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自動リキッドハンドリングシステム市場-自動ピペッティングシステムと自動マイクロプレートウォッシャーに注目、2023-2035年ピペッティング技術(接触技術、空気置換技術、ピストン/容積置換技術、音響技術、フリージェット技術)、洗浄技術(超音波技術、音響技術、遠心技術)、モダリティ(固定チップ、使い捨てチップ)、機器のタイプ(スタンドアロン、個別ベンチトップワークステーション、マルチ機器システム、その他)、アプリケーション(連続希釈、プレート複製、PCR/qPCRセットアップ、プレート再フォーマット、ハイスループットスクリーニング、全ゲノム増幅、細胞培養、セルベースアッセイ、ビーズ洗浄、その他のアプリケーション)、エンドユーザー(バイオテクノロジーおよび製薬会社、学術および政府研究機関、病院および診断センター、その他のエンドユーザー)、主要地域(北米、欧州、アジア太平洋地域、中東および北アフリカ、中南米):業界動向と世界予測


Automated Liquid Handling Systems Market - Focus on Automated Pipetting Systems and Automated Microplate Washers, 2023-2035: Distribution by Pipetting Technology (Contact Technology, Air Displacement Technology, Piston / Positive Displacement Technology, Acoustic Technology and Free-jet Technology), Washing Technology (Ultrasonic Technology, Acoustic Technology and Centrifugal Technology), Modality (Fixed Tips, Disposable Tips), Type of Instrument (Standalone, Individual Benchtop Workstation, Multi Instrument Systems and Others), Application (Serial Dilution, Plate Replication, PCR / qPCR Setup, Plate Reformatting, High-throughput Screening, Whole Genome Amplification, Cell Culture, Cell-based Assays, Bead Washing and Other Applications), End User (Biotechnology and Pharmaceutical Companies, Academic and Government Research Institutes, Hospitals and Diagnostic Centers and Other End Users) and Key Geographical Regions (North America, Europe, Asia-Pacific, Middle East and North Africa, and Latin America): Industry Trends and Global Forecasts

自動リキッドハンドリングシステムの世界市場は2035年までに63億ドルに達すると予測され、予測期間2023-2035年のCAGRは7.4%で成長すると予測されている。 技術の進歩は、特にアッセイのスループットと頻度の最... もっと見る

 

 

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Roots Analysis
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2023年7月19日 US$4,799
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サマリー

自動リキッドハンドリングシステムの世界市場は2035年までに63億ドルに達すると予測され、予測期間2023-2035年のCAGRは7.4%で成長すると予測されている。

技術の進歩は、特にアッセイのスループットと頻度の最適化において、ライフサイエンス分野での技術革新を進める上で重要である。複雑なバイオ医薬品に対する需要の高まりにより、分析および製品開発ソリューションを提供するラボが世界中で急増している。ラボのプロセスの様々な段階を通じて、変数やパラメーターの綿密な管理は依然として極めて重要です。液体ハンドリング、すなわち検査目的の液体の移送は、バイオプロセスにおける極めて重要なステップである。しかし、手作業によるハンドリング技術のような従来の方法は、手順ミスのリスクを高め、継続的な人的資源の確保に関連する高い運用コストにより、柔軟性を制限している。さらに、環境やプロセスに関連する数多くの要因が、効率的な液体ハンドリングを妨げたり、影響を与えたりする可能性があり、進行中の溶液の完全性を損なう可能性がある。したがって、溶液の完全性を保護するためには、液体取り扱い全体を通して無菌状態を確保することが不可欠となる。

その結果、自動リキッドハンドリングシステムの導入が、手動ハンドリングに関連する欠点を軽減する、有望な代替手段として浮上してきた。これらの機器は臨床研究室や学術機関において多様な用途があり、卓越した精度と正確さでナノリットル単位の分注が可能である。技術の進歩と自動リキッドハンドリングシステムの採用に対する関係者の関心の高まりは、予測期間中、自動リキッドハンドリング市場全体の成長を大きく促進すると予想される。

レポート対象範囲
 自動リキッドハンドリングシステム市場を掘り下げ、ピペッティング技術、洗浄技術、モダリティ、機器タイプ、アプリケーション、エンドユーザー、主要地域を調査。
 業界に影響を与える市場成長促進要因、阻害要因、機会、課題の評価。
 トッププレイヤー間の競争状況についての洞察を含む、市場内の潜在的な利点と障壁の評価。
 主要 5 地域にわたる市場セグメントの収益予測。
 調査洞察を提示する簡潔な要約で、現状の包括的な見解を提供し、自動リキッドハンドリングシステム市場の中長期的な予想進化を予測。
 手動、半自動、自動リキッドハンドリングシステムの徹底的な比較概要。自動ピペッティングシステムの機能性、利点、様々なタイプ(チップベースと非チップベースのシステムを含む)について詳述しています。また、自動マイクロプレートウォッシャーについても取り上げ、理想的なシステムの特徴を概説するとともに、アプリケーション、採用上の課題、将来展望についても論じています。
 ピペッティング技術、認証、装置タイプ、ピペッティングヘッドオプション、システム重量、互換性のあるラボウェア、アプリケーション分野、追加機能、エンドユーザーなどの要素を網羅し、現在の自動ピペッティングシステム市場を詳細に分析。また、本章では主要プロバイダーについて、設立年、企業規模、本社所在地などを分析しています。
 企業力(設立からの年数)、製品の多様性(液体処理タスク、アプリケーション、エンドユーザーなど)、製品の強さ(装置のタイプ、追加機能、互換性のある実験器具など)に基づき、自動分注システムプロバイダーを詳細に評価。
 様々な地域で自動分注装置の製造に携わる企業を厳選し、詳細なプロフィールを掲載。各プロフィールには、会社概要、製品ポートフォリオ、財務詳細(入手可能な場合)、最近の動向、将来の展望が含まれています。
 装置の種類、対応マイクロプレートの種類、システム重量、対応ラボウェア、応用分野、用途、エンドユーザー、主要プロバイダー、設立年、企業規模、本社所在地などの要因を考慮した自動マイクロプレート洗浄機市場の包括的な分析。
 システム重量、残量、追加機能、応用分野、エンドユーザーなどの要因を考慮し、企業力、製品の多様性、製品力の基準に基づき、自動マイクロプレート洗浄機プロバイダーを幅広く評価。
 世界の多様な地域で自動マイクロプレートワッシャーの製造に携わる著名企業の詳細なプロフィールを掲載し、会社概要、製品ポートフォリオ、財務詳細(入手可能な場合)、最近の動向、将来展望を網羅。
 2018年以降の業界パートナーシップを詳細に調査し、パートナーシップ年、タイプ、自動液体処理システムタイプ、地域、人気製品、パートナーシップ数に基づくアクティブプレイヤーなどのパラメータを分析。
 2018年以降の自動液体処理システムに関して出願または付与された特許の包括的分析。考慮要素には、特許公開年、タイプ、管轄、CPCシンボル、出願人のタイプ、重点分野、主要プレーヤー、個々の譲受人、特許ベンチマーキング、引用回数に基づく評価分析が含まれます。
 SWOTフレームワークを用いた業界関連のトレンド、主要な推進要因、課題、強み、弱み、機会、脅威に関する詳細な考察。さらに、ハーベイボール分析により、これらの要因を視覚的に表現。

主要市場企業
 アジレント・テクノロジー
 ベックマン・コールター・ライフサイエンス
 エッペンドルフ
 ハミルトンロボティクス
 マイジェノスティックス
 テカン
 サーモフィッシャーサイエンティフィック

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目次

1. PREFACE
1.1. Introduction
1.2. Key Market Insights
1.3. Scope of the Report
1.4. Research Methodology
1.5. Frequently Asked Questions
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Automated Liquid Handling Systems
3.3. Manual versus Automated Liquid Handling
3.4. Automated Pipetting Systems
3.4.1. Working Mechanism of Automated Pipetting Systems
3.4.2. Types of Automated Pipetting Systems
3.4.2.1. Tip-based Pipetting Systems
3.4.2.2. Non-tip based Pipetting Systems
3.4.3. Advantages of Automated Pipetting Systems
3.5. Automated Microplate Washers
3.5.1. Features of an Ideal Automated Microplate Washer
3.6. Applications of Automated Liquid Handling Systems
3.7. Challenges in Adoption of Automated Liquid Handling Systems
3.8. Future Perspectives
4. AUTOMATED PIPETTING SYSTEMS: MARKET LANDSCAPE
4.1. Chapter Overview
4.2. Automated Pipetting Systems: Overall Market Landscape
4.2.1. Analysis by Type of Technology
4.2.2. Analysis by Pipetting Technology
4.2.3. Analysis by Certification(s)
4.2.4. Analysis by Type of Instrument(s) by Assembly
4.2.5. Analysis by Pipetting Head Option(s)
4.2.6. Analysis by Weight of Automated Pipetting System (in Kg)
4.2.7. Analysis by Compatible Labware
4.2.8. Analysis by Application Area(s)
4.2.9. Analysis by Application(s)
4.2.10. Analysis by Additional Feature(s)
4.2.11. Analysis by End User(s)
4.3. Automated Pipetting System Providers Landscape
4.3.1. Analysis by Year of Establishment
4.3.2. Analysis by Company Size
4.3.3. Analysis by Location of Headquarters (Region-wise)
4.3.4. Analysis by Company Size and Location of Headquarters (Region-wise)
4.3.5. Analysis by Location of Headquarters (Country-wise)
4.3.6. Most Active Players: Analysis by Number of Automated Pipetting Systems Manufactured
5. AUTOMATED PIPETTING SYSTEM PROVIDERS: COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions and Key Parameters
5.3. Methodology
5.4. Company Competitiveness Analysis: Automated Pipetting System Providers
5.4.1. Companies based in North America (Peer Group I)
5.4.2. Companies based in Europe (Peer Group II)
5.4.3. Companies based in Asia-Pacific and Rest of the World (Peer Group III)
6. AUTOMATED PIPETTING SYSTEM PROVIDERS: COMPANY PROFILES
6.1. Chapter Overview
6.2. Beckman Coulter Life Sciences
6.2.1. Company Overview
6.2.2. Financial Information
6.2.3. Product Portfolio
6.2.4. Recent Developments and Future Outlook
6.3. Eppendorf
6.3.1. Company Overview
6.3.2. Financial Information
6.3.3. Product Portfolio
6.3.4. Recent Developments and Future Outlook
6.4. Hamilton Robotics
6.4.1. Company Overview
6.4.2. Product Portfolio
6.4.3. Recent Developments and Future Outlook
6.5. MyGenostics
6.5.1. Company Overview
6.5.2. Product Portfolio
6.5.3. Recent Developments and Future Outlook
7. AUTOMATED MICROPLATE WASHERS: MARKET LANDSCAPE
7.1. Chapter Overview
7.2. Automated Microplate Washers: Overall Market Landscape
7.2.1. Analysis by Type of Instrument(s) by Assembly
7.2.2. Analysis by Compatible Microplate(s)
7.2.3. Analysis by Weight of Automated Microplate Washer (in Kg)
7.2.4. Analysis by Compatible Software
7.2.5. Analysis by Compatible Labware
7.2.6. Analysis by Application Area(s)
7.2.7. Analysis by Application(s)
7.2.8. Analysis by End User(s)
7.3. Automated Microplate Washer Providers Landscape
7.3.1. Analysis by Year of Establishment
7.3.2. Analysis by Company Size
7.3.3. Analysis by Location of Headquarters (Region-wise)
7.3.4. Analysis by Company Size and Location of Headquarters (Region-wise)
7.3.5. Analysis by Location of Headquarters (Country-wise)
7.3.6. Most Active Players: Analysis by Number of Automated Microplate Washers Manufactured
8. AUTOMATED MICROPLATE WASHER PROVIDERS: COMPETITIVENESS ANALYSIS
8.1. Chapter Overview
8.2. Assumptions and Key Parameters
8.3. Methodology
8.4. Company Competitiveness Analysis: Automated Microplate Washer Providers
8.4.1. Companies based in North America (Peer Group I)
8.4.2. Companies based in Europe (Peer Group II)
8.4.3. Companies based in Asia-Pacific and Rest of the World (Peer Group III)
9. AUTOMATED MICROPLATE WASHER PROVIDERS: COMPANY PROFILES
9.1. Chapter Overview
9.2. Agilent Technologies
9.2.1. Company Overview
9.2.2. Financial Information
9.2.3. Product Portfolio
9.2.4. Recent Developments and Future Outlook
9.3. Tecan
9.3.1. Company Overview
9.3.2. Financial Information
9.3.3. Product Portfolio
9.3.4. Recent Developments and Future Outlook
9.4. Thermo Fisher Scientific
9.4.1. Company Overview
9.4.2. Financial Information
9.4.3. Product Portfolio
9.4.4. Recent Developments and Future Outlook
10. PARTNERSHIPS AND COLLABORATIONS
10.1. Chapter Overview
10.2. Partnership Models
10.3. Automated Liquid Handling Systems: Partnerships and Collaborations
10.3.1. Analysis by Year of Partnership
10.3.2. Analysis by Type of Partnership
10.3.3. Analysis by Year and Type of Partnership
10.3.4. Analysis by Type of Automated Liquid Handling System(s)
10.3.5. Analysis by Product and Type of Partnership
10.3.6. Most Popular Products: Distribution by Number of Partnerships
10.3.7. Most Active Players: Analysis by Type of Partnership
10.3.8. Analysis by Geography
10.3.8.1. Local and International Agreements
10.3.8.2. Intracontinental and Intercontinental Agreements
11. PATENT ANALYSIS
11.1. Chapter Overview
11.2. Scope and Methodology
11.3. Automated Liquid Handling Systems: Patent Analysis
11.3.1. Analysis by Patent Publication Year
11.3.2. Analysis by Annual Number of Granted Patents and Patent Applications
11.3.3. Analysis by Geography
11.3.4. Analysis by CPC Sections
11.3.5. Word Cloud Analysis: Emerging Focus Areas
11.3.6. Analysis by Type of Organization
11.3.7. Leading Industry Players: Analysis by Number of Patents
11.3.8. Leading Non-Industry Players: Analysis by Number of Patents
11.3.9. Leading Individual Assignees: Analysis by Number of Patents
11.4. Automated Liquid Handling Systems: Patent Benchmarking Analysis
11.4.1. Analysis by Patent Characteristics
11.5. Automated Liquid Handling Systems: Patent Valuation Analysis
11.6. Leading Patents: Analysis by Number of Citations
12. MARKET SIZING AND OPPORTUNITY ANALYSIS
12.1. Chapter Overview
12.2. Methodology and Key Assumptions
12.3. Global Automated Liquid Handling Systems Market, 2023-2035
12.3.1. Automated Liquid Handling Systems Market: Distribution by Type of Automated
Liquid Handling System
12.3.1.1. Automated Pipetting Systems Market: 2023-2035
12.3.1.1.1. Automated Pipetting Systems Market: Distribution by Pipetting Technology, 2023 and 2035
12.3.1.1.1.1. Automated Pipetting Systems Market for Contact Technology, 2023-2035
12.3.1.1.1.2. Automated Pipetting Systems Market for Air Displacement Technology, 2023-2035
12.3.1.1.1.3. Automated Pipetting Systems Market for Piston / Positive Displacement Technology, 2023-2035
12.3.1.1.1.4. Automated Pipetting Systems Market for Acoustic Technology, 2023-2035
12.3.1.1.1.5. Automated Pipetting Systems Market for Free-jet Technology, 2023-2035
12.3.1.1.2. Automated Pipetting Systems Market: Distribution by Modality, 2023 and 2035
12.3.1.1.2.1. Automated Pipetting Systems Market for Fixed Tips, 2023-2035
12.3.1.1.2.2. Automated Pipetting Systems Market for Disposable Tips, 2023-2035
12.3.1.1.3. Automated Pipetting Systems Market: Distribution by Type of Instrument, 2023 and 2035
12.3.1.1.3.1. Automated Pipetting Systems Market for Standalone, 2023-2035
12.3.1.1.3.2. Automated Pipetting Systems Market for Individual Benchtop Workstation, 2023-2035
12.3.1.1.3.1. Automated Pipetting Systems Market for Multi Instrument System, 2023-2035
12.3.1.1.3.2. Automated Pipetting Systems Market for Others, 2023-2035
12.3.1.1.4. Automated Pipetting Systems Market: Distribution by Application, 2023 and 2035
12.3.1.1.4.1. Automated Pipetting Systems Market for Serial Dilution, 2023-2035
12.3.1.1.4.2. Automated Pipetting Systems Market for Plate Replication, 2023-2035
12.3.1.1.4.3. Automated Pipetting Systems Market for PCR / qPCR Setup, 2023-2035
12.3.1.1.4.4. Automated Pipetting Systems Market for Plate Reformatting, 2023-2035
12.3.1.1.4.5. Automated Pipetting Systems Market for High-throughput Screening, 2023-2035
12.3.1.1.4.6. Automated Pipetting Systems Market for Whole Genome Amplification, 2023-2035
12.3.1.1.4.7. Automated Pipetting Systems Market for Cell Culture, 2023-2035
12.3.1.1.4.8. Automated Pipetting Systems Market for Other Applications, 2023-2035
12.3.1.1.5. Automated Pipetting Systems Market: Distribution by End User, 2023 and 2035
12.3.1.1.5.1. Automated Pipetting Systems Market for Biotechnology and Pharmaceutical Companies, 2023-2035
12.3.1.1.5.2. Automated Pipetting Systems Market for Academic and Government Research Institutes, 2023-2035
12.3.1.1.5.3. Automated Pipetting Systems Market for Hospitals and Diagnostic Centers, 2023-2035
12.3.1.1.5.4. Automated Pipetting Systems Market for Other End Users, 2023-2035
12.3.1.1.6. Automated Pipetting Systems Market: Distribution by Key Geographical Regions, 2023 and 2035
12.3.1.1.6.1 Automated Pipetting Systems Market in North America, 2023-2035
12.3.1.1.6.2. Automated Pipetting Systems Market in Europe, 2023-2035
12.3.1.1.6.3. Automated Pipetting Systems Market in Asia-Pacific, 2023-2035
12.3.1.1.6.4. Automated Pipetting Systems Market in Middle East and North Africa, 2023-2035
12.3.1.1.6.5. Automated Pipetting Systems Market in Latin America, 2023-2035
12.3.1.2. Automated Microplate Washers Market: 2023-2035
12.3.1.2.1. Automated Microplate Washers Market: Distribution by Washing Technology, 2023 and 2035
12.3.1.2.1.1. Automated Microplate Washers Market for Ultrasonic Technology, 2023-2035
12.3.1.2.1.2. Automated Microplate Washers Market for Acoustic Technology, 2023-2035
12.3.1.2.1.3. Automated Microplate Washers Market for Centrifugal Technology, 2023-2035
12.3.1.2.2. Automated Microplate Washers Market: Distribution by Application, 2023 and 2035
12.3.1.2.2.1. Automated Microplate Washers Market for ELISA, 2023-2035
12.3.1.2.2.2. Automated Microplate Washers Market for Cell-based Assays, 2023-2035
12.3.1.2.2.3. Automated Microplate Washers Market for Bead Washing, 2023-2035
12.3.1.2.2.4. Automated Microplate Washers Market for Other Applications, 2023-2035
12.3.1.2.3. Automated Microplate Washers Market: Distribution by End User, 2023 and 2035
12.3.1.2.3.1. Automated Microplate Washers Market for Biotechnology and Pharmaceutical Companies, 2023-2035
12.3.1.2.3.2. Automated Microplate Washers Market for Academic and Government Research Institutes, 2023-2035
12.3.1.2.3.3. Automated Microplate Washers Market for Hospitals and Diagnostic Centers, 2023-2035
12.3.1.2.3.4. Automated Microplate Washers Market for Other End Users, 2023-2035
12.3.1.2.4. Automated Microplate Washers Market: Distribution by Key Geographical Regions, 2023 and 2035
12.3.1.2.4.1. Automated Microplate Washers Market in North America, 2023-2035
12.3.1.2.4.2. Automated Microplate Washers Market in Europe, 2023-2035
12.3.1.2.4.3. Automated Microplate Washers Market in Asia-Pacific, 2023-2035
12.3.1.2.4.4. Automated Microplate Washers Market in Middle East and North Africa, 2023-2035
12.3.1.2.4.5. Automated Microplate Washers Market in Latin America, 2023-2035
13. SWOT ANALYSIS
13.1. Chapter Overview
13.2. Automated Liquid Handling Systems: SWOT Analysis
13.3. Comparison of SWOT Factors
13.3.1. Weaknesses
13.3.2. Opportunities
13.3.3. Threats
13.4. Concluding Remarks
14. CONCLUDING REMARKS
15. APPENDIX I: TABULATED DATA
16. APPENDIX II: LIST OF COMPANIES AND ORGANIZATIONS

 

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Summary

The global automated liquid handling systems market is expected to reach USD 6.30 billion by 2035 and is anticipated to grow at a CAGR of 7.4% during the forecast period 2023-2035

Technological progress is instrumental in advancing innovation within the life sciences sector, particularly in optimizing assay throughput and frequency. The rising demand for complex biopharmaceuticals has led to a proliferation of laboratories worldwide offering analytical and product development solutions. Throughout various stages of laboratory processes, meticulous control of variables and parameters remains crucial. Liquid handling, the transfer of fluids for testing purposes, stands as a pivotal step in bioprocessing. However, traditional methods, such as manual handling techniques, heighten the risk of procedural errors and limit flexibility due to the high operational costs associated with continuous human resource availability. Additionally, numerous environmental and process-related factors can hinder or influence efficient liquid handling, potentially compromising the integrity of the solution in progress. Hence, ensuring aseptic conditions throughout liquid handling becomes imperative to safeguard the solution's integrity.

Consequently, the introduction of automated liquid handling systems has emerged as a promising alternative, mitigating the drawbacks associated with manual handling. These instruments have diverse applications in clinical research laboratories and academic institutions, capable of dispensing liquid volumes down to nanoliters with exceptional precision and accuracy. The increasing interest among stakeholders in technological advancements and the adoption of automated liquid handling systems is expected to significantly drive growth in the overall automated liquid handling market during the forecast period.

Report Coverage
 The analysis delves into the automated liquid handling systems market, examining pipetting technology, washing technology, modality, instrument type, application, end user, and key geographical regions.
 Evaluation of market growth drivers, restraints, opportunities, and challenges that impact the industry.
 Assessment of potential advantages and barriers within the market, including insights into the competitive landscape among top players.
 Revenue forecasting for market segments across five major regions.
 A concise summary presenting research insights, offering a comprehensive view of the current state, and projecting the anticipated evolution of the automated liquid handling systems market in the medium-to-long term.
 A thorough comparative overview of manual, semi-automated, and automated liquid handling systems. This section details the functionality, benefits, and various types of automated pipetting systems, encompassing tip-based and non-tip based systems. It also covers automated microplate washers and outlines ideal system features, while discussing applications, adoption challenges, and future prospects.
 Detailed analysis of the current automated pipetting systems market landscape, encompassing factors such as pipetting technology, certification, instrument types, pipetting head options, system weight, compatible labware, application areas, additional features, and end users. This chapter also examines key providers, analyzing their establishment years, company size, and headquarters locations.
 In-depth evaluation of automated pipetting system providers based on company strength (years since establishment), product diversity (liquid handling tasks, applications, end users, etc.), and product strength (instrument types, additional features, compatible labware, etc.).
 Elaborate profiles of selected companies involved in automated pipetting systems' manufacturing across diverse regions. Each profile includes an overview of the company, product portfolio, financial details (if available), recent developments, and future perspectives.
 Comprehensive analysis of the automated microplate washers market, considering factors like instrument types, compatible microplate types, system weight, compatible labware, application areas, applications, end users, key providers, establishment years, company size, and headquarters locations.
 Extensive evaluation of automated microplate washer providers based on company strength, product diversity, and product strength criteria, considering factors such as system weight, residual volume, additional features, application areas, and end users.
 Detailed profiles of prominent companies engaged in automated microplate washer manufacturing across diverse global regions, encompassing company overview, product portfolio, financial details (if available), recent developments, and future prospects.
 In-depth examination of industry partnerships since 2018, analyzing parameters like partnership year, type, automated liquid handling system type, geography, popular products, and active players based on the number of partnerships.
 Comprehensive analysis of patents filed or granted concerning automated liquid handling systems since 2018. Factors considered include patent publication year, type, jurisdiction, CPC symbols, applicant types, focus areas, leading players, individual assignees, patent benchmarking, and valuation analysis based on citation count.
 Detailed discourse on industry-related trends, key drivers, challenges, strengths, weaknesses, opportunities, and threats using a SWOT framework. Additionally, visual representation of these factors through a Harvey ball analysis.

Key Market Companies
 Agilent Technologies
 Beckman Coulter Life Sciences
 Eppendorf
 Hamilton Robotics
 MyGenostics
 Tecan
 Thermo Fisher Scientific



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Table of Contents

1. PREFACE
1.1. Introduction
1.2. Key Market Insights
1.3. Scope of the Report
1.4. Research Methodology
1.5. Frequently Asked Questions
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Automated Liquid Handling Systems
3.3. Manual versus Automated Liquid Handling
3.4. Automated Pipetting Systems
3.4.1. Working Mechanism of Automated Pipetting Systems
3.4.2. Types of Automated Pipetting Systems
3.4.2.1. Tip-based Pipetting Systems
3.4.2.2. Non-tip based Pipetting Systems
3.4.3. Advantages of Automated Pipetting Systems
3.5. Automated Microplate Washers
3.5.1. Features of an Ideal Automated Microplate Washer
3.6. Applications of Automated Liquid Handling Systems
3.7. Challenges in Adoption of Automated Liquid Handling Systems
3.8. Future Perspectives
4. AUTOMATED PIPETTING SYSTEMS: MARKET LANDSCAPE
4.1. Chapter Overview
4.2. Automated Pipetting Systems: Overall Market Landscape
4.2.1. Analysis by Type of Technology
4.2.2. Analysis by Pipetting Technology
4.2.3. Analysis by Certification(s)
4.2.4. Analysis by Type of Instrument(s) by Assembly
4.2.5. Analysis by Pipetting Head Option(s)
4.2.6. Analysis by Weight of Automated Pipetting System (in Kg)
4.2.7. Analysis by Compatible Labware
4.2.8. Analysis by Application Area(s)
4.2.9. Analysis by Application(s)
4.2.10. Analysis by Additional Feature(s)
4.2.11. Analysis by End User(s)
4.3. Automated Pipetting System Providers Landscape
4.3.1. Analysis by Year of Establishment
4.3.2. Analysis by Company Size
4.3.3. Analysis by Location of Headquarters (Region-wise)
4.3.4. Analysis by Company Size and Location of Headquarters (Region-wise)
4.3.5. Analysis by Location of Headquarters (Country-wise)
4.3.6. Most Active Players: Analysis by Number of Automated Pipetting Systems Manufactured
5. AUTOMATED PIPETTING SYSTEM PROVIDERS: COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions and Key Parameters
5.3. Methodology
5.4. Company Competitiveness Analysis: Automated Pipetting System Providers
5.4.1. Companies based in North America (Peer Group I)
5.4.2. Companies based in Europe (Peer Group II)
5.4.3. Companies based in Asia-Pacific and Rest of the World (Peer Group III)
6. AUTOMATED PIPETTING SYSTEM PROVIDERS: COMPANY PROFILES
6.1. Chapter Overview
6.2. Beckman Coulter Life Sciences
6.2.1. Company Overview
6.2.2. Financial Information
6.2.3. Product Portfolio
6.2.4. Recent Developments and Future Outlook
6.3. Eppendorf
6.3.1. Company Overview
6.3.2. Financial Information
6.3.3. Product Portfolio
6.3.4. Recent Developments and Future Outlook
6.4. Hamilton Robotics
6.4.1. Company Overview
6.4.2. Product Portfolio
6.4.3. Recent Developments and Future Outlook
6.5. MyGenostics
6.5.1. Company Overview
6.5.2. Product Portfolio
6.5.3. Recent Developments and Future Outlook
7. AUTOMATED MICROPLATE WASHERS: MARKET LANDSCAPE
7.1. Chapter Overview
7.2. Automated Microplate Washers: Overall Market Landscape
7.2.1. Analysis by Type of Instrument(s) by Assembly
7.2.2. Analysis by Compatible Microplate(s)
7.2.3. Analysis by Weight of Automated Microplate Washer (in Kg)
7.2.4. Analysis by Compatible Software
7.2.5. Analysis by Compatible Labware
7.2.6. Analysis by Application Area(s)
7.2.7. Analysis by Application(s)
7.2.8. Analysis by End User(s)
7.3. Automated Microplate Washer Providers Landscape
7.3.1. Analysis by Year of Establishment
7.3.2. Analysis by Company Size
7.3.3. Analysis by Location of Headquarters (Region-wise)
7.3.4. Analysis by Company Size and Location of Headquarters (Region-wise)
7.3.5. Analysis by Location of Headquarters (Country-wise)
7.3.6. Most Active Players: Analysis by Number of Automated Microplate Washers Manufactured
8. AUTOMATED MICROPLATE WASHER PROVIDERS: COMPETITIVENESS ANALYSIS
8.1. Chapter Overview
8.2. Assumptions and Key Parameters
8.3. Methodology
8.4. Company Competitiveness Analysis: Automated Microplate Washer Providers
8.4.1. Companies based in North America (Peer Group I)
8.4.2. Companies based in Europe (Peer Group II)
8.4.3. Companies based in Asia-Pacific and Rest of the World (Peer Group III)
9. AUTOMATED MICROPLATE WASHER PROVIDERS: COMPANY PROFILES
9.1. Chapter Overview
9.2. Agilent Technologies
9.2.1. Company Overview
9.2.2. Financial Information
9.2.3. Product Portfolio
9.2.4. Recent Developments and Future Outlook
9.3. Tecan
9.3.1. Company Overview
9.3.2. Financial Information
9.3.3. Product Portfolio
9.3.4. Recent Developments and Future Outlook
9.4. Thermo Fisher Scientific
9.4.1. Company Overview
9.4.2. Financial Information
9.4.3. Product Portfolio
9.4.4. Recent Developments and Future Outlook
10. PARTNERSHIPS AND COLLABORATIONS
10.1. Chapter Overview
10.2. Partnership Models
10.3. Automated Liquid Handling Systems: Partnerships and Collaborations
10.3.1. Analysis by Year of Partnership
10.3.2. Analysis by Type of Partnership
10.3.3. Analysis by Year and Type of Partnership
10.3.4. Analysis by Type of Automated Liquid Handling System(s)
10.3.5. Analysis by Product and Type of Partnership
10.3.6. Most Popular Products: Distribution by Number of Partnerships
10.3.7. Most Active Players: Analysis by Type of Partnership
10.3.8. Analysis by Geography
10.3.8.1. Local and International Agreements
10.3.8.2. Intracontinental and Intercontinental Agreements
11. PATENT ANALYSIS
11.1. Chapter Overview
11.2. Scope and Methodology
11.3. Automated Liquid Handling Systems: Patent Analysis
11.3.1. Analysis by Patent Publication Year
11.3.2. Analysis by Annual Number of Granted Patents and Patent Applications
11.3.3. Analysis by Geography
11.3.4. Analysis by CPC Sections
11.3.5. Word Cloud Analysis: Emerging Focus Areas
11.3.6. Analysis by Type of Organization
11.3.7. Leading Industry Players: Analysis by Number of Patents
11.3.8. Leading Non-Industry Players: Analysis by Number of Patents
11.3.9. Leading Individual Assignees: Analysis by Number of Patents
11.4. Automated Liquid Handling Systems: Patent Benchmarking Analysis
11.4.1. Analysis by Patent Characteristics
11.5. Automated Liquid Handling Systems: Patent Valuation Analysis
11.6. Leading Patents: Analysis by Number of Citations
12. MARKET SIZING AND OPPORTUNITY ANALYSIS
12.1. Chapter Overview
12.2. Methodology and Key Assumptions
12.3. Global Automated Liquid Handling Systems Market, 2023-2035
12.3.1. Automated Liquid Handling Systems Market: Distribution by Type of Automated
Liquid Handling System
12.3.1.1. Automated Pipetting Systems Market: 2023-2035
12.3.1.1.1. Automated Pipetting Systems Market: Distribution by Pipetting Technology, 2023 and 2035
12.3.1.1.1.1. Automated Pipetting Systems Market for Contact Technology, 2023-2035
12.3.1.1.1.2. Automated Pipetting Systems Market for Air Displacement Technology, 2023-2035
12.3.1.1.1.3. Automated Pipetting Systems Market for Piston / Positive Displacement Technology, 2023-2035
12.3.1.1.1.4. Automated Pipetting Systems Market for Acoustic Technology, 2023-2035
12.3.1.1.1.5. Automated Pipetting Systems Market for Free-jet Technology, 2023-2035
12.3.1.1.2. Automated Pipetting Systems Market: Distribution by Modality, 2023 and 2035
12.3.1.1.2.1. Automated Pipetting Systems Market for Fixed Tips, 2023-2035
12.3.1.1.2.2. Automated Pipetting Systems Market for Disposable Tips, 2023-2035
12.3.1.1.3. Automated Pipetting Systems Market: Distribution by Type of Instrument, 2023 and 2035
12.3.1.1.3.1. Automated Pipetting Systems Market for Standalone, 2023-2035
12.3.1.1.3.2. Automated Pipetting Systems Market for Individual Benchtop Workstation, 2023-2035
12.3.1.1.3.1. Automated Pipetting Systems Market for Multi Instrument System, 2023-2035
12.3.1.1.3.2. Automated Pipetting Systems Market for Others, 2023-2035
12.3.1.1.4. Automated Pipetting Systems Market: Distribution by Application, 2023 and 2035
12.3.1.1.4.1. Automated Pipetting Systems Market for Serial Dilution, 2023-2035
12.3.1.1.4.2. Automated Pipetting Systems Market for Plate Replication, 2023-2035
12.3.1.1.4.3. Automated Pipetting Systems Market for PCR / qPCR Setup, 2023-2035
12.3.1.1.4.4. Automated Pipetting Systems Market for Plate Reformatting, 2023-2035
12.3.1.1.4.5. Automated Pipetting Systems Market for High-throughput Screening, 2023-2035
12.3.1.1.4.6. Automated Pipetting Systems Market for Whole Genome Amplification, 2023-2035
12.3.1.1.4.7. Automated Pipetting Systems Market for Cell Culture, 2023-2035
12.3.1.1.4.8. Automated Pipetting Systems Market for Other Applications, 2023-2035
12.3.1.1.5. Automated Pipetting Systems Market: Distribution by End User, 2023 and 2035
12.3.1.1.5.1. Automated Pipetting Systems Market for Biotechnology and Pharmaceutical Companies, 2023-2035
12.3.1.1.5.2. Automated Pipetting Systems Market for Academic and Government Research Institutes, 2023-2035
12.3.1.1.5.3. Automated Pipetting Systems Market for Hospitals and Diagnostic Centers, 2023-2035
12.3.1.1.5.4. Automated Pipetting Systems Market for Other End Users, 2023-2035
12.3.1.1.6. Automated Pipetting Systems Market: Distribution by Key Geographical Regions, 2023 and 2035
12.3.1.1.6.1 Automated Pipetting Systems Market in North America, 2023-2035
12.3.1.1.6.2. Automated Pipetting Systems Market in Europe, 2023-2035
12.3.1.1.6.3. Automated Pipetting Systems Market in Asia-Pacific, 2023-2035
12.3.1.1.6.4. Automated Pipetting Systems Market in Middle East and North Africa, 2023-2035
12.3.1.1.6.5. Automated Pipetting Systems Market in Latin America, 2023-2035
12.3.1.2. Automated Microplate Washers Market: 2023-2035
12.3.1.2.1. Automated Microplate Washers Market: Distribution by Washing Technology, 2023 and 2035
12.3.1.2.1.1. Automated Microplate Washers Market for Ultrasonic Technology, 2023-2035
12.3.1.2.1.2. Automated Microplate Washers Market for Acoustic Technology, 2023-2035
12.3.1.2.1.3. Automated Microplate Washers Market for Centrifugal Technology, 2023-2035
12.3.1.2.2. Automated Microplate Washers Market: Distribution by Application, 2023 and 2035
12.3.1.2.2.1. Automated Microplate Washers Market for ELISA, 2023-2035
12.3.1.2.2.2. Automated Microplate Washers Market for Cell-based Assays, 2023-2035
12.3.1.2.2.3. Automated Microplate Washers Market for Bead Washing, 2023-2035
12.3.1.2.2.4. Automated Microplate Washers Market for Other Applications, 2023-2035
12.3.1.2.3. Automated Microplate Washers Market: Distribution by End User, 2023 and 2035
12.3.1.2.3.1. Automated Microplate Washers Market for Biotechnology and Pharmaceutical Companies, 2023-2035
12.3.1.2.3.2. Automated Microplate Washers Market for Academic and Government Research Institutes, 2023-2035
12.3.1.2.3.3. Automated Microplate Washers Market for Hospitals and Diagnostic Centers, 2023-2035
12.3.1.2.3.4. Automated Microplate Washers Market for Other End Users, 2023-2035
12.3.1.2.4. Automated Microplate Washers Market: Distribution by Key Geographical Regions, 2023 and 2035
12.3.1.2.4.1. Automated Microplate Washers Market in North America, 2023-2035
12.3.1.2.4.2. Automated Microplate Washers Market in Europe, 2023-2035
12.3.1.2.4.3. Automated Microplate Washers Market in Asia-Pacific, 2023-2035
12.3.1.2.4.4. Automated Microplate Washers Market in Middle East and North Africa, 2023-2035
12.3.1.2.4.5. Automated Microplate Washers Market in Latin America, 2023-2035
13. SWOT ANALYSIS
13.1. Chapter Overview
13.2. Automated Liquid Handling Systems: SWOT Analysis
13.3. Comparison of SWOT Factors
13.3.1. Weaknesses
13.3.2. Opportunities
13.3.3. Threats
13.4. Concluding Remarks
14. CONCLUDING REMARKS
15. APPENDIX I: TABULATED DATA
16. APPENDIX II: LIST OF COMPANIES AND ORGANIZATIONS

 

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