WEARABLE SOCIAL DISTANCING SHIELD SYSTEM

TR202513827A2Pending Publication Date: 2026-06-22NETAS TELEKOMUNIKASYON ANONIM SIRKETI
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
TR202513827
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-06-22

Smart Images

  • Figure 00000010_0000
    Figure 00000010_0000
  • Figure 00000010_0001
    Figure 00000010_0001
  • Figure 00000011_0000
    Figure 00000011_0000
Patent Text Reader

Abstract

The invention relates to a wearable social distancing shield system in the form of a hat worn on the head, providing sterilization with far-UV light and automatically adjusting the light output according to external environmental conditions.
Need to check novelty before this filing date? Find Prior Art

Description

1 TARIFF WEARABLE SOCIAL DISTANCING SHIELD SYSTEM Technical Area The invention is an external device in the form of a hat worn on the head, providing sterilization using far-UV light. Wearable social distancing device that automatically adjusts radiation production according to ambient conditions 5 It is related to the shielding system. State of the Art Various protective measures are taken to prevent the spread of infection during epidemics. Measures are being taken. These measures include the use of disinfectants and wearing masks. Methods such as adhering to social distancing rules are widely implemented. These 10 These methods generally involve the transmission of disease from infected individuals to healthy individuals. It aims to prevent. These measures in current technology generally assume that all individuals have similar health conditions. It is used on the assumption that it is a pandemic. However, in society, apart from epidemics, it is different. health problems, allergic conditions, immune system deficiencies, or chemical 15 There are also individuals with special conditions, such as sensitivities. These special circumstances, reducing the effectiveness of standard preventive measures or insufficient for some individuals or it can make it risky. Especially in situations where people are gathered in groups, both indoors and outdoors, the existing Disinfection systems or infection control practices are used to protect individuals' different health needs. both individual and societal risks because it does not take their needs into account. This can lead to problems. Most current systems require a personalized or dynamic approach. Instead, it offers uniform and fixed solutions. Therefore, being more effective in preventing the spread of infection requires protecting individuals' private health. There is a need for an adaptive and goal-oriented solution that is appropriate to their situation. 25 Application number US20240100215A1 concerns the UV-C light source located on the hat. It relates to a system through which the air reaching the user is disinfected. However, The application involves using a biosensor to deliver radiation based on the density of viruses and bacteria in the external environment. Far-UV usage is not included. 2 In conclusion, due to the negative aspects described above and the current solutions being the subject of discussion... Due to its shortcomings, an improvement is needed in the relevant technical field. It has been made. Purpose of the Invention The invention was created by drawing inspiration from existing situations and addressing the aforementioned drawbacks. 5 It aims to solve the problem. The invention aims to prevent the spread of infection and protect personal health during epidemics. Developed for the purpose of providing disinfection, it is portable and suitable for individual use. and relates to an ergonomic personal social distancing shield system. The invention protects the user from environmental viruses and 10 other viruses in both indoor and outdoor settings. while providing protection against bacteria that may be present in the user It also helps to minimize the spread of potential pathogens into the environment. Another aim of the invention is to address the inadequacy of current social distancing and disinfection measures. taking into account individual differences (allergies, immune problems, chemical sensitivities, etc.) Our goal is to provide a personalized and effective infection control solution, keeping this in mind. 15 The purpose of the invention is to provide individual protection through a portable and wearable device. by creating an invisible but effective social distancing shield around personal space The goal is to reduce the risk of infection transmission. The invention uses Far-UV (far-UV) light technology to neutralize both viruses and bacteria. a safe disinfection environment that brings and does not harm human health 20 It provides. The invention allows the device to be integrated inside the hat, thus making it visible from the outside. It has an invisible, aesthetically pleasing structure suitable for everyday use. The invention allows the hat to be used as a standard accessory when the device is not in use. It provides an opportunity. 25 The invention automatically adjusts radiation activity based on the microbiological density in the environment. Efficient and energy-efficient use thanks to the biosensor that regulates the process. It provides. 3 The invention prevents overheating, reports energy levels, optimizes beam direction, and Device safety and reliability are ensured by advanced technical components that instantly detect source failures. It increases its effectiveness. In this invention, the device is the only one that is protected thanks to the hat being covered with antiallergenic and antiviral fabric. Not only that, but the accessories worn should also prevent microbial spread and protect the user's health. 5 Support is provided. The structural and characteristic features and all the advantages of the invention are given in the figures below. This becomes clearer thanks to the detailed explanation written with references to these figures. This will be understood, and therefore the evaluation should also take these forms and detailed explanations into consideration. It needs to be done by taking precautions. 10 Figures that will help understand the invention. Figure 1 shows a general overview of the system that is the subject of the invention. Figure 2 shows the ventilation filter in the cap, which is the subject of the invention. Figure 3 shows the planar external view of the invention. Figure 4 shows the rays emanating from the light sources passing through the outer cover, which has optical mirror properties, at 15°C. It is the appearance of its reflection. Figure 5 shows the appearance of attaching and detaching the light sources from the socket line. Figure 6 shows the invention and the gutter combined. Figure 7 shows the appearance of the invention as it is attached by the user. Figure 8 shows a detailed view of the hat included in the invention. 20 Explanation of Part References 1. Body 2. Technical section 3. Beam generation section 4. Hat 25 5. Hat groove 6. Ventilation filter 4 7. Motherboard 8. Battery 9. Radiation source 10. Indicator lamp 11. Vibration motor 5 12. Outer cover 13. Beam source control module 14. Temperature control module Button 15 16. Ground orientation sensor 10 17. Ventilation outlet 18. Biosensor Detailed Description of the Invention This detailed explanation describes the wearable social distancing shield system that is the subject of the invention. The structures that have been established are solely for the purpose of better understanding the subject. 15 It is explained. The system in question generally takes the form of a hat (4) with an outer surface covered with antiviral fabric. It features a wearable social distancing shield system and ventilation with a bellows structure. The light generation section (3) contains the filter (6), light sources (9) that will produce far-UV rays, and the light source (9) The light source control 20 is located on the production section (3) and is connected to each light source (9). The lamp (10) is located on the section (3) that produces the rays, which then travel in a diffuse manner. The outer cover with optical mirror properties (12) which enables it to form a shield against the external environment biosensor (18) that measures bacteria and virus density, battery that meets energy needs (8), ventilation outlet (17) that releases the heat generated after use, body (1) and ground The ground direction sensor (16) that enables beam transmission by analyzing the distance between them, ground direction 25 By receiving the relevant data from the sensor (16) and biosensor (18), the light production is automatically controlled. The motherboard (7), which adjusts and provides general control and evaluation of the system, It includes a heat control module (14) which prevents overheating and provides heat control. The place where the shield device will be placed is the groove (5) in the lower part of the brim of the hat (4) 30 It is located. In this way, the body (1) of the system in question is not visible from the outside. The system in question consists of a technical compartment (2) and far-uv elements, which are the technical components. It consists of a radiation generating section (3) that produces the radiation. These sections are not separable. The upper part of the shelf has a bellows ventilation screen (6). Ventilation The technical compartment (2) corresponds in position to the section where the filter (6) is located. From here, the waste will be discharged out through the ventilation outlet (1) of the fuselage (17). The ventilation filter (6) can be closed by pressing it down thanks to its bellows structure, It can be opened by pulling it. Thus, when the body (1) is not in use, this part can be closed. 5 It can also be used as a normal hat (4). The hat slot (5) under the ridge can be closed as desired and used as a normal hat (4). can be used. The cap trough (5) and ventilation strainer (6) are combined in structure. It has. The continuation of the cap groove (5) is the ventilation filter (6). If If the ventilation filter (6) is opened, the cap (5) groove will also be opened, if it is closed 10 If brought, the hat slot (5) will close. The hat (4) has different color options. In the radiation generation section (3), there are radiation sources (9) that will produce far-uv radiation. Radiation The light sources (9) have a detachable structure. Thus, the light sources (9) If any of them malfunctions, the faulty light source (9) is removed and a new one is installed. It can be attached. Far-UV light kills both viruses and bacteria and does not harm the person. 15 It has a structure that does not give. The socket line on which the light sources (9) located on the light generating section (3) will be attached It is located. The light sources (9) are designed to be connected in parallel. Thus, one Failure of source (9) does not affect other sources (9). On the radiation generating section (3) where the radiation sources (9) are located, the radiations are scattered 20 An outer cover (12) with optical mirror features to create a more effective shield as it progresses It receives the ray coming linearly from the light sources (9) to this outer cover (12) It breaks and spreads over a wider area as a result. Biosensor on the technical compartment (2) that measures the density of bacteria and viruses in the external environment. (18) is located. Thanks to the biosensor (18), the density of bacteria and viruses in the environment is 25 According to the system, radiation is transmitted. This will ensure both efficient device usage and... By preventing unnecessary radiation exposure, radiation exposure is minimized. The motherboard (7) is located on the technical compartment (2) and provides general control of the system in question. and provides its evaluation. 6 The invention has a rechargeable structure. In this context, the invention includes a technical compartment (2) on which the following is located: There is a battery (8) that will meet the general energy needs. This battery (8) is removable. It is structured in such a way that when one battery (8) runs out, the other spare battery (8) can be used. Apart from the technical compartment (2), there are 2 ventilation outlets (17). Ventilation After use, the heat generated is expelled from the outlets (17). 5 The ground direction sensor (16) located on the technical compartment (2) ensures that the generated beams are effective and accurate. It ensures the transmission. The ground orientation sensor (16) measures the distance between the body (1) and the ground. It will analyze the data. As a result of this analysis, fewer rays will be detected at low distances, and more rays at high distances. will be sent. This will prevent unnecessary radiation transmission and save energy. This will result in cost savings. Furthermore, beam accuracy will be ensured. 10 The heat control module (14) located on the technical compartment (2) is the subject of the invention. It controls the heat generated afterwards. Heat control module (14), overheating This prevents blockage and ensures effective heat control. The light source control located on the light generation section (3) and connected to each light source (9) The control lamp (10) is located. If there is a malfunction in the light source (9), the control lamp 15 (10) is red. In other cases, there will be different coloring. Light source (9) When the replacement is made and a new light source (9) is installed, this lamp (10) first glows blue. With this blue light, the control of the light sources (9) also begins. A few times blue After it is lit, if the light source (9) is working, the indicator lamp (10) will light up green and It goes out. If the light source (9) is faulty, the red light comes on and stays on without going out. 20 The placement of the light source (9) is downward. Thus, the light produced by the light sources (9) The rays will travel downwards through the hat (4). Thus, the person's face and the outside environment A shield is formed between them. The vibration motor (11) is located on the technical compartment (2) and the battery (8) charge is low. It informs the user by vibrating when this happens. 25 General controls of the light sources (9) are performed with the light source control module (13). is provided. The light source control module (13) controls the ignition of the light sources (9) and It also controls the indicator lights (10) on them. The biosensor (18) is also controlled by the light source control module (13). 7 The hat (4) has an anti-allergenic and eco-friendly structure. The outer surface of the hat (4) is antiviral fabric. It is covered with. Thus, the spread of bacteria and viruses on the hat (4) will be prevented. The working principle of the system described in the invention.  The cap (4) is selected and the bellows ventilation filter (6) on the cap (4) is pulled It opens. 5  The body (1) is placed in the hat groove (5) located under the hat brim and the button (15) It is fixed with.  It is opened by pressing the on / off switch on the body (1). If the subject of the invention If the system's charge is low, it is charged. (If the charge is low, the user is charged via the vibration motor (11)) (Information will be provided in the form of vibrations.) 10  The light source control module (13) controls the light sources (9). The control lamps (10) on (9) flash blue. Thus, the beam source (9) control begins.  If there is a problem with the light source (9), the control lamp (10) on it It changes from blue to red and stays that way. 15  If the light source (9) is working, the indicator lamp (10) will be blue. It turns green and then goes out after a while.  Biosensor (18) measures the bacterial-viral density in the environment.  The ground orientation sensor (16) evaluates the position of the hat (4).  The results measured by the biosensor (18) and the position sensor (16) are transmitted to the motherboard (7) and 20 It is evaluated.  The evaluation result is sent to the light source control module (13).  The light source control module (13) sends commands to the light sources (9).  The light sources (9) start sending light according to the evaluation result. The emitted rays pass through the optical outer cover 25, which is located outside the ray generation chamber (3). (12) is refracted. Thus, the rays spread vertically in many directions and there is no gap. A shielding area is thus created.  The internal temperature of the system in question is continuously monitored by the heat control module (14). If the internal temperature is too high, it is operated in a controlled (idle) manner. This way, the heat is reduced. Due to its height, damage to the system and its internal components is prevented. 30  The heat generated after use is expelled through the ventilation outlet (17).  General control and evaluation of the subject of the invention is ensured by the motherboard (7).  The general power requirement of the electronic components in the invention is provided by the battery (8). 8  When not in use, the system is switched off by pressing the on / off switch.  The system that is the subject of the invention is separated from the hat (4).

Claims

9 REQUESTS 1. Wearable social distancing hat (4) in the form of a hat with an outer surface covered with antiviral fabric. It is a shielding system; its feature is:  Ventilation strainer with bellows structure (6),  Radiation generation section (3), 5 which contains radiation sources (9) that will produce far-UV radiation.  The beam connected to each light source (9) located on the beam generating section (3) source control lamp (10),  located on the beam generating section (3), the beams travel scattered and more The outer cover with optical mirror features that allows it to form a shield against impact (12),  biosensor that measures the density of bacteria and viruses in the external environment (18), 10  battery that meets the energy needs (8),  Ventilation outlet that releases the heat generated after use (17),  Sending light by analyzing the distance between the body (1) and the ground providing ground direction sensor (16),  By receiving the relevant data from the ground direction sensor (16) and biosensor (18), the light generation 15 automatically adjusts and performs overall system control and evaluation. motherboard (7),  Heat control module that prevents overheating and provides heat control (14) It includes.

2. It is a wearable social distancing shield system that complies with Claim 1, and its feature is that they are positioned next to each other. It must contain at least two light sources (9) connected in parallel.

3. It is a wearable social distancing shield system in accordance with Claim 1, and its feature is; the battery (8) It includes a vibration motor (11) that informs the user by vibration when the charge is low.

4. A wearable social distancing shield system conforming to Claim 1, its feature is; ray 25 the lighting of their (9) indicator lights (10) on them and The light source control module (13) that controls the biosensor (18) It includes.