Solar tire pressure controller

By using a worm gear and hinge design, the solar panel can be unfolded and its angle adjusted, solving the problem of fixing the angle of the solar panel and improving the solar energy conversion efficiency and the stability of energy storage.

CN223574131UActive Publication Date: 2025-11-21CHENGDU KENBAOJIE XINCHEN TRANSDUCER CO LTD
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Patent Information

Application Number
CN202423251793.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-21
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The existing solar tire pressure controllers have solar panels whose angle cannot be adjusted, which prevents them from maximizing solar energy absorption and reduces conversion efficiency.

Method used

By using a worm gear and worm shaft in combination, the rotating rod and synchronous wheel are driven to rotate, thereby enabling the solar panel to be unfolded and its angle adjusted. Combined with the design of the hinge seat and limit rod, the solar energy receiving area is expanded.

Benefits of technology

It maximizes the absorption of solar energy by solar panels, improves conversion efficiency, and protects the battery through inverters and photovoltaic charge controllers, ensuring stable storage and use of electrical energy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a solar tire pressure controller, and belongs to the technical field of automobile tire pressure monitoring. The solar tire pressure controller comprises a main body, an adjusting mechanism and an unfolding mechanism, the adjusting mechanism comprises a mounting base, a first solar cell panel is arranged in the mounting base, a pair of U-shaped bases are connected to the back face of the first solar cell panel, U-shaped blocks are arranged in the U-shaped bases, and a fixing box is mounted on one side of the upper end face of the mounting base in an embedded mode; the front face of the fixing box is connected with the ends, away from the first solar cell panel, of the U-shaped blocks, rotating shafts are rotationally connected into the U-shaped blocks, the two ends of the rotating shafts penetrate through the U-shaped blocks to extend to the outside and are connected with the inner wall of the U-shaped base, a rotating rod is rotationally connected into the fixing box, and the two ends of the rotating rod are sleeved with first synchronous wheels. The two rotating shafts are sleeved with second synchronous wheels, and synchronous belts are wound between the adjacent first synchronous wheels and second synchronous wheels.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of automobile tire pressure monitoring, in particular to a solar tire pressure controller. BACKGROUND

[0002] The solar tire pressure controller is a device for monitoring the tire pressure and temperature of an automobile, which mainly receives the signal of the tire pressure sensor in the tire, displays the real-time air pressure and temperature of the tire, and thus monitors the state of the tire of the automobile. The solar tire pressure controller mainly comprises a display, a solar charging panel, a wireless receiver, a microprocessor and the like.

[0003] Based on the above, the present inventor found that the angle of the solar panel of the existing solar tire pressure controller cannot be adjusted, so that the solar panel cannot maximize the absorption of solar energy, thereby reducing the conversion efficiency.

[0004] Therefore, in view of the above, the existing structure and defects are improved, and a solar tire pressure controller is provided to achieve a more practical value. INVENTION CONTENTS

[0005] The utility model aims at providing a solar tire pressure controller to solve the problems in the above background technology.

[0006] In view of the above problems, the technical scheme provided by the utility model is:

[0007] A solar tire pressure controller, comprising a main body, an adjusting mechanism and an unfolding mechanism, the adjusting mechanism comprises a mounting seat, the inside of the mounting seat is provided with a first solar panel, the back surface of the first solar panel is connected with a pair of U-shaped seats, the inside of a pair of U-shaped seats is provided with a U-shaped block, the upper end surface of the mounting seat is embedded with a fixed box on one side, the front surface of the fixed box is connected with the end of a pair of U-shaped blocks away from the first solar panel, the inside of a pair of U-shaped blocks is rotatably connected with a rotating shaft, the both ends of the rotating shaft extend to the outside through the U-shaped block and are connected with the inner wall of the U-shaped seat, the inside of the fixed box is rotatably connected with a rotating rod, the both ends of the rotating rod are externally sleeved with a first synchronous wheel, the outside of two rotating shafts is sleeved with a second synchronous wheel, and a synchronous belt is wound between adjacent first synchronous wheels and second synchronous wheels.

[0008] Further, the outside of the rotating rod is sleeved with a worm gear at the center, the worm gear is drivingly connected with a worm, the both ends of the worm are connected with the inner wall of the fixed box through bearings, and the upper end of the worm extends to the outside through the fixed box and is sleeved with a knob.

[0009] The beneficial effect of the further scheme is that when the knob is rotated, the rotation of the worm is facilitated, and the rotation of the worm gear engaged with the worm is further facilitated, thereby realizing the rotation of the rotating rod.

[0010] Further, the unfolding mechanism comprises two pairs of first hinged seats, two pairs of the first hinged seats are respectively installed on the outer sides of the first solar panels, and the inner sides of the two pairs of hinged seats are hinged with second hinged seats, and a second solar panel is installed between a pair of second hinged seats on the same side.

[0011] The beneficial effect of the further scheme is that by the cooperation of the first hinged seat, the second hinged seat and the second solar panel, the second solar panel is conveniently flipped up respectively, so that a pair of second solar panels is in an unfolded state under the action of the first hinged seat and the second hinged seat, the solar light receiving area is expanded, thereby the solar energy can be maximally absorbed, and the conversion efficiency is improved.

[0012] Further, the outer sides of the second hinged seat are connected with connecting shafts, one ends of the two connecting shafts opposite to each other extend through the first hinged seat to the outside and are connected with first limiting rods, the front and back surfaces of the first solar panel near the first limiting rods are connected with second limiting rods, and the ends of the first limiting rods and the second limiting rods away from the first solar panel are provided with clamping plates.

[0013] Further, the outer sides of the first limiting rod and the second limiting rod are provided with limiting strips, and the ends of the first limiting rod, the second limiting rod and the limiting strip away from the first solar panel extend through the clamping plate to the outside and are gap-fitted with the through holes of the clamping plate.

[0014] The beneficial effect of the further scheme is that by setting the clamping plate, when the clamping plate is pulled outward to separate from the first limiting rod and the limiting strip on the first limiting rod, and the second limiting rod and the limiting strip on the second limiting rod, and then the second solar panel is flipped up, the second hinged seat rotates one hundred and eighty degrees in the first hinged seat, at this time the limiting strips on the outer sides of the first limiting rod are still in the original position after rotating one hundred and eighty degrees, and then the through holes on the clamping plate are aligned with the first limiting rod and the second limiting rod, thereby limiting between the first solar panel and the second solar panel.

[0015] Further, the main body comprises a tire pressure controller body, a display screen is embedded on one side of the tire pressure controller body, a battery box is installed on one side of the tire pressure controller body close to the bottom end, a storage battery is installed at the inner bottom end of the battery box, and the storage battery, the tire pressure controller body and the display screen are electrically connected through wires.

[0016] The beneficial effect of the further scheme is that the tire pressure controller body receives signals from the tire pressure sensor through the internal RF receiving chip, processes and controls the tire pressure data through the MCU chip, and displays the tire pressure data through the display screen.

[0017] Further, the upper end of the battery box is connected with the bottom end of the mounting seat, the inverter is installed at the internal bottom end of the mounting seat, the photovoltaic charging controller is installed at the upper end of the inverter, and the first solar cell panel, the second solar cell panel, the inverter, the photovoltaic charging controller and the storage battery are electrically connected through wires.

[0018] The beneficial effect of the further scheme is that the first solar cell panel and the second solar cell panel are responsible for collecting solar energy and converting it into electrical energy, the inverter converts direct current into alternating current, the photovoltaic charging controller protects the storage battery from overcharging or overdischarging, and the storage battery stores electrical energy.

[0019] Compared with the prior art, the beneficial effect of the solar tire pressure controller is that when the knob is rotated, the rotation of the worm is facilitated, and the rotation of the worm gear meshed with the worm is driven, and the rotation of the rotating rod is realized. Since the two ends of the rotating rod are externally sleeved with the first synchronous wheel, and the outer parts of the two rotating shafts are externally sleeved with the second synchronous wheel, and the adjacent first synchronous wheel and second synchronous wheel are wound with a synchronous belt, the rotation of the two first synchronous wheels will realize the rotation of the rotating shaft under the action of the synchronous belt and the second synchronous wheel. Since the two ends of the rotating shaft are connected with the inner wall of the U-shaped seat, the first solar cell panel can be rotated out of the mounting seat, so that the subsequent pair of second solar cell panels can be unfolded. When the pair of second solar cell panels are unfolded, the angle of the first solar cell panel and the pair of second solar cell panels can be adjusted by the knob. By setting the unfolding mechanism, when the two second solar cell panels are unfolded, the solar light receiving area is expanded, so that the solar energy can be maximally absorbed, and the conversion efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 A perspective structural schematic view of the solar tire pressure controller is provided.

[0021] Figure 2 A perspective structural schematic view of the adjusting mechanism of the solar tire pressure controller is provided.

[0022] Figure 3 A three-dimensional development structure schematic view of a solar tire pressure controller's development mechanism is provided in the utility model;

[0023] Figure 4 A three-dimensional structure schematic view inside a fixed box of a solar tire pressure controller is provided in the utility model;

[0024] Figure 5 A side sectional structure schematic view of a battery box and a mounting seat of a solar tire pressure controller is provided in the utility model.

[0025] In the drawing: 100, main body; 1001, tire pressure controller body; 1002, display screen; 1003, battery box; 1004, storage battery; 200, adjusting mechanism; 2001, mounting seat; 2002, first solar cell panel; 2003, U-shaped seat; 2004, U-shaped block; 2005, fixed box; 2006, rotating shaft; 2007, rotating rod; 2008, first synchronous wheel; 2009, second synchronous wheel; 2010, synchronous belt; 2011, worm wheel; 2012, worm; 2013, knob; 300, development mechanism; 3001, first hinged seat; 3002, second hinged seat; 3003, second solar cell panel; 3004, first limiting rod; 3005, second limiting rod; 3006, clamping plate; 400, inverter; 500, photovoltaic charging controller. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by the ordinary skilled in the art without creative labor fall within the scope of protection of the utility model.

[0027] Please refer to Figures 1-5The utility model provides a technical scheme: a solar tire pressure controller, including main part 100, adjusting mechanism 200 and unfolding mechanism 300, adjusting mechanism 200 includes mounting seat 2001, is equipped with first solar cell panel 2002 in the inside of mounting seat 2001, the back of first solar cell panel 2002 is connected with a pair of U type seat 2003, the inside of a pair of U type seat 2003 is equipped with U shaped block 2004, the upper end surface one side of mounting seat 2001 is embedded and is equipped with fixed box 2005, the front of fixed box 2005 is connected with the end of a pair of U shaped block 2004 away from first solar cell panel 2002, a pair of U shaped block 2004's inside is rotatably connected with the pivot 2006, and the both ends of pivot 2006 extend to the outside through U shaped block 2004 and are connected with the inner wall of U type seat 2003, the inside of fixed box 2005 is rotatably connected with the rotating rod 2007, and the both ends of rotating rod 2007 are externally equipped with first synchronous wheel 2008, and the outside of two pivot 2006 is equipped with second synchronous wheel 2009, and synchronous belt 2010 is wound between adjacent first synchronous wheel 2008 and second synchronous wheel 2009, the outside of rotating rod 2007 is equipped with worm gear 2011 at the center, and worm gear 2011 is driven connected with worm 2012, and the both ends of worm 2012 are connected with the inner wall of fixed box 2005 through bearing, and the upper end of worm 2012 extends to the outside through fixed box 2005 and is equipped with knob 2013, through the cooperation of worm gear 2011 and worm 2012, when rotating knob 2013, it is convenient to realize the rotation of worm 2012, and further drive the rotation of worm gear 2011 meshed with worm 2012, realize the rotation of rotating rod 2007, because the both ends of rotating rod 2007 are externally equipped with first synchronous wheel 2008, and the outside of two pivot 2006 is equipped with second synchronous wheel 2009, and synchronous belt 2010 is wound between adjacent first synchronous wheel 2008 and second synchronous wheel 2009, when two first synchronous wheel 2008 rotates, the rotation of pivot 2006 is realized under the action of synchronous belt 2010 and second synchronous wheel 2009, because the both ends of pivot 2006 are connected with the inner wall of U type seat 2003, first solar cell panel 2002 can be rotated from mounting seat 2001 to facilitate the unfolding of a pair of second solar cell panel 3003, when a pair of second solar cell panel 3003 unfolds, the angle of first solar cell panel 2002 and a pair of second solar cell panel 3003 can be adjusted through knob 2013, through setting unfolding mechanism 300, when two second solar cell panel 3003 unfolds, the solar light receiving area is expanded, so that solar energy can be absorbed to the maximum, and conversion efficiency is further improved.

[0028] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0029] Please refer to Figures 1-5 The utility model provides a technical scheme: unfolding mechanism 300 includes two pairs of first hinged seat 3001, two pairs of first hinged seat 3001 installs respectively at the outside both sides of first solar cell panel 2002, and the inside of two pairs of hinged seat all hinged with second hinged seat 3002, and a pair of second hinged seat 3002 between the same side installs second solar cell panel 3003, and the outside both sides of second hinged seat 3002 are connected with connecting shaft, and the opposite end of two connecting shafts all extends to the outside through first hinged seat 3001 and is connected with first limit rod 3004 all, and the front and back of first solar cell panel 2002 are connected with second limit rod 3005 close to first limit rod 3004, and the end of first limit rod 3004 and second limit rod 3005 away from first solar cell panel 2002 is equipped with the clamping plate 3006 between, and the outside both sides of first limit rod 3004 and second limit rod 3005 all install limit strip, and the end of first limit rod 3004, second limit rod 3005 and limit strip away from first solar cell panel 2002 all extends to the outside through clamping plate 3006 and is connected with the through hole gap cooperation of clamping plate 3006, through setting up clamping plate 3006, when pulling clamping plate 3006 outward, make it with first limit rod 3004 and the limit strip on first limit rod 3004, with second limit rod 3005 and the limit strip on second limit rod 3005 separate, and then turn up second solar cell panel 3003 upward, make second hinged seat 3002 rotate one hundred and eighty degrees in first hinged seat 3001, when first limit rod 3004 outside both sides limit strip is still in the original position after rotating one hundred and eighty degrees, align the through hole on clamping plate 3006 with first limit rod 3004 and second limit rod 3005, realize the limit between first solar cell panel 2002 and second solar cell panel 3003, when turning up second solar cell panel 3003 upward, make a pair of second solar cell panel 3003 under the action of first hinged seat 3001 and second hinged seat 3002 present the unfolding state, expand the sunlight receiving area, thereby can maximumly absorb solar energy, and then improve conversion efficiency.

[0030] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0031] Please refer to Figures 1-5 The present application provides a technical solution: the main body 100 includes a tire pressure controller body 1001, a display screen 1002 is embedded on one side of the tire pressure controller body 1001, and a battery box 1003 is installed on one side of the tire pressure controller body 1001 close to the bottom end. A storage battery 1004 is installed at the bottom end of the inside of the battery box 1003. The storage battery 1004, the tire pressure controller body 1001 and the display screen 1002 are electrically connected through wires. The upper end of the battery box 1003 is connected with the bottom end of the mounting seat 2001. An inverter 400 is installed at the bottom end of the inside of the mounting seat 2001. A photovoltaic charging controller 500 is installed at the upper end of the inverter 400. The first solar cell panel 2002, the second solar cell panel 3003, the inverter 400, the photovoltaic charging controller 500 and the storage battery 1004 are electrically connected through wires. Through the cooperation of the tire pressure controller body 1001 and the display screen 1002, the tire pressure controller body 1001 receives signals from the tire pressure sensor through the RF receiving chip inside it, processes and controls the tire pressure data through the MCU chip, and displays the tire pressure data through the display screen 1002. By setting the battery box 1003, the storage battery 1004 is convenient to install. A USB interface is also provided on one side of the battery box 1003, so as to charge the storage battery 1004 through the USB interface. Through the cooperation of the first solar cell panel 2002, the second solar cell panel 3003, the inverter 400, the photovoltaic charging controller 500 and the storage battery 1004, the first solar cell panel 2002 and the second solar cell panel 3003 are responsible for collecting solar energy and converting it into electric energy. The inverter 400 converts direct current into alternating current. The photovoltaic charging controller 500 protects the storage battery 1004 from overcharging or overdischarging. The storage battery 1004 stores electric energy.

[0032] Specifically, the working principle of the solar tire pressure controller is as follows: when in use, rotating the knob 2013 drives the rotation of the worm 2012, and the rotation of the worm wheel 2011, so that the rotating rod 2007 rotates. When the two first synchronous wheels 2008 rotate, the rotation of the rotating shaft 2006 is realized under the action of the synchronous belt 2010 and the second synchronous wheel 2009. Since the two ends of the rotating shaft 2006 are connected with the inner wall of the U-shaped seat 2003, the first solar panel 2002 can be rotated out of the mounting seat 2001, and the clamping plate 3006 is pulled outward to separate it from the first limiting rod 3004 and the limiting strip on the first limiting rod 3004, and the second limiting rod 3005 and the limiting strip on the second limiting rod 3005. Then, the second solar panel 3003 is flipped up, so that the second hinge seat 3002 rotates one hundred and eighty degrees in the first hinge seat 3001. At this time, the limiting strips on the outside of the first limiting rod 3004 are still in their original positions after rotating one hundred and eighty degrees. Then, the through hole on the clamping plate 3006 is aligned with the first limiting rod 3004 and the second limiting rod 3005, and the limiting between the first solar panel 2002 and the second solar panel 3003 is realized. At the same time, when the second solar panel 3003 is flipped up, a pair of second solar panels 3003 are in an unfolded state under the action of the first hinge seat 3001 and the second hinge seat 3002, which expands the solar light receiving area. When a pair of second solar panels 3003 are unfolded, the angle of the first solar panel 2002 and the pair of second solar panels 3003 can be adjusted through the knob 2013, so that the solar energy can be maximally absorbed, thereby improving the conversion efficiency. Through the cooperation of the first solar panel 2002, the second solar panel 3003, the inverter 400, the photovoltaic charging controller 500 and the storage battery 1004, the first solar panel 2002 and the second solar panel 3003 are responsible for collecting solar energy and converting it into electrical energy. The inverter 400 converts direct current into alternating current. The photovoltaic charging controller 500 protects the storage battery 1004 from overcharging or overdischarging. The storage battery 1004 stores electrical energy.

Claims

1. A solar tire pressure controller characterized by, The utility model relates to a solar energy power generation device, including main part (100), adjusting mechanism (200) and unfolding mechanism (300), adjusting mechanism (200) includes mounting seat (2001), the inside of mounting seat (2001) is equipped with first solar cell panel (2002), the back of first solar cell panel (2002) is connected with a pair of U type seat (2003), a pair of U type seat (2003) are equipped with U shaped block (2004) inside, the upper end surface one side of mounting seat (2001) is embedded and is equipped with fixed box (2005), the front of fixed box (2005) is connected with a pair of U shaped block (2004) away from first solar cell panel (2002) one end, a pair of U shaped block (2004) are rotatably connected with pivot (2006) inside, the both ends of pivot (2006) all extend to outside through U shaped block (2004) and are connected with the inner wall of U type seat (2003), the inside of fixed box (2005) is rotatably connected with the lever (2007), the both ends outside of the lever (2007) are all equipped with first synchronous wheel (2008), the outside of two pivot (2006) is all equipped with second synchronous wheel (2009), and the synchronous belt (2010) is wound between adjacent first synchronous wheel (2008) and second synchronous wheel (2009).

2. The solar tire pressure controller of claim 1, wherein, The outside of the lever (2007) is equipped with worm wheel (2011) at the center, worm wheel (2011) is driven connection has worm (2012), the both ends of worm (2012) are connected with the inner wall of fixed box (2005) through bearing respectively, and the upper end of worm (2012) extends to outside through fixed box (2005) and is equipped with knob (2013).

3. The solar tire pressure controller of claim 1, wherein, The unfolding mechanism (300) includes two pairs of first hinged seat (3001), two pairs of first hinged seat (3001) are installed on the both sides of the outside of first solar cell panel (2002) respectively, and the inside of two pairs of hinged seat is hingedly connected with second hinged seat (3002), a pair of second hinged seat (3002) on the same side is installed with second solar cell panel (3003) between.

4. The solar tire pressure controller of claim 3, wherein, The both sides of the outside of second hinged seat (3002) are connected with connecting shaft, and the opposite ends of two connecting shafts all extend to outside through first hinged seat (3001) and are all connected with first limiting rod (3004), the front and back of first solar cell panel (2002) are all connected with second limiting rod (3005) near first limiting rod (3004), and the opposite ends of first limiting rod (3004) and second limiting rod (3005) are equipped with clamping plate (3006) between.

5. A solar tire pressure controller according to claim 4, wherein, The first limiting rod (3004) and the second limiting rod (3005) are provided with limiting strips on both sides of the outer part, and the first limiting rod (3004), the second limiting rod (3005) and the limiting strips extend to the outside through the clamping plate (3006) from one end away from the first solar cell panel (2002) and are matched with the through holes of the clamping plate (3006).

6. The solar tire pressure controller of claim 1, wherein, The main body (100) comprises a tire pressure controller body (1001), one side of the tire pressure controller body (1001) is internally embedded with a display screen (1002), and one side of the tire pressure controller body (1001) is provided near the bottom end with a battery box (1003), the inside bottom end of the battery box (1003) is provided with a storage battery (1004), and the storage battery (1004), the tire pressure controller body (1001) and the display screen (1002) are electrically connected through wires.

7. A solar tire pressure controller according to claim 6, wherein, The upper end of the battery box (1003) is connected with the bottom end of the mounting seat (2001), the inside bottom end of the mounting seat (2001) is provided with an inverter (400), the upper end of the inverter (400) is provided with a photovoltaic charging controller (500), and the first solar cell panel (2002), the second solar cell panel (3003), the inverter (400), the photovoltaic charging controller (500) and the storage battery (1004) are electrically connected through wires.