Electronic device
By carrying the battery of the laptop inside the display part, the problem of weight increase and core components damage caused by battery arrangement in the host part is solved, and better weight balance and core components are achieved.
Patent Information
- Application Number
- CN202510051977.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-11
- Publication Date
- 2025-05-30
AI Technical Summary
The battery of the laptop is set inside the host part, causing the weight of the host to increase, increasing the probability of core electronic components inside the host part being damaged when falling.
An electronic device is designed in which a third device with a power supply function is carried inside the second device rather than arranged in the first device for performing processing work, in this way, space inside the first device is effectively saved and the weight of the first device and the second device is balanced.
By carrying the battery inside the display part, the weight of the host part is reduced, the probability of core electronic components being damaged when falling is reduced, and the impact of battery heat on the host part is effectively reduced.
Smart Images

Figure CN120066208A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of electronic devices, and in particular, to an electronic device. Background Art
[0002] With the continuous development of office equipment, laptop computers, as a type of portable electronic device, have been chosen by most users with the need for mobile office. The laptop computer stacks the battery inside the main body part so that the battery can supply power to the entire laptop computer.
[0003] Since the battery is large in volume and heavy in weight, setting the battery in the main body part of the laptop will cause its weight to increase, and further cause a large difference in weight between the main body and the display part. When the laptop computer falls, the heavier main body part will receive a greater impact compared to the display part, increasing the probability of damage to the valuable core electronic components inside the main body part. Summary of the Invention
[0004] The present disclosure provides an electronic device, including:
[0005] A first device, the first device having a processing function;
[0006] A second device, the second device having a first display screen for displaying the processing information of the first device, and each part of the second device can move relative to the first device;
[0007] A third device, the third device having a power supply function, the second device carrying the third device, and the third device being electrically connected to the first device and the second device.
[0008] Further, a first accommodation space is provided inside the second device, and the third device is disposed in the first accommodation space;
[0009] The second device includes:
[0010] A target component, the first display screen is data-connected to the first device through the target component, the size of the first accommodation space corresponds to that of the target component in a first preset direction, at least a part of the projection of the target component along the first preset direction coincides with the first display screen, and the first preset direction is the thickness direction of the second device.
[0011] Further, the third device and the target component are disposed in the first accommodation space along a second preset direction, and at least a part of the projection of the target component along the second preset direction coincides with the third device, and the first preset direction is perpendicular to the second preset direction.
[0012] Further, the third device includes:
[0013] A plurality of battery cell modules, and the orthographic projection areas of the plurality of battery cell modules along the first preset direction do not overlap each other.
[0014] Furthermore, the second device further includes:
[0015] A cover plate structure, the surface of the first display screen opposite to the display area and the cover plate structure enclose a first accommodation space, and the third device is installed on the surface of the cover plate structure opposite to the first display screen.
[0016] Furthermore, in the direction from the first display screen to the surface of the cover plate structure opposite to the first display screen, the cross-sectional area of the cover plate structure gradually decreases, and the cross-sectional area of each position of the third device along the first preset direction is equal to the area of the surface of the cover plate structure opposite to the first display screen.
[0017] Furthermore, the electronic device further includes:
[0018] A second display screen, the second display screen is connected to the surface of the first device, the second display screen and the first display screen respectively receive display instructions, so that the second display screen and the first display screen respectively display processed information, and the first display screen and the second display screen are respectively connected to the first device for data.
[0019] Furthermore, the second device carries the third device, so as to form a second accommodation space in the first device;
[0020] The first device includes:
[0021] A first functional component, the first functional component is used to execute the processing function of the first device, both the third device and the second device are connected to the first functional component, the second accommodation space and the first functional component are arranged along a third preset direction, and the projection of the first functional component along the third preset direction is at least partially located in the second accommodation space.
[0022] Furthermore, the second device is connected to a preset position on the surface of the first device, the projection of the preset position along the fourth preset direction is at least partially located in the first functional component, and the projection of the second accommodation space along the fourth preset direction is located outside the preset position.
[0023] Furthermore, the first device further includes:
[0024] A second functional component, the second functional component can dissipate heat for the first functional component, and the second functional component is at least partially arranged in the second accommodation space.
[0025] Furthermore, the first device further includes:
[0026] A charging module, the charging module is arranged on the first functional component and is connected to the third device, the charging module is used for the direct interaction between the third device and the charging interface, and the charging module is located at or near the position of the heat dissipation medium path released by the second functional component.
[0027] Further, the second functional component includes:
[0028] A heat exchange component, where the first heat dissipation end of the heat exchange component is attached to the first functional component, and the second heat dissipation end of the heat exchange component extends into the second accommodation space;
[0029] At least one heat dissipation fan, which is arranged in the second accommodation space, and the at least one heat dissipation fan corresponds to the second heat dissipation end of the heat exchange component.
[0030] Further, the second functional component further includes:
[0031] A water cooling device, which is arranged in the second accommodation space, and the water cooling device is in contact with the heat exchange component through a water cooling pipeline.
[0032] Further, the first device further includes:
[0033] A third functional component, which has an input or output function, is arranged in the second accommodation space, and is connected to the first functional component. Description of the Drawings
[0034] By referring to the accompanying drawings and reading the following detailed description, the above and other objects, features, and advantages of the exemplary embodiments of the present disclosure will become easily understandable. In the drawings, several embodiments of the present disclosure are shown in an exemplary rather than restrictive manner, and the same or corresponding reference numerals represent the same or corresponding parts, where:
[0035] Figure 1 Schematically shows a schematic structural diagram of an electronic device;
[0036] Figure 2 Schematically shows a schematic structural diagram of the second device of the electronic device;
[0037] Figure 3 Schematically shows a schematic internal structural diagram of the second device of the electronic device;
[0038] Figure 4 Schematically shows a cross-sectional view of the first type of second device of the electronic device;
[0039] Figure 5 Schematically shows a cross-sectional view of the second type of second device of the electronic device;
[0040] Figure 6 Schematically shows a schematic structural diagram of the first device of the electronic device;
[0041] Figure 7 Schematically shows a schematic internal structural diagram of the first type of first device of the electronic device;
[0042] Figure 8Schematically shows the internal structure diagram of the second first device of the electronic device;
[0043] Figure 9 Schematically shows the internal structure diagram of the third first device of the electronic device;
[0044] Figure 10 Schematically shows the disassembly diagram of the electronic device.
[0045] Explanation of the reference numerals in the drawings:
[0046] 1. First device; 101. First functional component; 102. Second functional component; 1021. Heat exchange component; 10211. First heat dissipation end; 10212. Second heat dissipation end; 1022. Cooling fan; 1023. Water cooling device; 103. Charging module; 104. Third functional component; 1041. Wireless charging module; 1042. Audio output device;
[0047] 2. Second device; 201. Target component; 202. Cover structure; 203. First display screen; 2031. Accommodation groove;
[0048] 3. Third device; 301. Battery cell module; 302. Battery flexible circuit board;
[0049] 4. Second display screen; 5. Transmission line; 6. Hinge; 7. Input component; 8. Bottom guard;
[0050] A. First accommodation space; B. Second accommodation space; C. First preset direction; D. Second preset direction; E. Third preset direction; F. Fourth preset direction; G. Preset position; L1. First dimension; L2. Second dimension. Detailed implementation manners
[0051] The following further describes in detail the implementation manners of the present application in conjunction with the drawings and embodiments. The detailed descriptions and drawings of the following embodiments are used to exemplarily illustrate the principle of the present application, but cannot be used to limit the scope of the present application. The present application can be implemented in many different forms, is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
[0052] The present application provides these embodiments to make the present application thorough and complete, and to fully express the scope of the present application to those skilled in the art. It should be noted that: unless otherwise specifically stated, the relative arrangements of the components and steps, the components of the materials, the numerical expressions and values described in these embodiments should be construed as merely exemplary, rather than as limitations.
[0053] It should be noted that in the description of this application, unless otherwise specified, the meaning of "a plurality of" is greater than or equal to two; the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "inner", "outer", etc. is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation of this application. When the absolute position of the object being described changes, the relative position relationship may also change accordingly.
[0054] In addition, the "first", "second" and similar terms used in this application do not indicate any order, quantity or importance, but are only used to distinguish different parts. "Vertical" is not strictly vertical, but within the allowable error range. "Parallel" is not strictly parallel, but within the allowable error range. Words such as "including" or "comprising" mean that the elements before this word cover the elements listed after this word, and do not exclude the possibility of also covering other elements.
[0055] As Figure 1-3 shown, Embodiment 1 of the present disclosure provides an electronic device, which includes: a first device 1, a second device 2, and a third device 3; the first device 1 has a processing function; the second device 2 has a first display screen 203, and the first display screen 203 is used to display the processing information of the first device 1, and each part of the second device 2 can move relative to the first device 1; the third device 3 has a power supply function, the second device 2 carries the third device 3, and the third device 3 is electrically connected to the first device 1 and the second device 2.
[0056] It can be understood that the first device 1 can be the main part of some electronic devices. For example, it can be the main part of a notebook computer without a screen, or the main host of a portable office device, etc. Its main purpose is to perform a processing function, and the processing function it can achieve can be realized by cooperating with other components through the main board components set inside, and no specific limitation is imposed on it. The processing function of the first device 1 can include image processing, audio processing, and text processing, etc. It can process the instructions input by the user to obtain the information required by the user as the processing information and display it on the first display screen 203 of the second device 2.
[0057] The second device 2 can be the display part of some electronic devices. For example, it can be the display function part of a laptop computer or the display terminal of a portable office device, etc. Its main purpose is to perform the display function, which can be achieved through a screen. The display function is mainly to express the processed information on the screen so that users can understand the processed information. The first display screen 203 provided inside the second device 2 is used for display. The first display screen 203 of the second device 2 can be attached to the first device 1 to achieve the storage state between the first device 1 and the second device 2. The first display screen 203 of the second device 2 can also form an angle with the first device 1 to achieve a display state convenient for users to use. A plurality of sets of transmission line 5 structures can be provided between the second device 2 and the first device 1 for signal connection so that the first display screen 203 can display the processed information obtained by the first device 1.
[0058] The first device 1 is connected to the second device 2 so that each part of the second device 2 can move relative to the first device 1. The connection relationship between the two can be selected as the hinge 6 connection of some laptop computers to enable the two to be flipped to realize the mutual conversion between the storage mode and the use mode of the electronic device. It can also be the connection method of a special-shaped laptop computer, such as sliding connection through a slideway, etc., to realize the mutual conversion between the storage mode and the use mode, without specific limitation. In this embodiment, the two can use the hinge 6 connection method of some laptop computers. At the same time, the transmission line 5 used for connecting the second device 2 and the third device 3 is passed through the hinge 6 and connected to the inside of the first device 1.
[0059] The third device 3 can be the battery structure of some electronic devices, that is, the power supply part. For example, it can be the battery provided inside a laptop computer or a combination of multiple sets of dispersed battery cells, without specific limitation on its specific structure. The third device 3 can be provided outside the second device 2 or integrated inside the second device 2, without specific limitation on its installation position. The connection method between the third device 3 and the second device 2 can be through screw connection or through glue bonding, etc., so that the second device 2 can carry the third device 3, that is, the third device 3 is entirely located on the second device 2, in direct contact with the second device 2, and the weight of the third device 3 acts on the second device 2. At the same time, devices such as the transmission line 5 and related power supply accessories can be used to connect the third device 3 to the first device 1 and the second device 2 so that the third device 3 can supply power to the first device 1 and the second device 2.
[0060] For an electronic device provided by the present disclosure, the third device 3 for power supply in the present disclosure is carried inside the second device 2 instead of being provided in the first device 1 for performing processing work, effectively saving the space inside the first device 1.
[0061] The third device 3 is integrated into the second device 2 and can balance the weights of the first device 1 and the second device 2. During use, if the electronic device falls, since the weight of the third device 3 of the electronic device is distributed on the second device 2, the weight of the first device 1 is reduced. When the core components of the first device 1 are impacted, the probability of damage will decrease. This solves the problem that because the power supply part of the electronic device is arranged inside the main body part of the electronic device, the main body part has a relatively large weight, and when impacted, the main body part with a large weight will receive a greater impact, resulting in an increased probability of damage to the valuable core electronic components inside.
[0062] Each part of the second device 2 can move relative to the first device 1, which can avoid large - area direct contact between the second device 2 and the first device 1 during use (i.e., in the display state). Also, since the third device 3 is integrated on the second device 2, during the operation of the third device 3, the heat generated by the third device 3 is effectively reduced from being directly transferred to the first device 1 through the second device 2, further reducing the influence of the third device 3 on the internal space temperature of the first device 1 and reducing the impact of the third device 3 on the first device 1.
[0063] As Figure 3 shown, in some embodiments, a first accommodation space A can be provided inside the second device 2, and the third device 3 can be arranged in the first accommodation space A; the second device 2 can include: a target component 201, the first display screen 203 can be data - connected to the first device 1 through the target component 201, the first accommodation space A can correspond to the size of the target component 201 in a first preset direction C, at least a part of the projection of the target component 201 along the first preset direction C coincides with the first display screen 203, and the first preset direction C can be the thickness direction of the second device 2.
[0064] It can be understood that the first accommodation space A formed inside the second device 2 can be formed by arranging a plurality of support columns between the back of the first display screen 203 and the housing of the second device 2 to form the first accommodation space, or it can be a support structure attached to the backplane of the first display screen 203 and enclosed with the housing to form the first accommodation space A, or the housing can be directly buckled to the first display screen 203 to form the first accommodation space A. The present disclosure is not limited to the formation method of the first accommodation space A. The target component 201 can be an accessory used when the first display screen 203 is connected to the first device 1. For example: Display Driver IC, Timing Controller (TCON), and Scaler, etc. In this embodiment, the target component 201 can be the driving circuit board of the first display screen 203, which can have any one or more of functions such as signal conversion, color correction and adjustment, and power control. The target component 201, the first device 1, and the first display screen 203 can be connected through a transmission line and some connection accessories. The connection accessories can be a transmission line socket or a transmission line connector, etc., and no specific limitation is imposed on it. The first display screen 203 can be connected to the first device 1 through the target component 201 and the transmission line 5. That the at least partial projection of the target component 201 in the first preset direction is located on the first display screen 203 can be understood as that the target component 201 can be entirely located between the first display screen 203 and the housing of the second device 2, or only partially located between the two. Specifically, it can be selected according to the specific size of the third device 3. If the size of the third device 3 is large, it can be selected that the target component 201 is only partially located between the two. If the size of the third device 3 is small, the target component 201 can be entirely located between the two, and no specific limitation is imposed on it. Compared with the target component 201 being arranged on one side of the first display screen 203 in the second preset direction, that the at least partial projection of the target component 201 in the first preset direction is located on the first display screen 203 can effectively increase the screen-to-body ratio of the display area of the second device 2 and enhance the user experience.
[0065] In this embodiment, the first preset direction C may be the thickness direction of the second device 2. The correspondence between the size of the first accommodation space A and the target component 201 in the first preset direction C can be understood as that the thickness of the first accommodation space A along the first preset direction C is determined by the thickness of the target component 201 along the first preset direction C. The two inner walls of the first accommodation space A along the first preset direction C can abut against one or more relatively higher electronic components of the target component 201 along the first preset direction C, such as connectors, pulse width modulators, etc. Thus, it can be understood that the thickness of the first accommodation space along the first preset direction C is equal to the thickness of the target component 201. It can also be understood that there is a certain installation gap between one or two relatively higher electronic components of the target component 201 along the first preset direction C and the two side walls of the first accommodation space A along the first preset direction C to facilitate the installation of the target component 201. In this embodiment, the installation gap can be about 1 millimeter, and can be specifically adjusted according to the installation method of the target component 201 to minimize the size of the installation gap as much as possible. Since the size of the first accommodation space A corresponds to that of the target component 201 in the first preset direction C, it can be ensured that the first accommodation space A can achieve the minimum size along the first preset direction C under the premise of being able to accommodate the third device 3 and the target component 201, and the normal function of the second device 2 can be realized. In this way, the thickness of the second device 2 can be effectively limited, and further the overall thickness of the electronic device can be reduced.
[0066] As Figure 3 shown, in some embodiments, the third device 3 and the target component 201 may be arranged in the first accommodation space A along the second preset direction D, and at least part of the projection of the target component 201 along the second preset direction D may coincide with the third device 3, and the first preset direction C may be perpendicular to the second preset direction D.
[0067] It can be understood that the outer shape of the second device 2 can be approximately a cuboid or a cylinder, without specific limitation thereto, and can be selected according to actual requirements. In this embodiment, the second device 2 can be generally in a near-cuboid structure, with its thickness in the first preset direction C, and the second preset direction D can be its width direction or its length direction. In the case where the second preset direction D is the width direction of the second device 2, the overall shape of the second device 2 in the present disclosure is not limited thereto. When the thickness of the target component 201 is greater than the thickness of the third device 3, the projection of the target component 201 along the second preset direction D is partially located on the third device 3. At the same time, when the thickness direction of the third device 3 has a certain angle with the first preset direction C, the projection of the target component 201 along the second preset direction may also be partially located on the third device 3. And when the thickness of the third device 3 is the same as the thickness of the target component 201 and their thickness directions are consistent, the projection of the target component 201 along the second preset direction D can completely coincide with the third device 3. In this way, the thickness of the second device 2 can be reduced.
[0068] As Figure 3 shown, in some embodiments, the third device 3 may include: a plurality of battery cell modules 301, and the orthographic projection areas of the plurality of battery cell modules 301 along the first preset direction C may not overlap with each other.
[0069] It can be understood that the orthographic projection area of the plurality of battery cell modules 301 along the first preset direction C can be understood as that when the plurality of battery cell modules 301 are projected along the first preset direction C, the area covered by their projection on a certain plane perpendicular to the first preset direction C is the orthographic projection area, and this plane can be the plane on the first display screen 203 or any plane on the outer shell of the second device 2, without specific limitation thereto. And the orthographic projection areas of the plurality of battery cell modules 301 along the first preset direction C may not overlap with each other can be understood as that the orthographic projection areas of the plurality of battery cell modules 301 along the first preset direction C are all independent, without overlapping parts, no intersection or coverage. That is, the plurality of battery cell modules 301 are installed inside the first accommodation space A without stacking in their thickness direction. Such a setting can further reduce the thickness of the second device 2 and make the internal space distribution of the electronic device more reasonable. The arrangement of the plurality of battery cell modules 301 can be selected according to the shape of the battery cell modules 301 to minimize the volume occupied by the battery cell modules 301 in the first accommodation space A.
[0070] The battery cell module 301 can be in a cuboid structure or a cylindrical structure, without limiting its specific dimensions and shape, and can be selected according to actual needs. In this embodiment, the battery cell module 301 can be in a cuboid structure and have the same thickness. Multiple battery cell modules 301 can be arranged in a rectangular array on the same plane in the first accommodation space A, and can be laid on the first display screen 203 or on the housing of the second device 2. The specific number of the battery cell modules 301 can be selected according to the actual needs of the electronic device, and four can be selected in this embodiment. The four battery cell modules 301 are grouped in pairs, and the two battery cell modules 301 in each group can be arranged along the second preset direction D. There can be an interval between the two groups of battery cell modules 301. At the same time, a battery flexible circuit board 302 can be arranged between the two groups of battery cell modules 301 to connect all four battery cell modules 301, and can be connected to the first device 1 through the transmission line 5 passing through the connection hinge 6 between the second device 2 and the first device 1, and finally reach the inside of the first device 1 and can be connected to the first device 1.
[0071] As Figure 4 shown, in some embodiments, the second device 2 may further include: a cover structure 202. The surface of the first display screen 203 opposite to the display area and the cover structure 202 can enclose the first accommodation space A, and the third device 3 can be installed on the surface of the cover structure 202 opposite to the first display screen 203.
[0072] The cover structure 202 can serve as the housing of the second device 2. The cover structure 202 and the first display screen 203 form the first accommodation space A by setting the surface of the cover structure 202 opposite to the first display screen 203 at an interval. The surface of the cover structure 202 and the first display screen 203 opposite to the display area, the side wall of the cover structure 202 adjacent to the surface of the first display screen 203 opposite to it, and the surface of the first display screen 203 opposite to the display area can jointly enclose the first accommodation space A.
[0073] In some embodiments, when the strength requirement for the first accommodation space is relatively high, support columns can also be arranged between the cover structure 202 and the first display screen 203 to maintain the first accommodation space A. The third device 3 is fixedly connected to the surface of the cover structure 202 opposite to the first display screen 203. The two can be connected by bolts or can be clamped through a card slot, without limiting the specific fixed connection method. In this embodiment, the two can be bonded with a connection adhesive. With such a setting, the target component 201 is completely located behind the first display screen 203, which can maximize the screen-to-body ratio of the second device 2 and improve the user experience.
[0074] As Figure 4As shown, for the first display screen 203, a liquid crystal display panel (LCD) or an organic light-emitting diode panel (OLED) can be used. In this embodiment, a bent panel can be selected as the first display screen 203. The two side edges of the bent panel are bent to form a receiving groove 2031 on the back of the first display screen 203 opposite to the display area. After the first display screen 203 is installed on the cover plate structure 202, the receiving groove 2031 and the cover plate structure 202 together form a first accommodation space A.
[0075] As Figure 5 shown, in some embodiments, in the direction from the first display screen 203 to the surface of the cover plate structure 202 opposite to the first display screen 203, the cross-sectional area of the cover plate structure 202 can gradually decrease, and the cross-sectional area of the third device 3 at each position along the first preset direction C can be equal to the area of the surface of the cover plate structure 202 opposite to the first display screen 203.
[0076] As Figure 5 shown, it can be understood that in terms of the outer shape, the dimension of the second device 2 gradually decreases along the first preset direction C and away from the first display screen 203. That is, in the direction from the first display screen 203 to the surface of the cover plate structure 202 opposite to the first display screen 203, for any two adjacent cross-sections in the second device 2, the first cross-section is located closer to the first display screen 203, and the second plane is located closer to the surface of the cover plate structure 202 opposite to the first display screen 203. The area of the first cross-section is larger than that of the second cross-section. It can also be understood that the second device 2 is along the second preset direction D, that is, the surfaces on both sides in the width direction of the second device 2 are inclined surfaces, or the surfaces on both sides in the length direction of the second device 2 are inclined surfaces, or both the length and width directions of the second device 2 are inclined surfaces, and no specific limitation is imposed. With such a setting, when the user observes the second device 2, it can visually make the thickness of the second device 2 smaller, thereby enhancing the user experience. In this embodiment, the cross-section of the first accommodation space along the second preset direction D can be an isosceles trapezoid.
[0077] As Figure 5 shown, Figure 5It can be understood as a cross section of the second device 2 along the second preset direction D. It can be seen that in this cross section, the second dimension L2 of the third device is the same as the first dimension L1 of the surface opposite to the cover structure 202 and the first display screen 203. Similarly, there can be a reference direction that is perpendicular to both the first preset direction C and the second preset direction D. The three directions can constitute a three-dimensional coordinate system. The first preset direction C can be the X-axis of the three-dimensional coordinate system, the second preset direction D can be the Y-axis of the three-dimensional coordinate system, and the reference direction can be the Z-axis of the three-dimensional coordinate system. In the cross section of the second device 2 in the reference direction, the dimension of the third device 3 along the second preset direction D can be consistent with the dimension of the surface opposite to the cover structure 202 and the first display screen 203 along the second preset direction D. The third device 3 completely covers the surface opposite to the cover structure 202 and the first display screen 203, effectively improving the rationality of the layout of the third device 3 in the first accommodation space A, so that the second device 2 can arrange more or larger battery modules 301 without changing the size.
[0078] like Figure 6 As shown, in some embodiments, the electronic device also includes: a second display screen 4, the second display screen 4 can be connected to the surface of the first device 1, the second display screen 4 and the first display screen 203 can respectively receive display instructions, so that the second display screen 4 and the first display screen 203 can respectively display processing information, and the first display screen 203 and the second display screen 4 can be respectively connected to the data of the first device 1.
[0079] It can be understood that the second display screen 4 can be a screen with a smaller size than the first display screen 203, or it can be the same screen or a screen with a larger size, etc., and the specific form of the second display screen 4 is not limited. The surface of the first device 1 can be understood as the outer surface of the shell of the first device 1, which can be a surface provided with the input component 7, and it is not specifically limited. The second display screen 4 and the first display screen 203 are two completely independent screens, and the display instruction can be an instruction used by the first device 1 to adjust and control the display content of the first display screen 203 and the second display screen 4. The first display screen 203 and the second display screen 4 can be respectively connected to the first device 1 through the transmission line 5 and other auxiliary parts such as: a driver board, a switching device, etc. for data connection.
[0080] During use, the first device 1 can first confirm the information to be displayed on the first display screen 203 according to the processing information, and then send a first display instruction to the first display screen 203 so that the first display screen 203 can display the corresponding content. When the second display screen is needed, the first device 1 can confirm the content to be displayed on the second display screen 4 according to the processing information and send a second display instruction to the second display screen 4 so that the second display screen 4 can display the corresponding content. Since the first display instruction and the second display instruction are used to control two different display screens, they have different display qualities. The second display screen 4 and the first display screen 203 can display the same content or different content, and no specific limitation is imposed on this.
[0081] As Figures 6-9 shown, in some embodiments, the second device 2 can carry the third device 3 so that a second accommodation space B can be formed in the first device 1; the first device 1 can include: a first functional component 101, and the first functional component 101 can be used to execute the processing function of the first device 1. Both the third device 3 and the second device 2 can be connected to the first functional component 101. The second accommodation space B and the first functional component 101 can be arranged along a third preset direction E, and the projection of the first functional component 101 along the third preset direction E can be at least partially located within the second accommodation space B.
[0082] It can be understood that in some electronic devices, there may be a situation where the power supply part is arranged in the main body part of the electronic device, and there are multiple battery cell structures stacked along the thickness direction of the main body part inside the power supply part. Compared with the above-mentioned electronic devices, in the present disclosure, the third device 3 can be carried on the second device 2, and the space saved in the first device 1 for installing the third device 3 can be used as the second accommodation space B. During actual application, the second accommodation space B can have various application methods. For example, a new cooling component can be added to reduce the internal temperature of the electronic device, or a part of the battery structure can be added to the second accommodation space B to increase the battery life of the electronic device. The second accommodation space B can provide more flexibility for the space utilization and function realization of the electronic device.
[0083] The first functional component 101 can be a main board composed of components such as a central processing unit (CPU) and a power management circuit (PMC / PMIC) in a computer device, so that the first functional component 101 can perform processing functions. The first functional component 101 can also be a single-board computing device, and the specific structure of the first functional component 101 is not limited. The third device 3 and the second device 2 can be connected to the first functional component 101 through a transmission line 5 and electronic accessories such as sockets and adapters. The first functional component 101 can distribute the power provided by the third device 3 to other components inside the first device 1 and the second device 2 to ensure the normal operation of the electronic device. At the same time, the first functional component 101 also has functions such as controlling the charging and discharging of the third device 3. The second device 2 can also be directly powered by the third device 3, and no specific limitation is imposed on it.
[0084] The third preset direction E can be a direction perpendicular to the thickness of the first device 1. The outer shape of the first device 1 can be a cylinder or a cuboid, and no specific limitation is imposed on its specific shape. In this embodiment, the outer shape of the first device 1 can be a near-cuboid corresponding to the second device 2, and the third preset direction E can be the width direction of the first device 1. The specific shape of the first device 1 in the present disclosure is not limited to this. The second accommodation space B and the first functional component 101 are arranged along the third preset direction E. It can be understood that at least part of the projection of the first functional component 101 along the third preset direction E is located inside the second accommodation space B. Along the third preset direction E, at least part of the first functional component 101 and the second accommodation space B overlap. It can also be understood that the first functional component 101 and the second accommodation space are not stacked along the thickness direction of the first device 1. When the thickness of the first functional component 101 is the same as the thickness of the second accommodation space B or the thickness of the first functional component 101 is less than the thickness of the second accommodation space B, it can be understood that the projection of the first functional component 101 along the third preset direction E is completely located in the second accommodation space B. When the thickness of the first functional component 101 is greater than the thickness of the second accommodation space B, part of the first functional component 101 is located in the second accommodation space B. In this embodiment, the thickness of the first functional component 101 can be approximate to the thickness of the second accommodation space B, and their thickness directions can be parallel. Such a setting avoids the stacked arrangement of the first functional component 101 and the second accommodation space, effectively reducing the thickness of the first device 1.
[0085] As Figures 6-9 shown, in some embodiments, the second device 2 can be connected to a preset position G on the surface of the first device 1. The projection of the preset position G along the fourth preset direction F can be at least partially located inside the first functional component 101, and the projection of the second accommodation space B along the fourth preset direction F can be located outside the preset position G.
[0086] It can be understood that the preset position G on the surface of the first device 1 can be any position, and no specific limitation is imposed on it. In this embodiment, the preset position G can be a position near the end in the width direction of the first device 1. When input components 7 such as a keyboard or a touchpad are provided on the first device 1, the preset position G needs to avoid the position of the input components 7. In this embodiment, the first device 1 and the second device 2 are hinged at the preset position G through a hinge 6. In the storage state, the first device 1 is flipped relative to the second device 2 so that the first display screen 203 can cover the input components 7, and the first display screen 203 faces the input components 7, so that the first device 1 and the second device 2 can be attached. In the display state, the second device 2 can be flipped so that the display area of the first display screen 203 of the second device 2 can face the user.
[0087] The fourth preset direction F can be the thickness direction of the first device 1. It can be understood that the projection of the preset position G along the fourth preset direction F is at least partially located within the first functional component 101, which means that the preset position G on the surface of the first device 1 and the first functional component 101 can be stacked along the fourth preset direction F. When the electronic device is placed normally on a horizontal plane for work, the preset position G can be at least partially located above the first functional component 101. The second device 2 and the third device 3 can both be connected to the first functional component 101 through a transmission line 5. When the projection of the preset position G along the fourth preset direction F is partially located within the first functional component 101, it can be understood that the connection parts of the first functional component 101 with the second device 2 and the third device 3 are stacked with the preset position G along the fourth preset direction F. It can also be understood that when the electronic device is placed on a horizontal plane and works normally, the connection parts of the first functional component 101 with the second device 2 and the third device 3 are located below the preset position G. And when the projection of the preset position G along the fourth preset direction F is completely located within the first functional component 101, the preset position G and the first functional component 101 are completely stacked along the fourth preset direction F. In the display state and when the electronic device is placed on a horizontal plane, all parts of the preset position G are located above the first functional component 101. With such a setting, the first functional component 101 can be closer to the installation positions of the second device 2 and the third device 3 on the first device 1, which can effectively reduce the length of the transmission line 5 used for connecting the second device 2 and the third device 3 with the first functional component 101, and further increase the rationality of the internal space layout of the first device 1.
[0088] It can be understood that the projection of the second accommodation space B along the fourth preset direction F is located outside the preset position G, which means that the projection of the second accommodation space B along the fourth preset direction F has no intersection with the preset position G. In this way, after the transmission line 5 for connecting the first functional component 101 of the first device 1 and the second device 2 extends from the preset position G into the first device 1, it can be directly connected to the first functional component 101 without occupying the second accommodation space B.
[0089] As Figures 7-9 shown, in some embodiments, the first device 1 may further include: a second functional component 102, which can dissipate heat for the first functional component 101, and at least a part of the second functional component 102 may be disposed in the second accommodation space B.
[0090] It can be understood that the second functional component 102 can be a heat dissipation device of some electronic devices, such as a cooling fan, or a water-cooled heat dissipation device, etc., and no specific limitation is imposed on it. The second functional component 102 can be installed inside the first device 1 by screws or connected through a card slot, and no specific connection method between the second functional component 102 and the first device 1 is limited. That at least a part of the second functional component 102 is disposed in the second accommodation space B can be understood as that the first part of the second functional component 102 can be stacked with the first functional component 101 along the fourth preset direction F, and the other part is disposed in the second accommodation space B to dissipate heat for the first functional component 101. The second functional component 102 can also be entirely disposed in the second accommodation space B to dissipate heat for the first functional component 101, and the specific choice can be made according to the type of the second functional component 102.
[0091] In some electronic devices, heat dissipation components such as a fan and a heat exchange plate are completely stacked with the first functional component 101 along the fourth preset direction F, while in the present disclosure, at least a part of the second functional component 102 can be disposed in the second accommodation space B, which can effectively reduce the space occupied by the second functional component 102 inside the first device 1 along the fourth preset direction F, thereby increasing the rationality of the layout inside the first device 1.
[0092] As Figures 7-9 shown, in some embodiments, the first device 1 may further include: a charging module 103, which can be disposed on the first functional component 101 and can be connected to the third device 3. The charging module 103 can be used for direct interaction between the third device 3 and the charging interface, and the charging module 103 can be located at or near the position of the heat dissipation medium released by the second functional component 102.
[0093] It can be understood that the charging module 103 can be a chip or a circuit for managing the charging of the third device 3, and no specific limitation is imposed on it. The charging module 103 can be connected to the first functional component 103 through an interface, a slot, or a connecting circuit, etc. The direct interaction between the charging module 103 and the charging interface of the third device 3 can be understood as that the charging module 103 receives the current charged from the charging interface of the electronic device and distributes it to the third device 3 to enable the third device 3 to be charged. The charging module 103 can be part of a power management system and is responsible for the charging process of the third device 3. During the use of the charging module 103, heat will be generated, which will in turn affect the internal temperature of the first device 1. In the present disclosure, setting the charging module 103 at a position where the heat dissipation medium released by the second functional component 102 is located or near can effectively dissipate the heat of the charging module 103 and reduce the impact of the charging module 103 on the inside of the first device 1. When the second functional component 102 adopts an air-cooled heat dissipation device, the heat dissipation medium can be the airflow released by the heat dissipation device, and the charging module 103 can be located at the position where the airflow released by the second functional component 102 passes through. When the second functional component 102 adopts water-cooled heat dissipation, the heat dissipation medium can be the coolant in the pipeline of the heat dissipation device, and the charging module 103 can be arranged near the pipeline through which the coolant flows in the second functional component 102 to achieve heat dissipation of the charging module 103.
[0094] As Figures 7-9 shown, in some embodiments, the second functional component 102 may include: a heat exchange component 1021 and at least one heat dissipation fan 1022; the first heat dissipation end 10211 of the heat exchange component 1021 may be attached to the first functional component 101, and the second heat dissipation end 10212 of the heat exchange component 1021 may extend into the second accommodation space B; the heat dissipation fan 1022 may be arranged in the second accommodation space B, and at least one heat dissipation fan 1022 may correspond to the second heat dissipation end 10212 of the heat exchange component 1021.
[0095] It can be understood that the heat exchange component 1021 can be a heat exchange plate, a vapor chamber, etc. In this embodiment, the heat exchange component 1021 can adopt a vapor chamber. The first heat dissipation end 10211 of the heat exchange component 1021 is attached to the first functional component 101, and it can be selected on the component with higher heat dissipation on the first functional component 101, such as: central processing unit (CPU), graphics processing unit (GPU), etc. The attachment method between the two can apply a heat conductive material on the first functional component 101, such as media like thermal grease, thermal silicone sheet, thermal phase change material, etc., and then closely contact the heat exchange component 1021 with the first functional component 101, and fix the heat exchange component 1021 by means of bolts or card slots, etc. The specific selection of the first heat dissipation end 10211 and the second heat dissipation end 10212 can be made according to the specific shape of the heat exchange component 1021 and the positions of the first functional component 101 and the cooling fan 1022, and no specific limitation is imposed on it.
[0096] The second heat dissipation end 10212 extends into the second accommodation space B. A cooling fan 1022 is arranged in the second accommodation space B. The cooling fan 1022 can be connected to the second accommodation space B by screws or fixed to the second accommodation space B through a card slot, and no specific limitation is imposed on its fixing method. The airflow released by the cooling fan 1022 dissipates heat from the second heat dissipation end 10212, enabling the overall heat exchange component 1021 to dissipate heat, and further dissipating heat from the first functional component 101. The specific number of the cooling fans 1022 corresponding to the second heat dissipation is not limited. When there is only one cooling fan 1022 and one second heat dissipation end 10212, the air outlet of the cooling fan 1022 faces the second heat dissipation end 10212 to dissipate heat from the heat exchange component 1021. As Figure 8 shown, when there are two second heat dissipation ends 10212 and more than two cooling fans 1022, the air outlet interfaces of two of the cooling fans 1022 face the two second heat dissipation ends 10212 respectively, and the remaining cooling fans 1022 can directly face the first functional component 101 to dissipate heat from the first functional component 101. The specific numbers of the cooling fans 1022 and the second heat dissipation ends 10212 are not limited and can be selected according to actual needs. It should be noted that for the cooling fan 1022 that dissipates heat from the second heat dissipation end portion 10212, it should be avoided that the heat dissipation medium released by it contacts the first functional component 101 again after dissipating heat from the second heat dissipation end portion 10212 to prevent the occurrence of ineffective heat dissipation. With such a setting, the cooling fan 1022 is arranged in the second accommodation space B, effectively reducing the thickness of the first device 1 in the fourth preset direction F, and further increasing the rationality of the spatial layout of the first device 1.
[0097] As Figure 7 、 9As shown, in some embodiments, the second functional component 102 may further include: a water cooling device 1023. The water cooling device 1023 may be disposed in the second accommodation space B, and the water cooling device 1023 may be in contact with the heat exchange component 1021 through a water cooling pipeline.
[0098] It can be understood that the water cooling device 1023 may be some water cooling components disposed in a computer, such as an all-in-one water cooling radiator or a split water cooling radiator, etc. In this embodiment, the water tank and the water pump of the water cooling device 1023 may be disposed inside the second accommodation space B, and may be fixedly connected through structures such as screws or card slots. It should be noted that the installation positions of the water tank and the water pump should avoid the position of the cooling fan 1022 to prevent interference with the cooling fan 1022. The water cooling device 1023 is in close contact with the heat exchange component 1021 through the water cooling pipeline. The water pump drives the coolant to enter the water cooling pipeline from the water tank and circulates in the water cooling pipeline. The coolant flows through the position where the water cooling pipeline is in contact with the heat exchange component 1021 for heat exchange, thereby reducing the temperature of the heat exchange component 1021. Disposing the water cooling device in the second accommodation space B can increase the heat dissipation capacity of the electronic device while not affecting the layout of the internal space of the first device 1.
[0099] As Figure 9 shown, in some embodiments, the first device 1 may further include: a third functional component 104. The third functional component 104 may have an input or output function. The third functional component 104 may be disposed in the second accommodation space B, and the third functional component 104 may be connected to the first functional component 101.
[0100] It can be understood that the third functional component 104 having an input or output function can be understood as that the electronic device can realize the function of interacting with external facilities or users through the third functional component 104. For example, the input of electric energy to the electronic device can be realized through the third functional component 104, or the output of audio can be realized by using the third functional component 104, etc. The third functional component 104 may be a wireless charging module 1041. The wireless charging module 1041 is disposed inside the second accommodation space B and is connected to the first functional component 101 and the charging module 103, so that the electronic device can have the wireless charging function. The third functional component 104 may also be an audio output device 1042. The audio output device 1042 is connected to the first functional component to achieve high-quality audio output and meet the users with high requirements for audio output. The specific structure of the third functional component 104 is not limited. Disposing the third functional component 104 in the second accommodation space B can increase the functions related to input and output of the electronic device without affecting the internal layout of the first device 1, effectively increasing the rationality of the spatial layout of the electronic device and the practicability of the electronic device.
[0101] In some embodiments, the architecture of the electronic device of the present disclosure may be as follows Figure 10 As shown, the third device 3 is disposed in the first accommodation space A formed by enclosing the cover plate structure 202 and the first display screen 203 and is located between them. At the same time, the first functional component 101 is disposed inside the first device 1, and the second functional component 102 is disposed in the second accommodation space B. A bottom guard plate 8 may also be provided at the bottom of the first device 1 to protect components such as the first accommodation component 101, the second functional component 102, and the third functional component 104 inside the first device 1.
[0102] It should also be noted that in the description of the present application, unless otherwise clearly specified and limited, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be directly connected, or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances. When it is described that a specific device is located between a first device and a second device, there may or may not be an intermediate device between the specific device and the first device or the second device.
[0103] All terms used in this application have the same meanings as understood by those of ordinary skill in the art to which this application belongs, unless otherwise specifically defined. It should also be understood that terms defined in a general dictionary, such as those in a general dictionary, should be interpreted as having meanings consistent with their meanings in the context of the relevant art, and should not be interpreted in an idealized or overly formal sense, unless specifically defined as such here.
[0104] Technologies, methods, and devices known to those of ordinary skill in the relevant art may not be discussed in detail, but in appropriate cases, the technologies, methods, and devices should be regarded as part of the specification.
[0105] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. An electronic device, comprising: a first device, the first device having a processing function; a second device, the second device having a first display screen, the first display screen being used to display processing information of the first device, and each part of the second device being movable relative to the first device; The third device has a power supply function, the second device carries the third device, and the third device is electrically connected to the first device and the second device.
2. The electronic device according to claim 1, A first accommodating space is provided inside the second device, and the third device is provided in the first accommodating space; The second device comprises: A target component, wherein the first display screen is data-connected to the first device via the target component, the first accommodation space corresponds to a size of the target component in a first preset direction, at least a partial projection of the target component along the first preset direction coincides with the first display screen, and the first preset direction is a thickness direction of the second device.
3. The electronic device according to claim 2, The third device and the target component are arranged in the first accommodating space along a second preset direction, and a projection of the target component along the second preset direction at least partially overlaps with the third device, and the first preset direction is perpendicular to the second preset direction.
4. The electronic device according to claim 2 or 3, wherein the third device comprises: A plurality of battery cell modules, wherein the orthographic projection areas of the plurality of battery cell modules along the first preset direction do not overlap with each other.
5. The electronic device according to claim 2, wherein the second device further comprises: A cover plate structure, wherein a surface of the first display screen opposite to the display area and the cover plate structure enclose the first accommodation space, and the third device is installed on a surface of the cover plate structure opposite to the first display screen.
6. The electronic device according to claim 5, From the first display screen to the surface direction of the cover structure opposite to the first display screen, the cross-sectional area of the cover structure gradually decreases, and the cross-sectional area of the third device at each position along the first preset direction is equal to the area of the surface opposite to the cover structure and the first display screen.
7. The electronic device according to claim 1, further comprising: A second display screen, the second display screen is connected to the surface of the first device, the second display screen and the first display screen respectively receive display instructions so that the second display screen and the first display screen respectively display processing information, and the first display screen and the second display screen are respectively connected to the data of the first device.
8. The electronic device according to claim 1, The second device carries the third device, so that a second accommodation space is formed in the first device; The first device comprises: A first functional component, wherein the first functional component is used to execute the processing function of the first device, the third device and the second device are both connected to the first functional component, the second storage space and the first functional component are arranged along a third preset direction, and the projection of the first functional component along the third preset direction is at least partially located in the second storage space.
9. The electronic device according to claim 8, The second device is connected to a preset position on the surface of the first device, the projection of the preset position along a fourth preset direction is at least partially located within the first functional component, and the projection of the second accommodating space along the fourth preset direction is located outside the preset position.
10. The electronic device according to claim 8 or 9, wherein the first device further comprises: A second functional component, wherein the second functional component can dissipate heat for the first functional component, and the second functional component is at least partially disposed in the second accommodating space.