CONTROLLING WATER CONSUMPTION WITH THE SUNABZI DEVICE

TR202505259U3Pending Publication Date: 2026-06-22AYHAN YAVUZ
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Patent Information

Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
AYHAN YAVUZ
Filing Date
2025-04-29
Publication Date
2026-06-22
Patent Text Reader

Abstract

The utility model takes into account school size and water consumption per student, water When usage exceeds the defined limits, the school administration and the relevant authorities at the provincial directorate of national education are contacted. The unit aims to inform students. It also aims to raise students' awareness about water. It aims to control consumption. Our utility model provides control at the corporate level. by improving water literacy, informing administrators and influencing student behavior It is to change. The product is a water flow sensor (1) to be installed on the water pipes in schools, to instantly detect the water flow from the system. It was used to measure the amount of water passing through and send the data to the microprocessor. Power supply (2) will be used to meet the energy needs of the existing system with the help of solar panels. Data received from the water flow sensor (1) is processed with the help of the microprocessor board (3) and transmitted over the internet The transmission to the mobile device will be made possible with the help of technologies (4). Microprocessor card (3) cloud for instant data acquisition and processing into database between mobile devices (5) technologies will be utilized.
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Description

1 TARIFF CONTROLLING WATER CONSUMPTION WITH THE SUNABZI DEVICE Technological field to which the utility model relates: Water is a scarce resource essential for life and for carrying out the vast majority of economic activities. It is a natural resource. Today, as global water demand continues to increase, water is scarce in many regions. The quantity and quality of resources are decreasing. State of the art: Air quality, noise, and temperature measuring devices are designed separately and accordingly. They serve a single purpose. Generally, these measuring devices are used in units within schools and 10 It is not used in the classroom. In a classroom environment, these three variables (air quality, noise, and (temperature) being within the desired range has a great impact on learning. Based on numerous research findings that provide evidence, our useful model will measure these three variables and It is designed to provide audible and visual warnings when certain levels are exceeded. General The system architecture is simple and easy to use. 15 A type of class of noise control system, power, is described in the Chinese patent document numbered CN204350274U. power source, control system switch, audio switch, transformer, electromagnet, time delay It consists of a relay and a language repeater player; the positive pole of the power supply controls the system. It is connected to the switch; the control system switch is connected to the transformer; the transformer The electromagnet is connected to the time delay relay, the electromagnet time delay relay is 20 The language repeater is connected to the player, and the language repeater is connected to the negative terminal of the power supply. It is connected via an audible switch between the transformer and the electromagnet time delay relay. It connects. Turning on the control switch, after the sound switch detects noise at a specific decibel level, The sound switch can be activated, then the electromagnet time delay relay can be activated. It ensures that it remains open, thus making the language repeater player operational, language 25 The repeater player sends a warning tone reminding the student to be quiet. This study It differs from our utility model in terms of technical content, and also the aforementioned utility model It controls only one variable. The invention described in Chinese patent document number CN107606747A relates to the field of electronic technology, 30 It provides a type of classroom information control system based on cloud computing technology. In the classroom Optical tracking module for collecting light data; for collecting temperature data in the classroom. Temperature monitoring module; personnel supervision to monitor the current status of those in the building. The module collects monitoring data from optical monitoring, temperature monitoring, and personnel control modules. 2 Data collection module for collecting data; control command is sent to the control module and to the cloud. control program of final data of cloud computing service after information processing Thanks to its planning and analysis of the stored version, it is returned according to the data collection module. Cloud computing server that enables monitoring of transferred data; control command 5 by receiving the control command and distributing it to the control device in the classroom. a control module created for sending. The present invention concerns the status of those occupants indoors. It can actively detect and process things like when someone turns off the light in the classroom, turn off the air conditioner, etc. It can do this, save resources, and reduce operating costs. The invention described in Chinese patent document number CN105972782B is a cloud computing platform, centralized on 10 control system, indoor control system, lighting control module, indoor information acquisition module, external environment information acquisition module, collaboration between each module, classroom environment a type of cloud computing technology-based system, including collaborative intelligent control. This describes the classroom environment data control system and methodology. It also mentions cloud computing technology. The existing invention, based on a class data control system, collects this data in the room and compares it to the external environment 15 The data from the data collection module is integrated into the cloud computing platform through intelligent optimization and adjustment. After the analytical calculation of the central control system, it is applied to the classroom environment, so that The classroom is kept in good air quality, providing a healthy and comfortable academic environment for the students. Light And control of the indoor control device has been achieved. The Turkish patent document numbered TR2022010162U5 describes a method for rapidly measuring indoor air quality in classrooms. It provides feedback, detecting whether students are breathing stale air in the classroom environment. and an automated indoor air control system that ensures air quality is monitored in the classrooms. The aim was to examine the feasibility of the system by creating it. Studies over the last century... With the changes happening in their lives, people spend most of their time indoors. 25 It is experiencing. The effects of indoor air quality on human health in enclosed spaces are related to the global COVID-19 pandemic. With the pandemic, it has become an important topic that current research is focusing on. The research aims to protect the health of students who spend long periods of time in classrooms and to prevent the spread of the pandemic. This is important in terms of reducing the rate of spread of diseases. This study, designed Experimental research was conducted on the prototype by controlling the indoor air quality variable and other conditions. 30 This was achieved using the method. According to the research findings, the designed indoor air control system... The system is successfully activated when it reaches the specified threshold values. it turned on the red warning LED, activated the buzzer, and automatically opened the window, and It was observed that the ventilation fan was activated. Furthermore, measurements taken showed that the indoor air... 3 When the quality level reaches the predetermined lower threshold value, the warning light changes from red to green again. It is observed that the door is turned, the window is closed, and the ventilation fan is switched off. Conclusion The proposed system automatically provides ideal ventilation in the classroom, thus preventing Covid-19. will reduce the risk of virus transmission and provide healthier indoor air quality for better learning. It appears that this will provide benefits. Furthermore, it appears that the system can also be applied indoors. 5 The research aimed to introduce a low-cost system to classrooms for decision-makers in education. It is recommended that the system be implemented. In addition, researchers should improve indoor air quality in the designed system. New research includes variables such as humidity and temperature used in the determination. It is recommended that they do so. The purpose of a utility model: Our utility model measures air quality, noise levels, and temperature in a classroom environment. by measuring and determining the necessary thresholds for each variable if they are above the specified thresholds. by providing warnings (auditory and visual warnings) the physical environment of the classroom in terms of teaching and learning It was produced with the aim of being of higher quality. 15 Explanation of the figures: Figure 1. General view of the Air-Noise-Temperature Meter circuit. Figure 2. Front view of the Air-Noise-Temperature Meter. Figure 3. Rear view of the Air-Noise-Temperature Meter 20 Figure 4. Side view of the Air-Noise-Temperature Meter. Explanation of References: 1. Heat, noise, and air quality measuring instrument box 2. Screen 25 3. Temperature measuring sensor 4. Sensor that measures noise. 5. Visual warning device 6. Power input 7. Air quality measuring sensor 30 8. Back cover 9. Programming cable input 10. Audio device 4 Explanation of the Utility Model: The item consists of an air quality noise temperature measuring instrument box (1), a display (2), and a temperature measuring sensor (3), noise measuring sensor (4), visual warning device (5), power input (6), air quality measuring sensor It consists of (7), back cover (8), programming cable input (9), and audio device (10). The device measures air quality, noise level, and temperature in the classroom environment, for each of the 5 If the threshold values ​​set for the variable are exceeded, the necessary warnings (sound and by providing visual cues, the physical environment of the classroom becomes more qualitative in terms of teaching and learning. It was produced for this purpose. Air quality, noise and temperature measurement is performed using the Air The Quality, Noise and Temperature Meter (1) is a suitable apparatus for use in all types of environments. Air Quality, Noise and Temperature Meter (1) device, display (2), temperature measuring sensor (3), 10 noise measuring sensor (4), visual warning device (5), power input (6), air quality measuring sensor (7), The device is installed by placing the back cover (8), programming cable input (9) and audio device (10) components. The Air Quality, Noise and Temperature Meter (1) device is connected to the circuit inside. It is controlled by an electronic circuit. This electronic circuit is used in robotics and coding. It was organized using technologies. 15 The Air Quality, Noise and Temperature Meter (1) device is controlled by a special program installed on a mobile phone. After the setup and pairing process is complete, the measured data is wirelessly transmitted to the smart device. can transfer to devices. Industrial Application of the Invention 20 The device is designed with minimal dimensions and can be placed in any desired environment or mounted on the wall. It is light enough to be hung. The device measures values ​​within the environment, considering its size, both audibly and visually. By communicating this via message, it can help the user take the necessary precautions. Usage It is an easy-to-install, long-lasting, mass-production suitable, and economical device. The device is suitable for all... Web 25 enables processes to be carried out by instantly receiving data measured in various environments. A system based on this can be developed. The necessary circuitry and software were tested and positive results were obtained. Suitable for mass production and low cost. Although costly, this product contributes to improving the quality of the learning environment in schools, fostering a healthier learning environment. It will provide the environment. This book is suitable for use in public and private institutions, homes, or workplaces. It has been designed.

Claims

REQUESTS 1. The utility model measures air quality, noise level, and temperature in a classroom environment. by measuring and determining the necessary thresholds for each variable if they are above the specified thresholds. This relates to a device that gives warnings (auditory and visual alerts), and its features include: temperature, noise, and air quality. measuring instrument box (1), display (2), temperature measuring sensor (3), noise measuring sensor (4), visual 5 Warning device (5), power input (6), air quality sensor (7), rear cover (8), programming It is characterized by a cable input (9) and an audio device (10).

2. According to Claim 1, the utility model should address the air quality, noise level, and other factors in a classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. It relates to a device that provides the necessary warnings (auditory and visual warnings) in this situation, and its feature is; temperature 10 Noise is characterized by the air quality measuring instrument box (1).

3. According to Claim 1, the utility model should address the air quality, noise level, and other factors in a classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. This relates to a device that provides necessary warnings (audio and visual alerts) in this situation, and its feature is the screen. It is characterized by (2). 15 4. According to Claim 1, the utility model should address the air quality, noise level, and other aspects of the classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. It relates to a device that provides necessary warnings (auditory and visual alerts) in this situation, and its feature is; It is characterized by a sensor (3) that measures the temperature.

5. According to Claim-1, the utility model; improves the air quality, noise level and 20 in the classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. It relates to a device that provides necessary warnings (auditory and visual alerts) in this situation, and its feature is; It is characterized by a sensor (4) that measures noise. According to Claim 6-1, the utility model should address the air quality, noise level, and other factors in a classroom environment. By measuring the temperature value, if it is above the threshold values ​​set for each variable, 25 This relates to a device that provides necessary warnings (auditory and visual alerts) in this situation, and its feature is visual. It is characterized by a warning device (5).

7. According to Claim 1, the utility model should improve air quality, noise level, and in a classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. This relates to a device that provides necessary warnings (auditory and visual alerts) in this situation, and its feature is; power 30 It is characterized by its input (6).

8. According to Claim 1, the utility model should improve air quality, noise level, and in a classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. 6 It relates to a device that provides necessary warnings (auditory and visual warnings) in the event of an emergency; its feature is: weather. It is characterized by a sensor (7) that measures its quality. According to Claim 9-1, the utility model should address the air quality, noise level, and other factors in a classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. This relates to a device that provides the necessary warnings (auditory and visual alerts) in this situation, and its feature is; rear 5 It is characterized by its cover (8). According to Claim 10, the utility model should address the air quality, noise level, and other aspects of the classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. It relates to a device that provides necessary warnings (auditory and visual alerts) in this situation, and its feature is; The programming cable input (9) is characterized by the audio device (10). 10 According to Claim 11, the utility model should improve air quality, noise level, and other aspects in the classroom environment. by measuring the temperature value and ensuring it is above the threshold values ​​set for each variable. It relates to a device that provides necessary warnings (auditory and visual alerts) in this situation, and its feature is; audio. It is characterized by the device (10). 20