Bouncing cup cover with display module integrated in switch

By integrating the display module into the switch within the smart bouncy cup, and combining the linkage design of the inner and outer sliders with the limit block to prevent accidental operation, the problems of inconvenient viewing and easy damage of existing smart bouncy cup displays are solved, achieving intuitive, durable and safe information display.

CN223817297UActive Publication Date: 2026-01-23HANGZHOU HAERS IND CO LTD
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Patent Information

Application Number
CN202520433138.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-01-23
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

The display screen of existing smart bouncy cups is not easy to see, and frequent pressing leads to a short lifespan, easy damage, and high repair costs.

Method used

The display module is integrated inside the switch. Through the linkage design of the inner and outer sliders, information can be viewed without opening the cup lid. The display screen is protected by a light-transmitting material to avoid external impacts. The limit block and stop block design of the inner slider prevents accidental operation.

Benefits of technology

It enables intuitive viewing of water temperature and water consumption information, extends the lifespan of the display screen, reduces the failure rate and maintenance costs, and improves operational safety and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bouncing cup cover with a display module integrated in a switch. The bouncing cup cover comprises a cup cover assembly, a switch assembly used for opening and closing the cup cover assembly and a display assembly arranged in the switch assembly. Wherein the cup cover assembly comprises an upper turning cover and a cover main body which are arranged in a hinged mode, and a mounting cavity is formed in the side face of the cover main body; the switch assembly comprises a locking block, an inner sliding block and an outer sliding block which are sequentially arranged in the mounting cavity from inside to outside; the display assembly is clamped between the inner sliding block and the outer sliding block. The bouncing cup has the advantages that the display screen is integrated in the switch assembly, a user can visually check information such as water temperature and water drinking amount without opening the cup cover, and the problem that a display screen of a traditional bouncing cup is inconvenient to check is solved; and secondly, the display screen is clamped between the outer sliding block and the inner sliding block, so that the display screen is prevented from being directly exposed, the risk of fragmentation caused by collision of external force is reduced, and the service life of the display screen is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of intelligent water cup especially relates to a bounce cup cover that integrates display module in switch. BACKGROUND

[0002] With the improvement of people's living standard and quality of life, various intelligent cups appear on the market. These intelligent cups increase various sensors on the basis of conventional cups, realize detection and display of water temperature, water quality or drinking water volume through a mainboard and a display screen. However, in the field of bounce cup products, the existing intelligent products have some obvious deficiencies.

[0003] The bounce cup on the market currently has no display screen or has a display screen arranged in the interior of a cup cover assembly. This design causes the user to be unable to see the temperature and other information on the display screen when pressing the upper cover to drink, cannot intuitively check, and is very inconvenient to use. Meanwhile, the display screen is installed at the position of a button, that is, the display screen is used as a button, and the display screen is pressed to pop open the upper cover. This design also solves the problem of intuitive checking, but the service life of the display screen is greatly reduced due to frequent pressing, the failure rate is high, and the maintenance cost is also increased. In addition, the display screen as a button is exposed and is easily damaged by external force, and the display screen is cracked. UTILITY MODEL CONTENTS

[0004] The utility model aims at overcoming the deficiencies of the prior art and provides a bounce cup cover with a display module integrated in a switch.

[0005] To solve the above technical problems, the utility model provides the following technical scheme: a bounce cup cover with a display module integrated in a switch, comprising a cup cover assembly, a switch assembly for opening and closing the cup cover assembly, and a display assembly arranged in the interior of the switch assembly; wherein the cup cover assembly comprises a hinged upper cover and a cover main body, and the side surface of the cover main body is provided with a mounting cavity; the switch assembly comprises a lock block, an inner sliding block and an outer sliding block arranged in the mounting cavity from inside to outside in sequence; and the display assembly is clamped between the inner sliding block and the outer sliding block.

[0006] Preferably, the switch assembly comprises an elastic member and a rotating shaft; the two ends of the elastic member abut against the lock block and the bottom wall of the mounting cavity respectively, and the rotating shaft is sequentially inserted into shaft holes arranged on the two side walls of the mounting cavity and shaft seats arranged on the two sides of the lock block, and the lock block and the mounting cavity side wall are rotationally connected.

[0007] Preferably, the lock block comprises a connecting buckle arranged on the top thereof, and the upper cover comprises an inverted buckle arranged on the front end thereof; the connecting buckle and the inverted buckle can be buckled and separated through the rotation of the shaft of the lock block.

[0008] Preferably, the inner sliding block comprises a connecting part and a stopper; the connecting part is arranged on both sides of the back of the inner sliding block, and the stopper is arranged below the connecting part; the lock block comprises a sliding groove cut inwardly on both sides thereof; the connecting part and the stopper slide up and down in the sliding groove, and the stopper is misaligned with the limiting block arranged on the side wall of the mounting cavity to block the limiting block.

[0009] Preferably, the inner sliding block comprises a waist-shaped hole; the shaft seat is located inside the waist-shaped hole, and the rotating shaft passes through the waist-shaped hole to the shaft hole, and is limited in the waist-shaped hole and slides up and down.

[0010] Preferably, the lock block comprises a spring arm and a positioning protrusion; the spring arm is connected with the lock block, and the positioning protrusion protrudes from the surface of the lock block and is arranged at the bottom of the spring arm; the inner sliding block comprises a first recess and a second recess; the first recess is located above the second recess, and both are arranged inwardly from the back of the inner sliding block; through the up-and-down sliding of the inner sliding block, the positioning protrusion can be respectively limited in the first recess and the second recess, and correspondingly misaligned and aligned with the stopper and the limiting block.

[0011] Preferably, the lock block comprises a slot, and the inner sliding block comprises an embedded part; the embedded part is internally provided with a channel; the embedded part is embedded in the slot after passing through the inner sliding block; the embedded part is provided with an opening on the front of the inner sliding block, and the display assembly can be connected through the channel of the embedded part.

[0012] Preferably, the display assembly comprises a display screen and a flat cable; the flat cable is sequentially connected by being inserted into the opening, passing through the inner sliding block and the lock block.

[0013] Preferably, the cup cover assembly further comprises a plug, a drinking spout and a water outlet channel; the water outlet channel penetrates the cover main body up and down; the plug is arranged at the bottom of the flip cover; the drinking spout is arranged above the water outlet end of the water outlet channel; the plug and the drinking spout are sealingly matched to seal the water outlet channel.

[0014] Preferably, the cover main body is provided with a mounting inner cavity; the cup cover assembly further comprises a circuit board, a battery, a temperature sensing module and a drinking water amount monitoring module arranged in the mounting inner cavity and electrically connected therebetween; the display assembly is electrically connected with the circuit board after sequentially passing through the inner sliding block and the lock block.

[0015] The utility model discloses an advantageous effect: first, through the display screen integration in switch subassembly, user need not open the cup cover can directly view water temperature, drinking water volume etc. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the whole structure schematic drawing of the utility model discloses the switch inside integration display module's bounce cup cover;

[0017] Figure 2 It is the explosion structure schematic drawing of the utility model discloses switch subassembly;

[0018] Figure 3 It is the structure schematic drawing of the utility model discloses lock block;

[0019] Figure 4 It is the structure schematic drawing of the utility model discloses inner slide;

[0020] Figure 5 It is the structure schematic drawing of the utility model discloses lock block and the cooperation of inner slide;

[0021] Figure 6 It is the utility model discloses bounce cup cover's section structure schematic drawing. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantage of the utility model embodiment clearer, the technical scheme in the utility model embodiment will be clearly and completely described below in conjunction with the drawings in the utility model embodiment. The described embodiment is a part of the embodiment of the utility model, instead of all the embodiments.

[0023] Example 1

[0024] In view of the problems of the existing intelligent water cup in the field of bounce cup products, the user needs to press to open the flip cover to drink water, and can only see the temperature and other information on the display screen, which is not intuitive and very inconvenient to use, and the service life is greatly reduced, the failure rate is high, and the maintenance cost is also increased, therefore, the existing intelligent bounce cup has problems such as not direct viewing, inconvenient operation, easy to be broken by collision, and service life cannot be guaranteed, etc. In the embodiment, a bounce cup cover with a display module integrated in the switch is proposed, which integrates the display screen and the switch and is protected in the interior of the switch.

[0025] Referring to Figures 1-6 the schematic, the bounce cup cover with the display module integrated in the switch of the embodiment includes a cover assembly 100, a switch assembly 200, and a display assembly 300, wherein the switch assembly 200 is used for opening and closing the cover assembly 100, and the display assembly 300 is arranged in the interior of the switch assembly 200 to realize direct viewing of the information displayed by the display assembly 300 and protection of the display assembly 300.

[0026] More specifically, to realize the opening and closing of the cover assembly 100, the cover assembly 100 in the embodiment includes a flip cover 101 and a cover body 102 arranged in interconnection, i.e., the flip cover 101 can be opened and closed relative to the cover body 102, the switch assembly 200 is arranged at the opposite end side of the interconnection end of the two, and the side surface of the cover body 102 is provided with a mounting cavity 103 for mounting the switch assembly 200 and the display assembly 300. It should be noted that the display assembly 300 of the embodiment is a visual output module, i.e., a module for converting electronic signals into visual information, which can be various electronic display screens, liquid crystal displays, light-emitting diode displays, touch screen displays, etc., and electronic devices capable of outputting visual information.

[0027] Further, the switch assembly 200 of the embodiment includes a lock block 201, an inner sliding block 202, and an outer sliding block 203 arranged in the mounting cavity 103 from inside to outside in sequence, and the display assembly 300 is clamped between the inner sliding block 202 and the outer sliding block 203. The lock block 201 is used for unlocking and locking between the flip cover 101 and the cover body 102, the inner sliding block 202 is used for unlocking and locking the lock block 201 to avoid the opening of the water cup caused by misoperation and provide safety in use, and the outer sliding block 203 is used for clamping the display assembly 300 between the inner sliding block 202 and the outer sliding block 203 for protection.

[0028] To realize direct viewing of the information of the display assembly 300, as an optimization scheme in the embodiment, the outer sliding block 203 is made of a light-transmitting material, which can be transparent or translucent, and in the embodiment, a black translucent material is used and is covered and mounted on the outer side of the inner sliding block 202.

[0029] Example 2

[0030] To realize the locking and unlocking mechanism of the cup lid assembly 100, the switch assembly 200 of this embodiment further includes an elastic element 204 and a rotating shaft 205. The mounting cavity 103 is provided with shaft holes 103a on both sides of the side wall, and the locking block 201 is provided with shaft seats 201a on both sides. The shaft holes 103a and shaft seats 201a are connected to each other by a corresponding shaft. The rotating shaft 205 is inserted into the shaft holes 103a and shaft seats 201a, thereby realizing the hinge connection between the locking block 201 and the side walls of the mounting cavity 103.

[0031] Furthermore, a connecting buckle 201b is provided at the top of the locking block 201, and a snap fastener 101a is provided at the front end of the flip cover 101. By rotating the axis of the locking block 201, the connecting buckle 201b and the snap fastener 101a can be engaged and disengaged. When the flip cover 101 and the cover body 102 are closed, the connecting buckle 201b and the snap fastener 101a are engaged, thereby locking the cup lid. When the lower end of the locking block 201 is pressed inward to cause its axis to rotate, the lower end of the locking block 201 moves inward, and the upper end of the locking block 201 moves outward, that is, the connecting buckle 201b moves outward. The connecting buckle 201b moves outward away from the snap fastener 101a until it is disengaged, and the flip cover 101 can pop open and be in the unlocked state, thereby locking and unlocking the cup lid assembly 100.

[0032] Furthermore, in this embodiment, in order to achieve the reset of the locking block 201 after the shaft rotation, and thus satisfy the locking of the cup lid assembly 100, specifically, the two ends of the elastic member 204 abut against the bottom wall of the locking block 201 and the mounting cavity 103 respectively, that is, sandwiched between the locking block 201 and the mounting cavity 103. The elastic member 204 is located on the path of the rotation of the locking block 201. When the locking block 201 moves downward, it squeezes the elastic member 204, realizing the deformation of the elastic member 204. Therefore, the elastic member 204 obtains restoring potential energy. When the pressing force on the locking block 201 disappears, the elastic member 204 rebounds, thereby realizing the downward pressing and reset of the locking block 201.

[0033] It should be noted that, as an optimized solution of this embodiment, the elastic element 204 can be a spring or a rubber block with elastic deformation, etc. This embodiment is illustrated by using a spring.

[0034] Example 3

[0035] The above embodiments describe the specific structure of the switch assembly 200 for locking and unlocking the cup lid assembly 100. In this embodiment, the difference is that, in order to realize the pressing and locking of the locking block 201 in the switch assembly 200, that is, to avoid the possibility of the locking block 201 opening the cup lid assembly 100 due to misoperation, the safety of use is improved.

[0036] Specifically, in this embodiment, the inner slider 202 includes a connecting part 202a and a stop block 202b. The connecting part 202a extends inward and is disposed on both sides of the back of the inner slider 202, and the stop block 202b is disposed below the connecting part 202a.

[0037] When the locking block 201 and the inner slider 202 are in contact, grooves 201c are cut inward on both sides of the locking block 201. The grooves 201c are used to connect the part 202a and the stop block 202b, to provide space when the locking block 201 and the inner slider 202 are in contact, and to realize the upper and lower limit sliding of the inner slider 202 relative to the locking block 201.

[0038] To facilitate the sliding structure of the inner slider 202, a limiting block 103 is provided on the side wall of the cavity 103 in this embodiment. The limiting block 103 corresponds to the stop block 202b. That is, when the limiting block 103 and the stop block 202b are aligned, the inner slider 202 is pressed, and due to the blocking effect of the limiting block 103, the stop block 202b cannot move inward, that is, the inner slider 202 cannot move inward, and the locking block 201 cannot be subjected to force. In this state, the locking block 201 is locked. It is easy to understand that when the limiting block 103 and the stop block 202b are misaligned, the inner slider 202 is subjected to force and can move inward because it is not blocked. In this state, the locking block 201 is unlocked.

[0039] In layman's terms, when the inner slider 202 slides up and down, it is in a locked state when the limiting block 103 and the stop block 202b are aligned, and cannot be pressed inward. When the limiting block 103 and the stop block 202b are misaligned, it is in an unlocked state, and can be pressed inward to disengage the connecting buckle 201b of the locking block 201 from the inverted buckle 101a, thus opening the upper flip cover 101. In this embodiment, the inner slider 202 is locked when sliding up and unlocked when sliding down. Of course, it can also be set to unlock when sliding up and lock when sliding down, which will not be described in detail here.

[0040] Furthermore, in order to limit the sliding of the inner slider 202, as a preferred embodiment, the inner slider 202 includes a waist-shaped hole 202c. Specifically, the bearing seat 201a is located inside the waist-shaped hole 202c, and the rotating shaft 205 passes through the waist-shaped hole 202c and then to the shaft hole 103a. The rotating shaft 205 is limited within the waist-shaped hole 202c and slides up and down.

[0041] Furthermore, regarding the sliding of the inner slider 202 to achieve the alignment and misalignment states of the limiting block 103 and the stop block 202b, this embodiment aims to more accurately locate the specific position of the inner slider 202 in the alignment and misalignment states.

[0042] The specific implementation structure is as follows: the locking block 201 includes a spring arm 201d and a positioning protrusion 201e, wherein the spring arm 201d is connected to the locking block 201, and the positioning protrusion 201e protrudes from the surface of the locking block 201 and is disposed at the bottom of the spring arm 201d. The inner slider 202 includes a first concave point 202d and a second concave point 202e, wherein the first concave point 202d is located above the second concave point 202e, and both are recessed inward from the back of the inner slider 202.

[0043] By sliding the inner slider 202 up and down, the positioning protrusion 201e can fall into the first concave point 202d and the second concave point 202e respectively for limiting, and respectively correspond to the misalignment and alignment of the stop block 202b and the limiting block 103b.

[0044] It should be noted that the positioning protrusion 201e has an arc-shaped guide surface, while the first concave point 202d and the second concave point 202e are corresponding arc-shaped grooves. Because the positioning protrusion 201e falls from the first concave point 202 into the second concave point 202e or from the second concave point 202e into the first concave point 202, the precise positioning of the inner slider 202 can be achieved by overcoming the friction of the arc-shaped guide surface and the elastic force of the spring arm 201d during the movement.

[0045] This embodiment achieves switching between locked and unlocked states through the misalignment and alignment of the stop block 202b and the limiting block 103b on the inner slider 202, as well as the limiting and positioning through the cooperation of the waist-shaped hole 202c and the positioning protrusion 201e. This prevents accidental operation and improves the safety and reliability of use.

[0046] Example 4

[0047] In this embodiment, unlike the previous embodiment, in order to achieve electrical connection between the display component 300 and the electronic components inside the cup lid, the locking block 201 includes a slot 201f, and the inner slider 202 includes an embedding part 202f. The embedding part 202f has a channel inside, and after passing through the inner slider 202, the embedding part 202f is embedded in the slot 201f. The embedding part 202f has an opening 202f-1 on the front side of the inner slider 202, and the display component 300 can be connected through the channel of the embedding part 202f.

[0048] The display assembly 300 includes a display screen 301 and a ribbon cable 302. The ribbon cable 302 passes through the inner slider 202 and the locking block 201 sequentially through the insertion opening 202f-1 before being connected. It is easy to understand that the ribbon cable 302 can also be used without passing through the inner slider 202, for example, the ribbon cable 302 can be connected to the cover body 102 from the side and then run inside the cover body 102 to the mounting cavity of the electronic components in the cup lid.

[0049] Furthermore, the cup lid assembly 100 also includes a plug 104, a spout 105, and a water outlet channel 106; the water outlet channel 106 extends vertically through the lid body 102, the plug 104 is located at the bottom of the flip-up lid 101, and the spout 105 is located at the upper water outlet end of the water outlet channel 106. The plug 104 and the spout 105 are sealed together, and the plug 104 is used to abut against and seal the spout 105, that is, to seal the water outlet channel 106.

[0050] The side wall of the lid body 102, the side wall of the water outlet channel 106, and the drinking spout 105 form an inner cavity; a sealing ring is provided between the drinking spout 105 and the lid body 102 to prevent water from entering the inner cavity.

[0051] In this embodiment, the cup lid assembly 100 also includes a circuit board 107, a battery 108, a temperature sensing module 109, and a water consumption monitoring module 110 disposed in the mounting cavity and electrically connected thereto. The display component 300 passes through the inner slider 202 and the locking block 201 in sequence and is electrically connected to the circuit board 107.

[0052] The display cable 302 passes through the openings of the lock block 201, the inner slider 202, and the cover body 102, with both ends connected to the display screen 301 and the circuit board 107, respectively; and the openings of the lock block 201, the inner slider 202, and the cover body 102 are sealed with sealant to prevent water from entering.

[0053] In addition, considering injection molding demolding and assemblability, the cover body 102 of this embodiment is divided into an inner cover and an outer cover. The water outlet channel 106 and the inner cavity are located in the inner cover, the mounting cavity 103 is located in the outer cover, and the flip cover 101 is hinged to the outer cover. This not only has good sealing performance, but also ensures the service life of the display component 300 and prevents it from being damaged by moisture.

[0054] It should be noted that this embodiment aims to integrate the display screen 301 inside the switch assembly 200 and achieve unlocking and locking through the switch assembly 200. Its core lies in the structural design of the cup lid assembly 100, the switch assembly 200, and the display assembly 300. As for the intelligent part of the cup lid, it is existing technology. For example, how the temperature sensing module 109 and the water consumption monitoring module 110 realize temperature sensing and water consumption monitoring, how the display screen 301 displays the monitored information, how the circuit board 107 realizes control, the electrical connection and installation of various components, etc., can be implemented by referring to existing mature technologies. As non-essential technical features of this embodiment, they will not be described in detail here.

[0055] This invention offers several advantages. First, by integrating the display screen 301 into the switch assembly 200, users can directly view information such as water temperature and volume without opening the lid, solving the problem of inconvenient viewing of traditional pop-up cup displays. Second, it enhances aesthetics: the outer slider 203 uses a translucent material (such as black semi-transparent), making the display screen 301 seamlessly integrated with the lid's appearance, improving the product's design and avoiding the disharmony of a traditional display screen independently mounted on the outside. Third, it improves durability: the display screen 301 is sandwiched between the outer slider 203 and the inner slider 202, avoiding direct exposure and reducing the risk of breakage due to external impacts, thus extending the display screen's lifespan. Fourth, it optimizes ease of operation: the switch assembly 200 employs a linkage design between the inner slider 202 and the outer slider 203, allowing users to open and close the flip-top 101 simply by pressing the outer slider 203, making operation simple and effortless. Fifth, enhanced sealing performance: A sealing ring is provided between the spout 105 and the lid body 102. The openings of the locking block 201, inner slider 202, and lid body 102 are sealed with sealant, effectively preventing moisture from entering the inner cavity, protecting the display component 300 from damage, and ensuring the long-term stable operation of the circuit board 107 and display screen 301. Sixth, multi-functional integration: The display component 300 integrates the functions of the temperature sensing module 109 and the water consumption monitoring module 110, and displays information such as water temperature and water consumption in real time through the display screen 301, meeting the user's multi-functional needs for the smart cup. Seventh, locking and unlocking mechanism: The cooperation between the limit block 103 and the stop block 202b of the inner slider 202 realizes the switching between the locking and unlocking states, preventing accidental operation and improving the safety and reliability of use.

[0056] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit the scope of protection of this utility model. For those skilled in the art, other variations or modifications can be made based on the above description and ideas. It is neither necessary nor possible to exhaustively describe all implementation methods here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the technical solution of this utility model should be covered within the scope of protection of the claims of this utility model.

Claims

1. A pop-up cup lid with an integrated display module within a switch, characterized in that: It includes a cup lid assembly (100), a switch assembly (200) for opening and closing the cup lid assembly (100), and a display assembly (300) disposed inside the switch assembly (200); wherein, The cup lid assembly (100) includes a hinged upper flip-top lid (101) and a lid body (102), and the lid body (102) has a mounting cavity (103) on its side; The switch assembly (200) includes a locking block (201), an inner slider (202), and an outer slider (203) arranged sequentially from the inside to the outside within the mounting cavity (103); The display component (300) is sandwiched between the inner slider (202) and the outer slider (203).

2. The pop-up cup lid with an integrated display module within the switch according to claim 1, characterized in that: The switch assembly (200) includes an elastic element (204) and a rotating shaft (205); The two ends of the elastic element (204) abut against the bottom wall of the locking block (201) and the mounting cavity (103) respectively. The rotating shaft (205) is inserted sequentially into the shaft hole (103a) on both sides of the mounting cavity (103) and the shaft seat (201a) on both sides of the locking block (201). The locking block (201) and the side wall of the mounting cavity (103) are rotatably connected.

3. The pop-up cup lid with an integrated display module within the switch according to claim 1, characterized in that: The locking block (201) includes a connecting buckle (201b) disposed on its top, and the upper flip cover (101) includes a buckle (101a) disposed at its front end; The connection buckle (201b) and the buckle (101a) can be engaged and disengaged by rotating the shaft of the locking block (201).

4. The pop-up cup lid with an integrated display module within the switch according to claim 1, characterized in that: The inner slider (202) includes a connecting part (202a) and a stop (202b); The connecting part (202a) is disposed on both sides of the back side of the inner slider (202), and the stop block (202b) is disposed below the connecting part (202a); The locking block (201) includes inwardly cut grooves (201c) on both sides thereof; The connecting part (202a) and the stop block (202b) slide up and down in the groove (201c), and the stop block (202b) is misaligned with the limiting block (103b) provided on the side wall of the mounting cavity (103) to block and limit movement.

5. The pop-up cup lid with an integrated display module within the switch according to claim 2, characterized in that: The inner slider (202) includes a waist-shaped hole (202c); The bearing seat (201a) is located inside the waist-shaped hole (202c). The rotating shaft (205) passes through the waist-shaped hole (202c) and then to the shaft hole (103a). The rotating shaft (205) is limited and slides up and down within the waist-shaped hole (202c).

6. The pop-up cup lid with an integrated display module within the switch according to claim 4, characterized in that: The locking block (201) includes a spring arm (201d) and a positioning protrusion (201e). The spring arm (201d) is connected to the locking block (201), and the positioning protrusion (201e) protrudes from the surface of the locking block (201) and is located at the bottom of the spring arm (201d). The inner slider (202) includes a first concave point (202d) and a second concave point (202e), the first concave point (202d) being located above the second concave point (202e), and both being recessed inward from the back of the inner slider (202); By sliding the inner slider (202) up and down, the positioning protrusion (201e) can fall into the first concave point (202d) and the second concave point (202e) respectively for limiting, and respectively correspond to the misalignment and alignment of the stop block (202b) and the limiting block (103b).

7. The pop-up cup lid with an integrated display module within the switch according to claim 1, characterized in that: The locking block (201) includes a slot (201f), and the inner slider (202) includes an insert (202f); The embedded part (202f) has a channel inside. The embedded part (202f) passes through the inner slider (202) and is embedded in the slot (201f). The embedded part (202f) has an opening (202f-1) on the front side of the inner slider (202). The display component (300) can be connected by passing through the channel of the embedded part (202f).

8. The pop-up cup lid with an integrated display module within the switch according to claim 7, characterized in that: The display component (300) includes a display screen (301) and a ribbon cable (302); The ribbon cable (302) is connected after being inserted into the opening (202f-1) and passing through the inner slider (202) and the locking block (201).

9. The pop-up cup lid with an integrated display module within the switch according to claim 1, characterized in that: The cup lid assembly (100) also includes a plug (104), a drinking spout (105), and a water outlet channel (106); The water outlet channel (106) runs vertically through the cover body (102), the plug (104) is located at the bottom of the flip cover (101), and the drinking spout (105) is located at the upper water outlet end of the water outlet channel (106). The plug (104) and the drinking spout (105) are sealed together to seal the water outlet channel (106).

10. The pop-up cup lid with an integrated display module within the switch according to claim 1, characterized in that: The cover body (102) is provided with an installation cavity; The cup lid assembly (100) also includes a circuit board (107), a battery (108), a temperature sensing module (109), and a water consumption monitoring module (110) disposed in the mounting cavity and electrically connected thereto. The display component (300) passes through the inner slider (202) and the locking block (201) in sequence and is electrically connected to the circuit board (107).