Heating device with movable heating piece for integrated ceiling
By setting up adjustment components in the integrated ceiling heating device to control the heating element towards the detection object, the inflexible heat transfer problem caused by the inactive heating element is solved, improving the user experience and reducing energy consumption.
Patent Information
- Application Number
- CN202422506517.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-16
AI Technical Summary
The heating parts of the existing integrated ceiling heating device are inactive, resulting in heat being only transmitted to specific areas, affecting the user experience and high energy consumption.
An adjustment component is provided between the body and the heating element, and the displacement sensor signal is received to control the heating element toward the detection object, and the heating element is driven to track and turn through the adjustment component to ensure that heat is conveyed to the detection object.
Ensure that the detection object is always in the heating area, improving user experience, and reducing energy consumption by narrowing the heating range.
Smart Images

Figure CN223204442U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of integrated ceilings, and specifically provides a heating device. Background Art
[0002] Existing integrated ceiling heaters consist of a main body fixed to a keel assembly and a heating element located at the bottom of the main body. Heat generated by the heating element is transferred downward to provide warmth to the user below the heater. Because the heating element is immobile, heat is only transferred to a specific area. If the user moves outside of this area, they lose access to the heat from the heating element, impacting the user experience. Utility Model Content
[0003] In order to address the deficiencies of the prior art, the utility model provides an integrated ceiling heating device with a movable heating element. An adjustment component is arranged between the main body and the heating element. The adjustment component receives a signal from a displacement sensor and controls the heating element toward a detection object, ensuring that the detection object is always located within the heating area formed by the operation of the heating element, ensuring that the temperature in the user's area is appropriate, and improving the user experience.
[0004] The present invention is realized in the following manner: a heating device for an integrated ceiling with a movable heating element, comprising a main body fixed to the integrated ceiling and a heating element suspended below the main body, wherein the bottom surface of the main body is provided with a displacement sensor and an adjustment component for driving the heating element to turn, wherein the displacement sensor senses the position of the detection object and drives the heating element to track the turning through the adjustment component, so that the heat generated by the heating element is transmitted to the detection object. An adjustment component is provided between the main body and the heating element, which receives a signal from the displacement sensor and controls the heating element to be directed toward the detection object. The heating element can transmit heat to the area where the detection object is located and form a heating area, thereby ensuring that the detection object is always located within the heating area, ensuring that the temperature in the area where the user is located is suitable, improving the user experience, and reducing energy consumption by narrowing the heating range.
[0005] Preferably, the adjustment assembly includes at least three adjustment rods that are telescopically connected between the main body and the heating element. The adjustment rods independently extend and retract and drive the heating element to adjust the direction. The three adjustment rods are set separately, and the adjustment rods are independently adjusted to achieve the distance between each area of the heating element and the main body, thereby making the direction of the heating element adjustable, ensuring that the heating element is always facing the area where the detection object is located and continuously delivering heat to this area. The heating element is rotatably mounted below the main body, and the rotation of the heating element includes radial rotation and circumferential rotation, so that the heating element can freely irradiate within a circular area centered on it.
[0006] Preferably, the fixed end of the adjusting rod is connected to the bottom surface of the body, and the movable end is equidistantly spaced along the periphery of the heating element. The ends of the adjusting rod are rotatably connected to the body and the heating element, respectively. This ensures that the adjusting rod is securely connected between the body and the heating element, ensuring that the distance between the areas where the adjusting rod is fixed to the body and the heating element is variable, and that the ends of the adjusting rod can rotate freely to offset the effects of changes in the orientation of the heating element, ensuring that each adjusting rod can be freely extended and retracted.
[0007] Preferably, the adjusting rod is provided with a motor for driving the movable end to extend and retract, and the heating element is suspended below the main body through the adjusting rod to form a movable space below the main body for the heating element to swing.
[0008] Preferably, the heating element is circular to reduce the space required for swinging. The heating element is in operation, so the space reserved for each circumferential area of the heating element is small. This not only prevents the heating element from colliding with the integrated ceiling during rotation, but also improves assembly convenience by reducing the space requirement. The heating element can also be rotated to expand the heat transfer range, thereby meeting the need for continuous use towards the detection object.
[0009] Preferably, the heating element is a heat radiant plate, comprising a radiant surface for generating heat and a fixed surface for mounting the adjustment rod. Driven by the adjustment assembly, the heating element is directed toward the area where the detection object is located via the radiant surface. The radiant plate has good orientation, ensuring that the heat generated is accurately transferred in a direction perpendicular to it, while also ensuring that the heating area meets the required usage, fully covering the detection object and ensuring a good user experience.
[0010] Preferably, the integrated ceiling includes a keel assembly and a decorative panel suspended below the keel assembly. The heating element is swingably disposed below the decorative panel and freely swings to increase the swing adjustment range of the heating element. The location of the heating element below the decorative panel not only provides space for the heating element to move, ensuring that the heating element can swing effectively without contacting the decorative panel, but also ensures that there is no obstruction between the heating element and the heating area, thereby ensuring efficient heat transfer.
[0011] Preferably, the main body is mounted above the keel assembly so that the main body is hidden by the decorative panel. The main body is supported by the keel assembly, which not only ensures connection reliability but also uses the decorative panel to hide the main body, thereby improving the aesthetics.
[0012] Preferably, the decorative panel is provided with a through hole, and the sensing portion of the displacement sensor is exposed on the bottom surface of the decorative panel through the through hole. The through hole is used to expose the sensing portion of the displacement sensor, thereby improving the accuracy of displacement detection of the detection object.
[0013] Preferably, a control board is provided within the body, which receives position signals from the displacement sensor and controls the heating element via the adjustment assembly to deliver heat toward the detection object. The control board is used to receive position signals from the displacement sensor and control the operation of the adjustment rod and the heating element to ensure that a heated area is formed in the area where the detection object is located.
[0014] The beneficial effects of the present invention are as follows: an adjustment component is provided between the main body and the heating element, the adjustment component receives a signal from the displacement sensor and controls the heating element to be directed toward the detection object, the heating element can transmit heat to the area where the detection object is located and form a heating area, which ensures that the detection object is always located in the heating area, ensures that the temperature in the area where the user is located is appropriate, improves the user experience, and reduces energy consumption by narrowing the heating range. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 A schematic diagram of the assembly structure of the heating device;
[0016] In the figure: 1. Main body, 2. Heating element, 3. Adjustment component, 4. Displacement sensor, 5. Adjustment rod, 6. Decorative panel, 7. Control panel. DETAILED DESCRIPTION
[0017] The essential features of the present invention will be further described below with reference to the accompanying drawings and specific implementation methods.
[0018] like Figure 1 The heating device for an integrated ceiling with a movable heating element shown is composed of a main body 1 fixed to the integrated ceiling and a heating element 2 suspended below the main body 1. The bottom surface of the main body 1 is provided with a displacement sensor 4 and an adjustment component 3 for driving the heating element 2 to turn. The displacement sensor 4 senses the position of the detection object and drives the heating element 2 to track the direction through the adjustment component 3, so that the heat generated by the heating element 2 is transmitted to the detection object. The adjustment component 3 is provided between the main body 1 and the heating element 2. The adjustment component 3 receives the signal from the displacement sensor 4 and controls the heating element 2 to be directed toward the detection object. The heating element can transmit heat to the area where the detection object is located and form a heating area, which ensures that the detection object is always located in the heating area, ensures that the temperature in the area where the user is located is suitable, improves the user experience, and reduces energy consumption by narrowing the heating range.
[0019] In actual operation, the detection object is the user. When in use, first, the displacement sensor 4 senses the position of the detection object and transmits a position signal to the control board 7. After that, the control board 7 obtains the pre-stored control signal according to the position signal and transmits it to each adjustment rod 5, so that each adjustment rod 5 can coordinate and control the direction of the heating element 2 through independent operation, so that the heating element 2 can be set toward the detection object by swinging. Finally, the control board 7 controls the operation of the heating element 2 and generates heat to be transmitted to the detection object, so that the temperature in the area where the user is located rises.
[0020] In actual operation, the adjustment assembly 3 includes at least three adjustment rods 5 that are telescopically connected between the main body 1 and the heating element 2. The adjustment rods 5 are independently retracted and drive the heating element 2 to adjust in direction. The fixed end of the adjustment rod 5 is connected to the bottom surface of the main body 1, and the movable end is equidistantly spaced along the circumference of the heating element 2. The fixed end and the movable end of the adjustment rod 5 are both connected to the preset position through a movable ball head, ensuring that the two ends of the adjustment rod 5 can rotate freely, including circumferential rotation and radial rotation, ensuring that the adjustment rod 5 of the heating element 2 with variable direction is reliably connected to the main body 1, and also ensuring that the end of the adjustment rod 5 can be connected to the preset position at any angle, facilitating the independent telescopic adjustment of the adjustment rod 5. During adjustment, the adjustment rods 5 are placed on the heating element 2. The shorter the adjustment rods 5 are, the more the heating element 2 is radially tilted in the direction of the adjustment rods 5. The longer the adjustment rods 5 are, the more the heating element 2 is radially tilted away from the direction of the adjustment rods 5. The direction of the heating element 2 can be freely changed by the coordinated drive of the three adjustment rods 5.
[0021] In actual operation, the adjusting rod 5 is equipped with a motor that drives the movable end to extend and retract. The heating element 2 is suspended below the main body 1 via the adjusting rod 5, creating a movable space below the main body 1 for the heating element 2 to swing. The control panel 7 adjusts the length of the adjusting rod 5 by controlling the reciprocating rotation of the motor. This not only facilitates precise control, but also effectively reduces the size of the adjusting rod 5 and simplifies its structure, reducing production costs. Furthermore, the adjusting rod 5 can also use other structures, such as a cylinder, which should also be considered specific embodiments of the present invention.
[0022] In actual operation, the heating element 2 is a heat radiation plate, which includes a radiation surface for generating heat and a fixed surface for installing the adjustment rod 5. The heating element 2 is driven by the adjustment component 3 to face the area where the detection object is located through the radiation surface. The heating element 2 is circular to reduce the movable space required for swinging. The movable end of the adjustment rod 5 is rotatably connected to the fixed surface of the radiation plate and is equidistantly spaced along the periphery of the fixed surface to ensure that the fixed surface can accurately adjust its direction. The radiation surface is arranged toward the indoor space to facilitate the transfer of heat generated by the radiation surface to the indoor space. In addition, the heating element 2 can also be a device with directional heat transfer, such as a bathroom heater bulb, an infrared heating tube with a reflective plate, etc., which should also be regarded as a specific embodiment of the present utility model.
[0023] In actual operation, the integrated ceiling includes a keel assembly and a decorative panel 6 suspended below the keel assembly. The heating element 2 is swingably disposed below the decorative panel 6 and freely swings to increase the swing adjustment range of the heating element 2. The main body 1 is installed above the keel assembly so that the main body 1 is hidden by the decorative panel 6. The integrated ceiling has an opening for the adjustment rod 5 to pass through. The opening area meets the requirements for the adjustment rod 5 to move, preventing the adjustment rod 5 from getting stuck due to contact with the integrated ceiling, and protecting both the adjustment rod 5 and the decorative panel 6.
[0024] In actual operation, the decorative panel 6 has a through hole, and the sensing portion of the displacement sensor 4 is exposed through the through hole on the bottom surface of the decorative panel 6. The main body 1 is provided with a control board 7, which receives the position signal from the displacement sensor 4 and controls the heating element 2 to deliver heat in the direction of the detection object through the adjustment component 3.
[0025] The sensing portion is exposed and continuously detects the position of the detection object, and continuously transmits a position signal to the controller so that the heating element 2 can turn along with the moving detection object.
Claims
1. A heating device for an integrated ceiling with a movable heating element, comprising a body (1) fixed to the integrated ceiling and a heating element (2) suspended below the body (1), characterized in that: The bottom surface of the body (1) is provided with a displacement sensor (4) and an adjustment component (3) for driving the heating element (2) to turn. The displacement sensor (4) senses the position of the detection object and drives the heating element (2) to track the turning direction through the adjustment component (3), so that the heat generated by the heating element (2) is transferred to the detection object.
2. The integrated ceiling heating device with a movable heating element according to claim 1, characterized in that: The adjustment assembly (3) comprises at least three adjustment rods (5) that are telescopically connected between the body (1) and the heating element (2). The adjustment rods (5) independently telescope and drive the heating element (2) to adjust the direction.
3. The integrated ceiling heating device with a movable heating element according to claim 2, characterized in that: The fixed end of the regulating rod (5) is connected to the bottom surface of the body (1), and the movable end is equidistantly spaced along the periphery of the heating element (2).
4. The integrated ceiling heating device with a movable heating element according to claim 3, characterized in that: The regulating rod (5) is provided with a motor for driving the movable end to extend and retract, and the heating element (2) is suspended below the body (1) through the regulating rod (5) to form a movable space below the body (1) for the heating element (2) to swing.
5. The integrated ceiling heating device with a movable heating element according to claim 1, characterized in that: The heating element (2) is circular in shape to reduce the space required for swinging.
6. The integrated ceiling heating device with a movable heating element according to claim 1, characterized in that: The heating element (2) is a heat radiation plate, comprising a radiation surface for generating heat and a fixed surface for mounting the adjustment rod (5). Driven by the adjustment assembly (3), the heating element (2) is directed toward the area where the detection object is located through the radiation surface.
7. An integrated ceiling heating device with a movable heating element according to any one of claims 1 to 6, characterized in that: The integrated ceiling comprises a keel assembly and a decorative panel (6) suspended below the keel assembly; the heating element (2) is swingably arranged below the decorative panel (6) and swings freely to increase the swing adjustment amplitude of the heating element (2).
8. The integrated ceiling heating device with a movable heating element according to claim 7, characterized in that: The body (1) is installed above the keel assembly so that the body (1) is shielded and hidden by the decorative panel (6).
9. The integrated ceiling heating device with a movable heating element according to claim 7, characterized in that: A through hole is provided on the decorative panel (6), and the sensing portion of the displacement sensor (4) is exposed on the bottom surface of the decorative panel (6) through the through hole.
10. The integrated ceiling heating device with a movable heating element according to claim 7, characterized in that: A control board (7) is provided in the body (1), and the control board (7) receives a position signal from the displacement sensor (4) and controls the heating element (2) to transmit heat in the direction of the detection object through the adjustment component (3).