Door locks
By designing an eccentric keyboard area and handle in the door lock, the problem of easy peeking during operation of the existing door lock is solved, and the safety of use is improved.
Patent Information
- Application Number
- CN202310458505.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-21
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2043-04-21
AI Technical Summary
Existing door locks are easily peeked by others when the user operates the keyboard, resulting in less security in use.
A door lock is designed, with a keyboard area located at the outer edge of the first surface of the housing, close to the outer edge, and protruding from the first surface by the handle, forming an eccentric setting, increasing concealment during operation.
The eccentric keyboard area and handle design improves the concealment of the user during operation, avoids being peeped at by others, and enhances the security of use.
Smart Images

Figure CN116291055B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of electronic devices, and in particular relates to a door lock. Background Art
[0002] A door lock is a device used to lock a door and a door frame.
[0003] In the related art, the door lock includes a base, a handle and a keyboard. The handle is arranged on one side of the base, and the keyboard is located on the side of the handle facing away from the base. The keyboard is located in the middle of the handle for the user to operate and input information.
[0004] However, when the user operates the keyboard, it is easy for others to peek at it, resulting in low safety. Summary of the invention
[0005] The disclosed embodiment provides a door lock that can prevent being peeped by others, thereby improving the safety of use. The technical solution is as follows:
[0006] In a first aspect, an embodiment of the present disclosure provides a door lock, comprising a housing, a keyboard area, and a handle;
[0007] The outer wall of the housing has a first surface;
[0008] The keyboard area is located on the first surface and close to the outer edge of the first surface;
[0009] The handle is connected to the first surface and protrudes from the first surface, and the handle is adjacent to the keyboard area.
[0010] In one implementation of the present disclosure, the first surface has a first outer edge and a second outer edge that are opposite;
[0011] The handle is close to the first outer edge, and the keyboard area is close to the second outer edge.
[0012] In another implementation of the present disclosure, the length direction of the handle is consistent with the extension direction of the first outer edge, and the length direction of the keyboard area is consistent with the extension direction of the second outer edge.
[0013] In yet another implementation of the present disclosure, extension directions of the first outer edge and the second outer edge are parallel to each other.
[0014] In yet another implementation of the present disclosure, the handle has a second surface;
[0015] The second surface faces away from the housing, and the second surface is not coplanar with the first surface. The second surface is used for arranging functional components of the door lock.
[0016] In yet another implementation of the present disclosure, the handle includes a gripping member and a connecting member;
[0017] The outer wall of the holding member has the second surface, and the length direction of the holding member is consistent with the length direction of the shell;
[0018] The connecting member is located between the holding member and the first surface, and the connecting member is connected to the holding member and the first surface respectively.
[0019] In yet another implementation of the present disclosure, the functional component includes at least one of a doorbell, a camera, a sensor, an interface, and a keyhole.
[0020] In yet another implementation of the present disclosure, a distance between the second surface and the keyboard area on the first surface is 22.5-67.5 mm.
[0021] In yet another implementation of the present disclosure, the connector includes a base portion and at least two support portions;
[0022] The length direction of the base portion is consistent with the length direction of the holding piece;
[0023] The support parts are arranged in sequence and spaced apart along the length direction of the base part, and the support parts are respectively connected to the base part and the holding member.
[0024] In yet another implementation of the present disclosure, the handle and the support column are hollow structural members.
[0025] In yet another implementation of the present disclosure, the handle further includes a shielding member;
[0026] The shielding member is located at a side of the holding member facing away from the keyboard area, and the shielding member is connected to the holding member and / or the connecting member to shield the gap between the handle and the shell.
[0027] In yet another implementation of the present disclosure, the keyboard area includes a plurality of key areas, and the plurality of key areas are arranged in an interval with each other.
[0028] In yet another implementation of the present disclosure, the plurality of button areas are sequentially spaced apart from each other along the length direction of the handle.
[0029] In yet another implementation of the present disclosure, the first surface includes a planar portion and a curved portion;
[0030] The arc surface portion is arranged along the outer edge of the plane portion and is located on one side of the plane portion;
[0031] The keyboard area is located on the plane portion.
[0032] In yet another implementation of the present disclosure, a key assembly is provided in the housing;
[0033] The triggering portion of the key assembly faces the plane portion, and the orthographic projection of the key assembly on the plane portion at least partially overlaps with the keyboard area.
[0034] In another implementation of the present disclosure, the inner wall of the housing has a mounting surface, the mounting surface and the keyboard area are located on opposite sides, the mounting surface is a plane, and the mounting surface and the keyboard area are close to the same side edge of the housing; the length direction of the mounting surface is consistent with the length direction of the key assembly;
[0035] The button assembly is connected to the mounting surface.
[0036] In yet another implementation of the present disclosure, the handle has a main board therein;
[0037] The main board is connected to the button assembly.
[0038] The technical solution provided by the embodiments of the present disclosure has the following beneficial effects:
[0039] The keyboard area is for the user to operate and input information. Since the keyboard area is located at the outer edge of the first surface of the shell, the concealment of the user's operation can be improved, and it is effectively prevented from being peeped by others. In addition, since the keyboard area is close to the outer edge of the first surface, the area occupied by the keyboard area on the first surface can be reduced, which is conducive to fully planning and utilizing the area of the first surface, so as to better set up other components of the door lock. In addition, since the handle is adjacent to the keyboard area and the handle protrudes from the first surface, the handle can play a certain shielding role on the keyboard area, which can improve the concealment of the user's operation and effectively prevent it from being peeped by others.
[0040] That is to say, by designing the relative position between the keyboard area and the handle, the keyboard area is set eccentrically, so that the safety of the user during operation is greatly improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present disclosure. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0042] Figure 1 is a schematic diagram of the structure of a door lock provided by an embodiment of the present disclosure;
[0043] Figure 2is a schematic diagram of the internal structure of a housing provided by an embodiment of the present disclosure;
[0044] Figure 3 is a schematic diagram of the internal structure of a handle provided in an embodiment of the present disclosure;
[0045] Figure 4 is a front view of a door lock provided by an embodiment of the present disclosure;
[0046] Figure 5 is a schematic diagram of the structure of a handle provided in an embodiment of the present disclosure;
[0047] Figure 6 is a schematic diagram of the assembly between the handle and the housing provided in an embodiment of the present disclosure;
[0048] Figure 7 is a front view of a door lock provided by an embodiment of the present disclosure;
[0049] Figure 8 is a side view of a door lock provided by an embodiment of the present disclosure.
[0050] The symbols in the figure mean the following:
[0051] 10. Shell;
[0052] 110, first surface; 111, first outer edge; 112, second outer edge; 113, plane portion; 114, arc portion; 115, positioning groove; 120, mounting surface;
[0053] 20. Keyboard area;
[0054] 210, key area;
[0055] 30. Handle;
[0056] 310, holding member; 311, second surface; 320, connecting member; 321, base portion; 322, support portion; 330, shielding member;
[0057] 40. Doorbell;
[0058] 50. Camera;
[0059] 60. Sensor;
[0060] 70. Interface;
[0061] 80. Keyhole;
[0062] 90. Button assembly;
[0063] 100. backlight assembly;
[0064] 1100, atmosphere lighting;
[0065] 1200, motherboard. DETAILED DESCRIPTION
[0066] In order to make the objectives, technical solutions and advantages of the present disclosure more clear, the embodiments of the present disclosure will be further described in detail below with reference to the accompanying drawings.
[0067] The present disclosure provides a door lock. Figure 1 For the structural diagram of the door lock, see Figure 1 In this embodiment, the door lock includes a housing 10, a keyboard area 20 and a handle 30. The outer wall of the housing 10 has a first surface 110, the keyboard area 20 is located on the first surface 110 and close to the outer edge of the first surface 110, the handle 30 is connected to the first surface 110 and protrudes from the first surface 110, and the handle 30 is adjacent to the keyboard area 20.
[0068] The keyboard area 20 is for the user to operate and input information. Since the keyboard area 20 is located at the outer edge of the first surface 110 of the shell 10, the concealment of the user's operation can be improved, and it is effectively prevented from being peeped by others. In addition, since the keyboard area 20 is close to the outer edge of the first surface 110, the area occupied by the keyboard area 20 on the first surface 110 can be reduced, which is conducive to fully planning and utilizing the area of the first surface 110, so as to better set up other components of the door lock. In addition, since the handle 30 is adjacent to the keyboard area 20 and the handle 30 protrudes from the first surface 110, the handle 30 can play a certain shielding role on the keyboard area 20, which can improve the concealment of the user's operation and effectively prevent it from being peeped by others.
[0069] That is to say, by designing the relative position between the keyboard area 20 and the handle 30 , the keyboard area 20 is eccentrically disposed, thereby greatly improving the safety of the user during operation.
[0070] When the door lock is actually used, the side of the housing 10 facing away from the handle 30 is attached to the door and fixed on the door. The first side 110 of the housing 10 faces the user, so that the user can conveniently operate the handle 30 and the keyboard area 20.
[0071] Continue to see Figure 1 In this embodiment, the first surface 110 includes a planar portion 113 and an arcuate portion 114 . The arcuate portion 114 is arranged along the outer edge of the planar portion 113 and is located on one side of the planar portion 113 . The keyboard area 20 is located on the planar portion 113 .
[0072] In the above implementation, the plane portion 113 protrudes outward relative to the arc surface portion 114, thereby providing a larger installation space for electronic devices inside the housing 10. In addition, the keyboard area 20 is arranged on the plane portion 113, so that the user can press and operate the keyboard area 20 more conveniently.
[0073] Figure 2 is a schematic diagram of the internal structure of the shell. Figure 2 Perspective and Figure 1 The opposite perspective, combined Figure 2 In this embodiment, a key assembly 90 is provided in the housing 10 , a trigger portion of the key assembly 90 faces the plane portion 113 , and an orthographic projection of the key assembly 90 on the plane portion 113 at least partially overlaps with the keyboard area 20 .
[0074] Since the triggering portion of the key assembly 90 faces the plane portion 113 , the user can trigger the key assembly 90 when touching the keyboard area 20 on the plane portion 113 .
[0075] Exemplarily, the length direction of the key assembly 90 is consistent with the length direction of the keyboard area 20 .
[0076] In some examples, the key assembly 90 is a capacitive touch key, and the triggering portion of the key assembly 90 is the sensing area of the capacitive touch key. By touching the keyboard area 20, the capacitive touch key can be triggered, thereby realizing the operation of the capacitive touch key.
[0077] Exemplarily, the capacitive touch button includes a touch circuit board, which is located in the housing 10. The touch circuit board is a printed circuit board, on which there are circuits and touch ICs corresponding to the capacitive touch button. When the user's finger touches the keyboard area 20 on the housing 10, the finger constitutes one pole of the capacitor plate, and the circuit (copper sheet, etc., that is, the sensing area) on the touch circuit board constitutes the other pole of the capacitor, so that a new capacitor is formed between the two, thereby changing the total capacitance on the touch circuit board, and then recognizing the user's input.
[0078] In other examples, the key assembly 90 is a mechanical key, and the triggering portion of the key assembly 90 is a button of the mechanical key. By pressing the keyboard area 20, the plane portion 113 is elastically deformed, thereby triggering the button of the key assembly 90.
[0079] The present disclosure does not limit the form of the button assembly 90 , as long as it can play the role of controlling the door lock, inputting the password, etc.
[0080] Continue to see Figure 2 In this embodiment, a backlight assembly 100 is provided in the housing 10 , the backlight assembly 100 is electrically connected to the key assembly 90 , and the keyboard area 20 is light-transmissive.
[0081] In the above implementation, the backlight assembly 100 can be powered under the control of the key assembly 90 to emit light. Since the keyboard area 20 is light-transmissive, the light emitted by the backlight assembly 100 can pass through the keyboard area 20, thereby playing a role of lighting and facilitating the user's touch operation.
[0082] Exemplarily, the material at the keyboard area 20 is translucent polymethyl methacrylate (PMMA), polystyrene (PS), polycarbonate (PC) and poly(bis(allyl glycol carbonate)) (CR-39), etc., and the backlight assembly 100 is opposite to the keyboard area 20, thereby ensuring that the light generated by the backlight assembly 100 can be transmitted through the keyboard area 20.
[0083] Exemplarily, the backlight assembly 100 is located on a side of the key assembly 90 facing away from the keyboard area 20 , and the length direction of the backlight assembly 100 is consistent with the length direction of the keyboard area 20 .
[0084] In the above implementation, the light emitted by the backlight assembly 100 is emitted through the key assembly 90 and the keyboard area 20 in sequence, so that the backlight assembly 100 can be prevented from blocking the key assembly 90, thereby ensuring the reliability of the operation of the key assembly 90. In addition, the length direction of the backlight assembly 100 is designed to be consistent with the length direction of the key assembly 90, which can ensure that the backlight assembly 100 can fully illuminate the key assembly 90.
[0085] In this embodiment, a main board 1200 is provided in the handle 30 , and the main board 1200 is connected to the button assembly 90 .
[0086] In the above implementation, since the button assembly 90 is located in the shell 10 and the main board 1200 is located in the handle 30, that is, the two are arranged separately, the internal space of the shell 10 and the handle 30 is effectively utilized, avoiding the concentration of the button assembly 90 and the main board 1200, and reducing the difficulty of assembly.
[0087] It should be noted that the main board 1200 is a control circuit board used to control various functional components in the door lock such as the button assembly 90 and the backlight assembly 100.
[0088] In this embodiment, the inner wall of the housing 10 has a mounting surface 120, the mounting surface 120 and the keyboard area 20 are located on opposite sides, the mounting surface 120 is a plane, and the mounting surface 120 and the keyboard area 20 are close to the same side edge of the housing 10; the length direction of the mounting surface 120 is consistent with the length direction of the key assembly 90. The key assembly 90 is connected to the mounting surface 120.
[0089] Exemplarily, the inner wall of the housing 10 is in an arc shape, and the mounting surface 120 is a plane cut out from the inner wall of the housing 10. The mounting surface 120 is parallel to the keyboard area 20, so that the key assembly 90 mounted on the mounting surface 120 can also be parallel to the keyboard area 20, so that the key assembly 90 can be more sensitively triggered by the user's operation on the keyboard area 20. In addition, since the mounting surface 120 and the keyboard area 20 are located on opposite sides, the operation on the keyboard area 20 can be directly fed back to the mounting surface 120, which is conducive to the key assembly 90 mounted on the mounting surface 120 to obtain the corresponding operation.
[0090] Exemplarily, the key assembly 90 and the backlight assembly 100 are sequentially stacked on the mounting surface 120. In this way, the backlight assembly 100 can also be parallel to the keyboard area 20, so that the light emitted by the backlight assembly 100 can better penetrate the keyboard area 20.
[0091] Figure 3 This is a schematic diagram of the internal structure of the handle. Figure 3 Perspective and Figure 1 The same perspective, combined Figure 3 In this embodiment, the handle 30 has an ambient light 1100 , at least a portion of the ambient light 1100 is located on the outer wall of the handle 30 , and the ambient light 1100 is arranged along the length direction of the handle 30 , and the ambient light 1100 faces the keyboard area 20 .
[0092] In the above implementation, the ambient light 1100 can be used to provide auxiliary lighting for the keyboard area 20, thereby facilitating the operator to operate the keyboard area 20. In addition, since the ambient light 1100 is arranged along the length direction of the handle 30, it can ensure that the ambient light 1100 is arranged over a larger area on the handle 30, thereby providing sufficient lighting for the keyboard area 20.
[0093] Figure 4 This is the front view of the door lock, combined with Figure 4 In this embodiment, the keyboard area 20 includes a plurality of key areas 210 , and the plurality of key areas 210 are arranged at intervals from each other.
[0094] The keyboard area 20 is a collection of multiple key areas 210 . The outer contour of the keyboard area 20 is the outer contour of a figure surrounded by all the key areas 210 . All the key areas 210 are located in the keyboard area 20 .
[0095] Each key area 210 corresponds to a type of input information. For example, Figure 4The characters 1, 2, 3, 4, etc. in the text box correspond to a key area 210, or icons √, <, etc., each of which corresponds to a key area 210. The user can input corresponding information by touching the corresponding key area 210. In addition, since the multiple key areas 210 are arranged at intervals from each other, the possibility of accidental touch can be effectively avoided.
[0096] Of course, the key area 210 is not only Figure 4 In addition to the numbers and icons shown in , different numbers and icons can be selected according to actual needs. The present disclosure does not limit the style and number of the button area 210.
[0097] In this embodiment, the plurality of button areas 210 are sequentially arranged at intervals along the length direction of the handle 30 .
[0098] In the above implementation, since the handle 30 protrudes from the first surface 110 and each button area 210 is located on the first surface 110 , the handle 30 can guide the user's line of sight, so that the user can operate each button area 210 .
[0099] Continue to see Figure 4 In this embodiment, the first surface 110 of the housing 10 has a first outer edge 111 and a second outer edge 112 opposite to each other. The handle 30 is close to the first outer edge 111 of the first surface 110 , and the keyboard area 20 is close to the second outer edge 112 of the first surface 110 .
[0100] Since the handle 30 is close to the first outer edge 111 and the keyboard area 20 is close to the second outer edge 112, the handle 30 and the keyboard area 20 can be arranged separately on the first surface 110, which can not only offset the keyboard area 20 and the handle 30 shielding the keyboard area 20, but also facilitate user operation.
[0101] Exemplarily, the first surface 110 is in the shape of an elongated strip, and the first outer edge 111 and the second outer edge 112 are both outer edges of the first surface 110 in the length direction.
[0102] In some examples, the first outer edge 111 is located on the left side of the first surface 110, and the second outer edge 112 is located on the right side of the first surface 110. In this way, the handle 30 is located on the left side, and the keyboard area 20 is located on the right side. When the user operates the door lock, the left hand operates the handle 30, and the right hand operates the keyboard area 20, and the two can be performed simultaneously without interfering with each other, thereby effectively improving the operating efficiency of the door lock. In addition, since the handle 30 is located on the left side of the keyboard area 20, the handle 30 can block the left side of the keyboard area 20. At this time, the user is located on the right side of the keyboard area 20, and the user's line of sight will not be blocked by the handle 30, and the user can also use the body to block the right side of the keyboard area 20, further improving the safety during operation.
[0103] Of course, in other examples, the first outer edge 111 is located on the right side of the first surface 110, and the second outer edge 112 is located on the left side of the first surface 110. Accordingly, the handle 30 is located on the right side, and the keyboard area 20 is located on the left side. Alternatively, the first outer edge 111 is located on the upper side of the first surface 110, and the second outer edge 112 is located on the lower side of the first surface 110. The present disclosure is not limited to this.
[0104] Continue to see Figure 4 In this embodiment, the length direction of the handle 30 is consistent with the extension direction of the first outer edge 111 , and the length direction of the keyboard area 20 is consistent with the extension direction of the second outer edge 112 .
[0105] In the above implementation, the length direction of the handle 30 and the length direction of the keyboard area 20 are designed with different reference objects, ensuring that there is no interference between the handle 30 and the keyboard area 20 in the length direction, thereby effectively improving the reliability of the door lock.
[0106] In some examples, the extension directions of the first outer edge 111 and the second outer edge 112 are parallel to each other.
[0107] Since the first outer edge 111 and the second outer edge 112 are parallel to each other, the length direction of the handle 30 is also parallel to the length direction of the keyboard area 20. In this way, the keyboard area 20 extends along the length direction of the handle 30. Since the handle 30 protrudes from the first surface 110 and the keyboard area 20 is located on the first surface 110, the handle 30 can guide the user's line of sight, so that the user can operate the keyboard area 20.
[0108] In other examples, the extension directions of the first outer edge 111 and the second outer edge 112 may also intersect, or form other shapes, which is not limited in the present disclosure.
[0109] Figure 5 is a schematic diagram of the structure of the handle 30, combined with Figure 5 In this embodiment, the handle 30 includes a gripping member 310 and a connecting member 320. The length direction of the gripping member 310 is consistent with the length direction of the housing 10. The connecting member 320 is located between the gripping member 310 and the first surface 110, and the connecting member 320 is connected to the gripping member 310 and the first surface 110 respectively.
[0110] In the above implementation, the gripping member 310 is used for the user to grasp and hold in order to pull the door lock, thereby facilitating the opening or closing of the door. The gripping member 310 is the main body of the handle 30, and the length direction of the gripping member 310 is consistent with the length direction of the housing 10, so that the gripping member 310 has a sufficient length, thereby facilitating the user to grasp and hold. The connecting member 320 is located between the gripping member 310 and the first surface 110, and is used to connect the gripping member 310 and the housing 10, so that the handle 30 can be firmly connected to the first surface 110 of the housing 10.
[0111] Exemplarily, the connecting member 320 and the holding member 310, and the connecting member 320 and the housing 10 are connected by screws. Alternatively, the connecting member 320 and the holding member 310, and the connecting member 320 and the housing 10 are connected by a snap-fitting form. This disclosure is not limited to this.
[0112] Figure 6 It is a schematic diagram of the assembly between the handle and the shell, combined with Figure 6 In this embodiment, the first surface 110 of the housing 10 has a positioning groove 115 , the positioning groove 115 is spaced apart from the keyboard area 20 , and the connector 320 is inserted into the positioning groove 115 .
[0113] In the above implementation, the positioning groove 115 is located on the first surface 110 of the housing 10, so the connector 320 can be positioned and installed on the positioning groove 115 by inserting the connector 320 into the positioning groove 115. In addition, since the positioning groove 115 is spaced apart from the keyboard area 20, the positioning of the connector 320 on the first surface 110 ensures that the connector 320 will not interfere with the keyboard area 20.
[0114] In this embodiment, the outer wall of the handle 310 has a second surface 311 , the second surface 311 faces away from the housing 10 , and the second surface 311 is not coplanar with the first surface 110 , and the second surface 311 is used to arrange functional components of the door lock.
[0115] In the above implementation, the second surface 311 faces away from the housing 10, that is, the second surface 311 faces the user. Since the second surface 311 is not coplanar with the first surface 110, the functional parts on the second surface 311 can protrude from the keyboard area 20 on the first surface 110, avoiding the problem of misoperation.
[0116] Exemplarily, the functional components include at least one of a doorbell 40 , a camera 50 , a sensor 60 , an interface 70 , and a lock hole 80 .
[0117] The above functional parts are introduced in turn below.
[0118] The doorbell 40 is used for the user to press and operate, thereby making the doorbell 40 sound. For a visitor, the first thing he needs to find is the doorbell 40. However, the visitor is not familiar with the door lock, so it is not easy to quickly find the doorbell 40 on the door lock. In this embodiment, the doorbell 40 is arranged on the second surface 311, so that the doorbell 40 can be located in a prominent position, so that the visitor can quickly find the doorbell 40.
[0119] The camera 50 is used to collect facial information. On the one hand, the collected facial information can be sent to the screen to play the role of a cat's eye. On the other hand, the collected facial information can be sent to the unlocking module in the door lock to play the role of facial recognition unlocking. In this embodiment, the camera 50 is set on the second surface 311 so that the camera 50 will not be blocked by other components, which is conducive to collecting facial information.
[0120] The sensor 60 is used to sense light, users, etc. When the sensor 60 senses a user and the surrounding light is dim, the ambient light of the door lock is turned on, and the ambient light can illuminate the keyboard area 20, thereby facilitating user operation.
[0121] The interface 70 is used to plug in a charging data cable, one end of the charging data cable is connected to the interface 70, and the other end of the charging data cable is connected to an external power source, so that the door lock can be charged. In this embodiment, the interface 70 is arranged on the second surface 311, which can facilitate the plugging of the charging data cable.
[0122] The lock hole 80 is used to insert a key, and can open the door lock when the electronic system of the door lock fails or the power is insufficient, thereby playing an emergency use role. In this embodiment, the lock hole 80 is arranged on the second surface 311, which can facilitate the insertion of the key.
[0123] It is worth noting that the functional parts of the door lock can be other parts besides the above-mentioned parts, and the present disclosure does not limit this.
[0124] See again Figure 5 In this embodiment, the connecting member 320 includes a base portion 321 and at least two support portions 322. The length direction of the base portion 321 is consistent with the length direction of the holding member 310, and the support portions 322 are arranged in sequence along the length direction of the base portion 321, and the support portions 322 are connected to the base portion 321 and the holding member 310 respectively.
[0125] In the above implementation, the base portion 321 is the main body of the connector 320, and the base portion 321 is connected to the housing 10, so that the connector 320 can be firmly connected to the housing 10. Since the length direction of the base portion 321 is consistent with the length direction of the gripping member 310, and the pillar portions 322 are sequentially arranged along the length direction of the base portion 321, the pillar portions 322 are sequentially arranged along the length direction of the gripping member 310, so that the pillar portions 322 can firmly support the gripping member 310 together.
[0126] Exemplarily, the connecting member 320 includes two pillars 322, one pillar 322 is close to one end of the base 321, and the other pillar 322 is close to the other end of the base 321. The two pillars 322 can provide a stable support for the handle 310. Of course, in other embodiments, the number of the pillars 322 can be rotated according to needs, such as three or four, etc., and the present disclosure does not limit this.
[0127] In some examples, the base portion 321 and the support portion 322 are an integrated structural component. In this way, on the one hand, the structural integrity of the connecting member 320 can be ensured, and on the other hand, the manufacturing efficiency of the connecting member 320 can be improved and the manufacturing cost can be reduced.
[0128] In other examples, the support portion 322 can also be connected to the base portion 321 by means of screws, snaps, etc., and the present disclosure does not limit this.
[0129] In this embodiment, the connection between the base portion 321 and the support portion 322 is a concave arc surface, that is, the base portion 321 and the support portion 322 are transitioned through the concave arc surface. Such a design can prevent the user from being accidentally scratched when holding the handle 30.
[0130] As can be seen from the foregoing, the second surface 311 of the holding member 310 has functional parts. In order to accommodate the functional parts, in this embodiment, the holding member 310 and the supporting column 322 are hollow structural parts.
[0131] In the above implementation, the internal space of the handle 310 is used to accommodate functional parts, and the internal space of the support portion 322 is used to accommodate cables, so that the functional parts in the handle 310 can be electrically connected with the functional parts in the housing 10.
[0132] Continue to see Figure 5 In this embodiment, the handle 30 further includes a shielding member 330. The shielding member 330 is located on the side of the holding member 310 facing away from the keyboard area 20, and the shielding member 330 is connected to the holding member 310 and / or the connecting member 320 to shield the gap between the handle 30 and the housing 10.
[0133] Since the gripping member 310 and the housing 10 are spaced apart from each other, and the connecting member 320 realizes the connection between the gripping member 310 and the housing 10 through the spaced apart pillars 322, there is a gap between the handle 30 and the housing 10. The shielding member 330 can shield the gap, thereby further preventing others from peeping, thereby improving the safety of use.
[0134] In some examples, the shielding member 330 is connected to the holding member 310 and the connecting member 320 respectively, and in other examples, the shielding member 330 is connected to the holding member 310, or the shielding member 330 is connected to the connecting member 320. The present disclosure is not limited to this.
[0135] Exemplarily, the shielding member 330 is a plate-shaped structural member, and outer edges of the shielding member 330 are respectively inserted into outer walls of the holding member 310 and the connecting member 320 , thereby achieving fixation of the shielding member 330 .
[0136] Figure 7 This is the front view of the door lock, combined with Figure 7 In this embodiment, the width a of the keyboard area 20 is 13 to 39 mm.
[0137] Exemplarily, the width a of the keyboard area 20 is 26 mm.
[0138] In this embodiment, a distance b between the central axis of the keyboard area 20 and the central axis of the second surface 311 is 18.5-55.5 mm.
[0139] Exemplarily, the distance b between the central axis of the keyboard area 20 and the central axis of the second surface 311 is 37 mm.
[0140] In this embodiment, a distance c between the central axis of the keyboard area 20 and the first outer edge 111 of the first surface 110 is 32-96 mm.
[0141] Exemplarily, the distance c between the central axis of the keyboard area 20 and the first outer edge 111 of the first surface 110 is 64 mm.
[0142] Figure 8 The side view of the door lock, combined with Figure 8 In this embodiment, the distance d between the second surface 311 and the keyboard area 20 on the first surface 110 is 22.5-67.5 mm.
[0143] In the above implementation, the distance between the second surface 311 and the first surface 110 is designed to be the above value, so that the second surface 311 can be staggered with the first surface 110 by a suitable distance, which can highlight the functional parts on the second surface 311 without causing the handle 30 to protrude too much from the first surface 110.
[0144] Exemplarily, the distance d between the second surface 311 and the first surface 110 is 45 mm.
[0145] Unless otherwise defined, the technical terms or scientific terms used herein shall have the usual meanings understood by persons of ordinary skill in the field to which the present disclosure belongs. The words "first", "second", "third" and similar words used in the patent application specification and claims of the present disclosure do not indicate any order, quantity or importance, but are only used to distinguish different components. Similarly, words such as "one" or "one" do not indicate a quantity limitation, but indicate the existence of at least one. Words such as "include" or "comprise" and similar words mean that the elements or objects appearing before "include" or "comprise" include the elements or objects listed after "include" or "comprise" and their equivalents, and do not exclude other elements or objects. Words such as "connect" or "connected" and similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0146] The above description is only an optional embodiment of the present disclosure and is not intended to limit the present disclosure. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present disclosure shall be included in the protection scope of the present disclosure.
Claims
1. A door lock, It is characterized in that It comprises a housing (10), a keyboard area (20) and a handle (30); The outer wall of the housing (10) has a first surface (110), the first surface (110) has a first outer edge (111) and a second outer edge (112) opposite to each other, the first outer edge (111) is located on one side of a left side and a right side of the first surface (110), and the second outer edge (112) is located on the other side of the left side and the right side of the first surface (110); The keyboard area (20) is located on the first surface (110) and close to the outer edge of the first surface (110); The handle (30) is connected to the first surface (110) and protrudes from the first surface (110); the handle (30) is close to the first outer edge (111); the keyboard area (20) is close to the second outer edge (112); and the handle (30) is adjacent to the keyboard area (20) so that the handle (30) can cover the keyboard area (20).
2. The door lock according to claim 1, It is characterized in that The length direction of the handle (30) is consistent with the extension direction of the first outer edge (111), and the length direction of the keyboard area (20) is consistent with the extension direction of the second outer edge (112).
3. The door lock according to claim 2, It is characterized in that The extension directions of the first outer edge (111) and the second outer edge (112) are parallel to each other.
4. The door lock according to any one of claims 1 to 3, It is characterized in that The handle (30) has a second surface (311); The second surface (311) faces away from the housing (10), and the second surface (311) is not coplanar with the first surface (110), and the second surface (311) is used for arranging functional parts of the door lock.
5. The door lock according to claim 4, It is characterized in that The handle (30) comprises a holding piece (310) and a connecting piece (320); The outer wall of the holding piece (310) has the second surface (311), and the length direction of the holding piece (310) is consistent with the length direction of the shell (10); The connecting member (320) is located between the holding member (310) and the first surface (110), and the connecting member (320) is connected to the holding member (310) and the first surface (110) respectively.
6. The door lock according to claim 4, It is characterized in that The functional parts include at least one of a doorbell (40), a camera (50), a sensor (60), an interface (70), and a lock hole (80).
7. The door lock according to claim 4, It is characterized in that The distance between the second surface (311) and the keyboard area (20) on the first surface (110) is 22.5 to 67.5 mm.
8. The door lock according to claim 5, It is characterized in that The connecting member (320) comprises a base portion (321) and at least two supporting pillar portions (322); The length direction of the base portion (321) is the same as that of the gripping member (310); Each of the support portions (322) is arranged at intervals in the length direction of the base portion (321), and the support portions (322) are respectively connected to the base portion (321) and the gripping member (310).
9. The door lock according to claim 8, characterized in that the gripping member (310) and the support portions (322) are hollow structural members.
10. The door lock according to claim 5, characterized in that the handle (30) further includes a shielding member (330); the shielding member (330) is located on the side of the gripping member (310) facing away from the keyboard area (20), and the shielding member (330) is connected to the gripping member (310) and / or the connecting member (320) to shield the gap between the handle (30) and the housing (10).
11. The door lock according to any one of claims 1-3, characterized in that the keyboard area (20) includes a plurality of key areas (210), and the plurality of key areas (210) are arranged at intervals.
12. The door lock according to claim 11, characterized in that the plurality of key areas (210) are arranged at intervals in the length direction of the handle (30).
13. The door lock according to any one of claims 1-3, characterized in that the first surface (110) includes a flat portion (113) and an arc-shaped portion (114); the arc-shaped portion (114) is surrounded along the outer edge of the flat portion (113) and is located on one side of the flat portion (113); the keyboard area (20) is located on the flat portion (113).
14. The door lock according to claim 13, characterized in that a key assembly (90) is provided inside the housing (10); the triggering portion of the key assembly (90) faces the flat portion (113), and the orthographic projection of the key assembly (90) on the flat portion (113) at least partially coincides with the keyboard area (20).
15. The door lock according to claim 14, characterized in that the inner wall of the housing (10) has a mounting surface (120), the mounting surface (120) and the keyboard area (20) are on opposite sides, the mounting surface (120) is a flat surface, and the mounting surface (120) and the keyboard area (20) are close to the same side edge of the housing (10); the length direction of the mounting surface (120) is the same as that of the key assembly (90); the key assembly (90) is connected to the mounting surface (120).
16. The door lock according to claim 15, characterized in that a main board (1200) is provided inside the handle (30); the main board (1200) is connected to the key assembly (90).
Citation Information
Patent Citations
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