TWI282848B - Infrared ray emission rate detector - Google Patents

Infrared ray emission rate detector Download PDF

Info

Publication number
TWI282848B
TWI282848B TW95116067A TW95116067A TWI282848B TW I282848 B TWI282848 B TW I282848B TW 95116067 A TW95116067 A TW 95116067A TW 95116067 A TW95116067 A TW 95116067A TW I282848 B TWI282848 B TW I282848B
Authority
TW
Taiwan
Prior art keywords
infrared
detector
heating
temperature
heating device
Prior art date
Application number
TW95116067A
Other languages
Chinese (zh)
Other versions
TW200742836A (en
Inventor
Tsung-Yu Huang
Original Assignee
Tsung-Yu Huang
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 Tsung-Yu Huang filed Critical Tsung-Yu Huang
Priority to TW95116067A priority Critical patent/TWI282848B/en
Application granted granted Critical
Publication of TWI282848B publication Critical patent/TWI282848B/en
Publication of TW200742836A publication Critical patent/TW200742836A/en

Links

Landscapes

  • Electric Ovens (AREA)
  • Radiation Pyrometers (AREA)

Abstract

The present invention relates to a kind of infrared ray emission rate detector, in particular to a detector that can detect the difference/change of infrared ray emission rate of commodity. Said detector includes a heating appearance and detecting appearance. Said heating appearance includes a receiver for putting the commodity for detecting. Said receiver can be controlled by a control set for heating and keep it at a uniform temperature. Said detecting appearance with senor for detecting infrared ray is mounted on a base. Said base includes a board with a tunnel. After heating, the user can draw said board for putting said tunnel to correspond with said sensor for getting the value of infrared ray emission rate of commodity. Said rate can be compared to the correction value when the commodity left the factory.

Description

Ϊ282848 九、發明說明: 【發明所屬之技術領域】 本發明係隸屬一種判定紅外線放射率強弱之技術, 藉由本發明的特殊設計,讓一般或特殊需求之使用者能 夠即時檢測受測物的紅外線放射率強度是否符合預期標 準或設定,以提升内部產品的品質的控管。另外,此偵 測為偵測之可視紅外線放射率數據亦使得有紅外線放射 功能之產品有數字依據,並增加顧客對其之信任感。 【先前技術】Ϊ 282848 IX. Description of the Invention: [Technical Field] The present invention is a technology for determining the intensity of infrared radiation. With the special design of the present invention, users of general or special needs can instantly detect infrared radiation of a test object. Whether the rate strength meets the expected standards or settings to improve the quality of the internal products. In addition, the detected visible infrared emissivity data for the detection also makes the products with infrared radiation function digitally based and increases the trust of customers. [Prior Art]

巳知,在太1%光線之中,包含了人類可以用肉眼看 到的光線及肉眼不能看見的遠紅外線及紫外線,紅外綠 的電磁波與一般光線相同,但其波長卻超越一般紅色I 視光線,它佔太陽光線中的59%,其中紅外線又可分 四大類,就是近紅外線,中紅外線,遠紅外線,及二 外線,假如將近紅外線照射在人體上,被照射的 刻便會有灼熱的感覺;相反的,遠紅外線不但不备 人體,而且更可以使人體能量增幅,另身體^部激 起來,對有機的人體會產生共鳴吸收及治療功欵, 以波長(微米)的光線對人類以至一切生尤其 長至為重要,現已獲全球各生物學會及人體工浐風之逢 一制公認,遠紅外線的產品包括内衣褲、護腰^二會$ 床墊、枕墊和被等。主要的功能是促進身^不,膝、 的J&L液循環,預防酸痛不適,消除疲勞,以及 卩仇白、 ,例如風濕性關節炎、骨質增生、肩周炎、,疾杰 痛、手腳麻痒等; *、椎炎、用 1282848 ❿ 雖然遠紅外線具有保健的功效,也被廣泛的運用於 曰常的用品中,然而紅外線為一種看不見的不可見光, 無法由肉眼或其他感覺器官來判斷商品是否真的含有遠 紅外線,又或是否具有足夠的放射率,對消費者無任何 的保障,相對上也對優良商家的銷售產生一定之困擾, 因此如何進行紅外線測定也就變的很重要,而現有的紅 外線測定技術與設備,如我國專利公告第351756號之r 熱電型紅外線檢出裝置」、第466779號之「毫米波•遠 紅外線檢測儀」及第580568號之「紅外線偵測電路及紅 外線偵測器」等專利前案,其均係屬大型的專業設備, 而主要係用於實驗室中,而無法使用於一般的消費場所 ,換言之,如能提供一種可於任何場所使用之紅外線放 .射率檢測儀器’财讓料者在採w時直接檢測商品的 紅外線功率,以提升消費者的信任度。 _ 本發明人乃針對前述的問題與需求深入 極尋求解決之道,經過長二業 發出一種紅外線放射率偵測器,其可有效解決: …' 法於 >肖費現場直接檢敎外線放射率㈣題。、 【發明内容】 器 ,藉因=在發==供:種紅外線放射率制 ’以利於消費者可迅速判二:,射率強度之檢測 否符合設定標準。 商叩的紅外線放射率強度是 為此’本發明主要係透過下列的技術手段,來具體 1282848 戶'現w述的目的與效能··其包含有·· 哭周:= 義相該加熱儀具有一容設受測物之容器,容 用之加熱裝置,再者加熱儀另設有-操 、、θ肤;::大况之控制組,該控制組具有一檢測容器升 =況之升溫顯示器及—供設定加熱 不益’且控·另具有系列可供設定溫度之設定鍵;‘、貝 榀測儀,忒檢測儀内設有可檢知紅外線放射率之I know that in too much light, it contains the light that humans can see with the naked eye and far infrared rays and ultraviolet rays that are invisible to the naked eye. The infrared green electromagnetic wave is the same as the general light, but its wavelength is beyond the general red I. It accounts for 59% of the sun's rays. Among them, infrared rays can be divided into four categories, namely, near-infrared rays, mid-infrared rays, far-infrared rays, and two outer lines. If near-infrared rays are irradiated on the human body, the engraved engraving will have a burning sensation. On the contrary, the far-infrared rays are not only not prepared for the human body, but also can increase the energy of the human body, and the other parts of the body will stimulate the absorption and treatment of the organic human body, with light (micrometer) light to humans and everything else. It is especially important for students to grow up. It has been recognized by various biology associations and ergonomics in the world. Far-infrared products include underwear, waist protectors, mattresses, pillows and bedding. The main function is to promote the body, the knee, the J & L liquid circulation, prevent soreness and discomfort, eliminate fatigue, and hate white, such as rheumatoid arthritis, bone hyperplasia, frozen shoulder, dysentery, hands and feet Itching, etc.; *, vertebral inflammation, with 1282848 ❿ Although far infrared rays have health care effects, they are also widely used in common products, but infrared rays are an invisible invisible light that cannot be seen by the naked eye or other sensory organs. Judging whether the product really contains far-infrared rays, or whether it has sufficient emissivity, does not have any protection for consumers, and relatively has a certain problem for the sales of excellent merchants. Therefore, how to perform infrared measurement becomes very important. And the existing infrared measurement technology and equipment, such as the Chinese Patent Publication No. 351756 r thermal infrared type detection device, the "millimeter wave far infrared detector" No. 466779 and the "infrared detection circuit" No. 580568 Patent cases such as "infrared detectors", which are large-scale professional equipment, mainly used in laboratories, but cannot be made General consumer sites, in other words, if they can provide a place to put it to use any infrared. Reflectivity detection equipment 'fiscal allows material to directly detect infrared power commodity in the mining w, in order to enhance consumer confidence. _ The inventor has sought a solution to the above problems and needs. After the second industry, an infrared radiation rate detector is issued, which can effectively solve: ... 'Fabulous> Xiao Fei on-site direct inspection of external radiation Rate (four) questions. [Inventive content] The device, the cause = the hair == for: the infrared radiation rate system ‘to help the consumer can quickly judge two: the detection of the rate of intensity does not meet the set standard. The infrared radiance intensity of Shangyu is for this purpose. The main purpose of the present invention is to use the following technical means to specifically target 1,282,848 households. The purpose and efficiency of the present invention are included in the crying week: = The phase of the heater has a container for the object to be tested, a heating device for the use, and a heating device additionally provided with a -, θ, θ skin;:: a control group of the general condition, the control group has a temperature rise display for detecting the container And - for setting heating is not good 'and control · another series of settings for the temperature setting button; ', Behr tester, 忒 detector is available to detect the infrared radiation rate

件:應7^件,且檢測儀具有—可操控紅外線感應元 '組,其中操作組具有啟閉用之測定開關、設定 ::能鍵及顯現檢測值之數值顯示器,又檢測儀底面 7成有一對應紅外線感應元件之感應通道·, ,藉此,透過前述技術手段的展現,可讓本發明在加 熱儀之谷器加熱完成後,,進而測定受測物的紅外線 放射率,以便於使用者判斷受測物是否符合標準,以 增進其附加價值。 為使貴審查委員能進一步了解本發明的構成、特 徵及其他目的,以下乃舉本發明之若干較佳實施例,並 配合圖式詳細說明如后,同時讓熟悉該項技術領域者能 ,具體實施,惟以下所述者,僅在於說明本發明之較佳 實施例,並非用以限制本發明之範圍,故凡有以本發明 之精神為基礎,而為本發明任何形式之修飾或變更,皆 仍應屬於本發明意圖保護之範疇。 白 【實施方式】 本發明係一種紅外線放射率偵測器,請參閱第一、 1282848 純道(28G)之隔板(28),讓使用者可推拉 二二7用其通道(28〇)相對封閉或導通承座 紅外線感二 測器ί此’組構成一可便於即時測定的紅外線放射率偵 所顧至Γ本Γ月於實際運用,則請參照第二、三及四圖 刺用、Τί :f發明於進行實物檢测前係將檢測儀(2〇) =二-黑體片與—白體片進行測定=二)4二 =ί:Γ形校正用參考反射體,理論上放射率為1 :、 體片為—圓盤形校正用參考反射體,理 正用參考反射體,用以校正紅二由; 際測疋物體放射率時不需被使二 或者在例行週期性光學校正時才需要被使^ 接著二著=則物置於加熱儀(1°)之容器⑻内, 接著利用控制組(15 )之母々 後,啟動加熱裂置(12)進.8),設定檢測之溫度 13)與恆溫控制器(14)二‘、、、,亚利用感溫元件( 檢測溫度的範圍内,當升^谷f⑴)内溫度保持於 與設定溫度顯示器(17) ::、= :16)所顯示的溫度 物之紅外線放射達到受測均;度:寸-致時,可令受測 承座(26)上之隔板(如勺值’ ^即拉開檢測儀(2〇) )對應滑槽(27)通道(27n\使隔板(28)之通道(280 ’如此即可讓檢測儀(20 (11) ^ 1282848 )之測定開關(2^:=^ 顯示於數值㈣…、了將 、X外線放射率數值 用此-數值:以)’再者紅:線強度參數並可利 較之後,「 過之放神_值參數計算比 侍在區間内的紅外線放射率; 的測ί外#i、/M⑻㈣夺,檢測器還會做周圍環境溫度 ,依據裱境溫度的變化,即時計算出對環境、、W碎 的,償’使得檢測出來的紅外線數值更加精準將誤2二 到最小耘度,讓使用者即時得知受測物的紅外線放 ,以判斷其是否符合標準與標示。 一綜上所述,本發明確實為一新潁進步的創作,在相 同的技術領域中未見相同或近似的產品公開使用,故本 t明已符合發明專利的要件,乃依法提出申請,往 曰賜准本案發明專利。 斤明早 【圖式簡單說明】 第 第一圖:係本發明偵測器之立體分解示意圖,用以說 明各主要元件之構成及其相對關係。 第 圖:係本發明偵測器之外觀示意圖,其顯示本發 明組成後之態樣。 x 圖:係本發明偵測器於實際使用之側視示意圖, 第 藉以說明其加熱時之狀態。 四圖·係本發明偵測器另一實際使用之側視示意圖 Γφ迅—’進一步說明其檢測時之狀態。 要元件符號說明】 1282848 (10) 加熱儀 (11) 容器 (12) 加熱裝置 (13) 感溫元件 (14) 恆溫控制器 (15) 控制組 (16) 升溫顯示器 (17) 設定溫度顯不杰 (18) 設定鍵 (20) 檢測儀 (21) 操作組 (22) 測定開關 (23) 功能鍵 (24) 數值顯示器 (25) 感應通道 (26) 承座 (27) 滑槽 ( 270 ) 通道 (28) 隔板 ( 280 ) 通道Pieces: 7^ pieces, and the detector has a - controllable infrared sensor element group, wherein the operation group has a measurement switch for opening and closing, setting:: a key display and a numerical display showing the detected value, and the bottom surface of the detector is 70% There is a sensing channel corresponding to the infrared sensing element, thereby, through the above-mentioned technical means, the invention can be used to determine the infrared emissivity of the measured object after the heating of the heating device is completed, so as to facilitate the user. Determine whether the tested object meets the standard to enhance its added value. The following is a description of the preferred embodiments of the present invention, and is described in detail with reference to the drawings, and The following is a description of the preferred embodiments of the present invention, and is not intended to limit the scope of the present invention. All should still fall within the scope of the intended protection of the invention. [Embodiment] The present invention is an infrared emissivity detector, please refer to the first, 1282848 pure channel (28G) partition (28), so that the user can push and pull the second and second 7 with its channel (28〇) relative Closed or conductive socket infrared sensor ί ' ' ' ' ' ' ' ' ' ' ' ' ' ' 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线 红外线:f Invented before the physical inspection, the detector (2〇) = two-black body and white body tablets are measured = two) 4 two = ί: 参考 correction reference reflector, theoretical emissivity 1 :, the body piece is a disc-shaped reference reflector for correction, and the reference reflector is used to correct the red two; the radioactivity of the object is not required to be corrected or periodically corrected by the optical Only need to be ^ then 2 = the object is placed in the heater (1 °) container (8), and then use the control group (15) mother, start the heating crack (12) into .8), set the test The temperature of 13) and the thermostat controller (14) two ',,,,,,,,,,,,,,, The temperature inside the riser valley f(1)) is maintained at the temperature measured by the display temperature (display) (17) ::, = :16), and the infrared radiation reaches the measured average; 26) The upper partition (such as the spoon value ' ^ is to open the detector (2 〇)) corresponding to the chute (27) channel (27n \ make the partition (28) channel (280 ' so that the detector ( 20 (11) ^ 1282848 ) The measurement switch (2^:=^ is displayed in the value (4)..., and the X-external emissivity value is used for this value-by-) 're-red: line strength parameter and can be compared "The _ value parameter is calculated more than the infrared ray rate in the waiting range; the measurement is outside the #i, /M(8) (four), and the detector will also make the ambient temperature, and calculate it according to the change of the ambient temperature. For the environment, W broken, reimbursed 'to make the detected infrared value more accurate will be wrong 2 to the minimum degree, so that the user can instantly know the infrared radiation of the test object to determine whether it meets the standard and label. In summary, the present invention is indeed a new and progressive creation, and the same or similar is not seen in the same technical field. The product is used publicly, so this t-ming has already met the requirements of the invention patent, and the application is made according to law, and the invention patent is granted to the case. Jin Mingming [Simplified illustration] The first picture: the stereo decomposition of the detector of the invention Schematic diagram for explaining the composition of each main component and its relative relationship. Fig.: is a schematic view showing the appearance of the detector of the present invention, which shows the aspect of the composition of the present invention. x Figure: The detector of the present invention is actually used. A side view of the schematic diagram, to illustrate the state of its heating. Four figures are another side view of the actual use of the detector of the present invention Γ 迅 — - 'further description of the state of its detection. Description of the symbol of the component] 1282848 ( 10) Heating device (11) Container (12) Heating device (13) Temperature sensing element (14) Thermostat controller (15) Control group (16) Temperature rising display (17) Setting temperature display (18) Setting button (20 Detector (21) Operation group (22) Measurement switch (23) Function key (24) Value display (25) Sensing channel (26) Bearing seat (27) Chute (270) Channel (28) Partition (280) aisle

1212

Claims (1)

Ϊ282848 • 十、申請專利範圍: 1、一種紅外線放射率偵測器,其包含有· 一加熱儀,該加熱儀具有一容設受測物之容裔,容 杰周緣設有加熱用之加熱裝置,再者加熱儀另汉有一操 ' 控容器加熱狀況之控制組,該控制組具有一檢測容器升 / 溫狀況之升溫顯示器及一供設定加熱溫度之設定溫度顯 示器,且控制組另具有系列可供設定溫度之設定鍵; ^ 一檢測儀,該檢測儀内設有可檢知紅外線放射率之 红外線感應元件,且檢測儀具有一可操控紅外線感應元 件之操作組,其中操作組具有啟閉用之測定開關、設定 用之功能鍵及顯現檢測值之數值顯示器,又檢測儀底面 形成有一對應紅外線感應元件之感應通道·· 藉此,組構成一可便於即時測定的紅外線放射率僧 測器者。 'Ϊ 282848 • X. Patent application scope: 1. An infrared emissivity detector, which comprises a heating device, the heating device has a living space for receiving the object to be tested, and the heating device for heating is provided at the periphery of the Rongjie In addition, the heating device has a control group for controlling the heating state of the container. The control group has a temperature rising display for detecting the temperature rise/temperature condition of the container and a set temperature display for setting the heating temperature, and the control group has a series of Setting button for setting temperature; ^ A detector having an infrared sensing element capable of detecting infrared radiation rate, and the detector has an operation group capable of controlling the infrared sensing element, wherein the operation group has an opening and closing The measurement switch, the function key for setting, and the numerical display for displaying the detection value, and the sensing channel corresponding to the infrared sensing element is formed on the bottom surface of the detector. · Thereby, the group constitutes an infrared emissivity detector capable of real-time measurement . ' ^2、如申請專利範圍第i項所示之紅外線放射率偵 則其中,加熱儀之容器設有一感溫元件及一怪、Θ批 制器’用以監測容H之加熱及保持其恆溫。 ^ 測哭專利範圍第1項所示之紅外線放射率 其中,檢測儀可利用一承座設於加埶儀之&哭 ===有—滑槽’該滑槽具有對應 ,、级應通遏之通返,且滑槽上滑設有一 J使用者可推拉隔板,以利用其通道㈣ 承座之通道’以保持容器之密閉性或讓紅==或導 可接收到受測物之紅外線。 、、表感應元 13^2. Infrared emissivity detection as shown in item i of the patent application, wherein the container of the heating device is provided with a temperature sensing element and a strange and Θ batcher for monitoring the heating of the capacitor H and maintaining the constant temperature thereof. ^ Measuring the infrared emissivity shown in item 1 of the crying patent range. Among them, the detector can use a bearing set in the twisting device & crying === there is a chute, the chute has a corresponding, the level should pass To prevent the return, and a sliding device is provided with a J user to push and pull the partition to use the passage of the passage (4) to maintain the tightness of the container or to allow the red == or the guide to receive the test object. infrared. , table sensor element 13
TW95116067A 2006-05-05 2006-05-05 Infrared ray emission rate detector TWI282848B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW95116067A TWI282848B (en) 2006-05-05 2006-05-05 Infrared ray emission rate detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW95116067A TWI282848B (en) 2006-05-05 2006-05-05 Infrared ray emission rate detector

Publications (2)

Publication Number Publication Date
TWI282848B true TWI282848B (en) 2007-06-21
TW200742836A TW200742836A (en) 2007-11-16

Family

ID=38828930

Family Applications (1)

Application Number Title Priority Date Filing Date
TW95116067A TWI282848B (en) 2006-05-05 2006-05-05 Infrared ray emission rate detector

Country Status (1)

Country Link
TW (1) TWI282848B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI382161B (en) * 2008-12-31 2013-01-11 China Steel Corp Infrared temperature measurement with high accuracy
TWI393868B (en) * 2008-12-30 2013-04-21 Ind Tech Res Inst Device and method for emissivity measurement

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI393868B (en) * 2008-12-30 2013-04-21 Ind Tech Res Inst Device and method for emissivity measurement
TWI382161B (en) * 2008-12-31 2013-01-11 China Steel Corp Infrared temperature measurement with high accuracy

Also Published As

Publication number Publication date
TW200742836A (en) 2007-11-16

Similar Documents

Publication Publication Date Title
Wylde et al. Test–retest reliability of Quantitative Sensory Testing in knee osteoarthritis and healthy participants
James et al. Reliability and validity of skin temperature measurement by telemetry thermistors and a thermal camera during exercise in the heat
Moran et al. An environmental stress index (ESI) as a substitute for the wet bulb globe temperature (WBGT)
Alfano et al. On the measurement of the mean radiant temperature and its influence on the indoor thermal environment assessment
Bach et al. Does the technique employed for skin temperature assessment alter outcomes? A systematic review
CN111742200B (en) Apparatus and system for personal UV exposure measurement
WO2007054821A3 (en) Temperature measuring device using an infrared thermometer
Owda et al. Millimeter‐wave emissivity as a metric for the non‐contact diagnosis of human skin conditions
Singman et al. Association between accommodative amplitudes and amblyopia
KR20170022804A (en) Health care apparatus and method of operating of the apparatus
TWI282848B (en) Infrared ray emission rate detector
TWI669434B (en) Intelligent toilet with medical device
Mazdeyasna et al. Best Practices for Body Temperature Measurement with Infrared Thermography: External Factors Affecting Accuracy
TWI635278B (en) Non-invasive detecting apparatus for fruits , and ranking method thereof
Pušnik et al. IR ear thermometers: what do they measure and how do they comply with the EU technical regulation?
Muniz et al. Temperature thresholds and screening of febrile people by non-contact measurement of the face using infrared thermography–A methodology proposal
TW201800113A (en) Intelligent sterilization control system capable of adjusting sterilization power based on the information of bacteria-containing substance
Bhattacharjee et al. Design of an optimised, low cost, contactless thermometer with distance compensation for rapid body temperature scanning
Ku Contactless smart body temperature scanner system
Swapna Iot-enabled non-contact-based infrared thermometer for temperature recording of a person
Gupta et al. Gelatinization and X-ray crystallography of buckwheat starch: Effect of microwave and annealing treatments
Youssef et al. Evaluating thermal comfort of children: A perspective on commonly used methods
Saba et al. Smart mirror where i stand, who is the leanest in the sand?
Nomoto et al. Quantitative analysis of wavelength dependence of thermal perception
McEwan et al. Low-cost near-infrared measurement of subcutaneous fat for newborn malnutrition

Legal Events

Date Code Title Description
MM4A Annulment or lapse of patent due to non-payment of fees