CN209782299U - Infrared induction lamp - Google Patents

Infrared induction lamp Download PDF

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Publication number
CN209782299U
CN209782299U CN201920933443.4U CN201920933443U CN209782299U CN 209782299 U CN209782299 U CN 209782299U CN 201920933443 U CN201920933443 U CN 201920933443U CN 209782299 U CN209782299 U CN 209782299U
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China
Prior art keywords
casing
storage battery
shell
infrared
induction lamp
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CN201920933443.4U
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Chinese (zh)
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倪瑜帆
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Individual
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Individual
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Priority to CN201920933443.4U priority Critical patent/CN209782299U/en
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Abstract

The utility model discloses an infrared induction lamp, including the casing, be equipped with the fixing base on the side of casing, it is connected with U type frame to rotate on the fixing base, and it has the LED lamp to articulate at the opening part of U type frame, is equipped with the battery in the inside of casing, is equipped with control element on the connecting circuit of LED lamp and battery, is equipped with infrared inductor on the right flank of casing, and infrared inductor is connected with control element, the battery still is connected with photovoltaic module and power plug respectively, and photovoltaic module fixes on the left surface of casing, is equipped with the recess on the downside of casing, and power plug can change the formula and install in the recess, the side all is equipped with the fixed knot who is used for fixed casing around the casing constructs, still is equipped with the sucking disc on fixed knot constructs. The utility model discloses not only remove and simple to operate, it is adjustable to shine the direction moreover.

Description

Infrared induction lamp
Technical Field
The utility model relates to an induction lamp, especially infrared induction lamp.
Background
with the progress of scientific technology, sensor technology is increasingly developed and permeates people's daily life. The infrared sensor is a common one, and is widely applied to automatic doors, automatic lighting control, security, theft prevention and other aspects of airports, hotels and the like, and the common automatic lighting control mainly utilizes that when a human body passes through the pyroelectric infrared sensor, the change of infrared rays caused by the human body is received by the infrared sensor and converted into a certain electric signal, and the lighting control can be realized by utilizing the electric signal.
The existing infrared induction lamp is required to be powered by an external power supply in use, and once the infrared induction lamp is installed, the infrared induction lamp cannot be moved, so that the application range of the induction lamp is greatly limited, and meanwhile, the irradiation direction of the existing infrared induction lamp is generally fixed and is inconvenient to change.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the deficiencies of the prior art and providing an infrared induction lamp which not only is convenient to move and install, but also has adjustable irradiation direction.
In order to achieve the above purpose, the infrared sensing lamp designed by the utility model comprises a shell, a fixed seat is arranged on the upper side surface of the shell, a U-shaped frame is connected on the fixed seat in a rotating way, an LED lamp is hinged at the opening of the U-shaped frame, a storage battery for supplying power to the LED lamp is arranged in the shell, a control element is arranged on a connecting circuit of the LED lamp and the storage battery, an infrared inductor is arranged on the right side surface of the shell and is connected with the control element, the storage battery is also respectively connected with a photovoltaic component and a power plug, the photovoltaic component is fixed on the left side surface of the shell, a groove is arranged on the lower side surface of the shell, the power plug can be rotatably arranged in the groove, fixing structures for fixing the shell are arranged on the front side surface and the back side surface of the shell, each fixing structure comprises an upper fixing plate, a lower fixing, the inner sides of the upper fixing plate and the lower fixing plate are fixedly connected with the shell, suckers are arranged on the outer sides of the upper fixing plate and the lower fixing plate, a rotating handle is arranged at the upper end of the bolt, and a rubber protection pad is arranged at the lower end of the bolt.
At least two first magnet blocks are arranged at the bottom of the fixed seat, and a second magnet block matched with the first magnet blocks is arranged on the shell.
A photovoltaic charging controller is arranged on a connecting circuit of the photovoltaic module and the storage battery, and an alternating current voltage stabilizer is arranged on a connecting circuit of the power plug and the storage battery.
The storage battery is a polymer lithium battery for a mobile power supply.
The infrared sensor is a thermal infrared human body sensor.
The utility model discloses the infrared induction lamp that obtains, its technical effect is through setting up the battery in inside, avoided infrared induction lamp must rely on external power source not enough, charge to the battery through external power source or photovoltaic module, can make infrared induction lamp can random removal use, through setting up fixed knot structure, make things convenient for infrared induction lamp's fixed to improve the application range of LED infrared induction lamp greatly, set up simultaneously can pivoted LED lamp, direction is shone in change that can be very convenient.
Drawings
Fig. 1 is a schematic view of a structure of an infrared induction lamp of embodiment 1;
FIG. 2 is a schematic view showing a structure of an infrared induction lamp of example 1 without an LED lamp;
Fig. 3 is a schematic view showing the connection of the respective components of the infrared induction lamp of embodiment 1.
In the figure: the LED lamp comprises a shell 1, a fixed seat 2, a U-shaped frame 3, an LED lamp 4, a storage battery 5, a control element 6, an infrared sensor 7, a photovoltaic module 8, a power plug 9, a groove 10, an upper fixing plate 11, a lower fixing plate 12, a bolt 13, a sucker 14, a rotary handle 15, a rubber protection pad 16, a photovoltaic charging controller 17, an alternating current voltage stabilizer 18, a first magnet block 19 and a second magnet block 20.
Detailed Description
The present invention will be further explained with reference to the drawings and examples.
Example 1:
As shown in fig. 1-3, the infrared sensing lamp provided in this embodiment includes a housing 1, a fixing base 2 is disposed on an upper side of the housing 1, a U-shaped frame 3 is rotatably connected to the fixing base 2, an LED lamp 4 is hinged to an opening of the U-shaped frame 3, a storage battery 5 for supplying power to the LED lamp 4 is disposed inside the housing 1, a control element 6 is disposed on a connection circuit between the LED lamp 4 and the storage battery 5, an infrared sensor 7 is disposed on a right side of the housing 1, the infrared sensor 7 is connected to the control element 6, the storage battery 5 is further connected to a photovoltaic module 8 and a power plug 9, the photovoltaic module 8 is fixed on a left side of the housing 1, a groove 10 is disposed on a lower side of the housing 1, the power plug 9 is rotatably mounted in the groove 10, the rotatable power plug belongs to an existing technology, and a specific structure is not described in detail, the fixing structure for fixing the shell 1 is arranged on the front side and the rear side of the shell 1 and comprises an upper fixing plate 11, a lower fixing plate 12 and a bolt 13 which penetrates through the upper fixing plate 11 in a spiral mode, the inner sides of the upper fixing plate 11 and the lower fixing plate 12 are fixedly connected with the shell 1, a sucker 14 is arranged on the outer sides of the upper fixing plate 11 and the lower fixing plate 12, a rotating handle 15 is arranged at the upper end of the bolt 13, and a rubber protection pad 16 is arranged at the lower end of the bolt 13.
As shown in fig. 3, at least two first magnet blocks 19 are arranged at the bottom of the fixing base 2, a second magnet block 20 matched with the first magnet blocks 19 is arranged on the casing 1, the fixing base 2 and the casing 1 are detachably connected through the matching of the first magnet blocks 19 and the second magnet blocks 20, when the infrared induction lamp is used in a cabinet, the fixing base 2 and the LED lamp can be taken down (the LED lamp is connected with a controller through a wire, and a part of the wire is stored in the casing), and the LED lamp is pulled out from a place where some light cannot be irradiated to realize illumination.
A photovoltaic charging controller 17 is arranged on a connecting circuit of the photovoltaic module 8 and the storage battery 5, and an alternating current voltage stabilizer 18 is arranged on a connecting circuit of the power plug 9 and the storage battery 5.
The storage battery 5 is a polymer lithium battery for a mobile power supply.
The infrared sensor 7 is a thermal infrared human body sensor.
It should be noted here that: the photovoltaic charge controller 17 is provided on the connection circuit between the photovoltaic module 8 and the storage battery 5, and the ac voltage regulator 18 is provided on the connection circuit between the power plug 9 and the storage battery 5 for the purpose of protecting the storage battery 5, which belongs to the prior art and will not be described in detail herein.
The control element 6 is used for controlling the on-off of the circuit by receiving the infrared signal transmitted by the infrared sensor 7 and by using the infrared signal, and the control element 6 can adopt a 51-chip microcomputer to receive the signal and control the on-off of the circuit, wherein the programming of a control program of the chip microcomputer belongs to a conventional technical means and is not described in detail herein.
The specific working principle is as follows: when the infrared induction lamp is used, the infrared induction lamp can be fixed at a table corner or other positions suitable for clamping by fixing the lower end of the bolt 13 to the lower fixing plate 12 by screwing the bolt 13, if no place suitable for clamping exists in a room, the infrared induction lamp can be fixed to a wall in an adsorbing mode through the sucking disc 14 on the fixing structure, the infrared inductor 7 faces towards a door, when a person opens the door to enter the room at night, the infrared inductor 7 receives infrared information of a human body and transmits the infrared information to the control element 6, the LED lamp 4 is turned on under the control of the control element 6 to play a role in lighting, when the person leaves the induction range of the infrared inductor 7, the LED lamp 4 is automatically turned off in a delayed time under the action of the control element 6 (the control of turning off the LED lamp in a delayed mode belongs to the prior art), the infrared induction lamp can also be applied to a warehouse or a cabinet.
The storage battery 5 is charged through the arranged photovoltaic module 8 or the arranged power plug 9, the infrared induction lamp can be taken to the sunshine without a peripheral power supply, the storage battery 5 is charged by solar energy, the energy-saving effect is achieved, and the fixing structure and the sucker 14 are arranged on the shell 1, so that the infrared induction lamp can be conveniently moved and fixedly installed.
Through setting up U type frame 3 that can rotate, LED lamp 4 articulates on U type frame 3, makes things convenient for the adjustment of LED lamp 4 irradiation direction, and U type frame 3 rotates with fixing base 2 to be connected, and the LED lamp can carry out the rotation of horizontal direction, and the LED lamp can realize the rotation of the vertical direction of LED lamp with U type frame 3 is articulated, and adjustable rotation direction scope is bigger.
through the infrared induction lamp that this embodiment obtained, through setting up battery 5 in inside, avoided infrared induction lamp must rely on external power source not enough, charge battery 5 through external power source or photovoltaic module, can be so that infrared induction lamp can random removal use, through setting up fixed knot structure, make things convenient for infrared induction lamp's installation fixed, improved infrared induction lamp's application range greatly, set up simultaneously can pivoted LED lamp 4, the direction is shone in change that can be very convenient.

Claims (5)

1. An infrared induction lamp, comprising a housing (1), characterized in that: the LED lamp is characterized in that a fixing seat (2) is arranged on the upper side face of a shell (1), a U-shaped frame (3) is connected to the fixing seat (2) in a rotating mode, an LED lamp (4) is hinged to an opening of the U-shaped frame (3), a storage battery (5) used for supplying power to the LED lamp (4) is arranged inside the shell (1), a control element (6) is arranged on a connecting circuit of the LED lamp (4) and the storage battery (5), an infrared inductor (7) is arranged on the right side face of the shell (1), the infrared inductor (7) is connected with the control element (6), the storage battery (5) is further connected with a photovoltaic module (8) and a power plug (9) respectively, the photovoltaic module (8) is fixed on the left side face of the shell (1), a groove (10) is formed in the lower side face of the shell (1), and the power plug (9) can be installed in the, the side all is equipped with the fixed knot who is used for fixed casing (1) around casing (1) and constructs, and fixed knot constructs bolt (13) that upper fixed plate (11), bottom plate (12) and spiral run through upper fixed plate (11), the inboard and casing (1) fixed connection of upper fixed plate (11) and bottom plate (12), all is equipped with sucking disc (14) in the outside of upper fixed plate (11) and bottom plate (12) the upper end of bolt (13) is equipped with rotation handle (15), is equipped with rubber protection pad (16) at the lower extreme of bolt (13).
2. The ir induction lamp according to claim 1, wherein: at least two first magnet blocks (19) are arranged at the bottom of the fixed seat (2), and a second magnet block (20) matched with the first magnet blocks (19) is arranged on the shell (1).
3. the ir induction lamp according to claim 1, wherein: a photovoltaic charging controller (17) is arranged on a connecting circuit of the photovoltaic module (8) and the storage battery (5), and an alternating current voltage stabilizer (18) is arranged on a connecting circuit of the power plug (9) and the storage battery (5).
4. The ir induction lamp according to claim 1, wherein: the storage battery (5) is a polymer lithium battery for a mobile power supply.
5. The ir induction lamp according to claim 1, wherein: the infrared sensor (7) is a thermal infrared human body sensor.
CN201920933443.4U 2019-06-20 2019-06-20 Infrared induction lamp Active CN209782299U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920933443.4U CN209782299U (en) 2019-06-20 2019-06-20 Infrared induction lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920933443.4U CN209782299U (en) 2019-06-20 2019-06-20 Infrared induction lamp

Publications (1)

Publication Number Publication Date
CN209782299U true CN209782299U (en) 2019-12-13

Family

ID=68789492

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920933443.4U Active CN209782299U (en) 2019-06-20 2019-06-20 Infrared induction lamp

Country Status (1)

Country Link
CN (1) CN209782299U (en)

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