MARINER'S WRISTBAND SYSTEM
Patent Information
- Application Number
- TR202519892
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-12-11
- Publication Date
- 2026-06-22
Smart Images

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Abstract
Description
1 TARIFF MARINER'S WRISTBAND SYSTEM Technical Area The invention is particularly relevant to studies conducted on marine vessels in transit and / or at sea. During this process, early detection of falling into the sea by sensing seawater 5 It relates to a sailor's wristband system that enables this. State of the Art Nowadays, especially on vessels in transit and / or at sea During the work, the 10 most likely and dangerous events are when someone falls into the sea. This is one of the situations. A well-known condition that can occur as a result of falling into the sea is hypothermia. These are the fatalities that occur as a result of hypothermia. The table below shows hypothermia. Average survival times in relation to water temperature are given below: Water Temperature (C) Average Survival Time 0 Less than 1 hour 4 0.5-3 hours 1-6 hours 16 2-24 hours 21 3-40 hours 27 Uncertain Table 1. Average survival times in hypothermia according to water temperature. Especially on large ships, there are many people during travel or maintenance. 15 Because of this, it is quite important for everyone to stay in contact with each other or with a central authority. It is difficult. To prevent this danger, communication-based methods such as cameras and radios are used. maintenance performed using systems or various structures such as belts / straps 2 Measures such as tying the crew to the ship are being taken, but late at night... During the missions, the cameras had limited visibility and the radio batteries ran out. or due to reasons such as the connection parts breaking, these measures are also insufficient. It remains. Document CN112810776B, in the known state of the art, refers to document 5 of the known state of the art. In this case, it can be selected as one of the documents closest to our invention and This describes an emergency call bracelet that prevents drowning. The emergency call bracelet is a... The bracelet consists of a main body and a telescopic watch strap. The bracelet body is a shell, a processor, a pressure sensing module, a communication module, a distance sensing module The module consists of 10 modules: a vibration module, an indicator light, an audible warning device, and a display. It consists of a processor, a pressure sensing module, a communication module, and a distance sensing module. After receiving signals from the module, it analyzes the signals and performs the relevant operations. It performs this function and then sends the relevant signals to the vibration module and the indicator, respectively. by sending a signal to the lamp, audible warning device and screen, it alerts nearby personnel to emergency assistance. It sends call information. The help signal sent by the application includes sound, flash, 15 including but not limited to various modes such as vibration and similar It is diverse and can be adapted to different environmental situations. Thus, the distress signal This prevents the surrounding staff from overlooking the situation. Document number CN208096236U also concerns emergency procedures in case of falling into water. a wristband that enables reporting and a call for help or increased attention 20 It explains. The bracelet includes an acceleration sensor, heart rate sensor, and communication circuit. The system includes a notification system that reports the emergency and communicates with the outside world via a communication circuit. It makes a call for help or increased attention. The utility model is for crew drowning. By assessing the situation, they can determine whether an accident has occurred, and inform those around the ship. It can immediately send a warning signal and in a timely manner when the crew is in danger. rescued, effectively guaranteeing the safety of personnel operating at sea. can. The known technical application number CN111613015A also refers to a shell and a shell within a shell. a regulated laser detection device, a pulse detection device, a GPS a positioning system and a choke 30 consisting of a Bluetooth and network connectivity system This explains the prevention bracelet. The laser detection device detects people before they enter the water. It is used to scan and determine the terrain of a portion of a water area and pulse. 3 The detection device is electrically connected to an alarm recovery device, and people When it detects an abnormal pulse, it triggers an alarm and initiates the rescue operation. Used to activate the alarm recovery device; GPS The positioning system is used to determine the location of a person wearing the wristband, and Bluetooth and network connectivity system enable data transmission and sharing with smart devices. 5 It is used for this purpose. The choke prevention bracelet is easy to use, multifunctional, and convenient to use. It has a high safety factor during the process, the risk of drowning is greatly reduced, and Shortening the drowning rescue time saves lives. In the document numbered US20220309897A1 among the existing inventions, a person In case of drowning or distress in a pool or other body of water, the other 10 Wrist, ankle or neck band designed to alert people A wearable security device has been revealed. The wearable security device allows the user to... It includes a display for monitoring vital signs, a GPS chipset, and various other sensors. If the user is going to stay in the body of water for an extended period, the device should be checked by parents or caregivers. or warn other people who have a software application installed on their electronic devices 15 It is used for. The wearable safety device can also be used to locate lost or wandering children or It can also be used to find other people. The document with publication number WO2014168907A1 is about digital swimmer safety systems, smart a programmable radio communication device, such as a telephone, on the swimmer's personal body It enables communication with a radio transmitter. The communication device establishes a digital connection with the radio transmitter. It establishes a connection and starts a timer if the signal is lost. The signal is transmitted to the water from the transmitter. It may disappear due to sinking. A warning will be issued if the timer exceeds a certain threshold. is displayed. The communication device allows its user to run another application. The system is configured to continue tracking the swimmer in the background. The same Multiple swimmers can be monitored by the communication device, and 25 for each swimmer. Different threshold times can be set depending on swimming ability. It is configurable. In addition, to determine the known state of the art, TR 2024 / 004003, G08 and B36 international patents such as US7335077B2 and US9896170B1 Documents with this classification can also be examined. 30 4 In conclusion, this is innovative in marine ankle bracelet systems within the known state of the art. Solutions are needed. Purpose of the Invention The main purpose of the invention is to provide solutions, especially for marine vessels in transit and / or at sea. During the studies, the detection of seawater and its falling into the sea was carried out early. The goal is to develop a sailor's wristband system that will enable identification. Another purpose of the invention is to overcome visibility limitations in ship camera systems, radio communication. existing solutions such as batteries running out or connection points breaking The goal is to create a sailor's wristband system that eliminates its shortcomings. 10 Another goal of the invention is a sailor's wristband that helps prevent loss of life. The goal is to establish the system. Another purpose of the invention is to take precautions against possible malfunctions in the system. The goal is to create a more reliable sailor wristband system. Another purpose of the invention is to help a person who falls into the sea to warm up, even if only slightly. The goal is to create a sailor's wristband system. Another purpose of the invention is to be able to operate for a long time thanks to its low power consumption. The goal is to create a sailor's wristband system. Brief Description of Figures 20 Figure 1. A representative view of the marine wristband system that is the subject of the invention. Figure 2. Emergency center configuration of the marine wristband system, which is the subject of the invention. This is a representative circuit diagram view. Explanations of References in Figures 1. Belt 2. Emergency Center 3. Seawater Sensor 4. GPS Module 5 5. Communication Module 6. Processor 7. Software 8. Battery 9. Mobile Device 10 10. Application 11. Sound Module 12. Light Module 13. Heart Rate Sensor 14. Depth Sensing Sensor 15 15. Clock Module Camera 16 17. Sonar Signal Generator 18. Temperature Sensor 19. Heating Element 20 Detailed Description of the Invention This section is intended solely to help to better understand the subject. Explanations are being provided. 25 that enable early detection of falling into the sea by sensing seawater. a sailor's wristband system, a strap that allows the wristband to be worn around the user's body (1) and seawater sensor (3) that enables the detection of seawater, the user GPS module (4) which enables the determination of its location, from the aforementioned GPS module (4) communication module that enables the location information it receives to be sent out (5), together with the software (7) running on it, the processor (6) that controls the operation of the system and also 30 6 emergency center containing battery (8) which stores the energy required for the system to work (2) includes. Based on the salinity level, if the seawater sensor (3) comes into contact with fresh water It has been ensured that it does not generate an output. This prevents possible false alarms. It is possible to pass through. 5 The aforementioned communication module (5) is preferably in the 2.4Ghz frequency band and 250-300 It operates at a distance of meters. The emergency centre mentioned in the various preferred configurations of the invention (2), By generating signals to communicate with nearby ships, in advance 10 The broadcasting of the aforementioned communication module (5) at specified intervals sonar signal generator (17), By adjusting the circuit time constant, the response time can be reduced and the sent 10μF that prevents packet loss or delay in signals capacitor, and / or may include various combinations thereof. 15 The invention, the sailor wristband system, also includes the aforementioned emergency centre (2) By communicating through the communication module (5), the location of the person who fell into the sea can be determined. application running on mobile device (9) that enables it to be viewed from the outside (10) is also included. The emergency centre mentioned in the various preferred configurations of the invention (2), 20 the distance between the mobile device (9) and the predetermined value When it falls, sound signals are emitted to make it easier to find the user. sound module (11) that enables it to emit sound, the distance between the mobile device (9) and the predetermined value When it falls, it emits light to make it easier to find the user. 25 light module (12), By measuring the user's pulse data at predetermined intervals sending to the mobile device (9) via the mentioned communication module (5) pulse sensor (13) 7 By measuring how deep the user is from the sea surface, in advance at specified intervals, the aforementioned communication module (5) sends the message to the mobile device (9) depth sensing sensor (14) that enables sending, by calculating how long the user has been in seawater 5 via the aforementioned communication module (5) at predetermined intervals Clock module (15) which enables sending to mobile device (9), by recording video at predetermined intervals during the aforementioned communication camera (16) which enables sending to the mobile device (9) via module (5), By measuring the user's body temperature at predetermined intervals, as mentioned 10 that enables sending to the mobile device (9) via the communication module (5). temperature sensor (18) and the mentioned emergency centre (2), temperature If the data received from the sensor (18) falls below a predetermined value working heating element (19) and / or may include various combinations thereof. The processor (6) mentioned in the invention also includes the emergency centre (2), which is short of 15 Detects circuit and / or component damages and transmits them via the communication module (5). It can send warning signals to the aforementioned mobile device (9) in different configurations. For example, a continuous warning is given in case of a short circuit, while an intermittent warning is given in case of a malfunction. Warnings can be provided. This way, any potential malfunctions or other issues can be prevented. with software and hardware improvements that can overcome the user's situation 20 This ensures that relevant additional information is obtained.
Claims
8 REQUESTS 1. Early detection of falls into the sea by sensing seawater. It is a sailor's wristband system that provides; at least one strap (1) that allows the bracelet to be worn on the user's body, 5 at least one seawater that enables the detection of seawater sensor (3), at least one GPS that enables the user's location to be determined module (4), The location information received from the mentioned GPS module (4) is sent out 10 at least one communication module that enables sending (5), the operation of the system together with the software (7) that runs on it at least one processor that controls (6), at least one battery that stores the energy needed for that system to operate (8), 15 including at least one emergency centre (2), via the communication module (5) with the aforementioned emergency centre (2) by communicating, the location of the person who fell into the sea can be determined from the outside. running on at least one mobile device (9) that enables it to be displayed application (10), 20 It includes.
2. A marine wristband system compliant with Claim 1, the feature of which is; the aforementioned emergency situation The distance between the center (2) and the mobile device (9) is predetermined When the value drops below a certain level, the sound is used to make it easier to find the user. It contains at least one sound module (11) that enables it to emit signals. 25 3. A sailor's wristband system that meets any of the above requirements, The feature is the connection between the mentioned emergency centre (2) and the mobile device (9). When the distance falls below a predetermined value, the user at least one light module that emits light to make it easier to find 30 (12) is included. 9 4. A sailor's wristband system that meets any of the above requirements, The feature is that the aforementioned emergency centre (2) has the user's pulse data. measured at predetermined intervals the aforementioned communication module (5) at least one pulse sensor (13) that enables the transmission to the mobile device (9) It includes. 5 5. A sailor's wristband system that meets any of the above requirements, The feature is that the mentioned emergency centre (2) can be accessed from the user's sea surface. by measuring how deep it is, at predetermined intervals, as mentioned enabling sending to the mobile device (9) via the communication module (5) 10 It contains a small depth sensing sensor (14).
6. A sailor's wristband system that meets any of the above requirements, The feature is that the mentioned emergency centre (2) determines how long the user has been there. It is calculated that it is in seawater and at predetermined intervals of 15 sending to the mobile device (9) via the mentioned communication module (5) It contains at least one clock module (15) which provides.
7. A sailor's wristband system that meets any of the above requirements, Its feature is that the aforementioned emergency centre (2) can record images in advance 20 at specified intervals, the aforementioned communication module (5) sends the message to the mobile device (9) is that it contains at least one camera (16) that enables sending.
8. A sailor's wristband system that meets any of the above requirements, Its feature is that the mentioned emergency centre (2) communicates with the surrounding ships. By generating signals to establish this, at predetermined intervals, the aforementioned at least one sonar signal that enables transmission via communication module (5) It includes the generator (17).
9. A sailor's wristband system that meets any of the above requirements, 30 The feature is that the mentioned emergency centre (2) measures the user's body temperature. by measuring at predetermined intervals the aforementioned communication module (5) at least one temperature sensor that enables the transmission to the mobile device (9) (18) is included. 35 10. Is there a sailor wristband system that meets any of the above requirements, The feature of the aforementioned emergency centre (2), Detection of the short circuit that occurs within it requires at least one processor (6), In case a short circuit is detected, the aforementioned mobile 5 will be continuously activated. at least one communication module that enables the device (9) to send a warning. (5), It includes.
11. Is there a sailor wristband system that meets any of the above requirements, its feature; the mentioned emergency centre (2), 10 at least one that enables the detection of damage to parts that occur within. processor (6), In case of component damage, the aforementioned mobile device (9) at least one communication module that enables the sending of warnings (5), It includes. 15 12. Is there a sailor wristband system that meets any of the above requirements, The feature of the mentioned emergency centre (2) is the circuit time constant. By adjusting the settings, the response time can be reduced, and packet loss in the transmitted signals can be minimized. It must contain at least one 10μF capacitor to prevent latency.
13. A sailor's wristband system that meets any of the above requirements, Its feature is that the aforementioned emergency centre (2) is based solely on the salinity level. The outlet detects seawater upon contact with freshwater. It contains at least one seawater sensor (3) that does not produce.
14. A marine wristband system in accordance with Claim 9, the feature of which is; the aforementioned emergency situation data received by the center (2) from the temperature sensor (18) is predetermined If the value falls below this level, at least one heating element that emits heat by working (19) It includes.