JP2010057398A - Culture apparatus - Google Patents

Culture apparatus Download PDF

Info

Publication number
JP2010057398A
JP2010057398A JP2008225410A JP2008225410A JP2010057398A JP 2010057398 A JP2010057398 A JP 2010057398A JP 2008225410 A JP2008225410 A JP 2008225410A JP 2008225410 A JP2008225410 A JP 2008225410A JP 2010057398 A JP2010057398 A JP 2010057398A
Authority
JP
Japan
Prior art keywords
plate
bottom plate
heat radiating
heat
culture
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
JP2008225410A
Other languages
Japanese (ja)
Other versions
JP5341438B2 (en
Inventor
Hiroki Busujima
弘樹 毒島
Kuniyoshi Kobayashi
邦義 小林
Kenichi Ito
健一 伊藤
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.)
Sanyo Electric Co Ltd
Original Assignee
Sanyo Electric 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 Sanyo Electric Co Ltd filed Critical Sanyo Electric Co Ltd
Priority to JP2008225410A priority Critical patent/JP5341438B2/en
Priority to EP09805893.6A priority patent/EP2319911B1/en
Priority to PCT/JP2009/064525 priority patent/WO2010024163A1/en
Priority to US12/703,532 priority patent/US8227239B2/en
Publication of JP2010057398A publication Critical patent/JP2010057398A/en
Application granted granted Critical
Publication of JP5341438B2 publication Critical patent/JP5341438B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M37/00Means for sterilizing, maintaining sterile conditions or avoiding chemical or biological contamination
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M37/00Means for sterilizing, maintaining sterile conditions or avoiding chemical or biological contamination
    • C12M37/06Means for testing the completeness of the sterilization
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M41/00Means for regulation, monitoring, measurement or control, e.g. flow regulation
    • C12M41/12Means for regulation, monitoring, measurement or control, e.g. flow regulation of temperature
    • C12M41/14Incubators; Climatic chambers

Abstract

<P>PROBLEM TO BE SOLVED: To provide a culture apparatus maintaining the inside of a culture chamber at a predetermined humidity while inhibiting dew condensation at a place which has the possibility of affecting a cultured product. <P>SOLUTION: The culture apparatus 1 comprises: a thermal insulation casing having a metallic inner box 4 forming a culture chamber 4b mounted with a water-reserving tray 7 for humidifying the inside of the chamber, a metallic outer box 2 covering the inner box 4, a first heater 22 disposed on the outer side of the inner box and heating the inside of the chamber, a first thermal insulation material 21 disposed on the inner side of the outer box, and an opening for the culture chamber; a thermal insulation door having an inner plate, an outer plate, a second heater disposed on the inner side of the inner plate, and a second thermal insulation material disposed on the inner side of the outer plate; and a metallic heat-radiating member 100 joined to the bottom plates of the inner and outer boxes in between them, and transmitting heat at a specific portion of the bottom plate of the inner box corresponding to the relevant portion of the culture chamber, to the bottom plate of the outer box so that the temperature at a specific portion of the bottom surface of the culture chamber is lower than those at the other portions when the opening is closed. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は培養装置に関する。   The present invention relates to a culture apparatus.

細胞や微生物等の培養物を培養室内で培養する培養装置がある。この培養装置は、貯水トレイが載置される培養室内を加熱するためのヒータを備えており、例えば、このヒータを制御して培養室内を所定温度に維持するとともに、同室内をこの所定温度に応じた所定湿度に維持するようになっている。但し、一般に培養室内の湿度は飽和水蒸気密度に近いため、温度が多少変動した場合でも、同室内の水蒸気が飽和状態から過飽和状態に移行する現象が起こる虞がある。   There is a culture apparatus for culturing a culture such as cells and microorganisms in a culture chamber. The culture apparatus includes a heater for heating the culture chamber in which the water storage tray is placed. For example, the culture chamber is controlled to maintain the culture chamber at a predetermined temperature, and the chamber is maintained at the predetermined temperature. It is designed to maintain a predetermined humidity. However, since the humidity in the culture chamber is generally close to the saturated water vapor density, even if the temperature fluctuates slightly, there is a risk that the water vapor in the same chamber may shift from a saturated state to a supersaturated state.

これに対し、例えば、貯水トレイの水を加熱するためのヒータと、この貯水トレイ以外の培養室内を加熱するためのヒータとを備え、これら2種類のヒータを個別に制御して貯水トレイの水の温度を培養室内の温度よりも低めに維持することによって、培養室内の過飽和分の水を貯水トレイに戻して、結露を抑制する培養装置が開示されている(例えば、特許文献1参照)。この培養装置は、貯水トレイの水の温度を検出するための温度センサと、培養室内の温度を検出するための温度センサとを更に備えており、これら2つの温度センサの検出結果に基づいて、2種類のヒータをそれぞれ個別に制御するようになっている。
特開平5−227942号公報
In contrast, for example, a heater for heating the water in the water storage tray and a heater for heating the culture chamber other than the water storage tray are provided, and the water in the water storage tray is controlled by individually controlling these two types of heaters. Is maintained at a temperature lower than the temperature in the culture chamber, thereby returning the supersaturated water in the culture chamber to the water storage tray to suppress dew condensation (see, for example, Patent Document 1). The culture apparatus further includes a temperature sensor for detecting the temperature of the water in the water storage tray and a temperature sensor for detecting the temperature in the culture chamber. Based on the detection results of these two temperature sensors, Two types of heaters are individually controlled.
Japanese Patent Laid-Open No. 5-227742

ところで、一般にヒータの作用は冷却ではなく加熱のみであるため、前述した特許文献1に開示された培養装置のように、貯水トレイの水の温度と培養室内の温度とをヒータのみの制御によって所定の関係に維持するためには、例えば各温度センサに対し相応の検出精度が要求される。ここで、2つの温度の所定の関係とは、培養室における培養物に影響を及ぼす虞のある場所での結露を抑制しつつ同室内を飽和水蒸気密度に近い湿度に維持できる程度に、貯水トレイの水の温度が、培養室内の温度よりも低い、という関係である。しかし、これを実現するためには、培養装置は例えば検出精度の高い温度センサ等が必要なため、製造コストが嵩むという問題がある。   By the way, since the action of the heater is not only cooling but heating only, the temperature of the water in the water storage tray and the temperature in the culture chamber are determined by controlling only the heater as in the culture apparatus disclosed in Patent Document 1 described above. In order to maintain this relationship, for example, a corresponding detection accuracy is required for each temperature sensor. Here, the predetermined relationship between the two temperatures means that the water storage tray can be kept at a humidity close to the saturated water vapor density while suppressing condensation in a place that may affect the culture in the culture room. The temperature of the water is lower than the temperature in the culture chamber. However, in order to realize this, the culture apparatus requires a temperature sensor with high detection accuracy, for example, and thus there is a problem that the manufacturing cost increases.

一方、貯水トレイの水の温度と培養室内の温度とを前述した所定の関係に維持できないために、例えば培養物に近い場所で結露が生じた場合、この結露した水に雑菌が発生して、培養物に悪影響を及ぼすという問題が生じる。或いは、貯水トレイの水の温度と培養室内の温度とを前述した所定の関係に維持できないために、例えば培養室内の湿度が飽和水蒸気密度を大きく下回った場合、高湿度を維持するという培養装置本来の性能が低下するという問題が生じる。   On the other hand, because the temperature of the water in the water storage tray and the temperature in the culture chamber cannot be maintained in the predetermined relationship described above, for example, when condensation occurs near the culture, germs are generated in the condensed water, The problem of adversely affecting the culture arises. Alternatively, since the temperature of the water in the water storage tray and the temperature in the culture chamber cannot be maintained in the predetermined relationship described above, for example, when the humidity in the culture chamber is significantly lower than the saturated water vapor density, the culture apparatus originally maintains high humidity. There arises a problem that the performance of the system deteriorates.

前記課題を解決するための発明は、培養物を培養する際に室内を加湿するための貯水トレイが載置される培養室を形成する金属製の内箱と、前記内箱を覆う金属製の外箱と、前記内箱の外側に配設され前記培養室内を加熱する第1ヒータと、前記外箱の内側に配設される第1断熱材と、前記培養室の開口とを有する断熱筐体と、内板と、外板と、前記内板の内側に配設され前記培養室内を加熱する第2ヒータと、前記外板の内側に配設される第2断熱材とを有し、前記開口を密閉する断熱扉と、前記内箱の底板及び前記外箱の底板の間で前記内箱の底板及び前記外箱の底板と接合され、前記開口が密閉されたときの前記培養室の底面の特定部分の温度が前記培養室の他の部分の温度より低くなるように、前記培養室の底面の特定部分に対応する前記内箱の底板の特定部分の熱を前記外箱の底板に伝達する金属製の放熱部材とを備えたことを特徴とする培養装置である。   The invention for solving the above-mentioned problems is made of a metal inner box that forms a culture chamber on which a water storage tray for humidifying the room when the culture is cultured, and a metal cover that covers the inner box. A heat insulating housing having an outer box, a first heater disposed outside the inner box and heating the culture chamber, a first heat insulating material disposed inside the outer box, and an opening of the culture chamber A body, an inner plate, an outer plate, a second heater that is disposed inside the inner plate and heats the culture chamber, and a second heat insulating material disposed inside the outer plate, The heat insulating door that seals the opening, and the bottom plate of the inner box and the bottom plate of the outer box are joined to the bottom plate of the inner box and the bottom plate of the outer box, and the culture chamber when the opening is sealed Corresponding to the specific part of the bottom of the culture chamber so that the temperature of the specific part of the bottom is lower than the temperature of the other part of the culture chamber. It is a culture apparatus characterized by comprising a metallic heat radiating member for transferring heat of a specific portion of the bottom plate of the inner box to the bottom plate of the outer box.

本発明によれば、培養室における培養物に影響を及ぼす虞のある場所での結露を抑制しつつ、同室内を所定湿度に維持できる。   ADVANTAGE OF THE INVENTION According to this invention, the chamber can be maintained at predetermined humidity, suppressing the dew condensation in the place which may affect the culture in a culture chamber.

===培養装置===
図1及び図2を参照しつつ、本実施の形態の培養装置1の構成例について説明する。尚、図1は、本実施の形態の培養装置1の一例の正面断面図であり、図2は、図1の培養装置1のA−A’における側面断面図である。ここで、図1は、図2のB−B’における断面を表わしている。
=== Culture equipment ===
A configuration example of the culture apparatus 1 of the present embodiment will be described with reference to FIGS. 1 and 2. 1 is a front cross-sectional view of an example of the culture apparatus 1 of the present embodiment, and FIG. 2 is a side cross-sectional view taken along the line AA ′ of the culture apparatus 1 of FIG. Here, FIG. 1 shows a cross section taken along line BB ′ of FIG.

培養装置1は、内箱4、外箱2、ヒータ22、23(第1ヒータ)、断熱材21(第1断熱材)、及び正面側(+Y側)の開口を有する断熱筐体と、外扉(断熱扉)3と、放熱部材100とを備えている。   The culture apparatus 1 includes an inner box 4, an outer box 2, heaters 22 and 23 (first heater), a heat insulating material 21 (first heat insulating material), a heat insulating casing having an opening on the front side (+ Y side), A door (heat insulating door) 3 and a heat radiating member 100 are provided.

内箱4は、その内部に培養室4bを形成する例えばステンレス製の略直方体形状の箱であり、外箱2は、例えばステンレス製且つ内箱4と略相似形状の箱である。尚、培養室4b内では、例えば細胞や微生物等の培養物が培養される。   The inner box 4 is a substantially rectangular parallelepiped box made of, for example, stainless steel, in which the culture chamber 4 b is formed, and the outer box 2 is a box made of, for example, stainless steel and substantially similar to the inner box 4. In the culture chamber 4b, for example, cultures such as cells and microorganisms are cultured.

ヒータ22、23は、内箱4の外側に配設されて培養室4b内を加熱する。ここで、ヒータ22は、内箱4の側板(±X側板)、背板(−Y側板)、及び天板(+Z側板)それぞれの外側に配設される。また、ヒータ23は、内箱4の底板4c(−Z側板)の外側における後述する放熱部材100の周囲に配設され、培養室4b内を加熱するとともに、加湿トレイ(貯水トレイ)7内の水を加熱する。   The heaters 22 and 23 are disposed outside the inner box 4 to heat the inside of the culture chamber 4b. Here, the heater 22 is disposed outside the side plate (± X side plate), back plate (−Y side plate), and top plate (+ Z side plate) of the inner box 4. In addition, the heater 23 is disposed around a heat radiating member 100 described later outside the bottom plate 4c (−Z side plate) of the inner box 4 to heat the inside of the culture chamber 4b and in the humidifying tray (water storage tray) 7. Heat the water.

断熱材21は、外箱2の内側に配設されて当該断熱材21の内側を保温する。尚、断熱材21と内箱4との間には、内箱4を更に保温するために例えば空気の循環路としてのエアジャケット6が形成されており、前述したヒータ22、23は、このエアジャケット6内に配設されている。   The heat insulating material 21 is disposed inside the outer box 2 to keep the inside of the heat insulating material 21 warm. Note that an air jacket 6 as an air circulation path, for example, is formed between the heat insulating material 21 and the inner box 4 in order to further keep the inner box 4 warm. Arranged in the jacket 6.

内箱4及び外箱2ともに正面側の開口を有している。内箱4の開口には、内扉4aが所定のヒンジ(不図示)を介して開閉可能に設けられている。この内扉4aは、例えば強化ガラス製で平板形状をなしており、内箱4の開口に対しパッキン(不図示)を介して閉じると、内箱4内が密閉される。   Both the inner box 4 and the outer box 2 have an opening on the front side. An inner door 4a is provided at the opening of the inner box 4 so as to be opened and closed via a predetermined hinge (not shown). The inner door 4a is made of, for example, tempered glass and has a flat plate shape. When the inner door 4a is closed with a packing (not shown) with respect to the opening of the inner box 4, the inside of the inner box 4 is sealed.

外扉3は、内板32と、外板31と、ヒータ34(第2ヒータ)と、断熱材33(第2断熱材)とを有する例えば金属製で平板形状をなす扉であり、外箱2の開口に対し所定のヒンジ(不図示)を介して開閉可能に設けられている。ここで、内板32は、その外側面における外箱2の開口と対向する位置に凸部32aを有しており、この凸部32aには更に外箱2内を密閉するためのパッキン35が取り付けられている。外板31は、その外側面に制御パネル(不図示)を有しており、この制御パネルは、例えば培養室4b内の温度や湿度等を設定するためのキー(不図示)及びこれらの現在値を表示するためのディスプレイ(不図示)を有している。ヒータ34は、内板32の内側に配設されて培養室4b内を加熱し、断熱材33は、外板31の内側に配設されて当該断熱材33の内側を保温する。   The outer door 3 is a door made of, for example, metal and having a flat plate shape having an inner plate 32, an outer plate 31, a heater 34 (second heater), and a heat insulating material 33 (second heat insulating material). The two openings can be opened and closed via a predetermined hinge (not shown). Here, the inner plate 32 has a convex portion 32a at a position facing the opening of the outer box 2 on the outer side surface, and a packing 35 for sealing the inside of the outer box 2 is further provided on the convex portion 32a. It is attached. The outer plate 31 has a control panel (not shown) on its outer surface, and this control panel includes, for example, keys (not shown) for setting the temperature, humidity, etc. in the culture chamber 4b and their current values. It has a display (not shown) for displaying values. The heater 34 is disposed inside the inner plate 32 to heat the inside of the culture chamber 4 b, and the heat insulating material 33 is disposed inside the outer plate 31 to keep the inside of the heat insulating material 33 warm.

放熱部材100は、培養室4bの底面における加湿トレイ7が載置される部分に略対応する内箱4の底板4cの部分と、外箱2の底板2cとの双方に接合される金属製の部材である。尚、図1及び図2における放熱部材100は、図示の便宜上、その概略構造のみが例示されている。同図に例示される放熱部材100は、後述する、折曲板101と、放熱板103と、補強板102と、支持板105とが組み合わさって構成されている。   The heat radiating member 100 is made of metal that is joined to both the bottom plate 4c portion of the inner box 4 and the bottom plate 2c of the outer box 2 that substantially correspond to the portion on the bottom surface of the culture chamber 4b where the humidifying tray 7 is placed. It is a member. In addition, only the schematic structure is illustrated for the heat radiating member 100 in FIG.1 and FIG.2 for convenience of illustration. The heat radiating member 100 illustrated in the figure is configured by combining a bent plate 101, a heat radiating plate 103, a reinforcing plate 102, and a support plate 105, which will be described later.

尚、内箱4の背板と、例えばステンレス製の壁板5とは、空気の風路を形成するためのダクト52を構成している。このダクト52内の上側(+Z側)には、ファン51(シロッコファン)が設けられている。   The back plate of the inner box 4 and the wall plate 5 made of stainless steel, for example, constitute a duct 52 for forming an air passage for air. A fan 51 (sirocco fan) is provided on the upper side (+ Z side) in the duct 52.

培養室4b内で培養物を培養する場合、ファン51の一定方向の回転によって、培養室4b上側の空気は、吸入口5aを通じてダクト52内に流入し、同ダクト52内を上側から下側(−Z側)へ流れ、排出口5bから流出する。排出口5bからの空気は、加湿トレイ7内の水で加湿された後、カバー8の正面側の孔8aを通過して、培養室4b内を下側から上側へ流れた後、再度吸入口5aに戻るようになっている。このような空気の循環によって、培養室4b内は、例えば、略均一な温度及び湿度に維持される。尚、図1では、図示の便宜上、カバー8は省略されている。   When the culture is cultured in the culture chamber 4b, the air on the upper side of the culture chamber 4b flows into the duct 52 through the suction port 5a due to the rotation of the fan 51 in a certain direction, and the inside of the duct 52 from the upper side to the lower side ( -Z side) and flows out from the outlet 5b. The air from the discharge port 5b is humidified with the water in the humidifying tray 7, then passes through the hole 8a on the front side of the cover 8, flows from the lower side to the upper side in the culture chamber 4b, and then the suction port again. It returns to 5a. By such air circulation, the inside of the culture chamber 4b is maintained at, for example, a substantially uniform temperature and humidity. In FIG. 1, the cover 8 is omitted for convenience of illustration.

一方、培養室4b内を殺菌する場合、培養室4bの底面から加湿トレイ7及びカバー8を取り外し、所定のガス発生器(不図示)を置いて、これに例えば過酸化水素(H2O2)ガスを発生させつつ、ダクト52内のファン51を一定方向に回転させる。これにより、培養室4b内で空気とともに過酸化水素ガスが循環して、同室4bの内面等が殺菌される。尚、ガス発生器は、例えば、過酸化水素水(過酸化水素が溶解した水溶液)を貯蔵するタンク(不図示)と、このタンク内の過酸化水素水を霧化するための超音波振動子(不図示)とを有している。 On the other hand, when the inside of the culture chamber 4b is sterilized, the humidifying tray 7 and the cover 8 are removed from the bottom surface of the culture chamber 4b, a predetermined gas generator (not shown) is placed, and hydrogen peroxide (H 2 O 2 ) is placed on this. ) The fan 51 in the duct 52 is rotated in a certain direction while generating gas. Thereby, hydrogen peroxide gas circulates with air in the culture chamber 4b, and the inner surface and the like of the chamber 4b are sterilized. The gas generator includes, for example, a tank (not shown) for storing hydrogen peroxide (an aqueous solution in which hydrogen peroxide is dissolved) and an ultrasonic vibrator for atomizing the hydrogen peroxide in the tank. (Not shown).

尚、培養装置1は、図2に例示されるように、外箱2の背板の内側且つ断熱材21の下側にファン110(排気装置)を備えるとともに、このファン110と対向する背板に空気の排気口2d(排気装置)を備えている。このファン110は、内箱4の底板4cの下側の断熱材21及び外箱2の底板2cの間の空間100aの温度が培養室4bの温度より低くなるように、この空間100aの空気を排気する。つまり、このファン110は、空間100a内に空気の流れを形成することによって、例えば断熱材21の外箱2側に露出する放熱板103や外箱2の底板2c等を冷却して、前述した加湿トレイ7が載置される部分に略対応する底板4cの部分の放熱を促進する。   As illustrated in FIG. 2, the culture device 1 includes a fan 110 (exhaust device) inside the back plate of the outer box 2 and below the heat insulating material 21, and the back plate facing the fan 110. Is provided with an air exhaust port 2d (exhaust device). The fan 110 allows the air in the space 100a to flow so that the temperature of the space 100a between the heat insulating material 21 below the bottom plate 4c of the inner box 4 and the bottom plate 2c of the outer box 2 is lower than the temperature of the culture chamber 4b. Exhaust. That is, the fan 110 cools, for example, the heat radiating plate 103 exposed to the outer box 2 side of the heat insulating material 21 or the bottom plate 2c of the outer box 2 by forming an air flow in the space 100a. The heat release of the portion of the bottom plate 4c substantially corresponding to the portion on which the humidifying tray 7 is placed is promoted.

===放熱部材===
図1乃至図3を参照しつつ、前述した放熱部材100の詳細について説明する。尚、図3は、図1の放熱部材100の断面の拡大図である。
=== Heat dissipation member ===
Details of the heat dissipation member 100 will be described with reference to FIGS. 1 to 3. FIG. 3 is an enlarged view of a cross section of the heat dissipation member 100 of FIG.

培養室4bの底面における加湿トレイ7が載置される部分は、上側(+Z側)から見て略矩形状をなすものである(図1及び図2)。図2の例示では、この加湿トレイ7が載置される略矩形状の部分のうち、培養室4bの正面側(+Y側)の一部分(特定部分)に対応する底板4cの部分(特定部分)には、放熱板103を伴った放熱部材100が接合されており、同室4bの背面側(−Y側)の残りの一部分に対応する底板4cの部分には、ヒータ23が配設されている。また、図2の例示では、培養室4bの底面における加湿トレイ7が載置される部分から正面側にはみ出した部分(特定部分)にも、これに対応する底板4cの部分(特定部分)には、放熱板103を伴わない放熱部材100が接合されている。   The portion on the bottom surface of the culture chamber 4b where the humidifying tray 7 is placed has a substantially rectangular shape when viewed from the upper side (+ Z side) (FIGS. 1 and 2). In the illustration of FIG. 2, the part (specific part) of the bottom plate 4 c corresponding to a part (specific part) on the front side (+ Y side) of the culture chamber 4 b among the substantially rectangular part on which the humidifying tray 7 is placed. The heat radiating member 100 with the heat radiating plate 103 is joined, and the heater 23 is disposed in the portion of the bottom plate 4c corresponding to the remaining part on the back side (−Y side) of the same chamber 4b. . Moreover, in the illustration of FIG. 2, the part (specific part) which protruded from the part in which the humidification tray 7 is mounted in the bottom face of the culture chamber 4b to the front side also corresponds to the part (specific part) of the bottom plate 4c corresponding to this. The heat radiating member 100 without the heat radiating plate 103 is joined.

図3の例示では、放熱部材100は、折曲板(第1放熱部材)101と、放熱板(第1放熱部材)103と、補強板(第1放熱部材)102と、支持板(第2放熱部材)105とを備えている。また、この放熱部材100は、部材104(第2放熱部材)と、部材106(第1放熱部材)とを備えている。   In the illustration of FIG. 3, the heat radiating member 100 includes a bent plate (first heat radiating member) 101, a heat radiating plate (first heat radiating member) 103, a reinforcing plate (first heat radiating member) 102, and a support plate (second A heat dissipating member) 105. The heat radiating member 100 includes a member 104 (second heat radiating member) and a member 106 (first heat radiating member).

折曲板101は、底板4cの前述した特定部分と接合される接合板101aを含み、断熱材21が載置されるように、接合板101aの両端(±X側端)を基点として底板4cに垂直に(図3のV)それぞれ折れ曲がるとともに、底板4cに平行(X軸方向)且つ相互に離間するように(図3のH)それぞれ折れ曲がった例えばステンレス製の板である。尚、この折曲板101に載置される断熱材21は、底板4cに平行に放熱部材100の周りを囲んでおり、この断熱材21と底板4cとの間に形成される前述したエアジャケット6には、ヒータ23が配設されている。この折曲板101によって、接合板101aと接合される前述した特定部分の熱が断熱材21の外箱2側まで伝達される。   The bent plate 101 includes a bonding plate 101a bonded to the above-described specific portion of the bottom plate 4c, and the bottom plate 4c is based on both ends (± X side ends) of the bonding plate 101a so that the heat insulating material 21 is placed. For example, stainless steel plates that are bent perpendicularly to each other (V in FIG. 3) and bent in parallel to the bottom plate 4c (in the X-axis direction) and spaced apart from each other (H in FIG. 3). The heat insulating material 21 placed on the bent plate 101 surrounds the heat radiating member 100 in parallel with the bottom plate 4c, and the air jacket described above is formed between the heat insulating material 21 and the bottom plate 4c. 6 is provided with a heater 23. By this bent plate 101, the heat of the specific part mentioned above joined to the joining plate 101a is transmitted to the outer box 2 side of the heat insulating material 21.

放熱板103は、折曲板101の外箱2側の面に接合される一対のアルミニウム製の板である。尚、一対の放熱板103のそれぞれは、折曲板101の折れ曲がり形状と類似した形状を有しており、この形状によって、後述する補強板102の外箱2側の凸部と、折曲板101の底板4cに垂直に折れ曲がった部分Vと、折曲板101の底板4cに平行に折れ曲がった部分Hとに接合されている。また、図2の例示では、放熱板103の培養室4bの奥行き方向(Y軸方向)の寸法は、接合板101aの同方向の寸法よりも短い。つまり、放熱板103は、折曲板101の外箱2側の面のうち、加湿トレイ7が載置される部分と対応する部分のみに接合される寸法及び形状を有している。ステンレス等よりも熱伝導性が高いアルミニウムからなる放熱板103によって、前述した特定部分のうちの特に加湿トレイ7が載置された部分に対応する底板4cの部分に関して、折曲板101の接合板101aから断熱材21の外箱2側までの熱伝達が促進される。   The heat radiating plate 103 is a pair of aluminum plates joined to the surface of the bent plate 101 on the outer box 2 side. Each of the pair of heat radiating plates 103 has a shape similar to the bent shape of the bent plate 101, and by this shape, the convex portion on the outer box 2 side of the reinforcing plate 102 described later and the bent plate 101 is joined to a portion V bent vertically to the bottom plate 4c and a portion H bent parallel to the bottom plate 4c of the bent plate 101. Moreover, in the illustration of FIG. 2, the dimension of the heat sink 103 in the depth direction (Y-axis direction) of the culture chamber 4b is shorter than the dimension of the joining plate 101a in the same direction. That is, the heat radiating plate 103 has a size and a shape to be joined only to a portion corresponding to a portion on which the humidifying tray 7 is placed on the surface of the bent plate 101 on the outer box 2 side. The heat sink 103 made of aluminum, which has higher heat conductivity than stainless steel or the like, the joint plate of the bent plate 101 with respect to the portion of the bottom plate 4c corresponding to the portion where the humidifying tray 7 is placed among the specific portions described above. Heat transfer from 101a to the outer box 2 side of the heat insulating material 21 is promoted.

補強板102は、接合板101a及び放熱板103の間に挟持され、底板4cを補強する凹凸型の例えばステンレス製の板である。尚、図2の例示では、補強板102は、培養室4bの奥行き方向に幅狭の部材であり、これが接合板101aの下側の同方向に複数個並設されている。この補強板102によって、底板4cが補強されるとともに、接合板101aの熱が放熱板103に伝達される。   The reinforcing plate 102 is an uneven type, for example, stainless steel plate that is sandwiched between the joining plate 101a and the heat radiating plate 103 and reinforces the bottom plate 4c. In the illustration of FIG. 2, the reinforcing plate 102 is a member narrow in the depth direction of the culture chamber 4b, and a plurality of the reinforcing plates 102 are arranged side by side in the same direction below the joining plate 101a. The reinforcing plate 102 reinforces the bottom plate 4 c and transmits heat of the joining plate 101 a to the heat radiating plate 103.

支持板105は、放熱板103の底板4cに平行な部分の外箱2側の面と、外箱2の底板2cとに接合されて、折曲板101、放熱板103、及び補強板102の熱を外箱2の底板2cに伝達する一対の例えばステンレス製の板である。一対の支持板105のそれぞれは、底板4cに平行な部分と、底板4cに垂直な部分と、底板2cに平行な部分とに折り曲げられた形状を有している。つまり、支持板105の上面に対し放熱板103の底板4cに平行な一部が載置されることによって、折曲板101、放熱板103、補強板102、及び支持板105は、内箱4の底板4c及び外箱2の底板2cの間を支える支柱を形成している。尚、図2の例示では、支持板105の培養室4bの奥行き方向の寸法は、折曲板101の同方向の寸法と等しい。   The support plate 105 is joined to the surface on the outer box 2 side of the portion parallel to the bottom plate 4c of the heat radiating plate 103 and the bottom plate 2c of the outer box 2, and the bent plate 101, the heat radiating plate 103, and the reinforcing plate 102 are A pair of stainless steel plates for transferring heat to the bottom plate 2 c of the outer box 2. Each of the pair of support plates 105 has a shape bent into a portion parallel to the bottom plate 4c, a portion perpendicular to the bottom plate 4c, and a portion parallel to the bottom plate 2c. That is, a part parallel to the bottom plate 4c of the heat radiating plate 103 is placed on the upper surface of the support plate 105, whereby the bent plate 101, the heat radiating plate 103, the reinforcing plate 102, and the support plate 105 are connected to the inner box 4. The support | pillar which supports between the bottom plate 4c of this and the bottom plate 2c of the outer case 2 is formed. In the illustration of FIG. 2, the dimension of the support plate 105 in the depth direction of the culture chamber 4 b is equal to the dimension of the bent plate 101 in the same direction.

前述した特定部分の熱が最終的にこの支持板105を介して外箱2の外部に放出されることによって、この特定部分の温度は、密閉された培養室4b内での他の部分の温度よりも低く維持できる。つまり、もし結露が起こるとすれば、培養室4bの底面のこの特定部分でのみ起こるため、この結露は培養物に影響を及ぼす虞が少ない。つまり、培養室4bにおける培養物に影響を及ぼす虞のある場所(例えば、培養室4bの天井面や内扉4aの内側等)での結露を抑制しつつ同室4b内を飽和水蒸気密度に近い湿度に維持できる程度に、この特定部分の温度を培養室4b内の他の部分の温度よりも低く維持できる。尚、特定部分の温度を、密閉された培養室4b内での他の部分の温度よりも低く維持できることは、同室4b内の殺菌時に過酸化水素ガスが過飽和状態となった場合にも有用である。つまり、もし過酸化水素ガスの結露が起こるとすれば、培養室4bの底面のこの特定部分でのみ起こるため、殺菌処理の後に、これを拭き取り易い。   The heat of the specific part is finally released to the outside of the outer box 2 through the support plate 105, so that the temperature of the specific part is the temperature of the other part in the sealed culture chamber 4b. Can be kept lower. That is, if dew condensation occurs, it occurs only at this specific portion of the bottom surface of the culture chamber 4b, so that this dew condensation is less likely to affect the culture. That is, the humidity in the chamber 4b is close to the saturated water vapor density while suppressing dew condensation in a place that may affect the culture in the culture chamber 4b (for example, the ceiling surface of the culture chamber 4b or the inner side of the inner door 4a). Therefore, the temperature of this specific part can be kept lower than the temperature of the other part in the culture chamber 4b. Note that the ability to maintain the temperature of a specific portion lower than the temperature of other portions in the sealed culture chamber 4b is also useful when hydrogen peroxide gas becomes supersaturated during sterilization in the chamber 4b. is there. That is, if dew condensation of hydrogen peroxide gas occurs, it occurs only at this specific portion of the bottom surface of the culture chamber 4b, so that it can be easily wiped off after the sterilization treatment.

また、前述した特定部分のうちの特に加湿トレイ7が載置された部分に対応する底板4cの部分に関して、折曲板101から支持板105までの熱伝達が放熱板103によって促進されるため、この加湿トレイ7が載置された部分を、密閉された培養室4b内での最低温度に維持できる。よって、もし結露が起こるとすれば、これは加湿トレイ7の水に戻ることになるため、この結露が培養物に及ぼす影響を一層抑制できる。尚、本実施の形態では、特定部分のうちの特に加湿トレイ7が載置された部分に対応する底板4cの部分の面積を、例えば底板4cの全面積の20%以下に設定することによって、結露は加湿トレイ7内に一層集中するようになっている。   Moreover, since heat transfer from the bent plate 101 to the support plate 105 is promoted by the heat radiating plate 103 with respect to the portion of the bottom plate 4c corresponding to the portion where the humidifying tray 7 is placed among the specific portions described above, The portion where the humidifying tray 7 is placed can be maintained at the lowest temperature in the sealed culture chamber 4b. Therefore, if condensation occurs, it will return to the water in the humidifying tray 7, so that the influence of this condensation on the culture can be further suppressed. In this embodiment, by setting the area of the part of the bottom plate 4c corresponding to the part where the humidifying tray 7 is placed among the specific parts, for example, to 20% or less of the total area of the bottom plate 4c, Condensation is more concentrated in the humidifying tray 7.

部材104は、放熱板103から支持板105へ熱を逃がすために、一対の放熱板103の底板4cに平行な部分と、一対の支持板105の底板4cに垂直な部分とにそれぞれ接合される一対の例えばステンレス製の板である。この部材104も、前述した、折曲板101、放熱板103、補強板102、及び支持板105とともに、内箱4の底板4c及び外箱2の底板2cの間を支える支柱を形成する。   The member 104 is joined to a portion parallel to the bottom plate 4 c of the pair of heat radiating plates 103 and a portion perpendicular to the bottom plate 4 c of the pair of support plates 105 in order to release heat from the heat radiating plate 103 to the support plate 105. A pair of, for example, stainless steel plates. This member 104 also forms a column supporting the space between the bottom plate 4c of the inner box 4 and the bottom plate 2c of the outer box 2 together with the bent plate 101, the heat radiating plate 103, the reinforcing plate 102, and the support plate 105 described above.

部材106は、補強板102の真下に断熱材21を載置するために、一対の放熱板103の底板4cに垂直な部分に接合するとともに、この部分から底板4cに平行且つ相互に接近するように(図3のH’)折れ曲がった一対の例えばステンレス製の板である。この部材106も、底板4cに垂直な部分の熱を、底板4cに平行な部分の外箱2側の面から放熱する機能を果たす。   The member 106 is joined to a portion perpendicular to the bottom plate 4c of the pair of heat radiating plates 103 in order to place the heat insulating material 21 directly under the reinforcing plate 102, and is parallel to the bottom plate 4c from this portion so as to approach each other. (H ′ in FIG. 3) is a pair of bent plates made of, for example, stainless steel. This member 106 also functions to radiate heat from a portion perpendicular to the bottom plate 4c from a surface of the portion parallel to the bottom plate 4c on the outer box 2 side.

尚、図3の例示では、補強板102の外箱2側の凸部にはネジ孔(不図示)が形成され、放熱板103のこの凸部と接合する部分には孔(不図示)が形成されており、放熱板103と補強板102とはネジ102aを介して接合されている。   In the illustration of FIG. 3, a screw hole (not shown) is formed in the convex portion on the outer box 2 side of the reinforcing plate 102, and a hole (not shown) is formed in a portion joining the convex portion of the heat radiating plate 103. The radiator plate 103 and the reinforcing plate 102 are joined via screws 102a.

また、折曲板101、放熱板103、及び部材106における互いに接合する底板4cに垂直な部分において、部材106にはネジ孔(不図示)が形成され、折曲板101及び放熱板103にはそれぞれ孔(不図示)が形成されており、折曲板101と、放熱板103と、部材106とはネジ106aを介して接合されている。   Further, screw holes (not shown) are formed in the member 106 at portions of the bent plate 101, the heat radiating plate 103, and the member 106 that are perpendicular to the bottom plate 4 c that are joined to each other. Holes (not shown) are respectively formed, and the bent plate 101, the heat radiating plate 103, and the member 106 are joined via screws 106a.

以上、放熱部材100を、第1放熱部材(折曲板101、放熱板103、補強板102、部材106)と、第2放熱部材(支持板105、部材104)との2つの放熱部材から構成することによって、内箱4の底板4cと外箱2の底板2cとの間に双方の底板4c、2cと間隙を有しつつ断熱材21が配設されている場合でも、底板4cの特定部分の熱を底板2cまで効率良く伝達できる。つまり、先ず、底板4cの特定部分の熱を、第1放熱部材によって、断熱材21の内箱4側から外箱2側まで伝達でき、次に、第1放熱部材の熱を、第2放熱部材によって、底板2cまで伝達できる。   As described above, the heat radiating member 100 is composed of two heat radiating members including the first heat radiating member (the bent plate 101, the heat radiating plate 103, the reinforcing plate 102, the member 106) and the second heat radiating member (the support plate 105, the member 104). Thus, even when the heat insulating material 21 is disposed between the bottom plate 4c of the inner box 4 and the bottom plate 2c of the outer box 2 while having a gap with both the bottom plates 4c, 2c, a specific portion of the bottom plate 4c Can be efficiently transferred to the bottom plate 2c. That is, first, heat of a specific portion of the bottom plate 4c can be transferred from the inner box 4 side of the heat insulating material 21 to the outer box 2 side by the first heat radiating member, and then the heat of the first heat radiating member is transferred to the second heat radiating member. It can be transmitted to the bottom plate 2c by the member.

尚、培養室4bの底面の特定部分の温度は、その熱を放出する先である断熱材21の下側の空間100aの温度及び培養装置1の周囲の大気の温度に依存する。つまり、大気の温度が高くなるほど、培養室4b内と空間100a内との温度差がより小さくなるため、特定部分の温度が所望のレベルまで下がり難くなる。この場合、前述したファン110を駆動することによって、空間100aの温度が培養室4bの温度より低くなるように、この空間100aの空気を排気して気流を生じさせる。これにより、特定部分の温度が下がり易くなる。尚、ファン110は、常時駆動されるものであってもよいし、或いは、例えば所定の温度センサ(不図示)によって測定された空間100aや培養装置1の周囲等の温度が所定温度以上の場合のみ駆動されるものであってもよい。但し、これに限定されるものではなく、例えば大気の温度が十分低い環境で培養装置1を使用する場合、培養装置1はこのようなファン110を備えていなくてもよい。   In addition, the temperature of the specific part of the bottom face of the culture chamber 4b depends on the temperature of the space 100a below the heat insulating material 21 to which the heat is released and the temperature of the atmosphere around the culture apparatus 1. That is, as the temperature of the atmosphere increases, the temperature difference between the inside of the culture chamber 4b and the space 100a becomes smaller, so that the temperature of the specific part is less likely to fall to a desired level. In this case, by driving the fan 110 described above, the air in the space 100a is exhausted to generate an air current so that the temperature of the space 100a is lower than the temperature of the culture chamber 4b. Thereby, the temperature of a specific part becomes easy to fall. The fan 110 may be constantly driven or, for example, when the temperature around the space 100a or the culture apparatus 1 measured by a predetermined temperature sensor (not shown) is equal to or higher than the predetermined temperature. May be driven only. However, the present invention is not limited to this. For example, when the culture apparatus 1 is used in an environment where the temperature of the atmosphere is sufficiently low, the culture apparatus 1 may not include such a fan 110.

===その他の実施の形態===
前述した実施の形態は、本発明の理解を容易にするためのものであり、本発明を限定して解釈するためのものではない。本発明はその趣旨を逸脱することなく変更や改良等が可能であり、また本発明はその等価物も含むものである。
=== Other Embodiments ===
The above-described embodiments are intended to facilitate understanding of the present invention, and are not intended to limit the present invention. The present invention can be changed and improved without departing from the gist thereof, and the present invention includes equivalents thereof.

前述した実施の形態では、折曲板101は、接合板101aの両端を基点として底板4cに垂直にそれぞれ折れ曲がる部分(図3のV)と、底板4cに平行且つ相互に離間するようにそれぞれ折れ曲がる部分(図3のH)とを有していたが、これに限定されるものではない。   In the above-described embodiment, the bent plate 101 is bent so as to be bent perpendicularly to the bottom plate 4c (V in FIG. 3) from both ends of the joining plate 101a, and parallel to the bottom plate 4c and spaced apart from each other. However, the present invention is not limited to this.

例えば、部材106が折曲板101と一体に形成されて、この部材106における底板4cに平行且つ相互に接近する一対の部分(図3のH’)が補強板102の真下に断熱材21を載置するものであってもよい。   For example, the member 106 is formed integrally with the bent plate 101, and a pair of portions (H ′ in FIG. 3) that are parallel to the bottom plate 4 c and approach each other in the member 106 have the heat insulating material 21 directly below the reinforcing plate 102. It may be placed.

また、例えば、折曲板101の底板4cに平行な一対の部分は、培養室4bの奥行き方向(図2のY軸方向)の位置に応じて、相互に離間する方向に折れ曲がったり、相互に接近する方向に折れ曲がったりしてもよい。一例として以下のようであってもよい、培養室4bの底面の前述した特定部分のうち、加湿トレイ7が載置される部分(図2の−Y側の部分)では、折曲板101の底板4cに平行な一対の部分は、相互に離間する方向に折れ曲がる(図3のHに相当する)。一方、培養室4bの底面の前述した特定部分のうち、加湿トレイ7が載置される部分から奥行き方向正面側にはみ出した部分(図2の+Y側の部分)では、折曲板101の底板4cに平行な一対の部分は、相互に接近する方向に折れ曲がる(図3のH’に相当する)。   Further, for example, the pair of portions parallel to the bottom plate 4c of the bent plate 101 may be bent in a direction away from each other, depending on the position in the depth direction (Y-axis direction in FIG. 2) of the culture chamber 4b. It may be bent in the approaching direction. As an example, among the above-described specific portions of the bottom surface of the culture chamber 4b, the portion on which the humidifying tray 7 is placed (the portion on the -Y side in FIG. 2) of the folding plate 101 may be as follows. A pair of portions parallel to the bottom plate 4c bend in a direction away from each other (corresponding to H in FIG. 3). On the other hand, of the above-described specific portion on the bottom surface of the culture chamber 4b, the bottom plate of the bent plate 101 is the portion protruding from the portion where the humidifying tray 7 is placed to the front side in the depth direction (the portion on the + Y side in FIG. 2). A pair of portions parallel to 4c bend in a direction approaching each other (corresponding to H ′ in FIG. 3).

本実施の形態の培養装置の一例の正面断面図である。It is front sectional drawing of an example of the culture apparatus of this Embodiment. 図1の培養装置のA−A’における側面断面図である。It is side surface sectional drawing in A-A 'of the culture apparatus of FIG. 図1の放熱部材の断面の拡大図である。It is an enlarged view of the cross section of the heat radiating member of FIG.

符号の説明Explanation of symbols

1 培養装置 2 外箱 2c 底板 2d 排気口
3 外扉 4 内箱 4a 内扉 4b 培養室
4c 底板 5 壁板 5a 吸入口 5b 排出口
6 エアジャケット 7 加湿トレイ 8 カバー 8a 孔
21 断熱材 22、23 ヒータ 31 外板 32 内板
32a 凸部 33 断熱材 34 ヒータ 35 パッキン
51 ファン 52 ダクト 100 放熱部材 100a 空間
101 折曲板 101a 接合板 102 補強板 102a ネジ
103 放熱板 104 部材 105 支持板 106 部材
110 ファン
DESCRIPTION OF SYMBOLS 1 Culture apparatus 2 Outer box 2c Bottom plate 2d Exhaust port 3 Outer door 4 Inner box 4a Inner door 4b Incubation chamber 4c Bottom plate 5 Wall plate 5a Intake port 5b Outlet port 6 Air jacket 7 Humidifying tray 8 Cover 8a Hole 21 Insulating material 22, 23 Heater 31 Outer plate 32 Inner plate 32a Protruding portion 33 Heat insulating material 34 Heater 35 Packing 51 Fan 52 Duct 100 Heat radiation member 100a Space 101 Bent plate 101a Joining plate 102 Reinforcement plate 102a Screw 103 Heat radiation plate 104 Member 105 Support plate 106 Member 110 Fan

Claims (8)

培養物を培養する際に室内を加湿するための貯水トレイが載置される培養室を形成する金属製の内箱と、前記内箱を覆う金属製の外箱と、前記内箱の外側に配設され前記培養室内を加熱する第1ヒータと、前記外箱の内側に配設される第1断熱材と、前記培養室の開口と、を有する断熱筐体と、
内板と、外板と、前記内板の内側に配設され前記培養室内を加熱する第2ヒータと、前記外板の内側に配設される第2断熱材と、を有し、前記開口を密閉する断熱扉と、
前記内箱の底板及び前記外箱の底板の間で前記内箱の底板及び前記外箱の底板と接合され、前記開口が密閉されたときの前記培養室の底面の特定部分の温度が前記培養室の他の部分の温度より低くなるように、前記培養室の底面の特定部分に対応する前記内箱の底板の特定部分の熱を前記外箱の底板に伝達する金属製の放熱部材と、
を備えたことを特徴とする培養装置。
A metal inner box that forms a culture chamber on which a water storage tray for humidifying the room when culturing the culture is placed, a metal outer box that covers the inner box, and an outer side of the inner box A heat-insulating housing having a first heater disposed and heating the culture chamber, a first heat insulating material disposed inside the outer box, and an opening of the culture chamber;
An inner plate, an outer plate, a second heater disposed inside the inner plate and heating the culture chamber, and a second heat insulating material disposed inside the outer plate, and the opening An insulated door that seals,
The temperature of a specific part of the bottom surface of the culture chamber when the opening is sealed between the bottom plate of the inner box and the bottom plate of the outer box is joined between the bottom plate of the inner box and the bottom plate of the outer box. A metal heat dissipating member that transmits heat of a specific part of the bottom plate of the inner box corresponding to a specific part of the bottom of the culture chamber to the bottom plate of the outer box, so as to be lower than the temperature of the other part of the chamber,
A culture apparatus comprising:
前記放熱部材は、前記内箱の底板の特定部分と接合され、当該特定部分の熱を前記第1断熱材の前記内箱側から前記外箱側へ伝達する第1放熱部材と、前記外箱の底板と接合され、前記第1放熱部材の熱を前記外箱の底板に伝達する第2放熱部材と、を有することを特徴とする請求項1に記載の培養装置。   The heat radiating member is joined to a specific portion of the bottom plate of the inner box, and transmits heat of the specific portion from the inner box side to the outer box side of the first heat insulating material, and the outer box. The culture apparatus according to claim 1, further comprising: a second heat radiating member that is joined to the bottom plate and transmits heat of the first heat radiating member to the bottom plate of the outer box. 前記第1放熱部材は、前記内箱の底板の特定部分の熱を伝達するアルミニウム製の放熱板を有し、前記第2放熱部材は、前記放熱板と接合されることを特徴とする請求項2に記載の培養装置。   The said 1st heat radiating member has an aluminum heat radiating plate which transmits the heat | fever of the specific part of the bottom plate of the said inner box, The said 2nd heat radiating member is joined to the said heat radiating plate, The said heat radiating member is joined. 2. The culture apparatus according to 2. 前記第1放熱部材は、前記内箱の底板の特定部分と接合される接合板を含み、前記第1断熱材が載置されるように前記接合板の端を基点として前記内箱の底板に対し略垂直となる方向に折れ曲がるとともに前記内箱の底板に対し略平行となる方向に折れ曲がる折曲板と、前記折曲板の前記外箱側の面に接合されるアルミニウム製の放熱板と、を有し、
前記第2放熱部材は、前記放熱板と接合されることを特徴とする請求項2に記載の培養装置。
The first heat radiating member includes a joining plate joined to a specific portion of the bottom plate of the inner box, and the bottom plate of the inner box is based on an end of the joining plate so that the first heat insulating material is placed. A folding plate that bends in a direction substantially perpendicular to the inner box and bends in a direction that is substantially parallel to the bottom plate of the inner box, and an aluminum heat dissipation plate that is joined to the outer box side surface of the bending plate; Have
The culture apparatus according to claim 2, wherein the second heat radiating member is joined to the heat radiating plate.
前記第1放熱部材は、前記接合板及び前記放熱板の間に挟持され、前記内箱の底板を補強する凹凸型の補強板を更に有することを特徴とする請求項4に記載の培養装置。   The culture apparatus according to claim 4, wherein the first heat radiating member further includes an uneven reinforcing plate that is sandwiched between the joining plate and the heat radiating plate and reinforces a bottom plate of the inner box. 前記内箱の底板に略平行な前記放熱板の一部は、前記第2放熱部材の上面に載置され、
前記第1放熱部材及び前記第2放熱部材は、前記内箱の底板及び前記外箱の底板の間を支える支柱を形成することを特徴とする請求項4又は5に記載の培養装置。
A part of the heat radiating plate substantially parallel to the bottom plate of the inner box is placed on the upper surface of the second heat radiating member,
The culture apparatus according to claim 4 or 5, wherein the first heat radiating member and the second heat radiating member form a support column that supports a space between a bottom plate of the inner box and a bottom plate of the outer box.
前記培養室の底面の特定部分は、前記貯水トレイが載置される部分であることを特徴とする請求項1乃至6の何れかに記載の培養装置。   The culture device according to any one of claims 1 to 6, wherein the specific portion of the bottom surface of the culture chamber is a portion on which the water storage tray is placed. 前記外箱の底板の内側に配設される前記第1断熱材及び前記外箱の底板の間の空間の温度が前記培養室の温度より低くなるように、前記空間の空気を排気する排気装置を備えたことを特徴とする請求項1乃至7の何れかに記載の培養装置。   An exhaust device that exhausts the air in the space so that the temperature of the space between the first heat insulating material disposed inside the bottom plate of the outer box and the bottom plate of the outer box is lower than the temperature of the culture chamber. The culture apparatus according to any one of claims 1 to 7, further comprising:
JP2008225410A 2008-08-26 2008-09-03 Incubator Active JP5341438B2 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
JP2008225410A JP5341438B2 (en) 2008-09-03 2008-09-03 Incubator
EP09805893.6A EP2319911B1 (en) 2008-08-26 2009-08-19 Culture apparatus
PCT/JP2009/064525 WO2010024163A1 (en) 2008-08-26 2009-08-19 Culture apparatus
US12/703,532 US8227239B2 (en) 2008-08-26 2010-02-10 Culture apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2008225410A JP5341438B2 (en) 2008-09-03 2008-09-03 Incubator

Publications (2)

Publication Number Publication Date
JP2010057398A true JP2010057398A (en) 2010-03-18
JP5341438B2 JP5341438B2 (en) 2013-11-13

Family

ID=42184950

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2008225410A Active JP5341438B2 (en) 2008-08-26 2008-09-03 Incubator

Country Status (1)

Country Link
JP (1) JP5341438B2 (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012075373A (en) * 2010-09-30 2012-04-19 Sanyo Electric Co Ltd Incubator
GB2494202A (en) * 2011-09-05 2013-03-06 Bactroscan Ltd Microorganism imaging and incubating apparatus able to maintain a temperature gradient
JP2013066436A (en) * 2011-09-22 2013-04-18 Panasonic Healthcare Co Ltd Culture apparatus equipped with heater
WO2015053386A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
WO2015053384A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
WO2015053383A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
WO2015053385A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
WO2015119254A1 (en) * 2014-02-07 2015-08-13 東京エレクトロン株式会社 Culturing device
CN108795713A (en) * 2018-08-30 2018-11-13 安徽省佳逸环保科技有限公司 A kind of multi-functional incubator

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05227942A (en) * 1992-02-25 1993-09-07 Unie Data:Kk Apparatus for culturing
JP2006204186A (en) * 2005-01-28 2006-08-10 Matsushita Electric Ind Co Ltd Culture apparatus

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05227942A (en) * 1992-02-25 1993-09-07 Unie Data:Kk Apparatus for culturing
JP2006204186A (en) * 2005-01-28 2006-08-10 Matsushita Electric Ind Co Ltd Culture apparatus

Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012075373A (en) * 2010-09-30 2012-04-19 Sanyo Electric Co Ltd Incubator
GB2494202A (en) * 2011-09-05 2013-03-06 Bactroscan Ltd Microorganism imaging and incubating apparatus able to maintain a temperature gradient
JP2013066436A (en) * 2011-09-22 2013-04-18 Panasonic Healthcare Co Ltd Culture apparatus equipped with heater
JP5944060B2 (en) * 2013-10-11 2016-07-05 パナソニックヘルスケアホールディングス株式会社 Incubator
JP5944062B2 (en) * 2013-10-11 2016-07-05 パナソニックヘルスケアホールディングス株式会社 Incubator
WO2015053383A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
WO2015053385A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
US10150940B2 (en) 2013-10-11 2018-12-11 Phc Holdings Corporation Culture apparatus
CN105531362A (en) * 2013-10-11 2016-04-27 松下健康医疗控股株式会社 Culture apparatus
JP5944063B2 (en) * 2013-10-11 2016-07-05 パナソニックヘルスケアホールディングス株式会社 Incubator
WO2015053386A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
JP5944061B2 (en) * 2013-10-11 2016-07-05 パナソニックヘルスケアホールディングス株式会社 Incubator
WO2015053384A1 (en) * 2013-10-11 2015-04-16 パナソニック ヘルスケアホールディングス株式会社 Culture apparatus
US10041034B2 (en) 2013-10-11 2018-08-07 Phc Holdings Corporation Culture apparatus
CN105531362B (en) * 2013-10-11 2017-09-29 松下健康医疗控股株式会社 Culture apparatus
US10023834B2 (en) 2013-10-11 2018-07-17 Phc Holdings Corporation Culture apparatus
US10041033B2 (en) 2013-10-11 2018-08-07 Phc Holdings Corporation Culture apparatus
JPWO2015119254A1 (en) * 2014-02-07 2017-03-30 東京エレクトロン株式会社 Incubator
WO2015119254A1 (en) * 2014-02-07 2015-08-13 東京エレクトロン株式会社 Culturing device
CN108795713A (en) * 2018-08-30 2018-11-13 安徽省佳逸环保科技有限公司 A kind of multi-functional incubator
CN108795713B (en) * 2018-08-30 2024-02-27 安徽省佳逸环保科技有限公司 Multifunctional incubator

Also Published As

Publication number Publication date
JP5341438B2 (en) 2013-11-13

Similar Documents

Publication Publication Date Title
JP5341438B2 (en) Incubator
EP2573162B1 (en) Culture apparatus provided with heat pipe
JP5887023B2 (en) Incubator
US8420383B2 (en) Incubation system with low temperature enclosure
JP6401987B2 (en) Cultivation apparatus and humidity control method
JP2006204186A (en) Culture apparatus
US9677041B2 (en) Culture apparatus with condensation control
US10918755B2 (en) Housing apparatus
JP2017175945A (en) Culture apparatus
JP5469913B2 (en) Thermal insulation structure and storage device having the thermal insulation structure
JP2559203B2 (en) Radiant cooling system with ice heat storage tank
JP5359555B2 (en) Insulated rice container
JP2011163583A (en) Cold insulation rice dispenser
JP2011075265A (en) Cold-insulated rice bin device
JP2002353679A (en) Cooling unit of control panel
JP2010249440A (en) Cold rice bin device
JP2007325684A (en) Icu unit
JPH10292972A (en) Electronic refrigerator
JP2003037384A (en) Cooling device
JP2017086304A (en) Exhibition device, and, exhibition method
JP2000074538A (en) Storeroom

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20110829

A711 Notification of change in applicant

Free format text: JAPANESE INTERMEDIATE CODE: A712

Effective date: 20120425

RD02 Notification of acceptance of power of attorney

Free format text: JAPANESE INTERMEDIATE CODE: A7422

Effective date: 20120514

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20130430

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20130723

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20130808

R150 Certificate of patent or registration of utility model

Ref document number: 5341438

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

S111 Request for change of ownership or part of ownership

Free format text: JAPANESE INTERMEDIATE CODE: R313113

R350 Written notification of registration of transfer

Free format text: JAPANESE INTERMEDIATE CODE: R350

S111 Request for change of ownership or part of ownership

Free format text: JAPANESE INTERMEDIATE CODE: R313113

R350 Written notification of registration of transfer

Free format text: JAPANESE INTERMEDIATE CODE: R350

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

S533 Written request for registration of change of name

Free format text: JAPANESE INTERMEDIATE CODE: R313533

R350 Written notification of registration of transfer

Free format text: JAPANESE INTERMEDIATE CODE: R350

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250