Take guiding gutter hard tail gravity sensing strain light to add bold toper striking electron cursory

文档序号:1247061 发布日期:2020-08-21 浏览:28次 中文

阅读说明:本技术 带导流槽硬尾重力感应变光加粗锥形醒目电子浮漂 (Take guiding gutter hard tail gravity sensing strain light to add bold toper striking electron cursory ) 是由 彭海平 于 2020-07-01 设计创作,主要内容包括:本发明公开了一种带导流槽硬尾重力感应变光加粗锥形醒目电子浮漂,包括从上至下依次相连的漂尾、漂主体和漂脚。漂尾包括硬尾、至少一个加粗锥形体。每个加粗锥形体上都设有至少二个导流槽。漂主体内设有电池座,电池座上设有控制电路和电池部分。硬尾上设有电线和至少一个小灯泡,至少一个小灯泡通过电线串联在一起,电线连接控制电路。所述的控制电路包括重力传感器或加速度传感器,以及MCU,所述的MCU接收重力传感器或加速度传感器的数据并控制小灯泡变光,MCU上电一次切换一次变光的灵敏度,变光的灵敏度至少具有二挡循环。集醒目、灵敏度高、稳定、提高钓鱼成功率、可以应用不同场景于一体。将电子浮漂倒着插电池,则可作为常规常亮浮漂使用。(The invention discloses a hard tail gravity sensing strain light thickening conical striking electronic float with a diversion trench. The floating tail comprises a hard tail and at least one thickened conical body. Each thickening conical body is provided with at least two diversion trenches. A battery seat is arranged in the float body, and a control circuit and a battery part are arranged on the battery seat. The hard tail is provided with an electric wire and at least one small bulb, the at least one small bulb is connected in series through the electric wire, and the electric wire is connected with the control circuit. The control circuit comprises a gravity sensor or an acceleration sensor and an MCU, the MCU receives data of the gravity sensor or the acceleration sensor and controls the small bulb to change light, the MCU is electrified to switch the sensitivity of the light change once, and the sensitivity of the light change has at least two cycles. The fishing device has the advantages of being striking, high in sensitivity, stable, capable of improving the fishing success rate and capable of being applied to different scenes. The electronic buoy can be used as a conventional normally-bright buoy by inserting the battery upside down.)

1. A gravity-sensitive strain light thickening conical striking electronic buoy with diversion trenches is characterized by comprising a floating tail, a buoy body and a buoy foot which are sequentially connected from top to bottom, wherein the floating tail comprises a hard tail and at least one thickening conical body, the thickening conical body is sleeved on the hard tail or the thickening conical body and the hard tail are integrated into a whole, and each thickening conical body is provided with at least two diversion trenches;

a battery seat is arranged in the float main body, a control circuit and a battery part are arranged on the battery seat, an electric wire and at least one small bulb are arranged on the hard tail, one thickened conical body corresponds to one small bulb, at least one small bulb is connected in series through the electric wire, and the electric wire is connected with the control circuit; the control circuit comprises a gravity sensor or an acceleration sensor and an MCU, the MCU receives data of the gravity sensor or the acceleration sensor and controls the small bulb to change light, the MCU is electrified to switch the sensitivity of the light change once, and the sensitivity of the light change has at least two cycles.

2. The hard tail gravity induced strain optical thickening conical striking electronic float with the diversion trench as claimed in claim 1, wherein the horizontal cross section of the diversion trench is in a V shape, or a V shape formed by connecting two inner arcs, or a V shape formed by connecting two outer arcs.

3. The gravity-sensitive strain light thickened conical striking electronic float with the diversion trench as claimed in claim 1, wherein all the thickened cones sleeved on the hard tail are thickened cones of at least one color.

4. The hard tail gravity-sensitive strain optoelectronic float with a guide groove as claimed in claim 1, wherein the curved surface and the groove surface of each thickened cone are arranged at intervals.

5. The hard tail gravity-sensitive strain light thickening cone striking electronic float with a diversion trench as claimed in claim 1, wherein the hard tail outer side corresponding to the thickening cone extends outward to be thickened to form a first bulb cavity for accommodating a small bulb, and one first bulb cavity corresponds to one small bulb and one thickening cone.

6. The gravity-sensitive strain light thickening cone striking electronic float with a flow guide groove as claimed in claim 1, wherein the hard tail is cylindrical, the outer wall of the hard tail and the inner wall of the thickening cone enclose to form a second bulb cavity for accommodating a small bulb, and one second bulb cavity corresponds to one small bulb and one thickening cone.

7. The hard tail gravity-sensing strain light thickening conical striking electronic float with the diversion trench as claimed in claim 1, wherein the float main body comprises an upper float body and a lower float body, and the upper float body and the lower float body are detachably connected;

the hard tail is made of a hard material.

8. The gravity-sensitive strain light thickening conical striking electronic buoy with the diversion trench as claimed in claim 1, wherein the hard tail is of a hollow structure or a side wall slotted structure, and when the hard tail is of a hollow structure, the electric wire is stuck in the hard tail;

when the hard tail is in a side wall slotting structure, the electric wire is arranged in the slot.

9. The channeled hard tail gravity-induced strain optical thickening conical striking electronic float according to claim 1, wherein the battery portion is a disposable battery or a rechargeable battery.

10. The guiding gutter hard tail gravity induced strain optical thickening conical striking electronic float according to claim 1, characterized by further comprising the following functions: judging the direction of the buoy when the buoy is powered on, and only lighting when the buoy tail is downward; otherwise, the light may be changed.

Technical Field

The invention relates to a fishing tackle, in particular to a striking electronic buoy with a diversion trench, a hard tail gravity sensing strain light thickening cone and a function of eye relief.

Background

Disclosure of Invention

The present invention aims to solve the technical problem of providing a drain resistor with a diversion trench

The fishing device has the advantages of small force, high sensitivity, stability, capability of improving the fishing success rate by arranging the gravity sensing IC, wide application range and striking electronic buoy with the guide groove, wide range of application and striking function, and the sensitivity at least has 2-gear circulation.

The utility model provides a take hard tail gravity sensing of guiding gutter to meet an emergency and become strong striking electron float of toper, includes from last to lower consecutive floating tail, float main part and float foot. The floating tail comprises a hard tail and at least one thickened conical body. The thickened conical body is sleeved on the hard tail or the thickened conical body and the hard tail are of an integrated structure, and each thickened conical body is provided with at least two flow guide grooves.

A battery seat is arranged in the float body, and a control circuit and a battery part are arranged on the battery seat. The hard tail is provided with an electric wire and at least one small bulb, and one thickened conical body corresponds to one small bulb. At least one small bulb is connected in series through an electric wire, and the electric wire is connected with the control circuit. The control circuit comprises a gravity sensor or an acceleration sensor and an MCU, the MCU receives data of the gravity sensor or the acceleration sensor and controls the small bulb to change light, the MCU is electrified to switch the sensitivity of the light change once, and the sensitivity of the light change has at least two cycles.

In one embodiment, the cross section of the diversion trench in the horizontal direction is in a V shape, or in a V shape formed by connecting two inner arcs, or in a V shape formed by connecting two outer arcs.

In one embodiment, all the thickened cones sleeved on the hard tail are thickened cones with at least one color.

In one embodiment, the color interval of the curved surface and the groove surface of each thickening cone is set.

In one embodiment, the outer side surface of the hard tail is extended and thickened outwards corresponding to the thickened conical body to form a first bulb cavity for accommodating a small bulb, and one first bulb cavity corresponds to one small bulb and one thickened conical body.

In one embodiment, the hard tail is cylindrical, the outer wall of the hard tail and the inner wall of the thickening cone enclose to form a second bulb cavity for accommodating a small bulb, and one second bulb cavity corresponds to one small bulb and one thickening cone.

In one embodiment, the float body comprises an upper float body and a lower float body, and the upper float body and the lower float body are detachably connected;

the hard tail is made of a hard material.

In one embodiment, the hard tail is of a hollow structure or a side wall slotted structure, and when the hard tail is of a hollow structure, the electric wire is stuck in the hard tail;

when the hard tail is in a side wall slotting structure, the electric wire is arranged in the slot.

In one embodiment, the battery portion is a disposable battery or a rechargeable battery.

In one embodiment, the present invention further includes the following functions: judging the direction of the buoy when the buoy is powered on, and only lighting when the buoy tail is downward; otherwise, the light may be changed.

The invention has the advantages and beneficial effects that:

the invention has the advantages of eye-catching, high sensitivity, stability, improved fishing success rate and capability of being applied to different scenes.

1. The design of the thickened conical body ensures the striking, simultaneously reduces the self weight of the float body, and increases the sensitivity and the water flow resistance of the float.

2. The design of the flow guide groove can reduce the resistance of the whole launching of the buoy and further enhance the sensitivity of the buoy, and the drainage of the groove surface (the groove surface refers to the flow guide groove surface) of the thickened conical body and the flow guide of the curved surface (the curved surface refers to the side surface left after the groove surface is removed from the side surface of the thickened conical body) can ensure that the buoy is more stable.

3. The gravity sensor or the acceleration sensor can sense the movement of the float body, so that the small bulb changes color when the fish is judged to be hooked, and the prompt effect is enhanced. And at least two levels of sensitivity are adjusted, so that switching can be performed according to different application scenes, and misoperation is reduced.

4. The invention inserts the battery upside down on the electronic buoy, and can be used as a conventional normally-bright buoy.

Drawings

Fig. 1 is a schematic structural view of embodiment 1.

FIG. 2 is a partial sectional view of the structure of embodiment 1.

Fig. 3 is a sectional view a-a of fig. 2.

Fig. 4 is a structural diagram of the internal components of fig. 1.

Fig. 5 is a schematic structural view of embodiment 2.

FIG. 6 is a partial structural sectional view of embodiment 2.

Fig. 7 is a sectional view B-B of fig. 6.

Fig. 8 is a structural schematic diagram of the internal components of fig. 5.

Fig. 9 is a schematic structural view of the thickened cone and the guide groove of embodiment 3.

Detailed Description

In order to facilitate an understanding of the invention, a full description thereof will be given below with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.

It will be understood that when an element is referred to as being "disposed" on another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present.

Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

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