WO2024102073A1 - 电子装置磁吸配件 - Google Patents

电子装置磁吸配件 Download PDF

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Publication number
WO2024102073A1
WO2024102073A1 PCT/SG2023/050738 SG2023050738W WO2024102073A1 WO 2024102073 A1 WO2024102073 A1 WO 2024102073A1 SG 2023050738 W SG2023050738 W SG 2023050738W WO 2024102073 A1 WO2024102073 A1 WO 2024102073A1
Authority
WO
WIPO (PCT)
Prior art keywords
magnetic
electronic device
accessory
fixing seat
latch
Prior art date
Application number
PCT/SG2023/050738
Other languages
English (en)
French (fr)
Inventor
陳敬
蘇聖哲
呂瑞辰
何承哲
許哲瑋
Original Assignee
愛進化科技股份有限公司
犀牛盾私人有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from TW112102450A external-priority patent/TW202419016A/zh
Priority claimed from US18/331,962 external-priority patent/US20240151346A1/en
Application filed by 愛進化科技股份有限公司, 犀牛盾私人有限公司 filed Critical 愛進化科技股份有限公司
Publication of WO2024102073A1 publication Critical patent/WO2024102073A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/04Supports for telephone transmitters or receivers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M13/00Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles
    • F16M13/02Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or attaching to, an object, e.g. tree, gate, window-frame, cycle

Definitions

  • the present invention provides a magnetic accessory for an electronic device, and more particularly, relates to a magnetic accessory for an electronic device that can magnetically attract an electronic device and mount it on a fixed target object.
  • Portable electronic devices are one of the indispensable daily necessities for people in today's society, such as smart phones, tablet computers, smart watches, and e-book readers, which bring great convenience to people's lives and work.
  • Taking fitness as an example, when a user uses a smart phone to record a video of his or her own movements, he or she needs to free up both hands and has no time to operate the phone. Therefore, if there is a product that can temporarily fix the portable electronic device on a wall, equipment, or some objects, so that the user can free up both hands, it can bring great convenience.
  • the target to be fixed is a non-magnetic material
  • the magnetic attraction type accessories that simply use magnetic force to adsorb the electronic device and the target will not work
  • the adhesive type accessories can be used for fixing non-magnetic targets, the viscosity of the accessories will weaken after repeated use, and when the target to be fixed has an arc or curved contour, the fixed shape adhesive type accessories will not be able to adapt to the shape changes of the target and there is a risk of falling off.
  • the electronic device accessories currently on the market can only fix the electronic device in a single position. When the user needs to adjust the position of the electronic device based on different needs, the above accessories cannot meet the needs of the user.
  • the present invention provides an electronic device magnetic accessory, which is suitable for an electronic device and a fixed target object, and the electronic device magnetic accessory includes a magnetic member, a sleeve and a fixing seat.
  • the magnetic member selectively magnetically attracts the electronic device;
  • the sleeve can be detachably mounted on the fixed target object and is suitable for tightening and adhering to the surface of the fixed target object;
  • the fixing seat is configured on the sleeve and connected to the magnetic member, and the magnetic member is suitable for being fixed at a first position or a second position relative to the fixing seat.
  • the above-mentioned sleeve includes a ring portion and an end portion, wherein the ring portion defines a fixed channel, and the fixed target object is suitable for passing through the fixed channel; the end portion is connected to the ring portion.
  • the fixing seat is formed with a through hole, the end portion is passed through the through hole, and the fixing seat is suitable for moving relative to the end portion to change the size of the fixed channel.
  • the fixing seat comprises a body, an adjusting member, a clamping member and an elastic member.
  • the through hole is formed in the body; the adjusting member is disposed on the body and protrudes relative to the body; the clamping member is disposed on the body and selectively protrudes toward the inside of the through hole; the elastic member is disposed between the adjusting member and the clamping member.
  • the magnetic element is connected to the end portion, and the magnetic element and the ring portion are disposed on different sides of the fixing seat.
  • the electronic device includes a magnetic attraction feature
  • the magnetic attraction member includes a magnetic attraction portion and an adjustment portion
  • the shape of the magnetic attraction portion corresponds to at least a portion of the magnetic attraction feature and is suitable for magnetic attraction to the magnetic attraction feature
  • the adjustment portion is connected between the magnetic attraction portion and the fixing seat and is flexible.
  • the magnetic attraction portion is an arc-shaped structure, and the central angle of the arc-shaped structure is 60 degrees to 120 degrees.
  • the magnetic attraction accessory of the electronic device further includes a latching member, and the latching member is pivotally connected to the magnetic attraction member.
  • the above-mentioned fixing seat includes a latching portion, and the latching member and the latching portion selectively latch with each other.
  • one of the latch member and the latch portion is formed with an engaging groove, and the other of the latch member and the latch portion is selectively embedded in the engaging groove.
  • one of the above-mentioned latching member and the latching portion includes a bottom wall, the bottom wall surrounds at least a portion of the engaging groove, and the other of the latching member and the latching portion includes a top contact surface. When the top contact surface contacts the bottom wall, the latching member and the latching portion are fixed to each other.
  • the above-mentioned latching member is suitable for latching with the latching portion along two different directions of the latching portion.
  • the magnetic attraction accessory of the electronic device further includes: a magnetic attraction positioning member, which is disposed between the magnetic attraction member and the latch member and selectively fixes the magnetic attraction member relative to the latch member.
  • the electronic device magnetic accessory further includes an extraction member, which is connected to the latch member, and the extraction member and the latch member together surround the latch portion.
  • the fixing seat further comprises two side walls, the two side walls protrude relative to the sleeve, and the latch portion is disposed between the two side walls.
  • the magnetic attraction member can be pivotally connected to the fixing seat.
  • the magnetic attraction accessory of the electric device further includes a pivot member, which is disposed between the magnetic attraction member and the fixing seat.
  • a sliding groove is formed in one of the magnetic attraction member and the fixing seat, and the pivot member is slidably disposed in the sliding groove.
  • the above-mentioned slide groove extends along an extraction direction
  • one of the magnetic attraction member and the fixing seat has a first groove wall and a second groove wall.
  • the first groove wall and the second groove wall surround at least a portion of the slide groove and are arranged on opposite sides of the slide groove in the extraction direction.
  • the pivot member selectively abuts against the first groove wall or the second groove wall, and the friction coefficient between the first groove wall and the pivot member is different from the friction coefficient between the second groove wall and the pivot member.
  • the magnetic attraction accessory of the electronic device further includes a pivot member
  • the fixing base includes a stop portion
  • the magnetic attraction member pivots relative to the fixing base via the pivot member and includes a cam surface
  • the cam surface and the stop portion abut against each other.
  • the magnetic attraction accessory of the electronic device further includes a pivotal member and an extraction member, wherein the pivotal member is disposed on one end of the magnetic attraction member and penetrates or is pivotally connected to the fixing seat; the extraction member is connected between the other end of the magnetic attraction member and the fixing seat.
  • the fixing seat is formed with a retaining groove
  • the extractor includes a connecting portion and a retaining portion.
  • the connecting portion is inserted into the retaining groove and has flexibility.
  • the connecting portion is provided with a magnetic attraction member at one end, and the retaining portion is provided with a magnetic attraction member at the other end.
  • the retaining portion is larger than the retaining groove.
  • the above-mentioned fixing seat is pivotally connected to the sleeve member.
  • the electronic device magnetic accessory further includes a fixing seat positioning member, which is disposed between the fixing seat and the sleeve member and selectively fixes the fixing seat relative to the sleeve member.
  • the magnetic attraction member includes a base and a cam portion, wherein the base is suitable for carrying an electric device; the cam portion is connected to the base and includes at least one cam surface and an abutting surface.
  • the fixing seat includes an abutting wall, wherein the cam portion abuts against the abutting wall.
  • the electronic device magnetic attraction accessory further includes a friction fixture, which is detachably disposed on the top wall and abuts against the cam portion.
  • the above-mentioned fixing seat includes a main body and a latch portion, and the latch portion is suitable for "movably protruding" from the wooden body and abutting against the magnetic attraction member.
  • a K-catch groove is formed on the magnetic attraction member, and the K-catch groove is suitable for abutting the latch portion.
  • the magnetic attraction accessory of the electronic device further includes an extraction member, both ends of the extraction member are connected to the fixing seat to form an extraction channel, and the magnetic attraction member is disposed on the extraction member.
  • the magnetic attraction component is embedded in the extraction component.
  • the above-mentioned sleeve includes a belt body and a Velcro feature, wherein the belt body is suitable for defining a fixing channel, and the Velcro feature is configured on a portion of the bag body, and the other portion of the belt body is suitable for adjusting the size of the fixing channel by adjusting the Velcro feature to different positions.
  • the sleeve is used to form an anti-slip feature on the surface of the target object.
  • the electronic device magnetic attraction accessory of the present invention can magnetically fix the electronic device at the first position or the second position through the magnetic attraction component, and tighten and adhere to the surface of the fixed target object through the sleeve component, which can not only solve the problem that some Japanese targets cannot be magnetically attracted, but also can be firmly attached to different fixed targets.
  • FIG. 1 is a three-dimensional schematic diagram of the first embodiment of the magnetic suction accessory of an electronic device of the present invention cooperating with a fixed target and an electronic device.
  • FIG. 2 is a front view schematic diagram of the magnetic suction accessory of the electronic device in FIG. 1.
  • FIG. 3 is a left side view schematic diagram of the magnetic suction accessory of the electronic device in FIG. 1.
  • FIG. 4 is a left side view schematic diagram of the fixing seat in FIG. 2.
  • FIG. 5 is a three-dimensional schematic diagram of the second embodiment of the magnetic suction accessory of the electronic device of the present invention cooperating with a fixed target.
  • FIG. 6 is a three-dimensional schematic diagram of the magnetic suction accessory of the electronic device in FIG. 5.
  • FIG. 7 is a top view schematic diagram of the socket and the fixing seat in FIG. 6.
  • FIG. 8 is a cross-sectional schematic diagram along the AA section of FIG. 7.
  • FIG. 9 is a three-dimensional schematic diagram of some components of the magnetic suction accessory of the electronic device in FIG. 6.
  • FIG. 10 is a three-dimensional schematic diagram of a portion of the magnetic suction accessory in FIG. 9 presented in a transparent form.
  • FIG. 11 is a left side view schematic diagram of the magnetic suction accessory of the electronic device in FIG. 5 in a first use mode.
  • FIG. 12 is a cross-sectional schematic diagram along the BB section of FIG. 11.
  • FIG. 13 is a left side view schematic diagram of the magnetic suction accessory of the electronic device in FIG. 5 in a first use mode.
  • FIG14 is a cross-sectional view of FIG13 along the CC section.
  • FIG15 is a three-dimensional schematic diagram of the second embodiment of the magnetic attraction accessory of the electronic device of the present invention cooperating with a fixed target object.
  • FIG16 is a three-dimensional schematic diagram of the magnetic attraction accessory of the electronic device of FIG15.
  • FIG17 is a left side view of the fixing seat and the pivot member in FIG16.
  • FIG18 is a cross-sectional view of FIG17 along the DD section.
  • Replacement page (Article 26 of the Rules)
  • FIG. 19 is a three-dimensional schematic diagram of the magnetic attraction member and the extraction member in FIG. 15 .
  • FIG. 20 is a three-dimensional schematic diagram of the magnetic attraction accessory of the electronic device in FIG. 15 in a first use mode.
  • FIG. 20 is a three-dimensional schematic diagram of the magnetic attraction accessory of the electronic device in FIG. 15 in a first use mode.
  • FIG. 21 is a left side view schematic diagram of FIG. 20 with some components omitted.
  • FIG. 22 is a three-dimensional schematic diagram of the magnetic attraction accessory of the electronic device in FIG. 15 in a second use mode.
  • FIG. 23 is a front view schematic diagram of FIG. 22 with some components omitted.
  • FIG. 24 is a left side view schematic diagram of the fourth embodiment of the magnetic attraction accessory of the electronic device of the present invention cooperating with a fixed target object.
  • FIG. 25 is a cross-sectional schematic diagram of FIG. 24 along the EE section.
  • FIG. 26 is a three-dimensional schematic diagram of the fifth embodiment of the magnetic attraction accessory of the electronic device of the present invention cooperating with a fixed target object.
  • FIG. 27 is a left side view schematic diagram of some components of the magnetic attraction accessory of the electronic device in FIG. 26 .
  • FIG. 28 is a cross-sectional schematic diagram of FIG. 27 along the FF section.
  • FIG. 29 is a partially enlarged schematic diagram of the magnetic attraction member in FIG. 28 .
  • FIG. 30 is a front view schematic diagram of the magnetic attraction member and the top wall in FIG. 28 in a first use position.
  • FIG31 is a front view schematic diagram of the magnetic attraction member and the top wall position in FIG28 in a second use position.
  • FIG32 is a three-dimensional schematic diagram of the sixth embodiment of the magnetic attraction accessory of an electronic device of the present invention cooperating with a fixed target.
  • FIG33 is a left side schematic diagram of the magnetic attraction accessory of the electronic device in FIG32.
  • FIG34 is a cross-sectional schematic diagram of the magnetic attraction accessory of the electronic device in FIG33 along the GG section in a first use mode.
  • FIG35 is an enlarged schematic diagram of the circular area in FIG34.
  • Replacement page (Article 26 of the Rules)
  • FIG36 is a schematic cross-sectional view of the magnetic suction accessory of the electronic device of FIG33 in a second use mode along the GG section.
  • FIG37 is a stereoscopic schematic view of the seventh embodiment of the magnetic suction accessory of the electronic device of the present invention cooperating with a fixed target.
  • FIG38 is a schematic left side view of the fixing seat D in FIG37 in a first use position.
  • FIG39 is a schematic cross-sectional view of FIG38 along the HH section.
  • FIG40 is a schematic left side view of the fixing seat in FIG37 in a second use position.
  • FIG41 is a schematic cross-sectional view of FIG40 along the II section.
  • FIG42 is a schematic side cross-sectional view of the magnetic suction member in FIG37.
  • FIG43 is a schematic cross-sectional view of the magnetic suction member and the fixing seat in FIG37 in a first use mode.
  • FIG44 is a schematic cross-sectional view of the magnetic suction member and the fixing seat in FIG37 in a second use mode.
  • FIG45 is a stereoscopic schematic view of the eighth embodiment of the magnetic suction accessory of the electronic device of the present invention.
  • FIG46 is a stereoscopic schematic view of the unfolding of some components in FIG45.
  • FIG47 is a schematic side cross-sectional view of FIG46.
  • FIG. 1 is a three-dimensional schematic diagram of the first embodiment of the magnetic attraction accessory for an electronic device of the present invention cooperating with a fixed target object and an electronic device
  • FIG. 2 is a three-dimensional schematic diagram of the magnetic attraction accessory for an electronic device of the present invention cooperating with a fixed target object and an electronic device
  • FIG. 3 is a front view schematic diagram of the magnetic accessory for an electronic device
  • FIG. 1 is a left side view schematic diagram of the magnetic accessory for an electronic device.
  • the magnetic accessory for an electronic device 1A of this embodiment is suitable for a fixed target object 2 and an electronic device 3, wherein the fixed target object 2 is, for example, a kettle, a thermos, an armrest, a dumbbell, or even a human head, wrist or ankle, etc., which are suitable for temporarily fixing the electronic device 3, and the electronic device 3 is, for example, a portable electronic device such as a smart phone, a tablet computer, a smart watch or an e-book reader, but the present invention does not limit the specific forms of the fixed target object 2 and the electronic device 3.
  • the electronic device magnetic accessory 1A includes a magnetic component 100A, a sleeve 200A and a fixing seat 300A, wherein the magnetic component 100A can be selectively magnetically attracted to the electronic device 3; the sleeve 200A can be detachably mounted on the fixed target object 2 and is suitable for tightening and adhering to the surface of the fixed target object 2; the fixing seat 300A is configured on the sleeve 200A and connected to the magnetic component 100A.
  • the magnetic attraction part 100A may include a magnetic attraction part 110A and an adjustment part 120A, wherein the magnetic attraction part 110A may include a plastic shell and a permanent magnet, an electromagnet or other magnetically sensitive material embedded in the plastic shell, wherein the plastic shell may be made of hard plastic; and the adjustment part 120A may be an iron wire wrapped in a soft plastic outer shell, and in this embodiment, the number is, for example, two, arranged at both ends of the magnetic attraction part 110A.
  • the magnetic attraction part 110A may not have a shell or may only be wrapped with leather or other objects, which is beneficial to making the electronic device magnetic attraction accessory 110A lightweight; and the adjustment part 120A may be made of a titanium alloy with shape memory ability in addition to the iron wire, thereby maintaining the magnetic attraction part 100A in a fixed shape.
  • the electronic device 3 may include a magnetic attraction feature, wherein the magnetic attraction feature is, for example, a magnet array formed in a MAGSAFE interface on the back side of the electronic device 3.
  • the magnetic attraction feature may also be a magnetic attraction ring attached to the back side of the electronic device 3 or the back side of the protective shell of the electronic device.
  • the shape of the magnetic attraction portion 110A corresponds to at least a portion of the magnetic attraction feature.
  • the magnetic attraction portion 110A is a magnetic attraction ring.
  • the arc-shaped magnetic attraction portion 110A is a portion of a curvature circle, and the center angle of the arc-shaped structure is preferably 60 to 120 degrees.
  • the magnetically sensitive material used in the magnetic attraction portion 110A can be appropriately reduced, the weight and volume occupied by the magnetic attraction component 100A can be reduced, and the connection strength of the electronic device 3 magnetically attracted to the magnetic attraction component 100A can be ensured, thereby preventing the electronic device 3 from falling off from the magnetic attraction component 1A due to insufficient magnetic attraction.
  • the adjustment part 120A is connected between the magnetic part 110A and the fixing seat 300A, and because the adjustment part 120A is made of metal wire such as iron wire or titanium alloy wire, it has both support strength and flexibility.
  • the user wants to fix the electronic device 3 through the magnetic part 100A, the user can press the adjustment part 120A with a finger to deform it or change its position relative to the fixing seat 300A, thereby making the magnetic part 110A in the first position (for example, the tilted upward position shown in FIG. 1) or the second position (for example, the tilted upward position shown in FIG. 1).
  • the electronic device 3 can be maintained at different positions relative to the fixing base 300A.
  • the present embodiment takes the example that the number of the adjustment parts 120A is two and they are arranged on both sides of the magnetic attraction part 110A, the present invention is not limited thereto. In other possible embodiments, only one adjustment part 120A may be arranged on one side of the magnetic attraction part 110A to make it present a shape like "?”, as long as it can ensure that the electronic device 3 magnetically attracted to the magnetic attraction part 110A ⁇ will not fall due to weight or affect the center of gravity of the fixed target 2.
  • the above-mentioned inclined upward or inclined downward position is also for example only, as long as the adjustment part 120A can reach the position by deformation or displacement, it is within the protection scope of the present invention.
  • the sleeve 200A of the present embodiment is, for example, a silicone ring and includes a ring portion 210A and an end portion 220A, wherein the ring portion 210A surrounds and defines a fixed channel, and the fixed target object 2 is suitable for being inserted into the fixed channel; and the end portion 220A is connected to the ring portion 210A.
  • the fixed target object 2 can be inserted into the fixed channel formed by the ring portion 210A, and the position of the ring portion 210A relative to the fixed target object 2 can be adjusted at the same time.
  • the user can tighten the sleeve 200A and attach it to the surface of the fixed target object 2, such as the lid or body of a kettle, thereby fixing the electronic device 3 magnetically attracted to the magnetic attraction member 100A on the fixed target object 2, and executing the functions of the electronic device 3 itself to meet the user's various usage needs such as viewing, recording, photographing, and playing.
  • the fixed target object 2 such as the lid or body of a kettle
  • the sleeve 200A is used to be sleeved on the surface of the fixed target 2, that is, an anti-slip feature is formed on the inner side of the ring portion 210A, wherein the anti-slip feature is, for example, rubber, knurling, or a relatively rough fabric.
  • the anti-slip feature is, for example, rubber, knurling, or a relatively rough fabric.
  • the magnetic component 100A can be directly used as a handle, that is, the user can pick up the sleeve 200A through the magnetic component 100A, and carry it together with the attached fixed target 2, which is simple and convenient to use.
  • the user can also insert a belt, a lanyard, or a metal chain into the sleeve 200A or connect it to the sleeve 200A, and when the electronic device 3 is magnetically attracted to the magnetic component 100A, the fixed target 2 and the electronic device 3 can be picked up through the extraction component through the electronic device magnetic accessory 1A, thereby improving the convenience of the user carrying the fixed target 2 and the electronic device 3.
  • FIG. 4 is a schematic diagram of the left side view of the fixing seat in FIG. 2.
  • the fixing seat 300A of this embodiment has a function of changing the size of the fixing channel so that the sleeve
  • the fixing seat 300A may include a body 310A, an adjustment member 320A, a clamping member 330A and an elastic member 340A, wherein the body 310A is, for example, a rectangular column and is formed with a through hole 360A; the adjustment member 320A is, for example, a button, which is disposed on the body 310A and protrudes relative to the body 310A; the clamping member 330A may be a hemispherical clamp, and the number of the clamping member 330A in this embodiment is, for example, two, which are disposed on the body 310A and protrude relative to the inside of the through hole 360A; the single-sex member 340A is, for example, an elastic arm, the number of which corresponds to the number of the clamping members 330A, and is disposed between the adjustment member 320A and
  • the end 220A of the sleeve 200A may be inserted into the through hole 360A and connected to the adjustment portion 120A of the magnetic attraction member 100A, That is, the ring portion 210A of the magnetic attraction member 100A and the sleeve member 200A can be arranged on different sides of the fixing seat 300A.
  • the user wants to tighten the ring portion 210A, he can press the adjustment member 320A to deform the elastic member 340A and drive the clamping member 330A to move toward the outside of the through hole 360A.
  • the cross-sectional area of the through hole 360A increases, so the fixing seat 300A can move toward the ring portion 210A along the extension direction of the end 220A, thereby changing the size of the fixed channel and making the sleeve member 200A tightly fixed on the fixed target object 2; and when the sleeve member 200A is tightened, the user M stops pressing the adjustment member 320A, and the clamping member 330A is driven by the elastic force of the elastic member 340A and protrudes toward the inside of the through hole 360A again and clamps a part of the end 220A, thereby preventing the fixing seat 300A from sliding relative to the end 220A.
  • the fixing seat 300A can be moved relative to the end 220A in a direction away from the ring portion 210A, thereby expanding the fixing channel and allowing the sleeve 200A to be removed from the fixed target object 2.
  • the adjustment portion 120A is directly connected to one end of the end 220A in this embodiment, the present invention is not limited thereto. In other possible embodiments, the adjustment portion 120A can also be directly formed on the fixing seat 300A, and the end 220A is penetrated through the through hole 360A of the body 310A ⁇ in the fixing seat 300A, which can also achieve the effect of adjusting the fixing channel.
  • FIG. 5 is a three-dimensional schematic diagram of the second embodiment of the electronic device magnetic accessory of the present invention cooperating with a fixed target object
  • FIG. 6 is a three-dimensional schematic diagram of the electronic device magnetic accessory in FIG. 5.
  • the electronic device magnetic accessory 1B of this embodiment includes a magnetic member 100B, a sleeve 200B and a fixing seat 300B, wherein the sleeve 200B is suitable for being sleeved on the fixed target object 2, and the fixing seat 300B is configured on the sleeve 200B and connected to the magnetic member 100B.
  • the main difference from the electronic device magnetic accessory 1A of the first embodiment is that the electronic device magnetic accessory 1B also includes a latch member 400B and an extraction member 500B.
  • FIG. 7 is a schematic top view of the sleeve and the fixing seat in FIG. 6, and FIG. 8 is a schematic cross-sectional view of FIG. 7 along the A-A section.
  • the sleeve 200B of the present embodiment is, for example, an elastic latex ring, which can be automatically tightened according to the shape of the fixed target object 2; and the fixing seat 300B is, for example, fixed on the sleeve 200B and includes a latch portion 310B and two side walls 320B, these side walls 320B protrude relative to the sleeve 200B and are parallel to each other, and the latch portion 310B is, for example, an arched columnar structure disposed between these side walls 320B, and the latch portion 310B forms a top surface 312B for latching with the latch member 400B.
  • FIG. 9 is a three-dimensional schematic diagram of a part of the magnetic attraction accessory of the electronic device in FIG. 6, and FIG. 10 is a three-dimensional schematic diagram of a part of the magnetic attraction component in FIG. 9 presented in a transparent form.
  • the magnetic attraction component 100B of this embodiment includes a magnetic attraction portion 110B and a base portion 120B, wherein the magnetic attraction portion 110B is, for example, a permanent magnet or other magnetically sensitive material.
  • the number is, for example, four and they are arranged oppositely in pairs, and the shape and the position of the arrangement correspond to at least one part of the magnetic attraction feature on the electronic device 3.
  • the base portion 120B is, for example, a square prism structure formed by injection molding, and a cavity corresponding to the magnetic attraction portion 110B is formed inside. In this way, the magnetic attraction component 100B can be embedded or buried in the base portion 120B.
  • the internal magnetic attraction portion 110B magnetically attracts the electronic device 3, achieving the same or similar effect as the magnetic attraction member 100A in the first embodiment.
  • the latching member 400B of the present embodiment can be pivotally connected to the magnetic member 100B, and the latching member 400B is used to latch with the latching portion 310B of the fixing seat 300B.
  • the magnetic attraction accessory 1B of the present embodiment can also include a pivoting member 600B, and the magnetic attraction member 100B is formed with lugs 130B protruding relative to the base 120B on both sides of one end of the base 120B, wherein the lugs 130B and the latching member 400B are both formed with through holes for the pivoting member 600B to pass through.
  • the latching member 400B can be pivotally connected to the magnetic attraction member 100B through the pivoting member 600B.
  • the electronic device magnetic attachment 1B further includes a magnetic positioning member (not shown), wherein the magnetic positioning member is, for example, a positioning gear, a protrusion or a locking groove that can fix the pivot member 600B.
  • the magnetic positioning member can be operated to fix the magnetic member 100B relative to the locking member 400B.
  • the extracting member 500B is, for example, a ring-shaped hanging rope, which is flexible, but can also be other components suitable for extraction, such as a belt, an iron chain or a webbing, and the present invention is not limited to this.
  • the latching member 400B may include two end portions 410B, and an engaging groove 460B is formed between these end portions 410B.
  • the latching member 400B with the end portions 410B presents a "U" shape when viewed from the side, and the two ends of the extracting member 500B are respectively connected to the end portions 410B of the latching member 400B, so that the extracting member 500B and the latching member 400B together surround the latching portion 310B of the fixing seat 300B.
  • FIG. 11 is a left side view of the electronic device magnetic accessory of FIG. 5 in a first use mode
  • FIG. 12 is a cross-sectional view of FIG. 11 along the BB section.
  • the user can directly extract the latching member 400B through the extraction member 500B, and extract the fixed target object 2 together, so as to achieve the effect of easily carrying the fixed target object 2.
  • knurling for increasing friction may be disposed on the two side walls 464B of the engaging groove 460B, so that the latch portion 310B and the engaging groove 460B are not easily moved relative to each other after being fixed to each other.
  • the engaging groove 460B may be formed into a V-shaped structure that is wide at the top and narrow at the bottom, so that the latch portion 310B may have a stronger interfering force with each other as it enters the engaging groove 460B deeper, thereby further strengthening the engaging relationship between the two.
  • FIG. 13 is a left side schematic diagram of the magnetic attachment of the electronic device in FIG. 5 in the first and second usage modes
  • FIG. 14 is a cross-sectional schematic diagram of FIG. 13 along the C-C cross section.
  • the latching portion 310B will gradually enter the deepest part of the fitting groove 460B until the top surface 312B of the latching portion 310B abuts against a bottom wall 462B of the fitting groove 460B, so that the latching member 400B and the latching portion 310B are completely fixed to each other.
  • the user can adjust the pivot angle of the magnetic attraction member 100B relative to the latching member 400B, and then magnetically attach the electronic device 3 to the magnetic attraction member 100B, so that the electronic device 3 can be temporarily fixed.
  • 3 is fixed on the fixed daily standard object 2.
  • a magnetic feature 22 corresponding to the magnetic portion 110B may also be formed on the fixed target 2, wherein the magnetic feature 22 is, for example, an iron ring surrounding the fixed target 2 in the circumferential direction.
  • the magnetic member 100B can be pivoted and pressed against the surface of the fixed target object 2, and the magnetic member 100B is firmly maintained in the second position through the mutual magnetic attraction between the magnetic portion 110B and the magnetic feature 22, further enhancing the stability of the electronic device 3 during magnetic attraction.
  • the latching member 400B and the extraction member 500B are maintained around the latching portion 310B, the user can prevent the fixed target object 2 from falling off the magnetic attachment 1B of the electronic device by holding the extraction member 500B, thereby reducing the risk of the fixed target object 2 being damaged by collision.
  • a groove for accommodating at least a portion of the magnetic member 100B may be formed in the fixed target object 2.
  • the magnetic member 100B magnetically attracts the electronic device 3, it can be accommodated in the above-mentioned groove, which can prevent the magnetic member 100B from pivoting or moving relative to the fixed target object 2.
  • the upper surface of the latching portion 310B is formed with the abutting top surface 312B, and the latching member 400B is engaged with the latching portion 310B along the upper and lower directions of the latching portion 310B to achieve different uses, the present invention is not limited thereto.
  • the latching portion 310B may also be formed with abutting top surfaces 312B corresponding to the bottom wall 462B in both the upper and lower directions, thereby, no matter the latching member 400B is engaged with the latching portion 310B along the upper or lower directions, the latching member 400B and the latching portion 310B can be completely fixed by the abutment between 312B and the bottom wall 462B.
  • the electronic device magnetic accessory 1B may not only be provided with the extraction member 500B, but the magnetic member 100B may be temporarily locked and fixed on the fixing seat 300B by simply using the latch member 400B, so that the electronic device magnetic accessory 1B is easy to carry through the fixed target object 2.
  • the latch portion 310B may also be a columnar member connected only to one side wall 320B, and a gap is formed between the latch portion 310B and the other side wall 320B.
  • the user can separate the white latch portion 310B of the extraction member 500B from the side wall.
  • FIG. 15 is a three-dimensional schematic diagram of the third embodiment of the electronic device magnetic accessory of the present invention cooperating with a fixed target object
  • FIG. 16 is a three-dimensional schematic diagram of the electronic device magnetic accessory of FIG. 15.
  • the electronic device magnetic accessory 1C of this embodiment is substantially similar to the electronic device magnetic accessory 1B of the second embodiment, and includes a magnetic member 100C, a sleeve member 200C, a fixing seat 300C, a extraction member 500C and a pivot member 600C .
  • the main difference between the two is that the electronic device magnetic accessory 1C is not only equipped with a latch member, but also the magnetic member 100C is pivotally connected to the fixing seat 300C.
  • FIG. 17 is a left side view of the fixing seat and the pivot member in FIG. 16, and FIG. 18 is a cross-sectional view of FIG. 17 along the D-D cross section.
  • the fixing seat 300C of this embodiment includes a body 310C and a pivoting portion 320C, wherein the body 310C is fixed relative to the sleeve member 200C, and the pivoting portion 320C is pivotally connected to the body 310C and is used to pivot with the magnetic member 100B.
  • the device accessory 1C may also include a fixing seat positioning member (not shown), wherein the fixing seat positioning member is, for example, a positioning gear and is disposed between the body 310C and the pivoting portion 320C.
  • the fixing seat positioning member is, for example, a positioning gear and is disposed between the body 310C and the pivoting portion 320C.
  • the fixing seat positioning member can also be configured between the fixing seat 300C and the sleeve member 200C, that is, the body 310C is pivotally connected to the sleeve member 200C, and the pivoting portion 320C is fixed relative to the body 310C to achieve the pivoting of the fixing seat 300C, and the present invention is not limited to this.
  • a slide groove 360C may be formed on the pivoting portion 320C, and the pivoting member 600C is slidably disposed in the slide groove 360C. Furthermore, the slide groove 360C extends along an extraction direction. In this embodiment, the extraction direction is, for example, the upper direction in FIG. 18, but the present invention does not use this as a reference. 17 Replacement Page (Detailed Rules Article 26) In other embodiments, the slide slot 360C may also extend obliquely or be arc-shaped.
  • the pivoting portion 320C has a first slot wall 362C and a second slot wall 364C, wherein the first slot wall 362C and the second slot wall 364C surround at least a portion of the slide slot 360C and are respectively disposed on opposite sides of the slide slot 360C in the extraction direction.
  • the first slot wall 362C is used as the upper end hole wall of the slide slot 360C
  • the second slot wall 364C is used as the outer end hole wall of the slide slot 360C.
  • the friction coefficient between the first groove wall 362C and the pivotal member 600C is different from the friction coefficient between the second groove wall 364C and the pivotal member 600CZ.
  • the friction coefficient between the first groove wall 362C and the pivotal member 600CZ is smaller than the friction coefficient between the second groove wall 364C and the pivotal member 600C.
  • the pivoting portion 320C may further include a stopper portion 322C for blocking the magnetic member 100C, thereby changing the relative position between the magnetic member 100C and the fixed member 300C at different pivoting phases.
  • a stopper groove 326C is further formed between the stopper portion 322C and the body 310C, which can be used to block the extraction member 500C.
  • FIG. 19 is a three-dimensional schematic diagram of the magnetic member and the extraction member in FIG. 15.
  • the magnetic member 100C of the embodiment is, for example, a rectangular sheet structure. Similar to the magnetic member 100B of the first embodiment, the magnetic member 100C includes a base 120C and a magnetic member (not shown) embedded in the base 120C. At least one indicating feature 122C may be formed on the surface of the base 120C, wherein the indicating feature 122C is, for example, an arc-shaped pattern and corresponds to the position of the embedded magnetic member. Thus, the user can confirm the position of the magnetic member through the indicating feature 122C, so as to quickly and correctly align the electric device 3 with the magnetic member 100C.
  • the magnetic member 100C may also be formed with a cam surface 130C, wherein the cam surface 130C is, for example, configured on the magnetic member 100C.
  • One end is used to block with the blocking portion 322C, and a pivot hole 160C is formed on one end of the base 120C where the cam surface 130C is configured, so as to provide a pivot member 600C to pass through.
  • a through hole 170C may be formed on one end of the base 120C relative to the pivot hole 160C, and the extraction member 500C includes a connecting portion 510C and a stopping portion 520C, wherein the connecting portion 510C is flexible, and one end is penetrated by the through hole 170C so as to be fixed to the magnetic attraction member 100C, and the locking portion 520C is configured at the other end of the connecting portion 510C, and the size of the locking portion 520C is larger than the locking groove 326C.
  • Figure 20 is a three-dimensional schematic diagram of the magnetic accessory of the electronic device in Figure 15 in a first usage mode
  • Figure 21 is a left side view schematic diagram of Figure 20 with some components omitted
  • Figure 22 is a three-dimensional schematic diagram of the magnetic accessory of the electronic device in Figure 15 in a second usage mode
  • Figure 23 is a front view schematic diagram of Figure 22 with some components omitted.
  • the following will be a detailed description of the use principle of the electronic device magnetic accessory 1C of this embodiment. First, the configuration relationship of the components of the electronic device magnetic accessory 1C is introduced.
  • the connecting portion 510C is penetrated in the locking groove 326C, so that the locking portion 520C is blocked by the locking groove 326C and retained at the outer end of the locking groove 326C, and the other end of the connecting portion 510C passes through the through hole 170C above the locking groove 326C to be fixed to the magnetic member 100C.
  • the pivoting member 600C is penetrated by the pivot hole 160C of the magnetic member 100C and the sliding groove 360C of the pivoting portion 320C at the same time, so that the cam surface 130C and the blocking portion 322C abut against each other.
  • the user can first install the sleeve 200C and the fixing seat 300C configured on the sleeve 200C to the appropriate position of the fixed target object 2.
  • the fixing seat 300C and the magnetic member 100C can be pivoted to a horizontal phase as shown in FIG. 21, and then the electronic device 3 can be magnetically fixed on the magnetic member 100C. In this way, the user can not only change the pivot phase of the electronic device 3 in the drawing of FIG.
  • the sub-device 3 has three different degrees of freedom of movement, which is extremely convenient in general use or in shooting and video recording.
  • the fixing base 300C can be pivoted to a vertical upward position as shown in FIG. 23.
  • the magnetic member 100C and the pivot member 600C embedded in the pivot hole 160C will slide downward relative to the fixed seat 300C due to the weight of the electronic device 3, so that the pivot member 600C abuts against the second groove wall 364C with greater friction, increasing the friction resistance of the pivot member 600C pivoting relative to the fixed seat 300C.
  • the friction between the pivot member 600C and the fixed seat 300C can be automatically adjusted according to the load of the electronic device 3, thereby enhancing the magnetic attraction of the electronic device 3 and the stability during use.
  • the magnetic member 100C and the pivot member 600C are taken as an example in which the slide groove 360C is formed on the fixed seat 360C, the present invention does not require this.
  • the fixing seat 300C for example, the fixing seat 300C and the pivot member 600C are integrally formed
  • the upper end groove wall of the sliding groove of the magnetic attraction member 100C will be correspondingly configured as a wall surface with a high friction coefficient, while the lower end groove wall will be configured as a wall surface with a low friction coefficient, which can also achieve the same effect.
  • the connecting portion 510C since one end of the connecting portion 510C is inserted into the through hole 170C, and the locking portion 520C disposed at the other end of the connecting portion 510C will also be locked with the locking groove 326C when being extracted by the extracting member 500C, the connection relationship between the extracting member 500C and the magnetic member 100C and the fixing member 300C can be ensured, thereby preventing the fixed target object 2 from accidentally falling off.
  • the electronic device magnetic attraction accessory 1C does not have the extracting member 500C, but simply relies on the magnetic attraction member 100C to magnetically attract the electronic device 3.
  • 20 Replacement Page (Article 26 of the Rules) Since the upper end of the magnetic attraction member 100C is not limited by the connecting portion 510C and the locking portion 520C, the pivotable angle is larger, thereby providing more various magnetic attraction positions.
  • FIG. 24 is a left side view of the fourth embodiment of the magnetic accessory for an electronic device of the present invention cooperating with a fixed target object
  • FIG. 25 is a cross-sectional view of FIG. 24 along the E-E section.
  • the magnetic accessory for an electronic device 1D of this embodiment is substantially similar to the magnetic accessory for an electronic device 1C of the third embodiment, and includes a magnetic component 100D, a socket 200D, a fixing seat 300D, and an extracting component 500D.
  • the main difference between the two is that the socket 200D is a releasable open structure.
  • the sleeve 200D is, for example, a belt or a webbing and has only two opposite ends, one of which is provided with a plurality of positioning holes, and the other end is provided with a positioning member (for example, a latch) that can be inserted into one of the positioning holes.
  • a through hole 370D can be formed on the fixing seat 300D.
  • the user can insert the sleeve 200D into the through hole 370D to fix the fixing seat 300D at a specific position on the fixed target object 2, and then insert the positioning member on one end of the sleeve 200D into one of the positioning holes, thereby achieving the effect of tightening the sleeve 200D relative to the fixed target object 2.
  • the sleeve 200D may not be provided with a positioning hole, and the size of the fixing channel may be changed through other fixing structures.
  • the sleeve 200D may include a belt body and a hook and loop feature, wherein the hook and loop feature is, for example, Velcro and is disposed at two different parts of the belt body. When the belt body is tightened relative to the fixed target 2, the hook and loop feature of one part of the belt body may be hooked to the hook and loop feature of another part of the belt body, and the size of the fixing channel may be adjusted by changing the hook and loop position.
  • the magnetic member 100D of this embodiment can be directly pivoted to the fixing seat 300D.
  • claws that fit each other can be formed on the lower end of the magnetic member 100D and the fixing seat 300D. With such a configuration, the magnetic member 100D can be freely pivoted relative to the fixing seat 300D.
  • a specific phase can be fixed by positioning gears or bumps, etc., which can also achieve the purpose of placing electronic devices
  • FIG. 26 is a three-dimensional schematic diagram of the fifth embodiment of the electronic device magnetic accessory of the present invention cooperating with a fixed target object
  • FIG. 27 is a left side schematic diagram of some components of the electronic device magnetic accessory in FIG. 26.
  • the electronic device magnetic accessory 1E of this embodiment is substantially similar to the electronic device magnetic accessory 1D of the fourth embodiment, and includes a magnetic member 100E, a sleeve member 200E, a fixing seat 300E, an extraction member 500E and a pivot member 600E.
  • the main difference between the two is that the magnetic member 100E selectively forms a tight fit interference with the fixing seat 300E through a cam.
  • FIG. 27 Please refer to FIG. 27 to FIG. 29, wherein FIG. 28 is a schematic cross-sectional view of FIG. 27 along the F-F cross section, and FIG. 29 is a partially enlarged schematic view of the magnetic attraction member in FIG. 28.
  • the magnetic attraction member 100E of this embodiment includes a magnetic attraction portion 110E, a base portion 120E, and a cam portion 130E, wherein the magnetic attraction portion 110E is buried or embedded in the base portion 120E, and the cam portion 130E is connected to one end of the base portion 120E.
  • the magnetic member 100E further includes a bearing portion 140E, wherein the bearing portion 140E is, for example, a non-slip structure with high friction, which is disposed on the base 120EH and covers the magnetic member 100E.
  • the bearing portion 140E is, for example, a non-slip structure with high friction, which is disposed on the base 120EH and covers the magnetic member 100E.
  • the cam portion 130E includes at least one cam surface and a top surface.
  • the cam portion 130E includes a first cam surface 132E, a second cam surface 134E and a top surface 136E, and the top surface 136E is configured between the first cam surface 132E and the second cam surface 134E.
  • the present invention is not limited to this.
  • the cam surface can also be configured only on one side of the top surface 136E.
  • the first cam surface 132E and the second cam surface 134E both have a variable curvature, and the top surface 136E is, for example, a plane.
  • the cam portion 130E is formed with a pivot hole 138E.
  • the fixing seat 300E may include a body 310E and two lugs 320E, wherein the body 310E may include a top wall 312E, the lugs 320E are respectively located on both sides of the body 310E, and the cam portion 130E abuts against the top wall 312E and is located between the two lugs 320E.
  • the electronic device magnetic attraction accessory 1E may further include a friction fixture, wherein the friction fixture is, for example, a consumable material with high friction and is detachably disposed on the top wall 312E and abuts against the cam portion 130E.
  • the friction fixture can strengthen the interference between the magnetic component 100E and the fixing base 300E.
  • the friction fixture is worn and the tight fit between the two is reduced, the user can also replace the friction fixture to maintain the fixing ability of the electronic device magnetic accessory 1E.
  • FIG. 30 is a front view schematic diagram of the magnetic member and the abutting wall in FIG. 28 being located in a first use position
  • FIG. 31 is a front view schematic diagram of the magnetic member and the abutting wall in FIG. 28 being located in a second use position.
  • the magnetic member 100E can pivot relatively freely relative to the fixing seat 300E due to the large curvature of the first cam surface 132E and the second cam surface 134E, thereby facilitating the user to extract the fixed standard object 2 through the extraction member 500E at any angle.
  • FIG. 32 is a three-dimensional schematic diagram of the sixth embodiment of the electronic device magnetic accessory of the present invention cooperating with a fixed target object
  • FIG. 33 is a left side schematic diagram of the electronic device magnetic accessory in FIG. 32.
  • the electronic device magnetic accessory 1F of this embodiment includes a magnetic member 100F, a sleeve member 200F, a fixing seat 300F and a extraction member 500F
  • the main difference from the electronic device magnetic accessory of the above embodiment is that the fixing seat 300F of the electronic device magnetic accessory 1F includes a latching portion 320F, and the magnetic member 100F and the latching portion 310F selectively latch with each other.
  • Figure 34 is a schematic cross-sectional view of the magnetic attraction accessory of the electronic device of Figure 33 along the G-G cross section in a first use mode
  • Figure 35 is an enlarged schematic view of the circular area in Figure 34
  • Figure 36 is a schematic cross-sectional view of the magnetic attraction accessory of the electronic device of Figure 33 along the G-G cross section in a second use mode.
  • the magnetic attraction member 100F of this embodiment includes a magnetic attraction portion 110F, a base portion 120F, and a bearing portion 140F, wherein the magnetic attraction portion 110F is buried or embedded in the base portion 120F, and the bearing portion 140F is disposed on the base portion 120F and covers the magnetic attraction portion 110F.
  • a penetration portion 126F is formed on the base 120F, and a latch groove 180F is formed on the other side of the base 120F relative to the supporting portion 140F.
  • the supporting portion 140F and the latch groove 180F are arranged on opposite sides of the base 120F.
  • the penetration portion 126F is, for example, a long groove penetrating the base 120F
  • the latch groove 180F is, for example, a groove.
  • the fixing seat 300F may include a body 310F, a latch portion 320F and a latch portion pivot member 330F, wherein the latch portion 320F is, for example, a cantilever structure, and the latch portion pivot member 330F is, for example, a positioning pin, and the latch portion 320F is pivotally connected to the body 310F through the latch portion pivot member 330F.
  • one end of the extraction member 500F is connected to the upper end of the fixing seat 300F, and the other end of the extraction member 500F is penetrated through the penetration portion 126F and connected to the lower end of the fixing seat 300F.
  • the latch portion 320F can be pivoted to a horizontal state as shown in FIG. 36 and protrude relative to the body 310F, so that the latch portion 320F and the latch slot 180F are latched with each other.
  • the latch slot 180F will be repelled against the latch portion 320F, so that the magnetic component 100F is limited by the latch portion 320F and maintained in the second position of the tilted posture, thereby achieving the effect of substantially adjusting the use or viewing angle of the electronic device 3 in the magnetic state.
  • FIG. 37 is a three-dimensional schematic diagram of the seventh embodiment of the electronic device magnetic accessory of the present invention cooperating with a fixed target object
  • FIG. 38 is a left side view schematic diagram of the fixing seat in FIG. 37 in a first use position
  • FIG. 39 is a cross-sectional schematic diagram of FIG. 38 along the H-H cross section
  • FIG. 40 is a left side view schematic diagram of the fixing seat in FIG. 37 in a second use position
  • FIG. 41 is a cross-sectional schematic diagram of FIG. 40 along the cross section.
  • the electronic device magnetic accessory 1G of this embodiment is substantially similar to the electronic device magnetic accessory 1F of the sixth embodiment, and includes a magnetic member 100G, a socket member 200G, a fixing seat 300G, and an extraction member 500G.
  • the main difference between the two is that the latch portion 320G of the electronic device magnetic accessory 1G is a sliding device, and the wooden body 310G-
  • the fixing seat 300G of the present embodiment includes a main body 310G and a latching portion 320G, wherein the main body 310G is formed with a slide groove 316G, and the latching portion 320G is slidably disposed in the slide groove 316G and includes a latching end 322G.
  • the latching portion 320G can be located at a first position in the center of the slide groove 316G as shown in FIG. 37 and FIG. 38, or at a second position at the bottom of the slide groove 316G as shown in FIG. 39 and FIG. 40.
  • a specific position where the latch portion 320G can slide on the slide groove 316G can be pre-set by means of a positioning piece or a step difference, etc., and the present invention is not limited to this.
  • FIG. 42 is a schematic side cross-sectional view of the magnetic member in FIG. 37.
  • the magnetic member 100G of this embodiment includes a magnetic portion 110G, a base portion 120G and a bearing portion 140G, wherein the base portion 120G is formed with a through portion 126G, and a latching groove 180G is formed on one side of the base portion 120G opposite to the bearing portion 140G.
  • the bearing portion 140G and the latching groove 180G are disposed on opposite sides of the base portion 120G.
  • the main difference from the magnetic member 100F is that the latching groove 180G extends along the extension direction of the base portion 120G, and the groove depth of the latching groove 180G is in a gradual relationship.
  • Figure 43 is a cross-sectional schematic diagram of the magnetic attraction member and the fixing base in Figure 37 in a first usage mode
  • Figure 44 is a cross-sectional schematic diagram of the magnetic attraction member and the fixing base in Figure 37 in a second usage mode.
  • the latch end 322G will correspond to the deeper groove depth of the latch groove 180G.
  • the groove depth of the latch groove 180G can also be kept fixed, and the magnetic element 100G can be changed only by moving the position of the latch portion 320G.
  • the tilt angle is 100G, and the present invention is not limited to this.
  • the latching parts of the electronic device magnetic attachment 1F of the sixth embodiment and the electronic device magnetic attachment 1G of the seventh embodiment can be combined with each other, that is, the latching parts can slide relative to the body at the same time, and when sliding to a specific position, they can also pivot relative to the body and protrude.
  • the pivoting protrusion provides the magnetic element with a greater degree of pivoting freedom, and the locking position between the locking portion and the magnetic element also obtains greater flexibility.
  • Figure 45 is a perspective schematic diagram of the eighth embodiment of the electronic device magnetic accessory of the present invention
  • Figure 46 is a perspective schematic diagram of a partial component of Figure 45 being unfolded
  • Figure 47 is a side cross-sectional schematic diagram of Figure 46.
  • the electronic device magnetic accessory 1H of this embodiment is substantially similar to the electronic device magnetic accessory 1F of the sixth embodiment, and includes a magnetic component 100H, a socket 200H, a fixing seat 300H, and an extraction component 500H.
  • the main difference between the two is that the magnetic component 100H of the electronic device magnetic accessory 1H is embedded in the extraction component 500H.
  • the magnetic attraction member 100H includes a magnetic attraction portion 110H and a base 120H, wherein the magnetic attraction portion 110H is, for example, an arc-shaped magnet corresponding to the magnetic attraction feature of the electronic device 3, and the base 120H is in the shape of a disk and has grooves formed at the upper and lower ends for the magnetic attraction portion 110H to be embedded.
  • the extraction member 500H is, for example, formed of a thicker fabric or leather with high friction, and the magnetic attraction member 100H is disposed in the extraction member 500H.
  • the extraction member 500H is formed by stacking a plurality of layers of fabric or leather, each layer is sticky, and the magnetic attraction member 100H is covered therein by being attached to each other.
  • the fixing base 300H includes a body 310H, a latch portion 320H and a latch portion pivotal member 330H, and the latch portion 320H is pivotally connected to the body 310H through the latch portion pivotal member 330H.
  • the latch portion 320H can be pivotally protruded relative to the body 310H and latched with the magnetic attraction member 100H disposed inside the extraction member 500H, thereby improving the stability of the electronic device 3 during magnetic attraction.
  • D-140G Load-bearing part C: Pivot hole C: Through hole F, 180G: Clamping groove A-200H: Sleeve A: Ring part A: End A-300H: Fixed seat A, 310C, 310E-310H: Body B: Clamping part B: Top surface E: Top wall G: Slide groove A: Adjustment part B: Side wall C: Pivot part C: Stopping part C: Clamping groove E: Lug F, 320G, 320H: Clamping part G: Clamping end A; Clamping part

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Abstract

木发明提供一种电子装置磁吸配件,适用于一电子装置以及一固定日标物,且电于装置磁吸配件包括一磁吸件、一套接件以及一固定座。磁吸件选择性地磁吸于电子装置;套接件可拆卸地套设于固定目标物上且适于束紧并贴附于固定目标物的表面;固定座配置于套接件上且连接于磁吸件,且磁吸件适于相对于固定座固定于一笫一位置或一笫二位置。

Description

电子装置磁吸配件
【技术领域】
【0001】 木发明提供一种电子装置磁吸配件,且特别是关「一种可磁吸电 子装置并将其套设固定于 固定目标物的电子装置磁吸配件。
【先前技术】
【0002】 携带型电子装置是现今社会人们不可或缺的 日常用品之一,例如 智能手机、平板电脑、智能手表以及电子书阅读器等等 , 均带给人们生活及工作 上极大的便利。以健身运动为例,当使用者通过智能手机录制自身动作细节的视 频时, 需要腾出双手而无暇操作手机。为此, 如果有一种产品可将携带型电子装 置暂口寸固定于于壁面、器材或是 ■些物品上, 而让使用者可以腾出双手, 可以带 来极高的便利性。
【发明内容】
【0003】 然而, 当欲固定的目标物为非感磁材料时, 单纯利用磁力吸附电 子装置 与目标物的磁吸型配件将无法作用; 而粘固型的配件虽然能适用于非感 磁的固定 目标物,但在多次使用后, 配件的粘性将会减弱, 且当欲固定的目标物 具有弧形或 曲度的轮廓时, 固定形状的粘固型配件将无法顺应目标物的外形变 化而有脱落的风险 。除此之外, 目前市面上的电了装置配件仅能将电子装置固定 于单一位置,当使用者基于不同需要而需调整 电了装置的位置时,上述的配件便 无法满足使用者的需求 。
1 替换页 (细则第 26条) 【0004】 发明人遂竭其心智悉心研究,进而研发出一种可磁吸电子装置并 将其套设固定于 固定目标物的电子装置磁吸配件 , 以期达到便利使用以及稳固 地附着于不同固定 目标的功效。
【0005】 本发明提供一种电了装置磁吸配件,适用于一电了 ■装置以及一固 定目标物, 且电子装置磁吸配件包括一磁吸件、一套接件以及一固定座。磁吸件 选择性地磁吸 「电子装置; 套接件可拆卸地套设「固定目标物上且适「束紧并 贴附于固定 目标物的表面; 固定座配置于套接件上且连接于磁吸件,且磁吸件适 于相对于固定座固定于 一第一位置或一第二位置。
【0006】 在一实施方式中,上述的套接件包括一环部以及一端部, 其中环 部定义一固定通道 ,且固定目标物适于穿设于固定通道;端部连接于环部。此外, 固定座形成有一贯孔 ,端部穿设于贯孔,且固定座适于相对于端部移动以改变固 定通道的大小。
【0007】 在 ■实施方式中, 上述的固定座包括 -本体、 ■调整件、 -夹持 件以及一弹性件 。 上述的贯孔形成于本体 K;调整件配置于本体上且相对丁 •本体 突出;夹持件配置「木体上且选择性地朝贯孔 的内部突出;弹性件配置「■调整件 与夹持件之间
【0008】 在一实施方式中,上述的磁吸件连接于端部,且磁吸件与环部配 置于固定座的相异两侧 。
【0009】 在一实施方式中,上述的电子装置包括一磁吸特征,且磁吸件包 括一磁吸部 以及一调整部, 磁吸部的外形对应于磁吸特征的至少一部分且适于 磁吸于磁吸特征 , 调整部连接于磁吸部与固定座之间 R具有柔性。
2 替换页 (细则第 26条) 【0010】 在一实施方式中,上述的磁吸部为一弧形结构,且弧形结构所夹 的圆心角为 60度至 120度。
【0011】 在一实施方式中, 电子装置磁吸配件还包括一卡掣件,且卡掣件 可枢转地连接于磁吸件 。此外,上述的固定座包括一卡掣部,且卡掣件与卡掣部 选择性地彼此卡掣。
【0012】 在一实施方式中, 卜 .述卡掣件与卡掣部的其中之一形成有一嵌合 槽, 且 K掣件与 K掣部的另一者选择性地嵌设于嵌合槽。
【0013】 在一实施方式中, 上述卡掣件与卡掣部的其中之一包括一底壁, 底壁围绕嵌合槽的至少 一部分,且卡掣件与卡掣部的另一者包括一抵顶面。当抵 顶面抵接于底壁时 , 卡掣件与卡掣部彼此固定。
【0014】 在一实施方式中,上述的卡掣件适于沿卡掣部的相异二方向与卡 掣部彼此卡掣。
【0015】 在 ■实施方式中, 电子装置磁吸配件还包括 :磁吸定位件,磁吸 定位件配置 于磁吸件与卡掣件之间且选择性地使磁吸件相对于卡掣件固定。
【0016】 在一实施方式中, 电子装置磁吸配件还包括一提取件,提取件连 接于卡掣件, 且提取件与卡掣件共同环绕卡掣部。
【0017】 在一实施方式中,上述的固定座还包括二侧壁,这二侧壁相对于 套接件突出, 且卡掣部配置于这二侧壁之间。
【0018】 在一实施方式中, 上述的磁吸件可枢转地连接于固定座。
【0019】 在一实施方式中, 电了 ■装置磁吸配件还包括一枢接件,枢接件配 置于磁吸件与固定座之 间,磁吸件与固定座的其中之一形成有一滑槽, 旦枢接件 滑设于滑槽。
3 替换页 (细则第 26条) 【0020】 在一实施方式中,上述的滑槽沿一提取方向延伸,且磁吸件与固 定座的其中之一 具有一第一槽壁以及一第二槽壁 。 第一槽壁与第二槽壁围绕滑 槽的至少一部分 且配置于滑槽在提取方向上的相对两侧 , 枢接件选择性地抵接 于第一槽壁或第 二槽壁, 且第一槽壁与枢接件之间的摩擦系数相异于第二槽壁 与枢接件之间的摩擦系 数。
【0021】 在一实施方式中, 电子装置磁吸配件还包括一枢接件, 固定座包 括一挡掣部,磁吸件通过枢接件相对于固定座枢转且包 括一凸轮面,且凸轮面与 挡掣部彼此抵接。
【0022】 在一实施方式中,电子装置磁吸配件还包括一枢接件以及一提取 件,枢接件配置于磁吸件的一端上且穿设或枢接于 固定座;提取件连接于磁吸件 的另一端与固定座之间 。
【0023】 在一实施方式中,上述的固定座形成有一^ 止槽,且提取件包括 -连接部以及 ■卡止部。连接部穿设于卡止槽目 .具有柔性, 目 .连接部的 ■端配置 丁磁吸件 匕 卡 k部配置丁 ■连接部的另一端匕 且卡 k部的尺寸大丁 ■卡出槽。
【0024】 在一实施方式中, 上述的固定座枢接「套接件。
【0025】 在一实施方式中, 电子装置磁吸配件还包括一固定座定位件, 固 定座定位 件配置于固定座 与套接件之间且选择性 地使固定座相对于套 接件固 定。
【0026】 在一实施方式中,上述的磁吸件包括一基部以及一凸轮部,基部 适于承载电 了装置; 凸轮部连接于基部且包括至少一凸轮面以及一抵顶面。 此 外, 上述的固定座包括一抵顶壁, 目 .凸轮部抵接于抵顶壁。
4 替换页 (细则第 26条) 【0027】 在一实施方式中,上述的凸轮面为二个, 且抵顶面配置于凸轮面 之间。
【0028】 在一实施方式中, 电子装置磁吸配件还包括一摩固件, 摩固件可 拆卸地配置于抵顶壁上 且抵接于该凸轮部。
【0029】 在一实施方式中, 上述的固定座包括一本体以及一卡掣部, 卡掣 部适 「可动地突出「木体且抵接磁吸件。
【0030】 在一实施方式中,上述的磁吸件上形成有一 K掣槽,且 K掣槽适 于抵接卡掣部。
【0031】 在一实施方式中, 电子装置磁吸配件还包括一提取件, 提取件的 两端连接于固定座 以形成一提取通道, 且磁吸件设置于提取件。
【0032】 在一实施方式中, 上述的磁吸件埋设于提取件。
【0033】 在一实施方式中,上述的套接件包括一带体以及一粘扣特征,其 中带体适于定义 ■固定通道,粘扣特征配置于袋体的 制分上, 目 .带体的另 -部 分适于粘扣丁 •粘扣特征的不同位置以调整固定通道的大小。
【0034】 在一实施方式中,上述的套接件用「套设固定目标物的表面上形 成有一防滑特征 。
【0035】 藉此,本发明的电子装置磁吸配件可通过磁吸件将电子装置磁吸 固定于第一位置或第 二位置,并藉由套接件束紧并贴附于固定目标物的表面,不 仅可解决部分 日标物无法磁吸的问题, 同时还能稳固地附着于不同的固定 0标。
【0036】 为让本发明的上述特征和优点能更明显易懂, 下文特举实施例, 并配合所附图式作详细 说明如下。
【图式简单说明】
5 替换页 (细则第 26条) 【0037】 图 1为本发明的电子装置磁吸配件的第一实施例与一 固定目标物以及一电 子装置协同作用的立体示 意图。 图 2为图 1中的电了 •装置磁吸配件的前视示意图。 图 3为图 1中的电子装置磁吸配件的左侧视示意图。 图 4为图 2中的固定座的左侧视示意图。 图 5为木发明的电子装置磁吸配件的第二实施例与一 固定目标物协同作用 的立体示意图。 图 6为图 5中的电子装置磁吸配件的立体示意图。 图 7为图 6中的套接件与固定座的俯视示意图。 图 8为图 7沿 A-A剖面的剖视示意图。 图 9为图 6中电子装置磁吸配件的部分组件的立体示意图。 图 10为图 9中磁吸件的 :部分以透明型式呈现的立体示意图。 图 11为图 5的电子装置磁吸配件于一第一使用模式的左侧视示意图。 图 12为图 1 1沿 B-B剖面的剖视示意图。 图 13为图 5的电子装置磁吸配件于一第一使用模式的左侧视示意图。 图 14为图 13沿 C-C剖面的剖视示意图。 图 15为本发明的电子装置磁吸配件的第二实施例与一固定目标物协同作用 的立体示意图。 图 16为图 15的电了 •装置磁吸配件的立体示意图。 图 17为图 16中的固定座与枢接件的左侧视示意图。 图 18为图 17沿 D-D剖面的剖视示意图。 替换页 (细则第 26条) 图 19为图 15中的磁吸件与提取件的立体示意图。 图 20为图 15的电子装置磁吸配件于一第一使用模式的立体示意图。 图 21为图 20省略部分组件的左侧视示意图。 图 22为图 15的电子装置磁吸配件于一第二使用模式的立体示意图。 图 23为图 22省略部分组件的前视示意图。 图 24为木发明的电子装置磁吸配件的第四实施例与一固定目标物协同作用 的左侧视示意图。 图 25为图 24沿 E-E剖面的剖视示意图。 图 26为本发明的电子装置磁吸配件的第五实施例与一固定目标物协同作用 的立体示意图。 图 27为图 26中的电子装置磁吸配件的部分组件的左侧视示意图。 图 28为图 27沿 F-F剖面的剖视示意图。 图 29为图 28中的磁吸件的局部放大示意图。 图 30为图 28中的磁吸件与抵顶壁位于一第一使用位置的前视示意图。 图 31为图 28中的磁吸件与抵顶壁位「一第二使用位置的前视示意图。 图 32为本发明的电子装置磁吸配件的第六实施例与一固定目标物协同作用 的立体示意图。 图 33为图 32中的电子装置磁吸配件的左侧视示意图。 图 34为图 33的电子装置磁吸配件于一笫一使用模式时沿 G-G剖面的剖视示 意图。 图 35为图 34中圆形区域的放大示意图。 替换页 (细则第 26条) 图 36为图 33的电子装置磁吸配件于一笫二使用模式时沿 G-G剖面的剖视示 意图。 图 37为本发明的电子装置磁吸配件的第七实施例与一固定目标物协同作用 的立体示意图。 图 38为图 37中的固定座丁 •一第一使用位置的左侧视示意图。 图 39为图 38沿 H-H剖面的剖视示意图。 图 40为图 37中的固定座于一第二使用位置的左侧视示意图。 图 41为图 40沿 I-I剖面的剖视示意图。 图 42为图 37中的磁吸件的侧剖视示意图。 图 43为图 37中的磁吸件与固定座于一笫一使用模式时的剖视示意图。 图 44为图 37中的磁吸件与固定座于一第二使用模式时的剖视示意图。 图 45为本发明的电子装置磁吸配件的第八实施例的立体示意图。 图 46为图 45中的部分组件展开的立体示意图。 图 47为图 46的侧剖视示意图。
【实施方式】
【0038】 有关本发明之前述及其它技术内容、特点与功效,在以下配合参 考图式之较佳实施例 的详细说明中,将可清楚地呈现。值得一提的是, 以下实施 例所提到的方向用语 , 例如: 上、 下、 左、 右、 前或后等, 仅是参考附加图式的 方向。 因此, 使用的方向用语是用以说明, 而非对本发明加以限制。此外, 在下 列的实施例中, 相同或相似的组件将采用相同或相似的标号。
【0039】 请参考图 1至图 3 , 其中图 1为本发明的电了装置磁吸配件的第一 实施例与 -固定目标物以及 -电子装置协同作用的立体示意图, 图 2为图 1中的
8 替换页 (细则第 26条) 电子装置磁吸配 件的前视示意图, 而图 3为图 1中的电子装置磁吸配件的左侧视 示意图 o本实施例的电子装置磁吸配件 1 A适用于一固定目标物 2以及一电子装置 3, 其中固定目标物 2例如是水壶、 保温瓶、 扶手、 哑铃, 甚至是人体的头部、 手 腕或脚踝等适于暂时 固定电了装置 3的目标物,而电了装置 3例如是智能手机、平 板电脑、智能手表或电子书阅读器等可携式 电子装置,但本发明对丁 ■固定目标物 2与电子装置 3的具体形式不加以限定。 另一方面, 电子装置磁吸配件 1A包括一 磁吸件 100A、一套接件 200A以及一固定座 300A,其中磁吸件 100A可选择性地磁 吸于电子装置 3; 套接件 200A可拆卸地套设于固定目标物 2上且适于束紧并贴附 于固定 目标物 2的表面; 固定座 300A配置于套接件 200A上且连接于磁吸件 100A。
【0040】 详细而占, 磁吸件 100A可包括一磁吸部 110A以及一调整部 120A, 磁吸部 HOATTf以包含一塑胶外壳以及一埋设于塑胶外壳内的永久磁铁、 电磁铁或其它感磁 物质, 其中槊胶外壳可以采用硬质槊胶制成; 而调整部 120A 可以是包覆于软 质塑胶外被内的铁线, 在本实施例中的数量例如是两个 R配置 丁磁吸部 110A的两端。 然而, 在其它可能的实施例中, 磁吸部 110A也可以不具 备外壳或仅以皮革等物 体包覆, 有利「■使电子装置磁吸配件 1 A轻量化; 而调整 部 120A除了铁线外, 亦可选用具有形状记忆能力的镣钛合金制成, 藉此可使磁 吸件 100A维持于固定的形状。
【0041】 更进一步而言, 电子装置 3可包括一磁吸特征, 其中磁吸特征例 如是形成于 电子装置 3背侧上的 MAGSAFE介面中的磁铁阵列, 于其它实施例中 磁吸特征也可 以是贴附在电了装置 3背侧或电了装置保护壳背侧的磁吸环; 另一 方面, 磁吸部 110A的外形对应于磁吸特征的至少一部分, 在本实施例中以磁吸
9 替换页 (细则第 26条) 部 110A呈弧形结构为例, 但并不以此为限。 藉此, 当磁吸部 110A对位于电子装 置 3的磁吸特征的对应部分时, 磁吸件 100A可通过磁吸部 110A磁吸电子装置 3 , 从而使电子装置 3暂时性地固定于磁吸部 110A上。
【0042】 值得一提的是, 如图 3所示, 呈弧形结构的磁吸部 110A为一曲率 圆的一部分,且弧形结构所夹的圆心角较佳地为 60度至 120度。通过这样的配置, 可适当地减少磁吸部 110A所使用的感磁物质, 减少磁吸件 100A的重量及占据的 体积, 同时亦可确保磁吸于磁吸件 100A上的电子装置 3的连接强度, 避免因磁吸 的吸力不足而 自电子装置磁吸配件 1A上脱落。
【0043】 另一方面, 调整部 120A连接于磁吸部 110A与固定座 300A之间, 且由于调整部 120A为铁线或镣钛合金线等金属线制成, 因此同时兼具了支撑强 度及柔性。藉此, 当使用者欲通过磁吸件 100A固定电子装置 3时, 可通过手指按 压调整部 120A, 使其变形或改变其相对于固定座 300A的位置, 连带地使磁吸部 110A在 -第 "位置(例如是图 1所示的倾斜向上的位置)或 "第二位置(例如是倾
Figure imgf000012_0001
电子装置 3并使电子装置 3可维持在相对「固定座 300A不同位置的功效。
【0044】 值得一提的是, 虽然在本实施例中以调整部 120A的数量为两个 且配置于磁吸部 110A的两侧为例, 但本发明并不以此为限。 在其它可能的实施 例中, 也可以仅在磁吸部 110A的单侧配置一个调整部 120A使其呈现如同 “? ” 的形状,只要能确保磁吸于磁吸部 110A±的电子装置 3不会因重量而掉落或影响 固定目标物 2的重心即可。 此外, 上文中所提到的倾斜向上或倾斜向下的位置亦 仅为示例之用 , 只要调整部 120A可通过变形或位移而抵达的位置, 皆为本发明 的保护范围之 内。
10 替换页 (细则第 26条) 【0045】 请再次参考图 1及图 2, 本实施例的套接件 200A例如是一硅胶环 圈且包括一环部 210A以及一端部 220A, 其中环部 210A围绕并定义一固定通道, 且固定 目标物 2适于穿设于固定通道; 而端部 220A连接于环部 210A。 具体而言, 当使用者欲将 电了 ■装置 3固定于固定目标物 2上时, 可将固定目标物 2穿设于环部 210A所形成的固定通道内,并同时调整环部 210A相对丁 ■固定目标物 2的位置。当 确定环部 210A与固定目标物 2的相对位置后, 使用者可将套接件 200A束紧并贴 附于固定 目标物 2的表面, 例如是水壶的盖子上或者是壶身上, 藉此将磁吸于磁 吸件 100A上的电子装置 3固定于固定目标物 2上, 并可执行电子装置 3的本身功 能, 以满足使用者观赏、 录影、 拍摄、 游乐等各种使用需求。
【0046】 在一些可能的实施例中, 套接件 200A用于套设固定目标物 2的表 面, 即环部 210A的内侧面上形成有一防滑特征, 其中防滑特征例如是橡胶、 滚 花或是较为粗糙的织物 。通过这样的配置, 当套接件 200A柬紧于固定目标物 2的 表面后, 电子装置磁吸配件 1A较不易相对于固定目标物 2上卜'滑动。
【0047】 值得一提的是, 当套接件 200A套设于固定目标物 2上时, 磁吸件 100 A可直接作为提把使用, 亦即使用者可迎过磁吸件 100A提取套接件 200A, 连 同附着的固定 目标物 2一并携带行走, 使用上简单且方便。 除此之外, 在下文中 或其它可能的实施例 中,使用者亦可将皮带、挂绳或金属炼等提取件穿没于套接 件 200A或与套接件 200A相互连接, 并在电子装置 3磁吸于磁吸件 100A的同时通 过电子装置磁吸配件 1A通过提取件提取固定目标物 2与电子装置 3, 从而提高使 用者携带固定 目标物 2与电了装置 3的便利性。
【0048】 请一并参考图 2至图 4, 其中图 4为图 2中的固定座的左侧视示意 图。 详细而言, 本实施例的固定座 300A具有改变固定通道的大小, 从而使套接
11 替换页 (细则第 26条) 件 200A束紧于固定目标物 2的表面上的功能。 如图 4所示, 固定座 300A可包括一 本体 310A、一调整件 320A、一夹持件 330A以及一弹性件 340A,其中本体 310A例 如呈长方柱 体且形成有一贯孔 360A; 调整件 320A例如是一按钮, 配置于本体 310A上且相对于本体 310A突出; 夹持件 330A可为一半球形夹头, 在本实施例中 的数量例如是两个, 配置丁 ■本体 310A H.且相对丁 ■贯孔 360A的内部突出; 弓单性件 340A例如是一弹臂, 其数量对应「夹持件 330A的数量, 且配置「调整件 320A与 夹持件 330AZ间。史进一步而言,套接件 200A的端部 220A可穿设于贯孔 360A且 连接于磁吸件 100A的调整部 120A, 亦即磁吸件 100A与套接件 200 A的环部 210 A 可配置于固定座 300A的相异两侧。 当使用者想要将环部 210A束紧时, 可按压调 整件 320A,使得弹性件 340A变形并驱动夹持件 330A朝贯孔 360A的外侧移动,此 时贯孔 360A的截面积增大, 因此固定座 300A可沿着端部 220A的延伸方向朝环部 210A移动,从而改变固定通道的大小并使套接件 200A柬紧于固定目标物 2上;而 当套接件 200A束紧后, 使用者 M停止按压调整件 320A, 此时夹持件 330A会受到 弹性件 340A的弹力驱动并再次朝贯孔 360 A的内部突出并夹持端部 220 A的一部 分, 从而避免固定座 300A相对「端部 220A滑动。
【0049】 同理, 当使用者想要将套接件 200A自固定目标物 2上取下时, 可 使固定座 300A相对于端部 220A朝远离环部 210A的方向移动,从而扩大固定通道 而使得套接件 200A得以自固定目标物 2上卸除。值得一提的是, 虽然在本实施例 中以调整部 120A直接连接于端部 220A的一端为例, 但本发明并不以此为限。 在 其它可能的实施例 中, 调整部 120A亦可直接形成于固定座 300A上, 而端部 220A 则通过本体 310A±的贯孔 360A穿设于固定座 300A, 同样也可达到调整固定通道 的功效。
12 替换页 (细则第 26条) 【0050】 请参考图 5及图 6, 其中图 5为本发明的电子装置磁吸配件的笫二 实施例与一 固定目标物协同作用的立体示意图, 而图 6为图 5中的电子装置磁吸 配件的立体示意 图。 本实施例的电子装置磁吸配件 1B包括一磁吸件 100B、 一套 接件 200B以及一固定座 300B,其中套接件 200B适于套设于固定目标物 2上,而固 定座 300B配置丁 ■套接件 200B上且连接丁磁吸件 lOOB o 与第一实施例的电子装置 磁吸配件 1A的主要差异为: 电子装置磁吸配件 1B还包括一卡掣件 400B以及一提 取件 500Bo
【0051】 请参考图 7及图 8,其中图 7为图 6中的套接件与固定座的俯视示意 图, 而图 8为图 7沿 A-A剖面的剖视示意图。如图所示, 本实施例的套接件 200B例 如是具有弹性的乳胶套环 , 可因应固定目标物 2的外形自动加以束紧; 而固定座 300B例如是固设于套接件 200B上且包括一卡掣部 310B以及二侧壁 320B,这些侧 壁 320B相对于套接件 200B突出且彼此平行, 而卡掣部 310B例如是配置于这些侧 壁 320B之间的 〃拱形柱状结构, 目.卡掣部 310B形成有用以与卡掣件 400B彼此卡 掣的一抵顶面 312B o
【0052】 请参考图 9及图 10, 其中图 9为图 6中电子装置磁吸配件的部分组 件的立体示 意图, 而图 10为图 9中磁吸件的一部分以透明型式呈现的立体示意 图。 详细而言, 本实施例的磁吸件 100B包括一磁吸部 110B以及一基部 120B, 其 中磁吸部 110B例如是永久磁铁或其它感磁物质, 在本实施例中数量例如是四个 且两两间隔地相对配置, 且形状及配置的位置对应于电子装置 3上磁吸特征的至 少一部务 另一方面,基部 120B例如是通过射出成型的氏方柱体结构,且内部形 成有对应磁吸部 110B的空腔。 藉此, 磁吸件 100B可通过嵌设或埋设于基部 120B
13 替换页 (细则第 26条) 内部的磁吸部 110B而磁吸电子装置 3 ,达到与第一实施例中的磁吸件 100 A相同或 类似的功效。
【0053】 除此之外,本实施例的卡掣件 400B可枢转地连接于磁吸件 100B, 且卡掣件 400B用以与固定座 300B的卡掣部 310B彼此卡掣。 具体而言, 本实施例 的电子装置磁吸配件 1B还可'包括一枢接件 600B,磁吸件 100B在基部 120B一端的 两侧 上分别形成有相对「基部 120B突出的凸耳 130B, 其中凸耳 130B以及卡掣件 400B上皆形成有供枢接件 600B穿设的贯孔。 通过这样的配置, K掣件 400B可通 过枢接件 600B枢接于磁吸件 lOOBo
【0054】 值得一提的是,在一些可能的实施例中,电子装置磁吸配件 1B还 包括一磁吸定位件(未绘示),其中磁吸定位件例如是可固定枢接件 600B的定位齿 轮、 凸点或卡合槽。藉此, 当卡掣件 400B相对于磁吸件 100B枢转至特定相位时, 可操作磁吸定位件使得 磁吸件 100B相对于卡掣件 400B固定 o
【0055】 另 ■方面,提取件 500B例如是 :环形挂绳目 .具有柔性,但也可以 是其它例如皮带 、铁链或织带等适于提取的组件,本发明对此不加以限制。详细 而言, 卡掣件 400B可包括有二端部 410B, 这些端部 410BZ间形成有一嵌合槽 460Bo换言之 , 带有端部 410B的卡掣件 400B自侧面观之呈现 “U”形, 且提取件 500B的两端分别连接于卡掣件 400B的端部 410B上,从而使得提取件 500B与卡掣 件 400B共同环绕固定座 300B的卡掣部 310B。
【0056】 请参考图 11及图 12, 其中图 11为图 5的电子装置磁吸配件于一笫 一使用模式的左侧视示 意图, 而图 12为图 11沿 B-B剖面的剖视示意图。 当使用者 欲通过电了装置磁吸配 件 1B直接提取固定目标物 2时,可将卡掣件 400B自卡掣部 310B的 卜方与卡掣部 310B相瓦卡掣,此时卡掣部 310B的两侧将与嵌合槽 460B的 14 替换页 (细则第 26条) 两侧壁 464B相互抵接, 从而使卡掣件 400B相对于固定座 300B固定于一笫一位 置。换言之, 由于套接件 200B、 固定座 300B、卡掣件 400B以及固定目标物 2皆彼 此固定, 因此使用者可通过提取件 500B直接提取卡掣件 400B, 并连带一并提取 固定 目标物 2, 达到轻松携带固定目标物 2的功效。
【0057】 在一些可能的实施例中, 嵌合槽 460B的两侧壁 464B上町配置有 增加摩擦力的滚花 , 使得卡掣部 310B与嵌合槽 460B彼此固定后不易相对移动。 又或者,嵌合槽 460B可形成上宽下窄的 V形结构,如此一来可使 K ■掣部 310B随着 进入嵌合槽 460B的深度愈深, 两者彼此嵌合干涉的力量愈强, 从而更进一步强 化两者间的嵌合关系 。
【0058】 请参考图 13及图 14, 其中图 13为图 5的电子装置磁吸配件于一笫 二使用模式的左侧视示 意图, 而图 14为图 13沿 C-C剖面的剖视示意图。 当使用者 欲通过电子装置磁 吸配件 1B将电子装置 3磁吸固定于固定目标物 2上时, 可将卡 掣件 400B自卡掣部 310B的上方与卡掣部 310相瓦卡掣, 此口寸除了卡掣部 310B的 两侧与嵌合槽 460B的两侧壁 464B相互抵接之外, 卡掣部 310B也会逐渐进入嵌合 槽 460B的最深处, 直到卡掣部 310B的抵顶面 312B抵接「嵌合槽 460B的一底壁 462B, 使得卡掣件 400B与卡掣部 310B彼此完全固定。 此时, 使用者可调整磁吸 件 100B相对于卡掣件 400B的枢转角度,再将电子装置 3磁吸于磁吸件 100B上,即 可暂时性地将 电子装置 3固定于固定日标物 2上。
【0059】 值得一提的是, 除了可利用上述的磁吸定位件固定磁吸件 100B 相对于卡掣件 400B的位置之外, 在一些可能的实施例中, 固定目标物 2上亦可形 成有对应于磁吸 部 110B的磁吸特征 22 , 其中磁吸特征 22例如是环绕于固定目标 物 2圆周方向上的铁环。 通过这样的配置, 当卡掣件 400B固定于卡掣部 310B后,
15 替换页 (细则第 26条) 磁吸件 100B可枢转并抵靠于固定目标物 2的表面,并通过磁吸部 110B与磁吸特征 22之间的相互磁吸作用使得 磁吸件 100B稳固地维持于第二位置上, 进一步强化 电子装置 3磁吸时的稳定性。同时, 由于卡掣件 400B与提取件 500B维持环绕着卡 掣部 310B, 因此使用者通过握持提取件 500B, 即可防止固定目标物 2自电了装置 磁吸配件 1B上脱落, 进而减少固定目标物 2碰撞受损的风险。
【0060】 乂或者, 在固定目标物 2卜.可形成有容置磁吸件 100B至少一部分 的凹槽。 藉此, 当磁吸件 100B磁吸电子装置 3的同时可容置于上述的凹槽内, 可 避免磁吸件 100B相对于固定目标物 2枢转或移动。
【0061】 除此之外, 虽然在本实施例中以卡掣部 310B的上表面形成有抵 顶面 312B,而卡掣件 400B沿卡掣部 310B的上下两方向与卡掣部 310B彼此卡掣以 实现不同用途为例 ,但本发明并不限定于此。举例而言,在其它可能的实施例中, 卡掣部 310B亦可在上下两方向皆形成有对应于底壁 462B的抵顶面 312B, 藉此, 无论卡掣件 400B沿着上方或卜 '方与卡掣部 310B彼此卡掣, 皆可通过 312B与底壁 462B的抵接而使得卡掣件 400B与卡掣部 310B完全固定。
【0062】 另外,虽然在上文中解释第一使用模式时以使用者欲迎过电子装 置磁吸配件 1B提取固定目标物 2做为说明, 但本发明亦不限定于此。在其它可能 的实施例中, 电子装置磁吸配件 1B亦可不只备提取件 500B, 而是单纯地通过卡 掣件 400B将磁吸件 100B暂时性地卡掣固定于固定座 300B上, 使得电子装置磁吸 配件 1B便于通过固定目标物 2携带。更进一步而言, 虽然在本实施例中以卡掣件 400B与提取件 500B共同环绕卡掣部 310B为例, 但在其它可能的实施例中, 卡掣 部 310B亦可为仅连接于其中一侧壁 320B的柱状构件, 而在卡掣部 310B与另一侧 壁 320B之间形成有 -间隙。 藉此, 使用者可将提取件 500B白卡掣部 310B与侧壁
16 替换页 (细则第 26条) 320B之间的间隙中脱出, 而将磁吸件 100B、卡掣件 400B与提取件 500B自固定目 标物 2上脱离。
【0063】 请参考图 15及图 16,其中图 15为本发明的电子装置磁吸配件的第 三实施例与一 固定目标物协同作用的立体示意 图, 而图 16为图 15的电了装置磁 吸配件的立体示意 图。 本实施例的电子装置磁吸配件 1C与第二实施例的电子装 置磁吸配件 1B大致相似, 包括一磁吸件 100C、 一套接件 200C、 一固定座 300C、 一提取件 500C以及一枢接件 600Co 两者主要的差异在于: 电子装置磁吸配件 1 C 不只备卡掣件, 且磁吸件 100C可枢转地连接于固定座 300C。
【0064】 请参考图 17及图 18,其中图 17为图 16中的固定座与枢接件的左侧 视示意图, 而图 18为图 17沿 D-D剖面的剖视示意图。详细而占, 本实施例的固定 座 300C包括一本体 310C以及一枢接部 320C,其中本体 310C相对于套接件 200C固 定, 而枢接部 320C枢接于本体 310C且用以与磁吸件 100B相互枢转。 更进一步而 言, 屯子装置配件 1C还可 '包括 ■固定座定位件(未绘示),其中固定座定位件例如 是一定位齿轮且配置 丁 •本体 310C与枢接部 320C之间。 通过这样的配置, 枢接部 320C可相对「木体 310C枢转, 并在枢转到特定位置后相对「木体 310C固定, 从 而改变电子装置 3相对于固定目标物 2的位置或方位。然而,在其它可能的实施例 中, 亦可将固定座定位件配置于 固定座 300C与套接件 200C之间, 亦即以本体 310C枢接于套接件 200C上,而枢接部 320C相对于本体 310C固定的方式实现固定 座 300C的枢转, 本发明对此不加以限制。
【0065】 除此之外,如图 17及图 18所示,枢接部 320C上可分别形成有一滑 槽 360C, 目.枢接件 600C滑设于滑槽 360Co 更进一步而言, 滑槽 360C沿一提取方 向延伸,在本实施例中提取方向例如是 图 18中的上卜 '方向,但本发明并不以此为 17 替换页 (细则第 26条) 限,在其它的实施例中,滑槽 360C亦可沿斜向延伸或呈弧形。此外,枢接部 320C 具有一第一槽壁 362C以及一第二槽壁 364C,其中第一槽壁 362C与第二槽壁 364C 围绕滑槽 360C的至少一部分,且分别配置于滑槽 360C在提取方向上的相对两侧, 在本实施例中 以第一槽壁 362C作为滑槽 360C的上端孔壁, 而第二槽壁 364C作为 滑槽 360C的卜'端孔壁为例。 在本实施例中, 第一槽壁 362C与枢接件 600C之间的 摩擦系数相异 「第二槽壁 364C与枢接件 600CZ间的摩擦系数, 在木实施例中以 第一槽壁 362C与枢接件 600CZ间的摩擦系数小于第二槽壁 364C与枢接件 600C 之间的摩擦系数为例 。 通过这样的配置, 当枢接件 600C沿着提取方向分别与第 一槽壁 362C或第二槽壁 364C相互抵接时, 由于两者间具有不同的摩擦系数, 可 调整枢接件 600C相对于固定座 300C枢转的难易度。
【0066】 另一方面, 枢接部 320C还可包括一挡掣部 322C, 用以与磁吸件 100C彼此挡掣, 从而改变磁吸件 100C在不同枢转相位与固定犀 300C之间的相对 位置。 在 ■些可能的实施例中, 挡掣部 322C与本体 310C之间还形成有 ■卡止槽 326C, 可用以与提取件 500C彼此卡掣。
【0067】 请参考图 19, 图 19为图 15中的磁吸件与提取件的立体示意图。木 实施例的磁吸件 100C例如是一长方片状结构,与第一实施例的磁吸件 100B类似, 磁吸件 100C包括一基部 120C以及埋设于基部 120C内的磁吸部(未绘示), 在基部 120C的表面上可形成有至少一指示特征 122C, 其中指示特征 122C例如是一弧形 花纹且对应于埋设 磁吸部的位置。 藉此, 使用者可通过指示特征 122C确认磁吸 部的位置, 从而将电了装置 3迅速且正确地对位于磁吸件 lOOCo 除此之外, 磁吸 件 100C还可形成有一凸轮面 130C,其中凸轮面 130C例如是配置于磁吸件 100C的
18 替换页 (细则第 26条) 一端, 用以与挡掣部 322C彼此挡掣, 且基部 120C在配置凸轮面 130C的一端上形 成有一枢接孔 160C, 用以提供枢接件 600C穿设。
【0068】 除此之外, 基部 120C在相对于枢接孔 160C的一端上可形成有一 穿孔 170C, 而提取件 500C包括一连接部 510C以及一^ 止部 520C, 其中连接部 510C具有柔性, 一端穿设丁穿孔 170C从而与磁吸件 100C相互固定, 而卡出部 520C则配置「连接部 510C的另一端 H., 且卡止部 520C的尺寸大「卡 k槽 326C。
【0069】 请参考图 20至图 23 ,其中图 20为图 15的电子装置磁吸配件于一第 一使用模式的立体示意 图,图 21为图 20省略部分组件的左侧视示意图,图 22为图 15的电子装置磁吸配件于一第 二使用模式的立体示意图, 而图 23为图 22省略部 分组件的前视示意 图。 以下将针对本实施例的电子装置磁吸配件 1C的使用原理 进行详尽的说 明, 首先, 先介绍电子装置磁吸配件 1C的组成组件配置关系, 连 接部 510C穿设于卡止槽 326C,可使得卡止部 520C受到卡止槽 326C的挡掣而留置 于卡止槽 326C的卜端, 而连接部 510C的另 :端则在卡止槽 326C的上方穿过穿孔 170C从而与磁吸件 100C彼此固定。枢接件 600C同时穿设丁磁吸件 100C的枢接孔 160C以及枢接部 320C的滑槽 360C, 使得凸轮面 130C与挡掣部 322C彼此抵接。
【0070】 其中, 使用者可将先套接件 200C及配置于套接件 200C上的固定 座 300C安装至固定目标物 2的适当位置上。 而当使用者欲磁吸电子装置 3时, 可 如图 21所示将固定座 300C连同磁吸件 100C枢转至水平相位,再将电子装置 3磁吸 固定于磁吸件 100C上。 藉此, 使用者不仅可通过固定座 300C的枢转改变电子装 置 3在图 21的图面中的枢转相位,还可使磁吸件 100C通过枢接件 600C相对 ■于滑槽 360C的滑动, 小幅度地调整磁吸件 100C与固定座 300C的相对位置, 更甚者还能 再利用枢接件 600C的枢转改变磁吸件 100C的倾斜角度。 换言之, 本实施例的电 19 替换页 (细则第 26条) 子装置 3具有三种不同的运动自由度, 无论在一般使用或拍摄录影上皆有着极高 的便利性。
【0071】 另一方面, 当使用者欲将电子装置 3稳定地固定于特定位置或角 度,又或者欲通过电了装置磁吸配件 1C提取固定目标物 2时,可将固定座 300C枢 转至如图 23所示的铅直向上方位。 当电子装置 3承载于磁吸件 100C H.时, 磁吸件 100C以及嵌设 「枢接孔 160C内的枢接件 600C将受到电子装置 3的重量相对「固 定座 300C向下滑动, 从而使枢接件 600C抵接于摩擦力较大的第二槽壁 364C, 增 加枢接件 600C相对于固定座 300C枢转的摩擦阻力。 换言之, 通过将滑槽 360C中 第一槽壁 362C与第二槽壁 364C和枢接件 600C之间的摩擦系数设定为不同, 可因 应电子装置 3的承载而自动调整枢接件 600C与固定座 300C之间的摩擦力,强化电 子装置 3磁吸及使用时的稳定度。
【0072】 值得一提的是, 虽然在本实施例中以磁吸件 100C与枢接件 600C 同步移动及转动 , 旦滑槽 360C形成于固定座 360C上为例, 但本发明对此不加以
Figure imgf000022_0001
与固定座 300C相对固定(例如固定座 300C与枢接件 600C为一体成型), 此时磁吸 件 100C的滑槽上端槽壁将对应地配置为高摩擦力系数的壁面, 而下端槽壁则配 置为低摩擦系数的壁面 , 也可达到相同的效果。
【0073】 除此之外, 由于连接部 510C的一端穿设于穿孔 170C, 而配置于 连接部 510C另一端的卡止部 520C在通过提取件 500C提取时亦将与卡止槽 326C 彼此卡掣, 因此可确保提取件 500C与磁吸件 100C以及固定犀 300C的连接关系, 避免固定 目标物 2意外脱落。 而在其它一些可能的实施例中, 电了 ■装置磁吸配件 1C亦 M不具备提取件 500C,而单纯依靠磁吸件 100C磁吸电子装置 3,在这种情况 20 替换页 (细则第 26条) 下, 由于磁吸件 100C的上端并未受到连接部 510C与卡止部 520C的限位, 因此可 枢转的角度更大, 从而可提供更多样的磁吸位置。
【0074】 请参考图 24及图 25,其中图 24为本发明的电子装置磁吸配件的第 四实施例与一固定 目标物协同作用的左侧视示意图, 而图 25为图 24沿 E-E剖面的 剖视示意图。 本实施例的电子装置磁吸配件 1D与第三实施例的电子装置磁吸配 件 1C大致相似, 包括一磁吸件 100D、一套接件 200D、一固定座 300D以及一提取 件 500D。 两者主要的差异在于: 套接件 200D为可释放的开放式结构。
【0075】 如图所示, 套接件 200D例如是一皮带或一织带且只有相对的两 端部,其中一端部上配置有复数个定位孔,而另一端部上则配置有可穿设于其 中 一定位孔 的定位件(例如是插销)。 另一方面, 固定座 300D上可形成有一穿孔 370D, 通过这样的配置, 使用者可将套接件 200D穿设于穿孔 370D从而将固定座 300D固定于固定 目标物 2上的特定位置后, 再将套接件 200D其中一端部上的定 位件穿设于定位孔 中的其中之 -,从而达到将套接件 200D相对于固定目标物 2束 紧的效果。然而,在其它可 '能的实施例中,套接件 200D也可以不配置定位孔,而 迎过其它的固定结构 改变固定迎道的大小。 举例而言, 套接件 200D可包括一带 体以及一粘扣特征 , 其中粘扣特征例如是魔鬼毡且配置于带体上的相异两部分。 当带体相对于固定 目标物 2束紧后, 带体其中一部分的粘扣特征可粘扣于带体另 一部分的粘扣特征 , 并藉由改变粘扣位置进而调整固定通道的大小。
【0076】 另一方面, 本实施例的磁吸件 100D可直接枢接于固定座 300Do 具体而言, 如图 24所示, 磁吸件 100D的下端以及固定座 300D上可分别形成彼此 吻合的爪部。 通过这样的配置, 磁吸件 100D可相对于固定座 300D自由地枢转至
21 替换页 (细则第 26条) 特定的相位,并通过定位齿轮或凸点等方式加 以固定,同样也能达到将电子装置
3磁吸固定于固定 目标物 2的功效。
【0077】 请参考图 26及图 27,其中图 26为本发明的电子装置磁吸配件的第 五实施例与一 固定目标物协同作用的立体示意 图, 而图 27为图 26中的电了 ■装置 磁吸配件的部分组 件的左侧视示意图。 本实施例的电子装置磁吸配件 1E与第四 实施例的电子装置磁吸 配件 1D大致相似, 包括一磁吸件 100E、 一套接件 200E、 一固定座 300E、 一提取件 500E以及一枢接件 600E。 两者主要的差异在于: 磁吸 件 100E通过凸轮选择性地与固定座 300E形成紧配干涉。
【0078】 请一并参考图 27至图 29, 其中图 28为图 27沿 F-F剖面的剖视示意 图,而图 29为图 28中的磁吸件的局部放大示意图。详细而占,本实施例的磁吸件 100E包括一磁吸部 110E、 一基部 120E以及一凸轮部 130E, 其中磁吸部 110E埋设 或嵌设于基部 120E, 而凸轮部 130E连接于基部 120E的一端上。 较佳地, 磁吸件 100E还包括 ’承载部 140E,其中承载部 140E例如是具有较高摩擦力的止滑结构, 配置于基部 120E H.并覆盖磁吸部 HOEo通过这样的配置, 可'减少电子装置 3磁吸 「磁吸件 100E时相对「磁吸件 100E滑动的机率。
【0079】 更进一步而言, 凸轮部 130E包括至少一凸轮面以及一抵顶面,在 本实施例中以凸轮部 130E包括一第一凸轮面 132E、 一第二凸轮面 134E以及一抵 顶面 136E, 且抵顶面 136E配置于第一凸轮面 132E与第二凸轮面 134E之间为例, 但本发明并不 以此为限, 依据实际需要的转动干涉行程, 亦可选择仅在抵顶面 136E的一侧上配置凸轮面。 具体而言, 第一凸轮面 132E与第二凸轮面 134E皆具 有变化的曲率 , 而抵顶面 136E则例如是一平面, 目.凸轮部 130E形成有一枢接孔 138Eo 通过这样的配置, 当磁吸件 100E通过凸轮部 130E以及枢接件 600E枢接于 22 替换页 (细则第 26条) 固定座 300E时, 依据凸轮部 130E的枢转相位将会改变磁吸件 100E与固定座 300E 之间的紧配干涉程度 。
【0080】 另一方面, 固定座 300E可包括一本体 310E以及二凸耳 320E, 其 中本体 310E可包括一抵顶壁 312E, 凸耳 320E分别位于本体 310E的两侧, 且凸轮 部 130E抵接于抵顶壁 312E且位丁 ■二凸耳 320E之间。 在一些可能的实施例中, 电 子装置磁吸配件 1E还可包括一摩固件, 其中摩固件例如是具有高摩擦力的耗材 且可拆卸地配置于抵顶 壁 312E上且抵接于凸轮部 130E。 藉此, 当凸轮部 130E相 对于抵顶壁 312E枢转至不同相位时, 摩固件可强化磁吸件 100E与固定座 300E之 间的干涉,且在摩固件磨耗导致两者紧配能力下 降后,使用者亦可将摩固件进行 替换, 从而维持电子装置磁吸配件 1E的固定能力。
【0081】 请参考图 30及图 31 ,其中图 30为图 28中的磁吸件与抵顶壁位于一 第一使用位置 的前视示意图, 而图 31为图 28中的磁吸件与抵顶壁位于一第二使 用位置的前视示意 图。 当凸轮部 130E以第 :凸轮面 132E、 抵顶面 136E与第二凸 轮面 134E分别抵接丁抵顶壁 312E的过程中, 凸轮部 130E会持续与抵顶壁 312E保 持干涉配合。 具体而言, 当凸轮部 130E以第一凹轮面 132E或第二凸轮面 134E朝 向抵顶壁 312E时, 由于第一凸轮面 132E与第二凸轮面 134E的曲率较大, 因此磁 吸件 100E可较为自由地相对于固定座 300E枢转, 从而有利于使用者以任何角度 通过提取件 500E提取固定日标物 2。相对地, 当凸轮部 130E以抵顶面 136E抵接于 抵顶壁 312E时, 由于枢接孔 138E与抵顶面 136E之间的中心距较大, 且抵顶面 136E的曲率较小, 因此抵顶面 136E与抵顶壁 312E之间将会形成摩擦干涉, 从而 使磁吸件 100E相对于固定座 300E维持在固定位置,进而确保电了装置 3能稳固地 磁吸固定于固定 目标物 2上。
23 替换页 (细则第 26条) 【0082】 请参考图 32及图 33 ,其中图 32为本发明的电子装置磁吸配件的笫 六实施例与一 固定目标物协同作用的立体示意图, 而图 33为图 32中的电子装置 磁吸配件的左侧视示意 图。本实施例的电子装置磁吸配件 1F包括一磁吸件 100F、 一套接件 200F、 一固定座 300F以及一提取件 500F, 与上述实施例的电子装置磁 吸配件的主要差异在 于: 电子装置磁吸配件 1F的固定座 300F包括一卡掣部 320F, 且磁吸件 100F与卡掣部 310F选择性地彼此卡掣。
【0083】 请参考图 34至图 36,其中图 34为图 33的电子装置磁吸配件于一第 一使用模式时沿 G-G剖面的剖视示意图, 图 35为图 34中圆形区域的放大示意图, 而图 36为图 33的电子装置磁吸配件于一第二使用模式时沿 G-G剖面的剖视示意 图。详细而占,本实施例的磁吸件 100F包括一磁吸部 110F、一基部 120F以及一承 载部 140F,其中磁吸部 110F埋设或嵌设于基部 120F,承载部 140F配置于基部 120F 上且覆盖磁吸部 110F。较佳地,基部 120F上形成有一穿设部 126F,且在基部 120F 相对于承载部 140F的另 ■侧上形成有 ’卡掣槽 180Fo 换言之, 承载部 140F与卡 掣槽 180F配置于基部 120F的相对两侧, 在本实施例中穿设部 126F例如是贯穿基 部 120F的一长槽, 而卡掣槽 180F则例如是一凹槽。
【0084】 另一方面,固定座 300F可包括一本体 310F、一^ 掣部 320F以及一 卡掣部枢接件 330F, 其中卡掣部 320F例如是一悬臂结构, 而卡掣部枢接件 330F 例如是一定位销 , 且卡掣部 320F通过卡掣部枢接件 330F枢接于本体 310F。 除此 之外, 提取件 500F的一端连接于固定座 300F的上端, 而提取件 500F的另一端则 穿设于穿设部 126F从而连接于固定座 300F的下端。 通过这样的配置, 当电了装 置磁吸配件 1F处于如图 34所示的第一使用模式时, 使用者可从固定座 300F的上 端通过提取件 500F以及套接件 200F提取固定目标物 2 , 目 .由于磁吸件 100F并未受
24 替换页 (细则第 26条) 到任何组件 的干涉, 因此磁吸件 100F以及固定日标物 2可自由地相对于提取件
500F偏摆至第一位置。
【0085】 而当使用者欲通过电子装置磁吸配件 1F将电子装置 3磁吸固定于 固定目标物 2上时, 可将卡掣部 320F枢转至如图 36所示的水平状态并相对 •于本体 310F突出, 使得卡掣部 320F与卡掣槽 180F彼此卡掣。藉此, 如图 36所示,在磁吸 件 100F以及电子装置 3(图未示)的重力作用下, 卡掣槽 180F将被斥抵「卡掣部 320F上, 从而使磁吸件 100F受到 K掣部 320F的限位并维持于倾斜姿态的第二位 置, 进而达到实质调整磁吸状态下电子装置 3的使用或观赏角度的效果。
【0086】 请参考图 37至图 41 ,其中图 37为本发明的电子装置磁吸配件的第 七实施例与一 固定目标物协同作用的立体示意 图, 图 38为图 37中的固定座于一 第一使用位置的左侧视 示意图, 图 39为图 38沿 H-H剖面的剖视示意图, 图 40为图 37中的固定座于一第二使用位 置的左侧视示意图, 而图 41为图 40沿 剖面的剖 视示意图。 本实施例的电子装置磁吸配件 1G与第六实施例的电子装置磁吸配件 1F大致相似, 包括一磁吸件 100G、 一套接件 200G、 一固定座 300G以及一提取件 500G。 两者主要的差异在「: 电子装置磁吸配件 1G的卡掣部 320G滑设「木体 310G-
【0087】 如图 38及图 39所示, 本实施例的固定座 300G包括一本体 310G以 及一卡掣部 320G, 其中本体 310G形成有一滑槽 316G, 卡掣部 320G滑设于滑槽 316G且包括一卡掣端 322Go通过这样的配置, 卡掣部 320G可如图 37及图 38所示 位于滑槽 316G中央的一第一位置, 或是如图 39及图 40所示位于滑槽 316G底部的 一第二位置。较佳地,滑槽 316G的侧壁与卡掣部 320G之间具有较高的摩擦系数, 从而使卡掣部 320G滑动到滑槽 316G±的任意位置时能保持几近固定的状态, 但 25 替换页 (细则第 26条) 在其它可能的实施例 中, 亦可通过定位件或段差等方式预先设定卡掣部 320G可 于滑槽 316G上滑动的特定位置, 本发明对此不加以限制。
【0088】 请参考图 42, 图 42为图 37中的磁吸件的侧剖视示意图。与磁吸件 100F相似, 本实施例的磁吸件 100G包括一磁吸部 110G、一基部 120G以及一承载 部 140G,其中基部 120G形成有一穿设部 126G,且基部 120G相对于承载部 140G的 一面 上形成有一^ 掣槽 180G, 换言之, 承载部 140G与卡掣槽 180G配置「基部 120G的相对两侧。与磁吸件 100F的主要差异在于, K掣槽 180G沿着基部 120G的 延伸方向延伸, 且卡掣槽 180G的槽深呈渐变关系。
【0089】 请参考图 43及图 44,其中图 43为图 37中的磁吸件与固定座于一第 一使用模式时 的剖视示意图, 而图 44为图 37中的磁吸件与固定座于一第二使用 模式时的剖视示意 图。 当使用者如图 43所示将卡掣部 320G移动至第一位置时, 卡掣端 322G卡掣于卡掣槽 180G的特定位置,在本实施例中以卡掣端 322G此时对 应于卡掣槽 180G的较浅槽深为例, 因此磁吸件 100G与固定座 300G之间的十涉较 小; 而当使用者如图 44所示将卡掣部 320G移动至第二位置时, 卡掣端 322G将对 应 「卡掣槽 180G的较深槽深,此时磁吸件 100G与固定座 300GZ间具有较大的干 涉而彼此固定,因此可提供磁吸于磁吸件 100G上的电子装置 3较为稳固的固定能 力。 但在其它可能的实施例中, 卡掣槽 180G的槽深亦可维持固定, 而仅通过移 动卡掣部 320G的位置改变磁吸件 100G的倾斜角度, 本发明对此不加以限制。
【0090】 值得一提的是,笫六实施例的电子装置磁吸配件 1F与第七实施例 的电了装置磁吸配件 1G的卡掣部可彼此结合, 亦即卡掣部可同时相对于本体滑 动, 目 .当滑动至特定位置时亦可再相对于本体枢转并突出。藉此,可当卡掣部未
26 替换页 (细则第 26条) 枢转突出时提供 磁吸件更大的枢转自由度, 且卡掣部与磁吸件之间的卡掣位置 亦获得更大的弹性 。
【0091】 请参考图 45至图 47,其中图 45为本发明的电子装置磁吸配件的第 八实施例的立体示意 图,图 46为图 45中的部分组件展开的立体示意图,而图 47为 图 46的侧剖视示意图。 本实施例的电子装置磁吸配件 1H与第六实施例的电子装 置磁吸配件 1F大致相似, 包括一磁吸件 100H、 一套接件 200H、 一固定座 300H以 及一提取件 500H。两者的主要差异在于: 电子装置磁吸配件 1H的磁吸件 100H埋 设于提取件 500H。
【0092】 如图 45所示, 磁吸件 100H包括一磁吸部 110H以及一基部 120H, 其中磁吸部 110H例如是对应于电子装置 3的磁吸特征的弧形磁铁, 而基部 120H 则呈一圆盘状且在上 下两端形成有用以嵌合磁吸部 110H的凹槽。 除此之外, 提 取件 500H例如是以较厚且具有高摩擦力的织布或皮革所形成, 且磁吸件 lOOHffl 设于提取件 500H内。具体而言,提取件 500H M为复数层的织布或皮革迭合而成, 各层之间具有粘性 , 且通过彼此贴合的方式将磁吸件 100H包覆于其中。 通过这 样的配置, 不仅无需在提取件 500H以外占据特定的外形, 且可依据需求自由调 整磁吸件 100H的位置或型式, 大幅提高电子装置磁吸配件 1H的使用弹性。
【0093】 另一方面, 固定座 300H包括一本体 310H、 一^ 掣部 320H以及一 卡掣部枢接件 330H,且卡掣部 320H通过卡掣部枢接件 330H枢接于本体 310H。藉 此, 当使用者欲通过磁吸件 100H将电子装置 3固定于固定日标物 2上时, 可将卡 掣部 320H相对于本体 310H枢转突出,并与理设于提取件 500H内部的磁吸件 100H 彼此卡掣, 从而提高电了 •装置 3磁吸时的稳定性。
27 替换页 (细则第 26条) 【0094】 本发明在上文中巳以较佳实施方式揭露,然熟习本项技术者应理 解的是,上述实施方式仅用于描述本发 明,而不应解读为限制本发明之范围。且 应注意的是,举凡与上述实施方式等效之变化与置 换,均应视为涵盖于本发明之 范畤内,在不产生概念矛盾或结构性冲突的前提下 ,上述各实施例的技术特征可 适当结合、置换、省略及变更。 因此, 本发明之保护范围当以申请专利范围所界 定者为准。
【符号说明】
【0095】
1A-1H: 电子装置磁吸配件
100A-100G: 磁吸件
110A-110B、 110D-110H: 磁吸部
120A: 调整部
120B-120H: 基部
122C: 指示特征
126F、 126G: 穿设部
130B: 凸耳
130C: 凸轮面
130E: 凸轮部
132E: 第一凸轮面
134E: 第二凸轮面
136E: 抵顶面
138E: 枢接孔
28 替换页 (细则第 26条) D-140G: 承载部 C : 枢接孔 C : 穿孔 F、 180G: 卡掣槽 A-200H: 套接件 A : 环部 A : 端部 A-300H: 固定座 A 、 310C、 310E-310H: 本体 B: 卡掣部 B: 抵顶面 E: 抵顶壁 G : 滑槽 A : 调整件 B: 侧壁 C: 枢接部 C: 挡掣部 C: 卡止槽 E: 凸耳 F、 320G、 320H: 卡掣部 G: 卡掣端 A; 夹持件
29 替换页 (细则第 26条) 330F、 330H: 卡掣部枢接件
340A: 弹性件
360A: 贯孔
360C: 滑槽
362C: 第一槽壁
364C: 第二槽壁
370D: 穿孔
400B: 卡掣件
410B: 端部
460B: 嵌合槽
462B: 底壁
464B: 侧壁
500B-500H: 提取件
510C: 连接部
520C: 卡止部
600B-600C、 600E: 枢接件
2: 固定目标物
22: 磁吸特征
3: 电子装置
A-A、 B-B、 C-C、 D-D、 E-E、 F-F、 G-G、 H-H、 1-1: 剖面
30 替换页 (细则第 26条)

Claims

权 利要求书 、 一种电子装置磁吸配件,适用于一电子装置以及一固定目标物, 该电子装置磁吸配 件包括: 一磁吸件 , 选择性地磁吸于该电了装置; 一套接件 , 可拆卸地套设丁 ■该固定 H标物上且适丁束紧并贴附 「该固定目标物的表面; 以及 、 一固定座, 配置于该套接件上且连接于该磁吸件, 且该磁吸件 适于相对于该固定座固定于一第一位置或一第二位 置。 如请求项 1所述的电子装置磁吸配件, 其中该套接件包括: 一环部 , 定义一固定通道, 且该固定目标物适于穿设于该固定 通道; 以及 一端部, 连接于该环部; 其中, 该固定座形成有 ■贯孔, 该端部穿设于该贯孔, 目. 该固定座适 丁 •相对于该端部移动以改变该固定通道的大小。
3、 如请求项 2所述的电子装置磁吸配件, 其中该固定座包括: 一本体, 其中该贯孔形成于该本体上; 一调整件 , 配置于该本体上且相对于该本体突出; 一夹持件 , 配置于该本体上且选择性地朝该贯孔的内部突出; 以及 一弹性件 , 配置于该调整件与该夹持件之间。
4、 如请求项 2所述的电了装置磁吸配件,其中该磁吸件连接于该端 部, 目.该磁吸件与该环部配置于该固定座的相异两侧。
31 替换页 (细则第 26条) 5、 如 请求项 1所述的电子装置磁吸配件,其中该电子装置包括一磁 吸特征, 且该磁吸件包括一磁吸部以及一调整部, 该磁吸部的 外形对应 于该磁吸特征的至 少一部分且适于磁 吸于该磁吸特 征, 该调整部连接于该磁吸部与该固定座之间且具有柔性。
6、 如请 求项 5所述的电子装置磁吸配件,其中该磁吸部为一弧形结 构, 且该弧形结构所夹的圆心角为 60度至 120度。
7、 如请 求项 1所述的电子装置磁吸配件, 还包括: 一卡掣件, 可枢转地连接于该磁吸件; 其中, 该固定座包括一卡掣部, 且该卡掣件与该卡掣部选 择性地彼此卡掣 。
8、 如请 求项 7所述的电子装置磁吸配件,其中该卡掣件与该卡掣部 的其中之一形成有 一嵌合槽, 且该卡掣件与该卡掣部的另一者 选择性地嵌设于该嵌合 槽。
9、 如请 求项 8所述的电子装置磁吸配件,其中该卡掣件与该卡掣部 的其中之一包括 一底壁, 该底壁围绕该嵌合槽的至少一部分, 且该卡掣件 与该卡掣部的该另一者包括一抵顶面, 当该抵顶面 抵接于该底壁时 , 该卡掣件与该卡掣部彼此固定。
10、 如请求项 7所述的电子装置磁吸配件, 其中该卡掣件适于沿该 卡掣部的相异二方向与该卡 掣部彼此卡掣。
TK 如请求项 7所述的电了装置磁吸配件, 还包括一磁吸定位件, 该磁吸定位件 配置于该磁吸件与该卡掣件之 间目 .选择性地使 该磁吸件相对于该卡掣件固定 。
32 替换页 (细则第 26条) 、 如请求项 7所述的电子装置磁吸配件, 还包括一提取件, 该提 取件连接于该卡掣件,且该提取件与该卡掣件共同环绕该卡掣 部。 、 如请求项 7所述的电了装置磁吸配件, 其中该固定座还包括二 侧壁, 该二侧壁相对丁该套接件突出, 且该卡掣部配置丁 •该二 侧壁之间。 、 如请求项 1所述的电子装置磁吸配件, 其中该磁吸件可枢转地 连接于该固定座。 、 如清求项 14所述的电子装置磁吸配件, 还包括一枢接件, 该枢 接件配置于该磁吸件与该固定座之间,该磁吸件与该固定座的 其中之一形成有一滑槽, 且该枢接件滑设于该滑槽。 、 如请求项 15所述的电子装置磁吸配件,其中该滑槽沿一提取方 向延伸, 旦该磁吸件与该固定座的该其中之 :具有 ■第 -槽壁 以及一第二槽壁,该第一槽壁与该第二槽壁围绕该滑槽的至少 一部分且配置「该滑槽在该提取方向上的相对 两侧,该枢接件 选择性地抵接于该第一槽壁或该第一槽壁 ,且该第一槽壁%该 枢接件之间的摩擦系数 相异于该第二槽壁 与该枢接件之间的 摩擦系数。 7、 如请求项 14所述的电子装置磁吸配件, 还包括一枢接件, 该固 定犀包括一挡掣部,该磁吸件通过该枢接件相对于该固定犀枢 转目 .包括一凸轮面, 目 .该凸轮面与该挡掣部彼此抵接。 、 如请求项 14所述的电子装置磁吸配件, 还包括: 替换 页 (细则第 26条) 一枢接件, 配置于该磁吸件的一端上且 穿设或枢接于该固定 座 ; 以及 一提取件, 连接于该磁吸件的另一端与该固定座之间。 、 如请 求项 18所述的电了 ■装置磁吸配件,其中该固定座形成有一 卡出槽, 且该提取件包括: 一连接部, 穿设「该卡止槽且具有柔性, 且该连接部的一端配 置 于该磁吸件上; 以及 一卡止部, 配置于该连接部的另一端上, 且该卡止部的尺寸大 于 该卡止槽。 、 如请 求项 1所述的电子装置磁吸配件, 其中该固定座枢接于该 套接件。 、 如请 求项 20所述的电子装置磁吸配件, 还包括一固定座定位 件,该固定座定位件配置于该固定座与该套接件之 间且选择性 地使该固定座相对 丁该套接件固定。 、 如请求 项 1所述的电子装置磁吸配件, 其中该磁吸件包括: 一基部, 适于承载该电子装置; 以及 一凸轮部, 连接于该基部且包括至少一凸轮面以及一抵顶面; 其 中, 该固定座包括一抵顶壁, 且该凸轮部抵接于该抵顶 壁。 3、 如请 求项 22所述的电了 ■装置磁吸配件,其中该至少一凸轮面为 二个, 目.该抵顶面配置于该二凸轮面之间。
34 替换页 (细则第 26条) 、 如请求项 22所述的电子装置磁吸配件, 还包括一摩固件, 该摩 固件可拆卸地配置 于该抵顶壁上且抵接于该凸轮部。 、 如请求项 1所述的电子装置磁吸配件, 其中该固定座包括一本 体 以及一卡掣部, 该卡掣部适于突出于该本体且抵接该磁吸 件。 、 如请求项 25所述的电子装置磁吸配件,其中该磁吸件上形成有 一卡掣槽, 且该卡掣槽适于抵接该卡掣部。 、 如清求项 1所述的电子装置磁吸配件, 还包括一提取件, 该提 取件的两端连接 于该固定座以形成一提取通道,且该磁吸件配 置于该提取件 。 8、 如请求项 27所述的电子装置磁吸配件,其中该磁吸件埋设于该 提取件 。 、 如请求项 1所述的电子装置磁吸配件, 其中该套接件包括 -带 体以及一粘扣特 征, 该带体适丁定义一固定通道, 该粘扣特征 配置 「该带体的一部分上,且该带体的另一部分适「■粘扣「该 粘扣特征 的不同位置以调整该固定通道的大小。 0、 如清求项 1所述的电子装置磁吸配件, 其中该套接件用于套设 该固定 目标物的表面上形成有一防滑特征。
35 替换页 (细则第 26条)
PCT/SG2023/050738 2022-11-07 2023-11-07 电子装置磁吸配件 WO2024102073A1 (zh)

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