Input device, electronic device including the same, and control method thereof

US10082893B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10082893-B2
Application numberUS-201615054912-A
CountryUS
Kind codeB2
Filing dateFeb 26, 2016
Priority dateFeb 27, 2015
Publication dateSep 25, 2018
Grant dateSep 25, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Disclosed is a device for entering an input through a rotary motion, including a rotating body, and a fixed body to which the rotating body is coupled and rotates, wherein a first magnetic material and a second magnetic material are disposed on the rotating body and the fixed body, respectively, such that a clicking sensation to the rotation of the rotating body is generated by a magnetic force between the first and second magnetic materials, and an optical sensor and one or more magnetic sensors are disposed on the fixed body such that an amount, a direction, or a speed of rotation of the rotating body is recognized by the optical sensor, and wherein the one or more magnetic sensors detect the magnetic force.

First claim

Opening claim text (preview).

What is claimed is: 1. An electronic device comprising: a rotating body; and a fixed body to which the rotating body is coupled and rotates, wherein a first magnetic material and a second magnetic material are disposed on the rotating body and the fixed body, respectively, such that a clicking sensation to the rotation of the rotating body is generated by a magnetic force between the first and second magnetic materials, and an optical sensor and one or more magnetic sensors are disposed on the fixed body such that an amount, a direction, or a speed of rotation of the rotating body is recognized by the optical sensor, wherein the one or more magnetic sensors detect the magnetic force, wherein a value of the amount, direction or speed of rotation recognized by the optical sensor is corrected by using the magnetic force of the first magnetic material that is detected by the magnetic sensors, and wherein the one or more magnetic sensors are disposed on opposite sides of the optical sensor and are used to detect the magnetic forces generated from the first magnetic material and to correct the value of the amount and direction of the rotation recognized by the optical sensor. 2. The electronic device of claim 1 , wherein the first and second magnetic materials are disposed to face each other, and the optical sensor is disposed on the fixed body along a vicinity of a rotational path of the rotating body. 3. The electronic device of claim 1 , wherein the fixed body comprises: a support structure that has the optical sensor, the one or more magnetic sensors disposed separate from the optical sensor, and the second magnetic material is provided along an outer circumferential direction of the support structure, the rotating body being coupled to the support structure and rotatable about the support structure. 4. The electronic device of claim 3 , wherein the rotating body is a ring-shaped bezel that has upper and lower surfaces and has a uniform optical pattern imprinted on the lower surface, and the first magnetic material is accommodated in the rotating body and is uniformly or non-uniformly spaced apart. 5. The electronic device of claim 3 , wherein the support structure further comprises: a first support structure that has a central portion that is open at a top and a bottom and an outer peripheral portion on which the rotating body is placed; and a second support structure that is coupled to the first support structure, wherein the optical sensor and the one or more magnetic sensors are disposed on the second structure. 6. The electronic device of claim 5 , wherein a display is accommodated in the central portion of the first support structure and is exposed outside of the electronic device while being mounted on the second support structure. 7. The electronic device of claim 5 , wherein the rotating body is directly mounted on the first support structure, or is indirectly mounted on the first support structure through a resilient member or a metal member with a gap between the rotating body and the first support structure. 8. The electronic device of claim 3 , wherein a ceramic cover is integrally coupled to the rotating body. 9. The electronic device of claim 3 , wherein the electronic device is a wearable device that is worn on a wrist of a user by using a strap. 10. The electronic device of claim 3 , wherein the electronic device is a wearable device, wherein the wearable device con rises: a main body; and a connecting part connected to the main body and worn on a human body, and wherein the main body comprises: the rotating body provided with an optical pattern and the first magnetic material; the support structure provided with the second magnetic material, the optical sensor, and the one or more magnetic sensors and disposed to face the rotating body; a display mounted on the support structure and disposed to be exposed outside of the wearable device; a power supply unit disposed in the support structure; and a lower cover coupled to a bottom of the support structure. 11. The electronic device of claim 1 , further comprising: a support structure rotatably disposed to face the rotating body and comprising an optical module that is disposed to face the optical pattern, wherein a plurality of balls are disposed in and are resiliently supported by an outer peripheral region of the support structure, and a plurality of recesses, in which each of the plurality of balls are positioned when the rotating body rotates, are formed in a surface of the rotating body, and a clicking sensation to the rotation of the rotating body is generated by engagement or disengagement between the balls and the recesses when the rotating body rotates. 12. A device for controlling an electronic device, comprising: an optical sensor that receives an optical signal reflected from a rotating body in a rotary motion; one or more magnetic sensors that detect a magnetic force of at least one magnet attached to the optical sensor and that generates a magnetic force signal using the detected magnetic force; a controller that estimates a rotation value of the rotating body based on the optical signal, estimates an auxiliary rotation value of the rotating body based on the magnetic force signal, determines a final rotation value by reflecting the auxiliary rotation value in the rotation value, and determines a mode of the electronic device according to the final rotation value; and a fixed body to which the rotating body is coupled and rotates, wherein a first magnetic material and a second magnetic material are disposed on the rotating body and the fixed body, respectively, wherein a value of an amount, a direction or a speed of rotation recognized by the optical sensor is corrected by using a magnetic force of the first magnetic material that is detected by the magnetic sensors, and wherein the magnetic sensors are disposed on opposite sides of the optical sensor and are used to detect the magnetic forces generated from the first magnetic material and to correct the value of the amount and direction of the rotation recognized by the optical sensor. 13. The device of claim 12 , wherein the final rotation value comprises an amount and direction of rotation of the rotating body. 14. A method of controlling an electronic device, comprising: rotating a body which is coupled to a fixed body, wherein a first magnetic material is disposed on the rotating body and a second magnetic material is disposed on the fixed body such that a clicking sensation to the rotation of the rotating body is generated by a magnetic force between the first and second magnetic materials, and wherein an optical sensor and one or more magnetic sensors are disposed on the fixed body such that an amount, a direction, or a speed of rotation of the rotating body is recognized by the optical sensor; estimating a rotation value of the rotating body based on an optical signal reflected from the rotating body in a rotary motion; estimating an auxiliary rotation value of the rotating body based on a signal obtained by detecting a magnetic force signal; determining a final rotation value by reflecting the auxiliary rotation value in the rotation value; and controlling the electronic device according to the final rotation value, wherein a value of the amount, direction or speed of rotation recognized by the optical sensor is corrected by using the magnetic force of the first magnetic material that is detected by the magnetic sensors, and wherein the one or more magnetic sensors are disposed on opposite sides of the optical sensor and are used to detect the magnetic forces ge

Assignees

Inventors

Classifications

  • Wearable computers, e.g. on a belt · CPC title

  • Indication of measured value by tactile means · CPC title

  • using optical means, i.e. using infrared, visible or ultraviolet light · CPC title

  • influenced by the relative movement between the Hall device and magnetic fields (see G01R33/06) · CPC title

  • with deflection of beams of light, e.g. for direct optical indication (G01D5/40 takes precedence; {mechanical adjustment G01D5/264}) · CPC title

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What does patent US10082893B2 cover?
Disclosed is a device for entering an input through a rotary motion, including a rotating body, and a fixed body to which the rotating body is coupled and rotates, wherein a first magnetic material and a second magnetic material are disposed on the rotating body and the fixed body, respectively, such that a clicking sensation to the rotation of the rotating body is generated by a magnetic force…
Who is the assignee on this patent?
Samsung Electronics Co Ltd, Samsung Electronics Co Ltd
What technology area does this patent fall under?
Primary CPC classification G06F3/0362. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Sep 25 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).