1. Field of the Invention
The present invention relates to a projector light, and more particularly, to a rotary projector light.
2. Description of the Related Art
Lighting plays a critical role on stage performance because of the creation of an animated and entertaining atmosphere. To provide diversified stage effect, stage equipment manufacturers have already designed a type of stage projector light that generates dynamic lighting effects. Such stage projector lights usually have a motor and a projector lamp. The projector lamp has a light source module and a light exit lens mounted inside a lamp enclosure. Given the variation of lights emitted by the light source module and refracted by the light exit lens, and the rotary and oscillating motion of the projector lamp driven by the motor, the projector lamp can create dynamic cloud lighting effects.
However, despite the foregoing dynamic cloud lighting effects, the conventional projector light has limitations when projecting light from different angles, onto a large area, and/or in a large occasion. Also, due to limited options for the color effect generated by the conventional projector light, the generated cloud lighting effects have not achieved the lighting effects expected by users.
Embodiments of the present invention provide a rotary projector light to provide light of different colors projected at multiple angles, spread in a wide range of ambient environments, and to generate a diversified and animated light effect on the stage.
According to an embodiment, the rotary projector light has a lamp case, a support stand, a power supply, a motor, a light-emitting diode (LED) device, a watertight lens assembly and a beam-splitting lens cover.
According to an embodiment, the lamp case is hollow and has an open front end.
According to an embodiment, the support stand is mounted on a bottom of the lamp case.
According to an embodiment, the power supply is mounted inside the lamp case, and is connected to an external power cable mounted through the lamp case.
According to an embodiment, the motor is mounted inside the lamp case, is electrically connected to the power supply, and has a spindle and a positioning seat.
According to an embodiment, the spindle protrudes beyond the open front end.
According to an embodiment, the positioning seat is mounted around the spindle.
According to an embodiment, the LED device has multiple LED elements emitting light of different colors, is mounted on the positioning seat of the motor, and is electrically connected to the power supply.
According to an embodiment, the watertight lens assembly is mounted on the open front end of the lamp case and encloses the LED device in the watertight lens assembly.
According to an embodiment, the beam-splitting lens cover has a receiving space with a rear open end, encloses the watertight lens assembly in the beam-splitting lens cover, and further has multiple convex lenses with multiple refraction angles formed on an inner surface of the beam-splitting lens cover.
To prepare the operation of the foregoing rotary projector light, the support stand can be securely mounted in the ground or other fixture. When the LED elements emit light and the motor drives the LED device inside the beam-splitting lens cover, causing it to rotate, light with different colors emitted from the LED elements passes through the lens tube of the watertight lens assembly, is projected onto the beam-splitting lens cover, and is refracted by the convex lenses of the beam-splitting lens cover to scatter the light at multiple projection angles. This spreads the light in a wide range in the ambient environment for a diversified, animated, and colorful lighting effect. The beam-splitting lens cover has multiple convex lenses with multiple refraction angles.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The lamp case 1 is hollow with an open front end. In the present embodiment, the lamp case 1 has a peripheral wall 10, a mounting chamber 11 and a rear cover 12. The mounting chamber 11 is defined inside the lamp case 1 and surrounded by the peripheral wall 10, and the mounting chamber 11 communicates with the open front end. The rear cover 12 is mounted on a rear end of the peripheral wall 10 of the lamp case 1.
The support stand 2 is mounted on a bottom of the lamp case 1. In the present embodiment, the support stand 2 has a U-shaped bracket 20 and an insertion post 21. Two parallel bars of the U-shaped bracket 20 are mounted on two lateral portions of the peripheral wall 10 with a screw set to support the lamp case 1 so that the lamp case 1 is pivotable in a range of less than 360 degrees with respect to the U-shaped bracket 20. The insertion post 21 is tapered in a downward direction. A top end of the insertion post 21 is rotatably mounted on a central portion of a bottom of the U-shaped bracket 20 for the lamp case 1 to be horizontally rotated on the insertion post 21.
With reference to
With reference to
The LED device 5 has multiple LED elements 51 emitting light of different colors. The LED elements 51 are respectively mounted on the positioning faces 411 of the positioning seat 41 mounted around the spindle 40 of the motor 4, and are electrically connected to the power supply 3 in a direct fashion or an indirect fashion through an electrical connection device 8. In the present embodiment, the LED device 5 has three LED elements 51 emitting light of three different colors, such as the three primary colors, red, green and blue. The colors of light emitted from the LED elements 51 can vary according to the operation demand of the rotary projector light.
With reference to
In the present embodiment, the resilient conductive elements 84A, 84B are conductive torque springs. The resilient conductive elements 84A, 84B are respectively mounted around different two of the pillars 831. Each resilient conductive element 84A, 84B has a conductive contact end 841A, 841B. The conductive contact ends 841A, 841B of the resilient conductive elements 84A, 84B electrically contact the corresponding conductive rings 82A, 82B.
With reference to
The beam-splitting lens cover 7 is made of a transparent material, and has a receiving space with a rear open end, and is mounted on the front side of the lens plate 60 with the rear open end facing the lens plate 60, so that the lens tube 61 can be inserted into the beam-splitting lens cover 7. The beam-splitting lens cover 7 further has multiple convex lenses 70 with multiple refraction angles formed on an inner surface of the beam-splitting lens cover 7. In the present embodiment, the beam-splitting lens cover 7 takes a hollow spherical form and is correspondingly combined by a front beam-splitting lens cover 71 and a rear beam-splitting lens cover 72.
With reference to
The rotary projector light can further be independently or combinationally applied for many extension indoor or outdoor products, such as: lamp enclosures, textile costumes, inflatable costumes, inflatable character modeling objects, or rear projection enclosures. In terms of lamp enclosure, the rotary projector light can be mounted inside of an enclosure with translucency or semi-translucency, yielding outwardly projected patterns or rear-projected patterns upon the enclosure. In terms of textile or inflatable costumes, the rotary projector light can be mounted inside of or tangential to the costumes of different shapes. In terms of character modeling objects, a rotary projector light or multiple rotary projector lights can be mounted in character modeling objects that have different shapes, such as: realistic, cartoon, or abstract characters or other shaped renditions of a single or multiple characters. In terms of the rear projected patterns upon a translucent or semi-translucent enclosure, at least one rotary projector light that is mounted inside of the enclosure can yield projected patterns and/or rear-projected patterns upon the enclosure.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only. Changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.