CN201651865U - Emergency illuminating lamp of light-emitting diode - Google Patents

Emergency illuminating lamp of light-emitting diode Download PDF

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Publication number
CN201651865U
CN201651865U CN2010201214043U CN201020121404U CN201651865U CN 201651865 U CN201651865 U CN 201651865U CN 2010201214043 U CN2010201214043 U CN 2010201214043U CN 201020121404 U CN201020121404 U CN 201020121404U CN 201651865 U CN201651865 U CN 201651865U
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CN
China
Prior art keywords
emitting diode
lamp
light emitting
control circuit
light
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Expired - Fee Related
Application number
CN2010201214043U
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Chinese (zh)
Inventor
林金龙
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.)
Unistar Opto Corp
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Unistar Opto Corp
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
Publication date
Application filed by Unistar Opto Corp filed Critical Unistar Opto Corp
Priority to CN2010201214043U priority Critical patent/CN201651865U/en
Application granted granted Critical
Publication of CN201651865U publication Critical patent/CN201651865U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to an emergency illuminating lamp of a light-emitting diode, comprising a control circuit, at least one single polycrystal light-emitting diode module, a light sensor, a first indicating lamp and a second indicating lamp, wherein the single polycrystal light-emitting diode module, the light sensor, the first indicating lamp and the second indicating lamp are respectively and electrically coupled with the control circuit; the light sensor is used for sensing the brightness of the located environment; when being in normal power supply state, the control circuit drives the first indicating lamp to emit light; when being in power-off state with enough brightness of the located environment, the control circuit drives the second indicating lamp to emit light; and when being in power-off state with poor brightness of the located environment, the control circuit drives the second indicating lamp and the single polycrystal light-emitting diode module to emit light.

Description

Light emitting diode Emergency Light lamp
Technical field
The utility model relates to a kind of lighting device, refers to a kind of Emergency Light lamp that adopts light emitting diode as light source especially.
Background technology
The Emergency Light lamp generally is installed within doors, is in usually to deposit electricity condition, when take place having a power failure, just can discharge the stored electric energy of electric storage device of Emergency Light lamp and makes that the Emergency Light lamp is luminous, to reach the effect of Emergency Light.Yet when taking place to have a power failure by day, because the light of environment is quite sufficient within doors, so need not rely on the light that the Emergency Light lamp is produced, people within doors for arround environment also can see too clearly, and this moment is luminous if start the Emergency Light lamp, in fact be at the stored electric energy of waste electric storage device, the not kind function of utilizing the Emergency Light lamp that adds.
In view of this, present demand is that a kind of energy improves above-mentioned disappearance, and provides the energy energy savings and the emergency lighting device of the efficient use of energy.
The utility model content
Main purpose of the present utility model is for providing a kind of light emitting diode Emergency Light lamp, and this Emergency Light lamp is according to the brightness of environment of living in and luminous in good time, efficiently electricity consumption and meet the trend of energy savings now.
To achieve the above object, the utility model provides a kind of light emitting diode Emergency Light lamp, comprising: control circuit; At least one single polycrystalline light emitting diode module, this single polycrystalline light emitting diode module is electrically coupled with this control circuit; Optical inductor, this optical inductor is electrically coupled with this control circuit, in order to respond to the brightness of environment of living in; First indicator lamp, this first indicator lamp is electrically coupled with this control circuit; Second indicator lamp, this second indicator lamp is electrically coupled with this control circuit; Wherein when the normal power supply state, it is shinny that this control circuit drives this first indicator lamp; When the brightness that is in power down mode and this environment of living in reached luminance standard and plants, it is shinny that this control circuit drives this second indicator lamp; When the brightness that is in power down mode and this environment of living in did not reach this luminance standard value, this control circuit drives this second indicator lamp and this single polycrystalline light emitting diode module is shinny.
This light emitting diode Emergency Light lamp sees through the brightness of optical inductor sensing environment of living in, size via control circuit interpretation brightness is luminous to determine whether drive single polycrystalline light emitting diode module, kind in efficiently the electric energy that stores, conform with the trend of energy savings.
Description of drawings
Fig. 1 is the stereogram of an embodiment of the utility model light emitting diode Emergency Light lamp;
Fig. 2 is the front view of an embodiment of the utility model light emitting diode Emergency Light lamp;
Fig. 3 is the lateral side view of an embodiment of the utility model light emitting diode Emergency Light lamp;
Fig. 4 is the circuit block diagram of an embodiment of the utility model light emitting diode Emergency Light lamp;
Fig. 5 is the stereogram of second embodiment of the utility model light emitting diode Emergency Light lamp;
Fig. 6 is the circuit block diagram of second embodiment of the utility model light emitting diode Emergency Light lamp.
The specific embodiment
Fig. 1 and Fig. 2 show respectively; Stereogram and the front view of the embodiment of one light emitting diode Emergency Light lamp 100, this light emitting diode Emergency Light lamp 100 comprise lamp box 1, control circuit 2, several single polycrystalline light emitting diode modules 3 of connecting mutually, optical inductor 4, first indicator lamp 5, second indicator lamp 6, smoke-detectors 7, alarm 8 and Temperature Detector 17.Wherein this single polycrystalline light emitting diode module 3, this optical inductor 4, this first indicator lamp 5 reach the outside that this second indicator lamp 6 is connected in this lamp box 1, and this control circuit 2 then is located at the inside of this lamp box 1.The outside of single the polycrystalline light emitting diode module 3 that wherein is one another in series also is provided with transparent lamp shade 3A, and this transparent lamp shade 3A has scattered beam, avoids dazzling the function of light.In addition, single polycrystalline light emitting diode module 3 and optical inductor 4 can be located at the same side of lamp box 1 or homonymy not, just when be arranged at the same side, must single polycrystalline light emitting diode module 3 and optical inductor 4 be separated with light division board 18.
This lamp box 1 has lamp box front side 12, this single polycrystalline light emitting diode module 3, this optical inductor 4, this first indicator lamp 5, and this second indicator lamp 6 be connected in this lamp box front side 12.Wherein respectively this single polycrystalline light emitting diode module 3 comprises the encapsulating housing of strip and several are packaged in the LED crystal particle of this encapsulating housing inside, uses the formation area source, and does not possess fluorescent tube (not having the pipe design), so also there is not the fluorescent tube Connection Block.This is different from existing light-emitting diode lamp tube is that belonging to has the pipe design, so still need the fluorescent tube Connection Block at several LED crystal particles that encapsulate separately of the inner winding of fluorescent tube.In addition, the mean consumption power of single polycrystalline light emitting diode module 3 is no more than 20 watts at least 1 watt, is the best between 1 watt to 6 watts wherein.Hence one can see that, and the consumed power of single polycrystalline light emitting diode module 3 is little a lot of more than traditional osram lamp and fluorescent tube, but can generation and osram lamp and the much the same brightness of fluorescent tube.
Fig. 3 shows the lateral side view of an embodiment of light emitting diode Emergency Light lamp 100, this lamp box 1 has lamp box rear side 14, electric storage device 9 is installed in this lamp box rear side 14, and this electric storage device 9 can be battery, super capacitor, magnetic storage energy device or hydrogen bearing alloy battery.This electric storage device 9 is in order to a bill of store polycrystalline light emitting diode module 3 shinny required electric energy.This lamp box rear side 14 more is connected with attaching plug 16, and this attaching plug 16 is the attaching plug of 100 volts to 240 volts of alternating voltages, this this control circuit 2 of attaching plug 16 electric couplings.When attaching plug 16 is plugged in commercial power socket, this control circuit 2 just can be with electrical power storage in this electric storage device 9, doing the energy of Emergency Light in the future, the electric energy when this electric storage device 9 is saturated can be supplied this single polycrystalline light emitting diode module 3 luminous at least 30 minutes and be no more than 15 hours.
Fig. 4 shows the circuit block diagram of an embodiment of this light emitting diode Emergency Light lamp, wherein this single polycrystalline light emitting diode module 3, this optical inductor 4, this first indicator lamp 5, this second indicator lamp 6, this smoke-detectors 7, this alarm 8 and this Temperature Detector 17 are electrically coupled with this control circuit 2 respectively, this optical inductor 4 is in order to respond to the brightness of environment of living in, the light color of this first indicator lamp 5 and this second indicator lamp 6 is different, and it is ruddiness and green glow that this embodiment sets light color respectively.
Below set forth the various operating modes of the utility model Circuits System, when civil power was in the normal power supply state, this control circuit 2 drove this first indicator lamp 5 and sends ruddiness, and single polycrystalline light emitting diode module 3 can be not luminous; When being in the brightness of these optical inductor 4 sensings of power down mode environment of living in and data are sent to this control circuit 2, civil power does interpretation, when sentence read result is that the brightness of environment of living in is when reaching default luminance standard value, the light of representing present environment enough allows clear that the people sees, for example say it to be that power down mode takes place daytime, need not rely on the light of light emitting diode Emergency Light lamp 100 this moment, so this control circuit 2 drives this second indicator lamp 6 and sends green glow, and single polycrystalline light emitting diode module 3 still can be not luminous; When the brightness that is in power down mode and this control circuit 2 interpretations environment of living in when civil power does not reach this default luminance standard value, for example say so and take place evening to have a power failure or have a power failure at basement, these control circuit 2 these second indicator lamps 6 of driving send green glow and this single polycrystalline light emitting diode module 3 is shinny, so that the usefulness of Emergency Light to be provided.
In addition, the utility model also possesses the function that detects smog and temperature, it is (about 5000~10000ppm) time that the smoke degree that detects environment of living in when this smoke-detectors 7 surpasses higher limit, scene of fire for example, this control circuit 2 except drive this second indicator lamp 6 send green glow and this single polycrystalline light emitting diode module 3 shinny, also drive this alarm 8 and send the sound, reach and remind the people to prepare to escape and light required when escaping is provided.Equally, if detecting the temperature of environment of living in, Temperature Detector 17 surpasses critical value, 50 degree for example Celsius, control circuit 2 except drive this second indicator lamp 6 send green glow and this single polycrystalline light emitting diode module 3 shinny, also drive this alarm 8 and send the sound.
Fig. 5 and Fig. 6 disclose stereogram and the circuit block diagram of second embodiment of light emitting diode Emergency Light lamp 100 respectively, are with the difference of first embodiment: this smoke-detectors 7 is replaceable to be a carbon monoxide detector 10.This carbon monoxide detector 10 and this alarm 8 are electrically coupled with this control circuit 2, when the carbon monoxide degree that detects environment of living in when this carbon monoxide detector 10 surpasses higher limit, this control circuit 2 drive these alarms 8 send the sound and drive this second indicator lamp 6 and this single polycrystalline light emitting diode module 3 shinny.
Light emitting diode Emergency Light lamp 100 of the present utility model has following beneficial effect:
1, see through the brightness of optical inductor 4 sensings environment of living in, it is luminous whether to drive single polycrystalline light emitting diode module 3 via the size of control circuit 2 interpretation brightness with decision, kind in efficiently the stored electric energy of electric storage device 9, conforms with the trend of energy savings.
2, see through the smoke degree that smoke-detectors 7 detects environment of living in, whether drive alarm 8 sounding with decision and single polycrystalline light emitting diode module 3 is luminous via the size of control circuit 2 interpretation smoke degree, escape in real time and required light when escape is provided with the caution people.If same Temperature Detector 17 detects the temperature of environment of living in and surpasses Celsius 50 when spending, and also has an identical function.
3, single polycrystalline light emitting diode module of the present utility model 3 is not for there being the pipe design, so there is not Connection Block, solved to adopt fluorescent tube in the past and have and managed light emitting diode as Connection Block embrittlement problem that light source produced.
4, compared to traditional fluorescent tube Emergency Light lamp, consumed power is lower, so relatively power saving.
5, compared to traditional fluorescent tube Emergency Light lamp, volume is less, weight is lighter, and service life is higher, so save maintenance cost.
6, need not arrange in pairs or groups electric capacity and trigger of single polycrystalline light emitting diode module 3 of the present utility model, must arrange in pairs or groups several electric capacity and trigger compared to fluorescent tube could be luminous, and it is many that electronic component is obviously simplified, so significantly simplify the debug process.
More than narration is according to a plurality of different embodiment of the utility model, and wherein various features can single or different combinations be implemented.Therefore, the exposure of the utility model embodiment is the specific embodiment of illustrating the utility model principle, should be regardless of limit the utility model in the embodiment that is disclosed.Furthermore, before narrated and accompanying drawing only is the usefulness of the utility model demonstration, and not limited by its limit.The variation of other element or combination be possibility all, and is not contrary in spirit of the present utility model and scope.
[primary clustering symbol description]
Light-emitting diode emergency lighting lamp 100
Lamp box 1
Lamp box front side 12
Lamp box rear side 14
Attaching plug 16
Temperature Detector 17
Light division board 18
Control circuit 2
Single polycrystalline light emitting diode module 3
Transparent lamp shade 3A
Optical inductor 4
First indicator lamp 5
Second indicator lamp 6
Smoke-detectors 7
Alarm 8
Electric storage device 9
Carbon monoxide detector 10

Claims (12)

1. light emitting diode Emergency Light lamp is characterized in that: comprising:
Control circuit;
At least one single polycrystalline light emitting diode module, described single polycrystalline light emitting diode module is electrically coupled with described control circuit;
Optical inductor, described optical inductor is electrically coupled with described control circuit, in order to respond to the brightness of environment of living in;
First indicator lamp, described first indicator lamp is electrically coupled with described control circuit;
Second indicator lamp, described second indicator lamp is electrically coupled with described control circuit;
Wherein when the normal power supply state, it is shinny that described control circuit drives described first indicator lamp; When the brightness that is in power down mode and described environment of living in reached the luminance standard value, it is shinny that described control circuit drives described second indicator lamp; When the brightness that is in power down mode and described environment of living in did not reach described luminance standard value, described control circuit drives described second indicator lamp and described single polycrystalline light emitting diode module is shinny.
2. light emitting diode Emergency Light lamp as claimed in claim 1, it is characterized in that: also comprise smoke-detectors and alarm, described smoke-detectors and described alarm are electrically coupled with described control circuit, when the smoke degree that detects environment of living in when described smoke-detectors surpasses higher limit, described control circuit drive described alarm send the sound and drive described second indicator lamp and described single polycrystalline light emitting diode module shinny.
3. light emitting diode Emergency Light lamp as claimed in claim 1, it is characterized in that: also comprise electric storage device, described electric storage device is electrically coupled with described control circuit, and described electric storage device is in order to store described single polycrystalline light emitting diode module required electric energy when shinny.
4. light emitting diode Emergency Light lamp as claimed in claim 3 is characterized in that: the electric energy when described electric storage device is saturated can be supplied described single polycrystalline light emitting diode module luminous at least 30 minutes and be no more than 15 hours.
5. light emitting diode Emergency Light lamp as claimed in claim 1 is characterized in that: the light color of described first indicator lamp and described second indicator lamp is different.
6. light emitting diode Emergency Light lamp as claimed in claim 3, it is characterized in that: also comprise the lamp box, described single polycrystalline light emitting diode module, described optical inductor, described first indicator lamp, reach the outside that described second indicator lamp is connected in described lamp box, described control circuit is located at the inside of described lamp box.
7. light emitting diode Emergency Light lamp as claimed in claim 6, it is characterized in that: described lamp box has lamp box front side, described single polycrystalline light emitting diode module, described optical inductor, described first indicator lamp, and described second indicator lamp be connected in described lamp box front side, be provided with the light division board between described optical inductor and described single the polycrystalline light emitting diode module.
8. light emitting diode Emergency Light lamp as claimed in claim 6, it is characterized in that: described lamp box has lamp box rear side, described electric storage device is installed in described lamp box rear side, and described lamp box rear side is connected with attaching plug, the described control circuit of described attaching plug electric coupling.
9. light emitting diode Emergency Light lamp as claimed in claim 1 is characterized in that: the consumed power of described single polycrystalline light emitting diode module is no more than 20 watts at least 1 watt.
10. light emitting diode Emergency Light lamp as claimed in claim 9 is characterized in that: the consumed power of described single polycrystalline light emitting diode module is between 1 watt to 6 watts.
11. light emitting diode Emergency Light lamp as claimed in claim 2 is characterized in that:
Also comprise Temperature Detector, described Temperature Detector is electrically coupled with described control circuit, when the temperature of described Temperature Detector environment of living in surpasses critical value, described control circuit drive described alarm send the sound and drive described second indicator lamp and described single polycrystalline light emitting diode module shinny.
12. light emitting diode Emergency Light lamp as claimed in claim 1, also comprise a carbon monoxide detector and alarm, described carbon monoxide detector and described alarm are electrically coupled with described control circuit, when the carbon monoxide degree that detects environment of living in when described carbon monoxide detector surpasses higher limit, described control circuit drive described alarm send the sound and drive described second indicator lamp and described single polycrystalline light emitting diode module shinny.
CN2010201214043U 2010-02-12 2010-02-12 Emergency illuminating lamp of light-emitting diode Expired - Fee Related CN201651865U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201214043U CN201651865U (en) 2010-02-12 2010-02-12 Emergency illuminating lamp of light-emitting diode

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201214043U CN201651865U (en) 2010-02-12 2010-02-12 Emergency illuminating lamp of light-emitting diode

Publications (1)

Publication Number Publication Date
CN201651865U true CN201651865U (en) 2010-11-24

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102155705A (en) * 2010-02-12 2011-08-17 宙达光子实业股份有限公司 Light-emitting diode emergency lighting lamp
CN105570799A (en) * 2016-03-15 2016-05-11 宏齐光电子(深圳)有限公司 LED patch type ceiling lamp
CN105682305A (en) * 2016-04-07 2016-06-15 吉林建筑大学 Green illumination and emergency lamp and control method thereof
CN109565183A (en) * 2016-07-29 2019-04-02 豪倍公司 Self-fault diagnosis identifying system for emergency lighting unit
US10262513B1 (en) 2017-10-13 2019-04-16 Chicony Power Technology Co., Ltd. Light emitting device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102155705A (en) * 2010-02-12 2011-08-17 宙达光子实业股份有限公司 Light-emitting diode emergency lighting lamp
CN105570799A (en) * 2016-03-15 2016-05-11 宏齐光电子(深圳)有限公司 LED patch type ceiling lamp
CN105682305A (en) * 2016-04-07 2016-06-15 吉林建筑大学 Green illumination and emergency lamp and control method thereof
CN109565183A (en) * 2016-07-29 2019-04-02 豪倍公司 Self-fault diagnosis identifying system for emergency lighting unit
US10262513B1 (en) 2017-10-13 2019-04-16 Chicony Power Technology Co., Ltd. Light emitting device

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

Granted publication date: 20101124

Termination date: 20140212

C17 Cessation of patent right