WO2020077488A1 - 照明光源器材及其光源配置方法 - Google Patents

照明光源器材及其光源配置方法 Download PDF

Info

Publication number
WO2020077488A1
WO2020077488A1 PCT/CN2018/110221 CN2018110221W WO2020077488A1 WO 2020077488 A1 WO2020077488 A1 WO 2020077488A1 CN 2018110221 W CN2018110221 W CN 2018110221W WO 2020077488 A1 WO2020077488 A1 WO 2020077488A1
Authority
WO
WIPO (PCT)
Prior art keywords
housing
light source
source device
lamp
lighting light
Prior art date
Application number
PCT/CN2018/110221
Other languages
English (en)
French (fr)
Inventor
刘江
Original Assignee
谱明科技(深圳)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 谱明科技(深圳)有限公司 filed Critical 谱明科技(深圳)有限公司
Priority to PCT/CN2018/110221 priority Critical patent/WO2020077488A1/zh
Priority to CN201880001627.5A priority patent/CN109563973A/zh
Publication of WO2020077488A1 publication Critical patent/WO2020077488A1/zh

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V14/00Controlling the distribution of the light emitted by adjustment of elements
    • F21V14/02Controlling the distribution of the light emitted by adjustment of elements by movement of light sources
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/10Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/502Cooling arrangements characterised by the adaptation for cooling of specific components
    • F21V29/503Cooling arrangements characterised by the adaptation for cooling of specific components of light sources
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/83Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks the elements having apertures, ducts or channels, e.g. heat radiation holes

Definitions

  • the invention relates to the field of lighting, in particular to a light-emitting lamp and lighting light source equipment required for shooting in film and television work, and a light source configuration method thereof.
  • luminaires used as bottom light or floodlights in sheds usually have high luminous requirements.
  • large-scale luminaires such as space lamps are irreplaceable for general production and living luminaires.
  • An existing floodlight type lamp as shown in FIG. 1, includes a shell plate 10P, at least two lamp bodies 20P, a hanger 30P for lifting the shell plate 10P, and a regulated power supply 40P .
  • the lamp body 20P and the regulated power supply 40P are both supported by the shell plate 10P.
  • the hanger 30P When the hanger 30P is suspended, the lamp body 20P and the regulated power supply 40P follow the shell The board 10P is lifted and held up.
  • the shell plate 10P and the hanger 30P usually maintain a predetermined angle and cannot be adjusted at will. That is to say, the light emitting angle of the lamp body 20P is also basically fixed.
  • adjusting the support length of the hanger 30P can change the inclination of the shell plate 10P, so that the angle of the irradiation direction of the lamp body 20P appears.
  • the stress of the hanger 30P also becomes unstable, and the center of gravity of the lamp body 20P and the regulated power supply 40P is offset from the shell plate 10P.
  • the power of the lamp body 20P needs to reach the kilowatt level, and the energy consumption is very considerable.
  • the heat dissipation of the lamp body 20P is necessary, otherwise the lighting work cannot be performed for a long time.
  • air cooling and other methods that require greater weight and energy consumption cannot be used. Air cooling will not only increase the volume and increase the weight, but also produce sway, which is detrimental to the stability of the hanger 30P.
  • the shell plate 10P not only needs a large volume, but also needs to be able to bear the weight of the lamp body 20P and its heat sink.
  • the heat dissipation situation will be greatly affected due to the different positions of the existing lamps.
  • hanging and standing the direction of heat loss of existing lamps is basically similar in both states. In other words, regardless of the placement angle, the direction of heat dissipation is approximately constant.
  • the heat emitted by the lamp body 20P When used suspended, the heat emitted by the lamp body 20P is generally dissipated upward.
  • the heat emitted by the lamp body 20P When used upright, the heat emitted by the lamp body 20P is also generally dissipated upwards, but the hot gas emitted by the lamp body 20P below will encounter the lamp body 20P relatively above, making it above There is always heat accumulation around the lamp body 20P.
  • the shell plate 10P can reach a diameter of about 1 m, and frequent disassembly and maintenance are not desired by the user.
  • the stability of lighting, the safety of equipment use, and the convenience of maintenance are the main aspects that the existing lamps and lanterns cannot meet the film and television work.
  • a main advantage of the present invention is to provide an illumination light source device and a light source configuration method thereof, which can adjust the illumination angle and provide good heat dissipation.
  • Another advantage of the present invention is to provide an illuminating light source device and its light source configuration method, which includes a detachable lamp group, which can remove a specific lamp body in a targeted manner without removing the overall lighting device. Affect the overall use of the light group.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof, providing at least one heat dissipation channel and providing a path for heat dissipation, so as to uniformly dissipate heat from the lamp group.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof.
  • the illumination angle of the lamp group can be adjusted and locked to illuminate stably in a predetermined direction, and the overall structure has strong stability Sex to ensure safe use.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof, which includes a current controller, the current controller is externally connected to the lamp group, and does not need to cooperate with the lamp group to be fixed, reducing the The position of the light unit is shaken, which improves the stability of the suspending use.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof.
  • the working vibration or noise of the current controller does not affect the lamp group, reduces the noise around the lamp group, and provides stable Suitable for lighting of film and television shooting.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof, the light set does not need to be suspended in cooperation with the current controller, reduces the load-bearing requirements, has higher convenience, and improves for different Applicability of the scene.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof.
  • the lamp set is detachably fixed by a housing, and different surfaces of the housing have through openings to provide different directions Cooling channel.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof, the housing is further detachably mounted with an optical component corresponding to the lamp group, and then cooperate with the lamp group to provide different according to needs Lighting effect.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof, which includes an adjustable support frame, a lockable shaft connected to the housing, so that the housing is relatively supported relative to the adjustable support The angle of the rack can be adjusted and locked.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof.
  • the locked and unlocked states of the adjustable support stand are clearly distinguishable from each other, to prevent misunderstanding of the state of the adjustable support stand, and to avoid potential Security risks.
  • Another advantage of the present invention is to provide an illumination light source device and a light source configuration method thereof.
  • the rotation angle of the housing relative to the adjustable support frame is infinitely variable, and is suitable for illuminating toward a desired angle.
  • Another advantage of the present invention is to provide an illuminating light source device and a light source configuration method thereof. Some parts of the adjustable support frame are replaceable, which shortens maintenance time and provides continuous illumination.
  • Another advantage of the present invention is to provide an illuminating light source device and its light source configuration method. After a certain period of use, it is not necessary to perform a comprehensive repair, and update the modifiable parts, so that the overall reliability is directly improved.
  • Another advantage of the present invention is to provide an illuminating light source device and its light source configuration method. Equipment failures that occur in the field can be solved by replacing parts with new ones, and have extremely high applicability and continuity for the on-site use of film and television work.
  • an illumination light source device of the present invention that can achieve the foregoing objects and other objects and advantages includes:
  • a housing wherein different surfaces of the housing have penetrating through holes
  • a lamp group wherein the lamp group is detachably fixed inside the housing, wherein at least two heat dissipation channels are formed between the lamp group and the through hole of the housing.
  • the lamp group includes at least two of the lamp bodies, wherein the lamp bodies are separately detachably mounted to the housing.
  • the direction of air diffusing from the lamp body is different between the two heat dissipation channels.
  • the lamp set includes at least one optical component, wherein the optical component is detachably mounted on the housing corresponding to the position of the lamp body.
  • the housing includes a first housing and a second housing, wherein an edge of the first housing and an edge of the second housing cover each other A heat dissipation cavity for accommodating the lamp group is formed between the second housings.
  • the first housing and the second housing are joined to connect the first housing and the second housing in an edge-to-edge manner, wherein the edge of the first housing and the second housing
  • the edges of the second housing can be overlapped with each other to fix a portion where the edges of the first housing and the edges of the second housing overlap by a plurality of connectors.
  • the edge of the first housing and the edge of the second housing have side holes respectively.
  • the first housing includes a fixing portion and at least one light window, wherein the light window and the fixing portion are arranged corresponding to each other, wherein the lamp body is detachably mounted on the In the fixing part, when the lamp body is mounted to the fixing part, the light window provides a light exit surface for the lamp body.
  • the outer shape of the fixing portion corresponds to the lamp body, so that the lamp body and the fixing portion fit together.
  • the fixing portion is integrally formed on the first housing.
  • the fixing portion is a card slot.
  • the light window is an opening formed in the fixing portion.
  • the second housing includes at least one support rib and at least one heat dissipation portion, wherein the heat dissipation portion and the support rib are disposed adjacent to each other.
  • the supporting rib and the fixing portion of the first housing correspond to each other, so that the accommodating cavity for accommodating the lamp group is hollowly formed.
  • the support ribs extend radially, so that the second housing covers the side of the first housing radially.
  • the lamp body includes a light-emitting lamp and a heat sink, wherein the shape of the heat sink is arranged to match the light-emitting lamp, wherein the heat generated by the light-emitting lamp working is dissipated by the heat sink
  • the device is guided to the outside of the housing.
  • the heat generated by the operation of the light-emitting lamp is guided to the heat dissipation portion of the second housing by the heat sink.
  • the heat generated by the operation of the light-emitting lamp is guided by the heat sink to the side holes of the edge of the first housing and the edge of the second housing.
  • the lighting light source equipment includes a current controller, wherein the current controller is externally connected to the lamp group to supply power to the lamp group.
  • the lighting light source equipment includes an adjustable support frame, wherein the housing is pivotally connected to the adjustable support frame so that the housing rotates relative to the adjustable support frame And change the illumination angle of the lamp group.
  • the present invention further provides a lighting light source device, including:
  • An adjustable support frame wherein the housing is pivotally connected to the adjustable support frame, so that the housing is locked at a predetermined angle relative to the adjustable support frame.
  • the adjustable support frame has a locked state and an unlocked state, wherein in the locked state, the predetermined angle between the adjustable support frame and the housing is Fixed, wherein in the unlocked state, the predetermined angle between the adjustable support frame and the housing can be adjusted.
  • the adjustable support frame includes a frame body, a locking angle assembly and an operating portion, wherein the frame body is relatively fixed at the predetermined angle on the frame body by the locking angle assembly A housing, wherein the manipulation part switches the state of the lock angle assembly between the locked state and the unlocked state, wherein the frame body is pivotally connected to the housing, adjusted by the housing
  • the predetermined angle with the frame body allows the angle of the illumination direction of the lamp group installed in the housing to be adjusted.
  • the frame body when the lock angle assembly is controlled by the manipulation part to be in the unlocked state, the frame body can rotate relative to the housing, wherein when the lock angle assembly is The manipulation part is controlled to be in the locked state, and the angle between the frame body and the housing is locked so that the irradiation direction of the lamp group is fixed.
  • the corner assembly is detachably fixed between the frame and the housing.
  • the angle of the housing in the unlocked state, can be adjusted steplessly with the frame body through the lock angle assembly.
  • the frame body includes a main body having two ends, wherein the housing is pivotally connected to the end, wherein the shape of the main body is opposite to the housing The shape is set.
  • the main body is arranged in a semi-arc shape relative to the outer shape of the housing.
  • the end portion of the frame body and the main body are integrally formed.
  • the end of the frame body is detachably connected to the main body.
  • the end is sleeved on the main body, and the end is fixed on the main body through a plurality of connecting rods.
  • the end portion has at least one positioning hole, wherein the main body has at least one mounting hole oppositely, wherein when the end portion is sleeved on the main body, the positioning hole and all The mounting hole is adapted to be inserted into the connecting rod and fixed in a relative position.
  • the frame body further includes two inner plugs, the inner plugs are placed inside the main body, wherein the two inner plugs have a tendency to leave each other outward, so that the sleeve The end of the main body is tightly sleeved on the main body by the external force of the inner plug.
  • the lock angle assembly includes a fixed shaft, a clamping wheel and a press lock, wherein the fixing shaft is fixed to the side of the housing, wherein the clamping wheel and the The pressure locks are rotatably arranged between the fixed shaft and the housing, wherein the mutual positions of the clamping wheel and the pressure lock can be locked so that the position between the fixed shaft and the housing The predetermined angle can be locked.
  • the manipulation portion controls the relative position of the press lock and the clamping wheel to be fixed, so that the lock angle assembly is switched between the locked state and the unlocked state.
  • the press lock rotates around the clamping wheel
  • the press lock is provided at the end of the frame body, wherein the frame body follows the press lock around the The clamping wheel rotates so that the frame body rotates around the clamping wheel, and then the predetermined angle between the frame body and the fixed shaft is adjusted.
  • the press locks are arranged to be press-fittable with each other along the edge of the clamping wheel.
  • the clamping wheel is integrally fixed to the fixed shaft.
  • the pressure lock is detachably provided at an end of the frame body.
  • the pressure lock is fixed to the fixed shaft, and the clamping wheel is disposed at an end of the frame body, wherein the angle of the pressure lock relative to the clamping wheel can be adjusted.
  • the clamping wheel is ring-shaped, wherein the pressure lock fixes the center angle of the pressure lock relative to the clamping wheel by being fixed to the edge of the inner ring of the clamping wheel, wherein the The end of the frame body is fixed to the edge of the outer ring of the clamping wheel, so that the frame body rotates around the press lock, and then the predetermined angle between the frame body and the fixed shaft is adjusted .
  • the press locks are arranged to be press-fittable with each other along the inner ring edge of the clamping wheel.
  • the clamping wheel is integrally fixed to the end of the frame body.
  • the pressure lock is detachably provided on the fixed shaft.
  • the present invention further provides a light source configuration method, including the steps of:
  • a predetermined angle of the housing relative to an adjustable support frame is locked to fix the illumination direction of the lamp body.
  • Figure 1 is a schematic diagram of an existing lamp.
  • FIGS. 2A and 2B are overall schematic diagrams of the lighting light source device according to a preferred embodiment of the present invention.
  • FIG. 3 is a schematic diagram of the application of the illumination light source equipment according to the above preferred embodiment of the present invention.
  • FIG. 4 is a split schematic view of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 5 is a detachable schematic diagram of the illumination light source equipment according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 6 is a detachable schematic diagram of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 7 is a schematic view of the lamp body of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 8 is a schematic diagram of heat dissipation of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 9 is a schematic view of the adjustable support frame of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 10 is a schematic diagram of adjustment of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 11 is a split schematic view of the adjustable support frame of the lighting light source device according to the above-mentioned preferred embodiment of the present invention.
  • the term “a” should be understood as “at least one” or “one or more”, that is, in one embodiment, the number of an element can be one, and in other embodiments, the The number can be more than one, and the term “one” cannot be understood as a limitation on the number.
  • the invention provides a light source configuration method, including the steps of:
  • a predetermined angle of the housing 10 relative to an adjustable support frame 30 is locked to fix the illumination direction of the lamp body 200.
  • the order of the above steps can be changed, and has no effect on the effect of the light source configuration method.
  • the heat generated by the lamp body 200 is assisted to dissipate from the housing 10.
  • the working environment of the lamp body 200 is maintained, and the irradiation direction is relatively fixed, which is suitable for providing lighting with high efficiency.
  • the present invention provides an illumination light source device, as shown in FIGS. 2A to 11, which is suitable for providing illumination for places like shooting.
  • the illumination light source equipment includes a housing 10 and an adjustable support frame 30, wherein the housing 10 is pivotally connected to the adjustable support frame 30, so that the housing 10 is relative to the adjustable support frame 30 is locked at a predetermined angle. That is, the angle between the housing 10 and the adjustable support frame 30 can be adjusted and maintained at the predetermined angle.
  • the housing 10 of the lighting light source device is detachably mounted with a lamp group 20, wherein different surfaces of the housing 10 have through holes that can penetrate each other, wherein At least two heat dissipation channels 500 are formed between the lamp group and the through hole of the housing.
  • the heat dissipated by the lamp group 20 can flow to the outside of the housing 10 through the heat dissipation channel 500.
  • the lamp group 20 evenly radiates hot air out of the housing 10 and is not affected by the predetermined angle between the housing 10 and the adjustable support frame 30.
  • the adjustable support frame 30 of the lighting light source equipment is set on the venue as needed.
  • the housing 10 is supported by the adjustable support frame 30, and the lamp group 20 is relatively fixed inside the housing 10, and the irradiation angle changes as the angle of the housing 10 is adjusted.
  • the irradiation equipment is arranged to irradiate in a fixed direction, and the angle and movement position of the lamp group 20 are basically not changed when the lamp unit 20 is in operation.
  • the relative angle between the housing 10 and the adjustable support frame 30 is locked.
  • the lamp group 20 further includes at least two lamp bodies 200.
  • the lamp body 200 is separately detachably mounted on the housing 10.
  • the lamp body 200 is preferably arranged symmetrically on the housing 10. It is worth mentioning that each lamp body 200 is detachable with respect to the housing 10, and each lamp body 200 works relatively independently. Moreover, when a certain lamp body 200 has a problem and cannot work normally, the lamp body 200 can be disassembled, and the lamp group 20 composed of other lamp bodies 200 can continue to work.
  • the lamp group 20 further includes at least one optical component 600.
  • the optical component 600 is attached to the housing 10 corresponding to the lamp body 200.
  • the optical component 600 is preferably a lens.
  • the light emitted by the lamp body 200 passes through the optical component 600 to obtain a certain effect, for example, the light is condensed, filtered by a specific color, and evenly dispersed.
  • the optical component 600 is detachably mounted on the housing 10, and by replacing or superimposing different optical components 600, the lamp group 20 can provide light with different effects. More preferably, the position of the optical component 600 in the housing 10 corresponds to the lamp body 200, and the number of the optical components 600 also corresponds to the number of the lamp body 200. In other words, the light emitted by the lamp body 200 is completely applied to the effect provided by the optical component 600, so that the effect provided by the lamp group 20 is uniform and stable.
  • the lighting source equipment includes a current controller 40.
  • the current controller 40 is externally connected to the lamp group 20 to supply power to the lamp group 20.
  • the current controller 40 provides energy to the lamp body 200 of the lamp group 20 in the housing 10 in a wired manner.
  • the current controller 40 is not supported by the housing 10, that is to say the current controller 40 leaves the housing 10 and the lamp group 20.
  • the housing 10 basically only needs to carry the weight of the lamp group 20, and the current control 40 is additionally placed.
  • the adjustable support frame 30 preferably needs to bear the weight of the housing 10 and the lamp group 20.
  • the adjustable support frame 30 is suspended, and the lamp group 20 is accommodated by the housing 10 and used with the adjustable support frame 30, the current controller 40 was placed at another location on the field.
  • the rotation of the housing 10 is not restricted by the electrical wiring connected to the current controller 40.
  • the current controller 40 is bound to the adjustable support frame 30, and the adjustable support frame 30 bears the weight of the current controller 40.
  • the adjustable support frame 30 of the lighting source equipment can be disassembled. According to the use situation and the requirements of the place, the adjustable supporting frame 30 can be replaced with a new one, and can continue to work after the replacement. No additional inspection is required, to ensure the reliability of the entire structure by replacement, or to prepare two or more sets of replaceable parts to ensure the safety of use.
  • the lamp body 200 and the optical component 600 of the lamp group 20 of the lighting light source equipment are detachable, and a new operation may be taken for the detached position. It can also be left empty as needed, without affecting other unremoved parts.
  • the detachable parts of the lighting light source equipment are also suitable for all updates to ensure extremely high Reliability.
  • the housing 10 includes a first housing 11 and a second housing 12, wherein the first housing 11 and the second housing 12 cover each other to form a housing The accommodating cavity of the lamp group 20.
  • the edges of the first housing 11 and the second housing 12 are connected to each other, so that a heat dissipation cavity is formed between the first housing 11 and the second housing 12.
  • the first housing 11 and the second housing 12 are connected and merged in such a manner that the edges are butted against each other. That is, a first edge 110 of the first housing 11 and a second edge 120 of the second housing 12 are in contact with each other.
  • the first edge 110 of the first housing 11 and the second edge 120 of the second housing 12 can be overlapped with each other, and the first edge of the first housing 11 is further connected to the first edge of the first housing 11 by a number of connectors The portion where 110 overlaps with the second edge 120 of the second housing 12 is fixed.
  • first edge 110 of the first casing 11 has a certain curvature
  • second edge 120 of the second casing 12 has a certain curvature accordingly. That is to say, the heat dissipation cavity has a certain height, and the height is the cumulative length of the first edge 110 of the first housing 11 and the second edge 120 of the second housing 12.
  • both the first housing 11 and the second housing 12 are plate bodies having corresponding arcs. For manufacturing the plate bodies of the first casing 11 and the second casing 12, similar molds can be used, saving part of the cost.
  • a relatively flat device shape can be directly obtained from the shape of the housing 10 of the lighting light source device.
  • the first casing 11 and the second casing 12 are relatively flat to form a circular wheel shape, and the flat casing 10 also has a relatively large tile-shaped heat dissipation area.
  • first edge 110 of the first housing 11 extends toward the second edge 120 of the second housing 12 to form a plurality of protrusions that can contact the second edge 120 of the second housing 12 section.
  • first edge 110 of the first housing 11 and the second edge 120 of the second housing 12 constitute the side of the housing 10.
  • the first housing 11 is a front light emitting surface of the lighting light source equipment
  • the second housing 12 is a reverse surface of the lighting light source equipment. It can be understood by those skilled in the art that the first housing 11 and the second housing 12 can be exchanged with each other. Here, for convenience of description, they are divided into a front side and a back side of the lighting light source equipment.
  • first edge 110 and the second edge 120 respectively have several side holes 130.
  • the side holes 130 are uniformly and vertically formed on the first edge 110 of the first housing 11 and the second edge 120 of the second housing 12.
  • the bonding strength of the first edge 110 of the first housing 11 and the second edge 120 of the second housing 12 is strengthened; Connect.
  • the housing 10 further includes at least one connecting member 14 corresponding to the first housing 11 and the second housing 12 respectively, and then connects the second housing 12 to the first housing 11. Furthermore, in the present preferred embodiment, the first housing 11 and the second housing 12 are provided with corresponding first connectors 141 and second connectors 142, respectively. The mutual connection between the first connecting member 141 and the second connecting member 142 enables the first housing 11 and the second housing 12 to be fixed and supported to each other. In other words, the heat dissipation cavity is stably supported by the connecting member 14.
  • the first housing 11 includes a fixing portion 111 and at least one light window 112, wherein the light window 112 and the fixing portion 111 are arranged corresponding to each other.
  • the lamp body 200 is detachably attached to the fixing portion 111.
  • the fixing portion 111 is implemented to protrude from the second housing 12 by a snap groove.
  • the fixing portion 111 is integrally formed on the first casing 11.
  • the outer shape of the fixing portion 111 corresponds to the lamp body 200.
  • the lamp body 200 and the fixing portion 111 can be fitted to each other, and in this preferred embodiment, they are detachably mounted by being pushed in and pulled out.
  • the fixing portion 111 presets an interface that is electrically connected to the lamp body 200 so that while the lamp body 200 is structurally installed, the lamp body 200 and the current controller 40 The electrical connection is also done directly. That is to say, in this way, the first housing 11 presets a line interconnected with the current controller 40, and each lamp body 200 does not need to be connected to the current controller separately during installation 40. The work of installing the lamp body 200 is simplified.
  • the light window 112 is an opening formed in the fixing portion 111.
  • the light window 112 is detachably engaged with the optical component 600 respectively.
  • the optical component 600 completely covers the opening of the light window 112, so that the light passing through the lamp body 200 of the light window 112 is completely applied.
  • the optical component 600 is fixed to the edge of the light window 112 by snapping.
  • the size of the opening of the light window 112 is slightly smaller than the edge of the light window 112.
  • the optical component 600 is preferably installed to avoid light leakage of other lamp bodies 200 And shoot directly.
  • the optical component 600 of the light window 112 is preferably not installed and exposes the opening of the light window 112, so that the light window 112 is also The outlet through hole of the heat dissipation channel 500 is described.
  • the housing 10 has at least one lamp slot 13, wherein the lamp slot 13 is formed between the first housing 11 and the second housing 12.
  • the lamp slot 13 is adapted to accommodate the lamp body 200 therein.
  • the lamp body 200 is fixed to the housing 10 by being placed in the lamp slot 13.
  • the lamp slot 13 is accommodated in the heat dissipation cavity, that is to say, the lamp body 200 is mounted to the lamp slot 13, that is, accommodated in the heat dissipation cavity.
  • the heat generated by the operation of the lamp body 200 is guided by the heat dissipation cavity and dissipated to the outside of the housing 10.
  • the lamp body 200 is placed in a relatively cold part of the housing 10, so that the working environment of the lamp body 200 is maintained to prevent damage to the lamp body 200 due to overheating.
  • the lamp body 200 is both a light-emitting source and a heat-generating source during operation, the heat of the entire lighting source device is maintained at the operating temperature due to the heat loss of the housing 10.
  • the second housing 12 includes at least one support rib 121 and at least one heat dissipation portion 122, wherein the heat dissipation portion 121 and the support rib 121 are disposed adjacent to each other.
  • the support rib 121 and the fixing portion 111 of the first housing 11 correspond to each other, so that the accommodating cavity for accommodating the lamp group 20 is hollowly formed.
  • the support ribs 121 extend radially, so that the second casing 12 covers the side of the first casing 11 radially.
  • the heat dissipation part 121 is preferably hollow.
  • the second housing 12 has at least one through hole extending radially.
  • the heat dissipation portion 121 is a thermally conductive material, and a heat outlet provided in the second housing 12 in conjunction with the heat dissipation of the lamp body 200.
  • the heat dissipation portion 121 is a heat dissipation fence with a guide, With hot air combing down and so on.
  • the heat dissipation part 121 is suitable for being infiltrated with liquid, and provides an outlet for attracting hot gas and facilitating heat dissipation.
  • first housing 11 and the second housing 12 respectively have several through holes, while stably accommodating the lamp body 200, the first housing 11 and the first housing 11
  • the two housings 12 provide outlets for radiating heat in different directions.
  • the lamp body 200 includes a light emitting lamp 21 and a heat sink 22.
  • the light-emitting lamp 21 is connected to the current controller 40 to radiate light to the outside of the first housing 11 when energy is supplied.
  • the heat sink 22 is fixed to the non-light emitting surface of the light emitting lamp 21. In other words, the light-emitting lamp 21 emits light toward the light window 112 of the first housing 11. By adjusting the irradiation angle of the first housing 11, the light emitting direction of the light-emitting lamp 21 also changes accordingly.
  • the heat sink 22 cooperates with the light-emitting lamp 21 to guide the heat generated by the light-emitting lamp 21 to the outside of the housing 10 and dissipate the heat flow to the outside.
  • the heat sink 22 is preferably detachable from the fixing portion 111 of the first housing 11 together with the light emitting lamp 21.
  • the heat sink 22 can dissipate heat in real time, so the heat sink 22 can be taken.
  • the external shape of the heat sink 22 is preferably provided in cooperation with the light emitting lamp 21.
  • the heat sink 22 fully covers the outside of the light-emitting lamp 21, so that the heat generated by the light-emitting lamp 21 during operation is effectively conducted away, and then is lost to the outside of the housing 10.
  • the lamp body 200 is roughly divided into two types of lamps, one is the petal lamp 21A extending in the radial direction, and the other is the wick lamp 21B. Set in the center of the housing 10.
  • the heat sink 22 is provided on the back of the flap lamp 21A and the wick lamp 21B, respectively. According to the working heat generation range of the light emitting lamp 21, the heat sink 22 separately radiates heat.
  • the radiator 22 is also detached from the housing 10, reducing the load weight borne by the housing 10.
  • the wick-type lamp 21B is detached, and then the substantially circular heat sink 22 matched with the wick-type lamp 21B is also detached.
  • the radiator 22 is preferably made of a metal-based material. After the unnecessary radiator 22 is removed, the weight borne by the housing 10 is greatly reduced.
  • the heat sink 22 is fixed to the housing 10.
  • the heat sink 22 is disposed corresponding to the non-light-emitting direction of the light-emitting lamp 21. As shown in FIGS. 7 and 8, the heat sink 22 is disposed toward the second housing 12 to dissipate heat. In other words, the heat generated during the operation of the light-emitting lamp 21 will be directly guided by the heat sink 22 to the direction of the second housing 12. Specifically, the light-emitting lamp 21 is connected to the current control 40 to radiate light out of the first housing 11. The heat generated by the light-emitting lamp 21 is dissipated from the light-emitting lamp 21.
  • the heat sink 22 guides most of the heat to the heat dissipation portion 122 of the second housing 12, and the heat is finally dissipated through the heat dissipation portion 122. It is worth mentioning that, through the side holes 130 of the first edge 110 of the first housing 11 and the second edge 120 of the second housing 12, part of the heat flows toward the housing 10 External loss. That is to say, regardless of whether the light emitting angle of the light emitting lamp 12 is adjusted to any of the predetermined angles, the heat sink 22 can uniformly dissipate heat.
  • the heat dissipation channel 500 of the lamp body 200 alone passes from the light emitting lamp 21 to the heat sink 22, and the heat sink 22 passes the heat generated by the light emitting lamp 21 through the position of the second housing 12
  • the heat dissipation portion 122 and / or the side hole 130 are scattered outside the housing 10.
  • the heat dissipation channel 500 will be specifically described by taking the adjacent flap lamp 21A, the adjacent flap lamp 21A, and the core lamp 21B as examples.
  • the heat generated by the adjacent flap lamps 21A is directed from the light-emitting lamp 21 toward the first edge 110 of the first housing 11 and the second edge 120 of the second housing 12
  • the side hole 130 diverges, and finally flows out of the housing 10 through the side hole 130.
  • the adjacent light-emitting lamps 21 dissipate heat toward each other and leave the housing 10 radially.
  • the heat generated by the adjacent flap lamps 21A is dissipated from the light-emitting lamp 21 to the heat dissipation portion 122 of the second housing 12, and the heat dissipation portion 122 finally guides the heat to the housing 10.
  • the first housing 11 has a plurality of through holes, respectively corresponding to the heat dissipation portions 122 of the second housing 12, so that the heat of the light-emitting lamp 21 leaves the housing 10 axially. More preferably, a part of the light window 112 of the first housing 11 is an opening corresponding to the heat dissipation part 122.
  • the heat generally spreads to the back of the lighting light source equipment, then the heat generated by the adjacent light-emitting lamps 21 facing each other is guided away from the housing 10 via the heat dissipation portion 122.
  • the heat dissipation channel 500 guides the heat generated by the light emitting lamp 21 radially and / or axially out of the housing 10.
  • the heat generated by the light-emitting lamp 21 is diffusely diffused away, and will not accumulate in the housing 10, nor will it adversely affect the life of the light-emitting lamp 21.
  • the heat sink 22 cooperates with the heat dissipation direction of the light-emitting lamp 21 to more effectively guide the heat out of the housing 10 through the heat dissipation channel 500.
  • the heat dissipation of the lamp body 200 is omnidirectionally radiated at a hemispherical angle, reducing the adverse effects of heat accumulation on electronic devices, ensuring a good working environment of the lighting light source equipment, and improving working reliability.
  • the adjustable support frame 30 includes a frame body 31, a locking angle component 32 and an operating portion 33.
  • the frame body 31 is controlled by the locking angle component 32 at the predetermined angle Fixed to the housing 10, the operating portion 33 switches the state of the lock angle assembly 32 between a locked state and an unlocked state.
  • the frame body 31 is installed in an application place, and the frame body 31 is pivotally connected to the housing 10, and the angle between the frame body 31 and the frame body 31 is adjusted by the housing 10 so that it is relatively installed at The angle of the irradiation direction of the lamp group 20 in the housing 10 is adjusted.
  • the frame body 31 can rotate relative to the housing 10 so that the angle is adjusted.
  • the lock angle assembly 32 is controlled by the manipulation part 33 to be in the locked state, the angle between the frame body 31 and the housing 10 is locked, and the irradiation direction of the lamp group 20 is also fixed. That is to say, after adjusting the angle in the unlocked state, the manipulation portion 33 fixes the relative position between the frame body 31 and the housing 10 so that the illumination light source equipment works while maintaining the irradiation angle.
  • the manipulation portion 33 has different positions in the unlocked state and the locked state of the lock angle assembly 32, respectively.
  • the unlocking state and the locking of the lock angle assembly 32 can be clearly recognized by the performance of the manipulation portion 33. Therefore, the locked and unlocked states of the adjustable support frame 30 are clearly distinguished from each other, to prevent misrecognition of the state of the adjustable support frame 30, and to avoid potential operational safety risks.
  • the locking angle assembly 32 is detachably fixed between the frame body 31 and the housing 10.
  • the angle of the housing 10 can be adjusted steplessly through the angle-locking assembly 32 and the frame 31, and is suitable for irradiating the lamp group 20 to a desired angle according to requirements.
  • the angle-locking assembly 32 can lock the frame 31 and the housing 10 at an arbitrary angle to work.
  • the angle-locking assembly 32 can also be updated to fix the angle of the housing 10 and the lamp group 20 with high reliability.
  • the angle can be continuously changed, and the angle of adjustment is not a fixed specific value.
  • the predetermined angle can be randomly selected from 0 to 360.
  • the frame body 31 includes a main body 312 having two ends 311.
  • the main body 312 is arranged in a semi-arc shape relative to the outer shape of the housing 10.
  • the angle of the housing 10 is adjusted relative to the main body 312 by the angle-locking component 32, that is, the housing 10 is pivotally connected to the end 311.
  • the two ends 311 are connected to form the rotation axis of the housing 10, and the rotation axis is located on the side of the housing 10.
  • the structures of the two end portions 311 are the same, and the two end portions 311 are respectively connected to the main body 312 and the corner assembly 32 in the same manner, Therefore, the relationship between the end 311 and the main body 312 and the corner assembly 32 can be explained by taking the main body 312 disposed on one side of the end 311 as an example.
  • the locking angle assembly 32 includes a fixed shaft 321, a clamping wheel 322 and a press lock 323, wherein the fixed shaft 321 is fixed to the side of the housing 10, wherein The clamping wheel 322 and the pressure lock 323 are rotatably disposed on the fixed shaft 321.
  • the mutual positions of the clamping wheel 322 and the pressure lock 323 can be locked or unlocked.
  • the pressure lock 323 rotates around the clamping wheel 322. If the pressure lock 323 is held by the clamping wheel 322 during rotation, that is The angle between the pressure lock 323 and the clamping wheel 322 is maintained, and the predetermined angle is locked.
  • the manipulating portion 33 controls the press lock 323 to lock and maintain a mutually clamped relationship, so that the lock angle assembly 32 switches between the locked state and the unlocked state.
  • the clamping wheel 322 is fixed to the fixed shaft 321, and the pressure lock 323 is provided at the end 311 of the frame body 31, so that the frame body 31 is relatively fixed to the
  • the shaft 321 is rotatable, and the frame body 31 is rotatable relative to the clamping wheel 322.
  • the frame body 31 surrounds the clamping wheel 322 along with the pressure lock 323, so that the frame body 31 surrounds the clamping wheel 322, and then the frame body 31 and the fixed shaft 321 can be set arbitrarily Angle.
  • the relative position of the pressure lock 323 and the clamping wheel 322 is determined, and then the angle of the frame 31 relative to the clamping wheel 322 is determined, then the The locking angle assembly 32 fixes the angle of the frame 31, that is, in the locked state.
  • the manipulation portion 33 is a rotatable handle, and the relative position of the 323 and the clamping wheel 322 is tightened by rotation.
  • the pressure lock 323 is arranged compressibly along the edge of the clamping wheel 322.
  • the pressure lock 323 is locked and cannot rotate around the edge of the clamping wheel 322, that is, the angle is fixed.
  • the position reached by the rotation of the manipulating portion 33 can realize whether the pressure lock 323 is at a fixed angle, that is to say, the manipulating portion 33 can obtain whether the locking angle assembly 32 is in the locked state.
  • the clamping wheel 322 is integrally fixed to the fixed shaft 321.
  • the pressure lock 323 is deformably disposed at the end 311 of the frame body 31 through the manipulation portion 33, as shown in FIG. 9.
  • the pressure lock 323 can be removed and replaced. More preferably, the pressure lock 323 can be replaced by removing the operation portion 33 from the end 311 of the frame 31.
  • the pressure lock 323 is fixed to the fixed shaft 321, the clamping wheel 322 is disposed at the end 311 of the frame 31, and the pressure lock 323 is opposite to the clamping wheel
  • the angle of 322 can be adjusted.
  • the clamping wheel 322 is preferably ring-shaped.
  • the pressure lock 323 is fixed to the edge of the inner ring of the clamping wheel 322 to fix the center angle of the pressure lock 323 relative to the clamping wheel 322.
  • the end portion 311 of the frame body 31 is fixed to the outer ring edge of the clamping wheel 322, and then when the pressure lock 323 determines the angle with the clamping wheel 322, the frame body 31 and the fixing The angle of the shaft 321 is fixed.
  • the frame body 31 can be lockedly rotated around the fixed shaft 321, and then the adjustable support frame 30
  • the predetermined angle with the housing 10 is lockably adjusted. That is to say, the pressure lock 323 is fixed on the outer edge of the clamping wheel 322, and the rotation of the clamping wheel 322 makes the inner edge fixed by the pressure lock 323 can be fixed on the pressure lock 323
  • the end portion 311 of the frame body 31 rotates around the fixed shaft 321, that is, rotates relative to the housing 10 provided with the fixed shaft 321.
  • the pressure lock 323 is fixed by the manipulating portion 33 to the relative angle of the clamping wheel 322 by means of pressure clamping.
  • the clamping wheel 322 is controlled by the manipulating portion 33 to clamp the pressure lock 323, thereby fixing the relative positions of the clamping wheel 322 and the pressure lock 323.
  • the manipulation part 33 similarly locks the clamping relationship between the clamping wheel 322 and the clamping lock 323. Fixing by means of a clamping method between the clamping wheel 322 and the clamping lock 323 not only realizes stepless adjustment in angle, but also fixes at any desired position.
  • the predetermined angle between the housing 10 and the adjustable support frame 30 can be locked at any desired value. By fixing or suspending the adjustable support frame 30, the housing 10 can be adjusted to illuminate the lamp group 20 in a desired direction.
  • the fixed connection between the end 311 of the frame 31 and the main body 312 is shown in FIG. 11.
  • the end portion 311 of the frame 31 and the main body 312 are detachable.
  • the end portion 311 of the frame body 31 and the main body 312 are integrally formed, for example, integrally formed by forging or molding.
  • the end portion 311 has at least one positioning hole 3110, and the main body 312 has at least one mounting hole 3120.
  • the positioning hole 3110 and the mounting hole 3120 are provided in correspondence with each other.
  • the positioning hole 3110 and the mounting hole 3120 are adapted to be inserted into the connecting rod and fixed in a relative position.
  • the positioning hole 3110 and the mounting hole 3120 are positioned from the outside to the inside through a connecting rod, such as a screw or a screw, and the end portion 311 is sleeved and fixed to the main body 312.
  • the end portion 311 is sleeved on the main body 312, and the end portion 311 is fixed on the main body 312 through a plurality of connecting rods.
  • the frame body 31 further includes two inner plugs 313, and the two inner plugs 313 are defined as a first inner plug 3131 and a second inner plug 3132, respectively.
  • the inner plug 313 is placed inside the main body 312, and the first inner plug 3131 and the second inner plug 3132 have a tendency to outward from each other, so as to be sleeved on the end 311 of the main body 312
  • the body 312 is more tightly sleeved.
  • first inner plug 3131 and the second inner plug 3132 are respectively fixed by connecting rods.
  • the connecting rod is inserted into the mounting hole 3120 of the main body 312 from the positioning hole 3110 of the end portion 311, and is finally fixed to the first inner plug 3131, and The end portion 311 and the main body 312 are fixed by the first inner plug 3131, and are positioned by the positioning hole 3110 and the mounting hole 3120.
  • the second inner plug 3132 also fixes the body 312 and the end 311 similarly.
  • first inner plug 3131 and the second inner plug 3132 are placed on opposite sides of the main body 312, respectively. After the first inner plug 3131 and the second inner plug 3132 are fixed by the connecting rod, there is a tendency to be relatively separated, so that the main body 312 and the end portion 311 are more closely fitted, and the sleeve is grounded more closely. That is, the first inner plug 3131 and the second inner plug 3132 expandably fix the end portion 311 and the main body 312. The end portion 311 is closely connected with the main body 312, so that the frame body 31 has high support strength and reliability.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Fastening Of Light Sources Or Lamp Holders (AREA)

Abstract

本发明提供一种一照明光源器材,包括:一壳体,其中所述壳体的不同表面具有相互可贯通的通孔,和一灯组,其中所述灯组可拆卸地被固定在所述壳体内部,其中所述灯组和所述壳体的通孔之间形成至少两散热通道。本发明进一步提供一照明光源器材,包括:一壳体,用于容纳一灯组进行照明,和一可调支撑架,其中所述壳体被轴接于所述可调支撑架,以供所述壳体相对于所述可调支撑架被锁定在一预定角度,能够调整照射角度,并提供良好的散热以延长使用寿命。

Description

照明光源器材及其光源配置方法 技术领域
本发明涉及照明领域,尤其涉及一种影视工作中拍摄所需的发光灯和照明光源器材及其光源配置方法。
背景技术
在影视工作中,灯光是非常重要的一部分。灯光的位置、照射的角度、光线的调和等等都会对画面造成很大的影响。尤其是,在棚内作为底光或者泛光照明的灯具器材通常地具有很高的发光要求,例如太空灯这类大型的灯具是一般生产生活的灯具不能替代的。
现有的一种泛光类型的灯具,如图1所示,包括一壳板10P、至少两个灯体20P、用于吊起所述壳板10P的吊架30P,以及一稳压电源40P。所述灯体20P和所述稳压电源40P均被所述壳板10P所承托,当所述吊架30P被挂起,所述灯体20P和所述稳压电源40P随着所述壳板10P的抬升而被托起。值得一提的是,所述壳板10P和所述吊架30P之间通常保持着预定的角度,并不能随意的调整。也就是说,所述灯体20P的发光角度也是基本固定的。当然,对所述吊架30P的支撑长短调整可以改变所述壳板10P的倾斜度,使得所述灯体20P的照射方向出现角度。但是所述吊架30P的受力也随之变得不平稳,所述灯体20P和所述稳压电源40P的重心与所述壳板10P之间出现偏移。
需要注意的是,所述灯体20P的功率需要达到千瓦级别,耗能非常可观。对于这种大型的灯具,所述灯体20P的散热是必须的,否则无法长时间进行照明工作。但是不能采用风冷等等需要更大重量、更多耗能的方式。风冷不仅会加大体积加重重量,而且会产生晃动,对所述吊架30P的稳定性不利。也就是说,所述壳板10P不仅需要很大的体积,而且需要能够承载所述灯体20P及其散热器件的重量。
另外,因为采用静置的散热方式,现有的灯具因使用的位置状态不同,散热情况会有较大的影响。例如吊着使用和立着使用,两种状态下现有的灯具热量流失的方向基本相似。也就是说,无论放置的角度如何,热量散出的方向是大致一定的。吊着使用时,所述灯体20P所发出的热量大致地向上散出。立着使用时, 所述灯体20P所发出的热量也大致地向上散出,但是靠下方的所述灯体20P所发出的热气会遇到相对靠上方的所述灯体20P,使得靠上方的所述灯体20P周围始终有热量聚集。那么,导致在不同位置的所述灯体20P的散热情况不均匀。因此,特定的所述灯体20P损耗会较快。而且一旦一处所述灯体20P损坏,整个的灯具需要被维修而不能继续使用。一般地,所述壳板10P能够达到直径1m左右,经常性的拆卸和修护并不是用户希望的。
照明的稳定性、设备使用的安全性以及维护方便性是现有的灯具不能满足影视工作的几大主要的方面。
发明内容
本发明的一个主要优势在于提供一种照明光源器材及其光源配置方法,能够调整照射角度,能够提供良好的散热。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,其包括一可拆卸的灯组,在不拆下整体照明器材的情况下,能够针对性的拆除特定的灯体,不影响所述灯组的整体使用。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,提供至少一散热通道,提供热量散失的路径,以对所述灯组进行均匀的散热。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述灯组的照射角度能够被调整并锁定,以稳定地朝向预定的方向进行照明,并且整体结构具有很强的稳定性,保证使用安全。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,其包括一电流控制器,所述电流控制器外接于所述灯组,无需协同所述灯组被固定,减少所述灯组的位置晃动因素,提高挂起使用的稳定性。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述电流控制器的工作振动或噪声不会影响所述灯组,减少所述灯组周围的噪声,进而稳定地提供适用于影视拍摄的照明。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述灯组无需协同所述电流控制器被挂起,降低了承重要求,具有更高的便捷性,提高对于不同的场景的适用性。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述灯 组被一壳体可拆卸地固定,所述壳体的不同表面具有贯通的开孔,从而提供不同方向的散热通道。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述壳体进一步地可拆卸地安装对应于所述灯组的一光学部件,进而配合所述灯组按照需求提供不同的照明效果。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,其包括一可调支撑架,可锁定的轴接于所述壳体,使得所述壳体相对于所述可调支撑架的角度能够调整并锁定。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述可调支撑架的锁定和解锁状态相互明显的区分,防止对所述可调支撑架状态的误认,避免潜在的安全风险。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述壳体相对于所述可调支撑架的旋转角度为无级变化的,适于朝向所需要的角度进行照射。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,所述可调支撑架的部分部件为可更换的,缩短维修时间,方便继续地提供照明。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,一定使用时间后,不必全面地进行检修,针对可更改的部件进行更新,使得整体的可靠性被直接提高。
本发明的另一个优势在于提供一种照明光源器材及其光源配置方法,临场出现的设备故障能够通过部件换新解决,对影视工作的现场使用具有极高的适用性和连续性。
本发明的其它优势和特点通过下述的详细说明得以充分体现并可通过所附权利要求中特地指出的手段和装置的组合得以实现。
依本发明的一个方面,能够实现前述目的和其他目的和优势的本发明的一照明光源器材,包括:
一壳体,其中所述壳体的不同表面具有相互可贯通的通孔;和
一灯组,其中所述灯组可拆卸地被固定在所述壳体内部,其中所述灯组和所述壳体的通孔之间形成至少两散热通道。
根据本发明的一个实施例,所述灯组包括至少两个所述灯体,其中所述灯体 被分别地可拆卸地安装于所述壳体。
根据本发明的一个实施例,两个所述散热通道之间自所述灯体而散气方向不同。
根据本发明的一个实施例,所述灯组包括至少一光学部件,其中所述光学部件对应所述灯体位置而可拆卸地安装于所述壳体。
根据本发明的一个实施例,所述壳体包括一第一外壳和一第二外壳,其中所述第一外壳的边缘和所述第二外壳的边缘相互覆盖而在所述第一外壳与所述第二外壳之间形成一容纳所述灯组的散热腔。
根据本发明的一个实施例,所述第一外壳和所述第二外壳采用边缘相互对接的方式而合并连接所述第一外壳和所述第二外壳,其中所述第一外壳的缘和所述第二外壳的边缘相互可重叠的设置,以通过若干的连接件对所述第一外壳的边缘和所述第二外壳的边缘重叠的部分固定。
根据本发明的一个实施例,所述第一外壳的边缘和所述第二外壳的边缘分别地具有若干侧孔。
根据本发明的一个实施例,所述第一外壳包括一固定部和至少一光窗,其中所述光窗与所述固定部相互对应的设置,其中所述灯体可拆卸地被安装于所述固定部,其中所述灯体被安装至所述固定部时,所述光窗为所述灯体提供出光面。
根据本发明的一个实施例,所述固定部的外形与所述灯体相互对应,以供所述灯体与所述固定部相互的契合。
根据本发明的一个实施例,所述固定部一体地成型于所述第一外壳。
根据本发明的一个实施例,所述固定部为卡槽。
根据本发明的一个实施例,所述光窗为形成于所述固定部的开口。
根据本发明的一个实施例,所述第二外壳包括至少一支撑筋和至少一散热部,其中所述散热部与所述支撑筋相互相邻地设置。
根据本发明的一个实施例,所述支撑筋与所述第一外壳的所述固定部相互对应,使得容纳所述灯组的容纳腔被镂空性地形成。
根据本发明的一个实施例,所述支撑筋径向地延伸,进而所述第二外壳呈辐射状地覆盖在所述第一外壳的一侧。
根据本发明的一个实施例,所述灯体包括一发光灯和一散热器,其中所述散热器的外形配合所述发光灯而设置,其中所述发光灯工作而产生的热量被所述散 热器引导至所述壳体的外部。
根据本发明的一个实施例,所述发光灯工作而产生的热量被所述散热器引导至所述第二外壳的所述散热部。
根据本发明的一个实施例,所述发光灯工作而产生的热量被所述散热器引导至所述第一外壳的边缘和所述第二外壳的边缘的所述侧孔。
根据本发明的一个实施例,所述照明光源器材包括一电流控制器,其中所述电流控制器外接于所述灯组,为所述灯组供能。
根据本发明的一个实施例,所述照明光源器材包括一可调支撑架,其中所述壳体被轴接于所述可调支撑架,使得所述壳体相对于所述可调支撑架旋转而改变所述灯组的照射角度。
依本发明的另一个方面,本发明进一步提供一照明光源器材,包括:
一壳体,用于容纳一灯组进行照明;和
一可调支撑架,其中所述壳体被轴接于所述可调支撑架,以供所述壳体相对于所述可调支撑架被锁定在一预定角度。
根据本发明的一个实施例,所述可调支撑架具有一锁定状态和一解锁状态,其中处于所述锁定状态下,所述可调支撑架与所述壳体之间的所述预定角度被固定,其中处于所述解锁状态下,所述可调支撑架与所述壳体之间的所述预定角度可被调整。
根据本发明的一个实施例,所述可调支撑架包括一架体、一锁角组件以及一操控部,其中所述架体被所述锁角组件以所述预定角度地相对固定在所述壳体,其中所述操控部将所述锁角组件的状态在所述锁定状态和所述解锁状态之间切换,其中所述架体被轴接于所述壳体,通过所述壳体调整与所述架体之间的所述预定角度,使得被安装在所述壳体内的所述灯组的照射方向的角度得到调整。
根据本发明的一个实施例,当所述锁角组件受所述操控部控制而处于所述解锁状态,所述架体能够相对于所述壳体进行旋转,其中当所述锁角组件受所述操控部控制而处于所述锁定状态,所述架体与所述壳体之间角度被锁定,使得所述灯组的照射方向被固定。
根据本发明的一个实施例,所述锁角组件被可拆卸地固定在所述架体于所述壳体之间。
根据本发明的一个实施例,处于所述解锁状态,所述壳体通过所述锁角组件 与所述架体可无级地调整角度。
根据本发明的一个实施例,所述架体包括一主体,所述主体具有两个端部,其中所述壳体被轴接于所述端部,其中所述主体的外形相对所述壳体的外形而被设置。
根据本发明的一个实施例,所述主体相对所述壳体的外形而被设置为半弧形。
根据本发明的一个实施例,所述架体的所述端部与所述主体为一体成型的。
根据本发明的一个实施例,所述架体的所述端部可拆卸地连接所述主体。
根据本发明的一个实施例,所述端部被套接于所述主体,通过若干连接杆固定所述端部于所述主体。
根据本发明的一个实施例,所述端部具有至少一定位孔,其中所述主体相对地具有至少一安装孔,其中当所述端部套接于所述主体时,所述定位孔和所述安装孔适于被插入连接杆而被固定相对位置。
根据本发明的一个实施例,所述架体进一步地包括两个内塞,所述内塞被放置于所述主体内部,其中两个所述内塞具有相互向外离开的趋势,使得套接于所述主体的所述端部受到所述内塞外力紧密地套接于所述主体。
根据本发明的一个实施例,所述锁角组件包括一固定轴、一夹轮以及一压锁,其中所述固定轴被固定于所述壳体的侧部,其中所述夹轮和所述压锁相互可旋转地设置在所述固定轴和所述壳体之间,其中所述夹轮和所述压锁相互位置可被锁定,使得所述固定轴和所述壳体之间的所述预定角度可被锁定。
根据本发明的一个实施例,所述操控部控制所述压锁与所述夹轮的相对位置保持固定,使得所述锁角组件在所述锁定状态与所述解锁状态之间切换。
根据本发明的一个实施例,所述压锁围绕所述夹轮旋转,所述压锁被设置在所述架体的所述端部,其中所述架体随着所述压锁围绕所述夹轮旋转,使得所述架体围绕所述夹轮旋转,进而所述架体与所述固定轴之间的所述预定角度被调整。
根据本发明的一个实施例,所述压锁沿着所述夹轮的边缘被可相互压紧地设置。
根据本发明的一个实施例,所述夹轮被一体地固定在所述固定轴。
根据本发明的一个实施例,所述压锁被可拆卸地设置于所述架体的端部。
根据本发明的一个实施例,所述压锁固定于所述固定轴,所述夹轮设置于所述架体的端部,其中所述压锁相对所述夹轮的角度可被调整。
根据本发明的一个实施例,所述夹轮为环形,其中所述压锁通过固定在所述夹轮的内环边缘而固定所述压锁相对于所述夹轮的圆心角度,其中所述架体的所述端部被固定在所述夹轮的外环边缘,使得所述架体围绕所述压锁旋转,进而所述架体与所述固定轴之间的所述预定角度被调整。
根据本发明的一个实施例,所述压锁沿着所述夹轮的内环边缘被可相互压紧地设置。
根据本发明的一个实施例,所述夹轮被一体地固定在所述架体的端部。
根据本发明的一个实施例,所述压锁被可拆卸地设置于所述固定轴。
依本发明的另一个方面,本发明进一步提供一光源配置方法,包括步骤:
可拆卸地组装至少一灯体于一壳体,以供引导所述灯体工作产生的热量以一定方向地离开所述壳体;和
锁定所述壳体相对一可调支撑架的一预定角度,将所述灯体的照射方向固定。
通过对随后的描述和附图的理解,本发明进一步的目的和优势将得以充分体现。
本发明的这些和其它目的、特点和优势,通过下述的详细说明,附图和权利要求得以充分体现。
附图说明
图1为一种现有的灯具示意图。
图2A和图2B是根据本发明的一个优选实施例的所述照明光源器材的整体示意图。
图3是根据本发明的上述优选实施例的所述照明光源器材的应用示意图。
图4是根据本发明的上述优选实施例的所述照明光源器材的分体示意图。
图5是根据本发明的上述优选实施例的所述照明光源器材的可拆卸示意图。
图6是根据本发明的上述优选实施例的所述照明光源器材的可拆卸示意图。
图7是根据本发明的上述优选实施例的所述照明光源器材的所述灯体示意图。
图8是根据本发明的上述优选实施例的所述照明光源器材的散热示意图。
图9是根据本发明的上述优选实施例的所述照明光源器材的所述可调支撑架示意图。
图10是根据本发明的上述优选实施例的所述照明光源器材的调整示意图。
图11是根据本发明的上述优选实施例的所述照明光源器材的所述可调支撑架分体示意图。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
本领域技术人员应理解的是,在本发明的揭露中,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系是基于附图所示的方位或位置关系,其仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此上述术语不能理解为对本发明的限制。
可以理解的是,术语“一”应理解为“至少一”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
本发明提供一光源配置方法,包括步骤:
可拆卸地组装至少一灯体200于一壳体10,以供引导所述灯体200工作产生的热量以一定方向地离开所述壳体10;和
锁定所述壳体10相对一可调支撑架30的一预定角度,将所述灯体200的照射方向固定。
上述步骤的顺序可以调换,对所述光源配置方法的作用效果没有影响。通过将所述灯体200放置于所述壳体10相对冷的位置,辅助所述灯体200所产生的热量散出所述壳体10。也就是说,所述灯体200的工作环境被保持,照射方向也相对固定,适于高效率地提供照明。
本发明提供一照明光源器材,如图2A至图11所示,适用于为类似于拍摄等场所提供照明。所述照明光源器材包括一壳体10和一可调支撑架30,其中所述壳体10被轴接于所述可调支撑架30,使得所述壳体10相对于所述可调支撑架30被锁定在一预定角度。也就是说,所述壳体10与所述可调支撑架30之间的 角度能够被调整,并保持在所述预定角度。
进一步地,在本优选实施例中的所述照明光源器材的所述壳体10可拆卸地被安装一灯组20,其中所述壳体10的不同表面具有相互可贯通的通孔,其中所述灯组和所述壳体的通孔之间形成至少两散热通道500。在所述灯组20工作时,所述灯组20所散出的热量能够通过所述散热通道500向所述壳体10外部流散。所述灯组20向所述壳体10外均匀地散出热气,不受所述壳体10与所述可调支撑架30之间的所述预定角度的影响。
如图2A至图3所示,所述照明光源器材的所述可调支撑架30根据需要被设置在场地。所述壳体10受到所述可调支撑架30的支撑,所述灯组20被相对地固定在所述壳体10的内部,随着所述壳体10的角度调整而变化照射角度。一般地,所述照射器材被设置向固定的方向进行照射,在所述灯组20工作时,基本地不会变动角度和移动位置。所述壳体10与所述可调支撑架30之间的相关角度是被锁定的。
所述灯组20进一步地包括至少两个所述灯体200。所述灯体200被分别地可拆卸地安装于所述壳体10。所述灯体200优选地被对称地排布于所述壳体10。值得一提的是,每个所述灯体200相对于所述壳体10为可拆卸的,每个所述灯体200相对独立地进行工作。而且,当某个所述灯体200出现问题,无法正常工作,所述灯体200能够被拆卸,而其他的所述灯体200所组成的所述灯组20可继续地工作。
在本优选实施例中,所述灯组20进一步地包括至少一光学部件600。所述光学部件600对应所述灯体200而安装于所述壳体10。所述光学部件600优选地为透镜。所述灯体200发出的光线经过所述光学部件600而得到一定的效果,例如光线被汇聚、被过滤特定颜色、被均匀发散等等。所述光学部件600为可拆卸地安装所述壳体10,通过置换或者叠加不同的所述光学部件600,所述灯组20能够提供不同效果的光线。更优选地,所述光学部件600位于所述壳体10的位置对应于所述灯体200,所述光学部件600的数量也对应于所述灯体200的数量。也就是说,所述灯体200所发出的光线被完全地施加所述光学部件600所提供的效果,使得所述灯组20提供的效果均匀且稳定。
更多地,所述照明光源器材包括一电流控制器40。所述电流控制器40外接于所述灯组20,为所述灯组20供能。所述电流控制器40以有线的方式为所述 壳体10内的所述灯组20的所述灯体200提供能量。值得一提的是,所述电流控制器40并不被所述壳体10支撑,也就是说所述电流控制器40离开所述壳体10与所述灯组20。所述壳体10基本地只需承载所述灯组20的重量,而所述电流控制40被另外地放置。所述可调支撑架30优选地需要承载所述壳体10与所述灯组20的重量。在本优选实施例中,所述可调支撑架30被挂起,而所述灯组20被所述壳体10容纳并随同所述可调支撑架30被挂起使用,所述电流控制器40被放置在场地其他位置。值得一提的是,所述壳体10的旋转并不受到所述电流控制器40所连接的电气接线的限制。在另外可行的实施例中,所述电流控制器40被绑定于所述可调支撑架30,由所述可调支撑架30承担所述电流控制器40的重量。
特别地,所述照明光源器材的所述可调支撑架30的部分部件可以被拆卸。根据使用情况和场所要求,所述可调支撑架30可以被换新,更换后继续地可以工作。无需额外的检查,通过更换来保证整个结构的可靠性,或者准备两套及以上的可更换部件,保证使用安全性。
需要说明的是,所述照明光源器材的所述灯组20的所述灯体200和所述光学部件600为可拆卸的,对于拆卸的位置可以采取换新的操作。根据需要也可以保持空留,不会对其他未拆卸的部件产生影响。本领域的技术人员可以理解的是,在影视拍摄工作中的重要期间,类似于所有电池都更换为全新的而开始拍摄,所述照明光源器材的可拆卸部件也适于全部更新而保证极高的可靠性。
具体地,如图4至图6所示,所述壳体10包括一第一外壳11和一第二外壳12,其中所述第一外壳11和所述第二外壳12相互覆盖而形成一容纳所述灯组20的容纳腔。所述第一外壳11和所述第二外壳12的边缘相互连接,使得所述第一外壳11和所述第二外壳12之间形成一散热腔。在本优选实施例中,所述第一外壳11和所述第二外壳12采用边缘相互对接的方式而合并连接。也就是说,所述第一外壳11的一第一边缘110和所述第二外壳12的一第二边缘120相互接触。优选地,所述第一外壳11的第一边缘110和所述第二外壳12的第二边缘120相互可重叠的设置,进一步地通过若干的连接件对所述第一外壳11的第一边缘110和所述第二外壳12的第二边缘120重叠的部分固定。
值得一提的是,所述第一外壳11的第一边缘110具有一定的弧度,所述第二外壳12的第二边缘120相应的具有一定的弧度。也就是说,所述散热腔为具 有一定的高度的,其高度为所述述第一外壳11的第一边缘110和所述第二外壳12的第二边缘120长度的累加。可以理解的是,在本优选实施例中,所述第一外壳11和所述第二外壳12都是具有对应弧度的板体。对于制造所述第一外壳11和所述第二外壳12板体而言,可以使用相似的模具,节省了部分成本。
另外,从所述照明光源器材的所述壳体10的外形上可以直接的得到较为平整的设备外形。所述第一外壳11和所述第二外壳12相对地平整地构成圆轮状,而且扁平状的所述外壳10也具有相对大的平铺式的散热面积。
更具体地,所述第一外壳11的第一边缘110向所述第二外壳12的第二边缘120延伸而形成若干可与所述第二外壳12的所述第二边缘120接触的凸出部分。在本优选实施例中,所述第一外壳11的第一边缘110和所述第二外壳12的第二边缘120组成所述壳体10的侧面。所述第一外壳11为所述照明光源器材的正面出光面,所述第二外壳12为所述照明光源器材的反面。本领域的技术人员可以理解的是,所述第一外壳11和所述第二外壳12可以相互调换,这里为方便说明将其分为所述照明光源器材的正面与反面。
更多地,所述第一边缘110和所述第二边缘120分别地具有若干侧孔130。所述侧孔130均匀地且竖直地形成于所述第一外壳11的第一边缘110和所述第二外壳12的第二边缘120。一方面加强所述第一外壳11的第一边缘110和所述第二外壳12的第二边缘120的结合强度,另一方面所述灯组20所在的容纳腔通过所述侧孔130与外部进行连通。
所述壳体10进一步地包括至少一连接件14被分别地对应设置在所述第一外壳11和所述第二外壳12,进而将所述第二外壳12连接于所述第一外壳11。更多地,在本优选实施例中,所述第一外壳11和所述第二外壳12分别地设置对应的第一连接件141和第二连接件142。所述第一连接件141和所述第二连接件142之间的相互连接,使得所述第一外壳11和所述第二外壳12之间相互被固定和支撑。也就是说,所述散热腔被稳定地依靠所述连接件14支撑。
进一步地,所述第一外壳11包括一固定部111和至少一光窗112,其中所述光窗112与所述固定部111相互对应的设置。所述灯体200可拆卸地被安装于所述固定部111。所述灯体200被安装至所述固定部111时,所述光窗112自然地为所述灯体200提供出光面。在本优选实施例中,所述固定部111被实施为向所述第二外壳12凸出卡槽。也就是说,所述固定部111为一体地成型于所述第一 外壳11。
所述固定部111的外形与所述灯体200相互对应。所述灯体200与所述固定部111能够相互的契合,在本优选实施例中通过按入与拔出的方式进行可拆卸的安装。更优选的方式中,所述固定部111预设与所述灯体200相互电连接的接口,使得所述灯体200在结构上安装的同时,所述灯体200与所述电流控制器40的电连接也直接地完成。也就是说,在这种方式中,所述第一外壳11预设与所述电流控制器40相互连接的线路,每个所述灯体200在安装时无需分别地接入所述电流控制器40,简化了安装所述灯体200的工作。
在本优选实施例中,所述光窗112为形成于所述固定部111的开口。所述光窗112于所述光学部件600分别地可拆卸地契合。所述光学部件600将所述光窗112的开口完全的覆盖,以使得通过所述光窗112的所述灯体200的光线被完整地施加效果。所述光学部件600藉由卡合的方式被固定在所述光窗112的边缘。优选地,所述光窗112的开口的尺寸稍小于所述光窗112的边缘。
需要说明的是,若所述固定部111未安装所述灯体200,使得所述光窗112的开口被暴露,所述光学部件600优选地被安装而避免其他所述灯体200的光线泄露而直接射出。当然,根据需要而所述光学部件600为不必要时,所述光窗112的所述光学部件600优选地不安装而将所述光窗112的开口暴露,使得所述光窗112也为所述散热通道500的出口通孔。
更多地,如图5所示,所述壳体10具有至少一灯槽13,其中所述灯槽13被形成于在所述第一外壳11和所述第二外壳12之间。所述灯槽13适于容纳所述灯体200于内。也就是说,所述灯体200通过被置于所述灯槽13,使得所述灯体200被固定于所述壳体10。值得一提的是,所述灯槽13被容置在所述散热腔,也就是说,所述灯体200被安装至所述灯槽13,即被容纳于所述散热腔。所述灯体200工作而产生的热量被所述散热腔引导而流散至所述外壳10外部。特别地,所述灯体200被放置于所述外壳10相对较冷的部分,使得所述灯体200的工作环境被维护而防止过热对所述灯体200造成伤害。换句话说,所述灯体200虽然工作中即为发光源也为发热源,但是通过所述壳体10的热量散失,所述照明光源器材整体的热量被维持与工作温度。
所述第二外壳12包括至少一支撑筋121和至少一散热部122,其中所述散热部121与所述支撑筋121相互相邻地设置。所述支撑筋121与所述第一外壳11 的所述固定部111相互对应,使得容纳所述灯组20的容纳腔被镂空性地形成。在本优选实施例中,所述支撑筋121径向地延伸,进而所述第二外壳12呈辐射状地覆盖在所述第一外壳11的一侧。所述散热部121优选地为镂空的。也就是说,在本优选实施例中所述第二外壳12具有至少一径向延伸的通孔。更优选地,所述散热部121为导热材质,配合所述灯体200的散热而于所述第二壳体12设置的热量出口,例如,所述散热部121为具有导向的散热栏栅、具有热气梳理的绒毛等等。根据不同的需要,所述散热部121适于被浸润液体,提供吸引热气,方便热量散发的出口。
值得一提的是,所述第一外壳11和所述第二外壳12分别地具有若干的通孔,在稳定的容纳所述灯体200的同时,在所述第一外壳11和所述第二外壳12的不同方向上提供流散热气的出口。
更多地,如图6和图7所示,所述灯体200包括一发光灯21和一散热器22。所述发光灯21被连接于所述电流控制器40,以被提供能源的情况下向所述第一外壳11外部照射光线。所述散热器22被固定在所述发光灯21的非出光面。也就是说,所述发光灯21向所述第一外壳11的所述光窗112方向出射光线。通过调整所述第一外壳11的照射角度,所述发光灯21的出光方向也随之改变。所述散热器22协同地与所述发光灯21工作,将所述发光灯21工作所产生的热量向所述壳体10的外部导向并使得热气流散至外部。所述散热器22优选地与所述发光灯21一起能够被拆卸出所述第一外壳11的所述固定部111。在需要拆除所述灯体200的情况下,因为所述发光灯21本身会很热,若直接的从所述固定部111拿取所述发光灯21会有烫伤风险,在本优选实施例中的所述散热器22因实时地散失热量,所述散热器22可以被拿取。通过拿取所述散热器22进而拆卸出所述灯体200,保证更换修护的简便快捷。
如图7所示,所述散热器22的外形优选地配合所述发光灯21而设置。也就是说,所述散热器22全面地覆盖所述发光灯21的外部,使得所述发光灯21工作而产生的热量被有效地导离,进而散失至所述壳体10的外部。在本优选实施例中,所述灯体200大致地被分为两类灯型,一种为所述瓣式灯21A沿径向方向延伸而布置,另一种为所述芯式灯21B被设置在所述壳体10的中心。所述散热器22分别地被设置于所述瓣式灯21A和所述芯式灯21B的背面。根据所述发发光灯21的工作发热范围,所述散热器22分别地将热量导出。
值得一提的是,若特定的所述发光灯21被拆离所述壳体10,所述散热器22也被拆离所述壳体10,减少所述壳体10所承担的负载重量。例如,在一种应用场所,所述芯式灯21B被拆离,那么与所述芯式灯21B搭配的类圆形的所述散热器22也被拆离。所述散热器22优选地由金属类材质制成,将不需要的所述散热器22拆除后,所述壳体10所承担的重量也极大地减轻。当然,本发明另外可行的实施例中,所述散热器22被固定在所述壳体10。
所述散热器22对应于所述发光灯21的非出光方向设置。如图7和图8所示,所述散热器22被设置于朝向所述第二壳体12散出热量的方向。也就是说,所述发光灯21工作中产生的热量会直接地被所述散热器22导向所述第二外壳12的方向。具体地,所述发光灯21被连接至所述电流控制40而向所述第一外壳11外部进行出光照射。所述发光灯21所产生的热量自所述发光灯21散出。所述散热器22将大部分的热量引导至所述第二外壳12的所述散热部122,热量最终通过所述散热部122散失。值得一提的是,通过所述第一外壳11的所述第一边缘110和所述第二外壳12的所述第二边缘120的所述侧孔130,部分的热量向所述壳体10外部流失。也就是说,无论所述发光灯12出光角度的被调整任何所述预定角度,所述散热器22可以均匀地将热量进行散热导出。
所述灯体200的所述散热器22与所述壳体10的通孔之间具有至少一散热通道500。单独的所述灯体200的所述散热通道500自所述发光灯21至所述散热器22,所述散热器22将所述发光灯21所产生的热量通过所述第二外壳12的所述散热部122和/或所述侧孔130散至所述壳体10的外部。
如图8所示,以相邻的所述瓣式灯21A、相邻的所述瓣式灯21A和所述芯式灯21B作为举例对所述散热通道500进行具体的说明。相邻的所述瓣式灯21A所产生的热量自所述发光灯21向所述第一外壳11的所述第一边缘110和所述第二外壳12的所述第二边缘120的所述侧孔130进行发散,通过所述侧孔130最终流散至所述壳体10外部。也就是说,相邻的所述发光灯21相向地将热量散出,并径向地离开所述壳体10。相邻的所述瓣式灯21A所产生的热量自所述发光灯21向所述第二外壳12的所述散热部122散失,由所述散热部122将热量最终导出所述壳体10。优选地,所述第一外壳11具有若干通孔,分别地对应于所述第二外壳12的所述散热部122,使得所述发光灯21的热量轴向地离开所述壳体10。更优选地,所述第一外壳11的部分光窗112为对应于所述散热部122的开口。 更多地,热气一般性地向所述照明光源器材的背后散开,那么相邻的所述发光灯21相对而发出的热量经由所述散热部122而被导离所述壳体10。
所述散热通道500将所述发光灯21产生的热量径向地和/或轴向地导出所述壳体10。所述发光灯21产生的热量为发散式的扩散离开,不会在所述壳体10内累积,也不会对所述发光灯21的寿命产生不良影响。所述散热器22配合所述发光灯21的散热方向,更加有效地将热量通过所述散热通道500导出所述壳体10。也就是说,所述灯体200的散热以半球角度全方向地进行散出,减少热量累积对电子器件的不良影响,保证所述照明光源器材的工作环境良好,提高工作可靠性。
如图9至图11所示,所述可调支撑架30包括一架体31、一锁角组件32以及一操控部33,所述架体31被所述锁角组件32以所述预定角度固定在所述壳体10,所述操控部33将所述锁角组件32的状态在一锁定状态和一解锁状态之间切换。所述架体31被设置在应用场所,而所述架体31被轴接于所述壳体10,通过所述壳体10调整与所述架体31之间的角度,使得被相对安装在所述壳体10内的所述灯组20的照射方向的角度得到调整。
当所述锁角组件32受所述操控部33控制而处于所述解锁状态,所述架体31能够相对于所述壳体10进行旋转,从而角度得到调整。当所述锁角组件32受所述操控部33控制而处于所述锁定状态,所述架体31与所述壳体10之间角度被锁定,所述灯组20的照射方向也被固定。也就是说,在所述解锁状态下调整角度之后,所述操控部33将所述架体31与所述壳体10之间的相对位置固定,从而所述照明光源器材保持照射角度而工作。优选地,所述操控部33在所述锁角组件32的所述解锁状态与所述锁定状态分别具有不同的位置。所述锁角组件32的所述解锁状态与所述锁定可以通过所述操控部33的表现而明显地被识别。因此,所述可调支撑架30的锁定和解锁状态相互明显的区分,防止对所述可调支撑架30状态的误认,避免潜在的操作安全风险。
所述锁角组件32被可拆卸地固定在所述架体31于所述壳体10之间。所述壳体10通过所述锁角组件32与所述架体31可无级地调整角度,适于根据要求将所述灯组20朝向所需要的角度进行照射。也就是说,所述锁角组件32能够将所述架体31与所述壳体10锁定在任意的角度进行工作。而所述锁角组件32也可以被更新而得到高可靠性地对所述壳体10和所述灯组20的角度固定。
需要注意的是,这里的无级的调整值得是角度可以连续地变化,调整的角度并不是固定的特定值。优选地,所述预定角度可以在0至360之间随意地取值。
具体地,所述架体31包括一主体312,所述主体312具有两个端部311。在本优选实施例中,所述主体312相对所述壳体10的外形而被设置为半弧形。所述壳体10藉由所述锁角组件32相对所述主体312进行角度调整,即所述壳体10被轴接于所述端部311。换句话说,两个端部311连线而形成所述壳体10的旋转轴,旋转轴位于所述壳体10的侧部。
可以理解的是,在本发明的优选示例中,两个所述端部311的结构相同,并且两个所述端部311分别与所述主体312和所述锁角组件32的连接方式相同,因此,可以以所述主体312被设置于所述端部311的一侧为例,来说明所述端部311和所述主体312以及所述锁角组件32的关系。
如图9和图10所示,所述锁角组件32包括一固定轴321、一夹轮322以及一压锁323,其中所述固定轴321被固定于所述壳体10的侧部,其中所述夹轮322和所述压锁323相互可旋转地设置在所述固定轴321。所述夹轮322和所述压锁323相互位置可被锁定或解锁,所述压锁323围绕所述夹轮322旋转,若所述压锁323在转动中保持在所述夹轮322,即所述压锁323与所述夹轮322之间的角度被保持,所述预定角度被锁定。所述操控部33控制所述压锁323锁定保持相互夹住的关系,使得所述锁角组件32在所述锁定状态与所述解锁状态之间切换。
本优选实施例中,所述夹轮322被固定在所述固定轴321,所述压锁323被设置在所述架体31的所述端部311,使得所述架体31相对所述固定轴321可旋转,所述架体31相对所述夹轮322可旋转。所述架体31随着所述压锁323围绕所述夹轮322,使得所述架体31围绕所述夹轮322,进而所述架体31与所述固定轴321之间具有任意可设置的角度。所述压锁323夹住所述夹轮322时,所述压锁323与所述夹轮322的相对位置被确定,进而所述架体31相对所述夹轮322的角度被确定,那么所述锁角组件32将所述架体31的角度固定,即处于所述锁定状态。
在本优选实施例中,所述操控部33为可旋转的把手,通过旋转而缩紧所述323与所述夹轮322的相对位置。所述压锁323沿着所述夹轮322的边缘被可压紧地设置。优选地,所述压锁323的两端被压紧时,所述压锁323被锁定而不能 围绕所述夹轮322边缘而旋转,即角度被固定。所述操控部33的旋转所至位置可以变现出所述压锁323是否处于角度固定,也就是说所述操控部33可以得到所述锁角组件32是否处于所述锁定状态。
优选地,所述夹轮322被一体地固定在所述固定轴321。所述压锁323通过所述操控部33被可变形地设置于所述架体31的端部311,如图9所示。所述压锁323可以被拆卸并更换。更优选地,通过拆卸所述操作部33于所述架体31的端部311,所述压锁323可以被更换。
另外的,在其他优选实施例中,所述压锁323固定于所述固定轴321,所述夹轮322设置于所述架体31的端部311,所述压锁323相对所述夹轮322的角度可被调整。所述夹轮322优选地为环形。也就是说,所述压锁323通过固定在所述夹轮322的内环边缘,固定所述压锁323相对于所述夹轮322的圆心角度。所述架体31的所述端部311被固定在所述夹轮322的外环边缘,进而当所述压锁323确定与所述夹轮322的角度,所述架体31与所述固定轴321的角度被固定。
需要说明的是,所述压锁323和所述夹轮322无论采用哪种相互旋转的形式,所述架体31均围绕所述固定轴321可锁定地转动,进而所述可调支撑架30与所述壳体10之间的所述预定角度被可锁定地调整。也就是说,所述压锁323被固定在所述夹轮322的外边缘,与所述夹轮322的旋转使得内边缘被所述压锁323固定都能够将固定在所述压锁323的所述架体31的所述端部311以所述固定轴321为轴旋转,即相对设置有所述固定轴321的所述壳体10进行旋转。
另外,在本优选实施例中所述压锁323被所述操控部33以压夹的方式固定与所述夹轮322的相对角度。在另外可实现的方式中,所述夹轮322被所述操控部33控制而压夹所述压锁323,进而实现所述夹轮322和所述压锁323相对位置的固定。所述操控部33也类似地对所述夹轮322和所述压锁323之间的压夹关系进行锁紧。以所述夹轮322和所述压锁323之间的压夹方式而进行固定,不仅角度上实现无级的进行调整,而且固定在任意需要的位置。所述壳体10与所述可调支撑架30之间的所述预定角度可锁定在任意需要的数值。通过固定或者挂起所述可调支撑架30,所述壳体10能够被调整进而使得所述灯组20朝向需求方向进行照射。
更多地,所述架体31的所述端部311与所述主体312之间的固定连接方式 如图11所示。在本优选实施例中,所述架体31的所述端部311与所述主体312之间为可拆卸的。在另外可行的方式中,所述架体31的所述端部311与所述主体312为一体成型的,例如通过锻造或者塑造而一体的构成。
所述端部311具有至少一定位孔3110,相对地所述主体312具有至少一安装孔3120。所述定位孔3110与所述安装孔3120为对应地相贯通地设置。当所述端部311套接于所述主体312时,所述定位孔3110和所述安装孔3120适于被插入连接杆而被固定相对位置。优选地通过连接杆,例如螺杆或螺钉等,将所述定位孔3110和所述安装孔3120由外向内定位并将所述端部311套接地固定在所述主体312。
所述端部311被套接于所述主体312,通过若干连接杆固定所述端部311于所述主体312。优选地,所述架体31进一步地包括两个内塞313,两个所述内塞313分别地被定义为第一内塞3131和第二内塞3132。所述内塞313被放置于所述主体312内部,所述第一内塞3131和所述第二内塞3132具有相互向外的趋势,使得套接于所述主体312的所述端部311更紧密地套接于所述主体312。
更具体地,所述第一内塞3131和所述第二内塞3132被分别地连接杆固定。以所述第一内塞3131为例,连接杆自所述端部311的所述定位孔3110插入所述主体312的所述安装孔3120,最终被固定在所述第一内塞3131,进而所述端部311与所述主体312通过所述第一内塞3131被固定,通过所述定位孔3110和所述安装孔3120被定位。所述第二内塞3132也类似地固定所述主体312和所述端部311。
值得一提的是,所述第一内塞3131和所述第二内塞3132被分别地放置于所述主体312的相对两侧。通过所述第一内塞3131和所述第二内塞3132被连接杆固定后具有相对离开的趋势,使得所述主体312与所述端部311更紧密地被贴合,套接地更加紧密。也就是说,所述第一内塞3131和所述第二内塞3132膨胀式地固定所述端部311与所述主体312。所述端部311与所述主体312紧密地连接,使得所述架体31具有高支撑力度和可靠性。
本领域的技术人员应理解,上述描述及附图中所示的本发明的实施例只作为举例而并不限制本发明。本发明的目的已经完整并有效地实现。本发明的功能及结构原理已在实施例中展示和说明,在没有背离所述原理下,本发明的实施方式可以有任何变形或修改。

Claims (45)

  1. 一照明光源器材,其特征在于,包括:
    一壳体,其中所述壳体的不同表面具有相互可贯通的通孔;和
    一灯组,其中所述灯组可拆卸地被固定在所述壳体内部,其中所述灯组和所述壳体的通孔之间形成至少两散热通道。
  2. 根据权利要求1所述的照明光源器材,其中所述灯组包括至少两个所述灯体,其中所述灯体被分别地可拆卸地安装于所述壳体。
  3. 根据权利要求2所述的照明光源器材,其中两个所述散热通道之间自所述灯体而散气方向不同。
  4. 根据权利要求2所述的照明光源器材,其中所述灯组包括至少一光学部件,其中所述光学部件对应所述灯体位置而可拆卸地安装于所述壳体。
  5. 根据权利要求2所述的照明光源器材,其中所述壳体包括一第一外壳和一第二外壳,其中所述第一外壳的边缘和所述第二外壳的边缘相互覆盖而在所述第一外壳与所述第二外壳之间形成一容纳所述灯组的散热腔。
  6. 根据权利要求5所述的照明光源器材,其中所述第一外壳和所述第二外壳采用边缘相互对接的方式而合并连接所述第一外壳和所述第二外壳,其中所述第一外壳的缘和所述第二外壳的边缘相互可重叠的设置,以通过若干的连接件对所述第一外壳的边缘和所述第二外壳的边缘重叠的部分固定。
  7. 根据权利要求5所述的照明光源器材,其中所述第一外壳的边缘和所述第二外壳的边缘分别地具有若干侧孔。
  8. 根据权利要求5所述的照明光源器材,其中所述第一外壳包括一固定部和至少一光窗,其中所述光窗与所述固定部相互对应的设置,其中所述灯体可拆卸地被安装于所述固定部,其中所述灯体被安装至所述固定部时,所述光窗为所述灯体提供出光面。
  9. 根据权利要求8所述的照明光源器材,其中所述固定部的外形与所述灯体相互对应,以供所述灯体与所述固定部相互的契合。
  10. 根据权利要求8所述的照明光源器材,其中所述固定部一体地成型于所述第一外壳。
  11. 根据权利要求10所述的照明光源器材,其中所述固定部为卡槽。
  12. 根据权利要求8所述的照明光源器材,其中所述光窗为形成于所述固定部的开口。
  13. 根据权利要求8所述的照明光源器材,其中所述第二外壳包括至少一支撑筋和至少一散热部,其中所述散热部与所述支撑筋相互相邻地设置。
  14. 根据权利要求13所述的照明光源器材,其中所述支撑筋与所述第一外壳的所述固定部相互对应,使得容纳所述灯组的容纳腔被镂空性地形成。
  15. 根据权利要求14所述的照明光源器材,其中所述支撑筋径向地延伸,进而所述第二外壳呈辐射状地覆盖在所述第一外壳的一侧。
  16. 根据权利要求13所述的照明光源器材,其中所述灯体包括一发光灯和一散热器,其中所述散热器的外形配合所述发光灯而设置,其中所述发光灯工作而产生的热量被所述散热器引导至所述壳体的外部。
  17. 根据权利要求16所述的照明光源器材,其中所述发光灯工作而产生的热量被所述散热器引导至所述第二外壳的所述散热部。
  18. 根据权利要求16所述的照明光源器材,其中所述发光灯工作而产生的热量被所述散热器引导至所述第一外壳的边缘和所述第二外壳的边缘的所述侧孔。
  19. 根据权利要求2至18中任一的所述照明光源器材,其中所述照明光源器材包括一电流控制器,其中所述电流控制器外接于所述灯组,为所述灯组供能。
  20. 根据权利要求2至18中任一的所述照明光源器材,其中所述照明光源器材包括一可调支撑架,其中所述壳体被轴接于所述可调支撑架,使得所述壳体相对于所述可调支撑架旋转而改变所述灯组的照射角度。
  21. 一照明光源器材,其特征在于,包括:
    一壳体,用于容纳一灯组进行照明;和
    一可调支撑架,其中所述壳体被轴接于所述可调支撑架,以供所述壳体相对于所述可调支撑架被锁定在一预定角度。
  22. 根据权利要求21所述的照明光源器材,其中所述可调支撑架具有一锁定状态和一解锁状态,其中处于所述锁定状态下,所述可调支撑架与所述壳体之间的所述预定角度被固定,其中处于所述解锁状态下,所述可调支撑架与所述壳体之间的所述预定角度可被调整。
  23. 根据权利要求22所述的照明光源器材,其中所述可调支撑架包括一架体、一锁角组件以及一操控部,其中所述架体被所述锁角组件以所述预定角度地 相对固定在所述壳体,其中所述操控部将所述锁角组件的状态在所述锁定状态和所述解锁状态之间切换,其中所述架体被轴接于所述壳体,通过所述壳体调整与所述架体之间的所述预定角度,使得被安装在所述壳体内的所述灯组的照射方向的角度得到调整。
  24. 根据权利要求23所述的照明光源器材,其中当所述锁角组件受所述操控部控制而处于所述解锁状态,所述架体能够相对于所述壳体进行旋转,其中当所述锁角组件受所述操控部控制而处于所述锁定状态,所述架体与所述壳体之间角度被锁定,使得所述灯组的照射方向被固定。
  25. 根据权利要求23所述的照明光源器材,其中所述锁角组件被可拆卸地固定在所述架体于所述壳体之间。
  26. 根据权利要求24所述的照明光源器材,其中处于所述解锁状态,所述壳体通过所述锁角组件与所述架体可无级地调整角度。
  27. 根据权利要求23所述的照明光源器材,其中所述架体包括一主体,所述主体具有两个端部,其中所述壳体被轴接于所述端部,其中所述主体的外形相对所述壳体的外形而被设置。
  28. 根据权利要求27所述的照明光源器材,其中所述主体相对所述壳体的外形而被设置为半弧形。
  29. 根据权利要求27所述的照明光源器材,其中所述架体的所述端部与所述主体为一体成型的。
  30. 根据权利要求27所述的照明光源器材,其中所述架体的所述端部可拆卸地连接所述主体。
  31. 根据权利要求30所述的照明光源器材,其中所述端部被套接于所述主体,通过若干连接杆固定所述端部于所述主体。
  32. 根据权利要求31所述的照明光源器材,其中所述端部具有至少一定位孔,其中所述主体相对地具有至少一安装孔,其中当所述端部套接于所述主体时,所述定位孔和所述安装孔适于被插入连接杆而被固定相对位置。
  33. 根据权利要求32所述的照明光源器材,其中所述架体进一步地包括两个内塞,所述内塞被放置于所述主体内部,其中两个所述内塞具有相互向外离开的趋势,使得套接于所述主体的所述端部受到所述内塞外力紧密地套接于所述主体。
  34. 根据权利要求27所述的照明光源器材,其中所述锁角组件包括一固定轴、一夹轮以及一压锁,其中所述固定轴被固定于所述壳体的侧部,其中所述夹轮和所述压锁相互可旋转地设置在所述固定轴和所述壳体之间,其中所述夹轮和所述压锁相互位置可被锁定,使得所述固定轴和所述壳体之间的所述预定角度可被锁定。
  35. 根据权利要求34所述的照明光源器材,其中所述操控部控制所述压锁与所述夹轮的相对位置保持固定,使得所述锁角组件在所述锁定状态与所述解锁状态之间切换。
  36. 根据权利要求35所述的照明光源器材,其中所述压锁围绕所述夹轮旋转,所述压锁被设置在所述架体的所述端部,其中所述架体随着所述压锁围绕所述夹轮旋转,使得所述架体围绕所述夹轮旋转,进而所述架体与所述固定轴之间的所述预定角度被调整。
  37. 根据权利要求36所述的照明光源器材,其中所述压锁沿着所述夹轮的边缘被可相互压紧地设置。
  38. 根据权利要求36所述的照明光源器材,其中所述夹轮被一体地固定在所述固定轴。
  39. 根据权利要求36所述的照明光源器材,其中所述压锁被可拆卸地设置于所述架体的端部。
  40. 根据权利要求35所述的照明光源器材,其中所述压锁固定于所述固定轴,所述夹轮设置于所述架体的端部,其中所述压锁相对所述夹轮的角度可被调整。
  41. 根据权利要求40所述的照明光源器材,其中所述夹轮为环形,其中所述压锁通过固定在所述夹轮的内环边缘而固定所述压锁相对于所述夹轮的圆心角度,其中所述架体的所述端部被固定在所述夹轮的外环边缘,使得所述架体围绕所述压锁旋转,进而所述架体与所述固定轴之间的所述预定角度被调整。
  42. 根据权利要求40所述的照明光源器材,其中所述压锁沿着所述夹轮的内环边缘被可相互压紧地设置。
  43. 根据权利要求40所述的照明光源器材,其中所述夹轮被一体地固定在所述架体的端部。
  44. 根据权利要求40所述的照明光源器材,其中所述压锁被可拆卸地设置 于所述固定轴。
  45. 一光源配置方法,其特征在于,包括步骤:
    可拆卸地组装至少一灯体于一壳体,以供引导所述灯体工作产生的热量以一定方向地离开所述壳体;和
    锁定所述壳体相对一可调支撑架的一预定角度,将所述灯体的照射方向固定。
PCT/CN2018/110221 2018-10-15 2018-10-15 照明光源器材及其光源配置方法 WO2020077488A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2018/110221 WO2020077488A1 (zh) 2018-10-15 2018-10-15 照明光源器材及其光源配置方法
CN201880001627.5A CN109563973A (zh) 2018-10-15 2018-10-15 照明光源器材及其光源配置方法

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/110221 WO2020077488A1 (zh) 2018-10-15 2018-10-15 照明光源器材及其光源配置方法

Publications (1)

Publication Number Publication Date
WO2020077488A1 true WO2020077488A1 (zh) 2020-04-23

Family

ID=65872665

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/110221 WO2020077488A1 (zh) 2018-10-15 2018-10-15 照明光源器材及其光源配置方法

Country Status (2)

Country Link
CN (1) CN109563973A (zh)
WO (1) WO2020077488A1 (zh)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202791656U (zh) * 2012-09-11 2013-03-13 新视野光电(郑州)有限公司 Led投光灯
CN103836576A (zh) * 2012-11-27 2014-06-04 深圳市海洋王照明工程有限公司 防震灯具支架及使用该防震灯具支架的投光灯
CN105351812A (zh) * 2011-02-11 2016-02-24 Lg伊诺特有限公司 光源模块
CN205807095U (zh) * 2016-06-20 2016-12-14 河北宏图光电科技有限公司 一种具有翻转调节机构的led路灯
CN206222247U (zh) * 2016-12-08 2017-06-06 飞科达理智能科技股份有限公司 一种led路灯灯杆调节装置

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201221726Y (zh) * 2008-06-19 2009-04-15 吴狄献 具有应急照明功能的水平分离式节能灯的结构
CN202647445U (zh) * 2012-06-21 2013-01-02 新视野光电(郑州)有限公司 Led厂棚灯
CN202927529U (zh) * 2012-09-28 2013-05-08 3M新设资产公司 光源模块及包含光源模块的表面照明设备
CN202972797U (zh) * 2012-12-03 2013-06-05 新视野光电(郑州)有限公司 大功率led厂房灯
CN203823683U (zh) * 2014-05-05 2014-09-10 华正才 灯具锁止结构
CN104456324B (zh) * 2014-12-15 2017-04-12 捷胜海洋装备股份有限公司 一种诱鱼探照灯
CN205447505U (zh) * 2016-01-07 2016-08-10 丁增科 一种新型模组化led吸顶灯
CN205877942U (zh) * 2016-07-29 2017-01-11 深圳创维照明电器有限公司 油站灯
CN206347450U (zh) * 2016-09-01 2017-07-21 青岛利恩迪电子科技发展有限公司 一种自洁式对流散热可调节仰角的路灯
CN207893535U (zh) * 2018-01-17 2018-09-21 江西众光照明科技有限公司 一种带卡扣面盖的led投光灯
CN209340960U (zh) * 2018-10-15 2019-09-03 谱明科技(深圳)有限公司 照明光源器材

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105351812A (zh) * 2011-02-11 2016-02-24 Lg伊诺特有限公司 光源模块
CN202791656U (zh) * 2012-09-11 2013-03-13 新视野光电(郑州)有限公司 Led投光灯
CN103836576A (zh) * 2012-11-27 2014-06-04 深圳市海洋王照明工程有限公司 防震灯具支架及使用该防震灯具支架的投光灯
CN205807095U (zh) * 2016-06-20 2016-12-14 河北宏图光电科技有限公司 一种具有翻转调节机构的led路灯
CN206222247U (zh) * 2016-12-08 2017-06-06 飞科达理智能科技股份有限公司 一种led路灯灯杆调节装置

Also Published As

Publication number Publication date
CN109563973A (zh) 2019-04-02

Similar Documents

Publication Publication Date Title
US9995462B2 (en) Circular LED optic and heat sink module
US10066797B1 (en) Convenient-to-install LED downlight
US20110169412A1 (en) Reflector for a lighting assembly
TWM483366U (zh) Led燈具
KR101726369B1 (ko) 용이한 설치 및 고정이 가능한 엘이디 경관 조명장치
KR101575218B1 (ko) 트랙 조명장치 및 이를 이용한 디밍 제어 시스템
US20130009546A1 (en) Light emitting diode (led) lighting fixture
KR100973331B1 (ko) 조명용 등기구 장치
KR100949122B1 (ko) 엘이디 투광등
US10969669B2 (en) Light assembly for a projector
KR100945420B1 (ko) 엘이디 투광등 제조방법
JP7014360B2 (ja) 放熱機能が強化されたled照明ランプ
WO2020077488A1 (zh) 照明光源器材及其光源配置方法
EP2889534A1 (en) Lamp reflector system with retro reflector
KR20170097500A (ko) 조명등 각도조절장치
CN209340960U (zh) 照明光源器材
US7682046B2 (en) Light fixture with lamp adjustment assembly
KR101060105B1 (ko) 환류팬 장착 조명장치
JP3231610U (ja) 焦点可変・色温度可変照明器具
US9814116B2 (en) LED lamp with integral control receptacle
CN212510871U (zh) 一种led防爆灯
CN214890697U (zh) 一种自动调节焦距的聚光灯
CN114087562A (zh) 一种酒店大堂用易散热吸顶灯
CN219588839U (zh) 一种工作灯及工作灯组
CN218494939U (zh) 灯具散热装置及灯具

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18937414

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 18937414

Country of ref document: EP

Kind code of ref document: A1