CONTEXT-SENSITIVE GRADUAL ALERT SYSTEM INTEGRATED SMART REMINDER WRISTBAND
Patent Information
- Application Number
- TR202612182
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-07-21
- Publication Date
- 2026-08-21
Smart Images

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Abstract
Description
1 TARIFF CONTEXT-SENSITIVE GRADUAL ALERT SYSTEM INTEGRATED SMART REMINDER BRACELET Technological Field: This invention has applications in consumer electronics, wearable technologies, healthcare, and elder care. services, assistive technologies for individuals with special needs, ADHD management, Educational technologies, student belongings tracking, personal belongings tracking, medication and assistive devices 10 tracking, corporate equipment tracking, logistics, field operations, healthcare personnel equipment management, security personnel, equipment management, insurance and risk management, and objects Integrated context-aware tiered alert system usable in internet applications It is related to smart reminder bracelets. State of the Art: In daily life, users need a key when leaving home or a particular location. whether they brought their wallets, medications, ID cards, documents, and similar personal belongings with them. Various reminder and monitoring technologies are used to help them check. (Word 20) The technologies in question generally include phone-based reminder applications and individual Bluetooth devices. tracking tags, fixed-location audible door reminders, and smartwatches They are classified as reminder systems. These systems are predefined. Generating a notification at a specific time, when a wireless signal is received from a particular object. monitoring or control programs created manually by the user 25 It is based on the principle of implementation. Phone-based reminder apps use user-defined times or calendars. It generates visual or auditory notifications depending on the event. In this mode of operation... The notification is generated based on whether the user is actually approaching the door or not. 30 It is independent of whether or not it is about to leave its current environment. Therefore The reminder can be given before or after the required exit time; exit 2 It may become inoperable if the time changes. Also, phone notifications... getting lost among other app notifications or being ignored by the user Coming to the location reduces the effectiveness of the reminder. These applications are located next to the user. Since it cannot verify the physical existence of the objects that should be found, it can only provide prior confirmation. It presents an entered textual warning. 5 Bluetooth-based tracking tags, such as Tile and AirTag, attach a tag to an object. via a wireless connection established between a phone or another receiving device It works in these systems, mostly the location and link of a single labeled object. The situation or approximate distance is being monitored. During an exit event, a specific 10 Simultaneous and collective control of numerous items linked to a user profile. the process involves identifying the missing object through a checklist and verifying it. The direct transmission of the result to the user via the wearable device is limited. The fact that the labels are passive tracking elements means that the warning is mostly... This causes the process to be carried out via telephone and directly connects the user to the connection 15 This makes it difficult to give an appropriate warning. Fixed-position audible door reminders activate when the door opens or a motion sensor is activated. Upon activation, these devices play a pre-recorded message. They only work in the position where they are mounted, cannot be moved with the user, and 20 whether the items that are the subject of the message actually exist technically It cannot be verified. This depends on the user, their usage habits, or the need to transport it. Profile and learning that can automatically adapt according to the object group. The absence of mechanisms leads to the repetition of the same warning under different conditions. This opens up the possibility of developing a habit of receiving warnings over time, and unnecessary warnings 25 This leads to an increase and a decrease in the user's sensitivity to notifications. It is possible. Reminder functions used in smartwatches typically include time, location, or calendar. This requires the data to be pre-programmed by the user. These systems are 30 The timing of the alert is based on the user's real-time biometric data such as heart rate and stress level. It does not include an adaptive mechanism that relates to its density and form; its transport 3 It also fails to verify the physical existence of the required objects. Furthermore, it is known that... Techniques include different door sensors, GPS-based geo-fences, and manual entry. Triggers include: multi-object validation, multi-profile usage, incremental alerting, and local. The lack of a wearable structure that integrates behavioral learning functions is a significant issue. This creates technical deficiencies. These deficiencies include: manual processing load, static and error-prone 5 open object lists, transfer of personal data to external systems, unnecessary notifications, rising energy and subscription costs, and pre-check-out goods inspection This leads to the inability to complete it reliably. Description of the invention: 10 The invention relates to personal items that individuals need to carry with them when leaving a place. A passive, automatic, and customizable wearable system for controlling items. This is done via a gate reed sensor, GPS-based geo-fence, or manual system. Thanks to the trigger information generated by key input, the system also allows the user to have a 15 It activates without requiring the control process to be initiated. Thus, from home or The moment of exit from a designated area is detected, and the item verification process begins with the user. It is initiated without any intervention. Through the NFC antenna ring integrated into the wristband, 20 items defined in the personal belongings list can be accessed. Numerous objects such as keys, wallets, medications, documents, and the like can be scanned. Thanks to bulk verification via NFC, the control of dozens of items can be reduced to three. It can be completed in under a second, and the missing object is identified specifically. This can be communicated to the user. This structure, instead of just giving a general reminder, 25 It ensures the generation of a verified result. If a missing object is detected, a steady green LED will illuminate, followed by a flashing red LED. A four-level alert status including vibration and biometric adaptation phases. The machine is operational. LED color transition, flashing frequency and vibration pattern, 30 Depending on the level of the warning, it is checked together. Obtained from the PPG sensor. By transferring instantaneous heart rate and stress data to the alert algorithm, the user 4 A stimulus intensity appropriate to the physiological context is determined. Thus, haste or... While a user in a stressful situation can be given an earlier and stronger warning, This prevents unnecessary and disruptive notifications under normal circumstances. The on-device machine learning module uses the user's past usage data and 5 It processes behavioral patterns of objects on local flash memory. Which objects... how items are transported at exits, which groups of items are used together, and user-specific information. The object list is automatically updated by learning from repetitive behaviors. This reduces the need for manual installation and list editing, and eliminates user-generated elements. Identification errors are limited and the system is optimized for personal use over time. 10 It becomes possible for them to adapt to their habits. Data processing operations are performed on the device, involving biometric data and It does not require the transfer of personal behavioral information to an external server. Cloud The independent working structure contributes to the protection of personal data, while 15 It allows functions to continue even in conditions where internet access is unavailable. This reduces operating costs as there is no need for an external server or cloud subscription. This is achieved by combining BLE 5.2 communication with passive NFC technology. It provides low power consumption and long battery life. Thanks to its multi-profile usage structure, multiple users can wear a single wristband. Profiles and different object lists associated with each profile can be managed. This feature allows family management. In addition to parent-child usage scenarios with its members, Alzheimer's, dementia or Medications, patient records, and assistive devices for individuals with memory impairment; Tracking school, work, and therapy materials for users with special needs or ADHD. 25 This makes it possible to use it. Its intuitive user interface requires no technical knowledge. accessibility, especially for elderly individuals and users with special needs. It increases. The invention's scalable architecture is suitable for individual consumer electronics and wearable technology. 30 a wide range of uses from applications to enterprise equipment management The system provides support for field technicians, healthcare personnel, and security guards. In verifying equipment checklists, tracking students' school supplies. and damages that may result from forgotten documents or valuables It can be used in insurance and risk management practices aimed at reducing these risks. Embedded systems design, biomedical sensor technology, human-computer interaction, Local machine learning, NFC / BLE wireless communication protocols, and IoT architecture in a single 5 By integrating them within a technical structure, it is suitable for different sectors and usage conditions. An adaptable integrated solution is being presented. Explaining the Figures: The invention will be described by referring to the attached figures, so that the features of the invention can be explained. It will be understood and appreciated more clearly, but the purpose of this invention is this obvious It is not about limiting it with regulations. On the contrary, the invention is defined by the accompanying claims. all alternatives, modifications, and options that could be included within the defined area The aim is to cover their equivalences. The details shown are only for 15 of the present invention. It is shown to illustrate the preferred arrangements and both the methods shaping, as well as the rules and conceptual features of the invention, in the most useful way. It should be understood that they are presented to provide a readily understandable definition. This in the drawings; Figure 1 shows a schematic view of the system. Illustrations that will help understand this invention are shown in the attached image. They are numbered and their names are given below. Explanation of References: 10. LED Light Strip 20. Central Processing Unit 30. Biometric / IMU Sensor Module 30 40. Rechargeable Lithium Battery 50. Vibration Motor 6 60. NFC Antenna Ring 70. Tactile Sensor Strip 80. Physical Keys 90. Left Wrist Strap 91. Right Wrist Strap 5 100. Passive NFC Tag 110. Smart Sensor Tag 120. BLE Beacon 130. Door Reed Sensor 140. Geo-Fence GPS Module 10 200. Waiting Status 210. Solid Green LED Warning Indicator 220. Rapid Red Flashing LED Warning Indicator 230. Vibration + LED Combined Warning Status 240. Biometric Adaptive Alert Status 15 250. Behavioral Memory 260. User Consent Return Cycle Description of the Invention: The invention is an LED light strip (10) that generates a visual warning, processes trigger signals, and acts as an object It performs the verification process, calculates the readiness score, and monitors alert levels. central processing unit (20) processes the user's biometric data and motion data The biometric / IMU sensor module (30) measures the system components electrically. powering rechargeable lithium battery (40), vibration motor (50) that generates tactile stimuli, 25 The NFC antenna ring (60) scans NFC tags associated with objects, the user haptic sensor strip (70) that detects touch input made by Physical keys (80) that generate manual trigger and user confirmation signal, system left wrist strap (90) and right wrist strap (91) that attach to the user's wrist, passive NFC tag (100) which provides identification data regarding the existence of the object or the object's 30 A smart sensor that provides object status data along with identification data regarding its existence. At least one tag selected from the tag (110) types, BLE 5.2 communication protocol 7 BLE beacon (120) that broadcasts wireless identification signal over magnetic field The door reed sensor (130) which generates a trigger signal depending on the change, beforehand Geo-fence GPS that generates a trigger signal when a defined geographical boundary is crossed. module (140), standby status (200), steady green LED warning status (210), fast red 5 with flashing LED warning status (220), vibration and LED combined warning status (230) The graded alert state machine consisting of biometric adaptive alert states (240), behavior that locally records user's past object validation and warning data memory (250), puts the system into standby mode (200) depending on the user confirmation signal passing and completing the validation cycle data to behavior memory (250) The transferring user confirmation return loop includes (260), central processing unit (20), 10 The list of objects recorded in the behavioral memory (250) and received from the NFC antenna ring (60) It calculates the readiness score by comparing object data, and the readiness score... If the specified threshold value is below the biometric / IMU sensor module (30) According to the data received, it operates the incremental warning status machine. The invention features a biometric sensor that measures the user's instantaneous heart rate and stress index. It incorporates an IMU sensor that measures the user's motion data. It has a biometric / IMU sensor module (30). The invention converts the trigger signal from the door reed sensor (130) to a UART or GPIO line 20 via the BLE link, the trigger signal from the geo-fence GPS module (140) central processing receives the trigger signal from the physical keys (80) and manual trigger signal from the central processing unit. It has units (20). The invention is an NFC antenna 25 that scans multiple tags within the same verification cycle. to the ring (60), passive NFC tag (100) providing object asset data and object asset Smart sensor that provides data on battery status and / or tank fill level along with other data. It has the label (110). The invention sustains a constant green LED warning state (210) for five seconds, with a user response of 30. If not taken, the rapidly flashing red LED warning status (220) will follow If no user response is received within five seconds, a combined vibration and LED warning will be activated. 8 in case of (230) and if no user response is received, biometric adaptive alert It has a central processing unit (20) which transitions to the state (240). The invention allows the user to determine which object they did not carry on which day and at what time in the past, and what warning they received. It confirms the level of approval, the phased warning period, and the missing object ID in local flash 5. saving the data to storage and interpreting that data according to user-specific behavioral patterns. It has a behavioral memory that works to create (250). The invention allows for the creation of profile IDs belonging to multiple user profiles, and with each profile ID... Behavioral memory, which stores associated object lists as separate data records. (250) has. The invention includes a door reed sensor (130), a geo-fence GPS module (140) or physical keys (80) the trigger signal generated by the central processing unit (20) 15 upon receipt of the trigger signal from the biometric / IMU sensor module (30) Reading the instantaneous heart rate, stress index and movement data of the user, by querying the user behavior pattern recorded in behavioral memory (250) Determining the list of objects to be verified, passive NFC associated with the objects. NFC antenna ring (60) of tags (100) and / or smart sensor tags (110) Scanning via NFC tags, object ID and object status 20 Calculating the preparation score by evaluating the data, the preparation score If the value falls below the specified threshold, the gradual warning system of the machine will activate. execution, gradual warning status machine starting level and warning Determining the density based on biometric data, receiving the user verification signal. the data of the verification cycle is saved to the behavior memory (250) and 25 This includes the steps for putting the system into standby mode (200). The invention relates to a magnetic field generated by the movement of a door and / or door handle. Detection of the change by the gate reed sensor (130) indicates the geo- crossing of the geographical boundary. Fence detected by GPS module (140) or by pressing MOD button (80) 30 The process involves generating a trigger signal. 9 The invention relates to heart rate and stress readings from a biometric / IMU sensor module (30). Comparing the index with the determined biometric threshold values and detecting threshold overshoots. When this happens, the machine's gradual warning status is indicated by a rapidly flashing red LED warning light. initiation from the (220) or vibration and LED combined warning status (230) It includes the steps of the process. 5 The invention involves the transfer of object presence data from passive NFC tags (100) to smart sensor tags (110) along with object entity data, battery status and / or tank fill level data. the steps involved in collecting and including that data in the readiness score It includes. 10 The invention involves the execution of a constant green LED warning state (210) for five seconds, with a user response. If not taken, the rapidly flashing red LED warning status (220) will follow If no user response is received within five seconds, a combined vibration and LED warning will be activated. In case of (230) and if no user response is received, a biometric adaptive alert 15 The process of transitioning to the status (240) includes the steps involved. The invention relates to the biometric / IMU sensor module in the case of biometric adaptive alert (240). (30) rereading of biometric data and (50) vibration intensity of the vibration motor, Vibration duration and vibration pattern are centrally determined based on the re-read biometric data. The setup by the processing unit (20) includes the steps of the process. The invention is the date, time and missing object stored locally in behavioral memory (250). processing of data by central processing unit (20), determined behavior The object corresponding to the pattern is added to the list of objects to be validated and MEM 25 Missing verification cycle depending on the user confirmation signal received from key (80) object ID, alert levels executed, tiered alert duration, confirmation date, and confirmation time. The process of recording data into behavioral memory (250) includes the steps involved. Detailed Description of the Invention: 30 The invention is a wearable object verification and carrying device that can be attached to the user's wrist. It is configured as a warning system. The system is fixed to the user's wrist, via the left wrist strap (90) and the right wrist strap (91) which can be connected to each other is being implemented. LED light strip (10), central processing unit (20), biometric / IMU sensor module (30), rechargeable lithium battery (40), vibration motor (50), NFC antenna 5 ring (60), tactile sensor strip (70) and physical buttons (80) on the wristband It is positioned in a way that will not hinder user movement. Rechargeable. lithium battery (40), all electronic components connected to the central processing unit (20) It provides the necessary electrical energy. Passive NFC via BLE 5.2 communication. The combined use of these technologies allows the system to operate with low power consumption and battery life of 10. This ensures an extended lifespan. The electronic operations of the system are carried out by the central processing unit (20). The central processing unit (20) receives signals from trigger sources, Processing biometric and motion data, managing the NFC scanning cycle, preparation 15 calculating the score, performing transitions between tiered alert states and transfers user consent data to the behavior memory (250). With behavior data Because biometric data is processed on the device, this data may not be accessed externally. It does not need to be transferred to a server or cloud infrastructure. The local data processing structure... 20 It provides. The wristband is in standby mode with low power consumption during normal use (200) is located. In the standby state (200) central processing unit (20), door reed from the sensor (130), geo-fence GPS module (140) or physical keys (80) 25 It monitors the trigger signals that may come. The BLE beacon (120) in the system, It transmits a wireless identification signal over the BLE 5.2 communication protocol and the central processing unit (20) can receive BLE-based proximity or trigger data It provides. In the first triggering mode, the door is activated when the user approaches the door, when the door opens, or when the door... The change in the magnetic field that occurs when the arm is moved is the door reed sensor. 11 (130) is detected by the door reed sensor (130), in response to the detected change. The incoming trigger signal is sent to the central processing unit via the UART or GPIO line (20) It transmits. In the second triggering method, the user's predefined geographical boundary The start of crossing is determined by the geo-fence GPS module (140). Geo-fence The GPS module (140) sends the trigger signal representing the crossing of the geographical boundary via BLE link 5 It transmits the information to the wristband and operates independently in environments without door sensors. In the third triggering method, the user uses physical keys (80) You can manually start the object verification cycle by pressing the MOD button located between them. It initiates. The haptic sensor strip (70) enables user-performed touch and scrolling. by detecting the inputs, it sends the corresponding electrical input signal to the central processing unit. (20) transmits. Physical keys (80) function as the MOD key and the MEM key. It includes at least two user input elements. The MOD key allows the system to be manually controlled. It enables activation, and the MEM key allows the user to control the object. It generates a confirmation signal indicating that it has been completed. Multiple user profiles Profile selection in the applications it is located in, haptic sensor strip (70) or physical buttons It is carried out via (80). The central processing unit (20) receives the trigger signal from the biometric / IMU sensor 20 It activates the module (30). The biometric / IMU sensor module (30) enables the user Biometric sensors measure the user's instantaneous heart rate and stress index while moving. It incorporates an IMU sensor that measures heart rate data. The obtained heart rate Speed, stress index and motion data are transmitted to the central processing unit (20). Central The processing unit (20) processes the data in question with predetermined biometric threshold values. By comparing, it determines the user's physiological context. The user is calm. If it is determined that this is the case, a warning sequence is initiated at standard intensity. If a high stress index or abnormal heart rate is detected, a warning sequence will be triggered. fast red flashing LED warning status (220) or vibration and LED combination It is started from the warning status (230). 30 12 After determining the biometric context, the central processing unit (20) flashes the local flash It questions behavioral memory (250), which includes storage space. In behavioral memory (250), which objects the user did not carry on which day and time, which objects transported together, at what alert level user consent was obtained, tiered alert duration and the missing object ID is recorded. The central processing unit (20) processes this data in 5 By evaluating through machine learning processes running on the device, it provides user-specific solutions. It determines behavioral patterns. For example, a particular object every Monday morning. If it is determined that the object has been forgotten, the object in question will be the object associated with the relevant day and time. It is automatically added to the list. In this way, the object list only includes those previously added. not according to defined fixed rules, but according to recorded user behavior. 10 It is being updated. Behavioral memory (250) contains profile IDs of multiple user profiles and each Lists of objects associated with profile IDs as separate data records. It stores. The central processing unit (20) determines the selected user profile and 15 NFC verification can only be performed on objects listed with that profile. It operates through this system. Thus, different users and each person can have the same bracelet. It enables the management of different groups of objects linked to the user. After determining the list of objects to be verified, the central processing unit (20) uses NFC 20 It initiates a scanning cycle through the antenna ring (60). The NFC antenna ring (60), to the user's keys, wallet, medication, ID card, documents, bag or similar items It queries the attached NFC tags within an electromagnetic field. Passive NFC The tag (100) receives electromagnetic energy from the NFC antenna ring (60) It is activated and the identity and entity data of the associated object are processed centrally. 25 It transmits to the unit (20). The smart sensor tag (110) has object ID and asset data. Additionally, the label may indicate battery status, tank fill level, or other objects measured by the label. It transmits status data. The central processing unit (20) is in the same validation cycle. received from multiple passive NFC tags (100) and smart sensor tags (110) It processes the data. NFC scanning and evaluation cycle suitable hardware 30 Under these conditions, it is completed in under three seconds. 13 The central processing unit (20) has a list of objects stored in the behavioral memory (250). It compares the objects with the objects that receive a response from the NFC antenna ring (60). Each Whether a tag responds or not is determined by the asset data received from the passive NFC tag (100) and Preparedness score by evaluating the status data received from the smart sensor tag (110) is calculated. The preparation score must be equal to or 5 times the determined threshold value. Its presence indicates that the object validation cycle is complete. Preparation If the score is below the threshold, it means that at least one object in the object list... not found or object status reported by smart sensor tag (110) This indicates that it does not meet the specified condition. If the preparation score is below the threshold value, the central processing unit (20), This activates the gradual warning state machine. Gradual warning state The machine is running a constant green LED warning status (210) at the first level and The LED light strip (10) produces a steady green light for five seconds. This period If no user response is received, the second level, a rapid red flashing light, will illuminate for 15 minutes. The LED warning status (220) is switched to extinguishing. Fast red flashing LED warning. In case (220), the LED light strip (10) flashes increased for five seconds. It produces red light with its frequency. If no user response is received even at the second warning level, the third level, 20, will be activated. The combined vibration and LED warning status (230) is initiated. Combined vibration and LED In the warning state (230), the vibration motor (50) produces a tactile warning while the LED light strip (10) generates a visual alert simultaneously. No response is received from the user again. In this case, the fourth level biometric adaptive alert status (240) is implemented. In the case of biometric adaptive alert (240), 25 from the biometric / IMU sensor module (30). Heart rate and stress index data are reread. Central processing unit (20), According to the re-read biometric data, the vibration intensity of the vibration motor (50), It dynamically adjusts the vibration duration and vibration pattern. In applications where ambient noise data can be used in the system, the central processing unit 30 (20) compares the data in question with the determined noise threshold value. The environment If it is determined that it is silent, the vibration motor (50) uses the standard vibration pattern. 14 instead, a Morse-like haptic stimulus sequence consisting of short and long vibration pulses It produces this warning sequence, vibration determined by the central processing unit (20). It is created using durations and waiting intervals between vibrations. After the user completes the missing object or performs object verification, 5 Pressing the MEM key, which is among the physical keys (80). The signal received from the MEM key. The user confirmation signal activates the user confirmation return loop (260). User approval return loop (260), system from gradual alert status It removes and puts it into a waiting state (200). Missing part of the same verification cycle. object ID, executed alert levels, total alert duration, user confirmation received 10 The date and time, along with user profile information, are recorded in the behavioral memory (250). The data written into behavioral memory (250) are followed by verification. In their cycles, the object list and warning initial level are based on user behavior. It is used in redefinition. 20 30
Claims
REQUESTS 1- The invention is a smart reminder wristband integrated with a context-sensitive tiered alert system. related to; its characteristic is; LED light strip that creates visual warning (10), 5 Processes trigger signals, performs object validation, readiness score central processing unit (20) which calculates and controls alert levels Biometric / IMU that measures user biometric data and movement data sensor module (30), Rechargeable lithium battery (40) that electrically powers the system components, 10 Vibration motor that generates tactile stimulus (50), NFC antenna ring (60) that scans NFC tags associated with objects, Haptic sensor that detects touch input performed by the user strip (70), Physical keys that generate manual trigger and user confirmation signal (80), 15 left wrist strap (90) and right wrist strap connecting the system to the user's wrist (91), passive NFC tag (100) which provides identification data regarding the existence of the object or Provides object status data along with identity data regarding the object's existence. At least one tag selected from the smart sensor tag (110) types, 20 Broadcasting a wireless identification signal over the BLE 5.2 communication protocol BLE beacon (120), Door reed sensor that generates a trigger signal depending on the change in magnetic field (130), Generates a trigger signal based on exceeding a predefined geographical boundary. geo-fence GPS module (140), 25 Standby status (200), steady green LED warning status (210), fast red flashing with deactivation LED warning status (220), vibration and LED combined warning status (230) The graded alert state machine consisting of biometric adaptive alert states (240), Locally saves the user's past object validation and warning data. behavioral memory (250), 30 16 puts the system into standby mode (200) depending on the user confirmation signal and transferring the data of the completed validation cycle to the behavior memory (250) User approval return loop (260) 2- Integrated intelligent reminder 5, context-sensitive tiered alert system mentioned in Claim 1. It is a wristband whose feature is that it measures the user's instantaneous heart rate and stress index. It incorporates a biometric sensor and an IMU sensor that measures the user's movement data. It is characterized by having a biometric / IMU sensor module (30). It is done. 3- Integrated intelligent reminder with context-sensitive tiered alert system mentioned in Claim 1. It has a wristband and its feature is that it receives the trigger signal from the door reed sensor (130) via UART or via the GPIO line, the trigger signal from the geo-fence GPS module (140) Receiving the trigger signal via BLE connection and manual trigger signal from physical keys (80) It is characterized by having a central processing unit (20). 15 4- Integrated intelligent reminder with context-sensitive tiered alert system mentioned in Claim 1. It has a wristband and its feature is that it scans multiple tags within the same verification cycle. NFC antenna ring (60), passive NFC tag (100) which provides object presence data and 20 that provides battery status and / or tank fill level data along with object asset data. It is characterized by having a smart sensor tag (110). 5- Integrated intelligent reminder with context-sensitive tiered alert system mentioned in Claim 1. It has a wristband and its feature is that it keeps the constant green LED warning status (210) for five seconds. If no user response is received, the rapidly flashing red LED warning state is activated. (220), if no user response is received within the following five seconds, vibration and LED combined warning status (230) and user response in a continuous manner central processing that switches to biometric adaptive alert status (240) if not received It is characterized by having a unit (20). 6- Integrated intelligent reminder with context-sensitive tiered alert system mentioned in Claim 1. It is a bracelet whose feature is that it shows the user which object they saw on which day and at what time in the past. 17 not carrying it, at what warning level it approved, the tiered warning period and missing saving the object ID to local flash storage and that data behavioral memory that works to create user-specific behavior patterns (250) It is characterized by having 7- Integrated intelligent reminder with context-sensitive tiered alert system mentioned in Claim 6. It is a wristband, and its feature is that it holds the profile IDs of multiple user profiles and each storing lists of objects associated with profile IDs as separate data records It is characterized by having behavioral memory (250). 8- The invention is a context-sensitive, tiered alert system integrated into a smart reminder wristband. It is a method for its use, and its characteristic is; door reed sensor (130), geo-fence GPS module (140) or physical keys (80) the trigger signal generated by the central processing unit (20) to be taken, 15 upon receipt of the trigger signal from the biometric / IMU sensor module (30) Reading the user's real-time heart rate, stress index, and activity data, by querying the user behavior pattern recorded in the behavioral memory (250) Determining the list of objects to be verified, Passive NFC tags associated with objects (100) and / or smart sensors 20 Scanning of the tags (110) through the NFC antenna ring (60), Object ID and object status data obtained from NFC tags by evaluating and calculating the preparation score, Gradual warning if the preparation score is below the determined threshold value. Execution of the state machine, 25 initial level and intensity of the graded warning status machine Identification based on biometric data, Data from the verification cycle upon receipt of the user confirmation signal recording into the behavioral memory (250) and the system's standby state (200) It includes the steps involved in the process of passing through. 30 18 9- The method mentioned in claim 8, its characteristic feature is; the door and / or door handle magnetic field change caused by movement of the door reed sensor (130) Detection by the geo-fence GPS module (140) of the geographical boundary crossing Generating a trigger signal upon detection or pressing the MOD button (80) It is characterized by including process steps. 5 10- The method mentioned in Claim 8, its characteristic is; from the biometric / IMU sensor module. (30) heart rate and stress index read with the determined biometric threshold values Comparison and rapid gradual warning status of the machine when threshold exceedance is detected. red flashing LED warning status (220) or vibration and LED combined warning 10 It is characterized by the fact that it includes the steps of initiating the process from the situation (230). 11- The method mentioned in claim 8, its feature is; passive NFC tag (100) object the object presence data from the smart sensor tag (110) and the battery together with the object presence data. Obtaining status and / or container occupancy rate data and preparing said data 15 It is characterized by including the steps involved in the process for being included in the score. 12- The method mentioned in claim 8, its characteristic is; a constant green LED warning state. (210) If the user does not respond after five seconds, a rapid red flashing light will appear. User response to the off LED warning condition (220) within the following five seconds 20 If not taken, the vibration and LED combined warning state (230) and the user If no response is received consistently, the biometric adaptive alert status will be activated. (240) is characterized by the fact that it includes the steps of the process of passing through. 13- The method mentioned in claim 12, its characteristic is; in the case of biometric adaptive alert 25 (240) Rereading of biometric data from biometric / IMU sensor module (30) and the vibration intensity, vibration duration and vibration pattern of the vibration motor (50) The process is adjusted by the central processing unit (20) according to the biometric data read. It is characterized by the fact that it includes steps. 14- The method mentioned in claim 8 is characterized by being locally in behavioral memory (250). The stored day, hour and missing object data are processed by the central processing unit (20). 19 the processing, the object to be verified corresponding to the defined behavioral pattern depending on whether it is added to the list and the user confirmation signal received from the MEM key (80) Missing object ID, alert level, alert duration, confirmation date, and verification cycle information. The process of saving the confirmation time data to the behavior memory (250) includes the steps of the process. It is characterized by 5. 15 25