The present invention is related to a lighting apparatus, and more particularly related to a lighting apparatus with heat dissipation function.
The time when the darkness is being lighten up by the light, human have noticed the need of lighting up this planet. Light has become one of the necessities we live with through the day and the night. During the darkness after sunset, there is no natural light, and human have been finding ways to light up the darkness with artificial light. From a torch, candles to the light we have nowadays, the use of light have been changed through decades and the development of lighting continues on.
Early human found the control of fire which is a turning point of the human history. Fire provides light to bright up the darkness that have allowed human activities to continue into the darker and colder hour of the hour after sunset. Fire gives human beings the first form of light and heat to cook food, make tools, have heat to live through cold winter and lighting to see in the dark.
Lighting is now not to be limited just for providing the light we need, but it is also for setting up the mood and atmosphere being created for an area. Proper lighting for an area needs a good combination of daylight conditions and artificial lights. There are many ways to improve lighting in a better cost and energy saving. LED lighting, a solid-state lamp that uses light-emitting diodes as the source of light, is a solution when it comes to energy-efficient lighting. LED lighting provides lower cost, energy saving and longer life span.
The major use of the light emitting diodes is for illumination. The light emitting diodes is recently used in light bulb, light strip or light tube for a longer lifetime and a lower energy consumption of the light. The light emitting diodes shows a new type of illumination which brings more convenience to our lives. Nowadays, light emitting diode light may be often seen in the market with various forms and affordable prices.
After the invention of LEDs, the neon indicator and incandescent lamps are gradually replaced. However, the cost of initial commercial LEDs was extremely high, making them rare to be applied for practical use. Also, LEDs only illuminated red light at early stage. The brightness of the light only could be used as indicator for it was too dark to illuminate an area. Unlike modern LEDs which are bound in transparent plastic cases, LEDs in early stage were packed in metal cases.
In 1878, Thomas Edison tried to make a usable light bulb after experimenting different materials. In November 1879, Edison filed a patent for an electric lamp with a carbon filament and keep testing to find the perfect filament for his light bulb. The highest melting point of any chemical element, tungsten, was known by Edison to be an excellent material for light bulb filaments, but the machinery needed to produce super-fine tungsten wire was not available in the late 19th century. Tungsten is still the primary material used in incandescent bulb filaments today.
Early candles were made in China in about 200 BC from whale fat and rice paper wick. They were made from other materials through time, like tallow, spermaceti, colza oil and beeswax until the discovery of paraffin wax which made production of candles cheap and affordable to everyone. Wick was also improved over time that made from paper, cotton, hemp and flax with different times and ways of burning. Although not a major light source now, candles are still here as decorative items and a light source in emergency situations. They are used for celebrations such as birthdays, religious rituals, for making atmosphere and as a decor.
Illumination has been improved throughout the times. Even now, the lighting device we used today are still being improved. From the illumination of the sun to the time when human can control fire for providing illumination which changed human history, we have been improving the lighting source for a better efficiency and sense. From the invention of candle, gas lamp, electric carbon arc lamp, kerosene lamp, light bulb, fluorescent lamp to LED lamp, the improvement of illumination shows the necessity of light in human lives.
There are various types of lighting apparatuses. When cost and light efficiency of LED have shown great effect compared with traditional lighting devices, people look for even better light output. It is important to recognize factors that can bring more satisfaction and light quality and flexibility.
There are various light devices arranged in different places. Some light devices need to be powered in a high illumination level. When light intensity is increased in a high volume, large heat is generated and needs to be dissipated. Otherwise, the life span of the light device may be decreased dramatically.
In some environments, water proof is also an important factor. Therefore, it is beneficial to design a light device with multiple functions. There are various light devices arranged in different places. Some light devices need to be powered in a high illumination level. When light intensity is increased in a high volume, large heat is generated and needs to be dissipated. Otherwise, the life span of the light device may be decreased dramatically.
In some environments, water proof is also an important factor. Therefore, it is beneficial to design a light device with multiple functions. There are various light devices arranged in different places. Some light devices need to be powered in a high illumination level. When light intensity is increased in a high volume, large heat is generated and needs to be dissipated. Otherwise, the life span of the light device may be decreased dramatically.
In some environments, water proof is also an important factor. Therefore, it is beneficial to design a light device with multiple functions. There are various light devices arranged in different places. Some light devices need to be powered in a high illumination level. When light intensity is increased in a high volume, large heat is generated and needs to be dissipated. Otherwise, the life span of the light device may be decreased dramatically.
In some environments, water proof is also an important factor. Therefore, it is beneficial to design a light device with multiple functions.
In some embodiments, a lighting apparatus includes a light source plate, a light passing cover, a sleeve housing and an air tube.
The light source plate is mounted with a LED module for emitting a light.
The LED module faces to the light passing cover to allow the light to pass through. The LED module is enclosed within a container space.
The sleeve housing has a first end supporting the light source plate.
The Edison cap is fixed to a second end of the sleeve housing.
The air tube has a top opening connected to the container space for guiding a heated air in the container space away from the container space via the air tube.
In some embodiments, the lighting apparatus may also include an optical unit for changing a light path of the light to the light passing cover.
In some embodiments, the optical unit is a lens defining a bottom cavity enclosing the LED module.
In some embodiments, the optical unit is a reflector cup with a bottom part and a top part on two sides.
The bottom part has a smaller diameter than the top part, the bottom part is closer to the LED module than the top part.
In some embodiments, the light source plate has an air passage connecting to the air tube for the heated air to enter the air tube via the air passage.
In some embodiments, the light passing cover presses the optical unit to engage the sleeve housing to fix the optical unit, and a glue is applied to a connection position between the light passing cover and the optical unit.
In some embodiments, a first peripheral edge of the optical unit has a buckle for fixing to a second peripheral edge of the light passing cover.
In some embodiments, the sleeve housing has a trumpet shape, the first end has a larger diameter than the second end.
In some embodiments, the sleeve housing has a metal layer wrapped with an insulation layer.
In some embodiments, the light passing cover is a bulb shell.
In some embodiments, the air tube is an elongated tube.
In some embodiments, an internal surface of sleeve housing provides a lateral wall for the air tube.
A top edge of the top opening of the air tube engages the light source plate.
In some embodiments, the lighting apparatus may also include a driver enclosed by the sleeve housing for converting an external power to a driving current supplied to the LED module.
The driver has a driver plate fixed to the light source plate perpendicularly.
In some embodiments, the driver plate divides a inner space of the sleeve housing into a first space and a second space.
A protruding driver component mounted on the driver plate is placed in the first space and the air tube is placed in the second space.
In some embodiments, the driver plate has a first driver part and a second part.
The first driver part has a first driver plate and the second driver part has a second driver plate.
The first driver plate is detachably plugged to the second plate to integrate as the driver.
In some embodiments, the air tube has a curve part for preventing water to enter.
In some embodiments, an air exit is disposed on an surface of the sleeve housing connected to the second opening of the air tube.
In some embodiments, the air tube is made of metal material.
In some embodiments, the air tube is wrapped with an insulation exterior layer.
In some embodiments, the second opening of the air tube is connected to a heat sink disposed inside the sleeve housing.
In
The LED module 7051 faces to the light passing cover 701 to allow the light 7053 to pass through. The LED module 7051 is enclosed within a container space 7054. In this example, there is a reflective cup 702 for changing a light path of the light 7053. The inner wall of the reflective cup 702, the light source plate 705 and the light passing cover 701 in this example may construct the container space 7054. In such example, there is an air passage 7052 on the light source plate 705 for guiding heated air in the container space 7054 to exit from the container space 7054 via the air tube 709.
The reflective cup 702 may have holes for air to move between two sides of the reflective cup 702. Alternatively, even the reflective cup 702 conceals the container space 7054, the other container space 7055 may be used for moving air thereof via the air tube 709, too.
Such mechanism also prevents thermal deformation of the components if the container space 7054 is completely concealed for water proof. Heated air may expand and damage the components. In addition, heat dissipation may be enhanced via such design.
The sleeve housing 703 has a first end 7031 supporting the light source plate 705.
The Edison cap 706 is fixed to a second end 7032 of the sleeve housing 703.
The sleeve housing 703 may be a tube of various shapes, e.g. two ends with different diameters like a trumpet shape illustrated in
The air tube has a top opening 7092 connected to the container space 7054 for guiding a heated air 7091 in the container space 7054 away from the container space 7054 via the air tube 709.
In some embodiments, the lighting apparatus may also include an optical unit 702 for changing a light path of the light to the light passing cover.
In some embodiments, the optical unit is a lens defining a bottom cavity enclosing the LED module, as illustrated as the lens 883 in
In some embodiments, the optical unit is a reflector cup with a bottom part and a top part on two sides, as the example illustrated in
The bottom part 7022 has a smaller diameter than the top part 7021. The bottom part 7022 is closer to the LED module 7051 than the top part 7021, as shown in
In some embodiments, the light source plate has an air passage 7052 connecting to the air tube 709 for the heated air 7091 to enter the air tube 709 via the air passage 7052.
In some embodiments, the light passing cover 701 presses the optical unit 702 to engage the sleeve housing 703 to fix the optical unit, and a glue 7012 is applied to a connection position between the light passing cover 701 and the optical unit 702.
In some embodiments, a first peripheral edge 7021 of the optical unit 702 has a buckle, as illustrated in
In
In
In
In
In
A top edge 2202 of the top opening of the air tube 22 engages the light source plate.
In other words, the air tube may be used as a structure support for the lighting apparatus to support the light source plate.
In
The driver 707 has a driver plate 7075 fixed to the light source plate 705 perpendicularly.
In some embodiments, the driver plate 7075 divides a inner space of the sleeve housing 703 into a first space 7076 and a second space 7077.
A protruding driver component 7073 mounted on the driver plate 7075 is placed in the first space 7076 and the air tube 709 is placed in the second space 7077.
In some embodiments, the driver plate has a first driver part 7072 and a second part 7071.
The first driver 7072 part has a first driver plate, a plate to mount with electronic components and the second driver part 7071 has a second driver plate, a plate to mount with electronic components. The two driver parts 7071, 7072 may have different functions. One is used to provide an enhanced function to anther, e.g. to add a communication function to a normal light device.
The first driver plate of the first driver part 7072 is detachably plugged to the second plate of the second driver part 7071 to integrate as the driver 707.
In
In some embodiments, an air exit 7097 is disposed on an surface of the sleeve housing 703 connected to the second opening 7093 of the air tube 709.
In some embodiments, the air tube is made of metal material.
In some embodiments, the air tube is wrapped with an insulation exterior layer, as the example of the sleeve housing illustrated in
In some embodiments, the second opening of the air tube is connected to a heat sink 7099 disposed inside the sleeve housing. For example, the heat sink 7099 may have multiple fins or various structures for enhancing heat dissipation, e.g. protruding structures.
Please refer to
In
Please refer to
Please refer to
In
In
In
In
The foregoing description, for purpose of explanation, has been described with reference to specific embodiments. However, the illustrative discussions above are not intended to be exhaustive or to limit the invention to the precise forms disclosed. Many modifications and variations are possible in view of the above teachings.
The embodiments were chosen and described in order to best explain the principles of the techniques and their practical applications. Others skilled in the art are thereby enabled to best utilize the techniques and various embodiments with various modifications as are suited to the particular use contemplated.
Although the disclosure and examples have been fully described with reference to the accompanying drawings, it is to be noted that various changes and modifications will become apparent to those skilled in the art. Such changes and modifications are to be understood as being included within the scope of the disclosure and examples as defined by the claims.
Number | Date | Country | Kind |
---|---|---|---|
202020261674.8 | Mar 2020 | CN | national |
202021983366.2 | Sep 2020 | CN | national |