JPS58117427A - Structure of sensor attaching part - Google Patents

Structure of sensor attaching part

Info

Publication number
JPS58117427A
JPS58117427A JP21386681A JP21386681A JPS58117427A JP S58117427 A JPS58117427 A JP S58117427A JP 21386681 A JP21386681 A JP 21386681A JP 21386681 A JP21386681 A JP 21386681A JP S58117427 A JPS58117427 A JP S58117427A
Authority
JP
Japan
Prior art keywords
sensor
hole
holding member
temperature sensor
case
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.)
Granted
Application number
JP21386681A
Other languages
Japanese (ja)
Other versions
JPH0320699B2 (en
Inventor
Takeshi Sasaki
健 佐々木
Hideyuki Shoji
庄司 秀行
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.)
Casio Computer Co Ltd
Original Assignee
Casio Computer Co Ltd
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 Casio Computer Co Ltd filed Critical Casio Computer Co Ltd
Priority to JP21386681A priority Critical patent/JPS58117427A/en
Publication of JPS58117427A publication Critical patent/JPS58117427A/en
Publication of JPH0320699B2 publication Critical patent/JPH0320699B2/ja
Granted legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/14Supports; Fastening devices; Arrangements for mounting thermometers in particular locations
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K7/00Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements
    • G01K7/16Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements using resistive elements
    • G01K7/22Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements using resistive elements the element being a non-linear resistance, e.g. thermistor

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Measuring Temperature Or Quantity Of Heat (AREA)

Abstract

PURPOSE:To obtain excellent response, shock resistance, and aterproofing property as a sensor, by sealing the sensor into a sensor enclosing hole of a sensor holding member which is attached to a through hole in an equipment case by a filler with packings, thereby mounting the sensor to the equipment case. CONSTITUTION:The temperature sensor 6 is inserted into the enclosing hole 8 of the holding member 7, with lead wires 6c as leading parts. The lower end parts of the lead wires 6c are guided to the lower surface side of a pattern electrode 10 which is formed on the lower surface of the holding member 7 through a samll hole 8a of the enclosing hole 8. The protruded lead wires 6c are fixed to the pattern electrode 10 by a conductive bonding agent 11. Then the enclosing hole 8 is filled up with glass powder in a heaped up shape. Then the glass powder is melted through a furnace, and thereafter it is cooled and solidified. Thus the filler 9 is formed in the enclosing hole 8. Thereafter, the holding member is coupled into the through hole 13 in the equipment case 12, and watch module 17, to which a coil spring 16 is mounted, is incorporated into the case equipment 12.

Description

【発明の詳細な説明】 この発明は、温度センサなどのセンサを機器ケースに取
付ける取付部構造に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a mounting structure for mounting a sensor such as a temperature sensor to an equipment case.

最近、電子腕時計の多機能化が進み、温度センサで検出
された温度をデジタル値に変換して表示する温度測定装
置付き電子腕時計が考えられているh この種の腕時計のケースに温度センサを取付ける場合、
その取付部構造としては、外気温度に対する感度が良く
、防水性に優れ、かつ温度センサが衝撃により動かない
ように確実に保持することが必要とされるが、従来のも
のは、これらの点において、充分なものではなかったり この発明は、上述した事情に鑑みてなされた鴨ので、そ
の目的とするところは、簡単な構成で、センサとして応
答性が良く、防水性、衝撃性に優れたセンサめ取付S構
造を提供することにある。
Recently, electronic wristwatches have become more multi-functional, and electronic wristwatches with a temperature measurement device that converts the temperature detected by a temperature sensor into a digital value and displays it are being considered.H A temperature sensor is attached to the case of this type of wristwatch. case,
The mounting structure needs to be sensitive to outside temperature, have excellent waterproof properties, and securely hold the temperature sensor so that it does not move due to impact, but conventional devices lack these points. This invention was made in view of the above-mentioned circumstances, and its purpose is to provide a sensor with a simple configuration, good responsiveness, and excellent waterproof and impact resistance. The object of the present invention is to provide a mounting S structure.

以下、この発明を図面に示す実施例に基づいて具体的に
説明する。本実施例は、温度測定装電付き電子腕時計に
適用した場合を示している。第1図において、符号1は
、電子腕時計の前面部に設けられた表示装置を示し、こ
の表示装置1は液晶表示装置などの電気光学的表示装置
によって構成され、その表示面の下段部には、時、分、
秒の時刻情報、たとえば、「lo時or分3j秒」が表
示されている表示体2、倉た、中段部には、曜日f/I
報、たとえば、「水曜日(Wll)) 、J カ1ly
i<すれている表示体3および月、日の日付情報、たと
えば、「/コ月、2j日」が表示されている表示体4、
更に、上段部には、温度上ン−?6で検出された温度を
アナ誼グ的に表示する表示体5が夫々配設されている。
Hereinafter, this invention will be specifically described based on embodiments shown in the drawings. This embodiment shows a case where the present invention is applied to an electronic wristwatch equipped with a temperature measuring device. In FIG. 1, reference numeral 1 indicates a display device provided on the front side of the electronic wristwatch. , hours, minutes,
The display 2, which displays time information in seconds, such as "lo hour or minute 3j seconds", the day of the week f/I
For example, "Wednesday (Wll)),"
i< display body 3 and display body 4 displaying date information of the month and day, for example, "/ month, 2j day";
Furthermore, the upper part has temperature riser? A display body 5 is provided for displaying the temperature detected in 6 in an analogical manner.

なお、表示体5は、70個の表示素子を直線的に配列し
てなり、各表示素子の上方部には、対応する温度目盛「
o、 j、io、、。
The display body 5 is made up of 70 display elements arranged linearly, and the upper part of each display element has a corresponding temperature scale "
o, j, io,.

33、ll0Jが印刷等の手段で固定表示されている。33, ll0J is fixedly displayed by printing or other means.

温度センサ6の取付構造は、第2図乃至第4図に示す如
く構成されている。すなわち、略筒状に形成されたセン
サ保持部材7は、七う之ツク、あるいは合成樹脂などに
よって構成され、その開口部をセンサ収納孔8とする構
成となっているこの収納孔8の略中央部分には、温度セ
ンサ6が収納されている。そして、温度センサ6は、収
納孔8内にガラス粉を充填し、これを溶解凝固してなる
充填材9で保持されている。温度センサ6は、サーミス
タ素子6&が球吠のガラス体6b内に収容検層されてい
ると共に、サーミスタ素子6aの一対のリード4I60
がガラス体613から引き出されたllI&成となって
いる。そして、一対のリード!I60は、収納孔8の下
端部に形成された一対の小孔8&から保持部材7の下面
側に導出されている。
The mounting structure of the temperature sensor 6 is constructed as shown in FIGS. 2 to 4. That is, the sensor holding member 7 formed into a substantially cylindrical shape is made of cylindrical material or synthetic resin, and its opening is the sensor storage hole 8. A temperature sensor 6 is housed in the part. The temperature sensor 6 is held by a filler 9 made by filling the storage hole 8 with glass powder and melting and solidifying the glass powder. The temperature sensor 6 has a thermistor element 6& housed in a glass body 6b, and a pair of leads 4I60 of the thermistor element 6a.
is drawn out from the glass body 613 and becomes llI&. And a pair of leads! I60 is led out to the lower surface side of the holding member 7 from a pair of small holes 8& formed at the lower end of the storage hole 8.

保持部材7や下面には、所定形状、すなわち、小孔8&
に対応する孔が形成され、これら各孔に対応して2分割
されたパターン電極10がyf!j成5されている。こ
のパターン電極10には、パターン電極lOの下面側ま
で導出されたり−ドs60が導電性接着剤11によって
固着されている。
The holding member 7 and the lower surface have a predetermined shape, that is, small holes 8 &
Holes corresponding to yf! are formed, and the pattern electrode 10 is divided into two parts corresponding to each of these holes. It has been completed. A wire s60 is fixed to the pattern electrode 10 with a conductive adhesive 11, which extends to the lower surface of the pattern electrode 1O.

このようにして温度七ン+6を収容保護した保持部材7
は、機器ケース(時計ケース)12の前面部において、
その外部から内部に貫通する貫通孔13内に、wI数の
パツキン14を介して挿通し、機器ケース12に嵌着さ
れている。そして、保持部材7と機器ケース7内に配設
された回路基板15との間には、一対の導電性コイルス
プリング16が介装され、パターン電極10と回路基板
15とを電気的に接続している。なお、17は、回路基
板15上に配設された時計モジエールな示し、このモジ
ュールには、コイルスプリング16を介装するため挿通
孔が形成されている。
The holding member 7 that accommodates and protects the temperature 7+6 in this way
In the front part of the device case (watch case) 12,
It is inserted into the through hole 13 that penetrates from the outside to the inside through the wI number of gaskets 14, and is fitted into the device case 12. A pair of conductive coil springs 16 are interposed between the holding member 7 and the circuit board 15 disposed in the equipment case 7, and electrically connect the pattern electrode 10 and the circuit board 15. ing. Note that 17 indicates a watch module disposed on the circuit board 15, and this module has an insertion hole formed therein for inserting the coil spring 16 therein.

次に、温度センサ6の取付作業について順次説明する。Next, the installation work of the temperature sensor 6 will be sequentially explained.

まず、保持部材7の収納孔8内に温度センサ6をそのリ
ード@60から挿入する。そして、リード−60の下端
部を収納孔8の小孔8aを通して保持部材7の下面に形
成したパターン電極lOの下面側まで導出し、そして、
導出したリード珈60をパターン電極11に導電性接着
剤11で固着する。この場合、サーミスタ素子61は、
収納孔8&の略中央部分に立設した状態で収納されるよ
うになる。
First, the temperature sensor 6 is inserted into the storage hole 8 of the holding member 7 from its lead @60. Then, the lower end of the lead 60 is led out through the small hole 8a of the storage hole 8 to the lower surface side of the pattern electrode IO formed on the lower surface of the holding member 7, and
The lead wire 60 thus drawn out is fixed to the pattern electrode 11 with a conductive adhesive 11. In this case, the thermistor element 61 is
It comes to be stored in an upright state approximately at the center of the storage hole 8&.

このようにして温度センサ6を収納孔8内に収納固定し
た吠鯵で、収納孔8内にガラス粉を山盛りの状態で充填
する。そして、炉を通して前記ガラス粉を溶解したのち
、冷却凝固することにより、収納孔8内には、充填材9
が形成される。この結釆、温度センサ6は収納孔8内に
強固に保持される。その後、保持部材フを機器ケース1
2の貫通孔13内にパツキン14を介して嵌着し、コイ
ルスプリング16を装着した時計モジュール17を機器
ケース12内に組み込むと、サーミスタ素子6aは、リ
ード@@O,導電性接着剤xx、xp−ン電1110、
コイルスプリング16を夫々介して固定基板15に対し
て電気的に!S’続くれると共に、保持部材7ないしは
温度センサ6は弾性的に保持される。
With the temperature sensor 6 stored and fixed in the storage hole 8 in this way, the storage hole 8 is filled with glass powder in a heaping state. After melting the glass powder through a furnace, the glass powder is cooled and solidified, so that a filling material 9 is formed in the storage hole 8.
is formed. With this fastening, the temperature sensor 6 is firmly held within the storage hole 8. After that, attach the holding member to the equipment case 1.
When the watch module 17 fitted into the through hole 13 of No. 2 through the packing 14 and equipped with the coil spring 16 is assembled into the device case 12, the thermistor element 6a is attached to the lead @@O, the conductive adhesive xx, xp-nden 1110,
Electrically to the fixed board 15 via the coil springs 16! As S' continues, the holding member 7 or the temperature sensor 6 is held elastically.

而して、上述のように構成されたセンサ取付構造によれ
ば、温度センサ6は、機器ケース12の外部側に指向す
るように機器ケース12に装着されているので、外気温
度に対する応答性を着しく高めることができる。また、
温度センサ6は、保持部材7の収納孔8内に充填材9で
包み込まれて保持されているので、耐衝撃性に優れてい
ると共に、防水性にも優れたものとなる。更に、温度セ
ンサ6を取付ける場合、温度センサ6を保持部材7の収
納孔8内に充填材9を介して収納したのち、保持部材7
を機器ケース120貫通孔13内に嵌着するだけでよい
ので、その取付作業は極めて容易であると共に、取付作
業時において、温度センサ6を破損するなどの事故を防
止することができる。しかも、温度センナ6のリード$
60は、保持部材7の外部に導出し、パターン電極10
に対して導電性接着剤11で固着′しているので、パタ
ーンm1iiloと[1!l路基板15との間にコイル
スプリング16を介装するだけで、温度センサ6と回路
基板15とが電気的に接続されるため、その接続作業が
極めて容易となる〇 次に、この発明の他の実施側を第5図および第6図を参
照して説明する。なお、第5図および第6図において、
第2図に示すものと同一構成のものは、同一符号をもっ
て示し、その説明を省略する。センサ保持部材21は、
有頭の筒体によって形成され、その開口部をセンサ収納
孔22とする構成となっている。このセンサ収納孔22
内に収納された温度センサ6は、収納孔22内に粘性樹
肥材(接着材)を充填し、これを凝固してなる充填材2
3で保持されている。また、保持部材21の下端部には
、電極基板24が装着されている。
According to the sensor mounting structure configured as described above, the temperature sensor 6 is attached to the equipment case 12 so as to be oriented toward the outside of the equipment case 12, so that the responsiveness to the outside temperature can be improved. You can improve your appearance. Also,
Since the temperature sensor 6 is held in the storage hole 8 of the holding member 7 while being surrounded by the filler 9, it has excellent impact resistance and is also excellent in waterproofness. Furthermore, when installing the temperature sensor 6, the temperature sensor 6 is stored in the storage hole 8 of the holding member 7 via the filler 9, and then the holding member 7 is
Since it is only necessary to fit the temperature sensor 6 into the through hole 13 of the device case 120, the installation work is extremely easy, and accidents such as damage to the temperature sensor 6 can be prevented during the installation work. Moreover, temperature sensor 6 lead $
60 is led out to the outside of the holding member 7, and the pattern electrode 10
Since it is fixed with conductive adhesive 11 to pattern m1iilo and [1! Since the temperature sensor 6 and the circuit board 15 are electrically connected by simply interposing the coil spring 16 between the circuit board 15 and the circuit board 15, the connection work is extremely easy. Another implementation will be described with reference to FIGS. 5 and 6. In addition, in FIGS. 5 and 6,
Components having the same configuration as those shown in FIG. 2 are designated by the same reference numerals, and their explanations will be omitted. The sensor holding member 21 is
It is formed of a cylindrical body with a head, and its opening is configured as a sensor storage hole 22. This sensor storage hole 22
The temperature sensor 6 housed inside the storage hole 22 is filled with a viscous tree fertilizer material (adhesive material) and the filling material 2 is made by solidifying this material.
It is held at 3. Furthermore, an electrode substrate 24 is attached to the lower end portion of the holding member 21 .

この極板24には、センサ収納孔22と連通する一対の
小孔25が形成されている。そして、温度センサ6の一
対のリード@60は、電極基板24の小孔25を通して
電極基板24の下面側に導出されている。電極基板24
の下面には、パターン電極10が形成され、このパター
ン電極10には、一対のり−ド1s60が導電性接着剤
11によτて固着されている。
A pair of small holes 25 are formed in this electrode plate 24 and communicate with the sensor housing hole 22 . A pair of leads @60 of the temperature sensor 6 are led out to the lower surface side of the electrode substrate 24 through the small holes 25 of the electrode substrate 24. Electrode substrate 24
A pattern electrode 10 is formed on the lower surface of the holder, and a pair of glue 1s60 is fixed to the pattern electrode 10 with a conductive adhesive 11.

而して、温度センサ6を保持部材21内に収納固定する
場合には、先ず、濁度センサ6のリード@60を電極基
板24の小孔25を通して電極基板24の下面側に導出
し、パターン1!1110に導電性接着剤11で固着す
ると、第6図に示す如く、温度センサ6はt極基ll1
24上に立設した状態で固定される。次いで、保持部材
21の収納孔22内に充填材23を形成する粘性樹脂材
を充填し、この粘性樹脂材が充填された収納孔22内に
、温度センサ6を挿入すると共に、電極基板24と保持
部材21とを適宜の手段で固定すると、第1図に示す如
くとなる。そして、収納孔22内の粘性樹脂材を凝固さ
せると、温度センサ6は保持部材7の収納孔22内に強
固に保持される。而して、温度センサ6を保持した保持
部材21は、上述の実施例と同様にして機器ケース内に
取り付けられる。
When storing and fixing the temperature sensor 6 in the holding member 21, first, lead @60 of the turbidity sensor 6 is led out to the lower surface side of the electrode substrate 24 through the small hole 25 of the electrode substrate 24, and the pattern is 1!1110 with conductive adhesive 11, the temperature sensor 6 is attached to the t pole base ll1 as shown in FIG.
It is fixed in an upright position on 24. Next, the accommodation hole 22 of the holding member 21 is filled with a viscous resin material forming the filler 23, and the temperature sensor 6 is inserted into the accommodation hole 22 filled with the viscous resin material, and the electrode substrate 24 and When the holding member 21 is fixed by appropriate means, the result will be as shown in FIG. When the viscous resin material in the storage hole 22 is solidified, the temperature sensor 6 is firmly held in the storage hole 22 of the holding member 7. Thus, the holding member 21 holding the temperature sensor 6 is installed inside the equipment case in the same manner as in the above embodiment.

このように構成されたセンサ取付部構造によっても上述
の実施例と同様の効果を奏する。
The sensor attachment structure configured in this manner also provides the same effects as the above-described embodiments.

なお、この発明は、上記各実計例に限宇されず、この発
明を逸脱しない範囲内において、種々変形応用口f能で
あり、たとえは、上記実施例は温度センサに適用した場
合であるが、温度センサ以外のセンサであってもよく、
また、充填材としてはガラス粉、粘性碓脂材以外のもの
であってもよい。
Note that the present invention is not limited to the above-mentioned actual examples, but may be modified and applied in various ways without departing from the scope of the present invention.For example, the above embodiments may be applied to a temperature sensor. may be a sensor other than a temperature sensor,
Further, the filler may be other than glass powder and viscous resin material.

この発明は、以上詳細に説明したように、機器ケースの
に通孔にパツキンを介して取り付9ら酸センサ保持部材
のセンサ収納孔にセンサを充填材で封着したものである
から、機器ケースにセンナを装着することができ、セン
サとしての応答性が良くなり、かつ、耐衝撃性、防水性
に、も優れ、しかも取付が容易となる等、実用上、優れ
た効果を有する。
As described in detail above, the present invention is such that the sensor is attached to the through hole of the equipment case via the gasket, and the sensor is sealed in the sensor housing hole of the acid sensor holding member with a filling material. It has excellent practical effects, such as being able to attach the senna to the case, improving responsiveness as a sensor, having excellent shock resistance and waterproofing, and being easy to install.

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

図面は、この発明の実施例を示し、第1図はこの発明を
適用した温度測定装置付き重子腕時計の■1面部全示し
た図、第2図は、センサを保持部材内に収納した状態の
断面図、第3図は保持部材の下面拡大図、第4図は保持
部材を機器ケースに取り付けた状態を示した図、第5図
、第6図はこの発明の他の実施例を示し、第5図は第2
図と同様の断面図、第6図はセンサを保持部材内に収納
する前の状態を示した図である。 661.温度センサ、7.21.、、保持部材、8.2
2.、、センサ収納孔、9.23.、、充填材、12.
、、機器ケース、13.、、菖通孔。 特許出願人 カシオ計算機株式会社 第5図 第6図
The drawings show an embodiment of the present invention, and Fig. 1 shows the entire first side of a Shigeko wristwatch with a temperature measuring device to which the invention is applied, and Fig. 2 shows a state in which the sensor is housed in the holding member. A sectional view, FIG. 3 is an enlarged bottom view of the holding member, FIG. 4 is a view showing the holding member attached to the equipment case, and FIGS. 5 and 6 show other embodiments of the present invention. Figure 5 is the second
FIG. 6, which is a sectional view similar to the one shown in the figure, shows a state before the sensor is housed in the holding member. 661. Temperature sensor, 7.21. ,,holding member, 8.2
2. ,,Sensor storage hole,9.23. ,, filler, 12.
,,equipment case,13. ,, irises hole. Patent applicant Casio Computer Co., Ltd. Figure 5 Figure 6

Claims (1)

【特許請求の範囲】[Claims] 機器ケースに設けられた貫通孔と、この貫通孔にパツキ
ンを介して取り付けられかつセンサ収納孔を有するセン
サ保持部材と、この保持部材の前
A through hole provided in the equipment case, a sensor holding member attached to the through hole via a packing and having a sensor storage hole, and a sensor holding member in front of the holding member.
JP21386681A 1981-12-30 1981-12-30 Structure of sensor attaching part Granted JPS58117427A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP21386681A JPS58117427A (en) 1981-12-30 1981-12-30 Structure of sensor attaching part

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP21386681A JPS58117427A (en) 1981-12-30 1981-12-30 Structure of sensor attaching part

Publications (2)

Publication Number Publication Date
JPS58117427A true JPS58117427A (en) 1983-07-13
JPH0320699B2 JPH0320699B2 (en) 1991-03-20

Family

ID=16646309

Family Applications (1)

Application Number Title Priority Date Filing Date
JP21386681A Granted JPS58117427A (en) 1981-12-30 1981-12-30 Structure of sensor attaching part

Country Status (1)

Country Link
JP (1) JPS58117427A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58120984U (en) * 1982-02-09 1983-08-17 シチズン時計株式会社 Fixed structure of sensor cover
US5568587A (en) * 1994-07-15 1996-10-22 Askoll S.P.A. Electronic immersion aquarium heater with spring biased NTC sensor
US5582508A (en) * 1995-05-10 1996-12-10 Chou; Fu-Hsiung Auto-control device for lift pumps

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5065483U (en) * 1973-10-05 1975-06-12
JPS5125762U (en) * 1974-08-12 1976-02-25
JPS5320072U (en) * 1976-07-29 1978-02-20
JPS55164583U (en) * 1979-05-14 1980-11-26

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5133140A (en) * 1974-09-13 1976-03-22 Bridgestone Tire Co Ltd FUHOWAKOBUNSHIKAGOBUTSU NO KAKYOHOHO

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5065483U (en) * 1973-10-05 1975-06-12
JPS5125762U (en) * 1974-08-12 1976-02-25
JPS5320072U (en) * 1976-07-29 1978-02-20
JPS55164583U (en) * 1979-05-14 1980-11-26

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58120984U (en) * 1982-02-09 1983-08-17 シチズン時計株式会社 Fixed structure of sensor cover
JPS6344780Y2 (en) * 1982-02-09 1988-11-21
US5568587A (en) * 1994-07-15 1996-10-22 Askoll S.P.A. Electronic immersion aquarium heater with spring biased NTC sensor
US5582508A (en) * 1995-05-10 1996-12-10 Chou; Fu-Hsiung Auto-control device for lift pumps

Also Published As

Publication number Publication date
JPH0320699B2 (en) 1991-03-20

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