JP5941240B2 - 金属検出器装置、システム、および方法 - Google Patents
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Description
本開示は、概して、摂取可能な構成要素を備える剤形中の金属汚染物質を検出するための金属検出器および金属検出技法に関する。より具体的には、本開示は、製造プロセス中に摂取可能な構成要素を備える剤形中の金属汚染物質を検出するための金属検出器および金属検出技法に関する。
一側面では、方法は、所定の配向でセンサ使用可能剤形を配向するステップと、金属検出器の開口を通してセンサ使用可能剤形を受容するステップと、金属検出器の開口を通してセンサ使用可能剤形を受容するステップに応答して、金属検出器によって検出信号を生成するステップと、検出信号を所定の閾値と比較するステップと、検出信号および所定の閾値の比較に基づいて、センサ使用可能剤形中の金属汚染物質の存在を判定するステップとを含む。
2)低い水平スクロールスピードおよび1V/div垂直分解能に調整する
3)既存の値を消去する(EV)
4)開口に構成要素を通過させる
5)スコープソフトウェアをフリーズし、必要な保存を行う(必要に応じて垂直分解能を調整する)
6)事象ログを印刷し、Excelシートにコピー/ペーストする(PL)
7)後続のデータセットについて2から繰り返す
スコープによって報告された振幅(dB単位)および位相が抽出され、振幅がVに変換された。
式中、Vthは、検出のための最小閾値電圧であり、SEは、金属検出器100の感度設定(0〜299)である。
式中、Vdetは、検出された電圧であり、Vthは、閾値電圧であり、Lは、デシベル単位の信号である。
本発明のさらなる側面は、以下の付記で定義される。
1.所定の配向でセンサ使用可能剤形を配向するステップと、
金属検出器の開口を通してセンサ使用可能剤形を受容するステップと、
金属検出器の開口を通してセンサ使用可能剤形を受容するステップに応答して、金属検出器によって検出信号を生成するステップと、
検出信号を所定の閾値と比較するステップと、
検出信号および所定の閾値の比較に基づいて、センサ使用可能剤形中の金属汚染物質の存在を判定するステップと、
を含む、方法。
2.検出信号が所定の閾値を超えるときに金属汚染物質を検出することを示す制御信号を生成するステップを含む、および/または水平配向、垂直配向、およびそれらの任意の組み合わせのうちのいずれか1つで、センサ使用可能剤形を配向するステップを含む、付記1に記載の方法。
3.センサ使用可能剤形が水平スロットの中に位置するときに、水平配向でセンサ使用可能剤形を位置付け、センサ使用可能剤形が垂直スロットの中に位置するときに、垂直配向でセンサ使用可能剤形を位置付けるための水平スロットおよび垂直スロットを有する、トラックを備えるガイドの中にセンサ使用可能剤形を位置付けるステップを含む、付記1または2に記載の方法。
4.第1の配向でセンサ使用可能剤形を配向するステップを含み、
検出信号を生成するステップはさらに、
金属検出器の開口を通してセンサ使用可能剤形を受容することに応答して、第1の検出信号を生成するステップを含み、
検出信号を所定の閾値と比較するステップはさらに、
センサ使用可能剤形中のセンサの存在を判定するように、第1の検出信号を第1の閾値と比較するステップを含み、本方法は好ましくは、
第2の配向でセンサ使用可能剤形を配向するステップを含み、
検出信号を生成するステップはさらに、
金属検出器の開口を通してセンサ使用可能剤形を受容することに応答して、第2の検出信号を生成するステップを含み、
検出信号を所定の閾値と比較するステップはさらに、
センサ使用可能剤形中の金属汚染物質の存在を判定するように、第2の検出信号を第2の閾値と比較するステップを含む、
付記のいずれかに記載の方法。
5.第1の閾値に対する第1の検出信号に基づいて、センサを検出することを示す第1の制御信号を生成するステップと、
第2の閾値に対する第2の検出信号に基づいて、金属汚染物質を検出することを示す第2の制御信号を生成するステップと、
を含む、付記4に記載の方法。
6.金属検出器の第1の開口を通して第1の配向でセンサ使用可能剤形を受容するステップと、
金属検出器の第1の開口とは異なる、金属検出器の第2の開口を通して第2の所定の配向でセンサ使用可能剤形を受容するステップと、
第1および第2の開口を通過するセンサ使用可能剤形に応答して、金属検出器によって第1および第2の検出信号を生成するステップと、
第1および第2の検出信号を比較するステップと、
所定の閾値に対する第1および第2の検出の間の差異に基づいて、金属汚染物質がセンサ使用可能剤形中に存在するときを判定するステップと、
を含む、付記4または5に記載の方法。
7.センサ使用可能剤形は、フレームワークの異なる側面上に位置付けられる異種金属と、フレームワークに固着される制御デバイスとを備える、摂取可能な事象インジケータシステムを備え、摂取可能な事象インジケータシステムは、制御デバイスを起動するために好適な伝導性流体と接触しているときに電位を生成し、伝導性流体を通して電流を生成するように構成される、付記のいずれかに記載の方法。
8.金属検出器の開口に対して中心、左、または右位置のうちのいずれか1つで、センサ使用可能剤形を受容するステップを含む、付記のいずれかに記載の方法。
9.センサ使用可能剤形中の金属汚染物質を検出するための装置であって、
所定の配向でセンサ使用可能剤形を位置付けるガイドと、
それを通して配向されたセンサ使用可能剤形を受容するための開口を備える、金属検出器であって、センサ使用可能剤形が金属検出器を通過するときに検出信号を生成する、金属検出器と、
金属汚染物質がセンサ使用可能剤形中に存在するときを判定するように、検出信号を所定の閾値と比較する、コンパレータ回路と、
を備える、装置。
10.金属検出器は、少なくとも1つのコイルを備え、または好ましくは、金属検出器は、少なくとも2つのコイルを備え、少なくとも1つのコイルは、電場を生成するように構成され、他方のコイルは、金属検出器の開口を通してセンサ使用可能剤形を受容することに応答して、変動信号を検出するように構成される、付記9に記載の装置。
11.ガイドは、所定の配向でセンサ使用可能剤形を位置付けるように、スロットを伴うトラック、例えば、水平配向でセンサ使用可能剤形を位置付けるように、水平スロットを伴うトラック、および/または垂直配向でセンサ使用可能剤形を位置付けるように、垂直スロットを伴うトラックを備える、付記9または10に記載の装置。
12.センサ使用可能剤形は、フレームワークの異なる側面上に位置付けられる異種金属と、フレームワークに固着される制御デバイスとを備える、摂取可能な事象インジケータシステムを備え、摂取可能な事象インジケータシステムは、制御デバイスを起動するために好適な伝導性流体と接触しているときに電位を生成し、伝導性流体を通して電流を生成するように構成される、付記9、10、または11に記載の装置。
13.センサ使用可能剤形中の金属汚染物質を検出するためのシステムであって、
付記9〜12のいずれかに記載の装置と、
コンパレータ回路に連結されるコントローラと、
を備える、システム。
14.コンパレータ回路は、検出信号に基づいて制御信号を生成し、コントローラは、制御信号に基づいて、汚染されたセンサ使用可能剤形を拒否するように構成される、付記13に記載のシステム。
15.センサ使用可能剤形中の金属汚染物質を検出するためのシステムであって、
所定の配向でセンサ使用可能剤形を位置付けるガイドと、
それを通して配向されたセンサ使用可能剤形を受容するための開口を備える、金属検出器であって、センサ使用可能剤形が金属検出器の開口を通過するときに第1の検出信号を生成する、金属検出器と、
第1の検出信号を所定の閾値と比較し、第1の検出信号に基づいて第1の制御信号を生成する、第1のコンパレータ回路と、
を備える、第1の装置と、
所定の配向でセンサ使用可能剤形を位置付けるガイドと、
それを通して配向されたセンサ使用可能剤形を受容するための開口を備える、金属検出器であって、センサ使用可能剤形が金属検出器の開口を通過するときに第2の検出信号を生成する、金属検出器と、
を備える、第2の装置と、
第2の検出信号を所定の閾値と比較し、第2の検出信号に基づいて第2の制御信号を生成する、第2のコンパレータ回路と、
第1および第2の制御信号の両方に基づいて、金属汚染物質がセンサ使用可能剤形中に存在するときを判定するように構成され、好ましくはさらに、判定に基づいて、汚染されたセンサ使用可能剤形を拒否するように構成される、第1および第2のコンパレータ回路に連結されるコントローラと、
を備える、システム。
本明細書で参照される、および/または任意の出願データシートあるいは任意の他の開示資料に記載される、上記の米国特許、米国特許出願公開、米国特許出願、外国特許、外国特許出願、非特許出版物は、本明細書と矛盾しない程度に、参照することにより本明細書に組み込まれる。したがって、必要な程度に、本明細書で明示的に記載されるような開示は、参照することにより本明細書に組み込まれる、任意の相反する資料に優先する。参照することにより本明細書に組み込まれると言われるが、既存の定義、記述、または本明細書に記載される他の開示資料と矛盾する、任意の資料またはその一部分は、その組み込まれた資料と既存の開示資料との間に生じる矛盾がない程度に組み込まれるにすぎないであろう。
Claims (30)
- 所定の配向でセンサ使用可能剤形を配向するステップと、
金属検出器の開口を通して前記センサ使用可能剤形を受容するステップと、
前記金属検出器の前記開口を通して前記センサ使用可能剤形を受容するステップに応答して、前記金属検出器によって検出信号を生成するステップと、
前記検出信号を所定の閾値と比較するステップと、
前記検出信号および前記所定の閾値の比較に基づいて、前記センサ使用可能剤形中の金属汚染物質の存在を判定するステップと、
を含む、方法。 - 前記検出信号が前記所定の閾値を超えるときに前記金属汚染物質を検出することを示す制御信号を生成するステップを含む、請求項1に記載の方法。
- 水平配向、垂直配向、およびそれらの任意の組み合わせのうちのいずれか1つで、前記センサ使用可能剤形を配向するステップを含む、請求項1に記載の方法。
- 前記センサ使用可能剤形が水平スロットの中に位置するときに、水平配向で前記センサ使用可能剤形を位置付け、そして前記センサ使用可能剤形が垂直スロットの中に位置するときに、垂直配向で前記センサ使用可能剤形を位置付けるための前記水平スロットおよび前記垂直スロットを有する、トラックを備えるガイドの中に前記センサ使用可能剤形を位置付けるステップを含む、請求項3に記載の方法。
- 前記金属検出器の前記開口に対して中心、左、または右位置のうちのいずれか1つで、前記センサ使用可能剤形を受容するステップを含む、請求項1に記載の方法。
- 第1の配向で前記センサ使用可能剤形を配向するステップを含み、
検出信号を生成するステップはさらに、
前記金属検出器の前記開口を通して前記センサ使用可能剤形を受容することに応答して、第1の検出信号を生成するステップを含み、
前記検出信号を所定の閾値と比較するステップはさらに、
前記センサ使用可能剤形中のセンサの存在を判定するように、前記第1の検出信号を第1の閾値と比較するステップを含む、
請求項1に記載の方法。 - 第2の配向で前記センサ使用可能剤形を配向するステップを含み、
検出信号を生成するステップはさらに、
前記金属検出器の前記開口を通して前記センサ使用可能剤形を受容することに応答して、第2の検出信号を生成するステップを含み、
前記検出信号を所定の閾値と比較するステップはさらに、
前記センサ使用可能剤形中の金属汚染物質の存在を判定するように、前記第2の検出信号を第2の閾値と比較するステップを含む、
請求項6に記載の方法。 - 前記第1の閾値に対する前記第1の検出信号に基づいて、前記センサを検出することを示す第1の制御信号を生成するステップと、
前記第2の閾値に対する前記第2の検出信号に基づいて、前記金属汚染物質を検出することを示す第2の制御信号を生成するステップと、
を含む、請求項7に記載の方法。 - 前記センサ使用可能剤形は、フレームワークの異なる側面上に位置付けられる異種金属と、前記フレームワークに固着される制御デバイスとを備える、摂取可能な事象インジケータシステムを備え、前記摂取可能な事象インジケータシステムは、前記制御デバイスを起動するために好適な伝導性流体と接触しているときに電位を生成し、前記伝導性流体を通して電流を生成するように構成される、請求項1に記載の方法。
- 所定の配向でセンサ使用可能剤形を位置付けるガイドと、
それを通して配向されたセンサ使用可能剤形を受容するための開口を備える、金属検出器であって、前記センサ使用可能剤形が前記金属検出器を通過するときに検出信号を生成する、金属検出器と、
金属汚染物質が前記センサ使用可能剤形中に存在するときを判定するように、前記検出信号を所定の閾値と比較する、コンパレータ回路と、
を備える、装置。 - 前記金属検出器は、少なくとも1つのコイルを備える、請求項10に記載の装置。
- 前記金属検出器は、少なくとも2つのコイルを備え、少なくとも1つのコイルは、電場を生成するように構成され、他方のコイルは、前記金属検出器の前記開口を通して前記センサ使用可能剤形を受容することに応答して、変動信号を検出するように構成される、請求項11に記載の装置。
- 前記ガイドは、所定の配向で前記センサ使用可能剤形を位置付けるように、スロットを伴うトラックを備える、請求項10に記載の装置。
- 前記トラックは、水平配向で前記センサ使用可能剤形を位置付けるように、水平スロットを備える、請求項13に記載の装置。
- 前記トラックは、垂直配向で前記センサ使用可能剤形を位置付けるように、垂直スロットを備える、請求項14に記載の装置。
- 前記センサ使用可能剤形は、フレームワークの異なる側面上に位置付けられる異種金属と、前記フレームワークに固着される制御デバイスとを備える、摂取可能な事象インジケータシステムを備え、前記摂取可能な事象インジケータシステムは、前記制御デバイスを起動するために好適な伝導性流体と接触しているときに電位を生成し、前記伝導性流体を通して電流を生成するように構成される、請求項10に記載の装置。
- センサ使用可能剤形中の金属汚染物質を検出するための装置であって、
所定の配向で前記センサ使用可能剤形を位置付けるガイドと、
それを通して配向されたセンサ使用可能剤形を受容するための開口を備える、金属検出器であって、前記センサ使用可能剤形が前記金属検出器の前記開口を通過するときに検出信号を生成する、金属検出器と、
金属汚染物質が前記センサ使用可能剤形中に存在するときを判定するように、前記検出信号を所定の閾値と比較する、コンパレータ回路と、
を備える、装置と、
前記コンパレータ回路に連結されるコントローラと、
を備える、システム。 - 前記コンパレータ回路は、前記検出信号に基づいて制御信号を生成する、請求項17に記載のシステム。
- 前記コントローラは、前記制御信号に基づいて、汚染されたセンサ使用可能剤形を拒否するように構成される、請求項18に記載のシステム。
- 前記金属検出器は、前記開口の周囲に配置される少なくとも1つのコイルを備える、請求項17に記載のシステム。
- 前記金属検出器は、少なくとも2つのコイルを備え、少なくとも1つのコイルは、電場を生成するように構成され、他方のコイルは、前記金属検出器の前記開口を通して前記センサ使用可能剤形を受容することに応答して、変動信号を検出するように構成される、請求項20に記載のシステム。
- 前記ガイドは、所定の配向で前記センサ使用可能剤形を位置付けるように、スロットを伴うトラックを備える、請求項17に記載のシステム。
- 前記トラックは、水平配向で前記センサ使用可能剤形を位置付けるように、水平スロットを備える、請求項22に記載のシステム。
- 前記トラックは、垂直配向で前記センサ使用可能剤形を位置付けるように、垂直スロットを備える、請求項23に記載のシステム。
- 前記センサ使用可能剤形は、フレームワークの異なる側面上に位置付けられる異種金属と、前記フレームワークに固着される制御デバイスとを備える、摂取可能な事象インジケータシステムを備え、前記摂取可能な事象インジケータシステムは、前記制御デバイスを起動するために好適な伝導性流体と接触しているときに電位を生成し、前記伝導性流体を通して電流を生成するように構成される、請求項17に記載のシステム。
- 第1の所定の配向でセンサ使用可能剤形を配向するステップと、
金属検出器の第1の開口を通して前記第1の配向で前記センサ使用可能剤形を受容するステップと、
前記第1の所定の配向で前記金属検出器の前記第1の開口を通過する前記センサ使用可能剤形に応答して、前記金属検出器によって第1の検出信号を生成するステップと、
第2の所定の配向で前記センサ使用可能剤形を配向するステップと、
前記金属検出器の第2の開口を通して前記第2の配向で前記センサ使用可能剤形を受容するステップと、
前記第2の所定の配向で前記金属検出器の前記第2の開口を通過する前記センサ使用可能剤形に応答して、前記金属検出器によって第2の検出信号を生成するステップと、
前記第1および第2の検出信号を比較するステップと、
所定の閾値に対する前記第1および第2の検出の間の差異に基づいて、金属汚染物質が前記センサ使用可能剤形中に存在するときを判定するステップと、
を含む、方法。 - 前記第1の所定の配向で前記センサ使用可能剤形を配向するステップは、水平配向で前記センサ使用可能剤形を配向するステップを含み、前記第2の所定の配向で前記センサ使用可能剤形を配向するステップは、垂直配向で前記センサ使用可能剤形を配向するステップを含み、請求項26に記載の方法。
- 前記水平配向で前記センサ使用可能剤形を位置付ける水平スロットと、前記垂直配向で前記センサ使用可能剤形を位置付ける垂直スロットとを備える、ガイドの中に前記センサ使用可能剤形を位置付けるステップを含む、請求項27に記載の方法。
- 前記金属検出器の前記開口に対して中心、左、または右位置のうちのいずれか1つで、前記センサ使用可能剤形を受容するステップを含む、請求項26に記載の方法。
- 前記センサ使用可能剤形は、フレームワークの異なる側面上に位置付けられる異種金属と、前記フレームワークに固着される制御デバイスとを備える、摂取可能な事象インジケータシステムを備え、前記摂取可能な事象インジケータシステムは、前記制御デバイスを起動するために好適な伝導性流体と接触しているときに電位を生成し、前記伝導性流体を通して電流を生成するように構成される、請求項26に記載の方法。
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