CN203851316U - Wireless far-infrared and solar detector - Google Patents

Wireless far-infrared and solar detector Download PDF

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Publication number
CN203851316U
CN203851316U CN201320823669.1U CN201320823669U CN203851316U CN 203851316 U CN203851316 U CN 203851316U CN 201320823669 U CN201320823669 U CN 201320823669U CN 203851316 U CN203851316 U CN 203851316U
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CN
China
Prior art keywords
signal
detector
control circuit
infrared
circuit
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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.)
Expired - Fee Related
Application number
CN201320823669.1U
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Chinese (zh)
Inventor
丰颖
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.)
Suzhou Shengyuan Electronic Technology Co ltd
Solais Lighting Inc
Original Assignee
Suzhou Shengyuan Electronic Technology Co ltd
Solais Lighting Inc
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.)
Filing date
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Application filed by Suzhou Shengyuan Electronic Technology Co ltd, Solais Lighting Inc filed Critical Suzhou Shengyuan Electronic Technology Co ltd
Priority to CN201320823669.1U priority Critical patent/CN203851316U/en
Application granted granted Critical
Publication of CN203851316U publication Critical patent/CN203851316U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a wireless far-infrared and solar detector, and the detector is characterized in that the detector consists of a battery part which outputs a +3.3V voltage, a wireless control circuit, a 2.4G network, an operational amplifier circuit, a solar detector unit, and a far-infrared detector unit; the +3.3V voltage of the battery part is outputted to the wireless control circuit which is responsible for processing a received far-infrared detection signal and a received solar detection signal; an internal analog signal is converted into a digital signal through the control circuit, and the digital signal is transmitted to the 2.4G network for generating a wireless signal; the wireless signal is sent to a receiving circuit of a lighting electrical appliance of a terminal through an antenna end, thereby achieving the control of the functions of light adjusting, turning off, and turning on. According to the utility model, the far-infrared detector unit is employed for dynamically monitoring the movement duty ratio of persons. The detector sends a control instruction of the duty ratio of the persons through a mode of wireless transmission, and a controlled terminal can achieve that a lamp is turned on when there is a person, and the lamp is turned off when there is no person.

Description

Infrared and day photo-detector of a kind of radio remote
Technical field
The utility model relates to lighting field, is specifically related to the infrared and day photo-detector of a kind of radio remote.
Background technology
Infrared and day photo-detector of radio remote is a kind of high-tech product, and not only energy-conservation but also environmental protection has really been accomplished in its stable performance, can be described as the perfect substitute products of acousto-optic control products.It is by human body radiation, can automatically opens fast the various devices such as various light fixtures, burglar alarm, automatically-controlled door.Be specially adapted to middle and high level hotel, apartment, enterprises and institutions, market, passageway, corridor etc.Triggering mode is for once triggering and continuous trigger.
Measure the variation of human body infrared spectrum, automatically connect load, people does not leave induction range, will continue to connect; After people leaves, automatic delay function load.People is bright to lamp, and people puts out from lamp, and warm convenient, energy-saving safe, more demonstrates concern with humanization.Infrared intelligent battery-conserving switch does not need human hair to go out any sound owing to triggering when, but the unlatching that people walks out-of-date health distributes infrared heat to the external world and finally control light fixture, after people leaves, through the time delay of certain hour, automatic distinguishing.Because be different from acousto-optic control lamp, do not need sound and switch control, thereby avoided the invasion of acoustic control noise, because it is induction human heat control switch, so avoided the loss of invalid electric energy, reach energy-saving effect simultaneously.
Maximum the acoustooptic controlled delay light fixture and the switch that still occur are several years ago applied in present public place illumination (such as public corridor and staircase).The appearance of this light fixture and switch, has realized people Lai Dengliang, turns off the light when you leave, and has become the main product of public place lighting switch.Certainly, this product is said certain energy-conservation object that realized to a certain extent, but has caused certain destruction also to people's living environment simultaneously.Due to the restriction of the performance of product own, the realization that this acousto-optic control lamp tool and switch are controlled automatically needs the cooperation of (exceeding 60 decibels) sound, and this just causes certain noise pollution to the popular quiet environment needing.The attention to biological environment along with social development and people, this acousto-optic control lamp tool and switch slowly can not meet people's needs, and this just requires the appearance of the automatic illuminating control product of more energy-conservation and environmental protection, to meet the demand of people to high-quality life.
The shortcoming of prior art is as follows:
1, disturbed by various thermals source, light source
2, passive infrared penetration power is poor, and the infrared radiation of human body is easily blocked, and is difficult for being received by probe.
3, be subject to the interference of radio-frequency radiation.
4,, when ambient temperature and human body temperature approach, detection and sensitivity obviously decline, and sometimes cause malfunctioning in short-term.
Utility model content
In order to address the deficiencies of the prior art, the utility model provides a kind of radio remote an infrared and day photo-detector, adopt far-infrared sensor, dynamic monitoring personnel move duty ratio, pass through wireless transmission method, send the instruction of personnel's Duty ratio control, controlled terminal can realize that someone turns on light, nobody turns off the light.
In order to solve the problems of the technologies described above, the utility model adopts following technical scheme: the infrared and day photo-detector of a kind of radio remote, is characterized in that: described detector by battery part output+3.3V voltage, radio control circuit, 2.4G network, discharge circuit, day photo-detector and far infrared deterctor six parts form; Described battery+3.3V Voltage-output is to radio control circuit, radio control circuit is responsible for processing and is received far infrared detection signal and a day light detecting signal, be converted to digital signal through control circuit internal simulation signal, re-send to 2.4G network and produce wireless signal, send digital signal to terminal illumination electrical equipment receiving circuit, the control of the function that realizes light modulation, turns off the light and turn on light by antenna end.
Described+3.3V Voltage-output, to discharge circuit, makes discharge circuit obtain normal power supply, thereby carries out the transmission of signal.
Described+3.3V voltage also outputs to far infrared deterctor, be responsible for the normal power supply of far infrared deterctor, far infrared deterctor is by the space outerpace signal of collecting, send to discharge circuit and amplify processing, send to radio control circuit, radio control circuit, by obtaining the inter-process of carrying out of signal, re-sends to 2.4G network again, the wireless signal producing sends digital signal to terminal illumination electrical equipment receiving circuit, realize target control by antenna end.
Described day photo-detector collected space outerpace signal and directly sent to radio control circuit, radio control circuit will obtain the inter-process of carrying out of signal, re-send to 2.4G network, the wireless signal of generation is sent to digital signal to terminal illumination electrical equipment receiving circuit, realize target control by antenna end.
The beneficial effects of the utility model are as follows:
1. have infrared induction sensitivity automatic regulating function, muting sensitivity while turning off the light, prevents that misconnection is logical.High sensitivity after turning on light, prevents that wrong diagnosis from opening.
2. adopt solar sensor, by wireless transmission method, detection of dynamic current environment light state sends control command simultaneously, controls light and closes.
3. simultaneously by wireless wall-board switch, send control command, realize intelligent lighting control.
4. the programming such as time delay, infrared acquisition sensitivity arranges, the instruction of LED lamp state.
Brief description of the drawings
Fig. 1 is the block diagram of the infrared and day photo-detector of a kind of radio remote described in the utility model;
Fig. 2 is the circuit theory diagrams of far infrared deterctor discharge circuit described in the utility model.
Embodiment
Below in conjunction with accompanying drawing, the utility model is described in further detail.
As shown in Figure 1, the infrared and day photo-detector of a kind of radio remote, is characterized in that: described detector by battery part output+3.3V voltage, radio control circuit, 2.4G network, discharge circuit, day photo-detector and far infrared deterctor six parts form; Described battery+3.3V Voltage-output is to radio control circuit, radio control circuit is responsible for processing and is received far infrared detection signal and a day light detecting signal, be converted to digital signal through control circuit internal simulation signal, re-send to 2.4G network and produce wireless signal, send digital signal to terminal illumination electrical equipment receiving circuit, the control of the function that realizes light modulation, turns off the light and turn on light by antenna end.
Described+3.3V Voltage-output, to discharge circuit, makes discharge circuit obtain normal power supply, thereby carries out the transmission of signal.
Described+3.3V voltage also outputs to far infrared deterctor, be responsible for the normal power supply of far infrared deterctor, far infrared deterctor is by the space outerpace signal of collecting, send to discharge circuit and amplify processing, send to radio control circuit, radio control circuit, by obtaining the inter-process of carrying out of signal, re-sends to 2.4G network again, the wireless signal producing sends digital signal to terminal illumination electrical equipment receiving circuit, realize target control by antenna end.
Described day photo-detector collected space outerpace signal and directly sent to radio control circuit, radio control circuit will obtain the inter-process of carrying out of signal, re-send to 2.4G network, the wireless signal of generation is sent to digital signal to terminal illumination electrical equipment receiving circuit, realize target control by antenna end.
As shown in Figure 2, U203 far infrared deterctor D pin is connected to R228 resistance and C248, C250 capacitor filtering, R228 resistance is connected to C246, C247 capacitor filtering, R228 resistance is connected to R217 resistance and D202 diode cathode end, D202 diode cathode end is connected to 8 foot mouths of U202A integrated circuit, D202 diode cathode end is also connected to FB202 magnetic bead to VDD power end, and FB202 magnetic bead is connected to C225, C227 capacitor filtering is connected to R217 resistance.
U203 far infrared deterctor S pin is connected to R226 resistance and C245 electric capacity arrives ground port, detector S pin is connected to R232 resistance, R232 resistance be connected to C234 electric capacity to hold filtering, be connected to 3 foot mouths of U202A integrated circuit, connect capacitor C 230, capacitor C 230 is coupling-connected to 2 foot mouths of U202A integrated circuit again.
2 foot mouths of U202A integrated circuit be connected to R223 resistance to capacitor C 235 to hold, also by capacitor C 228 and R215 resistance and D203 diode cathode end with being connected to 1 foot mouth of U202A integrated circuit.
U203 far infrared deterctor G pin is connected to ground end, C225 electric capacity, C227 electric capacity, C246 electric capacity, C247 electric capacity, C248 electric capacity, C245 electric capacity, C250 electric capacity, C234 electric capacity, C235 electric capacity, the R226 resistance of power supply, 4 foot mouths of U202A integrated circuit.
More than to description of the present utility model and non-limiting, based on other embodiment of the utility model thought, also all among protection range of the present utility model.

Claims (4)

1. the infrared and day photo-detector of radio remote, is characterized in that: described detector by battery part output+3.3V voltage, radio control circuit, 2.4G network, discharge circuit, day photo-detector and far infrared deterctor six parts form; Described battery+3.3V Voltage-output is to radio control circuit, radio control circuit is responsible for processing and is received far infrared detection signal and a day light detecting signal, be converted to digital signal through control circuit internal simulation signal, re-send to 2.4G network and produce wireless signal, send digital signal to terminal illumination electrical equipment receiving circuit, the control of the function that realizes light modulation, turns off the light and turn on light by antenna end.
2. the infrared and day photo-detector of a kind of radio remote according to claim 1, is characterized in that: described+3.3V Voltage-output, to discharge circuit, makes discharge circuit obtain normal power supply, thereby carries out the transmission of signal.
3. the infrared and day photo-detector of a kind of radio remote according to claim 1, it is characterized in that: described+3.3V voltage also outputs to far infrared deterctor, be responsible for the normal power supply of far infrared deterctor, far infrared deterctor is by the space outerpace signal of collecting, send to discharge circuit and amplify processing, send to again radio control circuit, radio control circuit will obtain the inter-process of carrying out of signal, re-send to 2.4G network, the wireless signal producing sends digital signal to terminal illumination electrical equipment receiving circuit, realize target control by antenna end.
4. the infrared and day photo-detector of a kind of radio remote according to claim 1, it is characterized in that: described day photo-detector collected space outerpace signal and directly sent to radio control circuit, radio control circuit will obtain the inter-process of carrying out of signal, re-send to 2.4G network, the wireless signal of generation is sent to digital signal to terminal illumination electrical equipment receiving circuit, realize target control by antenna end.
CN201320823669.1U 2013-12-16 2013-12-16 Wireless far-infrared and solar detector Expired - Fee Related CN203851316U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320823669.1U CN203851316U (en) 2013-12-16 2013-12-16 Wireless far-infrared and solar detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320823669.1U CN203851316U (en) 2013-12-16 2013-12-16 Wireless far-infrared and solar detector

Publications (1)

Publication Number Publication Date
CN203851316U true CN203851316U (en) 2014-09-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320823669.1U Expired - Fee Related CN203851316U (en) 2013-12-16 2013-12-16 Wireless far-infrared and solar detector

Country Status (1)

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CN (1) CN203851316U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103648218A (en) * 2013-12-16 2014-03-19 苏州市昇源电子科技有限公司 Wireless far-infrared and daylight detector
CN109541721A (en) * 2018-11-13 2019-03-29 河南省军工电子信息科技有限公司 Environment self-adaption vehicle is detained personnel's detection method and detection device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103648218A (en) * 2013-12-16 2014-03-19 苏州市昇源电子科技有限公司 Wireless far-infrared and daylight detector
CN109541721A (en) * 2018-11-13 2019-03-29 河南省军工电子信息科技有限公司 Environment self-adaption vehicle is detained personnel's detection method and detection device
CN109541721B (en) * 2018-11-13 2020-09-15 河南省军工电子信息科技有限公司 Environment self-adaptive vehicle detained personnel detection method and detection device

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140924

Termination date: 20141216

EXPY Termination of patent right or utility model