JP2013041629A - タッチ表面の端部領域におけるタッチ接触の選択的拒否 - Google Patents
タッチ表面の端部領域におけるタッチ接触の選択的拒否 Download PDFInfo
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Abstract
【解決手段】タッチセンサパネルの端部領域でのタッチ接触の選択的拒否が開示される。
更に、端部接触の拒否に対する幾つかの例外を設けることによって、タッチセンサパネルの機能を最大にすることができる。タッチセンサパネルの周囲の周りの端部帯域での接触は無視することができる。しかしながら、端部帯域での接触が閾距離又は速度を超えて移動する場合、これはジェスチャーの一部として認識することができる。種々の指のサイズに対応するために、端部帯域のサイズは、指又は親指の識別に基づいて修正することができる。更に、タッチセンサパネルの中心領域での接触が端部帯域での接触の移動を追跡する場合、端部帯域での接触はジェスチャーの一部として認識される。
【選択図】図1a
Description
本出願は、本明細書においてその全体が引用により組み込まれる2008年1月4日出願の米国暫定特許出願第61/019,220号及び2008年9月30日出願の米国特許出願第12/242,772号の利益を主張する。
従って、本発明の幾つかの実施形態によれば、拒否又は認識基準に従って、下部領域内で発生した指として識別される接触304(すなわち、一定の閾サイズのタッチの非同心画像)は、重心306が静止している場合は無視することができるが、重心が静止でない場合にはジェスチャーの一部として認識することができる。タッチ事象の識別は、本明細書においてその全体が引用により組み込まれる「Method and Apparatus for Integrating Manual Input(マニュアル入力を統合するための方法及び装置)」という名称の米国特許第6,323,846号に開示されている。本明細書で定義される静止とは、重心の移動が計算された重心の中心から閾量よりも少ないか、或いはある速度閾値未満に留まることを意味する。瞬間ポジションとローパスフィルタ(LPF)平均ポジション値との間の差が一定の閾値を超える場合、重心は移動しており、もはや静止ではないと考えることができる。この基準を使用して、緩慢なドリフティング又はローリング運動を伴う接触は無視することができるが、速いドリフトは、ジェスチャーの一部として接触を認識させることができる。
従って、2つの接触の1つが端部帯域内でタッチダウンすることができるとしても、この接触が、ある接触の主領域310でのタッチダウンとほぼ同時にタッチダウンする場合には、2つの接触をジェスチャーの一部として認識することができる。
トラックパッド700の区切りは、ファームウェアで実装することができる。
しかしながら、他の実施形態では、クリック領域のサイズ又はエリアは、意図される利用パターンを考慮し且つクリックが誤って解釈されるのを回避するために、同じでないサイズとすることができる。例えば、二次クリック領域704は一次クリック領域702よりも使用頻度が少ない可能性があるので、二次クリック領域の方をより小さくすることができ、及び/又はトラックパッド700の右下コーナーのようなクリックされる可能性が低い領域に二次クリック領域を位置付けることができる。
ほとんどの場合、静電容量トラックパッドは、保護シールド、1つ又はそれ以上の電極層、回路基板、及び特定用途向け集積回路(ASIC)を含む関連の電子機器を含む。保護シールドは、電極の上に配置され、電極は、回路基板の上部表面上に実装され、ASICは、回路基板の下部表面上に実装される。保護シールドは、下層を保護し、指がスライドできるようにするための表面を提供する役割を果たす。表面は、一般に、指が移動時にくっつかないように滑らかである。保護シールドはまた、指と電極層との間の絶縁層を提供する。電極層は、複数の空間的に別個の電極を含む。いずれか好適な数の電極を用いることができる。ほとんどの場合、より高い解像度が得られるように電極の数を増やすことが望ましく、すなわち、加速度などの事柄に対してより多くの情報を使用することができる。
I/Oコントローラ56は一般に、コンピューティングデバイス42と、該コンピューティングデバイス42との通信を望むI/Oデバイスとの間でデータを交換することによって動作する。
今日では、電気構成要素は益々小型化されつつあり、これは、機械構成要素(例えば可動トラックパッド)が臨界的サイズの制限構成要素になる可能性があることを意味する。このことが理解されると、用途によってはリニア作動(例えば、コイルバネ又は同様のものによる可動トラックパッドの支持)は理想的ではないことの理由を理解するのが容易となる。更に、バネを使用すると、製造プロセスに対して複雑さ(部品点数の増加、高コスト、高故障率など)を不必要に付加する可能性がある。バネの別の欠点は、幾つかの実施形態においてバネが触覚スイッチの力プロフィールを遮断又は損なう可能性があることである。対照的に、屈曲部86は、トラック表面74全体に渡って実質的に一定の感覚を提供することができ、ユーザに触覚スイッチフォースプロフィールのより正確な表現を与えることができる。
屈曲部86は、実質的に1つの軸だけの周りでトラックパッド72を移動するよう拘束することができる。これは、例えば、背面側などのトラックパッド72の1つの側面上の軸に沿って配列された複数の屈曲部を使用することによって達成することができる。更に、トラックパッド72が剛直に作られている場合(例えば、必要に応じて補強材84を含めることで)、均一化アーキテクチャが達成される。言い換えると、屈曲ヒンジ86は、トラックパッド72をニュートラル位置に向けて付勢し、また、実質的に1つだけの軸、すなわち屈曲ヒンジ86がフレーム76に接続されている軸の周りの移動を可能にする。
102 端部帯域
104 中心領域
106 接触
108 接触
110 重心
112 重心
114 接触
116 接触
118 移動重心
Claims (39)
- タッチセンサパネル上の接触を選択的に拒否するための方法であって、
前記タッチセンサパネル内の1つ又はそれ以上の領域を接触拒否領域として指定する段階と、
拒否又は認識基準に従って、前記1つ又はそれ以上の接触拒否領域内で検出された第1の接触を選択的に拒否又は認識する段階と、
を含む方法。 - 第2の接触が前記タッチセンサパネルの主領域内で検出された場合には、前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - 第2の接触が更に前記タッチセンサパネルの主領域内で検出され、且つ前記第1の接触が特定の閾値を超える移動を有するものとして検出された場合には、前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - 前記第1の接触が特定のジェスチャーの一部又は全部として認識された場合にのみ前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - 前記第1の接触の原因としての指又は親指の識別に従って、前記接触拒否領域のサイズを変える段階を更に含む、
請求項1に記載の方法。 - 第2の接触が更に前記タッチセンサパネルの主領域内で検出され、且つ前記第1及び第2の接触がほぼ同期した移動を有する場合に、前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - 1つ又はそれ以上の第2の接触がジェスチャーの一部として前記タッチセンサパネルの主領域内で検出された場合には、前記第1の接触を前記ジェスチャーの一部として認識する段階を更に含む、
請求項1に記載の方法。 - 前記1つ又はそれ以上の第2の接触をドラッグジェスチャーの一部として認識し、前記第1の接触を前記ドラッグジェスチャーのドラッグロック構成要素であると認識する段階を更に含む、
請求項7に記載の方法。 - 前記第1のジェスチャーを行う1つ又はそれ以上の第2の接触が前記タッチセンサパネルの主領域内で検出された場合に、第1のジェスチャーを変更するものとして前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - 前記第1の接触の計算パラメータに従って前記接触拒否領域のサイズを変える段階を更に含む、
請求項1に記載の方法。 - 前記タッチセンサパネルの周囲に沿って接触拒否領域を指定する段階を更に含む、
請求項1に記載の方法。 - 前記タッチセンサパネルの種々の端部に沿って前記接触拒否領域に種々の幅を割り当てる段階を更に含む、
請求項11に記載の方法。 - 第2の接触が前記第1の接触から特定の所定距離範囲内で検出された場合に、前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - 第2の接触が更に前記タッチセンサパネルの主領域内で検出され、且つ前記第1及び第2の接触がほぼ同時にタッチダウンした場合には、前記第1の接触を認識する段階を更に含む、
請求項1に記載の方法。 - タッチセンサパネル上の接触を選択的に拒否するためのプログラムコードを格納するコンピュータ可読記憶媒体であって、前記プログラムコードが、前記タッチセンサパネルにおいて前記タッチセンサパネルの1つ又はそれ以上の端部に沿って位置付けられる1つ又はそれ以上の指定された接触拒否領域で検出された第1の接触を、拒否又は認識基準に従って選択的に拒否又は認識する段階を含む方法を実施させるものである、
ことを特徴とするコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、第2の接触がまた前記タッチセンサパネルの主領域内で検出された場合に、前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 第2の接触がまた前記タッチセンサパネルの主領域内で検出され、且つ前記第1の接触が特定の閾値を超える移動を有するとして検出された場合には、前記プログラムコードは更に前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記第1の接触が特定のジェスチャーの一部又は全部として認識された場合のみ、前記プログラムコードは更に前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、前記第1の接触の原因としての指又は親指の識別に従って前記接触拒否領域のサイズを変えるものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 第2の接触がまた前記タッチセンサパネルの主領域内で検出され、且つ前記第1及び第2の接触がほぼ同期した移動を有する場合に、前記プログラムコードが更に前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 1つ又はそれ以上の第2の接触がジェスチャーの一部として前記タッチセンサパネルの主領域内で検出された場合には、前記プログラムコードは更に前記第1の接触を前記ジェスチャーの一部として認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、前記1つ又はそれ以上の第2の接触をドラッグジェスチャーの一部として認識し、前記第1の接触を前記ドラッグジェスチャーのドラッグロック成分として認識するものである、
ことを特徴とする請求項21に記載のコンピュータ可読記憶媒体。 - 前記第1のジェスチャーを行う1つ又はそれ以上の第2の接触が、前記タッチセンサパネルの主領域内で検出された場合に、前記プログラムコードは更に第1のジェスチャーを変えるものとして前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、前記第1の接触の計算パラメータに従って前記接触拒否領域のサイズを変えるものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、前記タッチセンサパネルの周囲に沿って接触拒否領域を指定するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、前記タッチセンサパネルの種々の端部に沿って前記接触拒否領域に種々の幅を割り当てるものである、
ことを特徴とする請求項25に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、第2の接触が前記第1の接触から特定の所定距離範囲内で検出された場合に、前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、第2の接触が更に前記タッチセンサパネルの主領域内で検出され、且つ前記第1及び第2の接触がほぼ同時にタッチダウンした場合には前記第1の接触を認識するものである、
ことを特徴とする請求項15に記載のコンピュータ可読記憶媒体。 - タッチセンサパネル上の接触を選択的に拒否するためのプログラムコードを格納するコンピュータ可読記憶媒体を含む移動電話であって、前記プログラムコードが、前記タッチセンサパネルにおいて前記タッチセンサパネルの1つ又はそれ以上の端部に沿って位置付けられる1つ又はそれ以上の指定された接触拒否領域で検出された第1の接触を、拒否又は認識基準に従って選択的に拒否又は認識する段階を含む方法を実施させるものである、ことを特徴とする移動電話。
- タッチセンサパネル上の接触を選択的に拒否するためのプログラムコードを格納するコンピュータ可読記憶媒体を含むメディアプレーヤーであって、前記プログラムコードが、前記タッチセンサパネルにおいて前記タッチセンサパネルの1つ又はそれ以上の端部に沿って位置付けられる1つ又はそれ以上の指定された接触拒否領域で検出された第1の接触を、拒否又は認識基準に従って選択的に拒否又は認識する段階を含む方法を実施させるものである、
ことを特徴とするメディアプレーヤー。 - タッチセンサパネル上の接触を選択的に拒否するためのプログラムコードを格納するコンピュータ可読記憶媒体を含むパーソナルコンピュータであって、前記プログラムコードが、前記タッチセンサパネルにおいて前記タッチセンサパネルの1つ又はそれ以上の端部に沿って位置付けられる1つ又はそれ以上の指定された接触拒否領域で検出された第1の接触を、拒否又は認識基準に従って選択的に拒否又は認識する段階を含む方法を実施させるものである、
ことを特徴とするパーソナルコンピュータ。 - タッチセンサパネル上の接触を解釈するための方法であって、
前記タッチセンサパネル内の1つ又はそれ以上の領域をクリック領域として指定する段階と、
前記タッチセンサパネルの機械クリックを検出する段階と、
特定のクリック領域におけるタッチを前記機械クリックの検出とほぼ同時に検出する段階と、
前記特定のクリック領域に応じて前記タッチを解釈する段階と、
を含む方法。 - ボタン利用パターンに応じて前記クリック領域の1つ又はそれ以上のエリアを割り当てる段階を更に含む、
請求項32に記載の方法。 - ボタン利用パターンに応じて前記クリック領域の1つ又はそれ以上のロケーションを割り当てる段階を更に含む、
請求項32に記載の方法。 - 現在のデバイス利用に応じて前記1つ又はそれ以上のクリック領域を動的に指定する段階を更に含む、
請求項32に記載の方法。 - タッチセンサパネル上の接触を解釈するためのプログラムコードを格納するコンピュータ可読記憶媒体であって、前記プログラムコードが、
前記タッチセンサパネル上のいずれかの場所に圧力を加えることによって前記機械クリックを生成できるタッチセンサパネルからの機械クリックを検出する段階と、
前記タッチセンサパネルの機械クリックが前記特定のクリック領域に応じて検出されたのとほぼ同時に前記タッチセンサパネル上の特定のクリック領域で検出されたタッチを解釈する段階と、
を含む方法を実施させるものである、
ことを特徴とするコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、ボタン利用パターンに応じて1つ又はそれ以上のクリック領域のエリアを割り当てるものである、
ことを特徴とする請求項36に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、ボタン利用パターンに応じて1つ又はそれ以上のクリック領域のロケーションを割り当てるものである、
ことを特徴とする請求項36に記載のコンピュータ可読記憶媒体。 - 前記プログラムコードが更に、現在のデバイス利用に応じて前記1つ又はそれ以上のクリック領域を動的に指定するものである、
ことを特徴とする請求項36に記載のコンピュータ可読記憶媒体。
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