JPS6212205Y2 - - Google Patents

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Publication number
JPS6212205Y2
JPS6212205Y2 JP1982047522U JP4752282U JPS6212205Y2 JP S6212205 Y2 JPS6212205 Y2 JP S6212205Y2 JP 1982047522 U JP1982047522 U JP 1982047522U JP 4752282 U JP4752282 U JP 4752282U JP S6212205 Y2 JPS6212205 Y2 JP S6212205Y2
Authority
JP
Japan
Prior art keywords
louver
temperature
temperature distribution
air conditioner
room
Prior art date
Legal status (The legal status 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 status listed.)
Expired
Application number
JP1982047522U
Other languages
Japanese (ja)
Other versions
JPS58150717U (en
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 filed Critical
Priority to JP4752282U priority Critical patent/JPS58150717U/en
Publication of JPS58150717U publication Critical patent/JPS58150717U/en
Application granted granted Critical
Publication of JPS6212205Y2 publication Critical patent/JPS6212205Y2/ja
Granted legal-status Critical Current

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Description

【考案の詳細な説明】 〔考案の技術分野〕 この考案は吹出空気の風向が可変できるルーバ
を備えた空気調和機に関する。
[Detailed Description of the Invention] [Technical Field of the Invention] This invention relates to an air conditioner equipped with a louver that can change the direction of blown air.

〔考案の技術的背景とその問題点〕[Technical background of the invention and its problems]

吹出空気の風向が自動的に可変できる電動式ル
ーバを備えた空気調和機が知られている。この電
動式ルーバは、電動機によつてルーバを一定の回
動角で回動するように構成されており、室内温度
を均一に保つようになつている。一方、室内温度
を管理するために室温センサを設け、この室温セ
ンサによつて空気調和機の能力を制御している
が、この室温センサは空気吸込口に取付けられて
おり、空気調和機の据付場所全体の温度管理であ
り、人間のいる場所の温度管理ではない。すなわ
ち、室内温度を均一にすることは室内全体を均一
にすることになり、室内が広い場合には、人間が
いる場所に関係のない場所まで温度管理すること
になり、不経済である。
2. Description of the Related Art Air conditioners equipped with electric louvers that can automatically change the direction of blown air are known. This electric louver is configured to rotate the louver at a constant rotation angle using an electric motor, and is designed to maintain a uniform indoor temperature. On the other hand, a room temperature sensor is installed to manage the indoor temperature, and the performance of the air conditioner is controlled by this room temperature sensor. This refers to temperature control of the entire place, not the temperature control of the place where people are. In other words, making the room temperature uniform means making the entire room uniform, and if the room is large, the temperature will have to be controlled in areas that are unrelated to where people are, which is uneconomical.

〔考案の目的〕[Purpose of invention]

この考案は上記事情に着目してなされたもの
で、その目的とするところは、広い室内であつて
も室内全体を温度管理することなく、人間のいる
場所のみを追跡して温度管理することができる空
気調和機を提供しようとするものである。
This idea was created by focusing on the above circumstances, and its purpose is to track and control the temperature only in the area where people are present, without having to control the temperature of the entire room, even in a large room. The aim is to provide an air conditioner that can.

〔考案の概要〕[Summary of the idea]

この考案は電動機によつて駆動される風向可変
用のルーバを空気調和機に設けた赤外線温度セン
サの検出信号によつて制御し、室内にいる人間の
場所を赤外線温度センサが検出し、その温度を電
気信号に変換して電動機を駆動し、ルーバによつ
て風向を人間のいる場所に指向するようにしたこ
とを特徴とする。
In this device, a louver for variable wind direction driven by an electric motor is controlled by a detection signal from an infrared temperature sensor installed in an air conditioner.The infrared temperature sensor detects the location of a person in the room, and the temperature It is characterized by converting the signal into an electric signal to drive an electric motor, and using a louver to direct the direction of the wind toward the place where the person is.

〔考案の実施例〕[Example of idea]

以下、この考案を図面に示す一実施例にもとづ
いて説明する。第1図中1は空気調和機本体で、
これはたとえば室内の壁等に据付けられた室内ユ
ニツトによつて構成されている。この本体1の前
面パネル2には空気の吸込口3と吹出口4が設け
られている。そして、この吹出口4には多数のル
ーバ5……が縦方向に配設されていて、これらル
ーバ5……はピン5aを軸心として左右(横)方
向へ回動自在になつている。さらに、これらルー
バ5……は連結杵6によつて連結され、一体的に
左右方向へ回動するようになつており、この連結
杵6は第2図で示すように電動機7によつて左右
方向へ往復運動し、ルーバ5……に動力を伝達す
るようになつている。そして、上記1つのルーバ
5の先端部すなわち室内側に対面する一部には赤
外線温度センサ8が取付けられている。この赤外
線温度センサ8は被測定物体たとえば人間aから
の熱エネルギすなわち温度を検出するようになつ
ている。
This invention will be explained below based on an embodiment shown in the drawings. 1 in Figure 1 is the air conditioner main body,
This is constituted by, for example, an indoor unit installed on a wall or the like in the room. A front panel 2 of the main body 1 is provided with an air inlet 3 and an air outlet 4. A large number of louvers 5 are vertically arranged in the air outlet 4, and these louvers 5 are rotatable in the left and right (horizontal) directions about pins 5a. Furthermore, these louvers 5... are connected by a connecting punch 6 so that they can rotate in the left and right directions as a unit, and this connecting punch 6 is rotated left and right by an electric motor 7 as shown in FIG. It reciprocates in the direction and transmits power to the louvers 5... An infrared temperature sensor 8 is attached to the tip of the one louver 5, that is, the part facing the indoor side. This infrared temperature sensor 8 is adapted to detect thermal energy, that is, temperature, from an object to be measured, such as a person a.

この赤外線温度センサ8は第2図に示すよう
に、温度検出回路9を介して温度分布検出回路1
0に接続され、また、上記電動機7はルーバ方向
検出回路11を介して上記温度分布検出回路10
に接続されている。この温度分布検出回路10は
温度信号と方向信号が入力され、温度分布データ
を作成して電動機駆動回路12に入力するように
なつている。この電動機駆動回路12は温度分布
データにより上記電動機7を駆動し、ルーバ5…
…の方向を決定するようになつている。この場
合、ルーバ5……が一定方向で静止していると温
度分布が作れないのでタイマ13により一定時間
毎に温度分布検出回路10にクリヤし、上記電動
機駆動回路12を強制的に作動させ、ルーバ5…
…を最大角回動して温度分布データを取り込ませ
るようになつている。また、電動機駆動回路12
にはマニユアルスイツチ14が接続され、ルーバ
5……の回動を停止させたいときや強制的に作動
したいときはこのマニユアルスイツチ14によつ
て電動機駆動回路12を強制的に駆動させたり停
止させることができるようになつている。
As shown in FIG. 2, this infrared temperature sensor 8 is connected to the temperature distribution detection circuit 1 via a temperature detection circuit 9
0, and the electric motor 7 is connected to the temperature distribution detection circuit 10 via the louver direction detection circuit 11.
It is connected to the. The temperature distribution detection circuit 10 receives a temperature signal and a direction signal, creates temperature distribution data, and inputs the data to the motor drive circuit 12. The motor drive circuit 12 drives the motor 7 based on temperature distribution data, and the louver 5...
It is designed to determine the direction of... In this case, if the louver 5... is stationary in a certain direction, temperature distribution cannot be created, so the timer 13 clears the temperature distribution detection circuit 10 at fixed time intervals, and forcibly activates the motor drive circuit 12. Louva 5...
...is rotated to the maximum angle to capture temperature distribution data. In addition, the motor drive circuit 12
A manual switch 14 is connected to the louver 5, and when it is desired to stop or forcefully operate the louver 5..., the motor drive circuit 12 can be forcibly driven or stopped by the manual switch 14. It is becoming possible to do this.

しかして、空気調和機による冷房運転時におい
て、電動機駆動回路12からの出力信号によつて
電動機7が駆動すると、ルーバ5……は最大角で
回動して吹出口4から吹出される熱交換空気を室
内各方向へ案内する。このとき、ルーバ5に設け
られた赤外線温度センサ8はルーバ5と一体に室
内各方向へ指向するため、第3図で示すように室
内にいる人間aの場所を人間aから熱エネルギす
なわち温度を検出する。つまり、広い室内におい
ては人間aのいる場所といない場所では大きな温
度差があるためルーバ5とともに回動する赤外線
温度センサ8が人間aのいる場所に指向したとき
雰囲気と異なる温度を検出する。この温度信号は
温度検出回路9を介して温度分布検出回路10に
入力し、電動機7からの方向信号も温度分布検出
回路10に入力し、温度分布データを作成して電
動機駆動回路12に入力する。したがつて、電動
機駆動回路12は温度分布データによつて電動機
7を制御し、ルーバ5の方向を異常に高い温度を
検出した人間aのいる場所に設定し、冷風を人間
aのいる場所のみに集中させる。
Thus, when the air conditioner is in cooling operation, when the motor 7 is driven by the output signal from the motor drive circuit 12, the louvers 5 rotate at the maximum angle to guide the heat exchange air blown out from the air outlet 4 in all directions in the room. At this time, the infrared temperature sensor 8 provided on the louvers 5 is directed in all directions in the room together with the louvers 5, and detects the thermal energy, i.e., temperature, of the location of person a in the room from the person a, as shown in Fig. 3. In other words, since there is a large temperature difference between the location where person a is and the location where he is not in a large room, when the infrared temperature sensor 8 rotating with the louvers 5 is directed to the location where person a is, it detects a temperature different from the atmosphere. This temperature signal is input to the temperature distribution detection circuit 10 via the temperature detection circuit 9, and the direction signal from the motor 7 is also input to the temperature distribution detection circuit 10, which creates temperature distribution data and inputs it to the motor drive circuit 12. Therefore, the motor drive circuit 12 controls the motor 7 based on the temperature distribution data, sets the direction of the louvers 5 to the location of the person a where an abnormally high temperature is detected, and concentrates cool air only on the location of the person a.

また、室内にいる人間aは1ケ所に限らず移動
することが考えられるため、タイマ13によつて
一定時間毎に温度分布検出回路10にクリヤし、
電動機駆動回路12を強制的に作動させ、ルーバ
5……を最大角回動して温度分布データを作成す
る。したがつて、室内にいる人間aの場所を追跡
してその場所にルーバ5……を指向して冷風を集
中させることができる。
In addition, since it is conceivable that the person a in the room moves not only to one place, the timer 13 clears the temperature distribution detection circuit 10 at regular intervals.
The motor drive circuit 12 is forcibly activated, and the louvers 5 are rotated to the maximum angle to create temperature distribution data. Therefore, it is possible to track the location of the person a in the room and direct the louver 5 to that location to concentrate the cold air.

〔考案の効果〕[Effect of idea]

この考案は以上説明したように、赤外線温度セ
ンサによつて室内にいる人間の場所を検出し、そ
の検出信号によつてルーバを人間のいる場所に設
定できるようにしたから、室内の余分な場所まで
温度管理する必要がなく、必要な部分のみを集中
して冷房でき、省エネルギ対策に特に有効であ
る。さらに、上記ルーバを最大角回動して温度分
布データを取込む温度分布検出回路を設けたか
ら、室内にいる人間の場所を追跡してその場所に
ルーバを指向して冷風を集中できるという効果が
ある。
As explained above, this idea uses an infrared temperature sensor to detect the location of a person in the room, and uses the detection signal to set the louver at the location where the person is. There is no need to control the temperature up to the point, and cooling can be concentrated only in the areas that are needed, making it particularly effective as an energy-saving measure. Furthermore, since we have installed a temperature distribution detection circuit that rotates the louver to the maximum angle to acquire temperature distribution data, it has the effect of tracking the location of people in the room and directing the louver to that location to concentrate the cold air. be.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図はこの考案の一実施例を示す空気調和機
の斜視図、第2図は同じく電気回路のブロツク
図、第3図は同じく作用説明図である。 4……吹出口、5……ルーバ、7……電動機、
8……赤外線温度センサ。
FIG. 1 is a perspective view of an air conditioner showing an embodiment of this invention, FIG. 2 is a block diagram of the electric circuit, and FIG. 3 is an explanatory diagram of the operation. 4... Air outlet, 5... Louver, 7... Electric motor,
8...Infrared temperature sensor.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 熱交換空気の吹出口に電動機によつて駆動され
るルーバを設け、吹出空気の風向が可変できる空
気調和機において、前記ルーバの風吹出方向側に
赤外線温度センサを設け、この赤外線温度センサ
の検出信号に応じて前記電動機を制御し、前記ル
ーバの方向を設定する電動機駆動回路と、前記ル
ーバを最大角回動して室内の温度分布データを取
込む温度分布検出回路とを具備したことを特徴と
する空気調和機。
In an air conditioner in which a louver driven by an electric motor is provided at a heat exchange air outlet and the direction of the blown air can be varied, an infrared temperature sensor is provided on the wind outlet side of the louver, and the infrared temperature sensor detects the air conditioner. A motor drive circuit that controls the electric motor according to a signal and sets the direction of the louver, and a temperature distribution detection circuit that rotates the louver by a maximum angle and acquires indoor temperature distribution data. air conditioner.
JP4752282U 1982-04-01 1982-04-01 air conditioner Granted JPS58150717U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4752282U JPS58150717U (en) 1982-04-01 1982-04-01 air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4752282U JPS58150717U (en) 1982-04-01 1982-04-01 air conditioner

Publications (2)

Publication Number Publication Date
JPS58150717U JPS58150717U (en) 1983-10-08
JPS6212205Y2 true JPS6212205Y2 (en) 1987-03-27

Family

ID=30058479

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4752282U Granted JPS58150717U (en) 1982-04-01 1982-04-01 air conditioner

Country Status (1)

Country Link
JP (1) JPS58150717U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08271645A (en) * 1995-03-31 1996-10-18 Mitsubishi Electric Corp Human-body detection apparatus

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2177500B (en) * 1985-02-25 1989-06-21 Toshiba Kk Air conditioning apparatus
JPH0788957B2 (en) * 1985-02-25 1995-09-27 株式会社東芝 Air conditioner
JPH01147243A (en) * 1987-12-02 1989-06-08 Sharp Corp Airconditioner
JPH0663661B2 (en) * 1988-09-14 1994-08-22 シャープ株式会社 Air conditioner
WO1990005879A1 (en) * 1988-11-18 1990-05-31 Daikin Industries, Ltd. Spot air conditioner
JP2693328B2 (en) * 1991-10-04 1997-12-24 株式会社日立製作所 air conditioner

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5595054A (en) * 1979-01-10 1980-07-18 Mitsubishi Electric Corp Air condition control device
JPS563344B2 (en) * 1971-12-29 1981-01-24

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS563344U (en) * 1979-06-22 1981-01-13

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS563344B2 (en) * 1971-12-29 1981-01-24
JPS5595054A (en) * 1979-01-10 1980-07-18 Mitsubishi Electric Corp Air condition control device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08271645A (en) * 1995-03-31 1996-10-18 Mitsubishi Electric Corp Human-body detection apparatus

Also Published As

Publication number Publication date
JPS58150717U (en) 1983-10-08

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