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JP5887478B2 - Dehumidifier - Google Patents

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JP5887478B2
JP5887478B2 JP2011115500A JP2011115500A JP5887478B2 JP 5887478 B2 JP5887478 B2 JP 5887478B2 JP 2011115500 A JP2011115500 A JP 2011115500A JP 2011115500 A JP2011115500 A JP 2011115500A JP 5887478 B2 JP5887478 B2 JP 5887478B2
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JP2012242062A (en
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智 上野
智 上野
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Panasonic Intellectual Property Management Co Ltd
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Description

本発明は、除湿装置の運転時に衣類等の被乾燥物の乾燥を簡単な方法で検知する方法に関する。   The present invention relates to a method for detecting the drying of an object to be dried such as clothes by a simple method during operation of a dehumidifier.

従来、この種に関する除湿装置は、室内の温度と湿度の変化を検知して、衣類の乾燥を推測する除湿装置が知られている。(例えば、特許文献1参照)。   2. Description of the Related Art Conventionally, as a dehumidifying apparatus related to this type, a dehumidifying apparatus that detects changes in indoor temperature and humidity and estimates drying of clothes is known. (For example, refer to Patent Document 1).

以下、その除湿装置について説明する。   Hereinafter, the dehumidifier will be described.

室内の温度を検知する温度センサと室内の湿度を検知する湿度センサを用いて室内の温度と湿度を検知し、運転開始からの温度と湿度の変化の推移から衣類等の被乾燥物の乾燥を推定する除湿装置である。   The indoor temperature and humidity are detected using a temperature sensor that detects the indoor temperature and a humidity sensor that detects the humidity in the room. Dehumidifying device to estimate.

また、衣類等の被乾燥物の表面温度と室内の温度を検知し、衣類等の被乾燥物の表面温度と室温の温度との差を演算して、衣類等の被乾燥物の乾燥を判断する除湿装置が知られている。(例えば、特許文献2参照)。   In addition, it detects the surface temperature of the object to be dried, such as clothing, and the room temperature, and calculates the difference between the surface temperature of the object to be dried, such as clothing, and the room temperature to determine whether the object to be dried, such as clothing, is dry. A dehumidifying device is known. (For example, refer to Patent Document 2).

以下、その除湿装置について説明する。   Hereinafter, the dehumidifier will be described.

室内の温度を検知する温度センサと衣類などの表面温度を検知する赤外線センサを用いて室内の温度と衣類等の被乾燥物の表面温度を検知し、室内の温度と衣類等の被乾燥物の表面温度の温度差を算出して、衣類等の被乾燥物の乾燥を判断する除湿装置である。   The temperature of the room and the infrared sensor that detects the surface temperature of clothes are used to detect the temperature of the room and the surface of the object to be dried, such as clothes. It is a dehumidifying device that calculates the temperature difference of the surface temperature and determines the drying of an object to be dried such as clothing.

特開2007−181585号公報JP 2007-181585 A 特開2007−240100号公報JP 2007-240100 A

このような従来の除湿装置では、室内の温度を検知する温度センサと室内の湿度を検知する湿度センサを用いて室内の温度と湿度を検知し、運転開始からの温度と湿度の変化の推移から衣類等の被乾燥物の乾燥を推定するため、実際に衣類等の被乾燥物が乾燥しているかどうかの判断は実験等の経験則に基づく推定でしかなく、衣類等の被乾燥物が乾燥していても無駄に運転を継続する場合や衣類等の被乾燥物が乾燥していないのに停止する場合等が発生してしまうと言う課題を有していた。   In such a conventional dehumidifier, the temperature and humidity of the room are detected using a temperature sensor that detects the temperature of the room and a humidity sensor that detects the humidity of the room, and the change in temperature and humidity since the start of operation. In order to estimate the drying of clothes and other items to be dried, whether or not the items to be dried are actually dried is based on empirical rules such as experiments. However, there is a problem that even when the operation is continued unnecessarily, the case where the object to be dried such as clothes stops without being dried is generated.

また、室内の温度を検知する温度センサと衣類などの表面温度を検知する赤外線センサを用いて室内の温度と衣類等の被乾燥物の表面温度を検知し、室内の温度と衣類等の被乾燥物の表面温度の温度差を算出して、衣類等の被乾燥物の乾燥を判断するため、構成や演算方法が複雑になると言う課題を有していた。   In addition, the indoor temperature and the surface temperature of objects to be dried such as clothes are detected by using a temperature sensor for detecting the room temperature and an infrared sensor for detecting the surface temperature of clothes, etc., and the room temperature and the objects to be dried such as clothes are detected. Since the temperature difference of the surface temperature of an object is calculated to determine the drying of an object to be dried such as clothing, there is a problem that the configuration and the calculation method are complicated.

そこで本発明は、上記従来の課題を解決するものであり、温度センサによる室内の温度の検知や湿度センサによる湿度の検知をして、衣類等の被乾燥物の乾燥を推測する方法ではなく、また、衣類等の被乾燥物の表面温度と室温を検知して、その温度差等から衣類等の被乾燥物の乾燥を検知する方法ではなく、乾燥した空気を当てることによる衣類等の被乾燥物の揺れから発生する温度変化を検知して、衣類等の被乾燥物の乾燥を判断することができる除湿装置を提供することを目的としている。   Therefore, the present invention solves the above-described conventional problems, and is not a method of estimating drying of an object to be dried such as clothing by detecting the temperature of the room using a temperature sensor or detecting the humidity using a humidity sensor. Also, it is not a method of detecting the surface temperature and room temperature of an object to be dried, such as clothing, and detecting the drying of the object to be dried, such as clothing, based on the temperature difference, etc., but to dry an object such as clothing by applying dry air. An object of the present invention is to provide a dehumidifying device that can detect temperature changes generated from shaking of an object and determine whether an object to be dried such as clothes is dried.

そして、この目的を達成するために、体に設けた吹出口から前記本体の外部に吊るした衣類等被乾燥物に風を送風するファンと、前記吹出口に設けて送風方向を水平方向に変化させる送風範囲ルーバーと、特定の範囲の温度変化を検知する赤外線センサを備え、被乾燥物の乾燥を行う除湿装置であって、
前記送風範囲ルーバーによって前記ファンからの風向を変化させて、前記被乾燥物を前記赤外線センサの検知範囲を超えるように揺らし、前記赤外線センサは、前記被乾燥物の揺れによる温度変化を検知したときに被乾燥物が濡れていると判断することを特徴としたものであり、これにより所期の目的を達成するものである。
In order to achieve this object, a fan for blowing air to the clothes or the like material to be dried that hung on the outside of the body from the air outlet provided in the body, the blowing direction in the horizontal direction provided in the air outlet A dehumidifying device comprising a blowing range louver to be changed and an infrared sensor for detecting a temperature change in a specific range, and drying an object to be dried,
When the air direction from the fan is changed by the air blowing range louver, the object to be dried is shaken so as to exceed the detection range of the infrared sensor, and the infrared sensor detects a temperature change due to the shaking of the object to be dried. It is characterized in that the object to be dried is judged to be wet, and this achieves the intended purpose.

本発明によれば、体に設けた吹出口から前記本体の外部に吊るした衣類等被乾燥物に風を送風するファンと、前記吹出口に設けて送風方向を水平方向に変化させる送風範囲ルーバーと、特定の範囲の温度変化を検知する赤外線センサを備え、被乾燥物の乾燥を行う除湿装置であって、前記送風範囲ルーバーによって前記ファンからの風向を変化させて、前記被乾燥物を前記赤外線センサの検知範囲を超えるように揺らし、前記赤外線センサは、前記被乾燥物の揺れによる温度変化を検知したときに被乾燥物が濡れていると判断することができるという効果を得ることができる。 According to the present invention, the fan and the blowing range of changing the blowing direction in the horizontal direction provided in the air outlet for blowing air to the clothes or the like material to be dried that hung on the outside of the body from the air outlet provided in the body A dehumidifying device that includes a louver and an infrared sensor that detects a temperature change in a specific range, and that dries the object to be dried, and changes the air direction from the fan by the air blowing range louver, Shake so that the detection range of the infrared sensor is exceeded, and the infrared sensor can obtain an effect that it can be determined that the object to be dried is wet when a temperature change due to the shaking of the object to be dried is detected. it can.

本発明の実施の形態1の除湿装置の吸込口から見た図The figure seen from the suction inlet of the dehumidification apparatus of Embodiment 1 of this invention 本発明の実施の形態1の除湿装置の吹出口から見た図The figure seen from the blower outlet of the dehumidification apparatus of Embodiment 1 of this invention 本発明の実施の形態1の赤外線熱検知手段の構成を示す図The figure which shows the structure of the infrared heat detection means of Embodiment 1 of this invention. 同除湿装置の赤外線熱検知手段の制御回路の図Diagram of the control circuit of the infrared heat detection means of the dehumidifier 同除湿装置の赤外線熱検知手段の制御回路の出力の図Diagram of the output of the control circuit of the infrared heat detection means of the dehumidifier 同除湿装置の衣類が濡れているときの出力の図Figure of output when clothing of the dehumidifier is wet 同除湿装置の衣類が乾燥したときの出力の図Figure of output when clothing of the dehumidifier is dry 同除湿装置の衣類が乾燥したときの出力の図Figure of output when clothing of the dehumidifier is dry

本発明の請求項1記載の除湿装置は、体に設けた吹出口から前記本体の外部に吊るした衣類等被乾燥物に風を送風するファンと、前記吹出口に設けて送風方向を水平方向に変化させる送風範囲ルーバーと、特定の範囲の温度変化を検知する赤外線センサを備え、被乾燥物の乾燥を行う除湿装置であって、前記送風範囲ルーバーによって前記ファンからの風向を変化させて、前記被乾燥物を前記赤外線センサの検知範囲を超えるように揺らし、前記赤外線センサは、前記被乾燥物の揺れによる温度変化を検知したときに被乾燥物が濡れていると判断することを特徴とするものである。これにより、衣類等の被乾燥物の揺れによる温度変化の信号を検知して、衣類等の被乾燥物が濡れているかどうかを判断することができるという効果を奏する。 Dehumidifying apparatus according to claim 1 of the present invention includes a fan for blowing air to the clothes or the like material to be dried that hung on the outside of the body from the air outlet provided in the body, the blowing direction is provided on the outlet horizontal A dehumidifying device that includes a blowing range louver that changes direction and an infrared sensor that detects a temperature change in a specific range, and that dries an object to be dried, and changes the air direction from the fan by the blowing range louver. The object to be dried is shaken so as to exceed the detection range of the infrared sensor, and the infrared sensor determines that the object to be dried is wet when detecting a temperature change due to the shaking of the object to be dried. It is what. Thereby, there is an effect that it is possible to detect whether or not the object to be dried such as clothes is wet by detecting a signal of a temperature change due to shaking of the object to be dried such as clothes.

また、前記被乾燥物の揺れによる温度変化が無くなったときを衣類等の被乾燥物が乾燥したと判断する構成にしてもよい。これにより、衣類等の被乾燥物の揺れによる温度変化の信号の変動の推移から、衣類等の被乾燥物が乾燥したかどうかを判断することができるという効果を奏する。 Further, the material to be dried such as clothes, may be configured to determine that dry when the temperature changes due to shaking of the material to be dried is exhausted. Thereby, there exists an effect that it can be judged whether to-be-dried materials, such as clothing, were dried from the transition of the change of the signal of the temperature change by the to-be-dried materials, such as clothing.

また、一定時間毎に前記ファンの風量を徐々に上げて、赤外線センサで温度変化を検知した時点で元の風量に戻す構成にしてもよい。 Further, scratch every constant time gradually increasing the air volume of the fan may be configured to return to the original air volume at the time of detecting the temperature changes in the infrared sensor.

これにより、被乾燥物の揺れによる温度変化の信号をできるだけ静かな状態で検知できるという効果を奏する。   Thereby, there is an effect that it is possible to detect a signal of a temperature change due to shaking of an object to be dried in a state as quiet as possible.

(実施の形態1)
図1から図5に本発明に関わる除湿装置の全体構成を示す。
(Embodiment 1)
1 to 5 show the entire configuration of a dehumidifying apparatus according to the present invention.

図1と図2に示すように、除湿装置は、本体1の天面に除湿装置の操作と運転状態を表
示するための操作表示部2と、本体1の前面に設けて室内の空気を吸い込む吸込口3と、本体1の天面に設けて除湿された空気を吹き出すための吹出口4と、吹出口4から被乾燥物に風を送風するファン5と吹出口4に設けて送風方向を変化させるルーバーとして備えた風向ルーバー6と送風範囲ルーバー7と、除湿した水分を集めるための貯水タンク8と吸込口3の近傍にあり除湿装置の運転に影響を受けにくい場所に設置されている室内の温度を検知する温度センサ9と室内の湿度を検知する湿度センサ10と衣類等の被乾燥物の揺れによる温度変化を電圧変動の信号に変換する赤外線センサ11を備えている。
As shown in FIGS. 1 and 2, the dehumidifying device is provided on the top surface of the main body 1 to display the operation and operating state of the dehumidifying device, and is provided on the front surface of the main body 1 to suck in indoor air. A suction port 3, a blower outlet 4 for blowing out dehumidified air provided on the top surface of the main body 1, a fan 5 for blowing wind from the blower outlet 4 to the object to be dried, and a blower outlet 4 to provide a blowing direction. A room installed in a place that is located near the suction port 3 and the storage tank 8 for collecting the dehumidified moisture and is not easily affected by the operation of the dehumidifier, as the wind direction louver 6 and the air blowing range louver 7 provided as louvers to be changed. A temperature sensor 9 for detecting the temperature of the water, a humidity sensor 10 for detecting the humidity in the room, and an infrared sensor 11 for converting a temperature change caused by shaking of an object to be dried such as clothes into a signal of voltage fluctuation.

風向ルーバー6は、吹出口4から吹き出す空気の風向を上下方向に変化させるものである。また、送風範囲ルーバー7は、水平方向に送風範囲を変化させるものである。   The wind direction louver 6 changes the wind direction of the air blown out from the air outlet 4 in the vertical direction. The air blowing range louver 7 changes the air blowing range in the horizontal direction.

赤外線センサ11は、特定の範囲内の温度変化による赤外線量の変動を検知する焦電型の赤外線センサを使用することが可能であり、図3に示すように、赤外線センサ11に5分割された集光レンズ12を組み合わせ、集光レンズ12の各レンズ12a、12b、12c、12d、12eの焦点を赤外線センサ11の赤外線受光部13に合わせることで、5箇所の温度変化をひとつの信号として検知することができるようになる。また、除湿装置の衣類乾燥における除湿装置と衣類等の被乾燥物との距離は凡そ0.4m〜2.0m程度、除湿装置の送風による衣類の左右方向の揺れは、送風の強さと距離により変わってくるが、凡そ4〜10cm程度と考えられる。このようなことから、1つのレンズの視野角を約1度から5度程度の範囲に調整すれば、除湿装置の送風による衣類等の被乾燥物の左右の揺れの下限値である4cm程度を検知することが可能になる。このように、レンズの分割方法や視野角の調整により、周囲温度よりも温度が低くなっている濡れた衣類等の被乾燥物の揺れを検知するための水平方向の幅と場所の数を調整することが可能である。 The infrared sensor 11 can use a pyroelectric infrared sensor that detects a change in the amount of infrared rays due to a temperature change within a specific range, and is divided into five infrared sensors 11 as shown in FIG. By combining the condensing lens 12 and focusing the respective lenses 12a, 12b, 12c, 12d, and 12e of the condensing lens 12 on the infrared light receiving unit 13 of the infrared sensor 11, five temperature changes are detected as one signal. Will be able to. In addition, the distance between the dehumidifying device and the object to be dried, such as clothing, is approximately 0.4 m to 2.0 m in the drying of the clothing of the dehumidifying device. Although it changes, it is considered to be about 4-10cm. For this reason, if the viewing angle of one lens is adjusted to a range of about 1 to 5 degrees, the lower limit of the left and right shaking of the object to be dried such as clothes by the air blown by the dehumidifier is about 4 cm. It becomes possible to detect. Thus, by adjusting the division method and the viewing angle of the lens, the number of horizontal width and location for detecting the Re rocking of the material to be dried such as clothes wet temperature than the ambient temperature is low It is possible to adjust.

ここでは、集光レンズを左右方向に5分割したものを用いているが、その分割数と上下方向の分割数に関係なく、集光レンズの分割や視野角の調整をして衣類等の被乾燥物の揺れを検知するための水平方向の幅と場所の数を調整するのであれば、その方法や数には限定されず、その作用効果に差異は生じない。   Here, a condensing lens divided into five in the left-right direction is used. Regardless of the number of divisions and the number of divisions in the up-down direction, the condensing lens is divided and the viewing angle is adjusted, so If the horizontal width and the number of places for detecting the shaking of the dry matter are adjusted, the method and the number are not limited, and there is no difference in the operation effect.

図5に示すように衣類等の被乾燥物の揺れによる温度変化は、赤外線センサ11によって微小なセンサ出力信号として検出される。そして、図4に示すような反転増幅回路を構成することにより、前記微小さなセンサ出力信号の電圧変動を基準電圧を中心とした振幅の大きな電圧信号に増幅することとなる。マイコンは、前記増幅された電圧信号を検知して衣類等の被乾燥物が濡れていることを精度良く検知し、さらに衣類等の被乾燥物の揺れによる温度変化の時間的な推移を精度良く検知することが可能になる。   As shown in FIG. 5, a temperature change due to shaking of an object to be dried such as clothes is detected by the infrared sensor 11 as a minute sensor output signal. Then, by configuring an inverting amplifier circuit as shown in FIG. 4, the voltage fluctuation of the small sensor output signal is amplified to a voltage signal having a large amplitude centered on the reference voltage. The microcomputer detects the amplified voltage signal to accurately detect that an object to be dried such as clothing is wet, and also accurately changes the temporal change in temperature due to the shaking of the object to be dried such as clothing. It becomes possible to detect.

また、焦電型の赤外線センサの特性として、マイコン入力電圧の極性変化は衣類等の被乾燥物の揺れが右から左もしくは左から右へ揺れたかを表すものであり、温度差の変動の大きさはマイコン入力電圧の電圧変動の大きさに比例するので、反転増幅により赤外線センサの出力信号とマイコン入力信号の位相が反転していても特に問題はない。   In addition, as a characteristic of pyroelectric infrared sensors, the change in polarity of the microcomputer input voltage indicates whether the swaying of clothes or other items to be dried sways from right to left or from left to right. Since this is proportional to the magnitude of the voltage fluctuation of the microcomputer input voltage, there is no particular problem even if the phase of the output signal of the infrared sensor and the microcomputer input signal is inverted by inversion amplification.

図には示していないが、除湿装置の本体1の内部には除湿装置の運転を制御する制御装置14と、吸い込んだ空気の水分を吸着する吸湿材15と、吸湿材15を加熱して吸湿材15から水分を放出させるための再生ヒーター16と吸湿材15から放出される水分を凝縮させるための凝縮器17と室内の空気を吸込口3から吸い込んで本体1の内部を循環させて除湿した空気を吹出口4から吹き出すためのファン5と貯水タンク8に溜まった水の水位を検知するための水位検知手段18と風向ルーバー6と送風範囲ルーバー7を駆動するためのステッピングモータなどが収納されている。また、制御装置14には、温度センサ9や湿度センサ10や赤外線センサ11からの信号を読み込み、信号の大きさから除湿装置の運転を自動的に運転の切換を行い、また、衣類等の被乾燥物の乾燥具合などを判断
する機能や負荷を駆動するためのトライアックやリレーなどの電子部品で構成された負荷駆動回路19と、カウンターやタイマーや時計機能などRAMやROMを内部に持つマイコン20を備えている。ここで、マイコン20の動作はマイコン20内のカウンターやタイマーや時計機能やRAMやROMが共同するマイコン20のプログラムの形態で実施される。
Although not shown in the figure, inside the main body 1 of the dehumidifying device, a control device 14 for controlling the operation of the dehumidifying device, a hygroscopic material 15 for adsorbing moisture of the sucked air, and the hygroscopic material 15 are heated to absorb moisture. The regeneration heater 16 for releasing moisture from the material 15, the condenser 17 for condensing moisture released from the hygroscopic material 15, and the room air are sucked from the suction port 3 and circulated through the inside of the main body 1 for dehumidification. A fan 5 for blowing air from the outlet 4, a water level detecting means 18 for detecting the level of water accumulated in the water storage tank 8, a stepping motor for driving the wind direction louver 6 and the air blowing range louver 7, etc. are housed. ing. Further, the control device 14 reads signals from the temperature sensor 9, the humidity sensor 10, and the infrared sensor 11, automatically switches the operation of the dehumidifying device based on the magnitude of the signal, and also detects the clothing such as clothing. A load drive circuit 19 composed of electronic parts such as a triac and a relay for driving a load and a function for judging the dryness of the dried product, and a microcomputer 20 having a RAM, ROM such as a counter, a timer and a clock function inside It has. Here, the operation of the microcomputer 20 is carried out in the form of a program of the microcomputer 20 in cooperation with the counter, timer, clock function, RAM and ROM in the microcomputer 20.

上記のように構成した除湿装置において、濡れた衣類等の被乾燥物を検知する方法と衣類等の被乾燥物の乾燥を検知する方法について説明する。   In the dehumidifying apparatus configured as described above, a method for detecting an object to be dried such as wet clothing and a method for detecting the drying of an object to be dried such as clothing will be described.

除湿装置の運転を開始して衣類等の被乾燥物に乾燥した空気を送風すると衣類等の被乾燥物は左右方向に揺れ、水分の蒸発により衣類等の被乾燥物の表面温度は室温よりも温度が低くなっているため、赤外線センサ11は衣類等の被乾燥物の揺れによって発生する温度変化を検知する。そしてマイコン20は、図6に示すような基準電位を中心とした電圧の変動として検知することができ、この電圧変動が発生していることから衣類等の被乾燥物が濡れていると判断することが可能となる。   When the dehumidifying device is started and dried air is blown on the object to be dried such as clothes, the object to be dried such as clothes shakes in the left and right direction, and the surface temperature of the object to be dried such as clothes is higher than room temperature due to evaporation of moisture. Since the temperature is low, the infrared sensor 11 detects a temperature change caused by shaking of an object to be dried such as clothes. Then, the microcomputer 20 can detect the voltage fluctuation centered on the reference potential as shown in FIG. 6, and determines that the object to be dried such as clothes is wet because the voltage fluctuation has occurred. It becomes possible.

次に、除湿装置の運転を継続すると、図7に示すように、衣類等の被乾燥物は乾燥して水分の蒸発による影響が少なくなり、赤外線センサ11で検知する温度変化は小さくなってマイコン入力信号の電圧変動も小さくなる。そして、衣類等の被乾燥物から水分の蒸発が無くなると、赤外線センサ11で検知する温度変化も無くなり、基準電位からの変動が無い状態となるため、基準電位からの変動の無い状態が一定時間T1の間継続した時点を衣類等の被乾燥物が乾燥したと判断することで、衣類等の被乾燥物の乾燥状態を検知することが可能になる。   Next, when the operation of the dehumidifying device is continued, as shown in FIG. 7, an object to be dried such as clothes is dried and less affected by the evaporation of moisture, and the temperature change detected by the infrared sensor 11 is reduced and the microcomputer is reduced. The voltage fluctuation of the input signal is also reduced. When moisture evaporates from an object to be dried such as clothing, there is no temperature change detected by the infrared sensor 11 and there is no change from the reference potential. Therefore, there is no change from the reference potential for a certain period of time. By determining that the object to be dried such as clothes has been dried at the time point that continues for T1, it is possible to detect the dry state of the object to be dried such as clothes.

また、上記にて衣類等の被乾燥物が乾燥したと判断しないで除湿装置の運転を継続すると、図8に示すように、衣類等の被乾燥物は乾燥して水分の蒸発による影響が少なくなり、赤外線センサ11で検知する温度変化は小さくなってマイコン入力信号の電圧変動も小さくなる。そして、衣類等の被乾燥物から水分の蒸発が無くなると、赤外線センサ11で検知する温度変化も無くなり、基準電位からの変動が無い状態となる。さらに除湿装置の運転を継続すると、除湿装置から室温よりも温度の高い乾燥した空気の送風の影響により、衣類等の被乾燥物の表面温度が周囲温度よりも高くなり、赤外線センサ11で温度変化を検知するようになってマイコン入力信号に電圧変動の信号が発生する。この再度発生したマイコン入力信号に電圧変動が一定時間T2の間継続した時点を衣類等の被乾燥物が乾燥したと判断することで、より乾燥度合いの高い乾燥状態、すなわち衣類等の被乾燥物の生乾きや乾燥ムラを防止して衣類等の被乾燥物の乾燥状態を検知することが可能になる。   Further, if the operation of the dehumidifying device is continued without determining that the object to be dried such as clothes is dried as described above, the object to be dried such as clothes is dried and less affected by evaporation of moisture as shown in FIG. Thus, the temperature change detected by the infrared sensor 11 is reduced, and the voltage fluctuation of the microcomputer input signal is also reduced. When moisture evaporates from an object to be dried such as clothes, the temperature change detected by the infrared sensor 11 is also eliminated, and there is no fluctuation from the reference potential. If the operation of the dehumidifier is continued, the surface temperature of the object to be dried such as clothing becomes higher than the ambient temperature due to the influence of air blown from the dehumidifier at a temperature higher than the room temperature, and the infrared sensor 11 changes the temperature. As a result, a voltage fluctuation signal is generated in the microcomputer input signal. By determining that the dried object such as clothes is dried when the voltage variation continues for a certain time T2 in the regenerated microcomputer input signal, the dry state with a higher degree of drying, that is, the dried object such as clothes It is possible to detect the dry state of an object to be dried, such as clothing, by preventing raw drying and uneven drying.

(実施の形態2)
実施の形態1と同一部分は同一番号を付し、詳細な説明は省略する。
(Embodiment 2)
The same parts as those in the first embodiment are denoted by the same reference numerals, and detailed description thereof is omitted.

衣類等の被乾燥物の揺れによる温度変化を一定時間毎に確認し、衣類等の被乾燥物の揺れによる温度変化を一定時間毎に確認するときにファン5の風量を大きくする構成にする。   The temperature change caused by the shaking of the object to be dried such as clothing is confirmed every predetermined time, and the air volume of the fan 5 is increased when the temperature change caused by the shaking of the object to be dried such as clothing is confirmed every certain time.

上記のように構成した除湿装置において、濡れた衣類等の被乾燥物を精度良く検知する方法について説明する。   A method for accurately detecting an object to be dried such as wet clothing in the dehumidifying apparatus configured as described above will be described.

一定時間経過毎に衣類等の被乾燥物の温度変化を検知するときに、ファン5の風量を最大にして衣類の揺れを大きくする。これにより、衣類等の被乾燥物の揺れが大きくなり衣類等の被乾燥物の温度変化を検知し易くし、衣類等の被乾燥物が乾燥していないのに乾燥したと判断するような誤検知を防止することが可能となる。   When a temperature change of an object to be dried such as clothing is detected every certain time, the airflow of the fan 5 is maximized to increase the shaking of the clothing. As a result, the shaking of the object to be dried such as clothing increases, making it easy to detect the temperature change of the object to be dried such as clothing, and an error such as judging that the object to be dried such as clothing is not dried but dried. Detection can be prevented.

また、一定時間経過毎に衣類等の被乾燥物の温度変化を検知するときに、ファン5の風量を徐々に大きくして、衣類等の被乾燥物の揺れを検知したら元の風量に戻すようにする。これにより、除湿装置の運転音が小さい状態で衣類等の被乾燥物の温度変化を検知し易くし、衣類等の被乾燥物が乾燥していないのに乾燥したと判断するような誤検知を防止することが可能となる。   In addition, when detecting a temperature change of an object to be dried such as clothing every predetermined time, the air volume of the fan 5 is gradually increased so that when the swing of the object to be dried such as clothing is detected, the original air volume is restored. To. This makes it easier to detect temperature changes in dry objects such as clothes when the operating sound of the dehumidifier is low, and false detections such as determining that the dry objects such as clothes are not dried but dried. It becomes possible to prevent.

ここでは、風量を徐々に大きくするようにしているが、元の風量で衣類等の被乾燥物の温度変化を検知できたのなら、風量を上げる必要はない。   Here, the air volume is gradually increased, but it is not necessary to increase the air volume if the change in temperature of the object to be dried such as clothes can be detected with the original air volume.

本発明にかかる除湿装置は、一般家電用の衣類などの乾燥制御に適用できる。   The dehumidifying apparatus according to the present invention can be applied to drying control of clothes for general household appliances.

1 本体
2 操作表示部
3 吸込口
4 吹出口
5 ファン
6 風向ルーバー
7 送風範囲ルーバー
8 貯水タンク
9 温度センサ
10 湿度センサ
11 赤外線センサ
12 集光レンズ
12a 各レンズ
12b 各レンズ
12c 各レンズ
12d 各レンズ
12e 各レンズ
13 赤外線受光部
14 制御装置
15 吸湿材
16 再生ヒーター
17 凝縮器
18 水位検知手段
19 負荷駆動回路
20 マイコン
DESCRIPTION OF SYMBOLS 1 Main body 2 Operation display part 3 Intake port 4 Outlet 5 Fan 6 Air direction louver 7 Blowing range louver 8 Water storage tank 9 Temperature sensor 10 Humidity sensor 11 Infrared sensor 12 Condensing lens 12a Each lens 12b Each lens 12c Each lens 12d Each lens 12e Each lens 13 Infrared light receiver 14 Control device 15 Hygroscopic material 16 Regenerative heater 17 Condenser 18 Water level detection means 19 Load drive circuit 20 Microcomputer

Claims (3)

体に設けた吹出口から前記本体の外部に吊るした衣類等被乾燥物に風を送風するファンと、
前記吹出口に設けて送風方向を水平方向に変化させる送風範囲ルーバーと、
特定の範囲の温度変化を検知する赤外線センサを備え、
被乾燥物の乾燥を行う除湿装置であって、
前記送風範囲ルーバーによって前記ファンからの風向を変化させて、前記被乾燥物を前記赤外線センサの検知範囲を超えるように揺らし、
前記赤外線センサは、前記被乾燥物の揺れによる温度変化を検知したときに被乾燥物が濡れていると判断することを特徴とする除湿装置。
A fan for blowing air to the clothes or the like material to be dried that hung on the outside of the body from the air outlet provided in the body,
An air blowing range louver provided at the air outlet to change the air blowing direction in the horizontal direction ;
It has an infrared sensor that detects temperature changes in a specific range,
A dehumidifying device for drying an object to be dried,
By changing the air direction from the fan by the air blowing range louver, the object to be dried is shaken to exceed the detection range of the infrared sensor,
The dehumidifier according to claim 1, wherein the infrared sensor determines that the object to be dried is wet when detecting a temperature change due to shaking of the object to be dried.
前記被乾燥物の揺れによる温度変化が無くなったときを前記被乾燥物が乾燥したと判断することを特徴とする請求項1記載の除湿装置。 The dehumidifier of claim 1, wherein said material to be dried when the temperature change has disappeared due to shaking of the material to be dried which is characterized in that it is determined that the drying. 一定時間毎に前記ファンの風量を徐々に上げて、赤外線センサで温度変化を検知した時点で元の風量に戻すことを特徴とする請求項1乃至のいずれかに記載の除湿装置。
Gradually increase the air volume of the fan at regular intervals, dehumidifiers according to any one of claims 1 to 2, characterized in that return to the original air volume at the time of detecting the temperature changes in the infrared sensor.
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