Controller structure for LED light strings
10165638 ยท 2018-12-25
Assignee
Inventors
Cpc classification
H05K5/0026
ELECTRICITY
H05K5/0247
ELECTRICITY
Y02B20/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F21S8/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01H13/06
ELECTRICITY
H01R33/955
ELECTRICITY
Abstract
A controller structure is applied to electrically conduct at least one LED light string and contains: a control box, a high voltage circuit unit, and a lid. The control box includes an opening, a hollow accommodation portion, two pins, and a first fitting portion. The high voltage circuit unit is accommodated in the hollow accommodated portion and includes an input segment and an output segment, a positive-electrode contact and a negative-electrode contact of the input segment are electrically connected with the two pins, a positive-electrode contact and a negative-electrode contact of the output segment are electrically connected with at least two power wires, and the high voltage circuit unit further includes a control unit. The lid covers the opening and includes a socket and a connection portion which is electrically connected with the output segment of the high voltage circuit unit via the at least two power wires.
Claims
1. A controller structure being applied to electrically conduct at least one LED light string and comprising: a control box including an opening defined in a first end of the control box, a hollow accommodation portion formed in the control box, two pins disposed on a second end of the control box, and a first fitting portion arranged on an outer wall of the control box adjacent to the opening; a high voltage circuit unit accommodated in the hollow accommodated portion of the control box, and the high voltage circuit unit including an input segment and an output segment, a positive-electrode contact and a negative-electrode contact of the input segment being electrically connected with the two pins, a positive-electrode contact and a negative-electrode contact of the output segment being electrically connected with at least two power wires, and the high voltage circuit unit further including a control unit; and a lid configured to cover the opening of the control box, wherein the lid includes a socket mounted on an outer wall thereof, a connection portion of an inner wall of the lid opposite to the socket is electrically connected with the output segment of the high voltage circuit unit via the at least two power wires; and wherein the lid also includes a second fitting portion for fitting with the first fitting portion of the control box, wherein after the second fitting portion of the lid is fitted with the first fitting portion of the control box, the second fitting portion and the first fitting portion are ultrasonically welded together; wherein after the output segment of the high voltage circuit unit and the socket of the lid are connected with the at least two power wires, the high voltage circuit unit is accommodated in the hollow accommodation portion of the control box, and the first fitting portion of the control box is ultrasonically welded with the second fitting portion of the lid; wherein the high voltage circuit unit further includes a circuit board, multiple electronic elements disposed on the circuit board, an SCR disposed on the circuit board, and a TRIAC disposed on the circuit board, the SCR is electrically connected to the TRIAC, and the TRIAC is electrically connected to the control unit to execute input, output, and rectification; the hollow accommodation portion of the control box has two guiding rails secured therein so as to slide and limit two peripheral sides of the high voltage circuit unit; the input segment of the high voltage circuit unit is two flexible C-shaped retainers, and the two pins have two holders respectively extending toward the hollow accommodation portion of the control box so that the input segment of the high voltage circuit unit movably connects with the two holders, and the two pins electrically conduct with the input segment of the high voltage circuit unit; and the control unit of the high voltage circuit unit has a controlling seat and a driven stem fixed on the controlling seat, and the lid further includes a button arranged on the outer wall thereof adjacent to the socket and corresponding to the driven stem.
2. The controller structure as claimed in claim 1, wherein the first fitting portion of the control box is multiple peripheral grooves, and the second fitting portion of the lid is multiple peripheral ribs.
3. The controller structure as claimed in claim 1, wherein the socket of the lid is electrically connected with a connection segment of a first electrical connector of a first LED light string, the first LED light string is electrically connected with LED bulbs, and the first LED light string has a second electrical connector disposed on a distal end thereof so as to electrically connect with a third electrical connector of multiple second light strings.
4. The controller structure as claimed in claim 3, wherein the socket of the lid has a threaded section defined around an outer wall thereof and screwed with the first electrical connector.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8) With reference to
(9) The control box 10 includes an opening 12 defined in a first end thereof, a hollow accommodation portion 12 formed therein, two pins 16 disposed on a second end of the control box 10, a first fitting portion 14 arranged on an outer wall of the control box 10 adjacent to the opening 12.
(10) A high voltage circuit unit 20 is accommodated in the hollow accommodated portion 11 of the control box 10, and the high voltage circuit unit 20 includes an input segment 26 and an output segment 23, wherein a positive-electrode contact and a negative-electrode contact of the input segment 26 are electrically connected with the two pins 16, a positive-electrode contact and a negative-electrode contact of the output segment 23 are electrically connected with at least two power wires 231, and the high voltage circuit unit 20 further includes a control unit C.
(11) The lid 30 is configured to cover the opening 12 of the control box 10, and the lid 30 includes a socket 33 mounted on an outer wall thereof, a connection portion of an inner wall of the lid 30 opposite to the socket 33 is electrically connected with the output segment 23 of the high voltage circuit unit 20 via the at least two power wires 231. The lid 30 also includes a second fitting portion 34 for fitting with the first fitting portion 14 of the control box 10, wherein after the second fitting portion 34 of the lid 30 is fitted with the first fitting portion 14 of the control box 10, the second fitting portion 34 and the first fitting portion 14 are ultrasonically welded together so as to avoid water flowing into the control box 10.
(12) The control unit C of the high voltage circuit unit 20 has a controlling seat 24 and a driven stem 25 fixed on the controlling seat 24, and the lid 30 further includes a button 31 arranged on the outer wall thereof adjacent to the socket 33 and corresponding to the driven stem 25.
(13) Preferably, the high voltage circuit unit 20 further includes a circuit board 21 and multiple electronic elements 22 arranged on the circuit board 21 so as to execute input, output, rectification of high voltage power and to control circuit of the at least one LED light string. An SCR (silicon-controlled rectifier) 27 and a TRIAC (triode for alternating current) 28 are provided on the high voltage circuit unit 20. The SCR 27 is electrically connected to the TRIAC 28, which is in turn electrically connected to the controlling seat 24.
(14) Preferably, the first fitting portion 14 of the control box 10 is multiple peripheral grooves 15, and the second fitting portion 34 of the lid 30 is multiple peripheral ribs 35.
(15) Preferably, the hollow accommodation portion 11 of the control box 10 has two guiding rails 13 secured therein so as to slide and limit two peripheral sides of the high voltage circuit unit 20.
(16) Preferably, the input segment 26 of the high voltage circuit unit 20 is two flexible C-shaped retainers, and the two pins 16 have two holders 17 respectively extending toward the hollow accommodation portion 11 of the control box 10 so that the input segment 26 of the high voltage circuit unit 20 movably connects with the two holders 17, and the two pins 16 electrically conduct with the input segment 26 of the high voltage circuit unit 20.
(17) Preferably, a voltage of each of the input segment 26 and the output segment 23 is within 110V to 220V.
(18) Referring to
(19) As shown in
(20) Thereby, after the output segment 23 of the high voltage circuit unit 20 and the socket 33 of the lid 30 are connected with the at least two power wires 231, the high voltage circuit unit 20 is accommodated in the hollow accommodation portion 11 of the control box 10, and the first fitting portion 14 of the control box 10 is ultrasonically welded with the second fitting portion 34 of the lid 30 so as to avoid the water flowing into the control box 10 and to decrease manufacture time.
(21) While the preferred embodiments of the invention have been set forth for the purpose of disclosure, modifications of the disclosed embodiments of the invention as well as other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the invention.