CN209931281U - Conical gravity induction light-changing hard tail electronic float - Google Patents

Conical gravity induction light-changing hard tail electronic float Download PDF

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Publication number
CN209931281U
CN209931281U CN201920629758.XU CN201920629758U CN209931281U CN 209931281 U CN209931281 U CN 209931281U CN 201920629758 U CN201920629758 U CN 201920629758U CN 209931281 U CN209931281 U CN 209931281U
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hard
tail
float
led small
small bulb
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CN201920629758.XU
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Chinese (zh)
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彭海平
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Hunan Liu An Fishing Tackle Co Ltd
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Hunan Liu An Fishing Tackle Co Ltd
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Abstract

The utility model discloses a toper gravity-sensing becomes light hard tail electron and floats, include from last to the consecutive hard tail down, float the main part and float the foot. At least one thickening sleeve is sleeved on the outer side surface of the upper part of the hard tail at equal intervals. The upper part of each thickening sleeve is conical, and the lower part of each thickening sleeve is inverted conical. A battery seat is arranged in the float body. The battery seat is provided with a gravity sensing IC, a control circuit and a battery part. The hard tail is provided with an electric wire. The hard tail is provided with at least one LED small bulb which is connected in series through an electric wire, the color of light emitted by the LED small bulb is controlled by the gravity sensing IC, the direction of the gravity sensing IC is set to be vertical, if acceleration exists, a signal is output, and the color of the LED small bulb is controlled to change. The LED small bulb is connected with the battery part through an electric wire, and the control circuit controls the LED small bulb to be turned on and off. The utility model discloses a light hard material of weight do float tail, toper striking, go into water fast, the reaction is sensitive, be equipped with gravity-feed tank IC and improve the fishing success rate.

Description

Conical gravity induction light-changing hard tail electronic float
Technical Field
The invention relates to a fishing tackle, in particular to a conical gravity-sensing light-changing hard-tail electronic float.
Background
The existing electronic buoy has the following defects:
(1) the floating tail is a cylindrical light guide body, the light is not obvious in light emitting, the cylindrical light guide body is slow in water entering and insensitive in reaction, and the light guide bodies are hoses which are heavy, so that the reaction is insensitive; (2) when fishes are hooked frequently, a fisher responds slowly and cannot respond at the first time, so that the fishing success rate is low, and the fishing interest of the fisher is reduced.
Disclosure of Invention
The invention aims to solve the technical problems that in the prior art, a hose is heavy, a cylinder is not striking, water enters slowly, reaction is insensitive, fishing success rate is low and the like, and provides the conical gravity sensing light-changing hard tail electronic float which adopts a light-weight hard material as a float tail, is conical and striking, enters water quickly, reacts sensitively and is provided with a gravity sensing IC (integrated Circuit) to improve the fishing success rate.
A conical gravity-sensing light-variable hard-tail electronic float comprises a hard tail, a float main body and a float foot which are sequentially connected from top to bottom. At least one thickening sleeve is sleeved on the outer side surface of the upper part of the hard tail at equal intervals. The upper part of each thickening sleeve is conical, and the lower part of each thickening sleeve is inverted conical.
A battery seat is arranged in the float body. The battery seat is provided with a gravity sensing IC, a control circuit and a battery part. The hard tail is provided with an electric wire. The hard tail is provided with at least one LED small bulb which is connected in series through an electric wire, one LED small bulb corresponds to one thickening sleeve, the color of light emitted by the LED small bulb is controlled by the gravity sensing IC, the direction of the gravity sensing IC is set to be vertical, if acceleration exists, a signal is output, and the color of the LED small bulb is controlled to change. The LED small bulb is connected with the battery part through an electric wire, and the control circuit controls the LED small bulb to be turned on and off.
In one embodiment, the hard tail is made of a hard material.
In one embodiment, the outer side surface of the hard tail extends outwards and is thickened corresponding to the thickened sleeve to form a first bulb cavity for accommodating the LED small bulb, and one first bulb cavity corresponds to one LED small bulb and one thickened sleeve.
In one embodiment, the hard tail is cylindrical. The outer wall of hard tail and the inner wall of the thickening sleeve enclose to form a second bulb cavity for accommodating the LED small bulb, and one second bulb cavity corresponds to one LED small bulb and one thickening sleeve.
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.
In one embodiment, the battery portion is a disposable battery or a first rechargeable battery.
In one embodiment, the battery part comprises a second rechargeable battery and a charging circuit, and the second rechargeable battery can be charged by inducing the wireless charger through the wireless charging contact device and through the charging circuit.
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.
The invention has the advantages and beneficial effects that:
1. the invention adopts the hard tail as the floating tail, and has light weight; the thickened sleeve is sleeved on the hard tail, the upper part of the thickened sleeve is conical, the lower part of the thickened sleeve is inverted conical, and the thickened sleeve is striking, quick to drain and sensitive to reaction; the invention is further provided with a gravity sensing IC, when a fish catches a fish, the gravity sensing IC controls the LED small bulb to change color, the fishing person is reminded to respond at the first time, the fishing success rate is improved, and meanwhile, the fishing interest of the fishing person is also improved.
2. The invention adopts the hard tail and the LED small bulb is arranged on the hard tail, thereby overcoming the defect that the hose light guide body is used as the floating tail in the prior art.
Drawings
Fig. 1 is a schematic structural view of embodiment 1.
Fig. 2 is an enlarged view of a portion a in fig. 1.
Fig. 3 is a schematic structural view of the internal components of fig. 1.
Fig. 4 is a schematic view of the structure of fig. 1 with the thickening removed.
Fig. 5 is a schematic structural view of embodiment 2.
Fig. 6 is an enlarged view of a portion B in fig. 5.
Fig. 7 is a schematic structural view of the internal components of fig. 5.
Fig. 8 is a partial structural view of embodiment 2.
Fig. 9 is a schematic view of the structure of fig. 5 with the thickening removed.
Fig. 10 is a schematic view of a part of the structure of a battery according to example 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.
Example 1
Referring to fig. 1 to 3, a conical gravity-sensing light-variable hard-tail electronic float comprises a hard tail 1, a float main body 2 and a float foot 3 which are sequentially connected from top to bottom.
Wherein, 3 thickening covers 4 are equidistantly sleeved on the outer side surface of the upper part of the hard tail 1.
Specifically, the upper portion of each thickening sleeve 4 is conical, and the lower portion of each thickening sleeve 4 is inverted conical.
Wherein, a battery seat 5 is arranged in the float body 2.
Specifically, the battery holder 5 is provided with a gravity sensing IC (6), a control circuit 7 and a battery portion 8. The hard tail 1 is of a hollow structure. The hard tail 1 is internally provided with an electric wire 9. The hard tail 1 is provided with three LED small bulbs 10 which are connected in series through electric wires 9, one LED small bulb 10 corresponds to one thickening sleeve 4, the color of light emitted by the LED small bulb 10 is controlled by the gravity sensing IC (6), the direction of the gravity sensing IC (6) is set to be vertical, if acceleration exists, the signal is output, and the color of the LED small bulb 10 is controlled to change. The LED small bulb 10 is connected with the battery part through a wire 9, and the LED small bulb 10 is controlled to be turned on and off by the control circuit 7.
Wherein, the hard tail 1 is a hollow structure and is made of hard materials (namely a hard tube).
As shown in fig. 4, the outer side of the hard tail 1 corresponding to the thickened sleeve 4 extends outwards to form a first bulb cavity 11 for accommodating the LED small bulb 10, and one first bulb cavity 11 corresponds to one LED small bulb 10 and one thickened sleeve 4.
Wherein the wire 9 is stuck in the hard tail 1.
Specifically, the float body 2 comprises an upper float body 12 and a lower float body 13, and the upper float body 12 is detachably connected with the lower float body 13.
The battery part in this embodiment 1 is a disposable battery 8.
Working principle and working process of the invention
When the fish is hooked, the acceleration of the vertical direction can be generated, the gravity sensing IC (6) can output a signal to control the LED small bulb 10 to change the color, a fisher is timely reminded, and the fishing success rate of the fisher is high.
The invention has the advantages and beneficial effects that:
1. the invention adopts the hard tail 1 as the floating tail, and has light weight; the hard tail 1 is sleeved with the thickened sleeve 4, the upper part of the thickened sleeve 4 is conical, the lower part of the thickened sleeve is inverted conical, and the thickened sleeve is striking, quick to drain and sensitive in response; the fishing hook is further provided with the gravity sensing IC (6), when a fish catches a fish, the gravity sensing IC (6) controls the LED small bulb (10) to change color, a fisher is reminded to respond at the first time, the fishing success rate is improved, and meanwhile the fishing interest of the fisher is improved.
2. The invention adopts the hard tail 1 and the LED small bulb 10 arranged on the hard tail, thereby overcoming the defect that the hose light guide body is used as the floating tail in the prior art.
Example 2
Referring to fig. 5 to 9, a conical gravity-sensing light-variable hard-tail electronic float comprises a hard tail 1, a float body 2 and a float foot 3 which are connected in sequence from top to bottom.
Wherein, the outer side surface of the upper part of the hard tail 1 is sleeved with three thickening sleeves 4 at equal intervals. The upper part of each thickening sleeve 4 is conical, and the lower part of each thickening sleeve 4 is inverted conical.
Wherein, a battery seat 5 is arranged in the float body 2.
Specifically, the battery holder 5 is provided with a gravity sensing IC (6), a control circuit 7 and a battery portion 8. The hard tail 1 is of a hollow structure. The hard tail 1 is internally provided with an electric wire 9. The hard tail 1 is provided with three LED small bulbs 10 which are connected in series through electric wires 9, one LED small bulb 10 corresponds to one thickening sleeve 4, the color of light emitted by the LED small bulb 10 is controlled by the gravity sensing IC (6), the direction of the gravity sensing IC (6) is set to be vertical, if acceleration exists, the signal is output, and the color of the LED small bulb 10 is controlled to change. The LED small bulb 10 is connected with the battery part through a wire 9, and the LED small bulb 10 is controlled to be turned on and off by the control circuit 7.
Wherein, the hard tail 1 is a hollow structure and is made of hard materials (namely a hard tube).
As shown in fig. 8 and 9, the hard tail 1 has a cylindrical shape. The outer wall of the hard tail 1 and the inner wall of the thickened sleeve 4 enclose to form a second bulb cavity 14 for accommodating the LED small bulb 10, and one second bulb cavity 14 corresponds to one LED small bulb 10 and one thickened sleeve 4.
Wherein the wire 9 is stuck in the hard tail 1.
Specifically, the float body 2 comprises an upper float body 12 and a lower float body 13, and the upper float body 12 is detachably connected with the lower float body 13.
The battery part in this embodiment 2 is a disposable battery 8.
Working principle and working process of the invention
When the fish is hooked, the acceleration of the vertical direction can be generated, the gravity sensing IC (6) can output a signal to control the LED small bulb 10 to change the color, a fisher is timely reminded, and the fishing success rate of the fisher is high.
The invention has the advantages and beneficial effects that:
1. the invention adopts the hard tail 1 as the floating tail, and has light weight; the hard tail 1 is sleeved with the thickened sleeve 4, the upper part of the thickened sleeve 4 is conical, the lower part of the thickened sleeve is inverted conical, and the thickened sleeve is striking, quick to drain and sensitive in response; the fishing hook is further provided with the gravity sensing IC (6), when a fish catches a fish, the gravity sensing IC (6) controls the LED small bulb (10) to change color, a fisher is reminded to respond at the first time, the fishing success rate is improved, and meanwhile the fishing interest of the fisher is improved.
2. The invention adopts the hard tail 1 and the LED small bulb 10 arranged on the hard tail, thereby overcoming the defect that the hose light guide body is used as the floating tail in the prior art.
Example 3
The present embodiment 3 is different from the embodiment 1 only in that, as shown in fig. 10, the battery part in the present embodiment 3 includes a second rechargeable battery 81 and a charging circuit 82, and the second rechargeable battery 81 can be charged by sensing the wireless charger through the wireless charging contact device 83 and through the charging circuit 82.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. A conical gravity sensing light-variable hard tail electronic float is characterized by comprising a hard tail, a float main body and a float foot which are sequentially connected from top to bottom, wherein at least one thickening sleeve is sleeved on the outer side surface of the upper part of the hard tail at equal intervals, the upper part of each thickening sleeve is conical, the lower part of each thickening sleeve is inverted conical, a battery seat is arranged in the float main body, a gravity sensing IC is arranged on the battery seat, the LED lamp comprises a control circuit and a battery part, wherein an electric wire is arranged on a hard tail, at least one LED small bulb which is connected in series through the electric wire is arranged on the hard tail, one LED small bulb corresponds to a thickening sleeve, the color of light emitted by the LED small bulb is controlled by a gravity sensing IC, the direction of the gravity sensing IC is set to be vertical, if acceleration exists, the LED small bulb is output, the color of the LED small bulb is controlled, the LED small bulb is controlled to change, the LED small bulb is connected with the battery part through the electric wire, and the control circuit controls the LED small bulb to be turned on and off.
2. The tapered gravity-sensing light-variable hard-tail electronic float according to claim 1, wherein the hard tail is made of a hard material.
3. The tapered gravity-sensing light-variable hard-tail electronic float according to claim 1, wherein the hard-tail outer side surface is extended and thickened outwards corresponding to the thickened sleeve to form a first bulb cavity for accommodating the LED small bulb, and one first bulb cavity corresponds to one LED small bulb and one thickened sleeve.
4. The tapered gravity-sensing light-variable hard-tail electronic float according to claim 1, wherein the hard tail is cylindrical, an outer wall of the hard tail and an inner wall of the thickened sleeve enclose a second bulb cavity for accommodating the LED small bulb, and one second bulb cavity corresponds to one LED small bulb and one thickened sleeve.
5. The tapered gravity-sensing light-variable hard-tail electronic float according to claim 1, wherein 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.
6. The tapered gravity-sensing darkening hard-tail electronic float of claim 1, wherein the battery portion is a disposable battery or a first rechargeable battery.
7. The tapered gravity-sensing darkening hard-tail electronic float of claim 1, wherein the battery section comprises a second rechargeable battery and a charging circuit, the second rechargeable battery senses the wireless charger through the wireless charging contact device and can be charged through the charging circuit.
8. The tapered gravity sensing light-variable hard tail electronic float according to 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.
CN201920629758.XU 2019-05-06 2019-05-06 Conical gravity induction light-changing hard tail electronic float Active CN209931281U (en)

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Application Number Priority Date Filing Date Title
CN201920629758.XU CN209931281U (en) 2019-05-06 2019-05-06 Conical gravity induction light-changing hard tail electronic float

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Application Number Priority Date Filing Date Title
CN201920629758.XU CN209931281U (en) 2019-05-06 2019-05-06 Conical gravity induction light-changing hard tail electronic float

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111642475A (en) * 2020-07-01 2020-09-11 湖南柳岸钓具有限公司 Hard tail gravity sensing strain photoelectron buoy with diversion trench and light-changing control method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111642475A (en) * 2020-07-01 2020-09-11 湖南柳岸钓具有限公司 Hard tail gravity sensing strain photoelectron buoy with diversion trench and light-changing control method

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