Portable electronic device adapted for different orientations of use
By integrating signal control, button control, and position detection modules into a portable electronic device, the problem of insufficient adaptability of handheld monitors in different usage positions is solved, and the automatic adjustment of information display devices and button functions is realized, improving ease of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-10-22
- Publication Date
- 2026-03-31
AI Technical Summary
Existing handheld monitoring devices cannot adapt to different usage locations, resulting in inconvenience in use.
Design a portable electronic device comprising a signal control module, a button control module, an information display module, and a position detection module. The position detection module detects changes in the device's orientation and adjusts the viewing orientation of the information display device and the correspondence between functional switches and button function execution commands.
It enables automatic adaptation of the viewing position and button functions of the information display device during the flipping process, improving the ease of use and functionality of the device.
Smart Images

Figure CN116007619B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a portable electronic device, and more particularly to a portable electronic device suitable for use in different orientations. Background Technology
[0002] Handheld monitors can provide relevant information to users; however, there is still room for improvement in existing handheld monitor technologies. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a portable electronic device suitable for different usage positions, in order to overcome the shortcomings of the prior art.
[0004] To address the aforementioned technical problems, one technical solution adopted by the present invention is to provide a portable electronic device suitable for different usage orientations, comprising: an electronic device body, a signal control module, a button control module, an information display module, and a position detection module. The signal control module is disposed inside the electronic device body. The button control module is disposed on the electronic device body and electrically connected to the signal control module. The information display module is disposed on the electronic device body and electrically connected to the signal control module for providing multiple information image screens. The position detection module is disposed inside the electronic device body and electrically connected to the signal control module for detecting the orientation of the portable electronic device and obtaining an orientation signal. The button control module includes multiple functional switches electrically connected to the signal control module and multiple functional buttons for selectively contacting the multiple functional switches. The information display module includes an information display device for displaying information image screens. The signal control module has multiple button function execution instructions corresponding to multiple function buttons, and the multiple button function execution instructions include at least one upper button function execution instruction, one lower button function execution instruction, one left button function execution instruction, and one right button function execution instruction.
[0005] Furthermore, when the main body of the electronic device is flipped to change the orientation of the information display device, the viewing orientation of the information image provided by the information display device changes accordingly, and the correspondence between the functional switches and the button function execution commands also changes accordingly. When the main body of the electronic device is flipped to change the orientation of the information display device, the functional switch located at the top of the main body of the electronic device is defined as an upper functional switch for executing the upper button function execution command, the functional switch located at the bottom of the main body of the electronic device is defined as a lower functional switch for executing the lower button function execution command, the functional switch located at the leftmost side of the main body of the electronic device is defined as a left functional switch for executing the left button function execution command, and the functional switch located at the rightmost side of the main body of the electronic device is defined as a right functional switch for executing the right button function execution command. When the main body of the electronic device is flipped to change the orientation of the information display device, the top functional button on the main body of the electronic device is defined as a top functional button for executing the top button function command by pressing the top functional switch; the bottom functional button on the main body of the electronic device is defined as a bottom functional button for executing the bottom button function command by pressing the bottom functional switch; the leftmost functional button on the main body of the electronic device is defined as a left functional button for executing the left button function command by pressing the left functional switch; and the rightmost functional button on the main body of the electronic device is defined as a right functional button for executing the right button function command by pressing the right functional switch.
[0006] To address the aforementioned technical problems, another technical solution adopted by the present invention is to provide a portable electronic device suitable for different usage orientations, comprising: a signal control module, a button control module, an information display module, and a position detection module. The button control module is electrically connected to the signal control module. The information display module is electrically connected to the signal control module to provide multiple information image screens. The position detection module is electrically connected to the signal control module to detect the setting orientation of the portable electronic device and obtain a setting orientation signal. The button control module includes multiple functional switches electrically connected to the signal control module and multiple functional buttons for selectively contacting the multiple functional switches. The information display module includes an information display device for displaying information image screens. The signal control module has multiple button function execution instructions corresponding to the multiple functional buttons, and the multiple button function execution instructions include at least one upper button function execution instruction, one lower button function execution instruction, one left button function execution instruction, and one right button function execution instruction. When the portable electronic device is flipped to change the orientation of the information display device, the viewing orientation of the information image provided by the information display device changes along with the change in the orientation of the information display device, and the correspondence between the functional switch and the button function execution command also changes along with the change in the orientation of the information display device.
[0007] One of the beneficial effects of the present invention is that the portable electronic device provided by the present invention is suitable for different usage orientations, which can be configured to: "a button control module electrically connected to a signal control module," "an information display module electrically connected to the signal control module for providing multiple information image screens," "a position detection module electrically connected to the signal control module for detecting the setting orientation of the portable electronic device and obtaining a setting orientation signal," and "the button control module includes multiple functional switches electrically connected to the signal control module and multiple functional buttons for selectively contacting the multiple functional switches, and the information display module includes an information display device for displaying..." The technical solution of "information image screen" and "signal control module having multiple button function execution instructions corresponding to multiple function buttons, and the multiple button function execution instructions including at least one upper button function execution instruction, one lower button function execution instruction, one left button function execution instruction and one right button function execution instruction" is such that when the portable electronic device is flipped to change the setting position of the information display device, the viewing position of the information image screen provided by the information display device changes along with the change in the setting position of the information display device, and the correspondence between the function switches and the button function execution instructions changes along with the change in the setting position of the information display device.
[0008] To further understand the features and technical content of the present invention, please refer to the following detailed description and drawings of the present invention. However, the drawings provided are for reference and illustration only and are not intended to limit the present invention. Attached Figure Description
[0009] Figure 1 This is a three-dimensional schematic diagram of the portable electronic device provided by the present invention.
[0010] Figure 2 This is a three-dimensional schematic diagram of the portable electronic device provided by the present invention after the device casing has been removed.
[0011] Figure 3 This is another perspective view of the portable electronic device provided by the present invention after the device casing has been removed.
[0012] Figure 4 This is a functional block diagram of the portable electronic device provided by the present invention.
[0013] Figure 5 This is a schematic diagram of a first orientation of the portable electronic device provided in the first embodiment of the present invention.
[0014] Figure 6 This is a schematic diagram of a second orientation of the portable electronic device provided in the first embodiment of the present invention.
[0015] Figure 7 This is a schematic diagram of a third orientation of the portable electronic device provided in the first embodiment of the present invention.
[0016] Figure 8 This is a schematic diagram of a fourth orientation of the portable electronic device provided in the first embodiment of the present invention.
[0017] Figure 9 This is a schematic diagram of one of the information image screens (the comfort index is located below and separate from the temperature and humidity index) provided by the information display module of the portable electronic device provided in the second embodiment of the present invention.
[0018] Figure 10 This is a schematic diagram of another information image screen (the comfort index is located on top of and overlaps with the temperature and humidity index) provided by the information display module of the portable electronic device provided in the second embodiment of the present invention.
[0019] Figure 11 The information display module of the portable electronic device provided in the third embodiment of the present invention is used to display concentration and time trajectory information and a schematic diagram of the display signal.
[0020] Figure 12The information display module of the portable electronic device provided in the third embodiment of the present invention is used to display the third animation information and a schematic diagram of the gas concentration value.
[0021] Figure 13 (A) to (F) are schematic diagrams of different blinking animations (e.g., first animation information, second animation information, and third animation information) displayed by the display signal. Detailed Implementation
[0022] The following specific embodiments illustrate the implementation of the "portable electronic device suitable for different usage orientations" disclosed in this invention. Those skilled in the art can understand the advantages and effects of this invention from the content disclosed in this specification. This invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of this invention. Furthermore, it should be stated in advance that the accompanying drawings of this invention are for simple illustrative purposes only and are not depictions based on actual dimensions. The following embodiments will further describe the relevant technical content of this invention in detail, but the disclosed content is not intended to limit the scope of protection of this invention. Additionally, the term "or" used herein may, depending on the actual situation, include any combination of any one or more of the associated listed items.
[0023] [First Embodiment]
[0024] See Figures 1 to 8 As shown, the first embodiment of the present invention provides a portable electronic device M (e.g., a handheld monitor) suitable for different usage positions (or setting positions), which includes: an electronic device body M1, a signal control module M2, a button control module M3, an information display module M4, and a position detection module M5.
[0025] Furthermore, in coordination Figure 1 , Figure 3 and Figure 4As shown, the signal control module M2 is disposed inside the main body M1 of the electronic device. Furthermore, the signal control module M2 has multiple button function execution instructions, and these instructions include at least one top button function execution instruction 20U, one bottom button function execution instruction 20D, one left button function execution instruction 20L, and one right button function execution instruction 20R. For example, the main body M1 of the electronic device includes a device housing (not labeled) and at least one circuit board 10 disposed within the device housing, and the signal control module M2 is disposed on and electrically connected to the circuit board 10. Additionally, the signal control module M2 can be a central processing unit (CPU), a digital signal processor (DSP), a microprocessor (MPU), or a microcontroller (MCU), etc. However, the examples given above are merely one possible embodiment and are not intended to limit the present invention.
[0026] Furthermore, in coordination Figure 1 , Figure 2 and Figure 4 As shown, the button control module M3 is disposed on the electronic device body M1 and electrically connected to the signal control module M2. The button control module M3 includes multiple functional switches 31 electrically connected to the signal control module M2 and multiple functional buttons 32 for selectively contacting the multiple functional switches 31. Furthermore, the multiple button function execution commands of the signal control module M2 correspond to the multiple functional buttons 32. For example, the multiple functional switches 31 are disposed on and electrically connected to the circuit board 10, and the multiple functional buttons 32 are movably disposed on the electronic device body M1. Additionally, the multiple functional buttons 32 can be separated from each other or combined into a single button structure (e.g., ...). Figure 1 As shown), each function button 32 itself or its surrounding area has no text or graphic markings (that is, since the button function represented by each function button 32 is not fixed, there is no need to set any markings or patterns to define the function button 32). However, the example given above is only one possible embodiment and is not intended to limit the present invention.
[0027] Furthermore, in coordination Figure 2 and Figure 4As shown, the information display module M4 is disposed on the electronic device body M1 and electrically connected to the signal control module M2 to provide multiple information image screens 400. The information display module M4 includes an information display device 40 for displaying the information image screens 400. For example, the information display device 40 is disposed on and electrically connected to the circuit board 10, and the information display device 40 can be protected by a transparent protective layer (not labeled) provided by the electronic device body M1. Furthermore, the information display module M4 can be a liquid crystal display (LCD) or any display device capable of displaying information. However, the examples given above are merely one possible embodiment and are not intended to limit the invention.
[0028] Furthermore, in coordination Figure 3 and Figure 4 As shown, the position detection module M5 is disposed inside the main body M1 of the electronic device and electrically connected to the signal control module M2, for detecting the setting orientation (or usage orientation) of the portable electronic device M and obtaining a setting orientation signal S1. For example, the position detection module M5 is disposed on the circuit board 10 and electrically connected to the circuit board 10, and the position detection module M5 can be an acceleration transducer, a gyroscope, or any position detection chip, for detecting the setting orientation of the portable electronic device M and obtaining the setting orientation signal S1, and for transmitting the setting orientation signal S1 to the signal control module M2. However, the above example is only one possible embodiment and is not intended to limit the present invention.
[0029] Furthermore, in coordination Figures 4 to 8 As shown, when the electronic device body M1 is flipped (for example, the position detection module M5 detects that the electronic device body M1 has been flipped 90 degrees, such as...), Figures 5 to 8 When the setting position (or usage position) of the information display device 40 is changed (as shown in any of the figures), the viewing position of the information image screen 400 provided by the information display device 40 (that is, the viewing position that is facing forward, rather than the inverted or tilted viewing position) will also change along with the change in the setting position (or usage position) of the information display device 40. In addition, the correspondence between the functional switches 31 and the button function execution instructions 20 (that is, the correspondence between multiple functional switches 31 and multiple button function execution instructions 20) will also change along with the change in the setting position (or usage position) of the information display device 40.
[0030] For example, coordination Figure 2 as well as Figures 4 to 8As shown, when the electronic device body M1 is flipped (for example, the position detection module M5 detects that the electronic device body M1 has been flipped 90 degrees, such as...), Figures 5 to 8 When the setting orientation (or usage orientation) of the information display device 40 is changed (as shown in any of the figures), in addition to the viewing orientation (i.e., the normal viewing orientation, not an inverted or tilted viewing orientation) of the information image screen 400 provided by the information display device 40 changing along with the setting orientation (or usage orientation) of the information display device 40, the functions of the multiple functional switches 31 also change along with the setting orientation (or usage orientation) of the information display device 40. Furthermore, when the electronic device body M1 is flipped (for example, the position detection module M5 detects that the electronic device body M1 has been flipped 90 degrees, such as...), Figures 5 to 8 When the setting position (or usage position) of the information display device 40 is changed (as shown in any of the figures), the top functional switch 31 (or the top functional switch 31 among multiple functional switches 31) located on the main body M1 of the electronic device can be defined as a top functional switch 31U for executing the top button function execution command 20U; the bottom functional switch 31 (or the bottom functional switch 31 among multiple functional switches 31) located on the main body M1 of the electronic device can be defined as a bottom functional switch 31D for executing the bottom button function execution command 20D; the leftmost functional switch 31 (or the leftmost functional switch 31 among multiple functional switches 31) located on the main body M1 of the electronic device can be defined as a left functional switch 31L for executing the left button function execution command 20L; and the rightmost functional switch 31 (or the rightmost functional switch 31 among multiple functional switches 31) located on the main body M1 of the electronic device can be defined as a right functional switch 31R for executing the right button function execution command 20R. However, the examples given above are merely one possible embodiment and are not intended to limit the invention.
[0031] For example, coordination Figure 1 as well as Figures 4 to 8 As shown, when the electronic device body M1 is flipped (for example, the position detection module M5 detects that the electronic device body M1 has been flipped 90 degrees, such as...), Figures 5 to 8When the setting position (or usage position) of the information display device 40 is changed (as shown in any of the figures), the uppermost function button 32 (or the uppermost function button 32 among multiple function buttons 32) located on the main body M1 of the electronic device can be defined as an upper function button 32U "for executing the upper button function execution command 20U by pressing (or contacting) the upper function switch 31U", and the lowermost function button 32 (or the lowermost function button 32 among multiple function buttons 32) located on the main body M1 of the electronic device can be defined as "for executing the lower button function execution command 20U by pressing (or contacting) the lower function switch 31D". The function button 32D below "0D" and the function button 32 located on the far left of the main body M1 of the electronic device (or the leftmost function button 32 among a plurality of function buttons 32) can be defined as a left function button 32L "for executing the left button function execution command 20L by pressing (or contacting) the left function switch 31L". The function button 32 located on the far right of the main body M1 of the electronic device (or the rightmost function button 32 among a plurality of function buttons 32) can be defined as a right function button 32R "for executing the right button function execution command 20R by pressing (or contacting) the right function switch 31R". However, the examples given above are merely one possible embodiment and are not intended to limit the present invention.
[0032] For example, coordination Figures 4 to 8As shown, the upper button function execution command 20U can be an upward selection command, the lower button function execution command 20D can be a downward selection command, the left button function execution command 20L can be a mode switching command, and the right button function execution command 20R can be an input confirmation command. Therefore, when the upper function button 32U executes the upward selection command by pressing the upper function switch 31U, the user can perform an "upward selection" action on the information image screen 400 through the control of the upward selection command (i.e., operating the upper function button 32U). When the lower function button 32D executes the downward selection command by pressing the lower function switch 31D, the user can perform a "downward selection" action on the information image screen 400 through the control of the downward selection command (i.e., operating the lower function button 32D). When the left function button 32L executes a mode switching command by pressing the left function switch 31L, the user can control the mode switching command (i.e., operate the left function button 32L) to perform a "mode switching" action on multiple information image screens 400, so that one of the multiple information image screens 400 is displayed on the information display device 40. When the right function button 32R executes an input confirmation command by pressing the right function switch 31R, the user can control the input confirmation command (i.e., operate the right function button 32R) to transmit an input confirmation signal (not shown) to the signal control module M2. However, the above examples are only one possible embodiment and are not intended to limit the present invention.
[0033] [Second Embodiment]
[0034] See Figures 1 to 4 , Figure 9 and Figure 10 As shown, the second embodiment of the present invention provides a portable electronic device M that provides graphical information combining temperature, humidity and comfort, comprising: an electronic device body M1, a signal control module M2, an information display module M4, a temperature and humidity sensing module M6, and a gas detection module M7.
[0035] Furthermore, in coordination Figure 3 and Figure 4As shown, the signal control module M2 is disposed inside the main body M1 of the electronic device. Furthermore, the signal control module M2 has multiple button function execution instructions, and these instructions include at least one top button function execution instruction 20U, one bottom button function execution instruction 20D, one left button function execution instruction 20L, and one right button function execution instruction 20R. For example, the main body M1 of the electronic device has at least one circuit board 10 disposed inside, and the signal control module M2 is disposed on and electrically connected to the circuit board 10. The signal control module M2 can be a central processing unit (CPU), a digital signal processor (DSP), a microprocessor (MPU), or a microcontroller (MCU), etc. However, the above example is only one possible embodiment and is not intended to limit the present invention.
[0036] Furthermore, in coordination Figure 2 , Figure 4 and Figure 9 As shown, the temperature and humidity sensing module M6 is disposed inside the main body M1 of the electronic device and electrically connected to the signal control module M2, for obtaining an ambient temperature value ET and an ambient humidity value EH by detecting the temperature and humidity of the surrounding environment of the portable electronic device M. For example, the temperature and humidity sensing module M6 is disposed on the circuit board 10 and electrically connected to the circuit board 10, and the temperature and humidity sensing module M6 can be a temperature and humidity sensing chip, for simultaneously detecting the temperature and humidity of the surrounding environment of the portable electronic device M and simultaneously obtaining the ambient temperature value ET and the ambient humidity value EH. However, the above examples are only one possible embodiment and are not intended to limit the present invention.
[0037] Furthermore, in coordination Figure 2 , Figure 4 and Figure 9As shown, the gas detection module M7 is located inside the main body M1 of the electronic device and is electrically connected to the signal control module M2, so as to obtain a gas concentration signal S3 (or a gas concentration value C) by detecting a gas concentration of a predetermined gas in the surrounding environment of the portable electronic device M. Additionally, the information display module M4 can be used to provide a display signal S6 based on the gas concentration signal S3 (that is, the information display module M4 can be used to display the gas concentration value C of the gas concentration signal S3 detected by the gas detection module M7). For example, the gas detection module M7 is disposed on the circuit board 10 and electrically connected to the circuit board 10. Furthermore, the gas detection module M7 includes at least one of the following: a carbon dioxide concentration sensor for obtaining a carbon dioxide (CO2) concentration signal, an oxygen concentration sensor for obtaining an oxygen (O2) concentration signal, a carbon monoxide concentration sensor for obtaining a carbon monoxide (CO) concentration signal, a methane concentration sensor for obtaining a methane (CH4) concentration signal, and an ammonia concentration sensor for obtaining an ammonia (NH3) concentration signal. Thus, the gas concentration of a predetermined gas (e.g., CO2, O2, CO, NH3) in the surrounding environment of the smart wearable device D can be obtained by using the gas detection module M7. However, the examples given above are merely one possible embodiment and are not intended to limit the invention.
[0038] Furthermore, in coordination Figure 4 , Figure 9 and Figure 10 As shown, one of the multiple information image screens 400 provided by the information display module M4 has a temperature and humidity coordinate graph G and multiple comfort distribution areas R set on the temperature and humidity coordinate graph G. Additionally, the ambient temperature value ET and ambient humidity value EH obtained by the temperature and humidity sensing module M6 are displayed as a temperature and humidity index K1 (e.g., a crosshair, the position of which is determined by the ambient temperature value ET and ambient humidity value EH corresponding to the X and Y axes of the temperature and humidity coordinate graph G, respectively) on one of the multiple comfort distribution areas R. Furthermore, the gas concentration value C obtained by the gas detection module M7 is displayed as a comfort index K2 (e.g., a circular index) on one of the multiple comfort distribution areas R. It is worth noting that the temperature and humidity index K1 and the comfort index K2 can be located on the same comfort distribution area R (e.g., a circular index). Figure 9 (as shown) or located in two different comfort distribution regions R (e.g.) Figure 10 (As shown).
[0039] For example, the temperature and humidity index K1 and the comfort index K2 can be arranged along the same vertical line, and the comfort index K2 can be located below the temperature and humidity index K1 and separated from it (e.g.) Figure 9(as shown), or the comfort index K2 can be located on the temperature and humidity index K1 and may contact or overlap with the temperature and humidity index K1 (e.g. Figure 10 As shown). Therefore, as Figure 9 As shown, when comfort index K2 is below and separate from temperature and humidity index K1, the probability that the comfort provided by the surrounding environment of the portable electronic device M is affected by the predetermined gas increases, thus reducing the user's comfort in the environment. Additionally, as... Figure 10 As shown, when comfort index K2 is located on or in contact with temperature and humidity index K1, the probability that the comfort provided by the surrounding environment of the portable electronic device M is affected by the predetermined gas is reduced, thus improving the user's comfort in the environment. However, the above example is only one possible embodiment and is not intended to limit the invention.
[0040] [Third Embodiment]
[0041] See Figures 1 to 4 as well as Figures 11 to 13 As shown, the third embodiment of the present invention provides a portable electronic device M, and the main difference between the third embodiment and the first and second embodiments is that the portable electronic device M of the third embodiment further includes: a temperature sensing module M8, an information recording module M9, a sound generating module M10, a pressure sensing module M11, and a wireless transmission module M12.
[0042] Furthermore, in coordination Figure 2 , Figure 3 and Figure 4 As shown, the temperature sensing module M8 (e.g., an infrared thermal array sensor) is located inside the main body M1 of the electronic device and electrically connected to the signal control module M2, for acquiring a thermal image of an object B to obtain thermal image information S2. Additionally, the information recording module M9 (e.g., built-in memory or an external memory card) is located inside the main body M1 of the electronic device and electrically connected to the signal control module M2, for recording multiple gas concentration values C provided by the gas concentration signal S3 and recording multiple gas measurement times T used to acquire the multiple gas concentration values C respectively.
[0043] Furthermore, in coordination Figure 2 , Figure 3 and Figure 4As shown, a sound generation module M10 is located inside the electronic device body M1 and electrically connected to the signal control module M2, for providing a sound signal S4 (e.g., an alarm sound) based on a gas concentration signal S3. Additionally, a pressure sensing module M11 (e.g., an atmospheric pressure sensor) is located inside the electronic device body M1 and electrically connected to the signal control module M2, for providing altitude information S5 by detecting the atmospheric pressure of the surrounding environment of the portable electronic device M. Furthermore, a wireless transmission module M12 (or a wired transmission module) is located inside the electronic device body M1 and electrically connected to the signal control module M2, for wirelessly (or wiredly) transmitting the information acquired by the portable electronic device M to an electronic monitoring device P.
[0044] For example, coordination Figure 4 and Figure 11 As shown, when multiple gas concentration values C and multiple gas measurement times T are coordinated to form a concentration and time trajectory information CT displayed on the information display module M4, the information display module M4 can be used to display the concentration and time trajectory information CT to determine the gas concentration change trend of the user's environment within a predetermined time range. Furthermore, the concentration and time trajectory information CT can be wirelessly transmitted to the electronic monitoring device P via the wireless transmission module M12. However, the above example is only one feasible embodiment and is not intended to limit the present invention.
[0045] For example, coordination Figure 4 , Figure 12 and Figure 13 As shown, when the gas concentration value C provided by the gas concentration signal S3 is less than a first predetermined set value (e.g., when the carbon dioxide concentration is less than 1000 ppm), the display signal S6 provided by the information display module M4 includes a first color information (e.g., safety color: green) and a first animation information S601 (e.g., ... Figure 13 The first blink animation (i.e., the animation of opening and closing the eyes) displayed in (A) or a first comprehensive information (e.g., a green first blink animation). Additionally, when the gas concentration value C provided by the gas concentration signal S3 is greater than a first predetermined value and less than a second predetermined value (e.g., when the carbon dioxide concentration is greater than 1000 ppm and less than 2000 ppm), the display signal S6 provided by the information display module M4 includes a second color information (e.g., warning color: yellow) and a second animation information S602 (e.g.,...). Figure 13The second blink animation displayed by (C) or a second comprehensive information (e.g., a yellow second blink animation). Furthermore, when the gas concentration value C provided by the gas concentration signal S3 is greater than a second predetermined set value (e.g., when the carbon dioxide concentration is greater than 2000 ppm), the display signal S6 provided by the information display module M4 includes a third color information (e.g., a danger color: red), a third animation information S603 (e.g., ... Figure 12 as well as Figure 13 (E) shows the third blink animation) or a third composite information (e.g., a red third blink animation). It is worth noting that, as... Figure 13 As shown, the blinking animation displayed by the display signal S6 can include at least the following: Figure 13 (A) to Figure 13 The animated pattern of (F), and Figure 13 (A) to Figure 13 The percentage of eye opening in (F) gradually decreases. That is, the percentage of eye opening in the first blink animation of the first animation information S601 is greater than the percentage of eye opening in the second blink animation of the second animation information S602, and the percentage of eye opening in the second blink animation of the second animation information S602 is greater than the percentage of eye opening in the third blink animation of the third animation information S603. However, the examples given above are merely one possible embodiment and are not intended to limit the invention.
[0046] [Beneficial Effects of the Examples]
[0047] One of the beneficial effects of the present invention is that the portable electronic device M provided by the present invention is suitable for different usage orientations. It can be configured to: "a button control module M3 electrically connected to a signal control module M2"; "an information display module M4 electrically connected to the signal control module M2 to provide multiple information image screens 400"; "a position detection module M5 electrically connected to the signal control module M2 to detect the setting orientation of the portable electronic device M and obtain a setting orientation signal S1"; "the button control module M3 includes multiple functional switches 31 electrically connected to the signal control module M2 and multiple functional buttons 32 for selectively contacting the multiple functional switches 31 respectively"; and "the information display module M4 includes an information display device 40 for displaying information". The technical solution of “image screen 400” and “signal control module M2 has multiple button function execution instructions corresponding to multiple function buttons 32 respectively, and the multiple button function execution instructions include at least one upper button function execution instruction 20U, one lower button function execution instruction 20D, one left button function execution instruction 20L and one right button function execution instruction 20R” is such that when the portable electronic device M is flipped to change the setting position of the information display device 40, the viewing position of the information image screen 400 provided by the information display device 40 will also change with the change of the setting position of the information display device 40, and the correspondence between the function switch 31 and the button function execution instructions will also change with the change of the setting position of the information display device 40.
[0048] The content disclosed above is only a preferred and feasible embodiment of the present invention, and is not intended to limit the scope of protection of the claims of the present invention. Therefore, all equivalent technical changes made based on the content of the present invention specification and drawings are included within the scope of protection of the claims of the present invention.
Claims
1. A portable electronic device suitable for different usage orientations, characterized in that, The portable electronic device comprises: an electronic device body; a signal control module arranged inside the electronic device body; a key control module arranged on the electronic device body and electrically connected to the signal control module; an information display module arranged on the electronic device body and electrically connected to the signal control module for providing a plurality of information image pictures; and a position detection module arranged inside the electronic device body and electrically connected to the signal control module for detecting the arrangement orientation of the portable electronic device and obtaining an arrangement orientation signal; wherein the key control module comprises a plurality of functional switches electrically connected to the signal control module and a plurality of functional keys for selectively contacting the functional switches, and the information display module comprises an information display device for displaying the information image pictures; wherein the signal control module has a plurality of key function execution instructions corresponding to the functional keys, and the key function execution instructions at least comprise an up key function execution instruction, a down key function execution instruction, a left key function execution instruction and a right key function execution instruction; wherein when the electronic device body is flipped to change the arrangement orientation of the information display device, the viewing orientation of the information image pictures provided by the information display device changes with the change of the arrangement orientation of the information display device, and the corresponding relationship between the functional switches and the key function execution instructions changes with the change of the arrangement orientation of the information display device; wherein when the electronic device body is flipped to change the arrangement orientation of the information display device, the functional switch located at the top of the electronic device body is defined as an up functional switch for executing the up key function execution instruction, the functional switch located at the bottom of the electronic device body is defined as a down functional switch for executing the down key function execution instruction, the functional switch located at the left of the electronic device body is defined as a left functional switch for executing the left key function execution instruction, and the functional switch located at the right of the electronic device body is defined as a right functional switch for executing the right key function execution instruction. wherein when the electronic device body is flipped to change the setting orientation of the information display device, the functional key on the top of the electronic device body is defined as an upper functional key for executing the upper key function execution instruction by pressing the upper functional switch, the functional key on the bottom of the electronic device body is defined as a lower functional key for executing the lower key function execution instruction by pressing the lower functional switch, the functional key on the left of the electronic device body is defined as a left functional key for executing the left key function execution instruction by pressing the left functional switch, and the functional key on the right of the electronic device body is defined as a right functional key for executing the right key function execution instruction by pressing the right functional switch; wherein the portable electronic device further comprises a temperature and humidity sensing module, which is arranged inside the electronic device body and electrically connected to the signal control module, for obtaining an ambient temperature value and an ambient humidity value by detecting the temperature and humidity of the surrounding environment of the portable electronic device; wherein the display signal provided by the information display module comprises a plurality of animation information, the plurality of animation information has different blinking animations from each other, and the plurality of blinking animations has different eye opening percentages from each other.
2. The portable electronic device suitable for different use orientations according to claim 1, wherein wherein the plurality of functional keys are separated from each other or combined into a single key structure, and each of the functional keys itself or the surrounding area of the functional keys has no text or pattern mark; wherein the position detection module is an acceleration sensor or a gyroscope, for detecting the setting orientation of the portable electronic device to obtain the setting orientation signal; wherein the upper key function execution instruction is an upward selection instruction, the lower key function execution instruction is a downward selection instruction, the left key function execution instruction is a mode switching instruction, and the right key function execution instruction is an input confirmation instruction; wherein when the upper functional key executes the upward selection instruction by pressing the upper functional switch, the information image picture is upward selected by the control of the upward selection instruction; wherein when the lower functional key executes the downward selection instruction by pressing the lower functional switch, the information image picture is downward selected by the control of the downward selection instruction; wherein when the left functional key executes the mode switching instruction by pressing the left functional switch, a plurality of information image pictures are mode switched by the control of the mode switching instruction, so that one of the plurality of information image pictures is displayed on the information display device. When the right functional button executes the input confirmation instruction by pressing the right functional switch, an input confirmation signal is transmitted to the signal control module under the control of the input confirmation instruction.
3. The portable electronic device adapted for different usage orientations of claim 1, wherein, The portable electronic device further comprises: a gas detection module, which is arranged inside the electronic device body and electrically connected to the signal control module, for obtaining a gas concentration value by detecting a gas concentration of a predetermined gas in the surrounding environment of the portable electronic device; wherein one of the plurality of information image screens has a temperature and humidity coordinate graph and a plurality of comfort distribution areas arranged on the temperature and humidity coordinate graph, the environment temperature value and the environment humidity value obtained by the temperature and humidity sensing module are displayed on one of the plurality of comfort distribution areas as a temperature and humidity index, and the gas concentration value obtained by the gas detection module is displayed on one of the plurality of comfort distribution areas as a comfort index; wherein the temperature and humidity index and the comfort index are arranged along the same vertical line, and the comfort index is located below the temperature and humidity index and separated from the temperature and humidity index, or the comfort index is located on the temperature and humidity index and in contact with the temperature and humidity index; wherein when the comfort index is located below the temperature and humidity index and separated from the temperature and humidity index, the probability of the comfort provided by the surrounding environment of the portable electronic device being affected by the predetermined gas increases; wherein when the comfort index is located on the temperature and humidity index and in contact with the temperature and humidity index, the probability of the comfort provided by the surrounding environment of the portable electronic device being affected by the predetermined gas decreases; wherein the temperature and humidity index and the comfort index are located on the same comfort distribution area or on two different comfort distribution areas respectively; wherein the temperature and humidity sensing module is a temperature and humidity sensing chip, for simultaneously detecting the temperature and humidity of the surrounding environment of the portable electronic device to simultaneously obtain the environment temperature value and the environment humidity value.
4. The portable electronic device adapted for different usage orientations of claim 1, wherein, The portable electronic device further comprises: a gas detection module, which is arranged inside the electronic device body and electrically connected to the signal control module, for obtaining a gas concentration value by detecting a gas concentration of a predetermined gas in the surrounding environment of the portable electronic device; a temperature sensing module, which is arranged inside the electronic device body and electrically connected to the signal control module, for collecting a thermal image of a to-be-detected object to obtain a thermal image information; an information recording module, which is arranged inside the electronic device body and electrically connected to the signal control module, for recording a plurality of gas concentration values provided by the gas concentration signal and recording a plurality of gas measurement times for obtaining a plurality of the gas concentration values respectively; a sound generating module, disposed inside the electronic device body and electrically connected to the signal control module, for providing a sound signal according to the gas concentration signal; a pressure sensing module, disposed inside the electronic device body and electrically connected to the signal control module, for providing altitude information by detecting atmospheric pressure of the surrounding environment of the portable electronic device; and a wireless transmission module, disposed inside the electronic device body and electrically connected to the signal control module, for wirelessly transmitting information obtained by the portable electronic device to an electronic monitoring device.
5. The portable electronic device for different use orientations according to claim 4, wherein wherein the temperature sensing module is an infrared thermal array sensor, and the pressure sensing module is an atmospheric pressure sensor; wherein the gas detection module includes at least one of a carbon dioxide concentration sensor for obtaining a carbon dioxide concentration signal, an oxygen concentration sensor for obtaining an oxygen concentration signal, a carbon monoxide concentration sensor for obtaining a carbon monoxide concentration signal, a methane concentration sensor for obtaining a methane concentration signal, and an ammonia concentration sensor for obtaining an ammonia concentration signal, and the information display module is used to display the gas concentration values of the gas concentration signals detected by the gas detection module; wherein, when a plurality of the gas concentration values and a plurality of the gas measurement times cooperate to form a concentration and time trajectory information displayed on the information display module, the information display module is used to display the concentration and time trajectory information, and the wireless transmission module is used to wirelessly transmit the concentration and time trajectory information to the electronic monitoring device; wherein the information display module is used to provide the display signal according to the gas concentration signal; wherein, when the gas concentration value provided by the gas concentration signal is less than a first predetermined set value, the display signal provided by the information display module includes a first color information or a first animation information; wherein, when the gas concentration value provided by the gas concentration signal is greater than the first predetermined set value and less than a second predetermined set value, the display signal provided by the information display module includes a second color information or a second animation information; wherein, when the gas concentration value provided by the gas concentration signal is greater than the second predetermined set value, the display signal provided by the information display module includes a third color information or a third animation information; wherein, a first eye opening percentage of a first blinking animation of the first animation information is greater than a second eye opening percentage of a second blinking animation of the second animation information, and the second eye opening percentage of the second blinking animation of the second animation information is greater than a third eye opening percentage of a third blinking animation of the third animation information.
6. A portable electronic device suitable for different usage orientations, characterized in that, The portable electronic device includes: a signal control module; a key control module electrically connected to the signal control module; an information display module electrically connected to the signal control module for providing a plurality of information image pictures; and a position detection module electrically connected to the signal control module for detecting a setting orientation of the portable electronic device to obtain a setting orientation signal; wherein the key control module comprises a plurality of functional switches electrically connected to the signal control module and a plurality of functional keys for selectively contacting the functional switches, and the information display module comprises an information display device for displaying the information image pictures; wherein the signal control module has a plurality of key function execution instructions corresponding to the functional keys, and the key function execution instructions comprise an up key function execution instruction, a down key function execution instruction, a left key function execution instruction and a right key function execution instruction; wherein when the portable electronic device is flipped to change the setting orientation of the information display device, the viewing orientation of the information image pictures provided by the information display device changes with the change of the setting orientation of the information display device, and the corresponding relationship between the functional switches and the key function execution instructions changes with the change of the setting orientation of the information display device; wherein the portable electronic device further comprises a temperature and humidity sensing module electrically connected to the signal control module for obtaining an ambient temperature value and an ambient humidity value by detecting the temperature and humidity of the surrounding environment of the portable electronic device; wherein a display signal provided by the information display module comprises a plurality of animation information, the animation information has different blinking animations, and the blinking animations have different eye opening percentages.
7. The portable electronic device suitable for different use orientations according to claim 6, wherein wherein, the functional keys are separated from each other or combined into a single key structure, and each functional key itself or the surrounding area of the functional key has no text or pattern mark; wherein the position detection module is an acceleration sensor or a gyroscope for detecting the setting orientation of the portable electronic device to obtain the setting orientation signal; wherein the up key function execution instruction is an up selection instruction, the down key function execution instruction is a down selection instruction, the left key function execution instruction is a mode switching instruction, and the right key function execution instruction is an input confirmation instruction; wherein when the uppermost functional key executes the up selection instruction by pressing the uppermost functional switch, the information image pictures are selected upward by the control of the up selection instruction. When the bottommost functional key executes the downward selection instruction by pressing the bottommost functional switch, the information image screen is downward selected by the control of the downward selection instruction; When the leftmost functional key executes the mode switching instruction by pressing the leftmost functional switch, the multiple information image screens are mode switched by the control of the mode switching instruction, so that one of the multiple information image screens is displayed on the information display device; When the rightmost functional key executes the input confirmation instruction by pressing the rightmost functional switch, an input confirmation signal is transmitted to the signal control module by the control of the input confirmation instruction.
8. The portable electronic device adapted for different use orientations of claim 6, wherein, The portable electronic device further comprises: a gas detection module electrically connected to the signal control module, for obtaining a gas concentration value by detecting a gas concentration of a predetermined gas in the surrounding environment of the portable electronic device; one of the multiple information image screens has a temperature and humidity coordinate graph and multiple comfort distribution areas arranged on the temperature and humidity coordinate graph, the environment temperature value and the environment humidity value obtained by the temperature and humidity sensing module are displayed on one of the multiple comfort distribution areas as a temperature and humidity index, and the gas concentration value obtained by the gas detection module is displayed on one of the multiple comfort distribution areas as a comfort index; the temperature and humidity index and the comfort index are arranged along the same vertical line, and the comfort index is located below the temperature and humidity index and separated from the temperature and humidity index, or the comfort index is located on the temperature and humidity index and in contact with the temperature and humidity index; when the comfort index is located below the temperature and humidity index and separated from the temperature and humidity index, the probability of the comfort provided by the surrounding environment of the portable electronic device being affected by the predetermined gas increases; when the comfort index is located on the temperature and humidity index and in contact with the temperature and humidity index, the probability of the comfort provided by the surrounding environment of the portable electronic device being affected by the predetermined gas decreases; the temperature and humidity index and the comfort index are located on the same comfort distribution area or on two different comfort distribution areas respectively; the temperature and humidity sensing module is a temperature and humidity sensing chip, for simultaneously detecting the temperature and humidity of the surrounding environment of the portable electronic device to simultaneously obtain the environment temperature value and the environment humidity value.
9. The portable electronic device adapted for different usage orientations of claim 6, wherein, The portable electronic device further comprises: a gas detection module electrically connected to the signal control module, for obtaining a gas concentration signal by detecting a gas concentration of a predetermined gas in the surrounding environment of the portable electronic device; a temperature sensing module electrically connected to the signal control module for collecting a thermal image of an object to be measured to obtain a thermal image information; an information recording module electrically connected to the signal control module for recording a plurality of gas concentration values provided by the gas concentration signals and recording a plurality of gas measuring times for obtaining the plurality of gas concentration values, respectively; a sound generating module electrically connected to the signal control module for providing a sound signal according to the gas concentration signals; a pressure sensing module electrically connected to the signal control module for providing an altitude information by detecting an atmospheric pressure of an ambient environment of the portable electronic device; and a wireless transmission module electrically connected to the signal control module for wirelessly transmitting information obtained by the portable electronic device to an electronic monitoring device.
10. The portable electronic device adapted for different use orientations according to claim 9, wherein: wherein, the temperature sensing module is an infrared thermal array sensor, and the pressure sensing module is an atmospheric pressure sensor; the gas detecting module includes at least one of a carbon dioxide concentration sensor for obtaining a carbon dioxide concentration signal, an oxygen concentration sensor for obtaining an oxygen concentration signal, a carbon monoxide concentration sensor for obtaining a carbon monoxide concentration signal, a methane concentration sensor for obtaining a methane concentration signal, and an ammonia concentration sensor for obtaining an ammonia concentration signal, and the information display module is configured to display the gas concentration values of the gas concentration signals detected by the gas detecting module; when the plurality of gas concentration values and the plurality of gas measuring times cooperate to form a concentration and time trajectory information displayed on the information display module, the information display module is configured to display the concentration and time trajectory information, and the wireless transmission module is configured to wirelessly transmit the concentration and time trajectory information to the electronic monitoring device; the information display module is configured to provide the display signal according to the gas concentration signals; when the gas concentration values provided by the gas concentration signals are less than a first predetermined set value, the display signal provided by the information display module includes a first color information or a first animation information; when the gas concentration values provided by the gas concentration signals are greater than the first predetermined set value and less than a second predetermined set value, the display signal provided by the information display module includes a second color information or a second animation information; when the gas concentration values provided by the gas concentration signals are greater than the second predetermined set value, the display signal provided by the information display module includes a third color information or a third animation information. The first eye opening percentage of a first blinking animation of the first animation information is greater than a second eye opening percentage of a second blinking animation of the second animation information, and the second eye opening percentage of the second blinking animation of the second animation information is greater than a third eye opening percentage of a third blinking animation of the third animation information.
Citation Information
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