Monitoring system of intelligent medicine box
Through the intelligent drug box monitoring system, using technologies such as linear Hall sensors and wireless control modules, the problem of middle-aged and elderly people being easily missed or mistaken during medication, and the reliability and timeliness of taking medication are achieved.
Patent Information
- Application Number
- CN202420880434.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-04-26
AI Technical Summary
Due to forgetfulness and irregular life, middle-aged and elderly people are prone to missed or mistaken when taking long-term treatment or preventive drugs, resulting in adverse effects on the condition.
A monitoring system for intelligent medicine box is designed, using linear Hall sensors for dynamic identification and monitoring, combining wireless control modules, timing modules and reminder modules to realize remote reminder of medicine box, body flash lights and buzz reminder.
Through the intelligent drug box monitoring system, it can effectively prevent misoperation of drugs, ensure that patients take medication on time and in dosage, and improve the reliability and timeliness of taking medication through remote reminders and body reminders.
Smart Images

Figure CN222854260U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of monitoring equipment, in particular to a monitoring system for an intelligent medicine box. Background Art
[0002] With the development of medical technology, the cure rate of many diseases has gradually increased, but there are still many diseases that cannot be completely cured. Patients need to take drugs regularly for long-term treatment or prevention. Even for diseases that can be cured, they need to take drugs according to doctor's instructions during the treatment period to be cured. However, due to forgetfulness, irregular life, busy work and other reasons, people often miss or take the wrong drugs. Especially in Europe and the United States, when pharmacies sell drugs, they are packaged and sold according to the number of days in the cycle. The drugs for a cycle are put into the medicine box and then taken out when they need to be taken. For some middle-aged and elderly people with declining memory and reaction ability, forgetting to take medicine or forgetting to prepare medicine often happens, and children cannot monitor the middle-aged and elderly people if they are not in the same place, which will have an adverse effect on the condition. Summary of the invention
[0003] In view of the shortcomings of the prior art, the purpose of the utility model is to provide a monitoring system for an intelligent medicine box with a simple circuit. It uses a linear Hall sensor to perform dynamic identification and monitoring to prevent misoperation. At the same time, it can not only remotely remind the terminal device, but also remind through flashing lights and buzzing sounds on the medicine box itself.
[0004] In order to achieve the above-mentioned purpose, the technical solution adopted by the utility model is as follows: a monitoring system for a smart medicine box, including a power module and a wireless control module, a linear Hall sensor, a timing module, and a reminder module connected to the power module, wherein the power module is used to output a stable voltage, the wireless control module is connected to the timing module, the linear Hall sensor, and the reminder module, the timing module is used to set the user's medication time and transmit a signal to the wireless control module, the reminder module is used to issue a reminder when the user's medication time arrives, prompting the user to open the medicine box to take the medicine, the linear Hall sensor is used to monitor whether the medicine box is opened in place and feedback a signal to the wireless control module, and the wireless control module interacts with the terminal device via wireless transmission.
[0005] As a preferred solution, the power supply module includes an input power supply and a linear voltage-regulated power supply, and the input power supply outputs a stable voltage through the linear voltage-regulated power supply.
[0006] As a preferred solution, the input power source is a battery, the battery is connected to a battery interface and a battery voltage collection circuit, the battery is connected to the battery voltage collection circuit through the battery interface, and the battery voltage collection circuit is connected to the wireless control module.
[0007] As a preferred solution, the input power supply also includes an external power supply module and a battery-powered switching circuit, the input end of the battery-powered switching circuit is connected to the external power supply module or the battery, and the output end of the battery-powered switching circuit is connected to a linear regulated power supply.
[0008] As a preferred solution, the wireless control module is also connected to a reset module, and the reset module is connected to a linear regulated power supply.
[0009] As a preferred solution, the linear Hall sensor is connected to a linear regulated power supply.
[0010] As a preferred solution, the timing module is connected to a linear voltage-regulated power supply.
[0011] As a preferred solution, the reminder module includes an indicator light circuit and a buzzer circuit, and the indicator light circuit and the buzzer circuit are respectively connected to a linear regulated power supply.
[0012] As a preferred solution, the wireless control module is also connected to a storage module, and the storage module is connected to a linear voltage-regulated power supply.
[0013] As a preferred solution, the wireless control module is also connected to a debugging port, and the debugging port is connected to a linear regulated power supply.
[0014] Compared with the prior art, the utility model has the following beneficial effects: the utility model has a simple circuit, performs dynamic identification and monitoring through a linear Hall sensor to prevent misoperation, and can not only remotely remind the terminal device, but also remind through flashing lights and buzzing sounds on the medicine box itself. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a circuit principle block diagram of the utility model;
[0016] Figure 2 It is a circuit diagram of the wireless control module in the utility model;
[0017] Figure 3 It is a circuit diagram of the linear voltage-stabilized power supply in the utility model;
[0018] Figure 4 It is a circuit diagram of the storage battery in the utility model;
[0019] Figure 5 It is a circuit diagram of the battery interface in the utility model;
[0020] Figure 6 It is a circuit diagram of a battery voltage acquisition circuit in the utility model;
[0021] Figure 7It is a circuit diagram of the external power supply module in the utility model;
[0022] Figure 8 It is a circuit diagram of a battery powered switching circuit in the utility model;
[0023] Fig. 9 It is a circuit diagram of the reset module in the utility model;
[0024] Fig.10 It is a circuit diagram of the linear Hall sensor in the utility model;
[0025] Fig.11 It is a circuit diagram of the timing module in the utility model;
[0026] Fig.12 It is a circuit diagram of the indicator light circuit in the utility model;
[0027] Fig.13 It is a circuit diagram of the buzzer circuit in the utility model;
[0028] Fig.14 It is a circuit diagram of the storage module in the utility model;
[0029] Fig.15 It is a circuit diagram of the debugging port in the utility model. DETAILED DESCRIPTION
[0030] The present invention is further described below in conjunction with specific embodiments. The following embodiments are only used to more clearly illustrate the technical solution of the present invention, and cannot be used to limit the protection scope of the present invention.
[0031] Example:
[0032] like Figure 1 As shown, a monitoring system for a smart medicine box includes a power module and a wireless control module, a linear Hall sensor, a timing module, and a reminder module connected to the power module. The power module is used to output a stable voltage. The wireless control module is connected to the timing module, the linear Hall sensor, and the reminder module. The timing module is used to set the user's medication time and transmit a signal to the wireless control module. The reminder module is used to issue a reminder when the user's medication time arrives, prompting the user to open the medicine box to take the medicine. The linear Hall sensor is used to monitor whether the medicine box is fully opened and feedback a signal to the wireless control module. The wireless control module interacts with the terminal device through wireless transmission.
[0033] Specifically, Figure 2As shown, in this embodiment, the wireless control module adopts the Bluetooth integrated chip of HJ-180IMHV1.0 model of Hongjia Electronics, the SWDCLK pin of the wireless control module leads to the SWCLK pin, the P0.17 pin of the wireless control module leads to the SDA pin, the P0.24 pin of the wireless control module leads to the SCL pin, the P0.12 pin of the wireless control module leads to the INT pin, the P0.08 pin of the wireless control module leads to the SPI MISO pin, the P0.11 pin of the wireless control module leads to the SPI CS pin, the VCC_IN pin of the wireless control module leads to the D3V voltage pin, the P0.05 / AIN3 pin of the wireless control module leads to the SPI MOSI pin, the P0.01 / XL2 pin of the wireless control module leads to the SPI CLK pin, the P0.03 / AIN1 pin of the wireless control module leads to the Battery ADC pin, and the P0.04 / AIN2 pin of the wireless control module leads to the H OUT pin, P0.00 / XL1 pin of the wireless control module leads to RESET pin, GND pin of the wireless control module leads to GND pin, SWDIO pin of the wireless control module leads to SWDIO pin, P0.20 pin of the wireless control module leads to BZ pin, P0.16 pin of the wireless control module leads to B pin, P0.15 pin of the wireless control module leads to G pin, and P0.18 pin of the wireless control module leads to R pin.
[0034] More specifically, the wireless control module is connected to the terminal device through the Bluetooth communication integrated in the wireless control module. The wireless control module of the utility model includes the aforementioned Bluetooth integrated chip but is not limited to the wireless method of Bluetooth. It can also be a wireless method such as WIFI. The utility model is applied to a smart medicine box, and the terminal device can remotely monitor and remind the smart medicine box through the APP.
[0035] Preferably, the power supply module includes an input power supply and a linear voltage-regulated power supply, and the input power supply outputs a stable voltage through the linear voltage-regulated power supply.
[0036] Specifically, Figure 3 The figure shows a circuit diagram of a linear regulated power supply, wherein the linear regulated power supply adopts an AMS1117-3.3_C347256 chip, wherein a VCC pin is led out from the input end of the linear regulated power supply, and a D3V voltage pin is led out from the output end of the linear regulated power supply, wherein the D3V voltage pin of the linear regulated power supply is connected to the D3V voltage pin of the wireless control module.
[0037] More preferably, the input power source is a battery, the battery is connected to a battery interface and a battery voltage collection circuit, the battery is connected to the battery voltage collection circuit via the battery interface, and the battery voltage collection circuit is connected to the wireless control module.
[0038] Specifically, Figure 4 The circuit diagram of the battery is shown. The battery outputs a DC voltage, the positive electrode of the battery leads to the VBAT pin, and the negative electrode of the battery is grounded.
[0039] Specifically, Figure 5 The figure shows a circuit diagram of a battery interface, wherein the battery interface leads out a VBAT pin and a GND pin, the VBAT pin of the battery interface is connected to the VBAT pin of the battery, and the GND pin of the battery interface is connected to the GND pin of the battery.
[0040] Specifically, Figure 6 The figure shows a circuit diagram of a battery voltage acquisition circuit, wherein the battery voltage acquisition circuit leads to a VBAT pin and a Battery ADC pin, the VBAT pin of the battery voltage acquisition circuit is connected to the VBAT pin of the battery interface, and the Battery ADC pin of the battery voltage acquisition circuit is connected to the Battery ADC pin of the wireless control module.
[0041] More specifically, the battery interface is a connection terminal of a storage battery, and the battery voltage acquisition circuit acquires a voltage signal and sends it to the wireless control module, thereby monitoring the power level of the storage battery.
[0042] Preferably, the input power supply also includes an external power supply module and a battery-powered switching circuit, the input end of the battery-powered switching circuit is connected to the external power supply module or the battery, and the output end of the battery-powered switching circuit is connected to the linear regulated power supply.
[0043] Specifically, the external power supply module can adopt wireless power supply or wired power supply. In this embodiment, the input power used is a 5V / 1A charging head.
[0044] More specifically, Figure 7 The figure shows a circuit diagram of an external power supply module, which uses a TYPEC-250D-BCP6 chip and leads to a VBUS pin.
[0045] More specifically, Figure 8 The figure shows a circuit diagram of a battery-powered switching circuit, wherein the battery-powered switching circuit switches between battery power supply and external power supply module power supply through the SW2 selection switch, wherein the input end of the battery-powered switching circuit leads to a VBUS pin and a VBAT pin, and the output end of the battery-powered switching circuit leads to a VCC pin, wherein the VBUS pin of the battery-powered switching circuit is connected to the VBUS pin of the external power supply module, the VBAT pin of the battery-powered switching circuit is connected to the VBAT pin of the battery interface, and the VCC pin of the battery-powered switching circuit is connected to the VCC pin of the linear regulated power supply.
[0046] Preferably, the wireless control module is also connected to a reset module, and the reset module is connected to a linear regulated power supply.
[0047] Specifically, Fig. 9 The figure shows a circuit diagram of a reset module, wherein the reset module leads to a D3V voltage pin and a RESET pin, wherein the D3V voltage pin of the reset module is connected to the D3V voltage pin of a linear voltage regulated power supply, and the RESET pin of the reset module is connected to the RESET pin of a wireless control module.
[0048] Preferably, the linear Hall sensor is connected to a linear regulated power supply.
[0049] Specifically, the linear Hall sensor is used to monitor whether the user has fully opened the medicine box. If the medicine box is fully opened, it indicates that the user has taken the medicine normally instead of making a mistake. The signal is fed back to the wireless control module and can also be synchronized to the terminal device for health management.
[0050] More specifically, Fig.10 The circuit diagram of the linear Hall sensor is CH601ATB. The VDD pin of the linear Hall sensor leads to the D3V voltage pin, and the OUT pin of the linear Hall sensor leads to the H OUT pin. The D3V voltage pin of the linear Hall sensor is connected to the D3V voltage of the linear regulated power supply, and the H OUT pin of the linear Hall sensor is connected to the H OUT pin of the wireless control module.
[0051] Preferably, the timing module is connected to a linear voltage-regulated power supply.
[0052] Specifically, the timing module is used to synchronize the time when the medicine box is opened to record information more accurately.
[0053] More specifically, Fig.11 This is a circuit diagram of a timing module, wherein the timing module adopts a JSM8563T chip, wherein the VDD pin of the timing module leads to a D3V voltage pin, the INT# pin of the timing module leads to an INT pin, the SCL pin of the timing module leads to an SCL pin, and the SDA pin of the timing module leads to an SDA pin, wherein the D3V voltage pin of the timing module is connected to the D3V voltage pin of a linear regulated power supply, and the INT pin, SCL pin, and SDA pin of the timing module are respectively connected to the INT pin, SCL pin, and SDA pin of the wireless control module.
[0054] Preferably, the reminder module includes an indicator light circuit and a buzzer circuit, and the indicator light circuit and the buzzer circuit are respectively connected to a linear regulated power supply.
[0055] Specifically, the reminder module is arranged on the medicine box body, and reminds the user to take the medicine by flashing the indicator light of the indicator light circuit or beeping the buzzer of the buzzer circuit. At the same time, the reminder module can also be used for power reminder.
[0056] More specifically, Fig.12 It is a circuit diagram of an indicator light circuit, wherein the indicator light circuit leads to a D3V voltage pin, a B pin, a G pin, and an R pin, wherein the D3V voltage pin of the indicator light circuit is connected to the D3V pin of the linear regulated power supply, and the B pin, G pin, and R pin of the indicator light circuit are respectively connected to the B pin, G pin, and R pin of the wireless control module.
[0057] More specifically, Fig.13 It is a circuit diagram of a buzzer circuit, wherein the D3V voltage pin and the BZ pin led out by the buzzer circuit are connected to the D3V voltage pin of the linear voltage regulated power supply, and the BZ pin of the buzzer circuit is connected to the BZ pin of the wireless control module.
[0058] Preferably, the wireless control module is also connected to a storage module, and the storage module is connected to a linear voltage-regulated power supply.
[0059] Specifically, Fig.14 The circuit diagram of the storage module is shown in FIG. 2 . The storage module adopts the W25Q16JVSNIQ_C2456211 chip and is used to store the time data of the user taking medicine. The storage module leads to the D3V voltage pin, SPI CS pin, SPI MISO pin, SPI CLK pin, and SPI MOSI pin. The D3V voltage pin of the storage module is connected to the D3V voltage pin of the linear voltage regulated power supply, and the SPI CS pin, SPI MISO pin, SPI CLK pin, and SPI MOSI pin of the storage module are respectively connected to the SPI CS pin, SPI MISO pin, SPI CLK pin, and SPI MOSI pin of the wireless control module.
[0060] Preferably, the wireless control module is also connected to a debugging port, and the debugging port is connected to a linear regulated power supply.
[0061] Specifically, Fig.15 The figure shows the circuit diagram of the debug port, wherein the debug port leads to a D3V voltage pin, a SWDIO pin, and a SWCLK pin, wherein the D3V voltage pin of the debug port is connected to the D3V voltage pin of the linear regulated power supply, and the SWDIO pin and SWCLK pin of the debug port are respectively connected to the SWDIO pin and SWCLK pin of the wireless control module for initial debugging.
[0062] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A monitoring system for a smart medicine box, characterized in that: It includes a power module and a wireless control module, a linear Hall sensor, a timing module, and a reminder module connected to the power module. The power module is used to output a stable voltage. The wireless control module is connected to the timing module, the linear Hall sensor, and the reminder module. The timing module is used to set the user's medication time and transmit a signal to the wireless control module. The reminder module is used to issue a reminder when the user's medication time arrives, prompting the user to open the medicine box to take the medicine. The linear Hall sensor is used to monitor whether the medicine box is fully opened and feedback a signal to the wireless control module. The wireless control module interacts with the terminal device through wireless transmission.
2. The monitoring system of a smart medicine box according to claim 1, characterized in that: The power supply module includes an input power supply and a linear voltage-stabilized power supply, and the input power supply outputs a stable voltage through the linear voltage-stabilized power supply.
3. The monitoring system of a smart medicine box according to claim 2, characterized in that: The input power source is a battery, the battery is connected to a battery interface and a battery voltage collection circuit, the battery is connected to the battery voltage collection circuit through the battery interface, and the battery voltage collection circuit is connected to the wireless control module.
4. The monitoring system of a smart medicine box according to claim 3, characterized in that: The input power supply also includes an external power supply module and a battery power supply switching circuit. The input end of the battery power supply switching circuit is connected to the external power supply module or the battery, and the output end of the battery power supply switching circuit is connected to the linear regulated power supply.
5. The monitoring system of a smart medicine box according to claim 2, characterized in that: The wireless control module is also connected to a reset module, and the reset module is connected to a linear voltage-regulated power supply.
6. The monitoring system of a smart medicine box according to claim 2, characterized in that: The linear Hall sensor is connected to a linear voltage-regulated power supply.
7. The monitoring system of a smart medicine box according to claim 2, characterized in that: The timing module is connected to a linear voltage-regulated power supply.
8. The monitoring system of a smart medicine box according to claim 2, characterized in that: The reminder module includes an indicator light circuit and a buzzer circuit, and the indicator light circuit and the buzzer circuit are respectively connected to a linear voltage-regulated power supply.
9. The monitoring system of a smart medicine box according to claim 2, characterized in that: The wireless control module is also connected to a storage module, and the storage module is connected to a linear voltage-regulated power supply.
10. The monitoring system of a smart medicine box according to claim 2, characterized in that: The wireless control module is also connected to a debugging port, and the debugging port is connected to a linear voltage-regulated power supply.