Terminal housing assembly and terminal
By introducing a condenser into the terminal housing assembly and controlling its movement with the power receiving module and condenser adjustment assembly, the problem of the divergence of the field angle of the existing flash lamp is solved, and the effect of increasing the illumination distance is achieved, meeting the need for shooting more distant objects.
Patent Information
- Application Number
- CN201911058973.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-11-01
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2039-11-01
AI Technical Summary
The field angle of the existing flashes is divergent, resulting in a relatively close illumination distance, making it difficult to meet the needs of shooting more distant objects.
By introducing a condenser into the terminal housing assembly and using the power receiving module and the condenser adjustment assembly, the movement of the condenser is controlled according to the acquired electrical energy, thereby adjusting the field of view of the flash and increasing the illumination distance.
By moving the condenser, the illumination distance of the flash is effectively increased, and the ability to photograph farther scenes can be photographed, improving the flexibility and effect of taking pictures.
Smart Images

Figure CN110830634B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of electronic technology, and in particular to a terminal housing component and a terminal. Background Art
[0002] As people's requirements for the quality of photos taken by terminals such as smartphones increase, flash lights gradually play an important role in photography. Flash lights can be divided into single flash, double flash, and quad flash in terms of quantity, and single color temperature, dual color temperature, xenon lamp, etc. in terms of function. However, the flash light currently has a relatively divergent field of view and its irradiation distance is relatively short. Summary of the invention
[0003] The present invention provides a terminal housing assembly and a terminal in an embodiment, which can increase the irradiation distance of a flashlight by moving a condenser.
[0004] In a first aspect, an embodiment of the present invention provides a terminal housing assembly, the terminal housing assembly comprising a condenser, a power receiving module and a condenser adjustment assembly, the power receiving module being connected to the condenser adjustment assembly;
[0005] The power receiving module is used to make the condenser adjustment component work according to the acquired electric energy;
[0006] The condenser adjustment assembly is used to control the movement of the condenser during operation.
[0007] Optionally, the terminal housing assembly further comprises a slide groove, and the focusing mirror can move in the slide groove.
[0008] Optionally, the power receiving module includes a coil, and the condenser adjustment assembly includes a magnet and a push rod; the coil is connected to the condenser adjustment assembly;
[0009] The coil is used to interact with the magnet according to the acquired electrical energy to control the movement of the push rod;
[0010] The push rod is used to push the condenser to move in the slide groove when moving.
[0011] Optionally, the magnet includes a first polarity end and a second polarity end, and the push rod is arranged between the first polarity end and the second polarity end.
[0012] In a second aspect, an embodiment of the present invention provides a terminal, the terminal comprising a terminal body and a terminal housing assembly, wherein:
[0013] The terminal body is used to call the power supply module included in the terminal to provide power to the terminal housing component when the light-emitting mode is detected;
[0014] The terminal housing assembly is used to control the movement of a condenser included in the terminal housing assembly according to the acquired electric energy.
[0015] Optionally, the lighting mode means that the terminal opens a camera application and the camera application enables a flash function.
[0016] Optionally, the terminal body is also used to obtain image data captured by a camera included in the terminal when a light-emitting mode is detected; determine the distance value between a specified object in the image data and an actual photographed object corresponding to the specified object; and when the distance value is greater than or equal to a preset distance value, execute the step of calling a power supply module included in the terminal to provide power to the terminal shell assembly.
[0017] Optionally, the terminal housing assembly includes a power receiving module and a condenser adjustment assembly, and the power receiving module is connected to the condenser adjustment assembly;
[0018] The power receiving module is used to make the condenser adjustment component work according to the acquired electric energy;
[0019] The condenser adjustment assembly is used to control the movement of the condenser during operation.
[0020] Optionally, the terminal housing assembly further comprises a slide groove, and the focusing mirror can move in the slide groove.
[0021] Optionally, the power receiving module includes a coil, and the condenser adjustment assembly includes a magnet and a push rod; the coil is connected to the condenser adjustment assembly;
[0022] The coil is used to interact with the magnet according to the acquired electrical energy to control the movement of the push rod;
[0023] The push rod is used to push the condenser to move in the slide groove when moving.
[0024] In a third aspect, an embodiment of the present invention provides a terminal, the terminal comprising a processor, a position adjustment component and a light adjustment device, wherein:
[0025] The processor is used to control the position adjustment component to work when a light-emitting pattern is detected;
[0026] The position adjustment component is used to control the movement of the light adjustment device during operation.
[0027] Optionally, the processor is used to send a first control instruction to the position adjustment component when a light-emitting pattern is detected;
[0028] The position adjustment component is specifically used to control the movement of the light adjustment device when receiving a first control instruction.
[0029] Optionally, the lighting mode includes any one of the following: the terminal opens a camera application, and the camera application enables a flash function, opens a camera application, enables a flashlight function, a time point for triggering position adjustment is reached, and a designated sliding button is dragged.
[0030] Optionally, the terminal further includes a power supply;
[0031] The processor is specifically configured to send a second control instruction to the power supply when a light-emitting mode is detected;
[0032] The power supply is used to provide electric energy to the position adjustment component to enable the position adjustment component to work when receiving the second control instruction.
[0033] Optionally, the terminal includes a power supply module and a power receiving module;
[0034] The processor is used to call the power supply module to provide power to the power receiving module when a light-emitting mode is detected;
[0035] The power receiving module is used to enable the position adjustment component to work according to the acquired electric energy.
[0036] To sum up, the power receiving module included in the terminal shell assembly can enable the condenser adjustment assembly included in the terminal shell assembly to operate according to the obtained electric energy, so that the condenser adjustment assembly controls the movement of the condenser when working. This process can increase the irradiation distance of lighting devices such as flash lights by moving the condenser. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0038] Figure 1 is a structural schematic diagram of a terminal housing assembly provided by an embodiment of the present invention;
[0039] Figure 2 is a structural schematic diagram of another terminal housing assembly provided by an embodiment of the present invention;
[0040] Figure 3 is a structural schematic diagram of another terminal housing assembly provided by an embodiment of the present invention;
[0041] Figure 4 is a schematic diagram of the structure of a terminal provided by an embodiment of the present invention;
[0042] Figure 5 is a schematic diagram of adjusting the field angle of a flashlight by using a condenser provided by an embodiment of the present invention;
[0043] Figure 6 is a schematic diagram of the structure of a terminal provided by an embodiment of the present invention;
[0044] Figure 7 It is a flow chart of a focusing control method provided by an embodiment of the present invention. DETAILED DESCRIPTION
[0045] The technical solutions in the embodiments of the present invention will be described below in conjunction with the accompanying drawings in the embodiments of the present invention.
[0046] See also Figure 1 , is a schematic diagram of the structure of a terminal housing assembly provided by an embodiment of the present invention. Figure 1 In the embodiment, the terminal housing assembly 10 may include a condenser lens 11. In one embodiment, the terminal housing assembly 10 may also include Figure 1 The chute 12 shown. The condenser lens 11 can move in the chute 12.
[0047] like Figure 1 As shown, the condenser 11 can move up and down in the slide slot 12. In one embodiment, depending on the shape of the slide slot 12, the condenser 11 can also slide left and right or rotate in the slide slot 12.
[0048] In one embodiment, the focusing lens 11 may stop moving after moving to the top of the sliding groove 12 .
[0049] In one embodiment, the slide 11 may further include a baffle (not shown), which can prevent the condenser 11 from continuing to move. The condenser 11 can stop moving after moving to the position where the baffle is located. In the embodiment of the present invention, the moving position of the condenser 11 can be effectively controlled by setting the baffle.
[0050] In one embodiment, the baffle plate may be disposed in the slide groove 11 and moved to a corresponding position in the slide groove 11 to prevent the condenser 11 from continuing to move.
[0051] In one embodiment, the baffle can be disposed outside the slide slot 11 , one end of the baffle is fixed, and the other end of the baffle can rotate around one end to a corresponding position of the slide slot to prevent the condenser 11 from continuing to move.
[0052] In one embodiment, the size of the condenser 11 can be set according to relevant parameters (such as size) of the flashlight of the terminal adapted to the terminal housing assembly 10 . The embodiment of the present invention does not limit the size setting method of the condenser 11 .
[0053] In one embodiment, the moving position of the condenser lens 11 can be adjusted by a user or can also be automatically adjusted by the terminal housing assembly 10 .
[0054] In one embodiment, the position of the slide slot 12 can be set according to the position of the flashlight and / or the position of the camera of the terminal to which the terminal housing assembly 10 is adapted. The camera can be a rear camera.
[0055] In an application scenario, the embodiment of the present invention moves the condenser 11 in the slide groove 12, and can adjust the field of view angle of the flash included in the terminal adapted by the terminal shell assembly 10 by moving the condenser 11, thereby realizing the function of switching the high and low beam lights of the terminal adapted by the terminal shell assembly 10.
[0056] visible, Figure 1 In the illustrated embodiment, the condenser included in the terminal housing assembly can move in a slide groove included in the terminal housing assembly, so that the irradiation distance of the flash lamp is increased by moving the condenser.
[0057] See also Figure 2 , which is based on the embodiment of the present invention Figure 1 A schematic diagram of another terminal housing assembly is provided. The terminal housing assembly 10 may include the above-mentioned condenser 11 and slide slot 12, and may also include a power receiving module 13 and a condenser adjustment assembly 14, and the power receiving module 13 may be connected to the condenser adjustment assembly 14.
[0058] In the embodiment of the present invention, the power receiving module 13 can operate the condenser adjustment assembly 14 according to the acquired electric energy. The condenser adjustment assembly 14 can control the movement of the condenser 11, such as moving in the slide slot 12, when operating.
[0059] In one embodiment, in combination Figure 3 From the perspective of FIG. 1 , the power receiving module 13 may include a coil 131, and the condenser adjustment assembly 14 may include a magnet 141 and a push rod 142. The coil 131 may be connected to the condenser adjustment assembly 14. Specifically, Figure 3 As shown, the coil 131 may be connected to the push rod 142 .
[0060] exist Figure 3 In the embodiment, the coil 131 can interact with the magnet 141 according to the acquired electric energy to control the movement of the push rod 142. The push rod 142 can push the condenser 11 to move in the slide slot 12 when moving.
[0061] exist Figure 3 In the embodiment, the coil 131 can interact with the magnet 141 according to the acquired electric energy to generate an upward force on the push rod 142, thereby controlling the push rod 142 to slide upward.
[0062] In one embodiment, by Figure 3 It can be seen that the magnet 141 may include a first polarity end, such as an N pole, and a second polarity end, such as an S pole, and the push rod 142 is disposed between the first polarity end and the second polarity end. The magnet 141 includes but is not limited to a U-shaped magnet, a bar magnet, and the like.
[0063] In one embodiment, depending on the different settings of the slide slot 12, the coil 131 interacts with the magnet 141 based on the acquired electrical energy, and can generate a downward, left or right force on the push rod 142, thereby correspondingly controlling the push rod 142 to slide downward, left or right.
[0064] In one embodiment, the acquired electric energy may be provided by a terminal (not shown) adapted by the terminal housing assembly 10 , for example, provided by a smart phone adapted by the terminal housing assembly 11 .
[0065] In one embodiment, the acquired electric energy can be converted from the acquired light energy by the power receiving module 13. For example, the power receiving module 13 can include a solar cell (not shown), which can convert the acquired light energy into electric energy.
[0066] In one embodiment, a solar cell can provide electrical energy to the coil 131 .
[0067] visible, Figure 2 In the illustrated embodiment, the power receiving module included in the terminal housing assembly can enable the condenser adjustment assembly to operate according to the acquired electrical energy, and the condenser adjustment assembly can control the movement of the condenser during operation, thereby increasing the irradiation distance of light-emitting devices such as flash lamps by moving the condenser.
[0068] See also Figure 4 , is a schematic diagram of the structure of a terminal provided by an embodiment of the present invention. The terminal may include a terminal body 20 and a terminal housing component 10. The terminal may be as follows Figure 4 In addition, the terminal may also be a tablet computer, a camera or other intelligent terminal.
[0069] In the embodiment of the present invention, when the terminal body 20 detects the light-emitting mode, it can call the power supply module (not shown) included in the terminal to provide power to the terminal housing assembly 10. The power supply module included in the terminal can refer to the power supply module included in the terminal body 20. The terminal housing assembly 10 can control the movement of the condenser 11 included in the terminal housing assembly 10 according to the acquired power, such as controlling the condenser 11 to move in the slide groove 12 included in the terminal housing assembly 10.
[0070] In one embodiment, the light emitting mode may refer to the terminal opening a camera application, and the camera application enabling a flash function. The terminal opening a camera application may refer to the terminal body 20 opening a camera application.
[0071] In an application scenario, the terminal body 20 may display an icon of a camera application, and the user may click on the icon of the camera application. The terminal body 20 may respond to the user's click operation on the icon of the camera application to open the camera application and display a shooting interface. The user may click on a flash switch included in the shooting interface. The terminal body 20 may respond to the user's click operation on the flash switch to enable a flash function. Thereafter, the user may click on a shooting button included in the shooting interface, and the terminal body 20 may control the flash to emit light to assist shooting when detecting the click operation on the shooting button.
[0072] In one embodiment, the light emitting mode may also refer to the terminal opening a camera application. The terminal opening a camera application may refer to the terminal body 20 opening a camera application.
[0073] In one embodiment, the light emitting mode may also refer to the terminal enabling a flashlight function. The terminal enabling the flashlight function may refer to the terminal body 20 enabling the flashlight function.
[0074] In an application scenario, the terminal body 20 may display a flashlight icon, and the user may click on the flashlight icon. The terminal body 20 may respond to the user's click operation on the flashlight icon and control the flashlight to emit light for illumination.
[0075] In one embodiment, the light emitting mode may also refer to the arrival of a time point for triggering position adjustment. In one embodiment, the time point may be preset by a user, or may also be determined by the terminal based on time points for triggering position adjustment counted within a preset time range.
[0076] In one embodiment, the lighting mode may also refer to a designated sliding button being dragged. For example, when the designated sliding button is a first sliding button (including a switch option), the designated sliding button being dragged may refer to the designated sliding button being dragged to the on option.
[0077] In one embodiment, the terminal body 20 can also obtain the image data captured by the camera 22 included in the terminal when the light-emitting mode is detected; determine the distance value between the specified object in the image data and the actual photographed object corresponding to the specified object; when the distance value is greater than or equal to the preset distance value, execute the step of calling the power supply module included in the terminal to provide power to the terminal housing component 10. Among them, the camera 22 included in the terminal can refer to the camera included in the terminal body 20. When the distance value is greater than or equal to the preset distance value, such as 5 meters, by calling the power supply module included in the terminal to provide power to the terminal housing component 10 so that the condenser 11 moves in the slide slot 12, the camera 22 can shoot farther objects.
[0078] In one embodiment, the designated object may be a central scene in the image data. In one embodiment, the central scene may be a scene recognized by an image recognition model, and the image recognition model is trained based on a large number of sample images marked with central scenes. In one embodiment, the central scene may be a scene within a preset position range obtained by taking the central point of the image data as a reference point. The above-listed methods for determining the central scene do not constitute limitations on the embodiments of the present invention.
[0079] In one embodiment, the power supply module may be a near field communication (NFC) wireless charging module.
[0080] In one embodiment, the terminal body 20 can charge the power supply module so that the power supply module provides power to the terminal housing assembly 10 .
[0081] In one embodiment, the terminal body 20 can send a power supply instruction to the power supply module, so that the power supply module provides power to the terminal housing assembly 10 when detecting the power supply instruction.
[0082] In one embodiment, see Figure 2 The terminal housing assembly 10 may include a power receiving module 13 and a condenser adjustment assembly 14, and the power receiving module 13 is connected to the condenser adjustment assembly 14. The power receiving module 13 can make the condenser adjustment assembly 14 work according to the acquired electric energy. The condenser adjustment assembly 14 can control the condenser 11 to move in the slide slot 12 when working.
[0083] In one embodiment, in combination Figure 2 and Figure 3From the perspective of the embodiment, the power receiving module 13 may include a coil 131, and the condenser adjustment assembly 14 may include a magnet 141 and a push rod 142. The coil 131 may be connected to the condenser adjustment assembly 141. Specifically, the coil 131 may be connected to the push rod 142. The coil 131 may interact with the magnet 141 according to the acquired electrical energy to control the movement of the push rod 142. The push rod 142 may push the condenser 11 to move in the slide slot 12, such as sliding up and down, when moving.
[0084] In an application scenario, such as Figure 5 As shown, the terminal body 20 may include a flash 21 and a camera 22, and the flash 21 is located directly below the camera 22. Since the flash has a large field angle when emitting light, the light is not concentrated, resulting in a relatively short illumination distance, and the camera can only shoot relatively close objects. In the embodiment of the present invention, the condenser 11 can be moved to the position of the flash 21, so that the condenser 11 can reduce the large field angle of the flash 21, so that the light is more concentrated, thereby making the illumination distance of the flash 21 farther, and the camera 22 can shoot farther objects.
[0085] It can be seen that in Figure 4 In the illustrated embodiment, when a light-emitting mode is detected, the terminal body can call upon a power supply module included in the terminal to provide electrical energy to the terminal shell assembly; the terminal shell assembly can control the movement of a condenser included in the terminal shell assembly according to the acquired electrical energy, thereby increasing the irradiation distance of the flash by moving the condenser.
[0086] See also Figure 6 , is a schematic diagram of another terminal structure provided by an embodiment of the present invention. The terminal may include a processor 100, a position adjustment component 200 and a light adjustment device 300.
[0087] The processor 100 may be a central processing unit (CPU), or other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor may be a microprocessor or any conventional processor, etc.
[0088] The position adjustment component 200 may include a magnet and a push rod. In one embodiment, the position adjustment component 200 may also be a lifting device, which may be embedded in the light adjustment device 300 .
[0089] Among them, the light adjustment device 300 refers to a device for adjusting the light emitted by the light-emitting device (not shown) included in the terminal. In one embodiment, the light adjustment device 300 includes but is not limited to devices such as a condenser, a concave lens or a baffle. Among them, the condenser can be used to converge light. For example, the condenser can converge the light emitted by the flash and thereby increase the illumination distance of the flash. The concave lens can be used to diverge light. For example, the concave lens can diverge the light emitted by the flash and thereby increase the illumination breadth of the flash. The baffle can be used to block light. For example, the baffle can block the light emitted by the message prompt light, thereby avoiding the adverse effects caused by the flashing of the message prompt light in some specific scenarios.
[0090] In the embodiment of the present invention, the processor 100 can control the position adjustment component to work when the light-emitting mode is detected. The position adjustment component 200 can control the light adjustment device 300 to move when working.
[0091] In one embodiment, the processor 100 may specifically send a first control instruction to the position adjustment component 200 when a light-emitting pattern is detected; the position adjustment component 200 may specifically control the light adjustment device 300 to move when the first control instruction is received.
[0092] In one embodiment, when the position adjustment component 200 is a lifting device, when the position adjustment component 200 receives the first control instruction, the way of controlling the light adjustment device 300 to move can be that when the position adjustment component 200 receives the first control instruction, the position adjustment component 200 moves so that the light adjustment device 300 moves along with the movement of the position adjustment component 200. The first control instruction can be used to trigger the movement of the position adjustment component 200. In one embodiment, the first control instruction can carry a moving distance value, and the position adjustment component 200 can move according to the moving distance value carried by the first control instruction.
[0093] In one embodiment, the light emitting mode includes any of the following: the terminal opens a camera application, and the camera application enables a flash function, opens a camera application, enables a flashlight function, a time point for triggering position adjustment is reached, and a designated sliding button is dragged. The time point may be preset by the user, or may be determined by the terminal based on a time point for triggering position adjustment counted within a preset time range. When the designated sliding button is a first sliding button (including a switch option), the designated sliding button being dragged may refer to the designated sliding button being dragged to the on option. When the designated sliding button is a second sliding button (including a slide bar), the designated sliding button being dragged may refer to the designated sliding button being dragged to a target position, and the target position may refer to any position within a preset length range. In one embodiment, the processor 100 may determine the distance value that the position adjustment component 200 needs to move based on the position where the designated sliding button is dragged, so that the position adjustment component 200 moves according to the distance value of the movement.
[0094] In one embodiment, Figure 6 The terminal shown may also include a power supply (not shown). The power supply may be a battery. Specifically, the processor 100 may send a second control instruction to the power supply when the light-emitting mode is detected; the power supply may provide power to the position adjustment component 200 to enable the position adjustment component 200 to work when receiving the second control instruction, so that the position adjustment component 200 controls the light adjustment device 300 to move when working. The second control instruction may be used to trigger the position adjustment component 200 to move.
[0095] In one embodiment, the terminal may include a power supply module (not shown) and a power receiving module (not shown). For example, the power supply module may be an NFC module, and the power receiving module may be a coil. When the processor 100 detects the light-emitting mode, it may call the power supply module to provide power to the power receiving module. The power receiving module may enable the position adjustment component 200 to operate according to the acquired power, so that the position adjustment component 200 controls the movement of the light adjustment device 300 when operating. Compared with the method of controlling the movement of the position adjustment component by the power supply module and the power receiving module, the aforementioned method of using the power supply to control the movement of the position adjustment component can save more space occupied by the terminal.
[0096] In one embodiment, when the power receiving module includes a coil, and the position adjustment component 200 includes a magnet and a push rod, the coil can be connected to the position adjustment component 200. The coil can interact with the magnet according to the acquired electrical energy to control the movement of the push rod. The push rod can push the light adjustment device 300 to move when moving. In one embodiment, the above-mentioned position adjustment component 200 can be the above-mentioned condenser adjustment component, and the above-mentioned light adjustment device 300 can be the above-mentioned condenser.
[0097] visible, Figure 6 In the illustrated embodiment, the processor can control the position adjustment component to operate when a light-emitting mode is detected, so that the position adjustment component can control the movement of the light adjustment device, thereby achieving the purpose of adjusting the light of the terminal light-emitting device.
[0098] See also Figure 7 , is a flow chart of a focusing control method provided by an embodiment of the present invention. The method can be applied to a terminal. The terminal includes but is not limited to smart terminals such as smart phones and tablet computers. The terminal can specifically include a terminal housing component. In one embodiment, the terminal housing component can be the terminal housing component 10 mentioned above. Specifically, the method can include the following steps:
[0099] S701. Display a designated control for triggering spotlight adjustment.
[0100] The designated control includes but is not limited to any of the following: a flashlight icon, a flash switch included in a camera application, an icon of a camera application, and a designated sliding button.
[0101] In an application scenario, assuming that the designated control is a flash switch included in a camera application, the terminal may display an icon of the camera application, and the user may click the icon of the camera application. The terminal may respond to the user's click operation on the icon of the camera application by opening the camera application and displaying a shooting interface, which may include a flash switch.
[0102] In another application scenario, it is assumed that the designated control is a designated sliding button. For example, the designated sliding button may be a second sliding button. The terminal may display an icon of a camera application, and the user may click the icon of the camera application. The terminal may respond to the user's click operation on the icon of the camera application to open the camera application and display a shooting interface, and the shooting interface may include a second sliding button, and the second sliding button may be used to control the position of the spotlight adjustment.
[0103] S702: When a touch operation on the designated control is detected, control a focusing lens included in the terminal housing assembly to move.
[0104] In the embodiment of the present invention, the terminal may control the movement of a condenser included in the terminal housing when a touch operation on a designated control is detected.
[0105] In one embodiment, when the terminal detects a touch operation on the designated control, the method for controlling the movement of the condenser included in the terminal shell assembly can be: when the terminal detects a touch operation on the designated control, the terminal calls the power supply module included in the terminal to provide power to the terminal shell assembly, and controls the movement of the condenser included in the terminal shell assembly according to the acquired power through the terminal shell assembly.
[0106] In one embodiment, the designated control includes a designated sliding button. When the terminal detects a touch operation on the designated control, the method for controlling the movement of the condenser included in the terminal shell component can be: when a drag operation on the sliding button is detected, the movement of the condenser included in the terminal shell component is controlled according to the drag operation.
[0107] In one embodiment, when the terminal detects a drag operation on the designated sliding button, it can generate a control instruction according to the drag operation and transmit it to the terminal housing component. The terminal housing component can control the movement of the focusing lens included in the terminal housing component according to the received control instruction.
[0108] In one embodiment, the terminal housing assembly may include a communication interface and a control circuit. The communication interface may receive a control instruction and transmit it to the control circuit. The control circuit may control the movement of a condenser included in the terminal housing assembly according to the control instruction.
[0109] It can be seen that in Figure 7 In the illustrated embodiment, the terminal may display a designated control for triggering focus adjustment, and when a touch operation on the designated control is detected, the focus lens included in the terminal housing assembly is controlled to move, thereby increasing the flash irradiation distance of the terminal by moving the focus lens.
[0110] The above disclosure is only part of the embodiments of the present invention, which certainly cannot be used to limit the scope of the rights of the present invention. Ordinary technicians in this field can understand that all or part of the processes of the above embodiments and equivalent changes made according to the claims of the present invention are still within the scope of the invention.
Claims
1. A terminal housing assembly, characterized in that: The terminal housing assembly includes a slide slot, a condenser, a power receiving module and a condenser adjustment assembly, and the power receiving module is connected to the condenser adjustment assembly; The power receiving module is used to make the condenser adjustment component work according to the acquired electric energy; The condenser adjustment assembly is used to control the movement of the condenser during operation, and the condenser can move in the slide groove.
2. The terminal housing assembly according to claim 1, characterized in that: The power receiving module includes a coil, and the condenser adjustment assembly includes a magnet and a push rod; the coil is connected to the condenser adjustment assembly; The coil is used to interact with the magnet according to the acquired electrical energy to control the movement of the push rod; The push rod is used to push the condenser to move in the slide groove when moving.
3. The terminal housing assembly according to claim 2, characterized in that: The magnet includes a first polarity end and a second polarity end, and the push rod is disposed between the first polarity end and the second polarity end.
4. A terminal, characterized in that: The terminal comprises a terminal body and a terminal housing assembly, wherein: The terminal body is used to obtain image data captured by a camera included in the terminal when a light-emitting mode is detected; determine a distance value between a specified object in the image data and an actual captured object corresponding to the specified object; when the distance value is greater than or equal to a preset distance value, call a power supply module included in the terminal to provide power to the terminal housing component; The terminal housing assembly is used to control the movement of a condenser included in the terminal housing assembly according to the acquired electric energy; the terminal housing assembly also includes a slide groove, and the condenser can move in the slide groove.
5. The terminal according to claim 4, characterized in that: The light-emitting mode means that the terminal opens a camera application and the camera application enables a flash function.
6. The terminal according to claim 4, characterized in that: The terminal housing assembly includes a power receiving module and a condenser adjustment assembly, and the power receiving module is connected to the condenser adjustment assembly; The power receiving module is used to make the condenser adjustment component work according to the acquired electric energy; The condenser adjustment assembly is used to control the movement of the condenser during operation.
7. The terminal according to claim 4, characterized in that: The power receiving module includes a coil, and the condenser adjustment assembly includes a magnet and a push rod; the coil is connected to the condenser adjustment assembly; The coil is used to interact with the magnet according to the acquired electrical energy to control the movement of the push rod; The push rod is used to push the condenser to move in the slide groove when moving.
8. A terminal, characterized in that: The terminal includes a processor, a position adjustment component and a light adjustment device, wherein: The processor is used to control the position adjustment component to work when a light-emitting pattern is detected; The position adjustment component is used to control the movement of the light adjustment device during operation.
9. The terminal according to claim 8, characterized in that: The processor is used to send a first control instruction to the position adjustment component when a light-emitting mode is detected; The position adjustment component is specifically used to control the movement of the light adjustment device when receiving a first control instruction.
10. The terminal according to claim 9, characterized in that: The lighting mode includes any one of the following: the terminal opens a camera application, and the camera application enables a flash function, opens a camera application, enables a flashlight function, a time point for triggering position adjustment is reached, and a designated slide button is dragged.
11. The terminal according to claim 8, characterized in that: The terminal also includes a power supply; The processor is specifically configured to send a second control instruction to the power supply when a light-emitting mode is detected; The power supply is used to provide electric energy to the position adjustment component to enable the position adjustment component to work when receiving the second control instruction.
12. The terminal according to claim 8, characterized in that: The terminal includes a power supply module and a power receiving module; The processor is used to call the power supply module to provide power to the power receiving module when a light-emitting mode is detected; The power receiving module is used to enable the position adjustment component to work according to the acquired electric energy.
Citation Information
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