1. Field of the Invention
The present invention relates to an LED light string and an LED module thereof, and more particularly to an LED light string and an LED module with an integrated signal controller thereof.
2. Description of Related Art
An LED (light emitting diode) device is a light-emitting component. When a controller electrically connects to the LED device, the controller provides a driving voltage and a control signal to activate the LED device.
Multiple LED chips can be mounted together to form an LED module. For example, a red LED chip, a green LED chip and a blue LED chip form an LED module. By adjusting the driving voltage, the LED chips are able to produce various colors by mixing different lights.
The controller is applied to provide the driving voltage to the LED device or the LED module. The LED device or the LED module has to be electrically connected to the controller. If an electric product has multiple LED devices or LED modules, such as an LED string, each of the LED devices or LED modules will require a separate controller. All the controllers must be mounted near the LED devices or LED modules in accompaniment. Therefore, the controllers occupy a large space in the electric product.
An objective of the present invention is to provide an LED light string and an LED module thereof. An integrated signal controller is integrated in the LED module. Therefore, a space occupied by the LED module in accordance with the present invention in an electric product will decrease effectively.
To achieve the foregoing objective, the LED module with an integrated signal controller comprises a pin assembly, at least one LED chip, a signal controller and a package.
The pin assembly has a substrate and multiple pins. Each pin has a top end and the multiple pins include a first power pin, a second power pin, a first signal pin and a second signal pin. The substrate is formed on the top end of the first power pin. The at least one LED chip is mounted on the substrate and electrically connected to the substrate. The signal controller is mounted on the substrate and electrically connected to the first power pin, the second power pin, the first signal pin and the second signal pin to provide at least one driving signal to the at least one LED chip. The package is formed to securely enclose the substrate, the at least one LED chip, the signal controller and the top ends of the multiple pins.
The LED light string has a plug, a control device and multiple LED modules mentioned above. The control device is electrically connected to the plug and has a voltage terminal and a signal output terminal. The voltage terminal of the control device is connected to the first power pins and the second power pins of the LED modules, and the signal output terminal of the control device is connected to the first signal pins and the second signal pins of the LED modules.
The first power pin and the second power pin electrically connect to the control device. When the control device provides a control signal to the signal controller, the signal controller decodes the control signal and then generates the driving signal to activate the LED chip.
Because the signal controller is integrated in the LED module, a space occupied by the LED module in accordance with the present invention decreases. Therefore, an electric product with multiple LED modules in accordance with the present invention does not have to provide spaces to mount the signal controllers. The volume of the electric product is able to decrease.
With reference to
The pin assembly 10 has a substrate 110 and multiple pins 11-14. Each pin 11-14 has a top end and the multiple pins 11-14 include a first power pin 11, a second power pin 12, a first signal pin 13 and a second signal pin 14. The substrate 110 is formed on the top end 111 of the first power pin 11.
The at least one LED chip 21-23 is mounted on the substrate 110. This embodiment takes a red LED chip 21, a green LED chip 22 and a blue LED chip 23 mounted on the substrate 110 for example. Each LED chip 21-23 has a first pole 201 and a second pole 202. The first pole 201 is opposite to the second pole 202 in polarization. For example, if the first pole 201 is an anode, the second pole 202 will be a cathode. The first pole 201 is electrically connected to the substrate 110 via a conductive wire 24. With reference to
The signal controller 30 is integrated on the substrate 110 and is electrically connected to the first power pin 11, the second power pin 12, the first signal pin 13, the second signal pin 14 and the second poles 202 of the LED chips 21-23 via multiple conductive wires 24. With reference to
The decoder 31 is electrically connected to the first signal pin 13 to receive a control signal 60 and decodes the control signal 60 into a red light driving signal, a green light driving signal and a blue light driving signal. The shift register 32 receives and stores the red light, the green light and the blue light driving signals. The encoder 33 is electrically connected to the second signal pin 14 to receive and encode the driving signals of the shift register 32 outputted from the second signal pin 14. The output register 34 is electrically and respectively connected to the LED chips 21-23, wherein multiple amplifiers 35 may be electrically connected between the LED chips 21-23 and the output register 34 respectively. The output register 34 receives the driving signals from the shift register 32 and then correspondingly provides the red light, the green light and the blue light driving signals 61, 62, 63 to the red LED chip 21, the green LED chip 22 and the blue LED chip 23.
With reference to
With reference to
With reference to
The plug 71 is applied to connect to an AC power source.
The control device 72 is electrically connected to the plug 71 and has a voltage terminal V+, a ground terminal GND and a signal output terminal CS. The voltage terminal V+ outputs a DC voltage. The signal output terminal CS outputs a control signal.
The voltage terminal V+ of the control device 72 is connected to the first power pins V and the second power pins G of the LED modules 73, and the signal output terminal CS of the control device 72 is connected to the first signal pins I and the second signal pins O of the LED modules 73.
For example, with reference to
The LED modules 73 receive the DC voltage generated from the control device 72 as a working voltage. The control signal generated from the control device 72 is outputted to all of the LED modules 73. By decoding the control signal, the signal controller can generate the red light driving signal, the green light driving signal and the blue light driving signal to the LED chips 21-23. Therefore, the LED chips 21-23 can be activated and generate a certain color light.
With reference to