DISPLAY METHOD OF INTELLIGENT MEMORY AND STRUCTURE THEREOF
20230350600 · 2023-11-02
Inventors
Cpc classification
G06F3/0604
PHYSICS
G06F3/0679
PHYSICS
International classification
Abstract
The present invention provides a display method and structure of an intelligent memory, which is a temperature detection method and structure, which is used in a memory device, of which the memory device includes a substrate, a thermal sensor, a plurality of memory chips, a micro-control unit, and a notification module. The steps include generating at least one temperature data according to the temperature of the plurality of memory chips sensed by the thermal sensor, transmitting the at least one temperature data to the micro-control unit, and the micro-control unit determining whether the at least one temperature data exceeds a first threshold, When at least one temperature data exceeds the first threshold, the micro-control unit transmits a first control signal to a notification module, which can further be used for the method and structure for displaying real-time information.
Claims
1. A display method of an intelligent memory used for a memory device, wherein the memory device comprising a substrate, a thermal sensor, a plurality of memory chips, a micro-control unit and a notification module, and the thermal sensor, memory chips, micro-control unit and notification module are equipped on the substrate, wherein the steps of the intelligent memory temperature monitoring method comprising: generating at least one temperature data according to the temperature of the memory chips detected by the thermal sensor; determining whether the at least one temperature data is not less than a first threshold when the at least one temperature data is transmitted to the micro-control unit; and transmitting a first control signal to a notification module from the micro-control unit when the at least one temperature is not less than the first threshold.
2. The display method of an intelligent memory of claim 1, wherein in said step of transmitting a first control signal to a notification module from the micro-control unit when the at least one temperature is not less than the first threshold, comparing the at least one temperature and a second threshold by the micro-control unit, and transmitting the first control signal to the notification module by the micro-control unit if the at least one temperature is less than a second threshold.
3. The display method of an intelligent memory of claim 1, wherein in said step of transmitting a first control signal to a notification module by the micro-control unit when the at least one temperature is not less than the first threshold, when the at least one temperature is not less than the second threshold, further comparing the at least one temperature data and a third threshold by the micro-control unit, and transmitting a second control signal to the notification module by the micro-control unit if the at least one temperature data is not less than a third threshold, or transmitting a third control signal to the notification module by the micro-control unit if the at least one temperature data is less than a third threshold.
4. The display method of an intelligent memory of claim 1, wherein the notification module comprising a first light-emitting device; and the first light-emitting device emits light with the first corresponding color when the notification module receives the first control signal.
5. The display method of an intelligent memory of claim 3, wherein the notification module comprising a second light-emitting device and a third light-emitting device, and the second light-emitting device emits light with the second corresponding color when the notification module receives the second control signal, and the third light-emitting device emits light with the third corresponding color when the notification module receives the third control signal.
6. The display method of an intelligent memory of claim 1, wherein the notification module comprising a buzzer, and the buzzer generates a first sound when the notification module receives the first control signal; the buzzer generates a second sound when the notification module receives the second control signal; and the buzzer generates a third sound when the notification module receives the third control signal.
7. The display method of an intelligent memory of claim 1, wherein the memory device is a volatile memory, a non-volatile memory, or a solid state drive.
8. The display method of an intelligent memory of claim 1, wherein the memory device is electrically connected to a motherboard, and a CPU transmits a control command to the memory device through the motherboard.
9. An intelligent memory comprising: a substrate, which is equipped with a micro-control unit and a plurality of memory chips, wherein the micro-control unit is electrically connected to the memory chips; a thermal sensor, which is deposited on the substrate and is electrically connected to the micro-control unit to detect one of the memory chips; and a notification module, which is deposited on the substrate and is electrically connected to the micro-control unit, wherein the micro-control unit receives at least one temperature from the thermal sensor; and the micro-control unit transmits a first control signal to the notification module when the at least one temperature is not less than a first threshold.
10. The intelligent memory of claim 9, wherein in said step of transmitting a first control signal to a notification module by the micro-control unit when the at least one temperature is not less than the first threshold, the micro-control unit determines that whether the at least one temperature is less than a second threshold, and if so, the micro-control unit transmits the first control signal to the notification module.
11. The intelligent memory of claim 9, wherein in said step of the micro-control unit transmits a first control signal to the notification module when the at least one temperature is not less than a first threshold, further comparing the at least one temperature and a third threshold by the micro-control unit when the at least one temperature is not less than the second threshold, and transmitting a second control signal to the notification module by the micro-control unit if the at least one temperature is not less than the third threshold, or the micro-control unit transmits a third control signal to the notification module by the micro-control unit if the at least one temperature is less than the third threshold.
12. The intelligent memory of claim 9, wherein the notification module comprising a first light-emitting device, and the light-emitting devices emit light with a first corresponding color when the notification module receives the first control signal.
13. The intelligent memory of claim 11, wherein the notification module comprising a second light-emitting device and a third light-emitting device; the light-emitting device emits light with a second corresponding color when the notification module receives the second control signal; and the light-emitting device emits light with a third corresponding color when the notification module receives the third control signal.
14. The intelligent memory of claim 11, wherein the notification module comprising a buzzer, and the buzzer generates a first sound when the notification module receives the first control signal, and the buzzer generates a second sound when the notification module receives the second control signal, and the buzzer generates a third sound when the notification module receives the third control signal.
15. The intelligent memory of claim 9, wherein the intelligent memory is a volatile memory, a non-volatile memory or a solid state drive.
16. The intelligent memory of claim 9, wherein the intelligent memory is electrically connected to a motherboard, and a CPU unit transmits a control command to the memory device through the motherboard.
17. A display method of an intelligent memory used for a memory device, wherein the memory device is electrically connected to a motherboard, the motherboard is electrically connected to a CPU, and the memory device comprising a substrate, a micro-control unit, and a notification module, and the micro-control unit and the notification module are equipped on the substrate, wherein the steps of the intelligent memory monitoring method comprising: sending a real-time signal to the motherboard via a server by an electronic device, wherein the motherboard receives the real-time signal by running a software by the CPU; transmitting a signal to the micro-control unit by the CPU; and transmitting a control signal by the micro-control unit to activate the notification module.
18. The display method for the intelligent memory of claim 17, wherein the software is a real-time messaging software or a game software.
19. The display method for the intelligent memory of claim 17, wherein the notification module comprising a first light-emitting device, a second light-emitting device, and a third light-emitting device, and the first light-emitting device, second light-emitting device and third light-emitting device emit light with a corresponding color when the notification module receives the control signal.
20. The display method for the intelligent memory of claim 17, wherein the notification module comprising a buzzer, and the buzzer generates a corresponding sound when the notification module receives the control signal.
21. The display method for the intelligent memory of claim 17, wherein the memory device is a volatile memory, a non-volatile memory, or a solid state drive.
22. An intelligent memory, which is electrically connected to a motherboard and the motherboard is electrically connected to a CPU, the intelligent memory comprising: a substrate, equipped with a micro-control unit; and a notification module, which is deposited on the substrate and is electrically connected to the micro-control unit; wherein an electronic device transmits a real-time signal to the motherboard via a server, and the motherboard receives the real-time signal by running a software by the CPU, and the CPU transmits a signal to the micro-control unit, and the micro-control unit transmits a control signal to activate the notification module.
23. The intelligent memory of claim 22, wherein the software is a real-time communication software or a game software.
24. The intelligent memory of claim 22, wherein the notification module comprising a first light-emitting device, a second light-emitting device, and a third light-emitting device, wherein the first light-emitting device, the second light-emitting device and the third light-emitting device emit lights with a corresponding color when the notification module receives the control signal.
25. The intelligent memory of claim 22, wherein the notification module comprising a buzzer; and the buzzer generates a corresponding sound when the notification module receives the control signal.
26. The intelligent memory of claim 22, wherein the intelligent memory is a volatile memory, a non-volatile memory, or a solid state drive.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0042]
[0043]
[0044]
[0045]
[0046]
[0047]
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
DETAILED DESCRIPTION
[0054] Although the conventional memory has the design of a light-emitting structure, yet, it is only used for appearance changes, there is no self-monitoring system to monitor whether the memory temperature exceeding the threshold, making user unable to immediately sense the too-high-temperature state of the memory.
[0055] The invention provides an intelligent memory, the memory itself is equipped with the thermal sensor to sense the memory temperature, the sensed temperature is compared by the micro-control unit, and the corresponding control signal is sent to the notification module, which cooperates with the threshold, RGB color mixing setting of the light-emitting device and buzzer setting set by previous user by corresponding software. The computer CPU transmits the setting result as a signal to the micro-control unit of the memory through a signal line, or to the solid state drive controller through another signal line; then, the solid state drive controller transmits the signal to the micro-control unit of the solid state drive. The notification module makes the internal light-emitting device and the buzzer respond according to the corresponding control signal provided by the micro-control unit. Then, it achieves the effect of real-time notifying the user when the memory temperature is too high.
[0056] In the following articles, the invention will make detailed description by graphically illustrating different embodiments of the invention. However, the concepts of the invention can be embodied in many different forms and should not be limited to the exemplary embodiments set forth herein.
[0057] First, refer to
[0058] Step S10: At Thermal sensor 103 senses the temperatures of a plurality of memory chips 104 and generates at least one temperature data 1041;
[0059] Step S20: The thermal sensor 103 transmits at least one temperature data 1041 to a micro-control unit 102;
[0060] Step S30: The micro-control unit 102 determines whether at least one temperature data 1041 exceeds a first threshold 21, and if so, run step S31, otherwise, returns to step S10; and
[0061] Step S31: The micro-control unit 102 transmits a first control signal 211 to a notification module 105.
[0062] Referring to
[0063] Referring to
[0064] As shown in step S20, the thermal sensor 103 will generate the at least one temperature data 1041 and transmit it to the micro-control unit 102.
[0065] As shown in step S30, the micro-control unit 103 compares the at least one temperature data 1041 with the first threshold 21 and determines whether the at least one temperature data 1041 exceeds the first threshold 21, and if so, run step S31, otherwise, go back to step S10, of which the first threshold 21 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 on the motherboard 1 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0066] As shown in step S31, the micro-control unit 103 will transmit the first control signal 211 to the notification module 105.
[0067] The thermal sensor 103 is set in the memory device 10 in the first embodiment of the invention; the memory device 10 can sense the temperature of the memory device 10 itself, and transmit the temperature to the notification module 105 in a real-time manner to solve the conventional needs that the temperature of the memory can be detected by the sensor set in the computer, such as detecting the temperatures of volatile memory, non-volatile memory and solid state drive and the availability/health status.
[0068] Continuing the above, refer to
[0069] The steps of the second embodiment of the invention are as follows: [0070] Step S30: The micro-control unit 102 determines whether at least one temperature data 1041 exceeds a first threshold 21, and if so, run step S31 and step S40, otherwise, returns to step S10; [0071] Step S31: The micro-control unit 102 transmits a first control signal 211 to a notification module 105; [0072] Step S32: The notification module 105 generates a first corresponding color 212 according to the first control signal 211; [0073] Step S40: The micro-control unit 102 determines whether at least one temperature data 1041 is less than a second threshold 22, and if so, run step S31; if no, run step S50; [0074] Step S50: The micro-control unit 102 determines whether at least one temperature data 1041 is less than a third threshold 23, and if so, run step S51; if no, run step S60; [0075] Step S51: The micro-control unit 102 transmits a second control signal 221 to the notification module 105; [0076] Step S52: The notification module 105 generates a second corresponding color 222 according to the second control signal 221; [0077] Step S60: The micro-control unit 102 transmits a third control signal 231 to the notification module 105; [0078] Step S61: The notification module 105 generates a third corresponding color 232 according to the third control signal 231.
[0079] Referring to
[0080] Referring to
[0081] Step S31 is identical to the previous embodiment and will not be iterated once again.
[0082] As shown in step S32, the notification module 105 comprising the first light-emitting device 1051, the second light-emitting device and the third light-emitting device 1053; the notification module 105 makes this first light-emitting device 1051 to emits light with a first corresponding color 212 according to the first control signal 211, of which the first corresponding color 212 has been set by the user by initiating a corresponding computer program before starting the process, and the CPU 11 transmits the setting result to the micro-control unit 103 through the signal line, or the CPU 11 transmits it to the solid state drive controller through a signal line, then, the solid state drive controller transmits it to the micro-control unit 103 of the solid state drive.
[0083] As shown in step S40, the micro-control unit 103 compares the at least one temperature data 1041 with a second threshold 22, and determines whether the at least one temperature data 1041 is less than the second threshold 22, and if so, run step S31, otherwise, run step S50, of which the second threshold 22 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0084] As shown in step S50, the micro-control unit 103 compares the at least one temperature data 1041 with a third threshold 23, and determines whether the at least one temperature data 1041 is less than the third threshold 23, and if so, run step S51, otherwise, run step S53, of which the third threshold 23 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0085] As shown in step S51, the micro-control unit 103 transmits a second control signal 221 to the notification module 105.
[0086] As shown in step S52, the notification module 105 emits light with a second corresponding color 222 according to the second control signal 221 and the second light-emitting device 1052, of which the second corresponding color 222 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0087] As shown in step S60, the micro-control unit 103 will transmit a third control signal 231 to the notification module 105.
[0088] As shown in step S61, the notification module 105 makes the third light-emitting device 1053 emit light with a third corresponding color 232 according to the third control signal 231, of which the third corresponding color 232 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0089] The thermal sensor 103 is equipped in the memory device 10 in the second embodiment of the invention; the memory device 10 can sense the temperature of the memory device 10 by itself, and detects the temperature of the memory device 10 in real-time manner through a notification module 105. The first light-emitting device 1051, second light-emitting device 1052 and third light-emitting device 1053 inside the notification module 105 will notify the user and solve the conventional needs of obtaining the temperatures through checking the status of computer parts; user thus can know the temperature status of the memory device 10 and determine whether to cool down and other processing in a real-time manner, which can solve the problem that user cannot immediately respond to the memory damage when the memory temperature is too high, such as detecting the temperatures of volatile memory, non-volatile memory and solid state drive and the temperatures, availability/health status.
[0090] Continuing the above, please refer to
[0091] The steps of the third embodiment of the invention are as follows: [0092] Step S33: The notification module 105 generates a first sound 213 according to the first control signal 211; [0093] Step S53: The notification module 105 generates a second sound 223 according to the second control signal 221; [0094] Step S62: The notification module 105 generates a third sound 233 according to the third control signal 231.
[0095] Referring to
[0096] Referring to
[0097] As shown in step S53, the notification module 105 makes the buzzer 1054 generate a second sound 223 according to the second control signal 221, of which the second sound 223 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0098] As shown in step S62, the notification module 105 makes the buzzer 1054 generate a third sound 233 according to the third control signal 231, of which the third sound 233 has been set by the user to start the corresponding program of the computer before the process starts, and the CPU 11 transmits the setting result to the micro-control unit 103 by a signal line, or the CPU 11 transmits it to the solid state drive controller through the signal line; then, the solid state drive controller transmits the signal to the micro-control unit 103 of the solid state drive.
[0099] The thermal sensor 103 is equipped in the memory device 10 in the third embodiment of the invention; the memory device 10 can sense the temperature of the memory device 10 by itself, and detect the temperature of the memory device 10 in a real-time manner through a notification module 105. The buzzer 1054 in the notification module 105 notifies the user and solve the conventional needs of obtaining the temperatures through checking the status of computer parts; user thus can know the temperature status of the memory device 10 and determine whether to cool down and other processing in a real-time manner, which can solve the problem that user cannot immediately respond to the memory damage when the memory temperature is too high, such as detecting the temperatures of volatile memory, non-volatile memory and solid state drive and the temperatures, availability/health status.
[0100] In the invention, the first light-emitting device 1051, second light-emitting device 1052 and third light-emitting device 1053 in the notification module 105 of the second embodiment and the buzzer 1054 in the notification module 105 of the third embodiment can be used in an associated way.
[0101] Referring to
[0105] Referring to
[0106] Referring to
[0107] As shown in step 80, the CPU 11 inside the motherboard 1 runs a software 111 to receive the real-time signal 41 from the server 4.
[0108] As shown in step 90, the CPU 11 generates a signal 112 and transmits it to the micro-control unit 102.
[0109] As shown in step 100, the micro-control unit 102 transmits a control signal 113 to activate the notification module 105.
[0110] When the motherboard 1 in the fourth embodiment of the invention receives a communication software message notification from the electronic device 3, it receives the message through the CPU 11 and transmits the signal 112 to the micro-control unit 102; the micro-control unit 102 then transmits the control signal 113 to the notification module 105 to solve the conventional problem that the memory device 10 cannot use user's communication software to obtain the real-time message.
[0111] Continuing the above, refer to
[0112] The fifth embodiment of the invention step is as follows: [0113] Step S110: The notification module 105 generates a corresponding color 114 according to the control signal 113.
[0114] Referring to
[0115] Referring to
[0116] When the motherboard 1 in the fifth embodiment of the invention receives a communication software message notification from the electronic device 3, it receives the message through the CPU 11 and transmits the signal 112 to the micro-control unit 102. The micro-control unit 102 transmits the control signal 113 is transmitted to the notification module 105, and the first light-emitting device 1051, second light-emitting device 1052 and third light-emitting device 1053 inside the notification module 105 notify the user, which can solve the problem that the conventional memory device 10 cannot be used to immediately notify message to the user's communication program.
[0117] Continuing the above, refer to
[0118] The steps in the sixth embodiment of the invention are as follows:
[0119] Step S120: The notification module 105 generates a corresponding sound 115 according to the control signal 113.
[0120] Referring to
[0121] Referring to
[0122] In the sixth embodiment of the invention, when the motherboard 1 receives a communication software message notification from the electronic device 3, it receives the message through the CPU 11 and transmits the signal 112 to the micro-control unit 102, and the micro-control unit 102 transmits the control signal 113 to the notification module 105; the buzzer 1054 inside the notification module 105 notifies the user to solve the problem that the conventional memory device 10 cannot be used to immediately notify message to the user's communication program.
[0123] In the invention, the first light-emitting device 1051, second light-emitting device 1052, and third light-emitting device 1053 of the notification module 105 in the fifth embodiment and the buzzer 1054 of the notification module 105 in the sixth embodiment can be used in an associated way.
[0124] Below, we are going to describe the practical application of an embodiment in the invention:
[0125] The setting thresholds that user uses specific computer software not the notifications of the erasable memory before running the intelligent memory is 40° C. for the first threshold 21, 50° C. for the second threshold 22, and 60° C. for the third threshold 23; the notifications of the solid state drive is 50° C. for the first threshold 21, 60° C. for the second threshold 22, and 70° C. for the third threshold 23. The first corresponding color 212 is green, second corresponding color 222 is amber, and third corresponding color 232 is red. The first sound 213 emits a sound at a slow frequency, the second sound 223 makes a sound at a normal frequency, and the third sound 233 makes a sound at a high frequency.
[0126] For a plurality of memory chips 104 of thermal sensor 103 in the memory device 10, the thermal sensor 103 can select the temperatures from a plurality of memory chips 104 to generate at least one temperature data 1041; the thermal sensor 103 generates at least one temperature data 1041 and transmit it to the micro-control unit 102. If the memory device is volatile memory or non-volatile memory, the micro-control unit 103 will determine whether the at least one temperature data 1041 exceeds 40° C., and if so, the micro-control unit 103 transmits the first control signal 211 to the notification module 105, the notification module 105 makes the first light-emitting device 1051 flashes in green light according to the first control signal 211, and the buzzer 1054 sends the first sound 213 and determine whether at least one temperature data 1041 is lower than 50° C., if it is lower than 50° C., the micro-control unit 103 transmits the first control signal 211 to the notification module 105, the first light-emitting device 1051 keeps flashing in green light, and the buzzer 1054 continues to emit the first sound 213 at a slow frequency. If it exceeds 50° C., the micro-control unit 103 will determine whether at least one temperature data 1041 is lower than 60 degrees. If it is lower than 60 degrees, the micro-control unit 103 will transmit the second control signal 221 to notification module 105, notification module 105 makes the second control signal 221 The light-emitting device 1052 flashes in orange, and the buzzer 1054 emits a second sound 223 at a normal frequency. If it exceeds 60 degrees, the micro-control unit 103 will transmit the third control signal 231 to the notification module 105. The notification module 105 uses the third control signal 231 to make The third light-emitting device 1053 flashes in red, and the buzzer 1054 emits a third sound 233 at a fast frequency. If the memory device is a solid state drive, the micro-control unit 103 determines whether at least one temperature data 1041 exceeds 50 degrees, and If yes, the micro-control unit 103 will transmit the first control signal 211 to the notification module 105, the notification module 105 will make the first light-emitting device 1051 flash green according to the first control signal 211, and the buzzer 1054 will emit the first sound 213 at a slow frequency and determine whether at least one temperature data 1041 is lower than 60° C. If it is lower than 60 degrees, the micro-control unit 103 will transmit the first control signal 211 to the notification module 105, making the first light-emitting device 1051 keep flashing in green light, and the buzzer 1054 keeps emitting the first sound 213 in a slow frequency; if it exceeds 60° C., the micro-control unit 103 will judge whether the at least one temperature data 1041 is lower than 70° C. or not. If it is lower than 70° C., the micro-control unit 103 will transmit the second control signal 221 to the notification module 105, the notification module 105 makes the second light-emitting device 1052 flash in amber color according to the second control signal 221, the buzzer 1054 emits a second sound 223 at a normal frequency; if it exceeds 70° C., the micro-control unit 103 will transmit the third control signal 231 to the notification module 105, and the notification module 105 makes the third light-emitting device 1053 flash in red color according to the third control signal 231, and the buzzer 1054 emits third sound 233 at a high frequency.
[0127] Below is the practical application description of another embodiment of the invention:
[0128] The communication software in the user's electronic device 3 transmits the real-time signal 41 to the server 4. After the server 4 receives the real-time signal 41, it sends the real-time signal 41 to the motherboard 1, and the CPU 11 inside the motherboard 1 runs the software 111 to receives the real-time signal 41 from the server 4; the CPU 11 generates the signal 112 and transmits it to the micro-control unit 102, the micro-control unit 102 transmits a control signal 113 to actuate the notification module 105, the notification module follows to the control signal 113 making the first light-emitting device 1051, second light-emitting device 1052, and third light-emitting device 1053 flash in yellow color, and the buzzer 1054 emits the corresponding sound 115 at a frequency.
[0129] In the aforesaid embodiment, the intelligent memory of the invention utilizes the thermal sensor in the memory device to sense the temperature of a plurality of memory chips with the functions of self-sensing and real-time notification, making the memory device able to self-sense the temperature of the memory device itself and real-time detect the temperature of the memory device and notify the user the detecting result through the notification module, which can solve the conventional needs of obtaining the temperatures through checking the status of computer parts; user thus can know the temperature status of the memory device and determine whether to cool down and other processing in a real-time manner, which can solve the problem that user cannot immediately respond to the memory damage when the memory temperature is too high, such as detecting the temperatures of volatile memory, non-volatile memory and solid state drive and the temperatures, availability/health status. In addition, when the communication software (Facebook, IG, or other) transmits notifications to user, it can use color or sound to notify the user.
[0130] Therefore, the invention is actually an innovative and progressive invention that can be applied in medical field, which should surely meet ROC patent application requirements patent law. We thus submit an invention patent application according to the law, expecting that the Bureau can grant the patent soon.
[0131] The statements stated above are only the preferred embodiments of the invention, which are not used to limit the claims of the invention; all the equivalent changes and modifications made according to the claims of the patent application of the invention should also belong to the claims covered in the invention.