CN218648289U - Power output extension RGB luminescence integration line - Google Patents

Power output extension RGB luminescence integration line Download PDF

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Publication number
CN218648289U
CN218648289U CN202222413745.3U CN202222413745U CN218648289U CN 218648289 U CN218648289 U CN 218648289U CN 202222413745 U CN202222413745 U CN 202222413745U CN 218648289 U CN218648289 U CN 218648289U
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rgb
power
optical fiber
light
built
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皮双
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Abstract

A power output extended RGB light emitting integrated line relates to the technical field of computer peripherals. The power supply device comprises a power taking end for connecting a power supply; the power transmission end is used for connecting power utilization hardware; the optical fiber integrated wire is connected with the power taking end and the power transmitting end; the built-in light guide optical fiber is arranged in the optical fiber integrated wire; the RGB control component is connected with the built-in light guide optical fiber; and the RGB interface line is arranged on the RGB control component; the RGB interface line is used for connecting an RGB lamp effect control interface of the host, and the built-in light guide optical fiber is used for synchronously emitting light with the RGB of the host under the condition that the RGB control component is lightened. Adopt above-mentioned technical scheme, can realize sending the impression of RGB light by cable itself, more pleasing to the eye and resistant seeing, removed the trouble in installation lamp area simultaneously from, reduced the installation degree of difficulty.

Description

Power output extension RGB luminescence integration line
Technical Field
The utility model relates to a computer peripheral hardware technical field, concretely relates to luminous integrated line of power output extension RGB.
Background
In the process of computer host equipment, often can use the power output extension line, its power consumption hardware that is used for connecting in mainframes such as mainboard, CPU, display card, the normal operating of guarantee host computer to can let expose in the host computer in the wire rod of visual position neatly more pleasing to the eye. In the field of host DIY, users often add RGB lighting effects to the accessories and wires inside the host, and further improve the aesthetic feeling through the cool lighting effects. At present, a programmable light-emitting lamp belt is generally arranged on a wire rod in a mode of adding RGB light-emitting effect to the wire rod, certain installation difficulty is achieved, the wire rod cannot emit light, and the feeling of being natural and natural is lacked in appearance and feel.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art not enough, provide a luminous integrated line of power output extension RGB, have the luminous advantage that seems pleasing to the eye resistant more of cable itself.
In order to achieve the purpose, the utility model adopts the technical proposal that: a power output extended RGB light integration line comprising: the power taking end is used for connecting a power supply; the power transmission end is used for connecting power utilization hardware; the optical fiber integrated wire is connected with the power taking end and the power transmitting end; the built-in light guide optical fiber is arranged in the optical fiber integrated wire; the RGB control component is connected with the built-in light guide optical fiber; and the RGB interface line is arranged on the RGB control component; the RGB interface line is used for connecting an RGB lamp effect control interface of the host, and the built-in light guide optical fiber is used for synchronously emitting light with the RGB of the host under the condition that the RGB control component is lightened.
The utility model discloses further set up, optic fibre integrated electric wire is including outer by with locate outer by the inside conductor heart yearn that is close to center department, built-in leaded light optic fibre locates outer by inside center department of keeping away from.
The utility model discloses further set up, the end of getting electricity is 24pi n power source, send the electricity end to be 24pi n mainboard interface.
The utility model discloses further set up, the quantity of built-in leaded light optic fibre is three.
The utility model discloses further set up, the end of getting electricity is 8pi n power source, send the electricity end to be PC I e 8pi n interface.
The utility model discloses further set up, the quantity of built-in leaded light optic fibre is one.
After the technical scheme is adopted, the utility model discloses beneficial effect does: the inside built-in leaded light optic fibre that sets up of optic fibre integrated wire, RGB control assembly is luminous with the host computer is synchronous under the control is imitated to the host computer lamp, and it is luminous to take the built-in leaded light optic fibre of bright simultaneously, realizes sending the impression of RGB light by cable itself, and is more pleasing to the eye and resistant seeing, has removed the trouble in installation lamp area simultaneously from, has reduced the installation degree of difficulty.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
FIG. 1 is a schematic view of the present invention;
fig. 2 is a schematic cross-sectional view of the optical fiber integrated wire of the present invention;
fig. 3 is a schematic structural diagram of another embodiment of the present invention.
Description of the reference numerals: 1. an optical fiber integrated wire; 11. an outer quilt; 12. a conductor core wire; 2. a power taking end; 21. a 24p i n power interface; 22. an 8p i n power interface; 3. a power transmission end; 31. a 24p i n mainboard interface; 32. a PC ie 8pi n interface; 4. a light guide fiber is arranged inside; 5. an RGB control component; 6. RGB interface lines.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment as required without making a contribution, but all the embodiments are protected by the patent law within the scope of the claims of the present invention.
The present embodiment relates to a power output extended RGB light-emitting integrated line, which mainly includes a power-taking end 2, a power-sending end 3, an optical fiber integrated wire 1, a built-in light-guiding optical fiber 4 disposed in the optical fiber integrated wire 1, an RGB control module 5 connected to the built-in light-guiding optical fiber 4, and an RGB interface line 6 connected to the RGB control module 5, as shown in fig. 1. The power taking end 2 is used for being connected with a power supply to take power, the power transmitting end 3 is used for being connected with power utilization hardware in a host, and the optical fiber integrated wire 1 is connected with the power taking end 2 and the power transmitting end 3 to achieve the function of a power supply extension line. The intuitive and tidy degree of the wiring inside the host is effectively improved.
The RGB control assembly 5 is arranged on the end part of the optical fiber integrated wire 1 and is connected with the built-in light guide optical fiber 4, and RGB lamps are arranged in the RGB control assembly 5 and are used for realizing a programmable RGB light-emitting function. The RGB interface line 6 is led out from the RGB control component 5 and is used for connecting the RGB light effect control interface of the host and receiving RGB signals sent by the light effect control system, so that the host can uniformly control the RGB control component 5 through the light effect control system, and the light effect of the RGB control component 5 can be synchronous with other RGB light of the host. Built-in leaded light optic fibre 4 is connected with RGB control module 5, therefore when RGB control module 5 lighted the luminescence under the host computer is coordinated, built-in leaded light optic fibre 4 can be taken by RGB control module 5 and bright, finally makes whole cable give out light from inside to outside, and the light effect is natural, seems more pleasing to the eye. Meanwhile, the built-in light guide fiber 4 is lightened by the RGB control component 5, so that the light emitting effect of the built-in light guide fiber 4 is synchronous with the RGB of the host. The trouble of additionally installing and debugging lamp area has been removed from on the cable in the design of the built-in leaded light optic fibre 4 of cable, and installation and use are more convenient.
Specifically, the optical fiber integrated electric wire 1 is mainly structured as shown in fig. 2, and mainly includes an outermost outer covering 11 and a conductor core wire 12 disposed inside the outer covering 11 near the center, while the built-in light guiding optical fiber 4 is disposed inside the outer covering 11 far from the center. The built-in light guide optical fiber 4 is arranged at the relative outer side, and light can not be shielded by the conductor core wire 12 during light emitting, so that the light can be better transmitted to the outside for users to enjoy.
In this embodiment, the power receiving terminal 2 is a 24pi n power interface 21, and the power transmitting terminal 3 is a 24pi n motherboard interface 31, as shown in fig. 1, that is, the whole is a motherboard power extension line, and is adapted to the motherboard 24pi n power supply interface. The volume of the optical fiber integrated wire 1 is large, and the number of the built-in light guide optical fibers 4 is three, so that the light effect can be covered at each angle of the optical fiber integrated wire 1, and the visual aesthetic feeling is increased.
In the second embodiment, the power taking end 2 is an 8pi n power interface 22, and the power transmitting end 3 is a PC ie 8pi n interface 32, as shown in fig. 3, that is, the power taking end is an extension line of a display card power supply, and is specifically adapted to a 6+ 2pi n display card power supply interface. At this time, the volume of the optical fiber integrated wire 1 is small, so that the number of the built-in light guide optical fibers 4 is specifically one in this embodiment, and the cost and the energy consumption can be reduced while the light effect coverage area can be satisfied.
The interface specifications of the power taking end 2 and the power transmitting end 3 are adjusted and adapted according to actual host power utilization hardware, and the number of the built-in light guide optical fibers 4 in the optical fiber integrated wire 1 is adjusted and adapted along with the volume of the cable, so that the application of the optical fiber integrated wire to various power utilization hardware can be expanded.
The working principle of the utility model is as follows: the optical fiber integrated wire 1 is internally provided with the built-in light guide optical fiber 4, the built-in light guide optical fiber 4 is connected with the RGB control component 5, the RGB control component 5 is internally provided with an RGB lamp for realizing a programmable RGB light emitting function, the RGB interface wire 6 is led out from the RGB control component 5, the RGB lamp effect control interface connected with the host computer receives RGB signals sent by the lamp effect control system, so that the host computer can control the RGB control component 5 to emit light through the lamp effect control system, and meanwhile, the built-in light guide optical fiber 4 can be lightened by the RGB control component 5, finally, the whole cable can emit light from inside to outside, the light effect is natural, and the appearance is more attractive. The design of the light guide optical fiber 4 arranged in the cable eliminates the trouble of additionally installing and debugging the lamp strip on the cable, and the installation and the use are more convenient.
The above description is only for the purpose of illustration and not limitation, and other modifications or equivalent replacements made by those skilled in the art to the technical solution of the present invention should be covered by the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solution of the present invention.

Claims (6)

1. A power output extended RGB light integration line comprising:
the power taking end (2) is used for connecting a power supply;
a power transmission end (3) for connecting with the power utilization hardware;
an optical fiber integrated wire (1) connecting the power take-off terminal (2) and the power transmission terminal (3);
a built-in light guide optical fiber (4) arranged in the optical fiber integrated wire (1);
an RGB control component (5) connected with the built-in light guide optical fiber (4); and
the RGB interface line (6) is arranged on the RGB control component (5);
the RGB interface line (6) is used for connecting an RGB light effect control interface of a host, and the built-in light guide optical fiber (4) is used for emitting light synchronously with the RGB of the host under the condition that the RGB control component (5) is lightened.
2. The power output extension RGB light integration line according to claim 1, wherein the optical fiber integrated wire (1) includes an outer cover (11) and a conductor core wire (12) disposed inside the outer cover (11) near the center, and the built-in light guide fiber (4) is disposed inside the outer cover (11) far from the center.
3. The power output extension RGB light integration line of claim 1, wherein the power take-off (2) is a 24pin power interface (21) and the power send-off (3) is a 24pin motherboard interface (31).
4. The power-output extended RGB light-integration line according to claim 3, wherein the number of the built-in light-guiding fibers (4) is three.
5. The power output extended RGB light integration line of claim 1, wherein the power take-off (2) is an 8pin power interface (22) and the power send-off (3) is a PCIe 8pin interface (32).
6. The power output extended RGB light integration line according to claim 5, wherein the number of the built-in light guide fibers (4) is one.
CN202222413745.3U 2022-09-08 2022-09-08 Power output extension RGB luminescence integration line Active CN218648289U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222413745.3U CN218648289U (en) 2022-09-08 2022-09-08 Power output extension RGB luminescence integration line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222413745.3U CN218648289U (en) 2022-09-08 2022-09-08 Power output extension RGB luminescence integration line

Publications (1)

Publication Number Publication Date
CN218648289U true CN218648289U (en) 2023-03-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222413745.3U Active CN218648289U (en) 2022-09-08 2022-09-08 Power output extension RGB luminescence integration line

Country Status (1)

Country Link
CN (1) CN218648289U (en)

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