JP6818008B2 - エアロゾル送達システムおよび関連する方法 - Google Patents
エアロゾル送達システムおよび関連する方法 Download PDFInfo
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Description
ディスプレイスクリーン13は、取り外し可能なカートリッジ14によって担持された電源120によって給電され、主PCBまたは他のPCB構成要素上に配置された電力管理モジュールによって管理され得る。
Claims (20)
- エアロゾル化された物質の用量を選択的に送達するためのエアロゾル送達ユニット(10, 210, 410)であって、
ベースハウジング(12, 212, 412)と、
前記ベースハウジング(12, 212, 412)内に設けられたアクチュエータアセンブリ(260)と、
前記ベースハウジング(12, 212, 412)に結合され、前記アクチュエータアセンブリ(260)に接続される取り外し可能なカートリッジアセンブリ(14, 214, 414)と
を備え、
前記取り外し可能なカートリッジアセンブリ(14, 214, 414)は、エアロゾル化される物質が入っているキャニスタ(16, 216, 416)と、前記キャニスタ(16, 216, 416)が中に装填されるカートリッジユニットとを含み、
前記カートリッジユニットは、前記キャニスタ(16, 216, 416)から放出される前記エアロゾル化された物質の用量を吸入するためのマウスピース開口(92, 292, 432)を有するカートリッジ本体(90, 290, 430)と、空気が前記カートリッジユニットに入ることができるための1つまたは複数の空気取入口(94, 294, 436)と、前記1つまたは複数の空気取入口(94, 294, 436)の場所から前記マウスピース開口(92, 292, 432)の場所まで延び、前記キャニスタ(16, 216, 416)の排出出口(98, 438)と流体連通する吸入通路(96, 296, 434)とを備えた、エアロゾル送達ユニットにおいて、
前記カートリッジユニットは、さらに、前記取り外し可能なカートリッジアセンブリ(14, 214, 414)に隣接する前記ベースハウジング(12, 212, 412)内に設けられた前記アクチュエータアセンブリ(260)に給電するための、前記カートリッジ本体(90, 290, 430)によって担持された電源(120, 320, 440)をさらに含むことを特徴とする、エアロゾル送達ユニット。 - 前記ベースハウジング(12, 212, 412)が、前記エアロゾル化された物質の送達に関する情報を表示する電子ディスプレイ(13, 213)を含み、前記電子ディスプレイ(13, 213)は、前記取り外し可能なカートリッジアセンブリ(14, 214, 414)の前記電源(120, 320, 440)によって給電される、請求項1に記載のエアロゾル送達ユニット。
- 圧力センサ(80, 280)が前記ベースハウジング(12, 212, 412)内に設けられており、前記圧力センサ(80, 280)は、前記取り外し可能なカートリッジアセンブリ(14, 214, 414)の前記カートリッジ本体(90, 290, 430)の前記吸入通路(96, 296, 434)内の圧力を検出するように構成されており、前記圧力センサ(80, 280)は、前記取り外し可能なカートリッジアセンブリ(14, 214, 414)の前記電源(120, 320, 440)によって給電される印刷回路基板(52, 252)によって支持されている、請求項1に記載のエアロゾル送達ユニット。
- 前記エアロゾル化された物質の送達に関する情報を送信するために、無線通信デバイスが前記ベースハウジング(12, 212, 412)内に設けられており、前記無線通信デバイスは、前記取り外し可能なカートリッジアセンブリ(14, 214, 414)の前記電源(120, 320, 440)によって給電される、請求項1に記載のエアロゾル送達ユニット(10, 210, 410)。
- 前記ベースハウジング(12, 212, 412)の空洞(24, 224, 424)が、前記取り外し可能なカートリッジアセンブリ(14, 214, 414)を前部装填方向または底部装填方向に受け入れるためのサイズと形状を有する、請求項1に記載のエアロゾル送達ユニット。
- 前記取り外し可能なカートリッジアセンブリ(14, 214, 414)は、1つまたは複数のユーザアクセス可能な解放機構(32, 231)を介して前記ベースハウジング(12, 212, 412)から選択的に解放可能である、請求項1に記載のエアロゾル送達ユニット。
- 前記カートリッジユニットは、前記ベースハウジング(12, 212, 412)の制御システム(50, 250)に接続されるための、そして、前記カートリッジユニットに搭載された前記電源(120, 320, 440)から前記ベースハウジング(12, 212, 412)に設けられた前記アクチュエータアセンブリ(260)に電気供給するための電気接点を備える、請求項1に記載のエアロゾル送達ユニット。
- 前記カートリッジユニットは、前記キャニスタ(216)および前記電源(320)を収容するシャーシ(293)と、前記シャーシ(293)から分離可能なマウスピースサブアセンブリ(295)とを備え、前記マウスピースサブアセンブリ(295)は、前記マウスピース開口(292)と前記1つまたは複数の空気取入口(294)と前記吸入通路(296)とを有する前記カートリッジ本体(290)を含む、請求項1に記載のエアロゾル送達ユニット。
- 前記カートリッジユニットは、前記キャニスタ(216)および前記電源(320)を収容する前記シャーシ(293)内に封入された用量計数装置をさらに備える、請求項8に記載のエアロゾル送達ユニット。
- 前記カートリッジユニットは、前記キャニスタ(216)および前記電源(320)を収容する前記シャーシ(293)が前記マウスピースサブアセンブリ(295)に適切に結合されたときに、適切に結合されたことを示すように構成されたスイッチデバイス(298)を含む、請求項8に記載のエアロゾル送達ユニット。
- 前記キャニスタ(16, 216, 416)は、エアロゾル化される前記物質を入れたキャニスタ本体と、前記キャニスタ(16, 216, 416)から前記エアロゾル化された物質の用量を放出するように前記キャニスタ本体に対して移動可能な弁ステム(17, 217)とを有し、
前記アクチュエータアセンブリ(260)は、前記ベースハウジング(12, 212, 412)に結合され、前記弁ステム(17, 217)に対する前記キャニスタ本体の移動を制御するために、前記キャニスタ(16, 216, 416)が前記ベースハウジング(12, 212, 412)に受け入れられたときに前記キャニスタ(16, 216, 416)に接続され、
前記アクチュエータアセンブリ(260)は、モータ(262)と、前記モータ(262)に動作可能に結合されると共に、前記キャニスタ(16, 216, 416)と係合して前記キャニスタ(16, 216, 416)の作動全体にわたって前記モータ(262)の回転位置に関連して前記キャニスタ本体を前記弁ステム(17, 217)に対して移動させるモータ駆動アクチュエータ(266, 268)とを含み、前記モータ駆動アクチュエータ(266, 268)は、回転可能なカム部材(266)と、前記回転可能なカム部材(266)と接触するよう付勢されたヨーク(268)とを含み、前記回転可能なカム部材(266)は、前記ヨーク(268)の位置を、前記キャニスタ(16, 216, 416)の作動全体にわたって前記モータ(262)の回転位置に関連して制御する、請求項1に記載のエアロゾル送達ユニット。 - 前記エアロゾル化された物質の用量を受けとるためのマウスピース(215)と、
制御システム(250)と、
をさらに備え
前記制御システム(215)は、用量送達の初めから終わりまで、前記取り外し可能なカートリッジアセンブリ(214)の前記マウスピース(215)を介したユーザの吸入から生じる圧力信号に応答して、前記キャニスタ(216)の作動を前記アクチュエータアセンブリ(260)を介して制御するように構成されている、請求項11に記載のエアロゾル送達ユニット。 - 前記ヨークは、前記回転可能なカム部材と、ウォームギアセットを有する歯車列とを含むモータ駆動装置によって前記モータに動作可能に結合されている、請求項11に記載のエアロゾル送達ユニット。
- 前記ヨークは、1つまたは複数の付勢部材(272)によって前記キャニスタ(216)の作動全体にわたって前記回転可能なカム部材(266)と直接接触するように付勢される、請求項11に記載のエアロゾル送達ユニット。
- 前記アクチュエータアセンブリ(260)はケーシング(270)を含み、前記ヨーク(268)は、前記回転可能なカム部材(266)が回転して前記キャニスタ( 216)を作動させるときに線形に移動するように前記ケーシング(270)によって拘束される、請求項11に記載のエアロゾル送達ユニット。
- 前記カートリッジ本体(90, 290, 430)の前記1つまたは複数の空気取入口(94, 294, 436)の近くの場所を介して前記吸入通路(96, 296, 434)内の圧力を検出するように構成された圧力センサ(80, 280) をさらに備え、前記圧力の変化は、前記1つまたは複数の空気取入口(94, 294, 436)を通って移動する空気の流れの1つまたは複数の特性を示す、請求項1に記載のエアロゾル送達ユニット。
- 前記圧力センサ(80, 280)は、前記ベースハウジング(12, 212, 412)によって担持され、前記カートリッジアセンブリ(14, 214, 414)が前記ベースハウジング(12, 212, 412)内に受け入れられたときに前記カートリッジユニットに接続されるように構成される、請求項16に記載のエアロゾル送達ユニット。
- 前記カートリッジユニットと係合して、前記圧力センサ(80, 280)と前記カートリッジユニットの前記吸入通路(96, 296)との間を延びるシールされた通路を提供するように配置されたシール(104, 305)をさらに備える、請求項17に記載のエアロゾル送達ユニット。
- 前記1つ又は複数の空気取入口(94, 294, 436)は、前記エアロゾル送達ユニットの対向する両側部の各々に配置されたそれぞれのオリフィスからなる、請求項16に記載のエアロゾル送達ユニット。
- 前記カートリッジ本体(90, 290, 430)は、前記吸入通路(96, 296, 434)の少なくとも大部分を画定すると共に前記1つまたは複数の空気取入口(94, 294, 436)を画定する、請求項16に記載のエアロゾル送達ユニット。
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HK1252464A1 (zh) | 2019-05-24 |
HK1251943A1 (zh) | 2019-05-03 |
HK1252464B (zh) | 2020-05-22 |
KR20180032592A (ko) | 2018-03-30 |
US20200086069A1 (en) | 2020-03-19 |
IL256689A (en) | 2018-03-29 |
AU2016296724B2 (en) | 2021-01-28 |
WO2017015303A2 (en) | 2017-01-26 |
US11040156B2 (en) | 2021-06-22 |
CN108136144B (zh) | 2020-10-30 |
CA2991138A1 (en) | 2017-01-26 |
JP2018520803A (ja) | 2018-08-02 |
IL256689B (en) | 2021-10-31 |
WO2017015303A3 (en) | 2017-03-09 |
BR112018001018B1 (pt) | 2022-07-19 |
RU2018106022A3 (ja) | 2019-09-04 |
EP3325060A2 (en) | 2018-05-30 |
CN108136144A (zh) | 2018-06-08 |
AU2016296724A1 (en) | 2018-02-01 |
US20210369987A1 (en) | 2021-12-02 |
BR112018001018A2 (pt) | 2018-09-18 |
RU2018106022A (ru) | 2019-08-20 |
EP3325060B1 (en) | 2019-07-03 |
KR102641177B1 (ko) | 2024-02-26 |
RU2738578C2 (ru) | 2020-12-14 |
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