JP3163501U - Energy saving lamp - Google Patents

Energy saving lamp Download PDF

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Publication number
JP3163501U
JP3163501U JP2010003142U JP2010003142U JP3163501U JP 3163501 U JP3163501 U JP 3163501U JP 2010003142 U JP2010003142 U JP 2010003142U JP 2010003142 U JP2010003142 U JP 2010003142U JP 3163501 U JP3163501 U JP 3163501U
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Japan
Prior art keywords
lamp
power supply
supply unit
energy
path
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Expired - Fee Related
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JP2010003142U
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Japanese (ja)
Inventor
朱裕麟
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光裕應用能源科技有限公司
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Priority to JP2010003142U priority Critical patent/JP3163501U/en
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Abstract

Provided is a lamp structure which can be arbitrarily coupled to a lamp holder and can be easily detached, and can supply electric energy to a light emitting element by the lamp itself. A lamp fixture comprising at least a lamp body, a connecting body, and a light bulb, wherein a pivot block 11 is installed at an end of the lamp body, and an elastic body 12 is provided at an outer edge of the pivot block. The connecting body is fixed to the pivot block by contacting the inside of the connection body with an elastic body, and is connected to one end of the pivot block. In addition, a path communicating with the power supply unit 14 is installed, the switch 15 and the light emitting element 16 are pivotally attached to the power supply unit, a light bulb is fitted to a lamp body installed on the pivot attachment block, and a connection body is provided. It is made of an insulating material and is combined with a pivot block. A fixed structure 21 is formed on the outer edge of the block and is installed in a general lamp holder. [Selection] Figure 1

Description

  The present invention relates to an energy-saving lamp, and more particularly, to an illumination-providing lamp that can be coupled to a lamp holder and can stand upright on a flat surface.

  Conventional lamps, for example, LED lamps and general incandescent lamps, are connected to a lamp holder and have a structure that emits light when supplied with current from a socket. Therefore, when such lamps are used, electric energy is consumed. Not only when the lamp is not used, but when the lamp is coupled to the lamp holder and the plug is still inserted in the socket, there is a problem that electric energy is still consumed. From a saving point of view, it is disadvantageous.

  In addition, it is necessary to procure and purchase conventional lamps according to lamp holders having different dimensions, and if any one of the lamp holders and lamps breaks down, unnecessary lamp holders and lamps that do not break down are required. If you consider the cost and time, it is not economical.

  Therefore, a main problem of the present invention is to provide a lamp structure that can be arbitrarily coupled to the lamp holder and can be easily detached, and can supply electric energy to the light emitting element by the lamp itself. It is in.

  Therefore, the present inventor has intensively studied to solve the above problems, and as a result, the LED light emitting element is arranged on the upper part of the lamp body, particularly the LED lamp body, and the power supply unit is installed inside the middle part of the lamp body. Furthermore, the present invention has been conceived based on such knowledge, focusing on the fact that the lower part of the lamp body can be coupled to the lamp holder or an independent support structure to solve the above-mentioned problems.

Thus, according to the present invention,
In Claim 1, it is an energy-saving lamp comprised from a lamp main body, a connection body, and a light bulb,
The lamp body includes a pivot block, an elastic body, a path, a power supply unit, a switch, and a light emitting element. A pivot block is installed at one end, and an elastic body is installed at the outer edge of the pivot block. There is a connection body that can be fitted to the pivot attachment block, and the elastic body comes into contact with the connection body, so that the connection body is fixed to the pivot attachment block, and a path is installed at one end of the pivot attachment block. The power supply unit in the lamp body is communicated with the power supply unit via the path, and a switch and a light emitting element are pivotally connected to the power supply unit, respectively. The energy is charged, and according to the control by the switch, the charged electric energy is directly supplied to the light emitting element, and a light bulb is fitted in the lamp body.
The connecting body is assembled to a pivot block of the lamp body, and is mainly composed of a fixing structure and a through hole. The connecting body is made of an insulating material, and a fixing structure is formed on an outer edge. In addition, when a through hole is formed in one end face and is assembled to a pivot block, a passage is formed by the through hole and the path of the lamp body.
The light bulb is coupled to the lamp body, and includes a locking block, a hole, and a pore.Inside, the locking block is installed, and the locking block is fitted to a fixed structure of a connection body, By being separated, it can be fixed to the lamp body or removed from the lamp body, and when a hole and some pores are respectively formed and coupled to the lamp body by the hole, A passage is formed by connecting the path of the lamp body and the through hole of the connecting body, and the energy saving lamp is provided, wherein the lamp body dissipates heat by the pores.

  According to the invention according to claim 2, the lamp body is installed on the charging base, and a photoelectric structure is pivotally attached to the charging base, and by the photoelectric structure, light is converted into electric power and charged in the capacitor, A small number of adapters are pivotally attached to the electric storage device, the adapter is inserted in a path of a lamp body, and electric energy charged in the electric storage device is transmitted to the power supply unit. The energy saving lamp described in 1. is provided.

  According to the third aspect of the present invention, a power supply seat is added to the lamp body, and the power supply seats are pivotally attached to a path, a switch, or a light emitting element, respectively. The energy-saving lamp according to claim 1, wherein a battery can be used, and the light-emitting element can be normally powered by being coupled to a power feeding seat.

  According to the fourth aspect of the present invention, a message notification device is pivotally attached to the power supply unit of the lamp body, and the amount of power in the power supply unit can be displayed and notified by the message notification device. Item 1. An energy saving lamp according to item 1 is provided.

  According to the fifth aspect of the present invention, a support foot is pivotally attached to the light bulb, and the support foot is configured to support the lamp body so as to stand upright, and a protrusion is formed at the end of the support foot. The energy-saving lamp according to claim 1, wherein a different shape can be applied to the support foot by inserting the protrusion into the light bulb.

  Hereinafter, the features and technical contents of the present invention will be described in detail with reference to the drawings. However, the drawings and the like are for reference and explanation, and the present invention is not limited thereto.

  As shown in FIG. 1, the energy-saving lamp according to the present invention includes at least a lamp body 1, a connection body 2, and a light bulb 3. The lamp body 1 is formed in a lamp body having an egg-shaped appearance in accordance with the shape of the light bulb 3, and mainly includes a pivot block 11 and an elastic body 12, a path 13, a power feeding element 14, a switch 15, and a light emitting element. LED light emitting element 16. A pivot block 11 is provided at the end of the lamp body 1, and an elastic body 12 is installed on the outer edge of the pivot block 11. Further, the connecting body 2 is fitted into the pivot attachment block 11, and the connection body 2 is fixed to the pivot attachment block 11 by the elastic body 12 coming into contact with the connection body 2.

  The pivot block 11 is provided with a path 13 at one end, and communicates with the power supply unit 14 via the path 13. The switch 15 and the light emitting element 16 are pivotally mounted on the power supply unit 14, respectively. The power supply unit 14 has a structure capable of charging electrical energy, and mainly transmits electric energy supplied from the outside to the power supply unit 14 via the path 13 and charges the power according to the control of the switch 15. The charged electric energy is directly supplied to the light emitting element 16, and the switch 15 is fixed to one side of the lamp body 1, while the light emitting element 16 is provided on the other side of the lamp body 1. A message notification device 17 is pivotally attached to the power supply unit 14, and the message notification device 17 displays and notifies the amount of electric energy charged in the power supply unit 14. The lower part of the lamp body 1 where the pivot block 11 is installed is covered with the light bulb 3.

  As shown in FIG. 2, the connection body 2 is combined with the pivot block 11 of the lamp body 1 and mainly includes a fixed structure 21 and a through hole 22. The connection body 2 is made of an insulating material such as plastic, and a fixed structure 21 is formed on the outer edge of the connection body 2, and the fixed structure 21 has a shape of a slight ring-shaped protrusion. Thereby, the connection body 2 can be easily coupled to a lamp holder of a general lamp. When the through hole 22 is fitted on one end face of the connection body 2 and the connection body 2 is combined with the pivot attachment block 11, a passage is formed by the through hole 22 and the path 13 of the lamp body 1. The The light bulb 3 is coupled to the lamp body 1 and mainly includes a locking block 31, a hole 32, and a pore 33. The light bulb 3 is a member designed in accordance with the external molding of the lamp main body 1. When the light bulb 3 is combined with the lamp main body 1, a complete molding, for example, an egg shape is obtained. Inside the light bulb 3, a few locking blocks 31 are installed, and the locking block 31 is fitted into the fixing structure 21 of the connection body 2, whereby the light bulb 3 is fixedly coupled to the lamp body 1. The When the light bulb 3 is coupled to the lamp body 1, the hole 32 is aligned with the path 13 of the lamp body 1 and the through hole 22 of the connection body 2. A passage is formed, and the air holes 33 are holes for radiating heat from the lamp body 1, and a support foot 34 is installed on the light bulb 3. The support foot 34 is mainly pivoted outside the light bulb 3. A structure for wearing and supporting the lamp body 1 so as to stand upright. Moreover, the said support foot 34 is modeled and designed according to the lamp main body 1 and the light bulb 3, For example, it is designed to a bird's foot, shoes, etc., and can improve the visual aesthetics.

  As shown in FIG. 3, the lamp body 1 of the energy-saving lamp 1 according to the present invention can be installed in a general lamp holder 4 in place of a conventional incandescent lamp. Further, as shown in FIG. 3, the fixing structure 21 of the connection body 2 is engaged with the coupling groove 41 on the lamp holder 4, and the elastic body 12 of the lamp body 1 is in contact with the inside of the connection body 2. Thus, the connection body 2 is tightly engaged with the coupling groove 41 of the lamp holder 4 by the outward elasticity of the elastic body 12. After the lamp body 1 is fixed to the lamp holder 4, the switch 15 is operated to supply electric energy required for the light emitting element 16 from the power supply unit 14, thereby obtaining an illumination effect. .

  According to the energy-saving lamp according to the present invention (for example, as shown in FIG. 5), if the electric energy charged in the power supply unit 14 of the lamp body 1 is used, the lamp body 1 becomes charged base. The photoelectric structure 51 is pivotally attached to the charging base 5. Since the photoelectric structure 51 is composed of a solar panel, the external light source can be converted into electric power energy, and the electric energy converted by the photoelectric structure 51 is charged in the battery 52, and a few adapters 53 are pivoted on the battery 52. The adapter 53 is inserted into the path 13 of the lamp body 1, and the electric energy charged in the capacitor 52 is transmitted to the power supply unit 14. As a result, the power supply unit 14 is charged and can be used repeatedly. When the power supply unit 14 is charged, the signal notification unit 17 of the lamp body 1 changes the charging state of the power supply unit 17 to the lamp. Display by color or blinking. In addition, as shown in FIG. 6, the charging is performed by charging the lamp body 1 through the adapter 53 through the hole portion 32 of the light bulb 3, the through hole 22 and the path 13 of the connection body 2, and the support foot 34 of the light bulb 3. It is installed to stand on the charging base 5. Further, for example, as shown in FIG. 7, by adjusting the inclination angle of the photoelectric structure 51, the photoelectric structure 51 can absorb a larger amount of light, and the storage effect can be obtained more efficiently.

  According to the energy-saving lamp according to the present invention, as shown in FIG. 8, a power supply seat 18 is added to the lamp body 1, and a path 13, a switch 15, a light emitting element 16, and a signal notification device 17 are added to the power supply seat 18. By being pivotally attached, the power supply unit 14 can use a general rechargeable battery, and is coupled to the power supply seat 18 so that it can normally supply power to the light emitting element 16. Therefore, since the rechargeable battery is a power supply that is greatly applied to the market, the convenience of use of the lamp according to the present invention is improved, and a protrusion 341 is provided at the end of the support leg 34 of the bulb 3, By inserting the protrusion 341 into the light bulb 3, various types of molding can be obtained for the support foot 34.

  According to the energy-saving lamp according to the present invention, the pivot block 11 and the elastic body 12 are mainly formed at one end of the lamp body 1, and the connecting body 2 is fitted to the pivot block 11. Thus, the connection body 2 is fixed to the pivot attachment block 11 inside the connection body 2, so that the connection body 2 is elastic due to abutment by the elastic body 12 provided on the inner side, and is effectively a conventional lamp holder. 4 is fixed.

  Moreover, since the lamp body 1 is supplied with power by the power supply unit 14 installed therein, the lamp body 1 can be coupled to the lamp holder 4 to emit light even when not connected to a power source.

  Therefore, the lamp according to the present invention can be used without being connected to an external power source, and the power supply unit 14 can further supply power in accordance with the charging base 5 that can generate power by the photoelectric structure 51. it can. Therefore, the lamp body 1 according to the present invention can provide an energy saving effect.

  That is, in the lamp according to the present invention, after the lamp body 1 and the light bulb 3 are coupled, the lamp body 1 can be made to stand upright by using the support legs 34 of the light bulb 3. The support foot 34 can be designed in an egg shape or a bird's foot shape, for example, according to the molding of the lamp body 1 and the light bulb 3.

  Therefore, the lamp of the present invention can be powered by itself, can emit light while standing upright on a plane or coupled to each lamp holder 4, and also realizes a more diversified appearance. be able to.

  The above description shows a better embodiment of the present invention, and the present invention is not limited thereto, and is based on the scope of claims for utility model registration relating to the present invention and the contents of the description. Obviously, all equivalent changes and modifications made are within the scope of the invention.

1 is an exploded explanatory view of a lamp according to an embodiment of the present invention. It is assembly explanatory drawing of the lamp by one Embodiment of this invention. 1 is an assembly conceptual diagram of a state in which a lamp according to an embodiment of the present invention is coupled to a lamp holder. It is a conceptual diagram of the state which couple | bonded the lamp by one Embodiment of this invention with the lamp holder. It is a perspective view of the state which charges the lamp by one Embodiment of this invention. 1 is a conceptual cross-sectional view of a state in which a lamp according to an embodiment of the present invention is charged. It is another perspective conceptual diagram of the state which charges the lamp by one embodiment of the present invention. 1 is a conceptual cross-sectional view of a state in which a power feeding seat is added to a lamp according to an embodiment of the present invention.

DESCRIPTION OF SYMBOLS 1 Lamp main body 11 Pivoting block 12 Elastic body 13 Path | route 14 Feeding unit 15 Switch 16 Light emitting element 17 Message notification device 18 Feeding seat 2 Connection body 21 Fixed structure 22 Through-hole 3 Light bulb 31 Locking block 32 Hole 33 Pore 34 Support leg 341 Projection 4 Lamp holder 41 Coupling groove 5 Charging base 51 Photoelectric structure 52 Capacitor 53 Adapter

Claims (5)

  1. An energy-saving lamp composed of a lamp body, a connecting body and a light bulb,
    The lamp body includes a pivot block, an elastic body, a path, a power supply unit, a switch, and a light emitting element. A pivot block is installed at one end, and an elastic body is installed at the outer edge of the pivot block. The connecting body has a connecting body that can be fitted to the pivoting block, and the elastic body abuts the connecting body so that the connecting body is fixed to the pivoting block, and a path is provided at one end of the pivoting block. The power supply unit in the lamp body is communicated with the power supply unit via the path, and the switch and the light emitting element are pivotally attached to the power supply unit, respectively, and are supplied from the outside by the power supply unit via the path. Electric energy is charged, and the charged electric energy is directly supplied to the light emitting element according to control by the switch, and a light bulb is fitted in the lamp body.
    The connecting body is assembled to a pivot block of a lamp body, and is composed of a fixing structure and a through hole, is made of an insulating material, and a fixing structure is formed on an outer edge. It can be applied to the standard, and when a through hole is formed in one end face and assembled to the pivot block, a passage is formed by the through hole and the path of the lamp body.
    The light bulb is coupled to a lamp body, and includes a locking block, a hole, and a pore, and a locking block is installed therein, and the locking block is fitted into a fixed structure of a connection body or separated. In this case, the lamp body can be fixed to the lamp body or removed from the lamp body, and a hole and a small number of pores are formed respectively. An energy-saving lamp characterized in that a passage is formed by connecting a path of a main body and a through hole of a connecting body, and the lamp body is radiated by the air holes.
  2.   The lamp body is installed on the charging base, and a photoelectric structure is pivotally attached to the charging base. Light is converted into electric power and charged to the capacitor by the photoelectric structure, and some adapters are pivotally attached to the capacitor. The energy-saving lamp according to claim 1, wherein the adapter is inserted in a path of a lamp body, and electric energy charged in the capacitor is transmitted to a power supply unit.
  3.   A power supply seat is added to the lamp body, and the power supply seat is pivotally attached to a path, a switch, or a light emitting element, respectively, so that the power supply unit can use a general rechargeable battery. The energy-saving lamp according to claim 1, wherein the energy-saving lamp can be normally supplied with power to the light emitting element by being coupled.
  4.   The energy saving lamp according to claim 1, wherein a message notification device is pivotally attached to the power supply unit of the lamp body, and the message notification device can display and notify the amount of electric power in the power supply unit.
  5. A support foot is pivotally attached to the light bulb, and the support foot is configured to support the lamp body so as to stand upright, and a protrusion is formed at the end of the support foot, and the protrusion is fitted into the light bulb. Accordingly, the energy-saving lamp according to claim 1, wherein a different shaped object can be applied to the support foot.

JP2010003142U 2010-05-13 2010-05-13 Energy saving lamp Expired - Fee Related JP3163501U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2010003142U JP3163501U (en) 2010-05-13 2010-05-13 Energy saving lamp

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Application Number Priority Date Filing Date Title
JP2010003142U JP3163501U (en) 2010-05-13 2010-05-13 Energy saving lamp

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JP3163501U true JP3163501U (en) 2010-10-21

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JP2010003142U Expired - Fee Related JP3163501U (en) 2010-05-13 2010-05-13 Energy saving lamp

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013012476A (en) * 2011-06-28 2013-01-17 Pegatron Corp Variable color light emitting module and lamp instrument

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013012476A (en) * 2011-06-28 2013-01-17 Pegatron Corp Variable color light emitting module and lamp instrument

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