CN109425082A - Intelligent appliance remote control device - Google Patents

Intelligent appliance remote control device Download PDF

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Publication number
CN109425082A
CN109425082A CN201710736293.3A CN201710736293A CN109425082A CN 109425082 A CN109425082 A CN 109425082A CN 201710736293 A CN201710736293 A CN 201710736293A CN 109425082 A CN109425082 A CN 109425082A
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CN
China
Prior art keywords
conducting wire
cathode
supported
anode
circuit board
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201710736293.3A
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Chinese (zh)
Inventor
薛志群
薛震华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangsu Qunda Intelligent Technology Co Ltd
Original Assignee
Jiangsu Qunda Intelligent Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201710736293.3A priority Critical patent/CN109425082A/en
Publication of CN109425082A publication Critical patent/CN109425082A/en
Pending legal-status Critical Current

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Abstract

The present invention discloses a kind of intelligent appliance remote control device, including pedestal and remote controler, the pedestal further comprises bottom shell body, is located at the intracorporal power supply circuit board of bottom case, commercial power interface, cathode-supported conducting wire and anode-supported conducting wire, and the remote controler further comprises outer housing, control circuit board, positive iron plate and cathode iron plate;The depressed area being embedded in one for remote controler on the bottom shell body, the depressed area one side edge of this bottom shell body are provided with a lug boss for being used to support remote controler, 2 channel slots are provided on the bottom shell body;The anode iron plate, the respective one end of cathode iron plate fixing end be electrically connected respectively in control circuit board, touch screen includes sheet glass and the ITO inductive layer that is overlying on sheet glass.The present invention is connected by the positive and negative anodes elastic slice on pedestal with the positive and negative anodes iron plate pick-up current on remote controler, realizes high reliability electrical contact charging, and improve the sensitivity of touch-control, which reduce the response times.

Description

Intelligent appliance remote control device
Technical field
The present invention relates to a kind of air-conditioning universal remote control more particularly to a kind of intelligent appliance remote control devices.
Background technique
Air-conditioning remote control is to set air-conditioning outdoor temperature by infra-red remote control by remote controler, for sense temperature, Temperature sensor is fixed on inside air-conditioning, air-conditioner controller is sent to by infrared ray by the temperature value that remote controler is set, The temperature for temperature and the remote controler setting that air-conditioner controller is detected according to temperature sensor is compared, and air conditioner is made to regulate and control room temperature Reach set temperature.Existing air-conditioning remote control is powered often through battery, how to be designed the chargeable and high reliability of one kind and is filled The remote controler of electricity becomes the direction that those of ordinary skill in the art make great efforts.
Summary of the invention
The present invention provides a kind of intelligent appliance remote control device, this intelligent appliance remote control device pedestal passes through the touching charging of elastic slice electricity It charges to remote controler, can charge to other equipment in pedestal charging, after pedestal is powered, pass through the positive and negative anodes elastic slice on pedestal It is connected with the positive and negative anodes iron plate pick-up current on remote controler, realizes high reliability electrical contact charging.
In order to achieve the above objectives, the technical solution adopted by the present invention is that: a kind of intelligent appliance remote control device, including pedestal and Remote controler, the pedestal further comprise bottom shell body, lead positioned at the intracorporal power supply circuit board of bottom case, commercial power interface, cathode-supported Line and anode-supported conducting wire, the remote controler further comprise outer housing, control circuit board, positive iron plate and cathode iron plate, institute It states and is provided with 2 channel slots on bottom shell body;
The anode iron plate, the respective one end of cathode iron plate fixing end be electrically connected respectively in control circuit board, this positive iron plate, The contact jaw of the respective other end of cathode iron plate each extends over out outer housing lower end;
The fixing end of the respective one end of the cathode-supported conducting wire, anode-supported conducting wire is electrically connected respectively in control circuit board, this The elastic tip of the respective other end of cathode-supported conducting wire, anode-supported conducting wire is located at immediately below 2 channel slots;
There is a L shape support rod between the cathode-supported conducting wire, the respective fixing end of anode-supported conducting wire and elastic tip, The cathode-supported conducting wire, the respective fixing end of anode-supported conducting wire and elastic tip are located at cathode-supported conducting wire, anode branch Support the both ends of the respective L shape support rod of conducting wire;
The fixing end of the respective one end of the cathode-supported conducting wire, anode-supported conducting wire is by sequentially connected U-bend pars convoluta, level Portion and bending item portion composition, this U-bend pars convoluta connect with L shape support rod, be provided on the power supply circuit board strip through-hole with Circular hole, the U-bend pars convoluta, bending item portion are respectively embedded into the strip through-hole of power supply circuit board, in circular hole;
Respectively elastic tip is perpendicular by horizontal bar portion, the first vertical bars and second for the cathode-supported conducting wire, anode-supported conducting wire Straight-bar portion composition, between the first vertical bars and the second vertical bars, this first vertical bars is located at water in this horizon bar portion Between flat bar portion and L shape support rod;
The touch screen includes sheet glass and the ITO inductive layer that is overlying on sheet glass, this ITO inductive layer further comprises at least one A pin area, several Touch Zones, several first conducting wire items and several second conducting wire items, several Touch Zone compartment of terrain point It is distributed in glass sheet surface, for several described Touch Zone a part close to pin area, several described Touch Zone another part are separate Pin area is electrically connected between the Touch Zone and pin area of pin area by the first conducting wire item, close to the Touch Zone of pin area It is electrically connected between pin area by the first conducting wire item, passes through the second conducting wire item between Touch Zone and pin area far from pin area Electrical connection, the width of this second conducting wire item are greater than the width of the first conducting wire item.
Further improved technology scheme is as follows in above-mentioned technical proposal:
1. in above scheme, the strip through-hole of the U-bend pars convoluta and power supply circuit board is interference fitted.
2. further including a USB interface in above scheme, this USB interface is connected to power supply circuit board.
Due to the above technical solutions, the present invention has the following advantages over the prior art:
1. intelligent appliance remote control device of the present invention, pedestal is charged by the touching charging of elastic slice electricity to remote controler, in pedestal charging It can charge to other equipment, after pedestal is powered, be connect by the positive and negative anodes elastic slice on pedestal with the positive and negative anodes iron plate on remote controler Current lead-through is touched, realizes high reliability electrical contact charging;Secondly, the respective one end of its cathode-supported conducting wire, anode-supported conducting wire Fixing end is made of sequentially connected U-bend pars convoluta, horizontal part and bending item portion, this U-bend pars convoluta and L shape support rod connect It connects, strip through-hole and circular hole is provided on the power supply circuit board, the U-bend pars convoluta, bending item portion are respectively embedded into power circuit In the strip through-hole of plate, circular hole, prevents the fixing end of support conducting wire from falling off in welding, keep the reliability of electrical contact, welding Elder generation's stationary positioned when tin, also facilitates scolding tin to weld, and has saved manufacturing time;It again, further include a USB interface, this USB connects Mouth is connected to power supply circuit board, by hard-wired bidirectional power supply, passes through charging using USB5V charger by hardware realization Line gives remote controler base for supplying power, and remote controler is furnished with USB5V output simultaneously.
2. intelligent appliance remote control device of the present invention is led between the Touch Zone and pin area of pin area by first Lines electrical connection, is electrically connected between the Touch Zone and pin area of pin area by the first conducting wire item, the touching far from pin area It being electrically connected between control area and pin area by the second conducting wire item, the width of this second conducting wire item is greater than the width of the first conducting wire item, According to the difference of distance, line thickness size is led in differential design, improves the sensitivity of touch-control, and which reduce when response Between;Secondly, having L shape support between its cathode-supported conducting wire, the respective fixing end of anode-supported conducting wire and elastic tip Bar, the cathode-supported conducting wire, the respective fixing end of anode-supported conducting wire and elastic tip are located at cathode-supported conducting wire, anode Support the both ends of the respective L shape support rod of conducting wire, the cathode-supported conducting wire, anode-supported conducting wire respectively elastic tip by level Bar portion, the first vertical bars and the second vertical bars composition, this horizon bar portion is located at the first vertical bars and the second vertical bars Between, this first vertical bars is between horizontal bar portion and L shape support rod, so that support conducting wire has certain elasticity, To guarantee the reliability with the electrical contact of positive and negative anodes iron plate, to extend the service life of product.
Detailed description of the invention
Attached drawing 1 is intelligent appliance remote control device outline structural diagram of the present invention;
Attached drawing 2 is the structural schematic diagram of intelligent appliance remote control device of the present invention;
Attached drawing 3 is the partial structural diagram of intelligent appliance remote control device of the present invention;
Attached drawing 4 is the decomposition texture schematic diagram of pedestal of the present invention;
Attached drawing 5 is the partial structural diagram of pedestal of the present invention;
Attached drawing 6 is cathode-supported conductor structure schematic diagram of the present invention;
Attached drawing 7 is cathode-supported conducting wire of the present invention and anode-supported conductor structure schematic diagram;
Attached drawing 8 is touch-control screen structure schematic diagram in touch remote controler of the present invention.
In the figures above: 1, pedestal;2, remote controler;3, bottom shell body;31, depressed area;33, channel slot;4, power supply circuit board; 5, commercial power interface;6, cathode-supported conducting wire;7, anode-supported conducting wire;8, outer housing;9, control circuit board;10, positive iron plate; 11, cathode iron plate;12, USB interface;13, L shape support rod;141, horizontal bar portion;142, the first vertical bars;143, second Vertical bars;15, horizontal part;16, bending item portion;17, strip through-hole;18, circular hole;19, U-bend pars convoluta;21, touch screen;22, Sheet glass;23, ITO inductive layer;231, pin area;232, Touch Zone;233, the first conducting wire item;234, the second conducting wire item.
Specific embodiment
The invention will be further described with reference to the accompanying drawings and embodiments:
Embodiment 1: a kind of intelligent appliance remote control device, including pedestal 1 and remote controler 2, the pedestal 1 further comprises bottom shell body 3, the power supply circuit board 4 in bottom shell body 3, commercial power interface 5, cathode-supported conducting wire 6 and anode-supported conducting wire 7, the remote control Device 2 further comprises outer housing 8, control circuit board 9, positive iron plate 10 and cathode iron plate 11, is provided with 2 on the bottom shell body 3 Channel slot 33;
It is described anode iron plate 10, the respective one end of cathode iron plate 11 fixing end be electrically connected respectively in control circuit board 9, this anode Iron plate 10, the respective other end of cathode iron plate 11 contact jaw each extend over out 8 lower end of outer housing;
The cathode-supported conducting wire 6, the respective one end of anode-supported conducting wire 7 fixing end be electrically connected respectively in control circuit board 9, This cathode-supported conducting wire 6, the respective other end of anode-supported conducting wire 7 elastic tip be located at immediately below 2 channel slots 33;
There is a L shape support rod between the cathode-supported conducting wire 6, the respective fixing end of anode-supported conducting wire 7 and elastic tip 13, the cathode-supported conducting wire 6, the respective fixing end of anode-supported conducting wire 7 and elastic tip be located at cathode-supported conducting wire 6, The both ends of the respective L shape support rod 13 of anode-supported conducting wire 7;
The cathode-supported conducting wire 6, the respective one end of anode-supported conducting wire 7 fixing end by sequentially connected U-bend pars convoluta 19, Horizontal part 15 and bending item portion 16 form, this U-bend pars convoluta 19 connect with L shape support rod 13, opens on the power supply circuit board 4 There are strip through-hole 17 and circular hole 18, the U-bend pars convoluta 19, bending item portion 16 are respectively embedded into the strip through-hole of power supply circuit board 4 17, in circular hole 18;
The cathode-supported conducting wire 6, the respective elastic tip of anode-supported conducting wire 7 are by horizontal bar portion 141, the first vertical bars 142 With the second vertical bars 143 form, this horizontal bar portion 141 between the first vertical bars 142 and the second vertical bars 143, This first vertical bars 142 is between horizontal bar portion 141 and L shape support rod 13;
The touch screen 21 includes sheet glass 22 and the ITO inductive layer 23 being overlying on sheet glass 22, this ITO inductive layer 23 is further Including at least one pin area 231, several Touch Zones 232, several first conducting wire items 233 and several second conducting wire items 234, several 232 compartment of terrain of Touch Zone are distributed in 22 surface of sheet glass, several described 232 a part of Touch Zone are close to pin Area 231, Touch Zone 232 and pin of several described 232 another part of Touch Zone far from pin area 231, close to pin area 231 It is electrically connected between area 231 by the first conducting wire item, is led between the Touch Zone and pin area 231 of pin area 231 by first Lines 233 are electrically connected, and are electrically connected between Touch Zone and pin area 231 far from pin area 231 by the second conducting wire item 234, this The width of second conducting wire item 234 is greater than the width of the first conducting wire item 233.
It further include a usb 12, this usb 12 is connected to power supply circuit board 4.
Embodiment 2: a kind of intelligent appliance remote control device, including pedestal 1 and remote controler 2, the pedestal 1 further comprises bottom Shell 3, the power supply circuit board 4 in bottom shell body 3, commercial power interface 5, cathode-supported conducting wire 6 and anode-supported conducting wire 7, it is described Remote controler 2 further comprises outer housing 8, control circuit board 9, positive iron plate 10 and cathode iron plate 11, is provided on the bottom shell body 3 2 channel slots 33;
It is described anode iron plate 10, the respective one end of cathode iron plate 11 fixing end be electrically connected respectively in control circuit board 9, this anode Iron plate 10, the respective other end of cathode iron plate 11 contact jaw each extend over out 8 lower end of outer housing;
The cathode-supported conducting wire 6, the respective one end of anode-supported conducting wire 7 fixing end be electrically connected respectively in control circuit board 9, This cathode-supported conducting wire 6, the respective other end of anode-supported conducting wire 7 elastic tip be located at immediately below 2 channel slots 33;
There is a L shape support rod between the cathode-supported conducting wire 6, the respective fixing end of anode-supported conducting wire 7 and elastic tip 13, the cathode-supported conducting wire 6, the respective fixing end of anode-supported conducting wire 7 and elastic tip be located at cathode-supported conducting wire 6, The both ends of the respective L shape support rod 13 of anode-supported conducting wire 7;
The cathode-supported conducting wire 6, the respective one end of anode-supported conducting wire 7 fixing end by sequentially connected U-bend pars convoluta 19, Horizontal part 15 and bending item portion 16 form, this U-bend pars convoluta 19 connect with L shape support rod 13, opens on the power supply circuit board 4 There are strip through-hole 17 and circular hole 18, the U-bend pars convoluta 19, bending item portion 16 are respectively embedded into the strip through-hole of power supply circuit board 4 17, in circular hole 18;
The cathode-supported conducting wire 6, the respective elastic tip of anode-supported conducting wire 7 are by horizontal bar portion 141, the first vertical bars 142 With the second vertical bars 143 form, this horizontal bar portion 141 between the first vertical bars 142 and the second vertical bars 143, This first vertical bars 142 is between horizontal bar portion 141 and L shape support rod 13;
The touch screen 21 includes sheet glass 22 and the ITO inductive layer 23 being overlying on sheet glass 22, this ITO inductive layer 23 is further Including at least one pin area 231, several Touch Zones 232, several first conducting wire items 233 and several second conducting wire items 234, several 232 compartment of terrain of Touch Zone are distributed in 22 surface of sheet glass, several described 232 a part of Touch Zone are close to pin Area 231, Touch Zone 232 and pin of several described 232 another part of Touch Zone far from pin area 231, close to pin area 231 It is electrically connected between area 231 by the first conducting wire item, is led between the Touch Zone and pin area 231 of pin area 231 by first Lines 233 are electrically connected, and are electrically connected between Touch Zone and pin area 231 far from pin area 231 by the second conducting wire item 234, this The width of second conducting wire item 234 is greater than the width of the first conducting wire item 233.
The strip through-hole 17 of above-mentioned U-bend pars convoluta 19 and power supply circuit board 4 is interference fitted.
When taking above-mentioned intelligent appliance remote control device, pedestal is charged by the touching charging of elastic slice electricity to remote controler, in pedestal It can charge to other equipment when charging, after pedestal is powered, pass through the positive and negative anodes on the positive and negative anodes elastic slice and remote controler on pedestal High reliability electrical contact charging is realized in the conducting of iron plate pick-up current;Secondly, its cathode-supported conducting wire, anode-supported conducting wire are respectively The fixing end of one end is made of sequentially connected U-bend pars convoluta, horizontal part and bending item portion, this U-bend pars convoluta and L shape branch Strut connects, and is provided with strip through-hole and circular hole on the power supply circuit board, the U-bend pars convoluta, bending item portion are respectively embedded into electricity In the strip through-hole of source circuit plate, circular hole, prevents the fixing end of support conducting wire from falling off in welding, keep the reliable of electrical contact Property, elder generation's stationary positioned in scolding tin also facilitates scolding tin to weld, has saved manufacturing time;It again, further include a USB interface, This USB interface is connected to power supply circuit board, by hard-wired bidirectional power supply, uses USB5V charger by hardware realization Remote controler base for supplying power is given by charging cable, remote controler is furnished with USB5V output simultaneously;Secondly, its Touch Zone close to pin area It is electrically connected between pin area by the first conducting wire item, passes through the first conducting wire item between the Touch Zone and pin area of pin area Electrical connection is electrically connected between Touch Zone and pin area far from pin area by the second conducting wire item, the width of this second conducting wire item Greater than the width of the first conducting wire item, according to the difference of distance, line thickness size is led in differential design, improves touch-control Sensitivity, which reduce the response times.
The above embodiments merely illustrate the technical concept and features of the present invention, and its object is to allow person skilled in the art Scholar cans understand the content of the present invention and implement it accordingly, and it is not intended to limit the scope of the present invention.It is all according to the present invention Equivalent change or modification made by Spirit Essence, should be covered by the protection scope of the present invention.

Claims (3)

1. a kind of intelligent appliance remote control device, it is characterised in that: including pedestal (1) and remote controler (2), the pedestal (1) is into one Step include bottom shell body (3), be located at bottom shell body (3) in power supply circuit board (4), commercial power interface (5), cathode-supported conducting wire (6) and Anode-supported conducting wire (7), the remote controler (2) further comprise outer housing (8), control circuit board (9), touch screen (21), just Pole iron plate (10) and cathode iron plate (11) are provided with 2 channel slots (33) on the bottom shell body (3);
Respectively the fixing end of one end is electrically connected respectively on control circuit board (9) for the anode iron plate (10), cathode iron plate (11), The contact jaw of the respective other end of this anode iron plate (10), cathode iron plate (11) each extends over out outer housing (8) lower end;
Respectively the fixing end of one end is electrically connected respectively to control circuit board for the cathode-supported conducting wire (6), anode-supported conducting wire (7) (9) on, the elastic tip of the respective other end of this cathode-supported conducting wire (6), anode-supported conducting wire (7) is located at 2 channel slots (33) immediately below;
There is a L shape branch between the cathode-supported conducting wire (6), the respective fixing end of anode-supported conducting wire (7) and elastic tip Strut (13), the cathode-supported conducting wire (6), the respective fixing end of anode-supported conducting wire (7) and elastic tip are located at cathode Support the both ends of the respective L shape support rod (13) in conducting wire (6), anode-supported conducting wire (7);
The cathode-supported conducting wire (6), the fixing end of the respective one end of anode-supported conducting wire (7) are bent by sequentially connected U-bend Portion (19), horizontal part (15) and bending item portion (16) composition, this U-bend pars convoluta (19) is connect with L shape support rod (13), described Strip through-hole (17) and circular hole (18) are provided on power supply circuit board (4), the U-bend pars convoluta (19), bending item portion (16) are respectively Strip through-hole (17), the circular hole (18) for being embedded in power supply circuit board (4) are interior;
The cathode-supported conducting wire (6), the respective elastic tip of anode-supported conducting wire (7) are by horizontal bar portion (141), the first vertical bar Portion (142) and the second vertical bars (143) composition, this horizontal bar portion (141) are located at the first vertical bars (142) and second vertically Between bar portion (143), this first vertical bars (142) is between horizontal bar portion (141) and L shape support rod (13);
The touch screen (21) includes sheet glass (22) and the ITO inductive layer (23) being overlying on sheet glass (22), this ITO inductive layer (23) further comprise at least one pin area (231), several Touch Zones (232), several first conducting wire items (233) and if Dry the second conducting wire of root item (234), several Touch Zone (232) compartment of terrain are distributed in sheet glass (22) surface, several described touchings Area (232) a part is controlled close to pin area (231), several described Touch Zone (232) another part far from pin area (231), It is electrically connected between the Touch Zone (232) and pin area (231) of pin area (231) by the first conducting wire item, close to pin area (231) it is electrically connected between Touch Zone and pin area (231) by the first conducting wire item (233), the touch-control far from pin area (231) It is electrically connected between area and pin area (231) by the second conducting wire item (234), the width of this second conducting wire item (234) is greater than first The width of conducting wire item (233).
2. intelligent appliance remote control device according to claim 1, it is characterised in that: the U-bend pars convoluta (19) and power supply The strip through-hole (17) of circuit board (4) is interference fitted.
3. intelligent appliance remote control device according to claim 1, it is characterised in that: it further include a USB interface (12), this USB interface (12) is connected to power supply circuit board (4).
CN201710736293.3A 2017-08-24 2017-08-24 Intelligent appliance remote control device Pending CN109425082A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710736293.3A CN109425082A (en) 2017-08-24 2017-08-24 Intelligent appliance remote control device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710736293.3A CN109425082A (en) 2017-08-24 2017-08-24 Intelligent appliance remote control device

Publications (1)

Publication Number Publication Date
CN109425082A true CN109425082A (en) 2019-03-05

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710736293.3A Pending CN109425082A (en) 2017-08-24 2017-08-24 Intelligent appliance remote control device

Country Status (1)

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CN (1) CN109425082A (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100039273A1 (en) * 2008-08-15 2010-02-18 Agurs Milton L Hazard Detection System
CN101925248A (en) * 2009-06-12 2010-12-22 海洋王照明科技股份有限公司 Circuit board and method for fixing wire on same
CN103944223A (en) * 2014-04-10 2014-07-23 北京世纪联合网络技术有限公司 Device and method for charging remote controller
CN206178748U (en) * 2016-11-15 2017-05-17 上海中航光电子有限公司 Touch display panel

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100039273A1 (en) * 2008-08-15 2010-02-18 Agurs Milton L Hazard Detection System
CN101925248A (en) * 2009-06-12 2010-12-22 海洋王照明科技股份有限公司 Circuit board and method for fixing wire on same
CN103944223A (en) * 2014-04-10 2014-07-23 北京世纪联合网络技术有限公司 Device and method for charging remote controller
CN206178748U (en) * 2016-11-15 2017-05-17 上海中航光电子有限公司 Touch display panel

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Application publication date: 20190305

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