Controller
The controller's innovative design with symmetrical protrusions and customizable buttons addresses operability issues in e-sports by enabling precise control stick movements and comfortable button operations, enhancing gaming experience.
Patent Information
- Application Number
- JP2024090905
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-04
- Publication Date
- 2025-12-16
AI Technical Summary
Existing controllers used in electronic games, particularly for e-sports, face challenges in maintaining operability during long and precise gameplay due to the difficulty in accurately tilting control sticks without deviating from intended directions.
A controller design featuring a base with symmetrical protrusions for hand support, an arch-shaped second surface, and operation sticks tiltable in a 360-degree direction, along with customizable operation buttons that deform upon pressing, allowing for improved hand positioning and reduced finger interference.
Enhances operability by facilitating precise control stick movements and comfortable button operations, reducing fatigue and improving overall usability during extended gaming sessions.
Smart Images

Figure 2025183041000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a controller for an electronic game. [Background technology]
[0002] Controllers that are operated by a user while holding them in both hands are typically used as input devices for electronic games. Patent Documents 1 and 2 disclose controllers that include protruding portions (handle portions, grip portions) that protrude downward to be held with both hands, and operation portions such as an operation stick operated by the user. These controllers are designed to be held or supported by the protruding portions in the palms or at the bases of the thumbs, and to operate the sticks with the thumbs extended diagonally upward. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Publication No. 2024-014825 [Patent Document 2] Japanese Patent Application Publication No. 2024-036455 Summary of the Invention [Problem to be solved by the invention]
[0004] With the recent rise of e-sports, there are more opportunities to play games for long periods of time and with precision, which has led to demands for improved operability in controllers. For example, the control stick is a control part that allows 360-degree input and often plays an important role in game operation.
[0005] The present invention has been made in light of the above technical background, and has as its object to provide a controller for an electronic game that can improve operability. [Means for solving the problem]
[0006] (Aspect 1) In order to achieve the above-mentioned object, the controller of aspect 1 of the present invention is a controller that a user operates while holding it with both hands and that transmits operation information, and in an operation posture in which it is supported and operated by the user, it comprises a base having a first surface facing the front side toward the user and a second surface extending from the upper end of the first surface toward the rear side, two protrusions that protrude downward on both sides of the left and right direction of the base when viewed from the user in the operation posture, and an operation stick that is provided on the downward end of the first surface and is configured to be operable by tilting it in a 360° direction relative to the first surface, and the second surface is formed in an arch shape from the left and right ends to the center on both sides of the left and right direction so that the center in the left and right direction is concave.
[0007] (Aspect 2) In the above-described first aspect, the device may further include an operation surface formed in a convex shape along the second surface, and an operation button provided on the second surface.
[0008] (Aspect 3) In the above aspect 2, in the left-right direction, a first end of the operation button may be located closer to the center of the base than the operation stick, and a second end of the operation button opposite the first end may be located closer to the end of the base than the operation stick.
[0009] (Aspect 4) In the above-described third aspect, the second end may be fixed to the base, and the first end may be deformed so as to bend from the second end as a starting point when pressed down.
[0010] (Aspect 5) In the above-mentioned aspect 1, the controller may have a main body composed of the base and the protrusion, the rear side of the protrusion being recessed forward relative to the base, and the main body may have a connection surface facing downward from the rear side to the center in the left-right direction, connecting the base and the protrusion, the connection surface facing downward as it moves from the rear side to the center in the left-right direction.
[0011] (Aspect 6) In the above-mentioned aspect 5, the protrusion may be provided with a protrusion that protrudes toward the rear side, faces downward of the main body, and has a surface that extends downward as it moves toward the center of the left-right direction of the base.
[0012] (Aspect 7) In order to achieve the above-mentioned object, the controller of aspect 7 of the present invention is a controller that a user operates while holding it with both hands and transmits operation information, and comprises: a main body having a base on which a plurality of operation buttons are provided; and two protrusions that protrude downward on both sides of the base in the left-right direction as seen by the user when in an operation posture in which the controller is supported and operated by the user; and an operation stick that is provided at the downward end of the base and is configured to be operable by tilting it in a 360° direction relative to the base, wherein the rear side of the protrusion that faces away from the user in the operation posture is recessed forward relative to the base, and the main body has a downward-facing surface that connects the base and the protrusion from the rear side of the protrusion toward the center in the left-right direction, and in the operation posture, the surface that faces downward as it moves from the rear side toward the center in the left-right direction.
[0013] (Aspect 8) In order to achieve the above-mentioned object, the controller of aspect 8 of the present invention is a controller that a user operates while holding it with both hands and transmits operation information, and in an operating posture in which it is supported and operated by the user, it comprises: a base having a first surface facing the front side toward the user and a second surface extending from the upper end of the first surface toward the rear side; a main body having two protrusions that protrude downward on both sides of the left and right sides of the base as seen from the user; an operation stick provided at the downward end of the first surface and configured to be operable by tilting it in a 360° direction relative to the first surface; and an operation button provided on the second surface, and the operation button has a first end located closer to the center of the base than the operation stick in the left and right direction, and a second end located closer to the end of the base than the operation stick and fixed to the base, and when the first end is pressed down, it deforms so as to bend from the second end as a starting point.
[0014] (Aspect 9) In the eighth aspect, the operation button may be bifurcated and extend from the second end toward the center of the base in the left-right direction.
[0015] The configurations of the above aspects may be combined as much as possible. [Effects of the Invention]
[0016] According to the present invention, it is possible to provide a controller for an electronic game that can improve operability. [Brief explanation of the drawings]
[0017] [Figure 1] FIG. 2 is an external view of a controller according to the embodiment. [Figure 2] FIG. 2 is an external perspective view of the controller according to the embodiment. [Figure 3] FIG. 2 is an explanatory diagram of an operation button according to the embodiment. [Figure 4] FIG. 2 is a diagram illustrating a state in which the controller according to the embodiment is being held. [Figure 5]FIG. 10 is an external perspective view of a controller according to a modified example. DETAILED DESCRIPTION OF THE INVENTION
[0018] The following describes in detail exemplary embodiments of the present invention with reference to the drawings. The dimensions, materials, shapes, and relative positions of the components described in the embodiments may be changed as appropriate depending on the configuration and various conditions of the device to which the invention is applied. In other words, the scope of the present invention is not limited to the following embodiments.
[0019] A controller 10 according to an embodiment of the present invention will now be described. The controller 10 is an input device that is connected to an information processing device such as a game console or a personal computer, and transmits operation information regarding operation input by a user to the information processing device. The controller 10 according to this embodiment is configured to be selectively connectable to the information processing device wirelessly or via a wire, but may also be configured to be connectable via only one of these methods.
[0020] In the following explanation, directions are defined based on the posture in which the controller 10 is held by the user for operation. The posture in which the controller 10 is held by the user is referred to as the operation posture, and the left-right direction when the controller 10 is in the operation posture is illustrated as the X direction, the up-down direction as the Y direction, and the front-to-back direction as the Z direction. Specifically, when the controller 10 is in the operation posture, the front side is the user side (the side that faces the user), the rear side is the side facing away from the user, and the left-to-right direction is the left-to-right direction as seen from the user.
[0021] (Controller configuration) First, the configuration of a controller 10 according to an embodiment of the present invention will be described. Figures 1(a) to 1(e) are diagrams showing the external appearance of the controller 10. Figure 1(a) is a top view of the controller 10 as seen from above in the Y direction. Figure 1(b) is a front view of the controller 10 as seen from the front (front side) in the Z direction. Figure 1(c) is a side view of the controller 10 as seen from the right side in the X direction. Figure 1(d) is a bottom view of the controller 10 as seen from the bottom (bottom side) in the Y direction. Figure 1(e) is a rear view of the controller 10 as seen from the rear (rear side) in the Z direction.
[0022] 2(a) and 2(b) are perspective views showing the appearance of the controller 10. Fig. 2(a) is a perspective view of the controller 10 seen from the front right side, and Fig. 2(b) is a perspective view of the controller 10 seen from the rear right side.
[0023] The controller 10 is composed of a main body 20 and a plurality of operation buttons and operation sticks provided on the main body 20. The main body 20 has a base 21 on which a plurality of operation buttons and operation sticks are arranged, and two protrusions 23 that protrude downward on both left and right sides of the base 21. The main body 20 has a shape that is approximately symmetrical in the left-right direction, and there are no major differences between the left and right sides except for the type of operation buttons provided on the first surface 21a and the internal configuration. In this embodiment, the base 21 and the protrusions 23 are integrally configured.
[0024] The base 21 has a first surface 21a facing forward in the operating position, a second surface 21b extending rearward from the upper end of the first surface 21a, and a third surface 21c connecting the lower end of the first surface 21a and the rear end of the second surface 21b. The first surface 21a, the second surface 21b, and the third surface 21c are formed by dividing the outer surface of the base 21 along its circumferential direction, for the sake of convenience.
[0025] The first surface 21a is a surface that includes a flat portion that is perpendicular to the front-to-rear direction, and constitutes the front surface of the controller 10. Four circular operation buttons 31, four operation buttons 33 arranged in a cross shape, two circular operation buttons 35, and two operation sticks 37 are provided on the first surface 21a.
[0026] The four operation buttons 31 are arranged at the right end of the first surface 21a. Two of the operation buttons 31 are arranged side by side in the vertical direction, and the other two operation buttons 31 are arranged side by side in the horizontal direction. The four operation buttons 31 are arranged so that a line connecting the operation buttons 31 arranged side by side in the vertical direction is perpendicular to a line connecting the operation buttons 31 arranged side by side in the horizontal direction.
[0027] Four operation buttons 33 arranged in a cross shape are located on the left end of first surface 21a. Operation button 33 is pentagonal and includes two sides extending parallel to each other, one side connecting the two sides, and two sides connecting to each of the two parallel sides and forming acute angles.
[0028] The two operation buttons 35 are arranged between the operation button 31 and the operation button 33 in the left-right direction and at the same position as each other in the up-down direction. One operation button 35 is arranged on the right side of the first surface 21a (the part to the right of the center line in the left-right direction), and the other operation button 35 is arranged on the left side of the first surface 21a (the part to the left of the center line in the left-right direction).
[0029] The two operation sticks 37 each have a support portion 37a extending forward from the base 21 and a disk portion 37b provided at the tip of the support portion 37a. The operation stick 37 is configured to be operable by tilting it 360° relative to the base 21 (first surface 21a). For example, the user can rotate the operation stick 37 by tilting it relative to the base 21 by operating the disk portion 37b of the operation stick 37 with the palm of their thumb.
[0030] The two operation sticks 37 are provided at the lower end of the first surface 21a and are arranged side by side in the left-right direction. One operation stick 37 is arranged on the right side of the first surface 21a and is located between the left operation button 31 and the right operation button 35 in the left-right direction. The other operation stick 37 is arranged on the left side of the first surface 21a and is located between the right operation button 33 and the left operation button 35 in the left-right direction.
[0031] The second surface 21b is a surface that is formed in a convex shape from the left-right ends to the center so that the center in the left-right direction is concave, and constitutes the upper part of the controller 10. In other words, the second surface 21b has convex portions formed in a convex shape on both left-right sides. In addition, the second surface 21b is inclined downward from the front side to the rear side.
[0032] The second surface 21b is provided with two operation buttons 39 and two operation buttons 41 on each of the right and left sides. On the second surface 21b, these operation buttons are arranged symmetrically with respect to the center line in the left-right direction.
[0033] The operation button 39 has an operation surface (surface) that is pressed with a finger and is formed along the second surface 21b. In this embodiment, the operation surface is formed on approximately the same plane as the second surface 21b so as to be continuous with the second surface 21b. The operation button 39 is formed so as to extend from the left-right end to the center of the second surface 21b. Specifically, in the left-right direction, one left-right end of the operation button 39 is located closer to the center of the base 21 in the left-right direction than the operation stick 37, and the other end It is located closer to the left and right ends of the base 21 than the operation stick 37 .
[0034] The operation surface of the operation button 39 has a rectangular shape with two sides that extend rearward from the left and right ends toward the center when viewed from above. That is, the operation button 39 extends along the second surface 21b in a direction inclined with respect to the left and right so that it extends rearward toward the center. Furthermore, the operation surface is formed in a recessed shape with a concave center when viewed in a cross section perpendicular to the extension direction.
[0035] 3(a) and (b) are explanatory diagrams of the operation button 39. Fig. 3(a) is a diagram showing the appearance of the operation button 39. The operation button 39 has a pressing portion 39a formed with an operation surface to be pressed by the user, a protruding portion 39b provided at the tip of the pressing portion 39a and protruding downward, and a fixing portion 39c provided at the base side of the pressing portion 39a and fixed to the main body 20.
[0036] The fixing portion 39c is a portion that extends in a columnar shape in the vertical direction, and has a screw hole 39d that opens downward formed therein. A screw (not shown) is inserted into the screw hole 39d from below the fixing portion 39c, thereby fixing the operation button 39 to (the interior of) the base 21 of the main body 20. However, the fixing method of the operation button 39 is not limited to this, and the operation button 39 may be fixed using other fixing members.
[0037] The pressing portion 39a is formed to extend from the upper end of the fixed portion 39c. That is, the pressing portion 39a is formed like a cantilever beam, with the end on the fixed portion 39c side being the fixed end and the tip on the opposite side being the free end. Figure 3(b) is a cross-sectional view taken along line AA in Figure 3(a), showing the pressing portion 39a in a cross section perpendicular to its extension direction. As shown in Figure 3(b), the cross-sectional shape of the pressing portion 39a is such that the center is concave downward to fit the curve of the finger.
[0038] A protrusion 39b that protrudes downward is provided at the tip of the free end of the pressing portion 39a. The protrusion 39b is formed in a cross shape when viewed in the protruding direction. The protrusion 39b is located at a position corresponding to a switch provided inside the main body 20.
[0039] The operation button 39 is arranged so that a first end (tip) provided with a protruding portion 39b is located toward the center of the base 21 in the left-right direction, and a second end (root) provided with a fixed portion 39c is located toward the end of the base 21 in the left-right direction. When a user presses the operation button 39, the operation button 39 deforms so as to bend from the fixed portion 39c. Then, the protruding portion 39b provided at the tip presses a switch provided inside the main body 20, and operation information is input to the controller 10. The operation button 39 can be molded from, for example, resin.
[0040] In this embodiment, the screw is provided on the outside in the left-right direction, so the part where the fingertip is placed is the free end side (the center side in the left-right direction) of the operation button 39, and the part where the base of the finger is placed is the fixed end side (the outside in the left-right direction) of the operation button 39. Therefore, the operation button 39 can be operated by moving the fingertip, which has a relatively wide range of motion, widely, or by moving the finger slightly on the side closer to the base of the finger. In other words, the user can operate the operation button 39 from any position, such as the fingertip or near the base of the finger, allowing for operation according to preference, thereby improving operability.
[0041] Furthermore, when holding the controller 10, some users may bend their fingers so that only the tip of their finger is in contact with the operation button 39, rather than running their fingers over the operation button 39. According to the controller 10 of this embodiment, for example, the operation button 39 can be operated by holding the controller 10 with the finger in contact with the center of the operation button 39 in the left-right direction. In other words, the user can operate the operation button 39 with the finger running over the operation button 39, or with only the tip of the finger in contact with the operation button 39, so the operation method is This will improve operability as the options will be expanded and operations can be tailored to your preferences.
[0042] Furthermore, since the operation button 39 according to this embodiment is configured to be operated by utilizing the flexibility of the material, the operability (the feel and reaction force when pressed with a finger) changes depending on the ease of deformation. In other words, the operability can be easily changed by changing the thickness of the operation button 39 or the strength of the material. Furthermore, the operation button 39 can be easily fixed to the main body 20 with screws. Therefore, for example, in order for a user to customize the operability to their liking, multiple types of operation buttons 39 with different thicknesses and materials can be prepared, and the user can select and replace the operation button 39 of their choice. In this way, by making the operation button 39 customizable, further improvements in operability can be expected.
[0043] The operation button 41 is a protruding operation portion that protrudes from the second surface 21b. The operation button 41 is fixed to the main body 20 by a fixing portion located on the left-right center side of the base 21. The operation button 41 is formed to extend from the fixing portion toward the left-right end side of the base 21, and when the user presses the operation button 41, it deforms so as to bend around the fixing portion. In this way, by arranging the fixing portion of the operation button 39 on the left-right end side of the base 21 and the fixing portion of the operation button 41 on the left-right center side of the base 21, it is possible to prevent the fixing portions from interfering with each other, and to suppress an increase in the size of the controller 10.
[0044] In the first embodiment, the two operation buttons 41 lined up in the left-right direction are connected to each other inside the main body 20. In other words, the two operation buttons 41 are formed from a single component, and portions extending from a fixed portion inside the main body 20 to both sides in the left-right direction are exposed to the outside of the main body 20 to form the two operation buttons 41. This configuration reduces the number of fixing portions and screws, leading to cost and weight reductions. In particular, reducing the weight of the controller 10 by preventing an increase in size of the controller 10 and reducing the number of mounted components greatly contributes to comfort and operability when holding and operating the controller 10 for long periods of time.
[0045] The two operation buttons 39 and the two operation buttons 41 are arranged alternately in the front-to-rear direction. That is, on the second surface 21b, the operation button 41, the operation button 39, the operation button 41, and the operation button 39 are arranged in this order from the front.
[0046] Furthermore, a connection terminal 43 is provided on the second surface 21b in the center in the left-right direction, between the two rear operation buttons 39. The connection terminal 43 is a socket used for charging the controller 10 and connecting it to a game console.
[0047] The third surface 21c extends rearward from the lower end of the first surface 21a, and then extends upward to connect to the rearward end of the second surface 21b.
[0048] The protrusions 23 are supports for the user to support the controller 10. The two protrusions 23 each extend downward and outward in the left-right direction (directions away from the center). As shown in FIG. 1(c) and other figures, the protrusions 23 extend in a direction inclined relative to the first surface 21a so as to be gradually rearward as they extend downward.
[0049] In this embodiment, the protrusions 23 protrude downward from both left and right ends of the base 21. The base 21 and the protrusions 23 are smoothly connected by continuous surfaces on the front, right, and left sides. However, the application of the present invention is not limited to this, and for example, the left and right ends of the base 21 may be configured to protrude relative to the protrusions 23.
[0050] A protrusion 23a is provided on the rear side of the protruding portion 23, protruding rearward (rearward) and having a surface 23a1 and a surface 23a2. The detailed configuration of the protrusion 23a will be described later. do.
[0051] (Controller Support) Next, a description will be given of how the user holds the controller 10 (how it is held) and the detailed configuration for holding it in this manner. The controller 10 according to this embodiment is configured assuming that the operation buttons and operation stick provided on the base 21 are operated with the thumb, index finger, and middle finger while the right-side protruding portion 23 is supported by the ring finger and little finger of the right hand and the left-side protruding portion 23 is supported by the ring finger and little finger of the left hand. However, the holding state of the controller 10 described below is merely an example and is not intended to limit the holding state of the controller 10.
[0052] Sticks such as the control stick 37 are primarily used to determine various directions in game operations, such as moving a controlled character and aiming. When precise operations are required, it is extremely important that the direction in which the stick is tilted matches the intended direction. Among these, the left-right and up-down directions are directions frequently used for input operations. Furthermore, when performing input operations in directions that intersect with the left-right and up-down directions, for example, how much the stick should be tilted relative to the left-right direction can be important from an intuitive perspective. Thus, the left-right and up-down directions are the reference directions for operation.
[0053] However, for example, when a user holds a protruding portion of the main unit in the palm of their hand and operates the control stick with their thumb extended diagonally upward, their thumb will be positioned at an angle relative to the left-right and up-down directions. Since controller operations are typically performed while looking at the display screen, i.e., without looking at the controller, it is surprisingly difficult to operate the control stick as intended. Therefore, even if a user intends to tilt the control stick left or right, the actual tilt direction may deviate from the intended direction. In particular, when a user reflexively operates the control stick after instantly grasping the game situation, the input direction is even more likely to deviate from the intended direction.
[0054] Therefore, in order to make it easier for the user to tilt the operating stick 37 as intended and improve operability, the controller 10 according to this embodiment is configured so that the thumb for operating the operating stick 37 is positioned parallel to the left and right direction when holding the controller 10.
[0055] 4(a) and (b) are diagrams showing how the controller 10 is being held, with dotted lines depicting some of the fingers of a person holding the controller 10. FIG. 4(a) is a front view of the controller 10 as seen from the front (front side) in the Z direction. FIG. 4(b) is a rear view of the controller 10 as seen from the rear (rear side) in the Z direction.
[0056] When the thumb is positioned parallel to the left-right direction, the hand is tilted to the side so that the palm faces more downward than when the thumb is positioned upward. In this case, if the user attempts to relax the fingers and assume a natural posture, the fingers other than the thumb will be positioned in a convex arc upward, with the fingertips pointing downward. In this embodiment, as described above, both left-right sides of second surface 21b are arched, allowing the user to run their fingers over second surface 21b of controller 10 without exerting excessive force. This allows the user to hold controller 10 comfortably and reduces fatigue. This configuration allows the user to operate controller 10 as intended for a longer period of time.
[0057] In this embodiment, the operation surfaces of the operation buttons 39 provided on the second surface 21b are formed along the second surface 21b. Therefore, the user can operate the buttons by positioning their fingers so that their index finger runs over the front operation button 39 and their middle finger runs over the rear operation button 39. The operation surfaces of the operation buttons 39 are formed in a recessed shape with a concave central portion in the front-to-rear direction, allowing each finger to be positioned comfortably. By configuring the buttons so that their fingers can be positioned comfortably, it is possible to reduce the risk of the fingers being misaligned when holding the controller 10. This allows for stable support.
[0058] As described above, with this configuration, the user can quickly operate the operation button 39 and the operation button 41 adjacent to the operation button 39 without moving their index and middle fingers significantly. Furthermore, the index and middle fingers can be positioned and operated naturally along the arched shape of the second surface 21b. Furthermore, the operation button 39 is configured to be deformable from the fixed portions on the left-right end sides of the base 21, allowing the user to operate the operation button 39 in a preferred orientation or position. These features improve the operability of not only the operation stick 37 but also the operation button 39, leading to improved operability of the entire controller 10.
[0059] Furthermore, in this configuration, the thumbs are positioned parallel to the left-right direction, so the index fingers and middle fingers of both hands are positioned closer to each other than in a configuration in which the thumbs are positioned so that they extend upward. Therefore, for example, if second surface 21b were configured as a flat surface, controller 10 would need to be enlarged in the left-right direction to prevent the fingers of both hands from hitting each other. However, in this configuration, second surface 21b and operation buttons 39 are formed so that the fingers can be positioned with their fingers bent, so that an increase in the size of controller 10 can be suppressed. Furthermore, operation buttons 39 are formed to extend to the center of controller 10 in the left-right direction, so that they can be easily operated with the fingertips of the index finger and middle finger.
[0060] Next, a detailed configuration of the protrusion 23 will be described. As shown in Fig. 1(c) and other figures, the rear side of the protrusion 23 is recessed forward relative to the base 21. The main body 20 is formed with a connection surface 25 extending from the rear side to the center in the left-right direction, connecting the protrusion 23 and the base 21.
[0061] The connecting surface 25 faces downward, and the direction perpendicular to the connecting surface 25 is tilted rearward with respect to the downward direction. The connecting surface 25 is formed so as to face downward from the rear side of the protruding portion 23 toward the center in the left-right direction. In other words, the connecting surface 25 is formed so as to describe part of a spiral so as to go around the protruding portion 23 for about a quarter of the way around.
[0062] Furthermore, the protrusion 23 is provided with a protrusion 23a that protrudes rearward. The protrusion 23a is formed along the outer periphery of the protrusion 23 from the rear side of the protrusion 23 toward the center in the left-right direction. The protrusion 23a has a surface 23a1 facing downward and a surface 23a2 that is adjacent to surface 23a1 and curves along the surface on which the protrusion 23a is provided. The surface 23a1 is a surface that is approximately parallel to the connecting surface 25 and, like the connecting surface 25, is formed so as to extend downward as it approaches the center in the left-right direction of the base 21.
[0063] When the hand is tilted so that the thumb extends parallel to the left and right, and the user maintains a natural posture without exerting unnecessary force, the ring finger and little finger point downward. Connection surface 25 and surface 23a1 of protrusion 23a are formed along the natural extension directions of the ring finger and little finger, respectively, allowing the user to hold controller 10 without forcing their hand into an awkward position.
[0064] Furthermore, the upper end of surface 23a2 of protrusion 23a is connected to connection surface 25, and this connection portion is formed as a concave curved surface. That is, the user can comfortably place their ring finger along this curved surface. Similarly, the boundary between surface 23a1 and the surface from which surface 23a1 protrudes is formed as a curved surface, allowing the user to comfortably place their little finger. That is, protrusion 23 can also be considered to have a recess for placing the ring finger and a recess for placing the little finger formed side by side in the vertical direction.
[0065] With this configuration, even when the controller 10 is in a position where the up-down direction is close to the vertical direction (the direction of gravity) or when the controller 10 is in a position where the front-rear direction is close to the vertical direction, The user can stably hold the controller 10. For example, when holding the controller 10 in a position where the up-down direction of the controller 10 is close to the vertical direction, the user can support the connection surface 25 with the ring finger and the surface 23a1 of the protrusion 23a with the little finger. When holding the controller 10 in a position where the front-to-back direction of the controller 10 is close to the vertical direction, the user can support the surface 23a2 with the ring finger and the protrusion 23 with the little finger.
[0066] As described above, the controller 10 according to this embodiment is configured so that the thumb naturally extends parallel to the left-right direction when the rear side of the protrusion 23 is supported by the ring finger and little finger, the index finger and middle finger are aligned along the second surface 21b, and the palm of the thumb is placed on the disk portion 37b of the operation stick 37. With this configuration, the operation stick 37 can be tilted left and right by extending and retracting the thumb, making it easier for the user to operate the operation stick 37 as intended. Furthermore, because the various components of the controller 10 are configured to be easily supported and operated with the thumb extended left and right, the operability of the controller 10 is improved.
[0067] It should be noted that the above-described embodiment is merely an example to which the present invention can be applied, and the present invention is not limited to the above-described configuration. For example, even in a configuration in which the positions of the left operation stick 37 and the four operation buttons 33 are interchanged, the operability of at least the right operation stick 37 can be improved.
[0068] (Variation) A modified example of the above-described embodiment will now be described in detail. In the embodiment, two operation buttons 39 are provided on each side of the second surface 21b in the left-right direction, but in this modified example, one operation button 49 is provided on each side. In the following description, the same components as in the embodiment are denoted by the same reference numerals, and description thereof will be omitted.
[0069] FIG. 5 is a perspective view showing the appearance of a controller 10 according to a modified example, as seen from the rear and right side. The operation button 49 according to the modified example has a shape in which the outer (opposite center) ends in the left-right direction of the two operation buttons 39 of the embodiment are connected. That is, the operation button 49 is formed by bifurcating and extending from an end fixed to the base 21 toward the center in the left-right direction of the base 21, forming a V-shape when viewed from above. The operation button 49 is configured so that two operation surfaces extending from the end, i.e., two sides constituting the V, can be operated (pressed). That is, the operation button 49 is configured to have two first ends provided with protruding portions and one second end provided with a fixed portion. One operation button 41 is disposed between the two sides constituting the V.
[0070] The operation button 49 has a fixing portion at the intersection of the V shape, i.e., at the outer end in the left-right direction. The fixing portion is fixed to the main body 20 with a fixing member such as a screw. Therefore, when each of the two sides constituting the V shape is pressed, it bends and deforms starting from the fixing portion. In this way, by combining the two operation buttons 39 in the embodiment into a single operation button 49, the number of fixing portions and screws is reduced, leading to cost and weight reductions.
[0071] Furthermore, when two operation buttons 39 are arranged on each side of the base 21 in the left-right direction, the two operation buttons 39 are preferably arranged so that they approach each other as they move outward in the left-right direction of the base 21, in order to be arranged along the index finger and middle finger. However, if the length of the operation buttons 39 in the left-right direction is long, there is a risk that the two operation buttons 39 and the members for fixing them will interfere with each other. On the other hand, by forming an operation button 49 in a shape that is bifurcated from a single fixing part, there is no risk of interference, and the operation button 49 can be made long in the left-right direction. [Explanation of symbols]
[0072] 10...controller, 21...base, 21a...first surface, 21b...second surface, 23...protrusion, 37...operation stick
Claims
1. A controller that is operated by a user while being held with both hands and that transmits operation information, a base having a first surface facing the front side, which is the user side, when the device is in an operating position in which the device is supported and operated by a user, and a second surface extending from an upper end of the first surface toward the rear side; two protrusions protruding downward from both sides of the base in the left-right direction as viewed from the user in the operating posture; an operation stick provided at the lower end of the first surface and configured to be operable by tilting in a direction of 360° with respect to the first surface; Equipped with The second surface is formed in an arch shape from the left and right ends to the center on both sides in the left and right direction so that the center in the left and right direction is concave.
2. The controller according to claim 1 , further comprising an operation surface formed in a convex shape along the second surface, and an operation button provided on the second surface.
3. The controller described in claim 2, characterized in that in the left-right direction, a first end of the operation button is located closer to the center of the base than the operation stick, and a second end of the operation button opposite the first end is located closer to the end of the base than the operation stick.
4. The controller according to claim 3, wherein the second end of the operation button is fixed to the base, and the operation button is deformed so as to bend from the second end as a starting point when the first end is pressed.
5. the controller includes a main body formed by the base and the protrusion; a rear side of the protrusion is recessed forward relative to the base, The controller according to claim 1, characterized in that the main body is formed with a downward-facing connection surface that connects the base and the protrusion from the rear side to the center in the left-right direction, the connection surface facing downward as it moves from the rear side to the center in the left-right direction.
6. The controller of claim 5, characterized in that the protrusion is provided with a protrusion that protrudes toward the rear side, faces downward of the main body, and has a surface that extends downward as it moves toward the center of the base in the left-right direction.
7. A controller that is operated by a user while being held with both hands and that transmits operation information, a main body having a base on which a plurality of operation buttons are provided, and two protrusions that protrude downward on both sides of the base in the left-right direction as viewed from the user when the main body is in an operating position in which the main body is supported and operated by the user; an operation stick provided at the end portion of the base in the downward direction and configured to be operable by tilting in a direction of 360° relative to the base; Equipped with a rear side of the protrusion facing away from the user in the operating posture is recessed forward with respect to the base; The main body has a surface facing downward, which connects the base and the protrusion from the rear side of the protrusion to the center in the left-right direction, and in the operating position, a surface that extends downward from the side toward the center in the left-right direction.
8. A controller that is operated by a user while being held with both hands and that transmits operation information, a main body having a base portion having a first surface facing the front side toward the user and a second surface extending from an upper end of the first surface toward the rear side when in an operating posture in which the device is supported and operated by a user, and two protrusions protruding downward on both sides of the base in the left-right direction as viewed from the user; an operation stick provided at the lower end of the first surface and configured to be operable by tilting in a direction of 360° with respect to the first surface; an operation button provided on the second surface; Equipped with The operation button has a first end located closer to the center of the base than the operation stick in the left-right direction, and a second end located closer to the end of the base than the operation stick and fixed to the base, and is characterized in that when the first end is pressed, it deforms so as to bend from the second end.
9. The controller according to claim 8 , wherein the operation button is bifurcated and extends from the second end toward the center of the base in the left-right direction.
Citation Information
Patent Citations
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