User interface device with adjustable knob holding force
US-2023138312-A1 · May 4, 2023 · US
US2023231969A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2023231969-A1 |
| Application number | US-202217708057-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 30, 2022 |
| Priority date | Jan 19, 2022 |
| Publication date | Jul 20, 2023 |
| Grant date | — |
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A magnetic template with adjustable magnetic force is provided. The magnetic template is applied to a display device. The display device can be fixed on a plane by the magnetic template, wherein the magnetic template includes an assembly shell and an adjustment element. A magnetic element is arranged inside the assembly shell. The adjustment element is arranged in the assembly shell and is configured to adjust the magnetic force of the magnetic element relative to the plane or adjust the magnetic force of the magnetic element.
Opening claim text (preview).
What is claimed is: 1 . A magnetic template with adjustable magnetic force applied to a display device, wherein the display device can be fixed on a plane by the magnetic template, comprising: an assembly shell having a magnetic element disposed therein; and an adjustment element disposed in the assembly shell and configured to adjust a magnetic force of the magnetic element relative to the plane or to adjust the magnetic force of the magnetic element. 2 . The magnetic template according to claim 1 , further comprising an operation element configured to operate the adjustment element, so that the adjustment element can move between a first position and a second position in the assembly shell. 3 . The magnetic template according to claim 2 , wherein the adjustment element comprises: a sliding plate movable between the first position and the second position; and a shield disposed on the opposite side of the sliding plate and formed of a material selected from elements of the iron group, wherein, the magnetic element is disposed on the sliding plate, when the operation element drives the sliding plate to the first position, the shield and the magnetic element are not located at relative attraction positions; when the operation element drives the sliding plate to the second position, the shield and the magnetic element are located at relative attraction positions. 4 . The magnetic template according to claim 3 , wherein the adjustment element further comprises an elastomer disposed on one side of the sliding plate; when the operation element drives the sliding plate to be closer to or farther away from the elastomer, the elastomer provides a resilience to the sliding plate. 5 . The magnetic template according to claim 3 , wherein the adjustment element further comprises a buckling piece and a buckling switch; the buckling piece is disposed on the sliding plate and is opposite to the buckling switch in a moving direction; when the buckling piece and the buckling switch are in one of a separated state and a buckled state, the sliding plate is located at the first position; when the buckling piece and the buckling switch are in another one of the separated state and the buckled state, the sliding plate is located at the second position. 6 . The magnetic template according to claim 2 , wherein the adjustment element comprises: a sliding plate movable between the first position and the second position; and a shield moveably hinged on one side of the sliding plate and formed of a material selected from elements of the iron group, wherein, the magnetic element is fixed in the assembly shell, when the operation element drives the sliding plate to the first position, the shield and the magnetic element are not located at relative attraction positions; and when the operation element drives the sliding plate to the second position, the shield and the magnetic element are located at relative attraction positions. 7 . The magnetic template according to claim 6 , wherein the adjustment element further comprises an elastomer disposed on one side of the sliding plate; when the operation element drives the sliding plate to be closer to or farther away from the elastomer, the elastomer provides a resilience to the sliding plate. 8 . The magnetic template according to claim 6 , wherein the adjustment element further comprises a linking rod hinged between the sliding plate and the shield; when the operation element drives the sliding plate to the first position, the shield and the linking rod are in a folded state; when the operation element drives the sliding plate to the second position, the shield and the linking rod are in an unfolded state. 9 . The magnetic template according to claim 2 , wherein the adjustment element comprises: a moving plate, wherein one end of the moving plate is movable between the first position and the second position; and a shaft supporting frame disposed on one side of the assembly shell, wherein another end of the moving plate is hinged on the shaft supporting frame; wherein, the magnetic element is disposed on the moving plate, when the operation element drives the moving plate to the first position, the magnetic element is close to the attraction position of a plane ; and when the operation element drives the moving plate to the second position, the magnetic element are farther away from the attraction position of the plane. 10 . The magnetic template according to claim 9 , wherein the operation element is a handle, which is protruded upwards from the assembly shell and has an opening portion. 11 . The magnetic template according to claim 9 , further comprising a handle disposed on the assembly shell, wherein the handle has an opening portion, and the operation element is protruded upwards from the assembly shell and is opposite to the opening portion. 12 . The magnetic template according to claim 1 , further comprising a spirit level meter disposed on the magnetic template. 13 . A display device, comprising: a display; and a magnetic template with adjustable magnetic force, wherein the magnetic template is disposed on the display, which is fixed on a plane by the magnetic template, comprising: an assembly shell having a magnetic element disposed therein; an adjustment element disposed on the assembly shell and configured to adjust a magnetic force of the magnetic element relative to the plane or to adjust the magnetic force of the magnetic element. 14 . The display device according to claim 13 , further comprising an operation element configured to operate the adjustment element, so that the adjustment element can move between a first position and a second position in the assembly shell, wherein the adjustment element comprises: a sliding plate movable between the first position and the second position; and a shield disposed on an opposite side of the sliding plate and formed of a material selected from elements of iron group, wherein, the magnetic element is disposed on the sliding plate, when the operation element drives the sliding plate to the first position, the shield and the magnetic element are not located at relative attraction positions; when the operation element drives the sliding plate to the second position, the shield and the magnetic element are located at relative attraction positions. 15 . The display device according to claim 13 , wherein the adjustment element comprises: a sliding plate movable between the first position and the second position; and a shield moveably hinged on one side of the sliding plate and formed of a material selected from elements of iron group, wherein, the magnetic element is fixed in the assembly shell, when the operation element drives the sliding plate to the first position, the shield and the magnetic element are not located at relative attraction positions; and when the operation element drives the sliding plate to the second position, the shield and the magnetic element are located at relative attraction positions. 16 . The display device according to claim 13 , wherein the adjustment element comprises: a moving plate, wherein one end of the moving plate is movable between the first position and the second position; and a shaft supporting frame disposed on one side of the assembly shell, wherein another end of the moving plate is hinged on the shaft supporting frame; wherein, the magnetic element is disposed on the moving plate, when the operation element drives the moving plate to the first position, the magnetic element is close to the attraction position o
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