Direction sensing device

文档序号:1304372 发布日期:2020-08-11 浏览:35次 中文

阅读说明:本技术 一种方向传感装置 (Direction sensing device ) 是由 刘成祥 于 2020-05-27 设计创作,主要内容包括:一种方向传感装置。本发明属于应有在机械设备上的对特定部件位移数据监测传感领域,特别涉及对游戏设备部件角度位移数据的传感装置,具体包括:带有转轴的传感器、支座、连杆和传动结构,所述支座上具有通孔,用于将所述方向传感器整体固定在机械设备上,所述传感器的转轴通过所述通孔与所述连杆一端相连,所述连杆的另一端与所述传动结构连接,所述传动结构用于产生位移,负载动力。本发明主要克服了现有技术中由于加工和安装的不精确导致的方向偏移以及适用环境范围小的问题。(A direction sensing device. The invention belongs to the field of monitoring and sensing displacement data of specific parts on mechanical equipment, and particularly relates to a sensing device for angular displacement data of game equipment parts, which specifically comprises the following components: the sensor comprises a sensor with a rotating shaft, a support, a connecting rod and a transmission structure, wherein the support is provided with a through hole for integrally fixing the direction sensor on mechanical equipment, the rotating shaft of the sensor is connected with one end of the connecting rod through the through hole, the other end of the connecting rod is connected with the transmission structure, and the transmission structure is used for generating displacement and load power. The invention mainly solves the problems of direction deviation caused by inaccurate processing and installation and small applicable environment range in the prior art.)

1. A direction sensing device, comprising: sensor, support, connecting rod and transmission structure with pivot, its characterized in that: the support is provided with a through hole, a rotating shaft of the sensor is connected with one end of the connecting rod through the through hole, the other end of the connecting rod is connected with the transmission structure, and the transmission structure is used for loading external power to generate displacement.

2. The orientation sensing apparatus of claim 1, wherein: the middle part of the connecting rod is hollow, the transmission structure is connected with the connecting rod through a connecting piece, and the connecting piece can move at the hollow part of the connecting rod under the driving of the transmission structure.

3. The direction sensing device according to any one of claims 1 or 2, wherein: the transmission structure is a rod-shaped component.

4. The direction sensing device according to any one of claims 1 or 2, wherein: the transmission structure is a sheet component.

5. A direction sensing device, characterized by: the direction sensing device comprises more than 2 direction sensing devices as claimed in claim 2, wherein the rotating shaft of the sensor in one direction sensing device as claimed in claim 2 is parallel to the ground, and the rotating shaft of the sensor in one direction sensing device as claimed in claim 2 is perpendicular to the ground.

6. The direction sensor apparatus according to any one of claims 1, 2 or 5, wherein the sensor with a rotating shaft is a potentiometer or a hall sensor or an angle sensor.

Technical Field

The invention belongs to the field of monitoring and sensing displacement data of specific parts on mechanical equipment, and particularly relates to a steering wheel, an accelerator and a brake structure on game racing equipment; muzzle structure on shooting game equipment, sensing device of angular displacement data.

Background

The tradition uses angle sensor's transmission mode all is through gear drive, in order to make the more accurate gear that generally uses 0.5 modulus in direction position, because the gear modulus is little, processing and installation require the precision all higher, it is just inaccurate to have not hard up direction a little after installation process or installation completion, requirement to the space during the design is also high, because there is a gear must be concentric with the axis of rotation, need wear cable line or other objects to the center of some equipment axles and pass through and cause very big inconvenience, thereby can not be suitable for.

Disclosure of Invention

In view of the above prior art, the present invention provides a direction sensing device with a new structure, as shown in fig. 1, including: the sensor comprises a sensor with a rotating shaft, a support, a connecting rod and a transmission structure, wherein the support is used for integrally fixing the direction sensing device on mechanical equipment, the support is provided with a through hole, the rotating shaft of the sensor is connected with one end of the connecting rod through the through hole, the other end of the connecting rod is connected with the transmission structure, and the transmission structure is used for generating displacement and load power.

The invention mainly solves the problems of direction deviation caused by inaccurate processing and installation and small range of use environment in the prior art. In the technical scheme, when the transmission structure generates displacement under power, one end of the connecting rod is inevitably driven to generate displacement, the other end of the connecting rod is connected with the rotating shaft of the sensor and is positioned at the through hole of the support, the whole connecting rod generates displacement of a circumferential track by taking the through hole as a center, so that the rotating shaft of the sensor is driven to rotate to generate data, and finally the displacement of the transmission structure is transmitted to the sensor by the mode, and the sensor outputs the data.

According to the technical scheme, after a rotating shaft with a gear driving transmission sensor in the prior art is changed into a connecting rod driving mode, the complex technology is simplified, the requirement for machining and mounting accuracy is reduced to be common, the machining and production cost is reduced, the improvement of the effect, the productivity, the quality, the accuracy and the efficiency is facilitated, the energy consumption, the raw materials and the working procedures are saved, the machining, the operation, the control and the use are simple and convenient, and the resource waste is reduced.

Further, in order to expand the range of motion of the transmission structure, as shown in fig. 2, the middle of the connecting rod is hollow, the transmission structure is connected with the connecting rod through a connecting piece, and the connecting piece can be driven by the transmission structure to move at the hollow part of the connecting rod.

In this technical scheme, establish the connecting rod middle part into the fretwork back, when transmission structure produces the displacement under power, because set up on the connecting rod connecting piece can connecting rod fretwork position removes for the one end of connecting rod can not only be in using the connecting rod to move on the radial circumference orbit, can also produce the outer activity of circumference orbit, can arouse the rotation of sensor pivot equally, thereby can let the sensor spread data. Thereby further enhancing the applicability of the direction sensing device.

Further, when the transmission structure is mainly perpendicular to the ground, the transmission structure is preferably a rod-shaped member.

Further, when the transmission structure mainly moves parallel to the ground and the whole structure is used for detecting the angle data, the transmission structure is preferably a sheet component.

Furthermore, in order to detect the angle and displacement data in the three-dimensional direction in an omnibearing manner, a three-dimensional direction sensing device is provided, which comprises more than 2 two-dimensional direction sensing devices in the technical scheme, wherein the rotating shaft of the sensor in one direction sensing device is parallel to the ground, and the rotating shaft of the sensor in one direction sensing device is perpendicular to the ground.

In the technical scheme, more than 2 units are included, and the number of the units is 2; the rotating shaft of the sensor in one direction sensing device is parallel to the ground and is used for monitoring and outputting displacement data vertical to the ground; the rotating shaft of the sensor in the direction sensing device is perpendicular to the ground and used for monitoring and outputting displacement data parallel to the ground.

Preferably, the sensor with the rotating shaft is one of a potentiometer, a hall sensor and an angle sensor.

Drawings

FIG. 1 is a block diagram of the present invention.

FIG. 2 is an enlarged view of the connecting rod 3

FIG. 3 shows example 1

FIG. 4 is an assembly view of example 2

FIG. 5 is a structural exploded view of embodiment 2

Detailed Description

The fixing means, the connecting means, and the like, which are not explicitly described in the technical aspects of the present invention, are conventional techniques, and the contents which are not described in the present specification can be undoubtedly deduced from the conventional techniques, and all of them constitute the contents disclosed in the present specification.

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