JP2019503068A - 無線電力伝送用磁場遮蔽ユニット及びこれを含む無線電力伝送モジュール - Google Patents
無線電力伝送用磁場遮蔽ユニット及びこれを含む無線電力伝送モジュール Download PDFInfo
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- JP2019503068A JP2019503068A JP2018525663A JP2018525663A JP2019503068A JP 2019503068 A JP2019503068 A JP 2019503068A JP 2018525663 A JP2018525663 A JP 2018525663A JP 2018525663 A JP2018525663 A JP 2018525663A JP 2019503068 A JP2019503068 A JP 2019503068A
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- wireless power
- magnetic field
- power transmission
- field shielding
- ferrite
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Classifications
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Abstract
Description
また、前記酸化マグネシウムを含むフェライトは100kHzの周波数で複素透磁率の虚数部(μ")が50以下でありうる。
また、前記フェライトは酸化マグネシウムを3〜12モル%で含み、酸化銅8〜14モル%、酸化ニッケル及び酸化亜鉛をさらに含み、前記酸化ニッケル及び酸化亜鉛は以下の<数式1>に従う値が3.6以上でありうる。
また、前記フェライト破片は以下の<数式2>に従う異形度が8.0以下である破片を30%以上含むことができる。
また、本発明は無線電力伝送用アンテナを備えるアンテナユニット;及び前記アンテナユニットの一面に配置されて前記アンテナの特性を向上させ、前記アンテナに向かうように磁場を集束させる本発明に従う無線電力伝送用磁場遮蔽ユニット;を含む無線電力伝送モジュールを提供する。
本発明の一実施形態によれば、前記生活家電は、冷蔵庫、インダクション、ガスレンジ、掃除機、スピーカー、ミキサー、及びテレビからなる群から選択された1種以上でありうる。
また、本発明は本発明に従う無線電力伝送モジュールを送信用モジュールとして備える運送手段を提供する。
また、本明細書の全般に亘って叙述される‘フェライト’はフェライト粉末及びフェライト粉末から有機物を混合したフェライト顆粒(granule)のうち、少なくとも1つを含む成形物が焼結された焼結体、またはフェライト粉末及び有機物を混合したスラリーをフィルム上に塗布した後、乾燥、焼結工程を通じて製造された板状の焼結体を意味する。
一方、本発明に従う磁場遮蔽ユニット100、100’は酸化マグネシウムを含むフェライトが非破片化された状態でより優れる物性を発現し、場合によって、破片状態で初めから備えられて磁場遮蔽層を形成する場合にも無線電力伝送(WPT)用アンテナの特性を格段に向上させ、アンテナに向けて磁場を集束させるために酸化マグネシウムを含むフェライトは100kHzの周波数で複素透磁率の実数部(μ')が650以上であり、好ましくは実数部(μ')が830以上であり、より好ましくは実数部が1400以下でありうる。また、好ましくは前記周波数で複素透磁率の虚数部μ"は50.0以下でありうる。
また、保護部材140は前記基材フィルム140aの一面に第1接着層140bを備えることができるが、前記第2接着層140bを通じて保護部材140が磁場遮蔽層110に付着できる。前記第2接着層140bは、通常の接着層の場合、制限無しで使われることができ、単層に接着層形成組成物を通じて形成されるか、または支持フィルムの両面に接着層形成組成物が形成された両面型テープ形式の接着層でありうる。前記第2接着層140bの厚さは3〜50μmでありうるが、これに制限されるものではなく、目的によって変更して実施できる。
まず、酸化マグネシウムを含むフェライトシートを準備するステップ(a)を遂行することができる。前記酸化マグネシウムを含むフェライトシートは通常の公知のフェライトシートを製造する方法により製造できるので、本発明はこれに対して特別に限定しない。その一例に、製造方法を説明すれば、酸化ニッケル、酸化亜鉛、酸化銅、酸化マグネシウム、及び二酸化三鉄を所定の組成比になるように混合して原料混合物を収得する。この際、前記混合物は乾式混合や湿式混合を通じて混合されることができ、混合される原料の粒径は0.05〜5μmのものが好ましい。前記原料混合物に含まれる酸化マグネシウム、酸化ニッケル、酸化亜鉛などの成分はその自体または前記成分を含有する複合酸化物形態でありうる。
また、本発明の一実施形態に従う無線電力伝送用磁場遮蔽ユニット1100は、図9に図示したように、無線電力伝送用アンテナ1200が備えられるアンテナユニットの一面に配置されて無線電力伝送用モジュール1000を具現することができる。
<準備例1>
平均粒径が0.75μmのフェライト粉末(Fe2O3 48.5モル%、NiO 4.1モル%、ZnO 28.8モル%、CuO 10.3モル%、MgO 8.2モル%)100重量部に対し、ポリビニルアルコール10重量部、溶媒として純水を50重量部ボールミルで混合、溶解、分散させた。以後、混合物を直径0.5mm、高さ0.5mmである円筒孔が形成された金型に投入及び加圧成形して顆粒物を製造した。製造された顆粒物を金型に入れてプレスして最終の成形密度が3.2g/cm3、外径18mm、内径13mm、厚さ3.7mmであるドーナッツ形態に成形した後、500で10時間脱脂させ、940で2.2時間の間、焼成及び冷却してバルクフェライトを製造した。
<準備例2〜14>
準備例1と同一に実施して製造し、かつフェライト粉末の組成/組成比を以下の<表1>のように変更して、以下の<表1>のようなバルクフェライトを製造した。
<比較準備例1〜2>
準備例1と同一に実施して製造し、かつフェライト粉末の組成/組成比を以下の<表2>のように変更して、以下の<表2>のようなバルクフェライトを製造した。
<実験例>
準備例及び比較準備例により製造された試料に対し、100kHz、200kHz、及び13.56MHzで透磁率を測定して複素透磁率の実数部と虚数部を<表1>乃至<表2>に示す。
酸化マグネシウムを含まないフェライトを使用した比較準備例2の場合、準備例より複素透磁率の実数部が低く、虚数部が格段に高いことを確認することができる。
<実施形態1>
準備例1で使われたものと同一な平均粒径が0.75μmであるフェライト粉末(Fe2O3 48.5モル%、NiO 4.1モル%、ZnO 28.8モル%、CuO 10.3モル%、MgO 8.2モル%)100重量部に対し、ポリビニルブチラル樹脂5重量部、溶媒としてトルエンとエタノールを5:5で混合した溶剤50重量部をボールミルで混合、溶解、分散させた。以後、フェライト混合物を通常的なテープキャスティング(Tape casting)方法によりシート形状に製造した後、500で10時間脱脂させ、940で2.2時間の間、焼成及び冷却して最終の厚さが80μmであるフェライトシートを製造した。
<実施形態2>
準備例1で使われたものと同一な平均粒径が0.75μmであるフェライト粉末(Fe2O3 48.5モル%、NiO 4.1モル%、ZnO 28.8モル%、CuO 10.3モル%、MgO 8.2モル%)100重量部に対し、ポリビニルブチラル樹脂5重量部、溶媒にトルエンとエタノールを5:5で混合した溶剤50重量部をボールミルで混合、溶解、分散させた。以後、フェライト混合物を通常的なテープキャスティング(Tape casting)方法によりシート形状に製造した後、500で10時間脱脂させ、940で2.2時間の間、焼成及び冷却して最終の厚さが80μmであるフェライトシートを製造した。
Claims (17)
- 酸化マグネシウム(MgO)を含むフェライトを備えた磁場遮蔽層;を備え、前記酸化マグネシウムを含むフェライトは100kHzの周波数で複素透磁率の実数部(μ')が650以上である、無線電力伝送用磁場遮蔽ユニット。
- 前記磁場遮蔽ユニットは、磁場遮蔽層の一面に配置される保護部材及び前記磁場遮蔽層の他面に配置される第1接着部材をさらに含む、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記酸化マグネシウムを含むフェライトは、200kHzの周波数で複素透磁率の実数部(μ')が650以上である、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記酸化マグネシウムを含むフェライトは、100kHzの周波数で複素透磁率の虚数部(μ")が50以下である、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記酸化マグネシウムを含むフェライトは、200kHzの周波数で複素透磁率の虚数部(μ")が50以下である、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記フェライトは酸化マグネシウムを3〜12モル%で含み、酸化銅8〜14モル%、酸化ニッケル及び酸化亜鉛をさらに含み、前記酸化ニッケル及び酸化亜鉛は以下の<数式1>に従う値が3.6以上である、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記フェライトは酸化マグネシウム3〜12モル%及び酸化鉄46〜52重量%を含み、酸化銅8〜14モル%、酸化ニッケル1〜10モル%、酸化亜鉛25〜32モル%をさらに含む、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記磁場遮蔽層は遮蔽ユニットの可撓性の向上のために酸化マグネシウムを含むフェライトを破砕させた、フェライト破片で形成された、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 少なくとも一辺が直線でない湾曲形状を有するフェライト破片の個数は全体フェライト破片個数対比45%以上である、請求項8に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記フェライト破片は以下の<数式2>に従う異形度が8.0以下である破片を30%以上含む、請求項8に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記酸化マグネシウムを含むフェライトは、100kHzの周波数で複素透磁率の実数部(μ')が1000以上である、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 前記磁場遮蔽層の平均厚さは30μm〜1cmである、請求項1に記載の無線電力伝送用磁場遮蔽ユニット。
- 無線電力伝送用アンテナを備えるアンテナユニット;及び前記アンテナユニットの一面に配置されて前記アンテナの特性を向上させ、前記アンテナに向かうように磁場を集束させる請求項1に従う無線電力伝送用磁場遮蔽ユニット;を含む、無線電力伝送モジュール。
- 請求項13に従う無線電力伝送モジュールを含む、生活家電。
- 前記生活家電は、冷蔵庫、インダクション、ガスレンジ、掃除機、スピーカー、ミキサー、及びテレビからなる群から選択された1種である、請求項14に記載の生活家電。
- 前記無線電力伝送モジュールは送信用モジュールまたは受信用モジュールとして含まれる、請求項14に記載の生活家電。
- 請求項13に従う無線電力伝送モジュールを送信用モジュールとして備える、運送手段。
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US11412644B2 (en) | 2022-08-09 |
CN108353524B (zh) | 2020-05-01 |
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KR101936581B1 (ko) | 2019-01-09 |
KR20170057164A (ko) | 2017-05-24 |
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US20200253098A1 (en) | 2020-08-06 |
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