An integrated light renderer
Patent Information
- Application Number
- CN202522194225.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-10-16
AI Technical Summary
[0003]为了提升建筑物室内、室外的灯光渲染效果,目前多会在建筑物外部以及内部固定设置一些灯光渲染灯具,利用灯光渲染灯具所产生的光线提升建筑物或者适用场景中的灯光效果,但是目前出现的灯光渲染灯具都是固定装配在特定地点的,在一些临时搭建的展台、户外场景的适用领域中,传统的灯光渲染灯具往往不能适用
[0007]The beneficial effects of this utility model are as follows: When this utility model is working, the integrated light renderer is first placed on the ground. Then, the flip-out reflective cover is flipped open to a predetermined angle. At this time, a light outlet is formed between the flip-out reflective cover and the light source cavity. The rechargeable battery provides power to one or more LED light panels. Part of the light generated by the LED light panel is directly emitted through the light outlet, and the other part is reflected by the flip-out reflective cover and emitted to achieve the function of providing rendering light. This utility model has the characteristics of being easy to place and easy to transport and carry.
Smart Images

Figure CN224706854U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a light renderer, and more particularly to an integrated light renderer including an integrated base box and a flip-up reflective cover, wherein the flip-up reflective cover is pivotally connected to the top of the integrated base box. Background Technology
[0002] Lighting rendering is a lighting technique centered on lighting setups; it can also be called fill light. A spotlight illuminates a fan-shaped reflector to create a uniform, non-direct, soft light source. This fills in shadow areas and areas missed by the main light, harmonizes the contrast between light and dark areas, and creates depth and layering. Furthermore, this widespread and uniform lighting characteristic provides a base color for the scene, defining its overall tone.
[0003] To enhance the lighting effects of buildings both inside and outside, lighting fixtures are often fixedly installed on the exterior and interior of buildings. The light produced by these fixtures is used to improve the lighting effects of buildings or applicable scenes. However, most lighting fixtures are currently fixed in specific locations, and they are often unsuitable for temporary exhibition booths or outdoor scenes. Utility Model Content
[0004] The technical solution adopted by this utility model is: an integrated light renderer, which includes an integrated base box and a flip reflective cover, wherein the flip reflective cover is pivotally connected to the top of the integrated base box.
[0005] The integrated base box includes a base box, a rechargeable battery, and several LED light panels. The base box has an inner cavity in which the rechargeable battery is disposed. The base box includes an upper top cover, a pivot cover plate, and two side upright plates. The pivot cover plate is fixedly connected to the upper top cover. The flip-up reflective cover is pivotally connected to the top of the pivot cover plate via a hinge. The upper top cover, the pivot cover plate, and the two side upright plates form a light source cavity. The light source cavity is located on the top of the base box, corresponding to the flip-up reflective cover. Several LED light panels are disposed in the light source cavity. A reflective layer is provided on the bottom surface of the flip-up reflective cover.
[0006] The top cover is provided with several tilted light panel fixing plates. Several LED light panels are respectively set on the tilted light panel fixing plates. Each LED light panel is connected to a connecting wire. Corresponding to the connecting wire, a terminal plate is provided on the rechargeable battery. Several power terminals are provided on the terminal plate, and the connecting wire is correspondingly plugged into the power terminals.
[0007] The beneficial effects of this utility model are as follows: When this utility model is working, the integrated light renderer is first placed on the ground. Then, the flip-out reflective cover is flipped open to a predetermined angle. At this time, a light outlet is formed between the flip-out reflective cover and the light source cavity. The rechargeable battery provides power to one or more LED light panels. Part of the light generated by the LED light panel is directly emitted through the light outlet, and the other part is reflected by the flip-out reflective cover and emitted to achieve the function of providing rendering light. This utility model has the characteristics of being easy to place and easy to transport and carry. Attached Figure Description
[0008] Figure 1 This is a top view of the present invention.
[0009] Figure 2 This is a side view of the present invention.
[0010] Figure 3 This is a schematic diagram showing the opening of the flip-up reflective cover of this utility model.
[0011] Figure 4 This is a schematic diagram of the structure of this utility model.
[0012] Figure 5 This is a schematic diagram of the rechargeable battery of this utility model.
[0013] Figure 6 This is a schematic diagram of the base box of this utility model. Detailed Implementation
[0014] like Figures 1 to 6 As shown, an integrated light renderer includes an integrated base box 100 and a flip reflector 200, wherein the flip reflector 200 is pivotally connected to the top of the integrated base box 100.
[0015] The integrated base box 100 includes a base box 300, a rechargeable battery 400, and several LED light panels 500. The base box 300 has an inner cavity 310 in which the rechargeable battery 400 is disposed. The base box 300 includes an upper cover 320, a pivot cover plate 330, and two side upright plates 340. The pivot cover plate 330 is fixedly connected to the upper cover 320. The flip-up reflective cover 200 is pivotally connected to the top of the pivot cover plate 330 via a hinge 210. The upper cover 320, the pivot cover plate 330, and the two side upright plates 340 surround and form a light source cavity 350. The light source cavity 350 is located on the top of the base box 300, corresponding to the flip-up reflective cover 200. Several LED light panels 500 are disposed in the light source cavity 350. A reflective layer 220 is provided on the bottom surface of the flip-up reflective cover 200.
[0016] When this utility model is in operation, the integrated light renderer is first placed on the ground, and then the flip-up reflective cover 200 is flipped open to a predetermined angle. At this time, a light outlet A is formed between the flip-up reflective cover 200 and the light source cavity 350.
[0017] The rechargeable battery 400 provides power to one or more LED light panels 500. Part of the light generated by the LED light panel 500 is directly emitted through the light outlet A, and the other part is emitted after being reflected by the flip-up reflective cover 200, so as to provide rendering light. This utility model has the characteristics of being easy to place and easy to transport.
[0018] The top cover 320 is provided with several tilting light panel fixing plates 321, and several LED light panels 500 are respectively set on the several tilting light panel fixing plates 321. Each LED light panel 500 is connected to a connecting wire 510. Corresponding to the connecting wire 510, a terminal plate 410 is provided on the rechargeable battery 400, and several power terminals 411 are provided on the terminal plate 410. The connecting wire 510 is correspondingly inserted into the power terminals 411.
[0019] In practice, several of the tilted light panel fixing plates 321 are parallel to each other.
[0020] In a specific implementation, the rechargeable battery 400 includes a vertical portion 420 and a horizontal portion 430. The horizontal portion 430 is located at the end of the vertical portion 420 and below several inclined lamp plate fixing plates 321. The terminal plate 410 is correspondingly located at the top of the horizontal portion 430, and the inclined lamp plate fixing plates 321 are located at the top of the horizontal portion 430. The present invention designs the rechargeable battery 400 with a vertical portion 420 and a horizontal portion 430, which can effectively utilize the space in the base box 300 and increase the volume of the battery, thereby improving the battery's energy storage capacity.
[0021] In practice, the bottom of the pivot cover plate 330 is provided with a battery fixing post 331, which is inserted into the rechargeable battery 400 to fix the position of the rechargeable battery 400.
[0022] In practice, the front end plate 360 of the base box 300 has several top ribs 361 protruding on its inner side. These top ribs 361 press against the end of the rechargeable battery 400 to further fix the position of the rechargeable battery 400.
Claims
1. An integrated lighting renderer, characterized in that: It includes an integrated base box and a flip-up reflective cover, wherein the flip-up reflective cover is pivotally connected to the top of the integrated base box. The integrated base box includes a base box, a rechargeable battery, and several LED light panels. The base box has an inner cavity in which the rechargeable battery is housed. The base box includes a top cover, a pivot cover, and two side panels. The pivot cover is fixedly connected to the top cover. A flip-up reflective cover is pivotally connected to the top of the pivot cover via a hinge. The top cover, the pivot cover, and the two side panels form a light source cavity, which is located at the top of the base box corresponding to the flip-up reflective cover. Several LED light panels are disposed within the light source cavity. A reflective layer is provided on the lower surface of the flip-up reflective cover. The top cover is provided with several tilted light panel fixing plates. Several LED light panels are respectively set on the tilted light panel fixing plates. Each LED light panel is connected to a connecting wire. Corresponding to the connecting wire, a terminal plate is provided on the rechargeable battery. Several power terminals are provided on the terminal plate, and the connecting wire is correspondingly plugged into the power terminals.
2. The integrated lighting renderer as described in claim 1, characterized in that: Several of these tilted light panel fixing plates are parallel to each other.
3. An integrated lighting renderer as described in claim 1, characterized in that: The rechargeable battery includes a vertical portion and a horizontal portion, wherein the horizontal portion is disposed at the end of the vertical portion and is located below several inclined light panel fixing plates, and the terminal plate is disposed on the top of the horizontal portion corresponding to the several inclined light panel fixing plates.
4. An integrated lighting renderer as described in claim 1, characterized in that: The bottom of the pivot cover is provided with a battery fixing post, which is inserted into the rechargeable battery.
5. An integrated lighting renderer as described in claim 1 or 4, characterized in that: The front panel of the base box has several protruding top ribs on its inner side, and these top ribs press against the end of the rechargeable battery.