control signal generator configured to generate a switch control signal for controlling a series and parallel connection relationship between the first light emitting group to the n-th light emitting group according to an average voltage level per period of the driving voltage, and generate a current control signal for controlling a sequential driving of at least a portion of the first light emitting group to the n-th light emitting group according to the voltage level of the driving voltage;
a switch unit configured to perform an on or off operation according to the switch control signal, to selectively transfer the driving voltage; and
a current controller comprising a first driving current controller to an n-th driving current controller connected to the first light emitting group to the n-th light emitting group, respectively, the first driving current controller to the n-th driving current controller configured to be selectively activated according to the current control signal.
2. The illumination apparatus of claim 1 , wherein the control signal generator is configured to control the magnitude of a driving current of the light emitting element according to the average voltage level per period of the driving voltage.
3. A driving circuit of a light emitting element configured to control driving of a light emitting unit comprising a first light emitting group to an n-th light emitting group, n being a positive integer of two or more, the driving circuit comprising:
a rectifier configured to be connected to an alternating current (AC) power source, perform a full-wave rectification for an applied AC voltage, and to provide a rectified voltage which is full-wave rectified to a light emitting unit as a driving voltage;
a control signal generator configured to generate a switch control signal for controlling a series and parallel connection relationship between the first light emitting group to the n-th light emitting group according to an average voltage level per period of the driving voltage, and generate a current control signal for controlling a sequential driving of at least a portion of the first light emitting group to the n-th light emitting group according to the voltage level of the driving voltage;
a switch unit configured to perform an on or off operation according to the switch control signal, to selectively transfer the driving voltage; and
a current controller comprising a first driving current controller to an n-th driving current controller connected to the first light emitting group to the n-th light emitting group, respectively, the first driving current controller to the n-th driving current controller configured to be selectively activated according to the current control signal.
4. The driving circuit of claim 3 , wherein the control signal generator is configured to control the magnitude of a driving current of the light emitting element according to the average voltage level per period of the driving voltage.