CN205247230U - Portable photovoltaic wetness monitoring equipment - Google Patents

Portable photovoltaic wetness monitoring equipment Download PDF

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Publication number
CN205247230U
CN205247230U CN201521108020.7U CN201521108020U CN205247230U CN 205247230 U CN205247230 U CN 205247230U CN 201521108020 U CN201521108020 U CN 201521108020U CN 205247230 U CN205247230 U CN 205247230U
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CN
China
Prior art keywords
photovoltaic
humidity
power
control equipment
module
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Expired - Fee Related
Application number
CN201521108020.7U
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Chinese (zh)
Inventor
杨瑞琛
倪明镜
艾方
陈小钢
马小平
郝翔
杨惠
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.)
Inner Mongolia Donghua new energy operation & Maintenance Co., Ltd.
Original Assignee
Inner Mongolia Photovoltaic Application Technology Research Co Ltd
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Priority to CN201521108020.7U priority Critical patent/CN205247230U/en
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Publication of CN205247230U publication Critical patent/CN205247230U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a portable photovoltaic wetness monitoring equipment, including photovoltaic mechanism, power mechanism, humidity sensing mechanism, radio communication mechanism and box. Photovoltaic mechanism includes photovoltaic module for be the electric energy with solar energy transformation, power mechanism includes power module, and power module is connected with the photovoltaic module electricity, in order to receive the electric energy, humidity sensing mechanism is used for sensing humidity to send the humidity signal, radio communication mechanism for the receipt comes from the humidity signal of humidity sensing mechanism, the box is used for holding photovoltaic mechanism, power mechanism, humidity sensing mechanism and radio communication mechanism. The utility model discloses can realize not having and be interrupted the power supply to reach the real -time conveying of humidity signal, can realize unmanned control, and can be applied to open -air unmanned on duty's place, the emergent natural disasters scene of taking place. Under non - user state, each mechanism can accomodate in the box, realizes portable function. On -the -spot installation fast under the user state to can be at the equal effectual wetness monitoring that carries on accessible time of arbitrary occasion.

Description

Portable photovoltaic humidity control equipment
Technical field
The utility model relates to humidity control equipment, particularly a kind of Portable photovoltaic humidity control equipment.
Background technology
Humidity control equipment is for detection of indoor or outdoors humidity, but, current humidity control equipment having relatively high expectations for application scenario, lasting power supply need be provided, need staff's monitoring of being often in the action, therefore, it is difficult to carry out humidity control for the unattended places such as field, natural calamity generation scene etc., causes thus the scope of application significantly limited. And existing humidity control equipment volume is huge, need to spend the plenty of time, manpower is installed, and be not easy to install, dismounting, change, be not easy to carry out on-the-spot interim humidity control.
Therefore, need one free of discontinuities to power, and the photovoltaic humidity control equipment that is easy to carry, installs.
In the disclosed above-mentioned information of described background technology part, only for strengthening the understanding to background of the present utility model, therefore it can comprise the information not forming prior art known to persons of ordinary skill in the art.
Utility model content
A main purpose of the present utility model is to overcome at least one defect of above-mentioned prior art, provides one free of discontinuities to power, and the Portable photovoltaic humidity control equipment that is easy to carry, installs.
For realizing above-mentioned utility model object, the utility model adopts following technical scheme:
According to an aspect of the present utility model, a kind of Portable photovoltaic humidity control equipment is provided, it comprises photovoltaic mechanism, power sector, humidity sensor mechanism, wireless communication mechanisms and casing. Photovoltaic mechanism comprises photovoltaic module, for converting solar energy into electrical energy; Power sector comprises power module, and power module is electrically connected with photovoltaic module, to receive electric energy; Humidity sensor mechanism is used for sensing humidity, and sends moisture signal; Wireless communication mechanisms, for receiving the moisture signal from humidity sensor mechanism; Casing is used for holding photovoltaic mechanism, power sector, humidity sensor mechanism and wireless communication mechanisms.
According to an embodiment of the present utility model, wherein, photovoltaic mechanism also comprises folding rack, and folding rack is connected with photovoltaic module is dismountable.
According to an embodiment of the present utility model, wherein, power sector also comprises battery and inverter, battery, inverter and power module are connected by wire successively, the two ends of each wire are provided with plug, photovoltaic module, power module and humidity sensor are provided with jack, and casing is provided with the through hole corresponding with jack, and plug can insert jack by through hole.
According to an embodiment of the present utility model, wherein, wireless communication mechanisms comprises wireless communication module and holding wire, and holding wire is connected with wireless communication module and humidity sensor mechanism.
According to an embodiment of the present utility model, wherein, humidity sensor mechanism comprises wall-hanging humidity sensor and/or air duct type humidity sensor.
According to an embodiment of the present utility model, wherein, wall-hanging humidity sensor comprises sensor body, shell, ventilating opening, signal connector, attaching nut and fixed via, sensor body is arranged on enclosure, ventilating opening, signal connector, attaching nut and fixed via are separately positioned on shell, signal connector is used for connecting holding wire, and attaching nut is for fixed signal line.
According to an embodiment of the present utility model, wherein, air duct type humidity sensor comprises sensor body, loop bar, spacing catch and attaching nut, and sensor body is arranged in loop bar, loop bar is positioned in the accommodation hole in casing, and holding wire is connected on attaching nut.
According to an embodiment of the present utility model, wherein, casing outside has handle, box house has first to be held district, second and holds district, the 3rd and hold district and the 4th and hold district, and first holds district is positioned at a side of box house, for placing power sector, second holds the middle part of district's box house, be used for placing photovoltaic mechanism, the 3rd holds the opposite side that district and the 4th holds district and be positioned at box house, is respectively used to place humidity sensor mechanism and wireless communication mechanisms.
As shown from the above technical solution, advantage and the good effect of Portable photovoltaic humidity control equipment of the present utility model are: Portable photovoltaic humidity control equipment of the present utility model can be realized free of discontinuities power supply, and the real-time transmission of moisture signal, can realize no worker monitor, and can be applicable to the place of field unattended, therefore can be widely used in emergent natural calamity and occur on-the-spot. And under non-working condition, each mechanism can be accommodated in casing, realizes portable function. On-the-spot installation fast under use state, thus can all can carry out timely and effectively humidity control in any occasion.
Brief description of the drawings
Consider in conjunction with the drawings the following detailed description to preferred embodiment of the present utility model, all types of target of the present utility model, feature and advantage will become more apparent. Accompanying drawing is only exemplary diagram of the present utility model, must be not to draw in proportion. In the accompanying drawings, same Reference numeral represents same or similar parts all the time. Wherein:
Fig. 1 is according to the stereogram of a kind of Portable photovoltaic humidity control equipment shown in an illustrative embodiments.
Fig. 2 is according to the circuit connection diagram of a kind of Portable photovoltaic humidity control equipment shown in an illustrative embodiments.
Fig. 3 is the structure chart of the wall-hanging humidity sensor of Portable photovoltaic humidity control equipment.
Fig. 4 is the structure chart of the air duct type humidity sensor of Portable photovoltaic humidity control equipment.
Detailed description of the invention
Referring now to accompanying drawing, example embodiment is more fully described. But example embodiment can be implemented in a variety of forms, and should not be understood to be limited to embodiment set forth herein; On the contrary, provide these embodiments to make the utility model by comprehensive and complete, and the design of example embodiment is conveyed to those skilled in the art all sidedly. In figure, identical Reference numeral represents same or similar structure, thereby will omit their detailed description.
In addition, described feature, structure or characteristic can be combined in one or more embodiment in any suitable manner. In the following description, thus provide many details to provide fully understanding embodiment of the present utility model. But, one of skill in the art will appreciate that and can put into practice the technical solution of the utility model and there is no one or more in described specific detail, or can adopt other method, constituent element, material etc. In other cases, be not shown specifically or describe known features, material or operation to avoid fuzzy major technique intention of the present utility model.
Consult Fig. 1 and Fig. 2, the representational structural representation that shows the Portable photovoltaic humidity control equipment that can embody the utility model principle of Fig. 1. Fig. 2 is the representational circuit connection diagram that shows the Portable photovoltaic humidity control equipment that can embody the utility model principle. In this illustrative embodiments, Portable photovoltaic humidity control equipment of the present utility model, is to carry out integrated accommodating or fixing all parts using casing as carrier, to reach portable object. Launch with time can also coordinate with power sector taking photovoltaic module as each parts and carry out free of discontinuities power supply, real-time sensed object humidity of while, and can send in real time moisture signal etc. and illustrate for example. But those skilled in the art are understandable, this casing also can be made various distortion, the position of its inner each parts on basis of the present utility model.
Also can be optionally actual adjustment, this this change still in protection domain of the present utility model.
The utility model provides a kind of Portable photovoltaic humidity control equipment, and it comprises photovoltaic mechanism 10, power sector 20, humidity sensor mechanism 30, wireless communication mechanisms 40 and casing 50. Photovoltaic mechanism 10 comprises photovoltaic module 11, for converting solar energy into electrical energy. Power sector 20 comprises power module 21, and power module 21 is electrically connected with photovoltaic module 11, to receive electric energy. Humidity sensor mechanism 30 is for sensing humidity, and sends moisture signal. Wireless communication mechanisms 40 is for receiving the moisture signal from humidity sensor mechanism 30. Casing 50 is for holding photovoltaic mechanism 10, power sector 20, humidity sensor mechanism 30 and wireless communication mechanisms 40.
Under non-working condition, photovoltaic mechanism 10, power sector 20, humidity sensor mechanism 30 and wireless communication mechanisms 40 all can be in being accommodated in casing 50, thereby realize portable function. Under use state, casing Nei Ge mechanism can be taken out and assembles. Be specially: photovoltaic mechanism 10 is electrically connected with power sector 20, as required humidity sensor mechanism 30 is installed on to assigned address, and be electrically connected with power sector 20, be electrically connected with wireless communication mechanisms 40. Therefore, photovoltaic mechanism 20 converts solar energy into electrical energy, and powers to humidity sensor mechanism 30, and the moisture signal detecting is sent to wireless communication mechanisms by humidity sensor mechanism 30, wireless communication mechanisms sends to moisture signal the wireless interface receiving end of far-end, realizes the real-time transmission of moisture signal.
Therefore, Portable photovoltaic humidity control equipment of the present utility model can be realized free of discontinuities power supply, and the real-time transmission of moisture signal, can realize no worker monitor, and can be applicable to the place of field unattended, therefore can be widely used in emergent natural calamity and occur on-the-spot. And under non-working condition, each mechanism can be accommodated in casing, realizes portable function. On-the-spot installation fast under use state, thus can all can carry out timely and effectively humidity control in any occasion.
As shown in Figure 1, casing 50 outsides can have handle (not shown), casing 50 inside have first and hold district A, second and hold district B, the 3rd and hold district C and the 4th and hold district D, first holds district A is positioned at a side of casing 50 inside, be used for placing power sector 20, second holds the middle part of district B casing 50 inside, be used for placing photovoltaic mechanism 10, the 3rd holds the opposite side that district C and the 4th holds district D and be positioned at casing 50 inside, is respectively used to place humidity sensor mechanism 30 and wireless communication mechanisms 40. It should be noted that box house layout is not limited to this, can adjust according to the shape of each mechanism. By being made rational planning for, box inner structure can, by being accommodated in wherein of each mechanism entirety, be convenient for carrying.
As shown in Figure 1, photovoltaic mechanism 10 also comprises folding rack 12, and folding rack 12 is connected with photovoltaic module 11 is dismountable, for example, by fastener, photovoltaic module 11 is arranged on folding rack 12. But folding rack 12 is not limited to this with connected mode, the structure of photovoltaic module 11, any mode that can realize dismountable connection is all covered by protection domain of the present utility model.
As shown in Figure 1, 2, power sector 20 also comprises battery 22 and inverter 23, battery 22, inverter 23 and power module 21 are connected by wire 24 successively, the two ends of each wire 24 are provided with plug, photovoltaic module 11, power module 21 and humidity sensor 30 are provided with jack, casing 50 is provided with the through hole corresponding with jack, and plug can insert jack by through hole. Therefore, photovoltaic module 11 converts solar energy into electrical energy, and flows to battery 22 and stores, and direct current is converted into alternating current by inverter 23, and power module 21 provides power supply to humidity sensing mechanism 30 and wireless communication mechanisms 40. But the structure of power sector is not limited to this, any mode, structure that can realize power supply is all covered by protection domain of the present utility model.
As shown in Figure 1, 2, wireless communication mechanisms 40 comprises wireless communication module 41 and holding wire 42, and holding wire 42 is connected with wireless communication module 41 and humidity sensor mechanism 30.
Humidity sensor mechanism 30 can select the intelligent humidity sensor of SHT11/15 type. SHT11, the intelligent humidity sensor appearance and size of SHT15 type are only 7.6 (mm) × 5 (mm) × 2.5 (mm), and volume and match end are close. Every sensor all did precision standard in temperature chamber, and typical coefficient is compiled to corresponding program and deposits in calibration storage, in measuring process, can carry out automatic calibration to relative humidity. They can not only Measurement accuracy relative temperature, can also measure temperature and dew point. The scope of measuring relative temperature is 0~100%, and resolving power reaches 0.03%RH, and full accuracy is ± 2%RH. The scope of measuring temperature is-40 DEG C~+ 123.8 DEG C, and resolving power is 0.01 DEG C. Measure precision < ± 1 DEG C of dew point. In the time measuring humidity, temperature, the figure place of A/D converter can reach respectively 12,14. Utilize the method that reduces resolving power can improve measurement speed, reduce the power consumption of chip.
In the present embodiment, humidity sensor mechanism 30 comprises wall-hanging humidity sensor 31 or air duct type humidity sensor 32, and wall-hanging humidity sensor 31 and air duct type humidity sensor 32 can be set simultaneously.
As shown in Figure 3, wall-hanging humidity sensor 31 is suitable for being arranged on indoor, it comprises sensor body, shell 311, ventilating opening 312, signal connector 313, attaching nut 314 and fixed via 315, sensor body is arranged on shell 311 inside, ventilating opening 312, signal connector 313, attaching nut 314 and fixed via 315 are separately positioned on shell 311, signal connector 313 is for connecting holding wire, and attaching nut 315 is for fixed signal line 42.
As shown in Figure 4, air duct type humidity sensor 32 is suitable for being arranged on ventilation shaft or open space, it comprises sensor body, loop bar 321, spacing catch 322 and attaching nut 323, sensor body is arranged in loop bar 321, loop bar 321 is positioned in the accommodation hole (not shown) in casing 50, and holding wire 42 is connected on attaching nut 323.
Should be noted that: the type of humidity sensor is not limited to this; the utility model also can use any existing humidity sensor; and can be according to the annexation, the set-up mode etc. that have type and adjust sensor and other structures, and various distortion be all covered by protection domain of the present utility model.
In sum, therefore, Portable photovoltaic humidity control equipment of the present utility model can be realized free of discontinuities power supply, and the real-time transmission of moisture signal, can realize no worker monitor, and can be applicable to the place of field unattended, therefore can be widely used in emergent natural calamity and occur on-the-spot. And under non-working condition, each mechanism can be accommodated in casing, realizes portable function. On-the-spot installation fast under use state, thus can all can carry out timely and effectively humidity control in any occasion.
Below example has illustrated preferred embodiment formulas more of the present utility model by reference to the accompanying drawings. The utility model person of an ordinary skill in the technical field should be appreciated that the concrete structure shown in above-mentioned detailed description of the invention part and technical process are only for illustrative, and not restrictive. And, the utility model person of an ordinary skill in the technical field can combine to form new technical scheme according to various possible modes to the various technical characterictics shown in the above, or carry out other and change, and within all belonging to scope of the present utility model.

Claims (8)

1. a Portable photovoltaic humidity control equipment, is characterized in that, comprising:
Photovoltaic mechanism, comprises photovoltaic module, for converting solar energy into electrical energy;
Power sector, comprises power module, and power module is electrically connected with photovoltaic module, to receive electric energy;
Humidity sensor mechanism, for sensing humidity, and sends moisture signal;
Wireless communication mechanisms, for receiving the moisture signal from humidity sensor mechanism; And
Casing, for holding photovoltaic mechanism, power sector, humidity sensor mechanism and wireless communication mechanisms.
2. Portable photovoltaic humidity control equipment as claimed in claim 1, is characterized in that photovoltaic mechanismAlso comprise folding rack, folding rack is connected with photovoltaic module is dismountable.
3. Portable photovoltaic humidity control equipment as claimed in claim 1, is characterized in that power sectorAlso comprise battery and inverter, battery, inverter and power module are connected by wire successively, everyThe two ends of one wire are provided with plug, and photovoltaic module, power module and humidity sensor are provided with jack,Casing is provided with the through hole corresponding with jack, and plug can insert jack by through hole.
4. Portable photovoltaic humidity control equipment as claimed in claim 1, is characterized in that radio communicationMechanism comprises wireless communication module and holding wire, and holding wire and wireless communication module and humidity sensor mechanism connectConnect.
5. Portable photovoltaic humidity control equipment as claimed in claim 1, is characterized in that humidity sensorMechanism comprises wall-hanging humidity sensor and/or air duct type humidity sensor.
6. Portable photovoltaic humidity control equipment as claimed in claim 5, is characterized in that, wall-hanging wetDegree sensor comprises sensor body, shell, ventilating opening, signal connector, attaching nut and fixed via,Sensor body is arranged on enclosure, and ventilating opening, signal connector, attaching nut and fixed via are respectivelyBe arranged on shell, signal connector is used for connecting holding wire, and attaching nut is for fixed signal line.
7. Portable photovoltaic humidity control equipment as claimed in claim 5, is characterized in that, air duct type is wetDegree sensor comprises sensor body, loop bar, spacing catch and attaching nut, and sensor body is arranged on coverIn bar, loop bar is positioned in the accommodation hole in casing, and holding wire is connected on attaching nut.
8. Portable photovoltaic humidity control equipment as claimed in claim 1, is characterized in that casing outsideHave handle, box house has first to be held district, second and holds district, the 3rd and hold district and the 4th and hold district,First holds district is positioned at a side of box house, and for placing power sector, second holds district's box houseMiddle part, for placing photovoltaic mechanism, the 3rd holds the opposite side that district and the 4th holds district and be positioned at box house,Be respectively used to place humidity sensor mechanism and wireless communication mechanisms.
CN201521108020.7U 2015-12-25 2015-12-25 Portable photovoltaic wetness monitoring equipment Expired - Fee Related CN205247230U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521108020.7U CN205247230U (en) 2015-12-25 2015-12-25 Portable photovoltaic wetness monitoring equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521108020.7U CN205247230U (en) 2015-12-25 2015-12-25 Portable photovoltaic wetness monitoring equipment

Publications (1)

Publication Number Publication Date
CN205247230U true CN205247230U (en) 2016-05-18

Family

ID=55946313

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201521108020.7U Expired - Fee Related CN205247230U (en) 2015-12-25 2015-12-25 Portable photovoltaic wetness monitoring equipment

Country Status (1)

Country Link
CN (1) CN205247230U (en)

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20181019

Address after: 014100 new energy park, new industrial park, Tu Right Banner, Baotou, the Inner Mongolia Autonomous Region.

Patentee after: Inner Mongolia Donghua new energy operation & Maintenance Co., Ltd.

Address before: 014030 Qingshan road 22, Qingshan District, Baotou, the Inner Mongolia Autonomous Region

Patentee before: INNER MONGOLIA PHOTOVOLTAIC APPLICATION TECHNOLOGY RESEARCH CO., LTD.

TR01 Transfer of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160518

Termination date: 20201225

CF01 Termination of patent right due to non-payment of annual fee