Global Laboratory Automation Workcells Market 2017-2021

  • ID: 4372368
  • Report
  • Region: Global
  • 76 pages
  • TechNavio
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FEATURED COMPANIES

  • A&T
  • Biosero
  • Hudson Robotics
  • Let's Go Robotics
  • SARSTEDT
  • Thermo Fisher Scientific
  • MORE
About Laboratory Automation Workcells

Automation workcells are special integrated systems in laboratories. These systems improve efficiency, reduce operational cost and time, minimize manpower involvement, and track the process from end-to-end with a single point entry and a disposal exit. The entire process of testing, verification, routing, scheduling, and disposal is all done within the system without any external operation. Automation workcells are available as both standardized products/off-shelf version and customized solutions to address different end-user requirements.

The analysts forecast the global laboratory automation workcells market to grow at a CAGR of 6.93% during the period 2017-2021.

Covered in this report

The report covers the present scenario and the growth prospects of the global laboratory automation workcells market for 2017-2021. To calculate the market size, the report considers new installations, retrofits, replacements, and aftermarket services.

The market is divided into the following segments based on geography:
  • Americas
  • APAC
  • EMEA
The report, Global Laboratory Automation Workcells Market 2017-2021, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market.

Key vendors
  • Peak Analysis & Automation
  • Siemens
  • Beckman Coulter
  • Hudson Robotics
  • Inpeco
Other prominent vendors
  • A&T
  • Roche
  • Thermo Fisher Scientific
  • Aim Lab Automation Technologies
  • SARSTEDT
  • Yaskawa Motoman
  • Transcriptic
  • Biosero
  • Let's Go Robotics
  • Festo
Market drivers
  • Need for environmental controls in laboratories
  • For a full, detailed list, view the full report
Market challenges
  • Increasing need for ergonomic automated workcells
  • For a full, detailed list, view the full report
Market trends
  • Increased use of cell-based assay
  • For a full, detailed list, view the full report
Key questions answered in this report
  • What will the market size be in 2021 and what will the growth rate be?
  • What are the key market trends?
  • What is driving this market?
  • What are the challenges to market growth?
  • Who are the key vendors in this market space?
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Note: Product cover images may vary from those shown
2 of 5

FEATURED COMPANIES

  • A&T
  • Biosero
  • Hudson Robotics
  • Let's Go Robotics
  • SARSTEDT
  • Thermo Fisher Scientific
  • MORE
PART 01: Executive summary

PART 02: Scope of the report

PART 03: Research Methodology

PART 04: Introduction
  • Market outline
PART 05: Market landscape
  • Market overview
  • Market size and forecast
  • Five forces analysis
PART 06: Market segmentation by integration type
  • Market overview
  • Global laboratory automation workcells market by off-shelf automation workcells
  • Global laboratory automation market by customized automation workcells
PART 07: Market segmentation by solutions
  • Market overview
  • Global laboratory automation workcells market by hardware and software solutions
  • Global laboratory automation workcells market by services
PART 08: Geographical segmentation
  • Market overview
  • Laboratory automation workcells market in Americas
  • Laboratory automation workcells market in EMEA
  • Laboratory automation workcells market in APAC
PART 09: Decision framework

PART 10: Drivers and challenges
  • Market drivers
  • Market challenges
PART 11: Market trends
  • Emergence of laboratory automation control interface
  • Increased use of cell-based assay
  • Rise in implementation of IoT in laboratories
PART 12: Vendor landscape
  • Competitive analysis
  • Other prominent vendors
PART 13: Key vendor analysis
  • Peak Analysis & Automation
  • Siemens
  • Beckman Coulter
  • Hudson Robotics
  • Inpeco
PART 14: Appendix
  • List of abbreviations
List of Exhibits
Exhibit 01: Working of laboratory automation workcells
Exhibit 02: Clinical laboratory processes
Exhibit 03: Benefits of automated laboratory
Exhibit 04: Global laboratory automation workcells market segmentation
Exhibit 05: Value-chain analysis
Exhibit 06: Global laboratory automation workcells market 2016-2021 ($ millions)
Exhibit 07: Five forces analysis
Exhibit 08: Global laboratory automation workcells market by integration type 2016 and 2021 (% share)
Exhibit 09: Global laboratory automation workcells market by off-shelf automation workcells 2016-2021 ($ millions)
Exhibit 10: Major advantages of off-shelf automation workcells products
Exhibit 11: Global laboratory automation workcells market by customized automation workcells 2016-2021 ($ millions)
Exhibit 12: Global laboratory automation workcells market by solutions 2016 and 2021 (% share)
Exhibit 13: Global laboratory automation workcells market by hardware and software solutions 2016-2021 ($ millions)
Exhibit 14: ***Performance of global laboratory automation workcells market by hardware and software solutions
Exhibit 15: Basic advantages and disadvantages of integrated solutions
Exhibit 16: Global laboratory automation workcells market by services ($ millions)
Exhibit 17: Performance of global laboratory automation workcells market by service
Exhibit 18: Services associated with laboratory automation workcells
Exhibit 19: Global laboratory automation workcells market by geography 2016 and 2021 (% share)
Exhibit 20: Laboratory automation workcells market in Americas 2016-2021 ($ millions)
Exhibit 21: Population aged above 65 years in 2015 (% of the total population)
Exhibit 22: Laboratory automation workcells market in EMEA 2016-2021 ($ millions)
Exhibit 23: Population aged above 65 years in 2015 (% of the total population)
Exhibit 24: Laboratory automation workcells market in APAC 2016-2021 ($ millions)
Exhibit 25: Population aged above 65 years in 2015 (% of the total population)
Exhibit 26: Benefits of LIMS
Exhibit 27: Necessity of automated workcells in cell-based assay
Exhibit 28: The major industries served by Peak Analysis & Automation
Exhibit 29: Process Analysis & Automation: Hardware portfolio
Exhibit 30: Process Analysis & Automation: Software portfolio
Exhibit 31: Business segments of Siemens
Exhibit 32: Clients of products and solutions of Siemens healthcare
Exhibit 33: Aptio automation: Product portfolio
Exhibit 34: Assays involved in different purpose
Exhibit 35: Business segments of Beckman Coulter
Exhibit 36: Beckman Coulter: Product portfolio
Exhibit 37: Laboratory solutions provided by Hudson Robotics
Exhibit 38: Hudson Robotics: Product portfolio
Exhibit 39: Product segmentation of Inpeco
Exhibit 40: Features of FlexLab
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FEATURED COMPANIES

  • A&T
  • Biosero
  • Hudson Robotics
  • Let's Go Robotics
  • SARSTEDT
  • Thermo Fisher Scientific
  • MORE
New Report Released: - Global Laboratory Automation Workcells Market 2017-2021

The author of the report recognizes the following companies as the key players in the global laboratory automation workcells market: Peak Analysis & Automation, Siemens, Beckman Coulter, Hudson Robotics, Inpeco.

Other Prominent Vendors in the market are: A&T, Roche, Thermo Fisher Scientific, Aim Lab Automation Technologies, SARSTEDT, Yaskawa Motoman, Transcriptic, Biosero, Let's Go Robotics, and Festo.

Commenting on the report, an analyst from the research team said: “One trend in the market is increased use of cell-based assay. A cell-based assay is the phenomenon of a number of experiments taking place simultaneously based on the use of live cells. The experiments are primarily carried out to measure cell proliferation, motility, toxicity, production, and morphology of a specimen. At present, there is a significant use of the cell-based assay for drug discovery.”

According to the report, one driver in the market is need for environmental controls in laboratories. Laboratory automated workcells can maintain the environment of an incubator. Enclosing an entire process of an experiment in a closed chamber causes less harm to the environment and ends the testing with proper disposal of unused samples. Normally, the traditional way of testing in laboratories consume a significant amount of power to maintain the necessary temperature required for experiments. During an ongoing experiment, manual handling may cause injuries to the personnel even at minor negligence. At times unused samples or sample holders, which need to be disposed of, are left unattended.

Further, the report states that one challenge in the market is increasing need for ergonomic automated workcells. Ergonomics is the ability of equipment and the user to work seamlessly within the given surrounding. Working in an automated workstation may require less human involvement in process handling. However, even automated workstations require supervision and follow up for efficient functioning. Machines cannot run single handed; they need operators, supervisors, and testers to test status and working screen to change the process if required. If automated workstations are not ergonomic, the user may suffer from musculoskeletal disorders.

The study was conducted using an objective combination of primary and secondary information including inputs from key participants in the industry. The report contains a comprehensive market and vendor landscape in addition to a SWOT analysis of the key vendors.
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  • Peak Analysis & Automation
  • Siemens
  • Beckman Coulter
  • Hudson Robotics
  • Inpeco
  • A&T
  • Roche
  • Thermo Fisher Scientific
  • Aim Lab Automation Technologies
  • SARSTEDT
  • Yaskawa Motoman
  • Transcriptic
  • Biosero
  • Let's Go Robotics
  • Festo
Note: Product cover images may vary from those shown
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Note: Product cover images may vary from those shown
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