Anonymous counting device
By designing an anonymous vote counter, which automatically stores ballots using an inclined slide and a ballot locking module, and reads and processes voting information in real time, the confidentiality and anonymity issues of the vote counting process in existing technologies are solved, and the effect of anonymous vote counting is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-07
AI Technical Summary
Existing voting methods lack confidentiality, and the vote counting process is susceptible to human intervention. Staff members may be able to identify voters, affecting the authenticity and anonymity of the voting results.
Design an anonymous vote counter comprising a rack, a vote collection component, and a vote counting component. It automatically stores votes using an inclined slide and a vote locking module. A reading module reads vote information in real time and transmits it to a logic calculation module for vote counting. The vote locking module ensures that votes can only be accessed by designated persons. The logic calculation module processes the results and displays or stores them through a designated method.
Anonymous vote counting was achieved, which enhanced the concealment of ballot information and vote counting results, ensured the fairness and accuracy of the voting process, and avoided human intervention and information leakage.
Smart Images

Figure CN224096232U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a vote counting equipment technical field, especially in an anonymous vote counter. BACKGROUND
[0002] The voting decision plays an important role in the enterprise decision, enterprise management, enterprise evaluation and other multiple scenes. All the time, how to guarantee the fairness and accuracy of the voting process, and at the same time maintain the anonymity of the voter, are the problems that need to be faced in the voting and counting process. In the early stage, oral voting is the main voting method, and people directly express their choices. Although this method is simple and direct, it lacks confidentiality, and the voter is easily influenced by others, and it is difficult to express the will truly, and it is difficult to trace and count the voting results effectively afterwards. Most of the current voting methods use ballots to vote, and people mark the corresponding position on the ballot, and then put it into the ballot box. After the voting is over, the specific result still needs the staff to open the ballot box to count and count, so that the counting process lacks confidentiality, and the staff can see the content of the ballot, and the counting result is easily modified by human; and the many staff responsible for counting, counting, transferring ballots, etc. After contacting the ballot, it is also possible to identify the voter according to the ballot surface handwriting, marking color, marking color depth, etc. The voter and his voting content are implemented corresponding, so that the voter's real voting choice may be affected. UTILITY MODEL CONTENT
[0003] The utility model aims at at least solving one of the technical problems existing in the prior art. For this purpose, the utility model provides an anonymous vote counter, which improves the counting concealment and realizes anonymous counting.
[0004] According to the anonymous vote counter provided by the utility model, the vote counting device comprises:
[0005] The rack comprises a storage bin.
[0006] The vote collecting assembly comprises a voting port, an inclined chute and a lock module. The voting port is arranged on the surface of the rack, the inclined chute is arranged in the storage bin, the upper end of the inclined chute is connected to the voting port, and the lock module is detachably connected to the storage bin. The lock module comprises a lock, which is used for locking the lock module and the storage bin.
[0007] The vote counting assembly comprises a reading module and a logic calculation module. The reading module is arranged on one side of the inclined chute, and the logic calculation module is electrically connected to the reading module.
[0008] According to the anonymous vote counter provided by the utility model, at least the following beneficial effects are obtained:
[0009] Voters place their ballots with the voting information facing the reading module and insert them into the voting slot. The reading module in the terminal reads the information of the ballots as they slide down the inclined chute from the voting slot in real time, then transmits this information to the logic calculation module for processing. This eliminates the need for staff to read and count the votes, preventing incorrect counting and enhancing the anonymity of the ballot information. After entering the voting slot, the ballots automatically slide down the inclined chute into a storage compartment. This compartment can store ballots from different voters, avoiding staff intervention and facilitating centralized processing later. A locking module locks and unlocks the storage compartment, requiring a designated key to unlock it, ensuring that only a select few people can access the ballots, guaranteeing anonymity. The logic calculation module can display the processed vote count through a designated device or transfer it securely to a designated administrator's storage module, further enhancing the confidentiality of the vote count. This improves the anonymity and authenticity of the vote counting process and results, achieving anonymous voting.
[0010] According to an embodiment of the present invention, an anonymous vote counter is provided on the storage compartment, and a lock is detachably connected to the corresponding lock.
[0011] According to an embodiment of the present invention, an anonymous ticket counter includes a ticket locking module that further includes a ticket storage drawer, which is slidably connected to a storage compartment, and a lock is mounted on the ticket storage drawer.
[0012] According to an embodiment of the present invention, an anonymous ticket counter is provided with guide balls inside the storage compartment and guide grooves outside the ticket drawer, with the guide balls and guide grooves being matched and connected.
[0013] According to an embodiment of the present invention, an anonymous vote counter includes a terminal compartment in the frame, and a logic calculation module is disposed in the terminal compartment.
[0014] According to an embodiment of the present invention, an anonymous vote counter is provided on one side of the terminal compartment, and the heat dissipation component is capable of blowing air into the terminal compartment or drawing air from the terminal compartment.
[0015] According to an embodiment of the present invention, an anonymous ticket counter includes an operation module, which is located on one side of the terminal compartment, and a logic calculation module is electrically connected to the operation module.
[0016] According to an embodiment of the present invention, an anonymous vote counter includes a power supply compartment in the frame, a power supply component is provided in the power supply compartment, and the power supply component is electrically connected to the vote counting component.
[0017] According to an embodiment of the present invention, an anonymous vote counter is provided with a heat dissipation mesh on one side of the power supply compartment, which is used to dissipate heat from the power supply compartment.
[0018] According to an embodiment of the present invention, an anonymous vote counter is provided in which the power supply compartment and the terminal compartment are connected by an air duct.
[0019] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0020] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0021] Figure 1 This is a perspective view of an anonymous vote counter according to an embodiment of the present invention;
[0022] Figure 2 This is another perspective view of an anonymous vote counter according to an embodiment of the present invention;
[0023] Figure 3 This is an exploded view of the structure of an anonymous vote counter according to an embodiment of the present invention;
[0024] Figure 4 This is an exploded view of another aspect of the structure of an anonymous vote counter according to an embodiment of the present invention;
[0025] Figure 5 This is an internal structural diagram of an anonymous vote counter according to an embodiment of the present invention;
[0026] Figure 6 This is a schematic diagram of the voting port, tilting slide, and ticket entry switch module of an anonymous vote counter according to an embodiment of the present invention.
[0027] Explanation of reference numerals in the attached figures:
[0028] 100 rack; 110 storage compartment; 111 lock hole; 112 guide ball; 120 terminal compartment; 130 power supply compartment; 131 heat dissipation mesh; 132 compartment door; 140 air duct; 150 connecting cable; 160 switch button; 170 moving handle; 180 casters; 190 adjustable support feet;
[0029] 200; 210; 220; 230; 231; 232; 233; 233;
[0030] Ticket counting component 300; reading module 310; logic calculation module 320; operation module 330; interface module 340; ticket entry switch module 350;
[0031] Heat dissipation component 400;
[0032] Power supply component 500; AC to DC converter 510; Battery 520. Detailed Implementation
[0033] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0034] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0035] In the description of a utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If the terms "first" and "second" are used, they are merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly specifying the number of indicated technical features or the order of the indicated technical features.
[0036] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0037] To ensure the fairness and accuracy of the voting process and maintain voter anonymity, the ballots and the vote counting process need to be kept confidential. Current methods of manual ballot counting or verification are susceptible to manipulation of results, and staff may be able to identify voters' information from the ballots, potentially leading voters to choose options contrary to their wishes. Furthermore, the timely processing of ballots after voting is also problematic, as this process allows for greater access by staff members, and if not processed promptly, ballots may fall into the hands of unauthorized personnel, compromising anonymity.
[0038] Reference Figures 1 to 5This utility model provides an anonymous vote counter, including a frame 100, a vote collection component 200, and a vote counting component 300. The frame 100 includes a storage compartment 110 for storing ballots. The vote collection component 200 includes a voting slot 210, an inclined slide 220, and a vote locking module 230. The voting slot 210 is disposed on the surface of the frame 100, and the inclined slide 220 is disposed inside the storage compartment 110, with its upper end connected to the voting slot 210. The vote locking module 230 is detachably connected to the storage compartment 110 and includes a lock 233 for locking the vote locking module 230 and the storage compartment 110. The vote locking module 230 may include a vote drawer 231 and a lock 233, with the lock 233 mounted on the vote drawer 231. The vote locking module 230 may also include a cabinet door and a lock 233. The lock 233 is installed on the cabinet door. The ticket locking module 230 may also include a cover and the lock 233, with the lock 233 installed on the cover. The ticket locking module 230 may also be other devices or combinations of devices that can lock and unlock the storage compartment 110. The ticket counting component 300 includes a reading module 310 and a logic calculation module 320. The reading module 310 may be a charge-coupled device scanner, a laser scanner, or other device with paper ticket information reading function. The logic calculation module 320 may be a computer, a microprocessor terminal, an integrated computer, or other device with logic calculation function. The reading module 310 is located on one side of the inclined slide 220. The logic calculation module 320 is electrically connected to the reading module 310. The ticket information obtained by the reading module 310 can be transmitted to the logic calculation module 320 for processing.
[0039] Working Process: Voters place their ballots with the voting information facing the reading module 310 and insert them into the voting slot 210. The ballots fall onto the inclined slide 220 and slide down to the storage compartment 110, which can store ballots from different voters. As the ballots slide down the inclined slide 220, the reading module 310 reads the information on the ballots and transmits it to the logic calculation module 320, which performs the vote counting. The logic calculation module 320 can display the processed vote count through a designated device or transfer it securely to a designated administrator's storage module. A designated key is required to open the lock 233 of the ballot locking module 230, releasing the lock between the ballot locking module 230 and the storage compartment 110. The ballots stored in the storage compartment 110 can then be retrieved. This process can only be performed by designated personnel with a designated key.
[0040] Within the terminal compartment 120, a reading module 310 reads the information of ballots entering the inclined slide 220 from the voting port 210 in real time. This information is then transmitted to the logic calculation module 320 for calculation. This eliminates the need for staff to count and tally the ballots, preventing intentional or unintentional miscalculations and enhancing the anonymity of the ballot information. After entering through the voting port 210, the ballots automatically slide down the inclined slide 220 into the storage compartment 110, where they are stored, preventing human intervention and facilitating centralized processing. A locking module 230 locks and unlocks the storage compartment 110. A designated key is required to unlock the lock 233 before the locking module 230 and the storage compartment 110 can be released from their locked state, ensuring that only a select few people can access the ballots, thus guaranteeing their anonymity. This enhances the anonymity and authenticity of the vote counting process and results, enabling anonymous vote counting.
[0041] As a preferred embodiment, the reading module 310 is a laser scanner, and the logic calculation module 320 is an integrated computer. The laser scanner is located on one side of the inclined slide 220. The laser scanner can scan the markings on the ballot and transmit the scanned information to the integrated computer for vote counting. Depending on the requirements, the integrated computer can also display the vote counting results or perform parameter settings.
[0042] It is understood that in some other embodiments, a ticket entry switch module 350 is provided on the side of the inclined slide 220 near the reading module 310. The ticket entry switch module 350 is located below the reading module 310 and is electrically connected to the reading module 310. The ticket entry switch module 350 includes a switch baffle and a switch baffle controller, which can control the switch baffle to swing. Normally, the switch baffle closes the lower half of the inclined slide 220, preventing the ballot from entering the storage compartment 110 through the inclined slide 220. When the reading module 310 reads the ballot information, it transmits a signal to the ticket entry switch module 350. The switch baffle controller of the ticket entry switch module 350 controls the switch baffle to swing downward, thereby unclogging the lower half of the inclined slide 220. The ballot, after its information has been read, can then enter the storage compartment 110 through the inclined slide 220. By cooperating with the reading module 310 and the ticket insertion switch module 350, when the side of the ballot containing voting information is not facing the reading module 310 when it is inserted into the voting slot 210, the lower half of the inclined slide 220 is closed to prevent the ballot from being inserted into the voting slot 210 in the opposite direction. In this case, the reading module 310 will not be able to read the ballot information, resulting in the ballot being missed. At this time, the ballot needs to be reversed and then inserted into the voting slot 210 again. When the side of the ballot containing voting information is facing the reading module 310 when it is inserted into the voting slot 210, the ticket insertion switch module 350 can open the lower half of the inclined slide 220, allowing the ballot to smoothly enter the storage compartment 110.
[0043] According to some embodiments of this application, the storage compartment 110 is provided with a keyhole 111, and the lock 233 is detachably connected to the keyhole 111. The lock 233 can lock the keyhole 111, which can improve the reliability of the ticket locking module 230 after locking and ensure the concealment effect of the storage compartment 110.
[0044] Furthermore, the ticket locking module 230 also includes a ticket storage drawer 231, which is slidably connected to the storage compartment 110. A lock 233 is mounted on the ticket storage drawer 231. Tickets sliding down the inclined slide 220 enter the ticket storage drawer 231 through the upper opening, facilitating the collection and storage of ticket votes. The ticket storage drawer 231 is slidably connected to the storage compartment 110. After releasing the lock 233 from the ticket locking module 230 and the storage compartment 110, the ticket storage drawer 231 can be easily slid out of the storage compartment 110, making it easy to retrieve the collected ticket votes. The lock 233 is mounted on the ticket storage drawer 231; simply locking the lock 233 in accordance with the lock hole 111 of the storage compartment 110 achieves the locking of the ticket locking module 230 and the storage compartment 110.
[0045] Furthermore, a guide ball 112 is provided on the inner side of the storage compartment 110, and a guide groove 232 is provided on the outer side of the ticket drawer 231. The guide ball 112 and the guide groove 232 are matched and connected. Specifically, the guide ball 112 is located on the inner bottom of the storage compartment 110, and the guide groove 232 is located on the outer bottom of the ticket drawer 231. The guide ball 112 and the guide groove 232 are matched and connected. The guide groove 232 can restrict the guide ball 112 within the guide groove 232, and the friction between the guide ball 112 and the guide groove 232 is small, allowing the guide groove 232 to slide smoothly on the guide ball 112, thereby allowing the ticket drawer 231 to slide smoothly relative to the storage compartment 110.
[0046] According to some embodiments of this application, the rack 100 further includes a terminal compartment 120, in which the logic computing module 320 is disposed. By placing the logic computing module 320 in the terminal compartment 120, the ballot collection component 200 and the logic computing module 320 can be placed in different compartments, preventing the heat generated by the logic computing module 320 from affecting the ballots in the storage compartment 110. When the logic computing module 320 malfunctions, the terminal compartment 120 can be opened separately for maintenance without opening the storage compartment 110, further enhancing the anonymity of the ballots.
[0047] Furthermore, a heat dissipation component 400 is provided on one side of the terminal compartment 120. The heat dissipation component 400 can blow air into or draw air from the terminal compartment 120. Specifically, the heat dissipation component 400 can be a cooling fan, blower, air conditioner, or other device with heat dissipation function. By using the heat dissipation component 400 to blow air into or draw air from the terminal compartment 120, the airflow inside the terminal compartment 120 is promoted, which can dissipate heat from the inside of the terminal compartment 120, improve the heat dissipation performance of the devices inside the terminal compartment 120, and prevent heat accumulation from affecting the normal operation of the logic computing module 320 or other devices.
[0048] As a preferred solution, the heat dissipation component 400 is a cooling fan. Two cooling fans are provided, capable of blowing air into the terminal compartment 120 to draw air from outside the ticket counter into the terminal compartment 120, thus dissipating heat from the logic computing module 320 or other devices inside the terminal compartment 120 and ensuring their normal operation. Specifically, a protective net is installed on the side of the cooling fan furthest from the terminal compartment 120. The protective net prevents personnel from touching the fan blades, ensuring personnel safety; it also provides some dust filtration, reducing dust being blown into the terminal compartment 120, further ensuring the normal operation of the logic computing module 320 or other devices inside the terminal compartment 120.
[0049] Furthermore, the vote counting component 300 also includes an operation module 330, which is located on one side of the terminal compartment 120. The logic calculation module 320 is electrically connected to the operation module 330. Specifically, the operation module 330 is located on one side of the terminal compartment 120 and extends through the terminal compartment 120. The operable part of the operation module 330 is located on the outside of the terminal compartment 120, while the electrical connection between the operation module 330 and the logic calculation module 320 is located on the inside of the terminal compartment 120. Specifically, the operation module 330 can be a physical button, a touch button, a touch screen, or other device with control input functions. By using the operation module 330 to control the logic calculation module 320, it is possible to control the start and end of vote counting, as well as set parameters such as the start and end times of automatic vote counting and voting options, thereby improving the convenience of the vote counting device.
[0050] It is understood that in some other embodiments, the ticket counting component 300 also includes an interface module 340, which is electrically connected to the logic calculation module 320. Specifically, the interface module 340 includes a universal serial bus interface and an encryption chip (not shown in the figure). The universal serial bus interface is used to connect to an external storage device to transmit the ticket counting results of the logic calculation module 320 to the external storage device, and the encryption chip can improve the security of ticket counting data transmission and storage. Specifically, the interface module 340 is disposed on one side of the terminal compartment 120 and extends through the terminal compartment 120. The universal serial bus interface of the interface module 340 is located on the outside of the terminal compartment 120, and the encryption chip is located on the inside of the terminal compartment 120.
[0051] According to some embodiments of this application, the rack 100 further includes a power supply compartment 130, in which a power supply component 500 is disposed, and the power supply component 500 is electrically connected to the ballot counting component 300. The power supply component 500 supplies power to the ballot counting component 300, ensuring the normal and reliable operation of the ballot counting component 300. The power supply component 500 is disposed in the power supply compartment 130, which allows the power supply component 500, the ballot collection component 200, and the logic calculation module 320 to be disposed in different compartments, avoiding the heat generated by the power supply component 500 from affecting the ballots in the storage compartment 110 and preventing the ballots from burning. It also facilitates the opening of the power supply compartment 130 for maintenance when the power supply component 500 fails, without having to open the storage compartment 110, thus preventing maintenance personnel from touching the ballots in the storage compartment 110.
[0052] As a preferred embodiment, the power supply assembly 500 includes an AC-to-DC module 510, which is electrically connected to the ticket counting assembly 300. The AC-to-DC module 510 converts AC mains power into low-voltage DC power, which then powers the ticket counting assembly 300. No external power converter is required; the AC-to-DC module 510 can be used simply by connecting it to a mains power plug via the connecting cable 150. Specifically, one end of the connecting cable 150 is connected to the AC-to-DC module 510, and the other end extends through the power compartment 130 to the outside.
[0053] Furthermore, the power supply assembly 500 includes a storage battery 520, which is electrically connected to both the AC-to-DC module 510 and the ticket counting assembly 300. The AC-to-DC module 510 converts AC power into low-voltage DC power, which can then charge the storage battery 520. When the AC-to-DC module 510 cannot be connected to external mains power, the storage battery 520 can act as a power supply device to power the ticket counting assembly 300. Using the storage battery 520 for power allows the ticket counter to be used even in situations without a power supply, greatly improving its convenience.
[0054] Furthermore, a heat dissipation mesh 131 is provided on one side of the power supply compartment 130. The heat dissipation mesh 131 is used to dissipate heat from the power supply compartment 130, prevent heat accumulation inside the power supply compartment 130, and extend the service life of the power supply component 500.
[0055] Furthermore, the power supply compartment 130 and the terminal compartment 120 are connected by an air duct 140. Cooling air blown into the terminal compartment 120 by the heat dissipation component 400 can be blown into the power supply compartment 130 through the air duct 140 and then blown out from the heat dissipation mesh 131. Specifically, the air duct 140 passes through the storage compartment 110 and connects the terminal compartment 120 and the power supply compartment 130. The heat dissipation component 400, the terminal compartment 120, the air duct 140, the power supply compartment 130, and the heat dissipation mesh 131 form a heat dissipation airflow path, which greatly improves the heat dissipation effect of the power supply compartment 130 and the terminal compartment 120, enhances the heat dissipation capacity, and ensures the normal and reliable operation of electrical components such as the power supply component 500 in the power supply compartment 130 and the logic computing module 320 in the terminal compartment 120.
[0056] It is understood that in some other embodiments, the power compartment 130 is provided with a door 132, which is located on one side of the power compartment 130. The door 132 allows the power compartment 130 to be opened easily for maintenance of the power components 500 inside the power compartment 130.
[0057] It is understood that in some other embodiments, a switch button 160 is provided on the electrical connection line between the power supply component 500 and the ticket counting component 300. The switch button 160 is located on one side of the power supply compartment 130, and the electrical connection between the power supply component 500 and the ticket counting component 300 can be realized by using the switch button 160.
[0058] It is understood that in some other embodiments, the top of the frame 100 is provided with a movable handle 170, and the bottom of the frame 100 is provided with casters 180 and adjustable support feet 190. The movable handle 170 and casters 180 work together to facilitate moving the position of the vote counter. The adjustable support feet 190 are used to facilitate adjusting the height of one side of the vote counter so that the vote counter can be placed on uneven ground. The vote counter can also be easily adjusted to a suitable angle so that voters can easily put their ballots into the voting slot 210.
[0059] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0060] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. An anonymous vote counter, characterized in that, include: Rack (100), including storage compartment (110); The ticket collection assembly (200) includes a voting port (210), an inclined slide (220), and a ticket locking module (230). The voting port (210) is disposed on the surface of the frame (100), the inclined slide (220) is disposed in the storage compartment (110), and the upper end of the inclined slide (220) is connected to the voting port (210). The ticket locking module (230) is detachably connected to the storage compartment (110). The ticket locking module (230) includes a lock (233), which is used to lock the ticket locking module (230) and the storage compartment (110). The ticket counting component (300) includes a reading module (310) and a logic calculation module (320). The reading module (310) is located on one side of the inclined slide (220), and the logic calculation module (320) is electrically connected to the reading module (310).
2. The anonymous vote counter according to claim 1, characterized in that, The storage compartment (110) is provided with a keyhole (111), and the lock (233) is detachably connected to the keyhole (111).
3. The anonymous vote counter according to claim 2, characterized in that, The ticket locking module (230) also includes a ticket drawer (231), which is slidably connected to the storage compartment (110), and the lock (233) is disposed on the ticket drawer (231).
4. An anonymous vote counter according to claim 3, characterized in that, The storage compartment (110) is provided with a guide ball (112) on the inside, and the ticket drawer (231) is provided with a guide groove (232) on the outside. The guide ball (112) is matched and connected with the guide groove (232).
5. An anonymous vote counter according to claim 1, characterized in that, The rack (100) also includes a terminal compartment (120), in which the logic computing module (320) is disposed.
6. An anonymous vote counter according to claim 5, characterized in that, A heat dissipation component (400) is provided on one side of the terminal compartment (120), which can blow air into the terminal compartment (120) or draw air from the terminal compartment (120).
7. An anonymous vote counter according to claim 6, characterized in that, The ticket counting component (300) also includes an operation module (330), which is located on one side of the terminal compartment (120), and the logic calculation module (320) is electrically connected to the operation module (330).
8. An anonymous vote counter according to claim 6, characterized in that, The rack (100) also includes a power supply compartment (130), in which a power supply assembly (500) is provided, and the power supply assembly (500) is electrically connected to the ticket counting assembly (300).
9. An anonymous vote counter according to claim 8, characterized in that, A heat dissipation mesh (131) is provided on one side of the power supply compartment (130), and the heat dissipation mesh (131) is used to dissipate heat from the power supply compartment (130).
10. An anonymous vote counter according to claim 9, characterized in that, The power supply compartment (130) and the terminal compartment (120) are connected by an air duct (140).