Interactive touch type electronic calendar system
By introducing a touch module and a backlight module into the smart calendar system, the problem of insufficient user interactivity has been solved, enabling users to manually mark dates and enhance the emotional experience, providing personalized schedule management and reminder functions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-03-06
AI Technical Summary
Existing smart calendars lack user interactivity, cannot participate in the time-marking process through physical operations, and lack emotional design.
An interactive touch-screen electronic calendar system was designed. By setting a touch module and a backlight module on the date display panel, combined with the main control module, the system enables users to manually trigger the date display and supports custom colors and anniversary reminders.
It enables direct interaction between users and the calendar, enhances the emotional experience, and synchronizes with mobile phones via Bluetooth to provide personalized schedule management and reminder services.
Smart Images

Figure CN223977641U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smart calendars, and in particular to an interactive touch-screen electronic calendar system. Background Technology
[0002] A smart calendar is a calendar product that combines modern technology and artistic design. It not only has the time recording function of a traditional calendar, but also incorporates intelligent management and reminder functions.
[0003] Chinese Patent Publication No. CN 213935505 U discloses an e-ink screen smart calendar, which includes a housing, an e-ink screen, a processor, and a communication module. The e-ink screen and the communication module are electrically connected to the processor. The communication module receives external signals and transmits them to the processor. The processor has the functions of storing information and driving the e-ink screen to display information. The e-ink screen is installed on the front of the housing, and the back of the housing is the mounting surface. The mounting surface is fixed to a mounting station or wall by a mounting bracket or adhesive. This smart calendar realizes the transformation of traditional paper calendars into smart calendars, enabling the digital display and management of calendar information and personal schedule information. It can replace conventional printed calendars, transforming the previously single, unchangeable, and unintelligent calendar into one with freely modifiable content. It can save paper and electricity consumption and add functions such as schedule reminders and prompts, realizing a new type of smart calendar in the Internet of Things era.
[0004] However, this type of smart calendar is driven by a processor with storage capabilities to display information on an e-ink screen, which is a passive presentation mode; it suffers from the technical defect of lacking user interactivity, as users cannot participate in the time marking process through physical operation, and it lacks emotional design. Utility Model Content
[0005] This invention addresses the technical shortcomings of current smart calendars, such as a lack of user interactivity, the inability to participate in the time-marking process through physical operation, and a lack of emotional design. It provides an interactive touch-screen electronic calendar system. The display module of this calendar system is manually triggered by the user, enabling interactive participation in the time-marking process and incorporating emotional design features.
[0006] The technical solution for achieving the technical objective of this utility model is: an interactive touch-sensitive electronic calendar system, including a date display panel for displaying dates and a main control module; the date display panel is connected to the main control module and displays dates under the control of the main control module; a touch module is also provided on the date display panel, which generates a touch signal corresponding to the touched date when any date on the date display panel is touched, the touch module is connected to the main control module, and the main control module controls the display of the date corresponding to the touch signal on the date display panel according to the touch signal.
[0007] Furthermore, in the aforementioned interactive touch-screen electronic calendar system: the date display panel includes 365 dates arranged by month on the panel.
[0008] Furthermore, in the aforementioned interactive touch-screen electronic calendar system: the date includes a backlight module, which is a warm yellow LED array with a color temperature of 2700K, controlled by the main control module.
[0009] Furthermore, in the aforementioned interactive touch-screen electronic calendar system: the date includes a backlight module, which is an RGB three-color adjustable backlight module with user-defined color function.
[0010] Furthermore, in the aforementioned interactive touch-sensitive electronic calendar system: the touch module includes a 3mm thick transparent acrylic capacitive touch panel disposed on the date display panel, with 365 date holes etched on the surface corresponding to the 365 dates on the date display panel.
[0011] Furthermore, in the aforementioned interactive touch-screen electronic calendar system, the main control module includes an ESP32-WROOM microcontroller that supports the Bluetooth 5.0 protocol.
[0012] Furthermore, in the aforementioned interactive touch-screen electronic calendar system: the main control module is mounted on a PCB board, which uses ENIG technology and integrates a CY8C4014LQI capacitive touch chip.
[0013] Furthermore, the aforementioned interactive touch-screen electronic calendar system also includes a Bluetooth speaker. A Bluetooth speaker module connected to the Bluetooth speaker is mounted on the PCB, and the Bluetooth speaker module connects to the mobile phone audio via an ESP32 module.
[0014] Furthermore, in the aforementioned interactive touch-sensitive electronic calendar system: the touch module includes a pressure sensor touch panel with a frosted tempered glass panel disposed on the date display panel. The pressure sensor touch panel distinguishes the operation intention by the pressure applied, and its surface is etched with 365 date holes corresponding to the 365 dates on the date display panel.
[0015] In this invention, a touch module is provided on the date display panel, which can fill the market gap for electronic calendars with "manual touch control + backlight feedback".
[0016] In addition, the scalability of the main control module can be used to integrate practical functions such as anniversary reminders and goal check-in.
[0017] The present invention will be described in more detail below with reference to the accompanying drawings and embodiments. Attached Figure Description
[0018] Appendix Figure 1 This is a front view of the interactive touch-screen electronic calendar system of this utility model;
[0019] Appendix Figure 2 This is a schematic diagram of the control principle of the interactive touch-screen electronic calendar system of this utility model. Detailed Implementation
[0020] like Figure 1 , 2 As shown, this embodiment is an interactive touch-screen electronic calendar system, specifically a smart calendar that can be hung on a wall like an oil painting.
[0021] The interactive touch-screen electronic calendar system of this embodiment includes a date display panel for displaying dates and a main control module; the date display panel 102 is as follows: Figure 1 As shown, it is a PVC board with a border 101 around it. 365 dates 103 are distributed on the PVC board according to a calendar, divided into 12 vertical columns representing the 12 months. Columns 1, 3, 5, 7, 8, 10, and 12 represent January, March, May, July, August, October, and December respectively, with 31 dates 103 for each month. The second column has 28 dates representing February, and the others have 30 dates 103 each, for a total of 365 dates 103. The main control module is mounted on a PCB board on the back of the display panel. Figure 1The date display panel is not shown in the figure. It is connected to the main control module and displays the date under the control of the main control module. In this embodiment, the date display panel 102 is also provided with a touch module that generates a touch signal corresponding to the touched date when any date on the date display panel is touched. The touch module is connected to the main control module, and the main control module controls the display of the date corresponding to the touch signal on the date display panel according to the touch signal.
[0022] In this embodiment, the date display includes a backlight module. Only the backlight module for the corresponding date is active. Thus, the backlight module illuminates only when the user touches the date area, displaying the date. In this embodiment, the backlight module is a warm yellow LED array with a color temperature of 2700K, controlled by the main control module. In other embodiments, the backlight module can also be an RGB three-color adjustable backlight, allowing the user to customize the color settings under the control of the main control module. (Control diagram shown below) Figure 2 As shown.
[0023] In this embodiment, the touch module includes a 3mm thick transparent acrylic capacitive touch panel disposed on the date display panel, with 365 date holes etched on its surface corresponding to the 365 dates on the date display panel. In other embodiments, the touch module includes a pressure sensor touch panel disposed on the date display panel with a frosted tempered glass panel. The pressure sensor touch panel distinguishes the operation intention by the pressure applied, and its surface is etched with 365 date holes corresponding to the 365 dates on the date display panel.
[0024] The main control module includes an ESP32-WROOM microcontroller supporting Bluetooth 5.0, mounted on a PCB board using ENIGA technology and integrating a CY8C4014LQI capacitive touch chip. In some other embodiments, the main control module may also be mounted on an FPC board. Other chips with similar functions may also be used for the capacitive touch chip.
[0025] Additionally, this embodiment also includes a Bluetooth speaker. A Bluetooth speaker module connected to the Bluetooth speaker is mounted on the PCB. The Bluetooth speaker module connects to the mobile phone audio via an ESP32 module. Figure 2 As shown.
[0026] In this embodiment, some LED digital display modules can also be set on the frame 101 to display the current time under the control of the main control module. This time can be the system time itself, or it can be collected from the Internet by the main control module. In addition, a memory can be set on the PCB board of the main control module to store some special days such as anniversaries and holidays, as well as some music audio signals. On these days, they can be played in Bluetooth speakers, or sent to mobile phones via Bluetooth. The corresponding APP can be installed on the mobile phone and played using the mobile phone's display and audio playback system. At the same time, some materials can be input into the memory on the PCB board through communication between the mobile phone and the main control module, and the application of the main control module can also be configured.
[0027] The interactive touch-screen electronic calendar system of this embodiment is like a painting hanging on the wall. When the user touches the corresponding date 103 during the day, the touch module sends a signal to the main control module, triggering the main control module to control the backlight on the date 103 to light up. When a set time is set, such as 12 hours or 24 hours later, it will automatically dim.
[0028] In some practical applications, a date display panel 102 with a frame 101 is mounted on a wall. A PCB board is installed inside the date display panel 102, and the main control module is located on the PCB board. Combined with memory and other components, it forms a smart device. This smart device can communicate with a smartphone via Bluetooth, allowing the smartphone to load parameters into an app within the system. Each day, touching a corresponding date triggers the main control module to brighten the backlight of that date 103. In practice, the brightening dates occur sequentially, starting with January 1st (date 103) and proceeding day by day, from January 2nd to January 3rd, and so on. Once brightened, the dates remain lit until all 365 days of the year have passed, at which point the entire date display panel 102 is reset and turned off. Therefore, in practice, a reset button is also provided on the back of the date display panel 102. When the main control module detects this reset button being pressed, it turns off the backlight of all lit dates 102. On a date display panel 103, in addition to the Gregorian calendar date, an LED display module can also display the weekday and lunar calendar date. The main control module displays these weekday and lunar calendar dates simultaneously with the backlight according to the perpetual calendar. Additionally, a clock can be installed on the frame 101. In practice, the state of the date display panel 102 is stored in the memory. When the interactive touch-screen electronic calendar system is powered off and then powered on again, it can restore the original display state. In other words, if the system is turned off at night, it can return to the state before being turned off the next day. In practice, interactive touch-screen electronic calendar systems are used in offices, where the system is powered on when starting work and turned off when leaving get off work, thus saving electricity and extending the system's lifespan.
Claims
1. An interactive touch-controlled electronic calendar system, comprising a date display panel for displaying dates, a master control module; said date display panel is connected to the master control module and displays dates under the control of the master control module; characterized in that: A touch module is further arranged on the date display panel, which generates a touch signal corresponding to the touched date when any date on the date display panel is touched, and the touch module is connected with the main control module, and the main control module controls the date display on the date display panel corresponding to the touch signal.
2. The interactive touch electronic calendar system of claim 1, wherein: The date display panel includes 365 dates arranged on the panel by month.
3. The interactive touch-enabled electronic calendar system of claim 2, wherein: The dates include a backlight module, and the backlight module is a yellow warm light LED array with a color temperature of 2700K, which is controlled by the main control module.
4. The interactive touch electronic calendar system of claim 2, wherein: The dates include a backlight module, and the backlight module is an RGB three-color adjustable backlight module provided with a user-defined color function.
5. The interactive touch electronic calendar system of claim 2, wherein: The touch module includes a 3mm-thick transparent acrylic capacitive touch panel arranged on the date display panel, and the surface is etched with 365 date hole positions corresponding to the 365 dates on the date display panel.
6. The interactive touch electronic calendar system of claim 5, wherein: The main control module includes an ESP32-WROOM microcontroller supporting Bluetooth 5.0 protocol.
7. The interactive touch electronic calendar system of claim 6, wherein: The main control module is arranged on a PCB, and the PCB adopts an ENIG process and integrates a CY8C4014LQI capacitive touch chip.
8. The interactive touch electronic calendar system of claim 7, wherein: A Bluetooth speaker is further included, and a Bluetooth speaker module connected with the Bluetooth speaker is arranged on the PCB, and the Bluetooth speaker module connects the mobile phone audio through the ESP32 module.
9. The interactive touch electronic calendar system of claim 2, wherein: The touch module includes a pressure sensor touch panel of a frosted tempered glass panel arranged on the date display panel, and the pressure sensor touch panel distinguishes the operation intention by pressing force, and the surface is etched with 365 date hole positions corresponding to the 365 dates on the date display panel.
Citation Information
Patent Citations
Electronic ink screen intelligent calendar
CN213935505U