CN2884167Y - Hand-carried electronic device for measuring the strength of ultraviolet rays - Google Patents
Hand-carried electronic device for measuring the strength of ultraviolet rays Download PDFInfo
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- CN2884167Y CN2884167Y CN 200620056467 CN200620056467U CN2884167Y CN 2884167 Y CN2884167 Y CN 2884167Y CN 200620056467 CN200620056467 CN 200620056467 CN 200620056467 U CN200620056467 U CN 200620056467U CN 2884167 Y CN2884167 Y CN 2884167Y
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- ultraviolet
- portable electric
- uitraviolet intensity
- ultraviolet ray
- electric device
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Abstract
The utility model relates to a handheld type electronic device with ultraviolet intensity sensing function, which comprises an ultraviolet sensing module, an input unit for users to input an ultraviolet sensing command, a display and a microprocessor for unified planning of handheld type electronic device operation; wherein, the ultraviolet sensing module senses ultraviolet intensity in ambient environment, generates an electrical signal correspondingly, when the microprocessor receives ultraviolet sensing command from the input unit, corresponding ultraviolet intensity information can be calculated according to the electrical signal received by the ultraviolet sensing module and showed on the display, and ultraviolet intensity information can also be provided.
Description
Technical field
The utility model is relevant a kind of portable electric device, is meant a kind of portable electric device of tool uitraviolet intensity detecting function especially.
Background technology
Along with the ozonosphere of the earth is more and more thin, the uitraviolet intensity that exists in people's living environment is more and more high.Along with the progress of medical science, people begin to understand the danger of tanning by the sun in the sun again.Tan by the sun down in long-term or excessive ultraviolet ray, may cause dermal melanin generation, may injure the immunocyte of skin and cause immune infringement, and then increase be subjected to the chance of pathogeny, infected by microbes, easily cause the circumference of eyes cutaneum carcinoma, amphiblestroid rotten with degenerate, severe patient more may cause the infringement of crystalline lens transparency and cause losing one's sight, and may cause crystallin matter oxidative deformation in the eyeball, cause phacoscotasmus and affect one's power of vision or the like.
Thereby; many countries and private unit begin to carry out ultraviolet research; World Meteorological Organization (WMO) formulated a cover ultraviolet index (Ultraviolet Index in 1994; UVI) standard; state's observations and the outer linear index of issue such as now existing American and Britain, moral, Australia, knob, day; China added this ranks in 1997, and the ultraviolet index forecast is provided in the weather forecast of medium, taked corresponding safeguard measure with reminds people.
If people are unable to find out present on-site ultraviolet index to being not easy to obtain the local of weather forecast or not having when seeing weather forecast in advance, can't take corresponding safeguard measure, cause self increasing because of the injured probability of ultraviolet ray.
Again, along with science and technology and improvement of Manufacturing Technology, the price of portable electric device significantly reduces, and causes its popularity rate significantly to raise, and almost arrives the stage of staff one machine as the portable electric device of mobile phone and so on.The device that the portable electric device person of being to use can carry if can increase the function of uitraviolet intensity detecting at portable electric device, so that user's uitraviolet intensity information to be provided at any time, can solve foregoing problems.
Summary of the invention
Therefore, the purpose of this utility model is to provide a kind of portable electric device that the tool uitraviolet intensity detecting function of uitraviolet intensity information can in time be provided.
So, the portable electric device of the utility model tool uitraviolet intensity detecting function, it comprises a ultraviolet sensing module, an input block, a display and a microprocessor; Wherein, ultraviolet sensing module is in order to the uitraviolet intensity of sensing external environment and the corresponding electric signal that produces, and with the difference of this ultraviolet intensity, the size of the corresponding electric signal that produces of this ultraviolet ray sensing module is also different; Input block input control order for the user, this steering order contain ultraviolet ray detection instruction; Microprocessor is in order to plan as a whole the running of this portable electric device, when this microprocessor was received this ultraviolet ray detection instruction from this input block, the electric signal that foundation receives from this ultraviolet ray sensing module calculated a uitraviolet intensity information of its correspondence and is shown on this display.
Description of drawings
Fig. 1 is the synoptic diagram of a preferred embodiment of the portable electric device of the utility model tool uitraviolet intensity detecting function
Fig. 2 is the circuit block diagram of the embodiment among Fig. 1
Fig. 3 is the block schematic diagram of another embodiment of the utility model middle-ultraviolet lamp sensing module
Embodiment
About aforementioned and other technology contents, characteristics and effect of the present utility model, in the detailed description of following cooperation two preferred embodiments with reference to the accompanying drawings, can clearly present.
Before the utility model is described in detail, be noted that in the following description content similarly assembly is to represent with identical numbering.
Because past people can't be known on-site ultraviolet information whenever and wherever possible, therefore, the portable electric device of the utility model tool uitraviolet intensity detecting function is set up the function of uitraviolet intensity detecting in portable electric device, so that ultraviolet information to be provided in good time.Hereinafter, the portable electric device of the utility model tool uitraviolet intensity detecting function is that example illustrates with the mobile phone, also can be applicable to the portable electric device of other kind, for example personal digital assistant or the like is not limited to the revealer of present embodiment institute.
Consult Fig. 1 and Fig. 2, a preferred embodiment of the portable electric device 1 of the utility model tool uitraviolet intensity detecting function comprises a housing 10, a display 11, an input block 12, one ultraviolet sensing module 13 and a microprocessor 14.The portable electric device 1 of present embodiment has more the essential member of mobile phone, for example carry out transmitting-receiving and handle wireless signal radio-frequency module 15, sound coder 16, earphone 161, microphone 162, supply with battery 17 of portable electric device 1 work required electric power or the like, because these members are not that improvement emphasis of this case and the people who widely has the knack of this skill know, so do not give unnecessary details at this.
Ultraviolet ray sensing module 13 is in order to the uitraviolet intensity of sensing external environment and the corresponding electric signal that produces, and with the difference of uitraviolet intensity, the size of the ultraviolet sensing module 13 corresponding electric signal that produce also has difference.The ultraviolet ray detection module 13 of present embodiment has a filtering assembly 131, a sensing component 132 and an analog-to-digital converter 133.Filtering assembly 131 is for being embedded at an eyeglass of housing 10, and it only allows the light that meets ultraviolet wavelength pass through, as wavelength 220nm ~ 400nm, to capture the external environment middle-ultraviolet lamp to housing 10.Sensing component 132 is arranged in the housing 10 and filtering assembly 131 opposite positions, with ultraviolet ray and the corresponding generation electric signal of sensing through filtering assembly 131 acquisitions.Sensing component 132 in this example is a photoresistance, and with the difference of sensing uitraviolet intensity, its resistance also changes thereupon.When the uitraviolet intensity of external environment is healed when strong, the resistance of sensing component 132 is higher thereupon, and the current value in the electric signal is then lower, then is sent to microprocessor 14 from analog to digital quantizer 133 after with the electric signal digitizing.
Microprocessor 14 is in order to plan as a whole the running of portable electric device 1, for example incoming call handling, conversation or the like.At present embodiment, when function key 121 is pressed, microprocessor 14 can be considered as receiving the ultraviolet ray detection instruction, then receive electric signal from ultraviolet sensing module 13, with calculate according to the size of electric signal its correspondence one such as the uitraviolet intensity information of ultraviolet index and be shown on the display 11, allow the user can know the uitraviolet intensity value of present place environment in real time.Again, do better sun-proof preparation for effectively assisting the user, these routine microprocessor 14 built-in uitraviolet intensity value recommendation forms just like following table 1, it contains the uitraviolet intensity value, tans by the sun progression, sunburn time limit and safeguard procedures or the like.
Table 1 | |||
Ultraviolet index | Tan by the sun progression | The sunburn time limit | Safeguard procedures |
0-2 | Trace level | ||
3-4 | Low magnitude | ||
5-6 | Middleweight | In 30 minutes | Cap/Western-style umbrella+sunblock lotion+sunglasses+as far as possible treat in the cool |
7-9 | Cross magnitude | In 20 minutes | Cap/Western-style umbrella+sunblock lotion+sunglasses+cool place place+long sleeves clothing+10AM-2PM had better not go out |
10-15 | Hazard class | In 15 minutes | Cap/Western-style umbrella+sunblock lotion+sunglasses+cool place place+long sleeves clothing+10AM-2PM had better not go out |
For instance, if the ultraviolet index that microprocessor 14 calculates the electric signal correspondence is 2 o'clock, the relevant uitraviolet intensity information of then searching in the uitraviolet intensity value recommendation form shows, such as ultraviolet index 2 with tan by the sun the information that progression is trace level; If ultraviolet index is 6, the corresponding ultraviolet information that shows then contains ultraviolet index 6, tan by the sun progression is middleweight, 30 minutes time limits of sunburn and information of relevant safeguard procedures or the like.
Again, except that uitraviolet intensity information is shown on the display 11, watch in the present embodiment, also utilize earphone 161 to play the uitraviolet intensity information, understand in real time to make things convenient for the user for the user.
In addition, can also come the uitraviolet intensity of sensing external environment by alternate manner, as Fig. 3, another embodiment middle-ultraviolet lamp sensing module 13 ' of the present utility model is to replace filtering assembly 131 with a photoresistance of being made by light change material every assembly 131 '.The light of photoresistance in assembly 131 ' becomes material can variable color after the ultraviolet ray irradiation and heighten the color, intercepting penetrating of general light, and stronger with uitraviolet intensity, photoresistance can be healed deeply every the color of assembly 131 ', makes the penetrance of general light lower.So, increase with the uitraviolet intensity in the external environment, it is lower that sensing component 132 senses photon amount (referring to penetrate the light of photoresistance every assembly 131 '), the electric signal of sensing gained is changed thereupon, allow microprocessor 14 also can calculate its corresponding uitraviolet intensity information according to the electric signal that changes.
According to aforementioned, utilize the ultraviolet index and the corresponding electric signal that produces of ultraviolet sensing module 13,13 ' come sensing external environments in the portable electric device 1 of the utility model tool uitraviolet intensity detecting function, when need are known the ultraviolet index of environment of living in, the user only needs pressing function key 121,14 of microprocessors can receive electric signal and calculate its corresponding uitraviolet intensity information, to show and to come to know for the user in the speech play mode.So, the user can be apt to the uitraviolet intensity detecting function in the utility model portable electric device 1, in time knowing the uitraviolet intensity information of environment of living in, and then can take the safeguard procedures of being correlated with, suffer from the probability of the disease that causes because of ultraviolet ray with reduction.
The above person only is the utility model preferred embodiment wherein, is not to be used for limiting practical range of the present utility model; Be that all equalizations of being done according to the utility model claim change and modification, by the utility model claim is contained.
Claims (10)
1. the portable electric device of a tool uitraviolet intensity detecting function is characterized in that, this electronic installation comprises:
One ultraviolet sensing module, in order to the uitraviolet intensity of sensing external environment and the corresponding electric signal that produces, and with the difference of this ultraviolet intensity, the size of the corresponding electric signal that produces of this ultraviolet ray sensing module is also different;
One input block is used the input control order for the user, and this steering order contains ultraviolet ray detection instruction;
One display; And
One microprocessor, in order to plan as a whole the running of this portable electric device, when this microprocessor was received this ultraviolet ray detection instruction from this input block, the electric signal that foundation receives from this ultraviolet ray sensing module calculated a uitraviolet intensity information of its correspondence and is shown on this display.
2. portable electric device according to claim 1, it is characterized in that, this ultraviolet ray sensing module has the filtering assembly and a sensing component of an acquisition external environment middle-ultraviolet lamp, and the ultraviolet ray that this sensing component receives through this filtering assembly acquisition produces this electric signal with correspondence.
3. portable electric device according to claim 1, it is characterized in that, this ultraviolet ray sensing module has one and becomes photoresistance that material makes every an assembly and a sensing component by light, this photoresistance increases the penetrance that reduces external environment light every assembly with the external environment uitraviolet intensity, and this sensing component produces this electric signal in order to receive external environment light through this photoresistance every assembly with correspondence.
4. according to claim 2 or 3 described portable electric devices, it is characterized in that this sensing component is a light emitting diode.
5. according to claim 2 or 3 described portable electric devices, it is characterized in that this sensing component is a photoresistance.
6. according to claim 2 or 3 described portable electric devices, it is characterized in that this ultraviolet ray sensing module has more an analog-to-digital converter, with this electric signal of digitizing.
7. portable electric device according to claim 1 is characterized in that, this uitraviolet intensity information contains a ultraviolet index.
8. portable electric device according to claim 1 is characterized in that, this uitraviolet intensity information contains tans by the sun progression.
9. portable electric device according to claim 1 is characterized in that, more comprises an earphone, and this earphone is controlled by this microprocessor and play this uitraviolet intensity information.
10. portable electric device according to claim 1 is characterized in that this input block has a function key, to push with the user and corresponding produce this ultraviolet ray detection instruction.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 200620056467 CN2884167Y (en) | 2006-03-20 | 2006-03-20 | Hand-carried electronic device for measuring the strength of ultraviolet rays |
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CN 200620056467 CN2884167Y (en) | 2006-03-20 | 2006-03-20 | Hand-carried electronic device for measuring the strength of ultraviolet rays |
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CN2884167Y true CN2884167Y (en) | 2007-03-28 |
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CN 200620056467 Expired - Fee Related CN2884167Y (en) | 2006-03-20 | 2006-03-20 | Hand-carried electronic device for measuring the strength of ultraviolet rays |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102404431A (en) * | 2011-11-30 | 2012-04-04 | 北京百纳威尔科技有限公司 | Mobile terminal with ultraviolet detection function |
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2006
- 2006-03-20 CN CN 200620056467 patent/CN2884167Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102404431A (en) * | 2011-11-30 | 2012-04-04 | 北京百纳威尔科技有限公司 | Mobile terminal with ultraviolet detection function |
CN102404431B (en) * | 2011-11-30 | 2015-03-25 | 北京百纳威尔科技有限公司 | Mobile terminal with ultraviolet detection function |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20070328 Termination date: 20140320 |