Clamp device, electronic device assembly, and bicycle

The clamping device addresses the inflexibility of existing clamp devices by providing adjustable and secure attachment of electronic devices to bicycle handlebars, ensuring optimal positioning and stability.

JP2025137192AActive Publication Date: 2025-09-19YAMAHA MOTOR CO LTD
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Patent Information

Application Number
JP2024036254
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-08
Publication Date
2025-09-19
Estimated Expiration
2044-03-08

AI Technical Summary

Technical Problem

Existing clamp devices for attaching electronic devices to bicycle handlebars lack flexibility in positioning, making it difficult to optimally place buttons and other components, limiting their functionality and stability.

Method used

A clamping device with adjustable first and second clamping members, allowing for movement and fixation along the handlebar's length direction, and a fastening mechanism to adjust the distance between engagement portions, ensuring stable and adjustable attachment of electronic devices.

Benefits of technology

The clamping device enables easy adjustment and secure fixation of electronic devices on handlebars, enhancing stability and reducing the risk of plastic deformation while allowing optimal placement of components like buttons and lights.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a clamp device that enables positioning of an electronic device attached to a handle bar and is able to facilitate a task for the positioning.SOLUTION: A clamp device includes fastening means for fixing a distance between a first adjustment portion 33 and a second adjustment portion 43 in a circumferential direction of a handle bar 4. A first engaging portion 32 and a second engaging portion 42 are located between a first engaged portion 72A and a second engaged portion 72B in a tangent direction of an outer peripheral surface of the handle bar 4. The fastening means is configured to allow an adjustment to a length W2 between the first adjustment portion 33 and the second adjustment portion 43. Due to a reduction in the length W2 between the first adjustment portion 33 and the second adjustment portion 43, a length W1 between the first engagement portion 32 and the second engagement portion 42 increases.SELECTED DRAWING: Figure 4
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Description

[Technical Field]

[0001] The present disclosure relates to a clamping device, an electronics assembly, and a bicycle. [Background technology]

[0002] Electronic devices that display the vehicle speed, distance traveled, time, etc. are sometimes attached to the handlebars of a bicycle. In Patent Document 1, such electronic devices are detachable from a clamp device (referred to as a component mounting device in Patent Document 1) that is attached to the handlebars. Also, as shown in Patent Document 2, electronic devices attached to the handlebars of an electrically assisted bicycle may display the assist mode, remaining battery power, etc., and may have a switch (button) for switching the assist mode. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Registered Utility Model No. 2544082 [Patent Document 2] Patent Publication No. 2015-85919 Summary of the Invention [Problem to be solved by the invention]

[0004] In addition to the electronic device that displays the bicycle speed and other information, various other components and devices may be attached to the handlebars of a bicycle. For example, a clamp device for holding a mobile phone or a lighting device may be attached to the handlebars. This limits the flexibility of the clamp device's position, making it impossible to attach the electronic device in an optimal position. For example, a button may be located far from the grips.

[0005] An object of the present disclosure is to provide a clamping device that allows the position of an electronic device to be adjusted and that can facilitate the work of adjusting the position. [Means for solving the problem]

[0006] (1) The clamping device proposed in this disclosure is a clamping device for attaching an electronic device having a first engaged portion and a second engaged portion to a handlebar. The clamping device includes a first clamping member having a first inner circumferential surface along a portion of the outer circumferential surface of the handlebar, a first engaging portion engageable with the first engaged portion to allow movement of the first engaged portion in the length direction of the handlebar, and a first adjustment portion; a second clamping member having a second inner circumferential surface along another portion of the outer circumferential surface of the handlebar, a second engaging portion engageable with the second engaged portion to allow movement of the second engaged portion in the length direction of the handlebar, and a second adjustment portion; and fastening means for fixing the distance between the first adjustment portion and the second adjustment portion in the circumferential direction of the handlebar. The first engagement portion and the second engagement portion are located between the first engaged portion and the second engaged portion in the tangential direction of the outer circumferential surface of the handlebar. The fastening means is configured to allow adjustment of the distance between the first adjustment portion and the second adjustment portion. The distance between the first engagement portion and the second engagement portion increases due to the reduction in the distance between the first adjustment portion and the second adjustment portion.

[0007] With this clamp device, the relative positions of the clamp device and the handlebar, and the clamp device and the electronic device can both be adjusted or fixed by operating the fastening means, which makes it easier to adjust these positions.

[0008] (2) The clamping device of (1) may further include a connecting shaft. The first clamping member and the second clamping member each include a first connected portion and a second connected portion located between the first engaging portion and the second engaging portion in the tangential direction of the outer circumferential surface of the handlebar. The connecting shaft connects the first connected portion and the second connected portion so as to allow the distance between the first engaging portion and the second engaging portion to be increased or decreased. This structure prevents the two clamping members from separating. As a result, the clamping device is easier to handle.

[0009] (3) In the clamp device of (2), the connecting shaft protrudes from the first connectable portion in the length direction of the handlebar. A connecting hole into which the connecting shaft is fitted may be formed in the second connectable portion. The connecting hole may be larger than the connecting shaft in the tangential direction of the outer circumferential surface of the handlebar.

[0010] (4) In the clamp device of (3), the distance between the connecting shaft and the outer peripheral surface of the handlebar may be smaller than the distance between the outer peripheral surface of the handlebar and a plane that is tangent to the outer peripheral surface of the handlebar and passes through the first engagement portion and the second engagement portion. This arrangement of the connecting shaft allows the size of the connecting hole in the tangent direction of the outer peripheral surface of the handlebar to be reduced. As a result, a decrease in the strength of the second clamp member can be suppressed.

[0011] (5) In the clamping device described in any one of (1) to (4), the first adjustment part, the contact surface between the first inner peripheral surface and the outer peripheral surface of the handlebar, and the first engagement part function as a force point, a fulcrum, and a point of action, respectively. The second adjustment part, the contact surface between the second inner peripheral surface and the outer peripheral surface of the handlebar, and the second engagement part function as a force point, a fulcrum, and a point of action, respectively.

[0012] (6) In the clamping device described in any one of (1) to (5), the distance from the outer surface of the handlebar to a plane that is tangent to the outer surface of the handlebar and passes through the first engagement portion and the second engagement portion may be greater than the distance from the outer surface of the handlebar to a plane that is tangent to the outer surface of the handlebar and passes through the first adjustment portion and the second adjustment portion. This makes it possible to prevent excessive force from acting between the first engagement portion of the first clamping member and the first engaged portion of the electronic device, and between the second engagement portion of the second clamping member and the second engaged portion of the electronic device, when the positions of the two adjustment portions are fixed by the fastening means.

[0013] (7) In the clamp device described in any one of (1) to (6), the distance between the first engagement portion and the second engagement portion in a direction tangent to the outer peripheral surface of the handlebar and passing through the first engagement portion and the second engagement portion may be greater than the distance between the first adjustment portion and the second adjustment portion in a direction tangent to the outer peripheral surface of the handlebar and passing through the first adjustment portion and the second adjustment portion. This increases the distance between the first engagement portion and the second engagement portion, improving the stability of the clamp device in supporting an electronic device. Furthermore, the shorter the distance between the first adjustment portion and the second adjustment portion, the less noticeable the fastening means is, due to the handlebar.

[0014] (8) In the clamp device described in any one of (1) to (7), when the angular position of the intermediate position between the first engagement portion and the second engagement portion is 0 degrees in the circumferential direction of the handlebar, at least one of the first adjustment portion and the second adjustment portion may be positioned in a range of 90 degrees to 270 degrees. This makes it possible to prevent a decrease in strength of the first clamp member caused by the first adjustment portion and the first engagement portion being too close. Also, it is possible to prevent a decrease in strength of the second clamp member caused by the second adjustment portion and the second engagement portion being too close.

[0015] (9) In the clamping device described in any one of (1) to (8), when the angular position of the midpoint between the first engagement portion and the second engagement portion is 0 degrees in the circumferential direction of the handlebar, the midpoint between the first adjustment portion and the second adjustment portion may be located in the range of 135 degrees to 225 degrees. This allows the sizes of the first clamping member and the second clamping member to be close to each other. As a result, the difference in stress acting on these two clamping members can be reduced.

[0016] (10) In the clamping device described in any one of (1) to (9), a plane that is tangent to the outer surface of the handlebar and passes through the first engagement portion and the second engagement portion may be substantially parallel to the direction in which the first adjustment portion and the second adjustment portion face each other. This allows the fastening means to be operated from the front or rear of the clamping device when the clamping device is attached to the handlebar. As a result, it is possible to easily adjust the positions of the two adjustment portions using the fastening means.

[0017] (11) In the clamping device described in any one of (1) to (9), a plane that is along a tangent to the outer surface of the handlebar and passes through the first engagement portion and the second engagement portion may intersect with the direction in which the first adjustment portion and the second adjustment portion face each other.

[0018] (12) The present disclosure proposes an electronic device assembly including the clamp device according to any one of (1) to (11) and the electronic device.

[0019] (13) The bicycle proposed in this disclosure includes the clamp device described in any one of (1) to (11), the electronic device, and the handlebar. [Brief explanation of the drawings]

[0020] [Figure 1] 1 is a side view of a bicycle proposed in the present disclosure. [Figure 2] 1 is a perspective view of an electronics assembly including a clamping device and electronic equipment proposed in the present disclosure; [Figure 3]FIG. 1 is a perspective view of an electronics assembly. [Figure 4] FIG. [Figure 5] FIG. [Figure 6A] FIG. [Figure 6B] FIG. 4 is an enlarged view of an engagement portion of the clamp device. [Figure 7] FIG. 10 is a perspective view showing another example of a clamping device. [Figure 8] FIG. 8 is a side view of the clamping device shown in FIG. 7. DETAILED DESCRIPTION OF THE INVENTION

[0021] The clamping device and bicycle proposed in this disclosure will be described below. Figure 1 is a side view of an example of a bicycle proposed in this disclosure. Figures 2 to 6B are views showing an example of a clamping device proposed in this disclosure.

[0022] In the following description, the Y1 and Y2 directions shown in Figure 2 and elsewhere will be referred to as the front and rear, respectively. The X1 and X2 directions shown in these figures will be referred to as the right and left, respectively, and the Z1 and Z2 directions will be referred to as the up and down, respectively. The Y1-Y2 direction will be referred to as the front-to-back direction, and the Z1-Z2 direction will be referred to as the up-and-down direction. The X1-X2 direction will be referred to as the left-to-right direction, or the length direction of the handlebars, which will be described later. Note that because the clamp device may be attached at an angle to the bicycle handlebars, the front-to-back direction (Y1-Y2 direction), left-to-right direction (X1-X2 direction), and up-and-down direction (Z1-Z2 direction) shown in Figure 2 and elsewhere may not completely coincide with the front-to-back direction, left-to-right direction, and up-and-down direction of the bicycle.

[0023] [bicycle] 1, bicycle 10 has a body frame 1, a front wheel 2, a rear wheel 3, handlebars 4, a saddle 5, cranks 6, and pedals 7. Bicycle 10 is an electrically assisted bicycle and may have a drive unit 8 and a battery 9 that supplies power to drive unit 8.

[0024] As shown in Figure 1, the body frame 1 has a head pipe 11 at its front end. The head pipe 11 rotatably supports a steering shaft. A handlebar 4 is fixed to the upper part of the steering shaft. Grips 4a are provided on the right and left ends of the handlebar 4. A front fork 23, which rotatably supports a front wheel 2, is fixed to the lower part of the steering shaft.

[0025] 1 , the body frame 1 may have, for example, a top frame 12, a down frame 13, a seat tube 14, seat stays 15, chain stays 16, and a bracket 17. The top frame 12 extends obliquely rearward and downward from the head pipe 11, and is connected at its rear end to the seat tube 14. The down frame 13 extends obliquely rearward and downward from the head pipe 11, and is disposed below the top frame 12. The rear end of the down frame 13 is connected to the bracket 17.

[0026] The seat post 21 extends upward from the seat tube 14 and supports the saddle 5 disposed above it. A bracket 17 is connected to the lower end of the seat tube 14. The seat stays 15 extend diagonally rearward and downward from the seat tube 14. The chain stays 16 extend rearward from the bracket 17. The lower ends (rear ends) of the seat stays 15 and the rear ends of the chain stays 16 are connected. The rear wheel 3 is rotatably supported at the connection point.

[0027] The crank 6 has a crankshaft extending in the width direction of the vehicle body and a crank arm 6a that rotates around the crankshaft. The pedals 7 are attached to the ends of the crank arms 6a. A chain 24 is stretched between a sprocket provided on the crankshaft and a sprocket provided on the axle of the rear wheel 3.

[0028] The drive unit 8 includes an electric motor and a reduction mechanism, and is held by a bracket 17. Power is transmitted to the drive unit 8 via the crank 6 and the sprocket. Therefore, the pedaling force acting on the pedal 7 (the force with which the rider presses down on the pedal 7) and the torque output by the drive unit 8 are transmitted to the rear wheel 3 via the chain 24.

[0029] It should be noted that the bicycle proposed in this disclosure does not necessarily have to have this drive unit 8. Furthermore, the structure of the body frame 1 is not necessarily limited to the example shown in Figure 1. For example, the body frame 1 does not necessarily have to have a top frame 12.

[0030] 2, a clamp device 100 is attached to the handlebar 4. The electronic device 70 is supported by the handlebar 4 via the clamp device 100. As will be explained later, the electronic device 70 is detachable from the clamp device 100. The clamp device 100 and the electronic device 70 constitute an electronic device assembly.

[0031] [Electronic equipment] The electronic device 70 may be connected via a cable to a control device (not shown) or sensor mounted on the bicycle 10. The electronic device 70 includes a display device 71a, and displays information received from the control device or sensor, specifically information indicating the status of the bicycle 10, on the display device 71a. Information displayed on the display device 71a may be, for example, the bicycle speed, distance traveled, or number of pedal revolutions. The electronic device 70 may also display information related to the drive unit 8, such as the remaining charge of the battery 9 or the driving mode of the drive unit 8, as information indicating the status of the bicycle 10. Driving modes include, for example, a strong mode in which the torque output by the drive unit 8 is relatively high, a weak mode in which the torque is relatively low, and a medium mode in which the torque is intermediate between the strong mode and the weak mode.

[0032] A control device mounted on bicycle 10 may control drive unit 8 based on output signals from various sensors. Information indicating the state of bicycle 10 described above may then be transmitted from this control device to electronic device 70. Alternatively, output signals from various sensors mounted on bicycle 10 (e.g., a speed sensor or pedal force sensor) may be transmitted directly to electronic device 70. Based on the output signals from the sensors, electronic device 70 may then output a signal (e.g., a current command value) for controlling the electric motor of drive unit 8 to a drive circuit that supplies power to the electric motor.

[0033] 2, the electronic device 70 may have a plurality of buttons 74a to 74b. The buttons 74a to 74b may be provided on the front surface of the main body 71 of the electronic device 70.

[0034] 3, electronic device 70 has a first engaged portion 72A and a second engaged portion 72B on its bottom surface 71b. Engaged portions 72A and 72B protrude downward from bottom surface 71b of electronic device 70. These two engaged portions 72A and 72B are spaced apart in the front-to-rear direction and face each other.

[0035] [Clamping device] As shown in FIGS. 4 and 5, the clamp device 100 has a first clamp member 30 and a second clamp member 40 that are fitted together.

[0036] The first clamping member 30 has a first inner peripheral surface 31a that follows a portion of the outer peripheral surface of the handlebar 4. The second clamping member 40 has a second inner peripheral surface 41a that follows another portion of the outer peripheral surface of the handlebar 4. The handlebar 4 may have a circular cross section. The inner peripheral surfaces 31a, 41a may be arc-shaped so as to follow the outer peripheral surface of the handlebar 4.

[0037] The inner circumferential surfaces 31a and 41a are arranged to face each other and sandwich the outer circumferential surface of the handlebar 4 in the front-to-rear direction. The diameters of the inner circumferential surfaces 31a and 41a and the diameter of the outer circumferential surface of the handlebar 4 do not have to be completely the same. For example, there may be a partial gap between the inner circumferential surfaces 31a and 41a and the outer circumferential surface of the handlebar 4.

[0038] 5, the inner circumferential surface 41a of the second clamping member 40 may have an anti-slip sheet 41b. Similarly, the inner circumferential surface 31a of the first clamping member 30 may have an anti-slip sheet.

[0039] [Clamping member engagement part] 4, the first clamp member 30 has a first engaging portion 32 at the top of the first clamp member 30 that can engage with a first engaged portion 72A of the electronic device 70. Similarly, the second clamp member 40 has a second engaging portion 42 at the top of the second clamp member 40 that can engage with a second engaged portion 72B of the electronic device 70.

[0040] As shown in Fig. 3, the two engaged portions 72A and 72B of the electronic device 70 are formed to face each other in the tangential direction of the outer peripheral surface of the handlebar 4 (the direction of the tangential line passing through the upper end of the outer peripheral surface, the Y1-Y2 direction in Fig. 3). The inner peripheral surfaces 31a and 41a of the clamp members 30 and 40 are curved along the outer peripheral surface of the handlebar 4. Therefore, the "tangential direction of the outer peripheral surface of the handlebar 4" is also the tangential direction of the cylindrical surface formed by the inner peripheral surfaces 31a and 41a.

[0041] 6A, the engaging portions 32 and 42 of the clamp members 30 and 40 are disposed between and engage with the engaged portions 72A and 72B of the electronic device 70 in the tangential direction of the outer circumferential surface of the handlebar 4. This restricts relative movement between the engaging portions 32 and 42 and the engaged portions 72A and 72B in the tangential direction of the outer circumferential surface of the handlebar 4. On the other hand, relative movement between the engaged portions 72A and 72B and the engaging portions 32 and 42 in the length direction (X1-X2 direction) of the handlebar 4 is permitted.

[0042] As shown in FIG. 6B, the engaged portions 72A and 72B of the electronic device 70 may be substantially L-shaped. The engaging portions 32 and 42 of the clamp device 100 may also be substantially L-shaped. The convex portions 32a and 42a of the engaging portions 32 and 42 may fit into the concave portions 72c formed in the engaged portions 72A and 72B. This allows relative movement between the engaged portions 72A and 72B and the engaging portions 32 and 42 in the length direction of the handlebar 4. On the other hand, their relative movement in the circumferential and tangential directions of the outer circumferential surface of the handlebar 4 is restricted.

[0043] [Clamping member adjustment part] As shown in Fig. 6A, the first clamping member 30 has, at its lowest part, a first adjustment portion 33. Furthermore, the second clamping member 40 has, at its lowest part, a second adjustment portion 43. These two adjustment portions 33, 43 face each other in the tangential direction of the outer peripheral surface of the handlebar 4 (the direction of the tangential line passing through the lower end of the outer peripheral surface, the Y1-Y2 direction in Fig. 6A).

[0044] The clamp device 100 has a fastening means for fixing the distance W2 (see FIG. 6A) between the adjustment parts 33 and 43. The clamp device 100 may include, for example, a bolt 51 and a nut 52 as the fastening means. The nut 52 is held by the second adjustment part 43. The first adjustment part 33 has a hole 33c (see FIG. 4) into which the bolt 51 is inserted. The bolt 51 is inserted into this hole 33c from the rear side of the first adjustment part 33 (the side opposite the second adjustment part 43) and fastened to the nut 52. This fixes the distance W2 between the adjustment parts 33 and 43.

[0045] When the second clamping member 40 is molded from resin, the nut 52 may be held inside the second adjustment part 43 by insert molding. Alternatively, an accommodating recess may be formed in the second adjustment part 43, and the nut 52 may be inserted into this accommodating recess.

[0046] [Movement of clamping member due to operation of fastening means] When the bolt 51 is tightened, the distance W2 (see FIG. 6A) between the adjustment portions 33 and 43 decreases. Conversely, when the bolt 51 is loosened, the distance W2 between the adjustment portions 33 and 43 increases. Also, the distance W1 (see FIG. 6A) between the first engagement portion 32 and the second engagement portion 42 in the tangential direction of the outer peripheral surface of the handlebar 4 (the direction of the tangential line passing through the upper end of the outer peripheral surface) is allowed to decrease and increase.

[0047] As shown in FIG. 6A , when the inner circumferential surfaces 31a and 41a sandwich the handlebar 4, the distance W1 between the first engaging portion 32 and the second engaging portion 42 increases due to the reduction in the distance W2 between the adjustment portions 33 and 43. As a result, the first engaging portion 32 and the second engaging portion 42 are pressed against the first engaged portion 72A and the second engaged portion 72B of the electronic device 70, respectively. The contact force (frictional force) between the engaging portions 32 and 42 and the engaged portions 72A and 72B increases, fixing the relative positions of the clamping device 100 and the electronic device 70 in the longitudinal direction of the handlebar 4. Furthermore, as the distance W2 between the adjustment portions 33 and 43 decreases, the contact force between the inner circumferential surfaces 31a and 41a and the outer circumferential surface of the handlebar 4 also increases. Therefore, the position of the clamping device 100 on the handlebar 4 is fixed.

[0048] Conversely, the increase in distance W2 between adjustment portions 33 and 43 allows the distance W1 between first engagement portion 32 and second engagement portion 42 to be reduced. This weakens the contact force between first engagement portion 32 and first engaged portion 72A and the contact force between second engagement portion 42 and second engaged portion 72B, thereby allowing the relative position of clamp device 100 and electronic device 70 to change in the length direction of handlebar 4. In addition, the contact force between inner circumferential surfaces 31a and 41a and the outer circumferential surface of handlebar 4 is also reduced. This also makes it possible to adjust the position of clamp device 100 on handlebar 4.

[0049] By using the clamp device 100 in this manner, it is possible to adjust both the relative position between the clamp device 100 and the electronic device 70 and the position of the clamp device 100 on the handlebar 4 by simply operating one fastening means (bolt 51).

[0050] The first clamping member 30 and the second clamping member 40 are connected only via a connecting shaft 53 (described later), and are not connected in any other locations. Therefore, when the distance W2 between the adjustment portions 33 and 43 is reduced or increased, the distance W1 between the engagement portions 32 and 42 is accordingly reduced or increased.

[0051] [Clamping device size] As shown in FIG. 3, the engaged portions 72A and 72B of the electronic device 70 extend in the length direction (X1-X2 direction) of the handlebar 4. The size of the engaged portions 72A and 72B in the length direction (X1-X2 direction) of the handlebar 4 is different from the size of the clamp members 30 and 40 in the same direction. More specifically, the size of the engaged portions 72A and 72B of the electronic device 70 is larger than the size of the clamp members 30 and 40 in the same direction. The engaging portions 32 and 42 are relatively slidable along the engaged portions 72A and 72B. The relative position of the electronic device 70 and the clamp device 100 can be adjusted within the range of the engaged portions 72A and 72B.

[0052] As shown in Fig. 3, the electronic device 70 has an operation unit 73 on its left side. The operation unit 73 extends downward from the main body 71. The operation unit 73 is provided with a switch 73a. The switch 73a may be, for example, a switch for switching the operation mode (strong mode, medium mode, weak mode) of the drive unit 8. The switch 73a may also be an on / off switch for the lighting device.

[0053] The engaged portions 72A and 72B are formed on the left side of the underside 71b of the main body 71. That is, the engaged portions 72A and 72B are formed closer to the operating unit 73. The centers of the engaged portions 72A and 72B in the left-right direction (the length direction of the handlebar 4) are located to the left of the left-right center of the main body 71 of the electronic device 70. Such engaged portions 72A and 72B can prevent the clamp device 100 from supporting the right side of the main body 71 (a position far from the operating unit 73). As a result, for example, when the operating unit 73 is pressed, it is possible to prevent the support of the electronic device 70 from becoming unstable.

[0054] When the bolt 51 is tightened, a force from the fastening means (bolt 51) acts on the first adjustment part 33, causing the first adjustment part 33 to move forward (in the Y1 direction). At this time, the inner circumferential surface 31a is pressed against the outer circumferential surface of the handlebar 4. The first engagement part 32 also tries to move in the opposite direction to the first adjustment part 33, i.e., backward (in the Y2 direction), and is pressed against the first engaged part 72A of the electronic device 70. In other words, in this movement, the first adjustment part 33, the contact surface between the inner circumferential surface 31a and the outer circumferential surface of the handlebar 4, and the first engagement part 32 function as a force point, a fulcrum, and a point of action, respectively.

[0055] Furthermore, when the bolt 51 is tightened, a force is applied to the second adjustment part 43 from the fastening means (nut 52), and the second adjustment part 43 attempts to move rearward (in the Y2 direction). At this time, the inner circumferential surface 41a is pressed against the outer circumferential surface of the handlebar 4. Furthermore, the second engagement part 42 attempts to move in the opposite direction to the second adjustment part 43, i.e., forward (in the Y1 direction), and is pressed against the second engaged part 72B of the electronic device 70. In other words, in this movement, the second adjustment part 43, the contact surface between the inner circumferential surface 41a and the outer circumferential surface of the handlebar 4, and the second engagement part 42 function as a force point, a fulcrum, and a point of action, respectively.

[0056] [Engagement structure details] 6B, the rear surface 32b (surface facing the Y2 direction) of the base of the first engaging portion 32 is pressed against the tip of the convex portion 72e of the first engaged portion 72A. In addition, the base of the lower surface 32c of the convex portion 32a of the first engaging portion 32 is also pressed against the tip of the convex portion 72e of the first engaged portion 72A. The upper surface 32d of the first engaging portion 32 (the upper surface of the first clamping member 30) is pressed against the lower surface 71b of the electronic device 70.

[0057] Similarly, the front surface 42b (surface facing the Y1 direction) of the base of the second engaging portion 42 is pressed against the tip of the convex portion 72e of the second engaged portion 72B. In addition, the base of the lower surface 42c of the convex portion 42a of the second engaging portion 42 is also pressed against the tip of the convex portion 72e of the second engaged portion 72B. The upper surface 42d of the second engaging portion 42 (the upper surface of the second clamping member 40) is pressed against the lower surface 71b of the electronic device 70.

[0058] With this structure, when the distance W2 (see FIG. 6A) between the adjustment portions 33 and 43 is reduced, the clamp members 30 and 40 attempt to rotate along the outer circumferential surface of the handlebar 4 so as to increase the distance W1 between the two engagement portions 32 and 42. As a result, the contact force at each of the aforementioned locations increases. In particular, not only the contact force between the engagement portions 32 and 42 and the engagement receiving portions 72A and 72B in the front-to-rear direction but also the contact force in the up-down direction increases. The up-down contact force specifically refers to the contact force between the upper surfaces 32d and 42d of the engagement portions 32 and 42 and the lower surface 71b of the electronic device 70, and the contact force between the lower surfaces 32c and 42c of the engagement portions 32 and 42 and the engagement receiving portions 72A and 72B. This fixes the relative position of the electronic device 70 with respect to the clamp device 100 in the front-to-rear, up-down, and left-to-right directions.

[0059] 6B, the upper surfaces 32d and 42d of the engagement portions 32 and 42 have inclined surfaces 32e and 42e that gradually slope downward toward the tips of the protrusions 32a and 42a.

[0060] When the distance W2 between the adjustment portions 33 and 43 is increased, the clamp members 30 and 40 rotate along the outer circumferential surface of the handlebar 4 so that the distance W1 between the two engagement portions 32 and 42 decreases. As a result, the engagement portions 32 and 42 move away from the protrusions 72e of the engagement receiving portions 72A and 72B. At this time, the inclined surfaces 32e and 42e face directly upward (i.e., the inclined surfaces 32e and 42e come into contact with the lower surface 71b of the main body 71). This reduces the contact force between the engagement portions 32 and 42 and the lower surface 71b of the main body 71, allowing the electronic device 70 to move left and right relative to the clamp device 100. Furthermore, the clamp device 100 itself can also move left and right.

[0061] The clamp members 30 and 40 may be integrally molded from resin. In this case, the clamp members 30 and 40 can be slightly elastically deformed when the bolt 51 is tightened. As a result, loosening of the engagement between the engaging portions 32 and 42 and the engaged portions 72A and 72B due to, for example, vibration of the bicycle 10 can be prevented. Alternatively, the clamp members 30 and 40 may be made from metal.

[0062] [Connected part of clamping member and connecting shaft] 5, the first clamping member 30 and the second clamping member 40 each have a first connected portion 34 and a second connected portion 44. The connected portions 34, 44 are located between the two engaging portions 32, 42.

[0063] Specifically, in a plan view of the clamp device 100, the connectable portions 34, 44 are located between the engaging portions 32, 42. Furthermore, in a side view of the clamp device 100, the engaging portions 32, 42 and the connectable portions 34, 44 are located in the same direction relative to the outer circumferential surface of the handlebar 4. Specifically, a plane P1 (see FIG. 6A ) that passes through the engaging portions 32, 42 and is tangent to the outer circumferential surface of the handlebar 4 is located above the outer circumferential surface of the handlebar 4. Like the engaging portions 32, 42, the connectable portions 34, 44 are also located above the outer circumferential surface of the handlebar 4.

[0064] As shown in Figures 4 and 5, the two connectable portions 34, 44 are fitted together. Specifically, the second connectable portion 44 may have a recess 44b (see Figure 5). The first connectable portion 34 may be fitted into this recess 44b. The second connectable portion 44 may have two side walls 44c. The recess 44b may be formed between the two side walls 44c. The first connectable portion 34 overlaps with the side wall 44c of the second connectable portion 44 in a side view of the clamp device 100.

[0065] The clamp device 100 has a connecting shaft 53 (see FIG. 4) that connects the connectable parts 34, 44. The connecting shaft 53 is inserted into the connectable parts 34, 44 in the longitudinal direction of the handlebar 4. The connecting shaft 53 prevents the two clamp members 30, 40 from separating. This, for example, makes it easier to attach the clamp device 100 to the handlebar 4.

[0066] The first clamping member 30 and the second clamping member 40 can move around the connecting shaft 53 so that the distance W2 between the first adjustment portion 33 and the second adjustment portion 43 can be increased or decreased. The clamping members 30, 40 may be able to open so that the distance W2 between the adjustment portions 33, 44 becomes larger than the diameter of the outer circumferential surface of the handlebar 4. This further simplifies the process of attaching the clamping device 100 to the handlebar 4.

[0067] A hole 34a is formed in the first connected part 34, penetrating the first connected part 34. The connecting shaft 53 is inserted into this hole 34a. Both ends of the connecting shaft 53 protrude from the first connected part 34 in the length direction of the handlebar 4. A connecting hole 44a is also formed in the side wall part 44c of the second connected part 44, penetrating it. The connecting shaft 53 is inserted into this connecting hole 44a.

[0068] The relative positions of the first connectable portion 34 and the connecting shaft portion 53 are fixed. In other words, the connecting shaft portion 53 is held by the first connectable portion 34. The connecting shaft portion 53 may be press-fitted into the hole 34a of the first connectable portion 34. On the other hand, the size of the connecting hole 44a of the second connectable portion 44 is larger than that of the connecting shaft portion 53. More specifically, the width of the connecting hole 44a in a direction along a tangent to the outer circumferential surface of the handlebar 4 (a tangent passing through the upper end of the outer circumferential surface) and passing through the engagement portions 32, 42 (a direction along plane P1 in FIG. 6A ) is larger than that of the connecting shaft portion 53.

[0069] As a result, the connecting shaft 53 connects the connected portions 34, 44 and allows for change in the distance W1 between the first engaging portion 32 and the second engaging portion 42. In the example shown in Fig. 5 etc., the connecting hole 44a is a narrow hole that is elongated in the direction passing through the engaging portions 32, 42. However, the connecting hole 44a may also be circular or elliptical.

[0070] The connecting shaft portion 53 is a member formed separately from the first clamp member 30, and may be inserted into the holes 34a and 44a of the two connected portions 34 and 44 after the two connected portions 34 and 44 are combined.

[0071] [Connecting shaft position] In Fig. 6A, plane P1 is a plane that is along a tangent to the outer circumferential surface of the handlebar 4 (a plane that passes through the upper end of the outer circumferential surface) and passes through the two engagement portions 32, 42. More specifically, plane P1 is a plane that passes through the convex portions 32a, 42a of the engagement portions 32, 42. Also in Fig. 6A, plane P3 is a plane that is parallel to plane P1 and passes through the connecting shaft portion 53.

[0072] 6A, distance L3 from the outer peripheral surface of the handlebar 4 to plane P3 is shorter than distance L1 from the outer peripheral surface of the handlebar 4 to plane P1. With this arrangement of the connecting shaft 53, the distance between the outer peripheral surface of the handlebar 4 and the connecting shaft 53 is short, which reduces change in the relative position between the connecting shaft 53 and the connecting hole 44a of the second connectable part 44. As a result, a short connecting hole 44a is sufficient, making it easier to ensure the strength of the second connectable part 44.

[0073] [Positional relationship between engagement part and adjustment part] 6A, plane P2 is a plane that is along a tangent to the outer peripheral surface of the handlebar 4 (a tangent passing through the lower end of the outer peripheral surface) and passes through the two adjustment portions 33 and 43. More specifically, plane P2 is a plane that passes through the centers of the adjustment portions 33 and 43 (the centers of the bolt 51 and the nut 52).

[0074] The distance L1 from the outer peripheral surface of the handlebar 4 to the plane P1 is greater than the distance L2 from the outer peripheral surface of the handlebar 4 to the plane P2. This structure positions the electronic device 70 farther from the handlebar 4, making it easier to avoid interference between the electronic device 70 and other components attached to the handlebar 4. Furthermore, when the bolt 51 is tightly tightened, excessive force is prevented from acting between the engaging portions 32 and 42 of the clamp members 30 and 40 and the engaged portions 72A and 72B of the electronic device 70. As a result, for example, plastic deformation of the clamp members 30 and 40 can be suppressed. Unlike the example shown in FIG. 6A , the distance L1 from the outer peripheral surface of the handlebar 4 to the plane P1 may be smaller than the distance L2 from the outer peripheral surface of the handlebar 4 to the plane P2.

[0075] 6A, the distance W1 between the first engagement portion 32 and the second engagement portion 42 is greater than the distance W2 between the first adjustment portion 33 and the second adjustment portion 43. The distance W1 between the first engagement portion 32 and the second engagement portion 42 is preferably greater than the diameter of the outer circumferential surface of the handlebar 4. This increases the distance W1, improving the stability with which the clamp device 100 supports the electronic device 70. On the other hand, the distance W2 between the first adjustment portion 33 and the second adjustment portion 43 is preferably smaller than the diameter of the outer circumferential surface of the handlebar 4. This allows the handlebar 4 to prevent the fastening means (bolt 51 and nut 52) ​​from being conspicuous.

[0076] As shown in Figure 6A, line B1 is a line that passes through the axis Ax of the handlebar 4 and the midpoint between the first engagement portion 32 and the second engagement portion 42. When the angular position of line B1 in the circumferential direction of the handlebar 4 is taken as 0 degrees, at least one of the two adjustment portions 33 and 34 is preferably located in the range of 90 degrees to 270 degrees. In other words, at least one of the two adjustment portions 33 and 34 is preferably located between line B2 (the line indicating the 90-degree position) and line B3 (the line indicating the 270-degree position) in the circumferential direction of the handlebar 4.

[0077] As shown in Figure 6A, at least one of the two adjustment units 33, 34 is preferably located in the range of 135 degrees to 225 degrees. That is, at least one of the two adjustment units 33, 34 is preferably located between line B4 (the line indicating the 135-degree position) and line B5 (the line indicating the 225-degree position) in the circumferential direction of the handlebar 4. With this structure, the sizes of the two clamping members 30, 40 become closer to each other. As a result, the difference in stress acting on the two clamping members 30, 40 can be reduced.

[0078] In the example shown in FIG. 6A , the two adjustment portions 33 and 43 and the fastening means (bolt 51 and nut 52) ​​are located in the range from 135 degrees (line B4) to 225 degrees (line B5). The midpoints of the adjustment portions 33 and 34 are located on the opposite side of the axis Ax of the handlebar 4 from the midpoints of the engagement portions 32 and 42. This means that the engagement portions 32 and 42, to which a large force is applied, are located away from the hole 33c formed in the first adjustment portion 33 for inserting the bolt 51 and the gap inside the second adjustment portion 43 in which the nut 52 is disposed. This prevents a decrease in the strength of the engagement portions 32 and 42 (the rigidity of the resin around the engagement portions 32 and 42) due to the presence of the gaps for the hole 33c and the nut 52 nearby.

[0079] 6A, the plane P1 passing through the first engagement portion 32 and the second engagement portion 42 may be substantially parallel to the direction in which the first adjustment portion 33 and the second adjustment portion 43 face each other (the direction in which the bolt 51 is inserted). With this structure, the bolt 51 is easily visible when tightening the fastening means (specifically, the bolt 51), which facilitates the tightening operation. For example, the head of the bolt 51 is exposed to the rear, which facilitates the tightening operation. Note that "substantially parallel" here also includes the case in which the plane P1 and the direction in which the adjustment portions 33 and 43 face each other are not completely parallel, but are tilted, for example, at an angle ranging from 0 to 10 degrees.

[0080] [Another example of a clamping device] 7 and 8 are diagrams showing modified examples of the clamp device proposed in the present disclosure. The following description will focus on the differences between the clamp device 200 shown in these figures and the clamp device 100 shown in Figures 2 to 6B. Items not described for the clamp device 200 may be the same as those for the clamp device 100.

[0081] 7, the clamping device 200 has a first clamping member 230 and a second clamping member 240. The first clamping member 230 has a first engaging portion 232, an inner circumferential surface 231a formed along the outer circumferential surface of the handlebar 4, a first adjusting portion 233, and a first connected portion 234. The second clamping member 240 has a second engaging portion 242, an inner circumferential surface 241a formed along the outer circumferential surface of the handlebar 4, a second adjusting portion 243, and a second connected portion 244.

[0082] As shown in Figure 8, the inner peripheral surface 231a of the first clamping member 230 is formed so as to fit along only about 1 / 4 of the outer peripheral surface of the handlebar 4. The first adjustment portion 233 is located below the first engagement portion 232. When the clamping device 200 is viewed from above, the convex portion 232a of the first engagement portion 232 overlaps with the first adjustment portion 233. On the other hand, the inner peripheral surface 241a of the second clamping member 240 surrounds about 3 / 4 of the outer peripheral surface of the handlebar 4. The second adjustment portion 243 is located below the first adjustment portion 233.

[0083] As shown in FIG. 8, the first engagement portion 232 and the second engagement portion 242 are spaced apart in the front-to-rear direction (the Y1-Y2 direction in FIG. 8). Meanwhile, unlike the example shown in FIG. 2 and other figures, the first adjustment portion 233 and the second adjustment portion 243 face each other in the up-down direction (the Z1-Z2 direction in FIG. 8). In other words, a plane P1 that is tangent to the outer peripheral surface of the handlebar 4 and passes through the first engagement portion 232 and the second engagement portion 242 intersects with the direction in which the adjustment portions 233 and 243 face each other. More specifically, the direction in which the plane P1 and the adjustment portions 233 and 243 face each other may be substantially perpendicular. The term "substantially perpendicular" includes not only cases in which the angle between the plane P1 and the direction in which the adjustment portions 233 and 243 face each other, but also cases in which the angle is between 85 degrees and 95 degrees, for example.

[0084] The clamp device 200 has a fastening means for fixing the distance W2 (see FIG. 8 ) between the adjustment portions 233 and 243. The clamp device 200 may include a bolt 51 and a nut 52 as the fastening means. The nut 52 may be held by the first adjustment portion 233. The second adjustment portion 243 may have a hole formed therein into which the bolt 51 is inserted. The bolt 51 is inserted into this hole from the underside of the second adjustment portion 243 (the side opposite the first adjustment portion 233) and fastened to the nut 52. This fixes the distance W2 between the adjustment portions 233 and 243. Such a fastening means can, for example, prevent other parts or devices attached to the handlebar 4 from interfering with the work of fastening the bolt 51.

[0085] Similar to the line B1 shown in FIG. 6A, the line B1 shown in FIG. 8 is a line that passes through the axis Ax of the handlebar 4 and the midpoint between the first engagement portion 232 and the second engagement portion 242. When the angular position of the line B1 in the circumferential direction of the handlebar 4 is taken as 0 degree, the second adjustment portion 243 of the two adjustment portions 233 and 243 is located in the range of 90 degrees to 270 degrees. In other words, the second adjustment portion 243 is located between the line B2 (the line indicating the 90-degree position) and the line B3 (the line indicating the 270-degree position) in the circumferential direction of the handlebar 4. On the other hand, the first adjustment portion 233 is located in a range exceeding 270 degrees (line B3).

[0086] As shown in Fig. 7, a recess 231c is formed between the protrusion 232a of the first engagement portion 232 and the first adjustment portion 233. The protrusion of the first engaged portion 72A of the electronic device 70 fits into this recess 231c. The nut 52 is located below the recess 231c. In the first clamp member 30 shown in Fig. 6A, the first adjustment portion 33 is located below the handlebar 4, so such a recess is not necessary.

[0087] The movements of the first clamp member 230 and the second clamp member 240 are similar to those of the clamp members 30 and 40 of the clamp device 100 described above.

[0088] That is, when the bolt 51 is tightened, the distance W2 (see FIG. 8) between the adjustment portions 233 and 243 is reduced. Conversely, when the bolt 51 is loosened, the distance W2 between the adjustment portions 233 and 243 is allowed to increase. Also, the distance W1 (see FIG. 8) between the first engagement portion 232 and the second engagement portion 242 in the tangential direction of the outer circumferential surface of the handlebar 4 is allowed to decrease and increase.

[0089] When the inner circumferential surfaces 231a and 241a sandwich the handlebar 4, the distance W1 between the first engagement portion 32 and the second engagement portion 42 increases due to the reduction in the distance W2 of the adjustment portions 233 and 243. This increases the contact force between the inner circumferential surfaces 231a and 241a and the outer circumferential surface of the handlebar 4. This fixes the position of the clamping device 100 on the handlebar 4. Furthermore, the relative positions of the clamping device 100 and the electronic device 70 in the longitudinal direction of the handlebar 4 are fixed.

[0090] Conversely, the increase in the distance W2 between the adjustment portions 233 and 243 allows the distance W1 between the first engaging portion 32 and the second engaging portion 42 to be reduced. This weakens the contact force between the first engaging portion 32 and the first engaged portion 72A and the contact force between the second engaging portion 42 and the second engaged portion 72B. As a result, the relative positions of the clamping device 100 and the electronic device 70 in the length direction of the handlebar 4 can be changed. In addition, the contact force between the inner circumferential surfaces 231a and 241a and the outer circumferential surface of the handlebar 4 is also reduced. This makes it possible to adjust the position of the clamping device 100 in the length direction of the handlebar 4.

[0091] The first clamp member 230 and the second clamp member 240 are connected only via the connecting shaft portion 53, and are not connected at any other portion. Therefore, when the distance W2 between the adjustment portions 233 and 243 is reduced or increased, the distance W1 between the engagement portions 232 and 242 is accordingly reduced or increased.

[0092] [summary] (1) The clamp devices 100 and 200 proposed in this disclosure are clamp devices 100 and 200 for attaching an electronic device 70 having a first engaged portion 72A and a second engaged portion 72B to a handlebar 4. The clamping devices 100 / 200 comprise first clamping members 30 / 230 each having a first inner circumferential surface 31a / 231a that fits along part of the outer circumferential surface of the handlebar 4, a first engagement portion 32 / 232 that can engage with the first engaged portion 72A to allow movement of the first engaged portion 72A in the longitudinal direction of the handlebar 4, and a first adjustment portion 33 / 233; second clamping members 40 / 240 each having a second inner circumferential surface 41a that fits along another part of the outer circumferential surface of the handlebar 4, a second engagement portion 42 / 242 that can engage with the second engaged portion 72B to allow movement of the second engaged portion 72B in the longitudinal direction of the handlebar 4, and a second adjustment portion 43 / 243; and fastening means that fix the distance between the first adjustment portion 33 / 233 and the second adjustment portion 43 / 243 in the circumferential direction of the handlebar 4. The first engaging portions 32·232 and the second engaging portions 42·242 are located between the first engaged portions 72A and the second engaged portions 72B in the tangential direction of the outer peripheral surface of the handlebar 4. The fastening means is configured to allow adjustment of the distance W2 between the first adjusting portions 33·233 and the second adjusting portions 43·243. As the distance W2 between the first adjusting portions 33·233 and the second adjusting portions 43·243 decreases, the distance W1 between the first engaging portions 32·232 and the second engaging portions 42·242 increases.

[0093] According to this clamp device 100 / 200, by operating the fastening means, it is possible to adjust or fix both the relative position between the clamp device 100 / 200 and the handlebar 4, and the relative position between the clamp device 100 / 200 and the electronic device 70. This makes it possible to easily adjust these positions.

[0094] (2) The clamping device 100 / 200 of (1) may further include a connecting shaft 53. The first clamping member 30 / 230 and the second clamping member 40 / 240 each include a first connected portion 34 / 234 and a second connected portion 44 / 244 located between the first engaging portion 32 / 232 and the second engaging portion 42 / 242 in the tangential direction of the outer circumferential surface of the handlebar 4. The connecting shaft 53 connects the first connected portion 34 / 234 and the second connected portion 44 / 244 so as to allow the distance W1 between the first engaging portion 32 / 232 and the second engaging portion 42 / 242 to be increased or decreased. This structure prevents the two clamping members 30 / 40 from separating. As a result, the clamping device 100 / 200 is easy to handle.

[0095] (3) In the clamp devices 100 and 200 of (2), the connecting shaft 53 protrudes from the first connectable parts 34 and 234 in the longitudinal direction of the handlebar 4. A connecting hole 44a into which the connecting shaft 53 is fitted may be formed in the second connectable parts 44 and 244. The connecting hole 44a may be larger than the connecting shaft 53 in the tangential direction of the outer circumferential surface of the handlebar 4.

[0096] In the clamp devices 100 / 200 of (4)(3), the distance L3 between the connecting shaft 53 and the outer peripheral surface of the handlebar 4 may be smaller than the distance L1 between the outer peripheral surface of the handlebar 4 and a plane P1 that is tangent to the outer peripheral surface of the handlebar 4 and passes through the first engagement portions 32 / 232 and the second engagement portions 42 / 242. This arrangement of the connecting shaft 53 makes it possible to reduce the size of the connecting hole 44a in the tangential direction of the outer peripheral surface of the handlebar 4. As a result, it is possible to prevent a decrease in the strength of the second clamp members 40 / 240 due to the connecting hole 44a.

[0097] (5) In the clamp device 100 / 200 described in any one of (1) to (4), the first adjustment parts 33 / 233, the contact surfaces between the first inner circumferential surfaces 31a / 231a and the outer circumferential surface of the handlebar 4, and the first engagement parts 32 / 232 function as a force point, a fulcrum, and a point of action, respectively. The second adjustment parts 43 / 243, the contact surfaces between the second inner circumferential surfaces 41a and the outer circumferential surface of the handlebar 4, and the second engagement parts 42 / 242 function as a force point, a fulcrum, and a point of action, respectively.

[0098] (6) In the clamping device 100 / 200 described in any one of (1) to (5), a distance L1 from the outer peripheral surface of the handlebar 4 to a plane P1 that is along a tangent to the outer peripheral surface of the handlebar 4 and passes through the first engagement portions 32 / 232 and the second engagement portions 42 / 242 may be greater than a distance L2 from the outer peripheral surface of the handlebar 4 to a plane P2 that is along a tangent to the outer peripheral surface of the handlebar 4 and passes through the first adjustment portions 33 / 233 and the second adjustment portions 43 / 243. This makes it possible to prevent excessive force from acting between the first engagement portions 32 / 232 of the first clamping members 30 / 230 and the first engaged portions 72A of the electronic device 70, and to prevent excessive force from acting between the second engagement portions 42 / 242 of the second clamping members 40 / 240 and the second engaged portions 72B of the electronic device 70, when the positions of the two adjustment portions 33 / 43 / 233 / 243 are fixed by the fastening means.

[0099] (7) In the clamp device 100 / 200 described in any one of (1) to (6), the distance W1 between the first engagement portions 32 / 232 and the second engagement portions 42 / 242 in a direction tangent to the outer peripheral surface of the handlebar 4 and passing through the first engagement portions 32 / 232 and the second engagement portions 42 / 242 may be greater than the distance W2 between the first adjustment portions 33 / 233 and the second adjustment portions 43 / 243 in a direction tangent to the outer peripheral surface of the handlebar 4 and passing through the first adjustment portions 33 / 233 and the second adjustment portions 43 / 243. This increases the distance W1 between the first engagement portions 32 / 232 and the second engagement portions 42 / 242, thereby improving the stability of support of the electronic device 70 by the clamp device 100 / 200. Furthermore, since the distance W2 between the first adjustment portions 33·233 and the second adjustment portions 43·243 is small, the handlebar 4 can prevent the fastening means (bolts 51 and nuts 52) from being conspicuous.

[0100] (8) In the clamping device 100 / 200 described in any one of (1) to (7), when the angular position of the midpoint between the first engagement portion 32 / 232 and the second engagement portion 42 / 242 is 0 degree in the circumferential direction of the handlebar 4, at least one of the first adjustment portion 33 / 233 and the second adjustment portion 43 / 243 may be positioned in the range of 90 degrees to 270 degrees. This makes it possible to prevent a decrease in strength of the first clamping member 30 / 230 caused by the first adjustment portion 33 / 233 and the first engagement portion 32 / 232 becoming too close. Also, it is possible to prevent a decrease in strength of the second clamping member 40 / 240 caused by the second adjustment portion 43 / 243 and the second engagement portion 42 / 242 becoming too close.

[0101] (9) In the clamp device 100 described in any one of (1) to (8), when the angular position of the midpoint between the first engagement portion 32 and the second engagement portion 42 is 0 degrees in the circumferential direction of the handlebar 4, the midpoint between the first adjustment portion 33 and the second adjustment portion 43 may be located in the range of 135 degrees to 225 degrees. This allows the sizes of the first clamping member 30 and the second clamping member 40 to be close to each other. As a result, the difference in stress acting on these two clamping members 30 and 40 can be reduced.

[0102] (10) In the clamp device 100 described in any one of (1) to (9), the plane P1 that is along a tangent to the outer peripheral surface of the handlebar 4 and passes through the first engagement portion 32 and the second engagement portion 42 may be substantially parallel to the direction in which the first adjustment portion 33 and the second adjustment portion 43 face each other. This makes it possible to operate the fastening means from the front or rear of the clamp device 100 when the clamp device 100 is attached to the handlebar 4. As a result, it is possible to easily adjust the positions of the two adjustment portions 33 and 43 using the fastening means.

[0103] (11) In the clamp device 200 described in any one of (1) to (9), the plane P1 that is along a tangent to the outer surface of the handlebar 4 and passes through the first engagement portion 232 and the second engagement portion 242 may intersect with the direction in which the first adjustment portion 233 and the second adjustment portion 243 face each other.

[0104] (12) The electronic device assembly proposed in the present disclosure includes the clamp device 100 / 200 described in any one of (1) to (11) and an electronic device 70.

[0105] (13) The bicycle 10 proposed in this disclosure includes the clamp device 100 / 200 described in any one of (1) to (11), an electronic device 70, and a handlebar 4.

[0106] [others] The fastening means is not limited to the bolts 51 and nuts 52, as long as it enables fixing and adjustment of the distance W2 between the adjustment portions 33 and 43. The fastening means may be a screw, a lever screw (clamp lever), a cam lever, or the like. [Explanation of symbols]

[0107] 1: body frame, 2: front wheel, 3: rear wheel, 4: handlebar, 5: saddle, 6: crank, 6a: crank arm, 7: pedal, 8: drive unit, 9: battery, 10: bicycle, 11: head pipe, 12: top frame, 13: down frame, 14: seat tube, 15: seat stay, 16: chain stay, 17: bracket, 23: front fork, 21: seat post, 24: chain, 30: first clamping member, 31a: first inner surface, 32: first engaging portion, 32a: convex portion, 32b: rear surface, 32c: lower surface, 32d: upper surface, 32e: inclined surface, 33: adjustment portion, 33: first adjusting portion, 33c: hole, 34: first connected portion, 34a: hole, 40: second clamping member, 41a: second inner surface, 41b: seat, 42: Second engaging portion, 42a: Convex portion, 42b: Front surface, 42c: Bottom surface, 43: Second adjustment portion, 44: Second connected portion, 44a: Connection hole, 44b: Recessed portion, 44c: Side wall portion, 51: Bolt (fastening means ), 52: nut (fastening means), 53: connecting shaft, 70: electronic device, 71: main body, 71a: display device, 71b: bottom surface, 72A: first engaged part, 72B: second engaged part, 72c: recess , 72e: convex portion, 73: operating portion, 73a: switch, 74a: button, 100-200: clamping device, 230: first clamping member, 231a: inner surface, 232: first engaging portion, 232a: convex portion, 233: first adjusting portion, 234: first connected portion, 240: second clamping member, 241a: inner surface, 242: second engaging portion, 243: second adjusting portion, 244: second connected portion.

Claims

1. A clamp device for attaching an electronic device having a first engaged portion and a second engaged portion to a handlebar, a first clamping member having a first inner circumferential surface that follows a portion of the outer circumferential surface of the handlebar, a first engaging portion that is engageable with the first engaged portion so as to allow movement of the first engaged portion in the length direction of the handlebar, and a first adjusting portion; a second clamping member having a second inner circumferential surface that follows another portion of the outer circumferential surface of the handlebar, a second engaging portion that is engageable with the second engaged portion so as to allow movement of the second engaged portion in the length direction of the handlebar, and a second adjusting portion; a fastening means for fixing the distance between the first adjustment portion and the second adjustment portion in the circumferential direction of the handlebar; and the first engaging portion and the second engaging portion are located between the first engaged portion and the second engaged portion in a tangential direction of the outer circumferential surface of the handlebar, the fastening means is configured to allow adjustment of the distance between the first adjustment portion and the second adjustment portion; The distance between the first engagement portion and the second engagement portion increases due to the reduction in the distance between the first adjustment portion and the second adjustment portion. Clamping device.

2. Further, the connecting shaft portion is provided. the first clamping member and the second clamping member each have a first connected portion and a second connected portion located between the first engaging portion and the second engaging portion in a tangential direction of the outer circumferential surface of the handlebar, The connecting shaft connects the first connected portion and the second connected portion so as to allow the distance between the first engaging portion and the second engaging portion to increase and decrease. The clamping device of claim 1 .

3. the connecting shaft portion protrudes from the first connected portion in the length direction of the handlebar, a connecting hole into which the connecting shaft portion is fitted is formed in the second connected portion; The connecting hole is larger than the connecting shaft portion in the tangential direction of the outer peripheral surface of the handlebar.

3. The clamping device according to claim 2.

4. The distance between the connecting shaft portion and the outer peripheral surface of the handlebar is smaller than the distance between the outer peripheral surface of the handlebar and a plane that is along a tangent to the outer peripheral surface of the handlebar and passes through the first engagement portion and the second engagement portion.

4. The clamping device according to claim 3.

5. the first adjustment portion, a contact surface between the first inner circumferential surface and the outer circumferential surface of the handlebar, and the first engagement portion function as a force point, a fulcrum, and a point of action, respectively; The second adjustment portion, a contact surface between the second inner peripheral surface and the outer peripheral surface of the handlebar, and the second engagement portion function as a force point, a fulcrum, and a point of action, respectively. The clamping device of claim 1 .

6. The distance from the outer circumferential surface of the handlebar to a plane that is tangent to the outer circumferential surface of the handlebar and passes through the first engagement portion and the second engagement portion is greater than the distance from the outer circumferential surface of the handlebar to a plane that is tangent to the outer circumferential surface of the handlebar and passes through the first adjustment portion and the second adjustment portion. The clamping device of claim 1 .

7. The distance between the first engagement portion and the second engagement portion in a direction along a tangent to the outer circumferential surface of the handlebar and passing through the first engagement portion and the second engagement portion is greater than the distance between the first adjustment portion and the second adjustment portion in a direction along a tangent to the outer circumferential surface of the handlebar and passing through the first adjustment portion and the second adjustment portion. The clamping device of claim 1 .

8. When the angular position of the intermediate position between the first engagement portion and the second engagement portion is set to 0 degrees in the circumferential direction of the handlebar, at least one of the first adjustment portion and the second adjustment portion is located in a range of 90 degrees to 270 degrees. The clamping device of claim 1 .

9. When the angular position of the intermediate position between the first engagement portion and the second engagement portion is set to 0 degrees in the circumferential direction of the handlebar, the intermediate position between the first adjustment portion and the second adjustment portion is located in a range of 135 degrees to 225 degrees. The clamping device of claim 1 .

10. A plane that is along a tangent to the outer circumferential surface of the handlebar and passes through the first engagement portion and the second engagement portion is substantially parallel to a direction in which the first adjustment portion and the second adjustment portion face each other. The clamping device of claim 1 .

11. A plane that is along a tangent to the outer circumferential surface of the handlebar and passes through the first engagement portion and the second engagement portion intersects with a direction in which the first adjustment portion and the second adjustment portion face each other. The clamping device of claim 1 .

12. A clamping device according to claim 1; The electronic device 1. An electronics assembly comprising:

13. A clamping device according to claim 1; the electronic device; the handlebars; A bicycle having the following characteristics.

Citation Information

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