The present invention relates to the field of decorative LED light strings and particularly an improved circuit to be used to connect LED light strings having one or more series connection.
LEDs are becoming increasingly popular as a light source in decorative and Christmas lights due to their reliability, energy savings, longevity, and cool operation. Manufacturers of decorative light strings are constantly working to maximize the brightness and benefits of LEDs as a light source as well as reduce production cost to narrow the gap between traditional, incandescent and LED light string cost.
It is known in the art the use of a DC power supply to power LED lamps maximize LED brightness and longevity. However, prior art discloses the use of a full bridge rectification circuit that requires additional wires and/or places undue current load on rectifying diodes, detracting from the appearance of the light string and creating a potential safety hazard.
Both of the light string designs shown in
In addition, reduction of DC ripple is highly desirable in order to minimize LED peak current, thus reducing stress on the LED lamps and maximizing longevity. This has not been addressed by the prior art.
In view of the disadvantages of the prior art, the object of the present invention is to provide an improved decorative light string circuit that can solve the problems mentioned previously.
To attain the aforesaid object, the present invention comprises full bridge rectification located in or downstream of the front plug, said rectification circuit containing one or more voltage reducing and/or filtering elements in order to reduce or limit LED drive current and reduce (filter) DC ripple and 1 or 2 LED series sets. Additional rectification circuits and LED series sets can be added in parallel to the first in “stacked mode”, with each rectification circuit and LED series set electrically independent of prior and subsequent circuits. This eliminates the rectifying diode current summation load restrictions imposed by prior art and associated safety hazard due to diode overheating.
Another advantage of the present invention is nearly unlimited design flexibility whereas prior art has significant limitations. For example a light string can be manufactured without a cord connector using only 2 wires, eliminating the third conductor wire and dummy plug requirement of the prior art shown in
In addition, since each bridge and LED series circuit is electrically independent parallel connected series blocks of LEDs can have varying number of serially connected LEDs within the same light string. For example series block #1 could have 75 LED lamps in series with parallel connected series block #2 having only 25 LED lamps in series and parallel connected series block #3 having 50 LED lamps in series.
In one embodiment of the invention unused DC output terminals can be optionally used to power a variety of add-on components such as music, flashing, fading, animation, or independent current control such as an FET requiring an independent voltage source without affecting the lighting string, furthering the design flexibility aspect of the invention. These optional aspects are not possible in prior art.
Manufacturing cost is significantly reduced as the number of conductor wires does not increase as the number of LED series blocks connected in parallel increases. The prior art shown in
Manufacturing is greatly simplified and made more efficient as the same electrical circuit is used repeatedly. This allows mass production of common electrical components.
This invention, as well as its advantages will become apparent to one of ordinary skill in the art upon review of the included description and figures.
Reference will now be made to the exemplary embodiments illustrated in the drawings, and specific language will be used herein to describe the same.
As shown in
Front rectification and control circuit (03) comprises a full bridge rectifier (05) drawing AC input voltage from parallel conductors (21) via one or more optional resistors (2 are shown in all figures) in order to reduce DC output voltage. The positive DC output terminal of rectifier (05) provides positive DC power to series conductor (20) containing a plurality of serially connected LED lamps (30) containing series resistor (31). A varistor, capacitor, current saturated transistor, current limiting diode (CLD) or other impedance device can be substituted for one or more of the resistors shown.
Series conductor wire (20) then returns to the front rectifier (05) negative DC terminal as shown in
A pictorial example of minimum, average, and peak LED drive current is shown in
Rear rectifier (05) and control circuit (08) are shown in
The unused DC terminals shown in
Naturally, the polarity of components and series connected LEDs can be reversed. Positive DC connections were illustrated first for consistency of illustration only.
It is to be understood that the above-referenced arrangements are illustrative of the application of the principles of the present invention. It will be apparent to those of ordinary skill in the art that numerous modifications can be made without departing from the principles and concepts of the invention as set forth in the following claims.
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