Putting data measuring apparatus and method for golf

The golf putting data measuring device addresses the challenge of inaccurate data measurement by enabling uniform head speed and stroke direction through a mounting and angle adjustment system, ensuring precise data acquisition for various putter lengths and lie angles.

KR102992013B1Active Publication Date: 2026-07-21GOLFZON CO LTD
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Patent Information

Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
GOLFZON CO LTD
Filing Date
2024-05-14
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing golf putting data measurement technologies, such as the putter learning device disclosed in Korean Registered Patent Publication No. 10-2449749, fail to accurately measure putting data due to their inability to repeatedly rotate the putter with uniform force and adjust the mounting angle, leading to inaccurate data acquisition.

Method used

A golf putting data measuring device that includes a mounting part for fixing the putter at a predetermined angle, a driving part to implement a stroke by rotating the mounting part, and an angle adjustment part to adjust the mounting part's angle perpendicular to the stroke direction, allowing for secure and easy mounting of putters of varying lengths, and utilizing a clutch to provide uniform head speed without forced rotation.

Benefits of technology

The device enables accurate measurement of putting data by aligning the putter head with the golf ball, providing a constant head speed and stroke direction, and allowing for adjustments to match the putter's lie angle, thereby enhancing data accuracy and compatibility with different putter lengths.

✦ Generated by Eureka AI based on patent content.

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Abstract

A golf putting data measuring device and measuring method for implementing a stroke of a golf ball by a golf putter are presented to acquire putting data of a golf ball by a golf putter, comprising: a main body providing support; a mounting part provided on the main body for fixing the putter at a predetermined angle; a driving part for implementing the stroke of the putter while rotating the mounting part in at least one of a forward direction and a reverse direction; and an angle adjustment part for adjusting the angle of the mounting part while rotating the mounting part in a direction perpendicular to the stroke direction of the putter according to the lie angle of the putter.
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Description

Technology Field

[0001] The embodiments disclosed in this specification relate to a golf putting data measuring device and a measuring method, and more specifically, to a golf putting data measuring device and a measuring method that implements a simulated stroke of a putter to acquire putting data by a golf putter. Background Technology

[0003] Generally, golf clubs are classified into various types, for example, drivers, woods, irons, wedges, and putters depending on their use.

[0004] Among these, the putter is primarily used on the green to strike a golf ball and sink it into the hole; since the distance the ball travels varies depending on the force applied, it requires relatively more precise control of force compared to clubs used on the field.

[0005] Meanwhile, screen golf, which provides a virtual golf environment through screens as an alternative to outdoor golf, has recently become popular.

[0006] In such screen golf, when a player hits a golf ball, the golf ball on the screen must move the same distance as the actual distance, so data such as the distance traveled by the golf ball based on head speed or ball speed is required.

[0007] In particular, since putting determines the game's score, putting data regarding the speed of the putter head or ball speed is required; to measure such putting data, technology capable of simulating a putter stroke by repeatedly rotating the putter with uniform force is required.

[0008] As related prior art, there is a putter learning device disclosed in Korean Registered Patent Publication No. 10-2449749.

[0009] This prior art is a technology that enables the reciprocating motion of a putter mounted on a pendulum-moving arm, thereby demonstrating the state in which the putter moves closer to or further away from the golfer's body during the golfer's address.

[0010] However, the prior art described above has a problem in that it cannot measure accurate putting data because it is configured to merely demonstrate the state of the putter moving closer to or further away from the golfer's body, and is not capable of repeatedly rotating the putter with uniform force.

[0011] Therefore, technology was needed to solve the aforementioned problems.

[0012] Meanwhile, the aforementioned background technology is technical information that the inventor possessed for the derivation of the present invention or acquired during the process of deriving the present invention, and it cannot be considered as prior art disclosed to the general public prior to the filing of the present invention. The problem to be solved

[0014] The embodiments disclosed in this specification aim to provide a golf putting data measuring device and a measuring method that implement a simulated stroke of a putter to acquire putting data by a golf putter.

[0015] In addition, the embodiments disclosed in this specification aim to provide a golf putting data measuring device and a measuring method capable of adjusting the angle of a mounting portion on which a putter is mounted while implementing a putter stroke by rotating the mounting portion on which the putter is mounted through a driving portion.

[0016] In addition, the embodiments disclosed in this specification aim to provide a golf putting data measuring device and a measuring method that can firmly and easily mount a putter, and can mount the putter regardless of its length while adjusting the mounting angle.

[0017] In addition, the embodiments disclosed in this specification aim to provide a golf putting data measuring device and a measuring method capable of providing a constant head speed and a constant stroke direction of a putter by not using forced rotation by a driving motor in implementing a putter stroke, but by free-falling the putter while it is rotated to a predetermined angle by a driving motor.

[0018] In addition, the embodiments disclosed in this specification aim to provide a golf putting data measuring device and a measuring method capable of measuring more accurate putting data by aligning the head of the putter with the golf ball while mounting the putter. means of solving the problem

[0020] As a technical means for achieving the above-described technical problem, a golf putting data measuring device according to one embodiment is a golf putting data measuring device that implements a stroke of said putter to acquire putting data of a golf ball by a golf putter, and may be configured to include: a main body providing support; a mounting part provided on said main body for fixing said putter at a predetermined angle; a driving part that implements a stroke of said putter while rotating said mounting part in at least one direction among a forward direction and a reverse direction; and an angle adjustment part that adjusts the angle of said mounting part while rotating said mounting part in a direction perpendicular to the stroke direction of said putter.

[0021] In addition, as a technical means for achieving the technical task described above, a method for measuring golf putting data according to one embodiment is performed by a golf putting data measuring device comprising: a mounting part that fixes a putter at a predetermined angle; a driving part that implements a stroke of the putter while rotating the mounting part; and an angle adjusting part that adjusts the angle of the mounting part while rotating the mounting part in a direction perpendicular to the stroke direction of the putter. As a method for measuring golf putting data that implements a stroke of the putter to acquire putting data of a golf ball by the putter, the method may be performed by including the steps of: mounting the putter on the mounting part; adjusting the angle of the mounting part to an angle for measuring the putting data through the angle adjusting part; adjusting the height of the putter grip relative to the ground while fixing the putter on the angle-adjusted mounting part; and measuring the putting data while rotating the mounting part together with the putter through the driving part. Effects of the invention

[0023] According to any one of the aforementioned means for solving the problem, a golf putting data measuring device and a measuring method can be presented for implementing a simulated stroke of a putter to acquire putting data by a golf putter.

[0024] In addition, according to any one of the aforementioned means for solving the problem, the angle of the mounting part can be adjusted through an angle adjustment part while rotating the mounting part on which the putter is mounted through a driving part to implement the stroke of the putter, so accurate putting data corresponding to a predetermined angle for measuring putting data, for example, the lie angle of the putter, can be acquired, and putting data at various putting angles can be acquired while adjusting the mounting angle of the putter.

[0025] In addition, according to any one of the aforementioned means for solving the problem, a putter can be securely and easily mounted through a mounting clamp constituting the mounting part, and the putter can be easily adjusted and mounted without being constrained by its length during the process of mounting the putter on the mounting part.

[0026] In addition, according to any one of the aforementioned means for solving the problem, the clutch constituting the drive unit can interrupt the rotational force while transmitting the rotational force of the drive motor to the mounting unit, thereby providing a uniform head speed of the putter.

[0027] In addition, according to any one of the aforementioned means for solving the problem, when the drive unit implements the stroke of the putter, it is possible to achieve a constant head speed of the putter and a constant stroke direction of the putter by cutting off the rotational force of the drive motor through a clutch while the putter is rotated to a predetermined angle through the drive motor and allowing the putter to free fall, without using forced rotation by the drive motor.

[0028] In addition, according to any one of the aforementioned means for solving the problem, when a weight is provided in the mounting part, the weight provides weight from the opposite side of the putter and performs a seesaw motion due to the rotation of the putter, so the putter can rotate more smoothly together with the mounting part.

[0029] In addition, according to any one of the aforementioned means for solving the problem, more accurate putting data can be measured by aligning the head of the putter and the golf ball through the alignment unit while mounting the putter on the mounting unit.

[0030] In addition, according to any one of the aforementioned means for solving the problem, the alignment pointer constituting the alignment section provides an alignment line through light, thereby enabling accurate alignment of the putter head and the golf ball, and if a golf ball pointer is provided, it can provide a more accurate measurement environment by providing the position where the golf ball is placed.

[0031] The effects obtainable from the disclosed embodiments are not limited to those mentioned above, and other unmentioned effects will be clearly understood by those skilled in the art to which the disclosed embodiments belong from the description below. Brief explanation of the drawing

[0033] FIG. 1 is a perspective view showing a golf putting data measuring device according to one embodiment. FIG. 2 is a perspective view showing a golf putting data measuring device according to one embodiment as viewed from a different angle. FIG. 3 is a drawing showing a golf ball putting data measuring device according to one embodiment as viewed from the front. FIG. 4 is a perspective view showing a golf ball putting data measuring device according to another embodiment. FIG. 5 is a perspective view showing a golf ball putting data measuring device according to another embodiment as viewed from a different angle. FIG. 6 is a flowchart illustrating a method for measuring golf ball putting data according to one embodiment. Specific details for implementing the invention

[0034] Various embodiments are described in detail below with reference to the attached drawings. The embodiments described below may be implemented in various different forms. In order to explain the features of the embodiments more clearly, detailed descriptions of matters widely known to those skilled in the art to which the following embodiments belong have been omitted. Additionally, parts of the drawings unrelated to the description of the embodiments have been omitted, and similar parts throughout the specification have been given similar reference numerals.

[0035] Throughout the specification, when a configuration is described as being "connected" to another configuration, this includes not only cases where they are "directly connected," but also cases where they are "connected with another configuration in between." Furthermore, when a configuration is described as "including" another configuration, this means that, unless specifically stated otherwise, it does not exclude other configurations but may include additional configurations.

[0036] FIG. 1 is a perspective view showing a golf putting data measuring device according to one embodiment, FIG. 2 is a perspective view showing the golf putting data measuring device according to one embodiment viewed from a different angle, and FIG. 3 is a drawing showing the golf ball putting data measuring device according to one embodiment viewed from the front. In addition, FIG. 4 is a perspective view showing a golf ball putting data measuring device according to another embodiment, FIG. 5 is a perspective view showing the golf ball putting data measuring device according to another embodiment viewed from a different angle, and FIG. 6 is a flowchart showing a golf ball putting data measuring method according to one embodiment.

[0037] A golf putting data measuring device (10) according to one embodiment is a device that implements a simulated stroke of a putter (1) in order to acquire putting data of a golf ball by a golf putter (1).

[0038] Here, the putting data may include the head speed or ball speed of the putter (1) due to the stroke of the putter (1), and may include the distance traveled by the golf ball struck by the stroke of the putter (1).

[0039] Referring to FIGS. 1 to 3, a golf putting data measuring device (10) according to one embodiment may be configured to include a main body (100), a mounting part (200), a driving part (300), and an angle adjustment part (400).

[0040] The above main body (100) forms the body of a golf putting data measuring device (10) according to one embodiment and provides support, and is manufactured to a predetermined height to provide an installation space for the components described later.

[0041] For example, the main body (100) can be constructed with a plurality of pipes to form a tower shape and can be manufactured to a predetermined height.

[0042] In addition, the main body (100) may have a plurality of height-adjustable feet (110) installed at the bottom so as to be height-adjustable to support the floor surface.

[0043] These height-adjustable feet (110) are screw-coupled to the lower part of the main body (100) and can adjust the height of the main body (100) by adjusting their length through forward or reverse rotation, and can adjust the horizontal level of the main body (100) by adjusting the length of multiple feet individually.

[0044] For example, as shown in FIGS. 1 and FIGS. 4, the height adjustment feet (110) are composed of three and installed at the bottom of the main body (100) in a triangular structure, so that the horizontal level of the main body (100) can be adjusted by adjusting the length of each.

[0045] Accordingly, the main body (100) can be adjusted to a horizontal state through the height adjustment feet (110) even when installed on a mat with an irregular surface level or on an actual green.

[0046] Here, the main body (100) can provide a level of the main body (100) by installing a level not shown in a part thereof.

[0047] The above-mentioned mounting part (200) is provided on the main body (100) and fixes the putter (1) at a predetermined angle, and is a component that implements the stroke of the putter (1) by rotating together with the putter (1) by the driving part (300) described later.

[0048] This mounting part (200) is rotatably installed on the main body (100) via an angle adjustment part (400) described later, so that the putter (1) can be detachably mounted, and the stroke of the putter (1) can be implemented by rotating it by the driving part (300) after being adjusted to a predetermined angle for measuring putting data by the angle adjustment part (400).

[0049] Specifically, the mounting portion (200) may be configured to include a grip holder (210) and a holder clamp (220).

[0050] The above grip holder (210) is a member that supports the grip portion of the putter (1) and is connected to the angle adjustment part (400) described later, so that it can be extended to a predetermined length to support the grip portion of the putter (1).

[0051] This grip holder (210) can be formed in the shape of a roughly rectangular plate and can be extended, and can be formed longer than the length of the grip of the putter (1). This is to allow the height of the grip portion relative to the ground to be adjusted so that the putter (1) can be placed regardless of the length of the putter (1) by providing a space for the grip of the putter (1) to move.

[0052] That is, since the putter (1) is manufactured with different lengths depending on the type, when the head part is placed on the ground, the height of the grip part relative to the ground varies depending on the length, but since the grip stand (210) allows the grip part of the putter (1) to move along the length direction, the putter (1) can be mounted regardless of its length.

[0053] According to an embodiment, the grip holder (210) is installed on a holder support (410) that forms an angle adjustment unit (400) described later together with a driving unit (300) described later as shown in FIG. 2, and can be rotated in the putting direction by the driving unit (300).

[0054] Additionally, according to the embodiment, the grip holder (210) is coupled to the mounting bracket (450) constituting the angle adjustment unit (400) as shown in FIG. 4, and can rotate together with the mounting bracket (450) in the putting direction by the driving unit (300).

[0055] The above-mentioned stand clamp (220) is a component for securing the putter (1) to the grip stand (210).

[0056] This stand clamp (220) is formed in a divisible ring shape on the grip stand (210) and can fix the grip of the putter (1) or the shaft of the putter (1) by wrapping it through the separation and connection of the ring portion, thereby allowing the putter (1) to be movably fixed on the grip stand (210), and thus the height of the putter (1) grip relative to the ground can be easily adjusted.

[0057] Here, the mounting clamp (220) may be configured as a single unit as shown in FIGS. 2 and FIGS. 4, or alternatively, may be configured as a plurality and arranged at regular intervals on the grip holder (210).

[0058] Meanwhile, as shown in FIG. 1, the grip holder (210) is provided with a grip support (211) having a seating groove in a part so as to support the grip portion of the putter (1) in a state where movement is prevented.

[0059] In this case, the grip holder (210) can easily and consistently fix the putter (1) by first fixing the putter (1) through the holder clamp (220) and then fixing it in a structure that holds the grip portion of the putter (1) through the grip support (211).

[0060] The above driving unit (300) is a component for implementing a simulated stroke of the putter (1) by rotating the mounting unit (200) on which the putter (1) is mounted in a forward or reverse direction.

[0061] Specifically, the drive unit (300) may be configured to include a mounting drive shaft (310), a drive motor (320), and a clutch (330) as shown in FIGS. 2 and FIGS. 5.

[0062] The above mounting part drive shaft (310) is a member for rotating the mounting part (200) through the rotational force of the drive motor (320), and can be connected to the grip holder (210) constituting the mounting part (200) and extended to a predetermined length, and can be connected to the drive motor (320).

[0063] According to the embodiment, the mounting member drive shaft (310) is installed on the mounting member support (410) that constitutes the angle adjustment member (400) described later as shown in FIG. 2 and is directly coupled to the grip holder (210), thereby allowing the grip holder (210) to be rotated in the forward or reverse direction through the rotational force of the drive motor (320).

[0064] In addition, according to the embodiment, the mounting part drive shaft (310) may be connected to the mounting part bracket (450) that constitutes the angle adjustment part (400) described later, as shown in FIG. 5, so that the mounting part bracket (450) can be rotated together with the grip holder (210) through the rotational force of the driving motor (320).

[0065] The above-mentioned drive motor (320) rotates the mounting part drive shaft (310) while operating by power, and can provide rotational force by being connected to the mounting part drive shaft (310) in a state where it is installed on the mounting part support (410) constituting the angle adjustment part (400) as shown in FIG. 2 or installed on the main body (100) as shown in FIG. 5.

[0066] Here, the drive motor (320) can provide rotational force by being connected to the mounting part drive shaft (310) via a power transmission member such as a belt, chain, or reduction gear and operating under the control of a control unit not shown, and can also provide rotational force by being directly connected to the mounting part drive shaft (310).

[0067] The above clutch (330) is a component provided on the mounting part drive shaft (310) that transmits rotational force by the drive motor (310) to the mounting part (200) and controls the transmission of rotational force.

[0068] That is, the clutch (330) is a component that controls rotational force by transmitting or blocking rotational force by the drive motor (310).

[0069] This clutch (330) is formed in a shape that divides the mounting drive shaft (310), and can control rotational force by separating or connecting the divided parts through mechanical or electrical configurations.

[0070] For example, the clutch (330) can transmit the rotational force of the drive motor (320) to the mounting part (200) by connecting the divided parts of the mounting part drive shaft (310) by moving them in a direction where they are in close contact with each other so that the rotational force can be interrupted through the control of the control unit, and can block the rotational force of the drive motor (320) by moving the divided parts of the mounting part drive shaft (310) in the opposite direction to separate them from each other.

[0071] Additionally, the clutch (330) may be formed with a structure similar to a ratchet so as to transmit rotational force in only one direction and not in the opposite direction.

[0072] Here, the clutch (330) can transmit rotational force through the mounting part drive shaft (310) to the mounting part (200) only when the drive motor (320) rotates in one direction, and then block the rotational force by the drive motor (320).

[0073] That is, the clutch (330) transmits the rotational force of the drive motor (320) to rotate the mounting part (200) together with the putter (1) at a predetermined angle, and then blocks the rotational force by the drive motor (320) to cause the mounting part (200) to free fall together with the putter (1) and rotate, thereby enabling the stroke of the putter (1).

[0074] Accordingly, the mounting part (200) rotates through free fall due to the weight of the putter (1) without being forcibly rotated by the drive motor (320), thereby enabling a constant rotational speed (head speed) of the putter (1) and a constant rotational direction (stroke direction) of the putter (1).

[0075] In addition, the mounting part (200) can adjust the rotational speed (head speed) by free fall through the adjustment of the rotational angle by the driving motor (320).

[0076] That is, the mounting part (200) can gradually increase the rotational speed by rotating at a larger angle by the drive motor (320) and then free-falling through the interruption of rotational force by the clutch (330). Accordingly, the mounting part (200) can control the head speed of the putter (1) by adjusting the rotational angle by the drive motor (320).

[0077] Meanwhile, the mounting portion (200) may be configured to further include an unillustrated weight configuration.

[0078] The above weight is installed on the grip support (210) constituting the mounting part (200) to provide weight, and is installed on the opposite side of the putter (1) head around the mounting part drive shaft (310) so that the mounting part (200) can be rotated through the weight.

[0079] That is, the weight is installed on the opposite side of the head of the putter (1) around the mounting drive shaft (310) on either side of the longitudinal direction of the grip support (210) to provide weight, thereby allowing the head of the putter (1) to rotate around the mounting drive shaft (310) to perform a seesaw motion, and when the rotational force by the clutch (330) is cut off, the grip support (210) can be rotated more smoothly and freely through the weight, thereby allowing the putter (1) to rotate.

[0080] The above angle adjustment unit (400) is a component that connects the mounting unit (200) to the main body (100) so as to be angle-adjustable, or connects the mounting unit (200) to the main body (100) together with the driving unit (300) so as to be angle-adjustable, and is a component that adjusts the angle of the mounting unit (200) to a predetermined angle for measuring putting data while rotating the mounting unit (200) in a direction perpendicular to the stroke direction of the putter (1).

[0081] Here, the putter (1) is manufactured to have different lie angles depending on the type. As is known, the lie angle of the putter (1) refers to the angle formed by the centerline of the ground and the shaft when the head of the putter (1) is placed on the ground.

[0082] In addition, when putting a golf ball, the golf ball will only go accurately toward the target direction if the stroke is made with the putter (1) at the correct lie angle, and if the stroke is made with the lie angle distorted, the direction of travel of the golf ball will be distorted.

[0083] For example, when measuring putting data for a putter (1), the putting data may be measured when the stroke is performed at an angle corresponding to the lie angle assigned to the putter (1), or when the putting data is measured when the stroke is performed at an angle that is misaligned with the lie angle assigned to the putter (1).

[0084] Accordingly, the angle adjustment unit (400) can adjust the angle of the mounting unit (200) to adjust the angle of the putter (1) to an angle for measuring putting data.

[0085] That is, when measuring putting data for a stroke performed at an angle corresponding to the lie angle of the putter (1), the angle of the mounting part (200) can be adjusted to match the lie angle, and when measuring putting data for a stroke performed with the lie angle of the putter (1) twisted, the angle of the mounting part (200) can be adjusted to the twisted angle.

[0086] According to an embodiment, the angle adjustment unit (400) may be configured to include a mounting support (410) and an angle maintaining bolt (420) as shown in FIGS. 1 to 3.

[0087] The above-mentioned mounting support (410) is a component that supports the mounting part (200) at a predetermined angle together with the driving part (300).

[0088] Specifically, the mounting support (410) is installed on the upper part of the main body (100) so as to be rotatable in a direction perpendicular to the stroke direction of the putter (1) via a hinge shaft (411), and can support the mounting part (200) together with the driving part (300) in a state where the angle can be adjusted.

[0089] Additionally, the mounting support (410) can adjust the angle of the mounting part (200) by rotating in a direction perpendicular to the stroke direction of the putter (1) around the hinge axis (411) to support the mounting part (200) at a predetermined angle.

[0090] The angle maintaining bolt (420) is a component that allows angle adjustment of the mounting support (410) and maintains the mounting support (410) at a predetermined angle.

[0091] Specifically, the angle maintaining bolt (420) is screw-coupled to the mounting support (410) and its tip protrudes toward the main body (100) to support the main body (100), thereby allowing the mounting support (410) to be maintained at a predetermined angle, and the angle of the mounting support (410) relative to the main body (100) can be adjusted by adjusting the protruding length through forward or reverse rotation by an external force.

[0092] Meanwhile, the angle adjustment unit (400) may be configured to include a mounting bracket (450), a mounting rotation axis (460), an angle adjustment slot (470), and an angle fixing bolt (480), as shown in FIGS. 4 and FIGS. 5, according to the embodiment.

[0093] The above mounting bracket (450) is a member that connects the mounting part (200) to the main body (100) and rotates together with the mounting part (200) in the stroke direction of the putter (1) by the driving part (300).

[0094] This mounting bracket (450) is connected to the mounting drive shaft (310) of the driving unit (300) fixed to the main body (100) and provides an installation site for the mounting unit (200), so that when the driving unit (300) is driven, it can rotate together with the mounting unit (200) in the stroke direction of the putter (1).

[0095] The above mounting member rotation axis (460) rotatably connects the mounting member (200) to the mounting member bracket (450), thereby allowing the angle of the mounting member (200) to be adjusted by rotating the mounting member (200) in a direction perpendicular to the stroke direction of the putter (1).

[0096] The above angle adjustment slot (470) is a component for guiding the rotation radius of the mounting part (200) when adjusting the angle of the mounting part (200), and can be formed in the mounting part bracket (450) by being formed as an arc-shaped groove centered on the mounting part rotation axis (460).

[0097] The angle fixing bolt (480) fixes the mounting part (200) in an angle-adjusted state, and by being fastened to the mounting part (200) through the angle adjustment slot (470) and being in close contact with the mounting part bracket (450), the angle of the mounting part (200) can be maintained.

[0098] Meanwhile, a golf putting data measuring device (10) according to one embodiment may further include an alignment unit (500) as shown in FIGS. 1 to 3.

[0099] The above alignment section (500) is a component that visually provides an alignment line to align the head of the putter (1) or the golf ball in the correct position when the putter (1) is mounted on the mounting section (200).

[0100] This alignment section (500) may be configured to include an alignment frame (510) and an alignment point (520).

[0101] The above alignment frame (510) is installed on the main body (100) and provides an installation site for the alignment pointer (520) described later. One end of the two longitudinal ends is fixed to the main body (100), and the other end can be extended toward the rear of the putter (1) head, that is, toward the opposite side of the face, when the putter (1) is mounted.

[0102] Here, the main body (100) may be installed with an installation pipe (150) extending toward the rear of the putter (1) head as shown in FIG. 1, and the alignment frame (510) may be fixed so as to be movable along the length of the installation pipe (150) so that its position can be adjusted.

[0103] The above alignment pointer (520) can visually provide an alignment line that allows the head of the putter (1) and the golf ball to be aligned in a straight line by shining light toward the head of the putter (1) while installed on the alignment frame (510).

[0104] The position of these alignment pointers (520) can be adjusted by fixing them so that they can move along the length direction of the alignment frame (510).

[0105] Additionally, the alignment section (500) may be configured to include an unillustrated golf ball hologram.

[0106] The above golf ball irradiator is a component capable of positioning a golf ball on the aforementioned alignment line by irradiating light onto the location where the golf ball is placed, and can irradiate light onto the location where the golf ball is placed while installed on a part of the main body (100).

[0107] A method for measuring putting data using a golf putting data measuring device (10) according to one embodiment including the components as described above will be explained with reference to FIG. 6.

[0108] When measuring putting data such as the head speed, ball speed, or distance traveled by the golf ball due to the stroke of the putter (1), the putter (1) can be mounted on the mounting part (200) (S100).

[0109] At this time, the putter (1) can be mounted on the grip holder (210) while the shaft or grip portion is fixed to the holder clamp (220).

[0110] Next, the mounting part (200) can be adjusted to an angle for measuring putting data of the putter (1) through the angle adjustment part (400) (S200).

[0111] For example, in step S200, the mounting part (200) can be adjusted to an angle that matches the lie angle when measuring putting data for a stroke performed at an angle corresponding to the lie angle of the putter (1), and can be adjusted to an angle that is misaligned with the lie angle when measuring putting data for a stroke performed with the lie angle of the putter (1) being misaligned.

[0112] In this case, according to one embodiment, when the angle adjustment unit (400) is composed of a mounting support (410) and an angle maintaining bolt (420), the angle of the mounting support (410) can be adjusted to an angle for measuring putting data of the putter (1) by rotating the angle maintaining bolt (420) so that the mounting support (410) rotates in a direction perpendicular to the putting direction.

[0113] According to another embodiment, when the angle adjustment unit (400) is composed of a mounting bracket (450), a mounting rotation axis (460), an angle adjustment slot (470), and an angle fixing bolt (480), the angle of the mounting unit (200) can be adjusted to an angle for measuring putting data by releasing the fixing of the angle fixing bolt (480) to rotate the mounting bracket (450) in a direction perpendicular to the putting direction, and then fixing the angle fixing bolt (480) again.

[0114] Next, the putter (1) can be fixed again to a mounting part (200) adjusted to an angle for measuring putting data, and the height of the putter grip relative to the ground can be adjusted and fixed (S300).

[0115] At this time, the grip portion of the putter (1) can be moved along the length direction of the grip holder (210) by separating the holder clamp (220) so that the height of the grip relative to the ground is adjusted, and then the putter can be fixed to the grip holder (210) again by fixing the holder clamp (220).

[0116] In addition, the putter (1) can align the head of the putter (1) and the golf ball through the alignment section (500) during the process of performing the S300 step.

[0117] At this time, the head of the putter (1) and the golf ball can be aligned through the visual alignment line investigated by the alignment pointer (520).

[0118] After completing step S300, the driving unit (300) can be driven to rotate the mounting unit (200) together with the putter (1) and measure putting data (S400).

[0119] At this time, the clutch (330) constituting the drive unit (300) transmits the rotational force from the drive motor (320) to the mounting unit (200) through the mounting unit drive shaft (310), thereby rotating the mounting unit (200) together with the putter (1) at a certain angle (S410), and then cuts off the rotational force from the drive motor (320) to cause the mounting unit (200) to free fall together with the putter (1), thereby enabling the stroke of the putter (1) (S420).

[0120] And, as step S400 is performed, the stroke of the putter (1) can be implemented through the rotation of the mounting part (200) by the driving part (300), and the head speed of the putter (1), the ball speed of the golf ball, or the distance traveled by the golf ball can be measured, and while varying the rotation angle of the mounting part (200) at intervals of a certain angle, putting data including the head speed, the ball speed of the golf ball, or the distance traveled by the golf ball can be measured for each rotation angle of the mounting part (200).

[0121] The putting data measured as described above can be utilized as data for golf simulations, such as screen golf, regarding the distance traveled by the golf ball corresponding to ball speed or head speed. For example, by inputting the distance traveled corresponding to a specific head speed into the screen golf database, the movement of the golf ball can be simulated using the distance stored in the database when a screen golf user putts the ball at that head speed in the future.

[0122] In addition, when performing step S400, a golf ball feeder (not shown) is provided, and a golf ball is automatically supplied to the alignment line via a control signal, and then a stroke of the putter (1) by the drive unit (300) is automatically performed, thereby allowing for the automatic acquisition of a large amount of data.

[0123] For example, when applying the golf putting data measuring device and measuring method according to the embodiment described above to a golf simulation such as screen golf, the rotation angle of the mounting part (200) is rotated in 5-degree increments between 0 and 100 degrees through step S400, and then the ball speed and head speed are measured and tabulated while the mounting part (200) is free-falling.

[0124] Then, after measuring the distance traveled by the golf ball according to the speed (ball speed / head speed) performed in the golf simulation, a flat green or mat with the same speed as the speed in the golf simulation is set up, and the actual distance traveled by the golf ball is measured through a golf putting data measuring device (10).

[0125] In addition, ball speed values ​​where the distance traveled by the golf ball in the golf simulation matches the actual distance traveled can be converted into data and compared with the ball speed values ​​displayed in the golf simulation to apply to the physical values ​​for putting.

[0126] When performing the above process, the rotation angle value of the mounting part (200) is primarily input into the golf putting data measuring device (10), and the ball speed, head speed, and distance traveled by the golf ball can be measured. Subsequently, based on the data measured primarily, the golf putting data measuring device (10) can automatically control the rotation angle of the mounting part (200) when the speed of the green and the required distance traveled by the golf ball are input.

[0127] As described above, according to the golf putting data measuring device (10) and measuring method according to one embodiment, the putter (1) can be rotated through the driving unit (300) to implement the stroke of the putter (1), and the address angle of the putter can be adjusted to match the lie angle of the putter (1) through the angle adjustment unit (400), thereby allowing putting data suitable for the putter (1) to be acquired. In the driving unit (300) to implement the stroke of the putter (1), the driving unit (300) can provide a uniform head speed of the putter (1) by blocking the rotational force of the driving motor (320) through the clutch (330) while the putter (1) is rotated to a predetermined angle without using forced rotation by the driving motor (320) and allowing the putter (1) to free fall.

[0128] The embodiments described above are for illustrative purposes only, and those skilled in the art will understand that the embodiments described above can be easily modified into other specific forms without altering the technical concept or essential features of the embodiments described above. Therefore, the embodiments described above should be understood as illustrative in all respects and not restrictive. For example, each component described as a single unit may be implemented in a distributed manner, and components described as distributed may likewise be implemented in a combined form.

[0129] The scope of protection sought through this specification is defined by the claims set forth below rather than by the detailed description above, and should be interpreted to include all modifications or variations derived from the meaning and scope of the claims and the concept of equivalents. Explanation of the symbols

[0131] 10: Golf putting data measuring device 100 : Main body 110 : Height-adjustable feet 150 : Installation pipe 200 : Mounting part 210 : Grip stand 220 : Mounting clamp 300 : Drive unit 310 : Mounting part drive shaft 320 : Drive motor 330: Clutch 400 : Angle adjustment part 410 : Mounting support 420 : Angle fixing bolt 450 : Mounting bracket 460 : Mounting part rotation axis 470 : Angle adjustment slot 480 : Angle fixing bolt 500 : Alignment section 510 : Align Frame 520 : Align Pointer

Claims

Claim 1 A golf putting data measuring device for acquiring putting data of a golf ball by a golf putter, comprising: a main body providing support; a mounting part connected to the main body to fix the putter at a predetermined angle; a driving part connected to the mounting part to rotate the mounting part in at least one of a forward direction and a reverse direction to implement the stroke of the putter; and an angle adjustment part that is angle-adjustable connected to the main body or angle-adjustable connected to the main body together with the driving part, and adjusts the angle of the mounting part by rotating the mounting part in a direction perpendicular to the stroke direction of the putter, wherein the angle adjustment part includes a mounting part support member that supports the mounting part together with the driving part in a state rotatably installed on the upper part of the main body via a hinge axis, and supports the mounting part at a predetermined angle while rotating in a direction perpendicular to the stroke direction of the putter around the hinge axis. A golf putting data measuring device comprising an angle maintaining bolt, wherein the tip portion protrudes toward the main body while screw-coupled to the mounting support, thereby supporting the main body and maintaining the mounting support at a predetermined angle, and allowing the angle of the mounting support relative to the main body to be adjusted by adjusting the protruding length through forward or reverse rotation. Claim 2 A golf putting data measuring device according to claim 1, wherein the mounting portion comprises: a grip holder extending to a predetermined length to support the grip of the putter; and at least one mounting clamp provided on the grip holder to secure the putter to the grip holder while securing the putter in a manner that wraps around the grip of the putter or the shaft of the putter. Claim 3 A golf putting data measuring device according to claim 1, wherein the driving unit comprises: a mounting unit driving shaft connected to the mounting unit and extended to a predetermined length; a driving motor connected to the mounting unit driving shaft and operated by power to rotate the mounting unit driving shaft in a forward or reverse direction; and a clutch provided on the mounting unit driving shaft to transmit rotational force by the driving motor to the mounting unit while interrupting the transmission of the rotational force. Claim 4 A golf putting data measuring device according to claim 3, wherein the clutch transmits the rotational force of the drive motor to the mounting part to rotate the mounting part together with the putter at a predetermined angle, and then cuts off the rotational force of the drive motor while causing the mounting part to free fall together with the putter. Claim 5 A golf putting data measuring device according to claim 3, wherein the driving unit further comprises a weight provided on the mounting unit to provide weight, and provided on the opposite side of the putter around the driving shaft of the mounting unit to rotate the mounting unit while performing a seesaw motion by the rotation of the putter. Claim 6 delete Claim 7 delete Claim 8 A golf putting data measuring device according to claim 1, further comprising an alignment unit provided in the main body to visually provide an alignment line for aligning the head of the putter or the golf ball. Claim 9 A golf putting data measuring device according to claim 8, wherein the alignment part comprises: an alignment frame extending toward the rear of the putter head while fixed to the main body; and an alignment pointer installed on the alignment frame that irradiates light toward the putter head. Claim 10 In claim 9, the alignment unit further comprises a golf ball indicator that irradiates light at the position where the golf ball is placed while installed on the main body, a golf putting data measuring device. Claim 11 A golf putting data measuring device according to claim 1, further comprising height-adjustable feet installed at the lower end of the main body to support the floor surface and configured in multiple numbers to allow horizontal adjustment of the main body. Claim 12 A golf putting data measuring device comprises: a main body; a mounting part connected to the main body for fixing a putter at a predetermined angle; a driving part for implementing a stroke of the putter while rotating the mounting part; and an angle adjusting part for adjusting the angle of the mounting part while rotating the mounting part in a direction perpendicular to the stroke direction of the putter, wherein the angle adjusting part supports the mounting part together with the driving part in a state rotatably installed on the upper part of the main body via a hinge axis, and supports the mounting part at a predetermined angle while rotating around the hinge axis in a direction perpendicular to the stroke direction of the putter; and an angle maintaining bolt that is screw-coupled to the mounting part support, has a tip protruding toward the main body to support the main body while maintaining the mounting part support at a predetermined angle, and allows for angle adjustment of the mounting part support relative to the main body by adjusting the protrusion length through forward or reverse rotation, and a golf putting data measuring method for implementing a stroke of the putter to acquire putting data of a golf ball by the putter, wherein the putter is mounted on the mounting part. A method for measuring putting data for golf, comprising: a step of adjusting the angle of the mounting member to an angle for measuring the putting data through the angle adjustment unit; a step of fixing the putter to the angle-adjusted mounting member while adjusting the grip height of the putter relative to the ground; and a step of measuring the putting data while rotating the mounting member together with the putter through the driving unit.