#Electronic Multichannel Pipette
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Laboratory Equipment: Essential Tools for Research and Development
Microscopes are indispensable tools for laboratories as they enable researchers to see structures and features too small for the naked eye. Different types of microscopes like compound, stereo, and electron microscopes allow examination of cells, tissues and various samples at different levels of magnification. Compound microscopes have interchangeable objectives and ocular lenses that provide low to high magnifications from 40X to 1000X. Stereo microscopes give low magnifications from 6X to 120X and are ideal for viewing three-dimensional samples. Electron microscopes have resolutions down to the nanometer level and are crucial for cellular and molecular analysis. Microscopes continue advancing with techniques like fluorescence and confocal microscopy for live cell imaging. Laboratory Equipment: Pipettes and Dispensers Handling small liquid volumes accurately is critical in many experimental procedures. Pipettes available in various fixed and adjustable volumes are used to transfer samples, reagents, drugs and more between tubes, plates or vessels. Manual pipettes come in single channel and multichannel varieties for quickly dispensing set volumes. Electronic pipettes automate repetitive pipetting with adjustable speed and greater reproducibility. Dispensers are also available for liquid handling, dispensing adhesive liquids, organic solvents and even highly viscous materials. Automated liquid handlers are large capital equipment that can pipette thousands of samples in parallel for high throughput experiments. Centrifuges Centrifugation is a fundamental separation technique used across all types of laboratories. Benchtop centrifuges are simple bi-phasic models suitable for routine pelleting of cells, small particles and precipitates. They provide RCFs (relative centrifugal forces) from 1000 to 12000g. Preparative centrifuges have larger rotors and capacities for voluminous sample processing. Ultracentrifuges enable high speed sedimentation by developing enormous RCFs over 100,000g. Models for ultracentrifugation employ zonal, swinging bucket or fixed angle rotors depending on the separation goals. Selecting the right centrifuge based on sample type, size and desired separations is key for optimizing results. Laboratory Equipment: Spectrophotometers and Colorimeters Quantifying analytes through detection and measurement of light absorbance or transmittance is done using spectrophotometers and colorimeters. They are indispensable in analytical chemistry, biochemistry and molecular biology labs. Single beam spectrophotometers detect absorbance of a sample against a blank reference. Double or triple beam instruments allow simultaneous measurement of multiple samples and references. Colorimeters are compact single wavelength devices ideal for dedicated absorbance assays. Modern multi-mode readers combine varied features like fluorescence, luminescence, absorbance in a single box for versatility. Automated instruments speed up high throughput absorbance measurements in microplates. Advancements in detector and optic materials continue enhancing sensitivity and accuracy. Laboratory Equipment: Water Purification Systems Pure water is imperative for numerous analytical procedures and as a solvent in chemical reactions. Laboratories install point-of-use or centralized water purification systems to generate different grades of water for their needs. Reverse osmosis systems yield high purity water from tap or well sources. Ion exchange columns further polish RO water to Type I standards. Advanced systems integrate UV oxidation to minimize microbial growth and sub-micron filtration for generating ultra pure or Milli-Q water. Water qualities are certified through resistivity, TOC and particle testing. Laboratories also require simple dispensers of purified water right at the bench. Mobile cart-based purifiers deliver purified water anywhere as needed. Integrated systems optimize space and centralize management of water purification.
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 Lab Equipment
1. Beakers and Flasks: Foundations of Measurement
Beakers and flasks are iconic symbols of laboratory Equipment work, serving as vessels for holding, mixing, and measuring liquids. Beakers come in various sizes, typically marked with volume gradations for accurate measurement. They are versatile, allowing scientists to perform tasks such as stirring, heating, and pouring. Flasks, on the other hand, often have narrower necks and are used for more precise measurements and reactions where evaporation needs to be minimised. Together, these basic containers form the backbone of liquid handling in labs worldwide.
2. Microscopes: Unlocking the Microcosm
Microscopes are indispensable lab equipment tools for exploring the microscopic world. They enable scientists to magnify objects hundreds or even thousands of times, revealing details that are invisible to the naked eye. From examining cells and microorganisms to analyzing materials at the nanoscale, microscopes play a crucial role in fields such as biology, medicine, materials science, and beyond. With advancements like electron microscopy and confocal microscopy, researchers can delve even deeper into the intricacies of the microcosm.
3. Centrifuges: Separating Powerhouses
Centrifuges harness the principles of centrifugal force to separate substances based on their density. By spinning samples at high speeds, centrifuges cause heavier particles to settle at the bottom while lighter components rise to the top. This process is invaluable for tasks such as isolating DNA, purifying proteins, and separating blood components in medical diagnostics. Modern centrifuges offer a range of capabilities, including variable speed settings, temperature control, and specialized rotors for specific applications.
4. Spectrophotometers: Shedding Light on Chemical Analysis
lab equipment Spectrophotometers are instrumental in quantifying the amount of light absorbed or transmitted by a substance across different wavelengths. This information is used to determine the concentration of analytes in solutions, making spectrophotometry a cornerstone technique in fields like biochemistry, environmental science, and pharmaceuticals. UV-visible spectrophotometers are commonly used for measuring organic compounds, while infrared and atomic absorption spectrophotometers cater to different analytical needs.
5. Incubators and Ovens: Cultivating Conditions
lab equipment and ovens provide controlled environments for cultivating cells, growing cultures, and conducting experiments that require specific temperature and humidity conditions. Incubators are crucial for cell culture work, microbiology research, and molecular biology techniques like PCR (polymerase chain reaction). Ovens, on the other hand, are used for sterilization, drying, and heat treatments in applications ranging from sample preparation to materials testing.
6. Pipettes and Dispensers: Precise Liquid Handling
Pipettes and dispensers are precision instruments used for transferring precise volumes of liquids. Manual pipettes are operated by hand and are available in various formats, including micropipettes for small volumes and multichannel pipettes for high-throughput applications. Automated pipetting systems offer increased efficiency and reproducibility, making them ideal for tasks like serial dilutions, liquid handling in high-throughput screening, and molecular biology workflows.
7. Analytical Balances: Weighing with Precision
Analytical balances provide accurate measurements of mass, essential for tasks like preparing solutions, dosing reagents, and determining the purity of substances. These balances offer high precision, often capable of measuring weights down to the microgram or even nanogram level. They are equipped with features such as draft shields to minimize environmental interference and calibration routines to ensure accuracy.
lab equipment, the workhorses of any laboratory. Beakers, test tubes, and flasks, made from durable glass, are used for mixing, storing, and heating various substances. Pipettes, with their precise markings, ensure accurate measurements of even the smallest volumes. And who can forget the ubiquitous Bunsen burner, providing heat for countless experiments?
Delving deeper:
As we move beyond the basics, we encounter a world of specialized equipment. Microscopes, with their powerful lenses, unveil the unseen world of cells and microorganisms. Centrifuges separate mixtures based on density, while spectrometers analyze the composition of materials. Each piece of equipment is designed for a specific purpose, contributing to the scientific process in its own unique way.
The cutting edge:
Modern science is constantly evolving, and so is the equipment that supports it. Advanced tools like 3D printers and gene sequencers are pushing the boundaries of what’s possible. These sophisticated instruments allow scientists to create complex structures, analyze DNA, and unlock the secrets of life itself.
Beyond the tools:
But lab equipment is more than just tools. They are partners in discovery, silent witnesses to countless experiments and breakthroughs. They represent the dedication and ingenuity of scientists, engineers, and technicians who design, build, and use these instruments to push the frontiers of knowledge.
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High-Throughput Pipetting: Multichannel Pipettes and Cutting-Edge Accessories at the Forefront
Introduction
Pipettes are essential laboratory instruments used for accurately measuring and transferring small volumes of liquid in various scientific and medical applications. They play a crucial role in a wide range of fields, including pharmaceuticals, biotechnology, clinical diagnostics, and academic research. The pipettes and accessories market is a dynamic and ever-evolving industry, driven by advancements in scientific research, healthcare, and diagnostic technologies. In this article, we will explore the key factors shaping the pipettes and accessories market, its growth prospects, and the innovative trends that are driving the industry forward.
Market Overview
The global pipettes and accessories market has been on a steady growth trajectory, with a compound annual growth rate (CAGR) of around 5% over the past few years. This growth can be attributed to several factors, including increased research and development activities in life sciences, growing demand for personalized medicine, and the expansion of the pharmaceutical and biotechnology sectors. Additionally, the COVID-19 pandemic highlighted the critical role of pipettes and other laboratory equipment in diagnostic testing and vaccine development, further driving market growth.
Types of Pipettes
The pipettes market comprises various types of pipettes, each designed for specific applications:
1. Manual Pipettes: These are the most commonly used pipettes and require human operation. They come in various volume capacities and are ideal for tasks that require precision and accuracy.
2. Electronic Pipettes: Also known as motorized or automatic pipettes, these are equipped with electronic components that enable precise volume control and reduce the risk of human error. Electronic pipettes are often used in high-throughput laboratories.
3. Multichannel Pipettes: These pipettes can dispense or aspirate multiple samples simultaneously, making them valuable for tasks that involve a high number of repetitive operations.
4. Single-Channel Pipettes: These pipettes are designed for handling a single sample at a time and are versatile for a wide range of applications.
5. Disposable Pipettes: Often made of plastic, these pipettes are used for applications where cross-contamination needs to be minimized.
Accessories and Innovations
The pipettes and accessories market isn't limited to just pipettes themselves. A wide range of accessories complements pipettes, including pipette tips, racks, and calibration equipment. The market for pipette tips, in particular, has witnessed significant growth, driven by the need for specialized tips that can handle various sample types, from viscous liquids to fragile cells.
Innovations in the pipettes and accessories market are driven by the demand for greater accuracy, reproducibility, and ease of use. Some notable trends include:
1. Advanced Ergonomics: Pipette manufacturers are focusing on ergonomic designs to reduce user fatigue and enhance comfort during prolonged pipetting tasks.
2. Digital Integration: Many electronic pipettes now feature digital interfaces that allow for easy programming and data logging. This integration streamlines workflows and enhances traceability.
3. Improved Calibration: Regular calibration is essential for maintaining pipette accuracy. Manufacturers are introducing innovative calibration tools and services to simplify this process.
4. Automation and Robotics: Automation in pipetting tasks is on the rise, particularly in high-throughput laboratories. Robotic systems that use pipettes are becoming more common, enabling precise and efficient sample handling.
5. Sustainability: With growing environmental awareness, there's a trend toward more sustainable pipette and accessory materials, as well as eco-friendly packaging.
Market Challenges
While the pipettes and accessories market presents significant opportunities, it also faces challenges, including the need for constant innovation to meet evolving research demands, increasing competition among manufacturers, and regulatory compliance. Additionally, supply chain disruptions, such as those seen during the COVID-19 pandemic, can impact the availability of critical pipetting equipment and accessories.
Conclusion
The pipettes and accessories market is vital to the progress of scientific research and healthcare. Its growth is fueled by the demand for precise and reliable liquid handling solutions in a wide range of applications. As the industry continues to evolve, manufacturers will need to stay at the forefront of technological advancements to meet the ever-increasing demands of researchers and scientists worldwide. With innovation and sustainability as guiding principles, the pipettes and accessories market is set to play a pivotal role in advancing scientific discovery and healthcare breakthroughs in the years to come.
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Innovative multichannel pipettes for handling liquids precisely
Multichannel pipettes have revolutionized the field of laboratory liquid handling by streamlining and expediting pipetting tasks. These versatile instruments are designed to simultaneously transfer multiple samples or reagents, significantly reducing the time and effort required for repetitive pipetting steps. With the ability to handle multiple channels, multichannel pipettes are ideal for scaling up experiments and increasing throughput without sacrificing accuracy and precision.
The most common multichannel pipettes are available in 8- or 12-channel configurations, perfectly spaced to work with 96- or even 384-well microplates. However, larger multichannel options and adjustable spacing versions cater to diverse experimental needs. By leveraging the capabilities of a multichannel pipette, researchers can accomplish in a few steps what would otherwise demand a much larger number of individual pipetting actions.
By employing a multichannel pipette in a scenario requiring 480 pipetting steps, one can accomplish the task with only 40 steps using a 12-channel pipette (5 rows of 8) or 60 steps with an 8-channel pipette (5 columns of 12). This expedited process not only accelerates plate filling but also minimizes the risk of repetitive strain injury (RSI) and the associated mental and physical fatigue. It is crucial to mitigate pipetting errors caused by fatigued analysts as they can compromise accuracy and precision, potentially leading to erroneous or inconclusive results. Consequently, repeating the assay becomes necessary, resulting in the wastage of valuable reagents, samples and reduced productivity.
While multichannel pipettes provide numerous advantages, they also present certain challenges, particularly concerning pipette tip attachment. Loading these tips can be cumbersome and often leads to uneven attachment. Difficulties such as problematic tip attachment, high ejection forces, and increased aspiration forces have impeded the proper utilization of multichannel pipettes. However, recent advancements in multichannel pipette technology have addressed these issues. For instance, electronic pipettes with electronic pistons and/or tip ejection mechanisms have been developed to overcome these challenges. Manufacturing breakthroughs have also improved tip attachment consistency, resulting in enhanced accuracy and precision. Nevertheless, it is important to note that even with these technological advancements, the critical factor for optimal performance lies in the proficiency of a well-trained operator who utilizes a calibrated multichannel pipette for each channel.
Enhancing Pipetting Proficiency: Essential Techniques for Multichannel Pipetting Success
To achieve accurate and reliable results when using multichannel pipettes, proper technique is of utmost importance, as operator variability can quickly lead to errors. Here are essential techniques to consider when utilizing these devices:
Mindful Tip Application: Always opt for manufacturer-approved pipette tips and select those with the smallest air gap. After aspirating the sample, compare the liquid levels within the tips. If uneven, it may indicate inconsistent tip placement across the pipette channels.
Pre-Wet Pipette Tips: Pre-wetting the pipette tips is crucial. This process humidifies the captive air space (air cushion) within the tips, minimizing sample evaporation and the risk of pipette dripping.
Slow and Steady Aspiration: Rapid plunger movements or fast aspiration can introduce unwanted bubbles within the pipette tips. To avoid this, ensure a controlled and gradual aspiration process.
Vertical Aspiration, Minimizing Angles: When aspirating, it is important to maintain a vertical position without tilting or angling the pipette. Angling the pipette in various directions, such as forward-backward or left-right, can result in uneven immersion depths of the pipette tips, leading to inconsistent volume transfer.
Essential Pause After Aspiration: Once the plunger is released, pause for a full second with the tips still immersed in the sample. This pause allows the total sample volume to fully enter each pipette tip, ensuring uniformity across all channels.
Adjusting Dispense Speed: Sometimes, a slower dispense speed may result in residual samples remaining in the pipette tips. If you observe residual droplets, it may indicate the need to adjust the dispense speed to a faster rate. This adjustment ensures that the captive air space above the sample generates enough force to push the entire sample out of the pipette tips.
Tip-Touch or Brush-Off Technique: During dispensing, whenever feasible, gently touch the pipette tips against the side walls of the plate or receptacle. Alternatively, you can dispense the sample on top of the solution. These actions create added surface tension, aiding in complete sample removal and reducing the likelihood of residual sample retention.
By employing these techniques, you can enhance the efficiency and accuracy of multichannel pipetting, ensuring complete sample transfer and minimizing potential sources of error.
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Microlit 12 Channel Micropipette
Microlit offers the lightweight variable volume multichannel micropipette for accurate and precise sampling and dispensing of liquid. This 12 channel micropipette has universal tipcone compatible with internationally accepted tips, lightweight & soft grip for maximum user comfort, fully autoclavable. It comes with well designed pippette stand for easily handling of your multichannel pipette. For details, visit https://www.microlit.us/product-category/micropipettes/#post-353
#Microlit RBO Multichannel Micropipette#Best Multichannel pipette#12 multichannel pipette#12 channel multichannel pipette#electronic multichannel pipette#pipette calibration#pipette stand#Multichannel Pipette#Multichannel Micropipette#Pipette#Pipets#Pipettes#Micropipette
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Multichannel Electronic Pipettes Market is estimated to value over USD xx billion by 2026 end and register a CAGR of over xx% during the forecast period 2019 to 2026.
#Multichannel Electronic Pipettes Market#Multichannel Electronic Pipettes Market Trends#Multichannel Electronic Pipettes Market Size#Multichannel Electronic Pipettes Market Share
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Repeater pipette
#Repeater pipette serial
#Repeater pipette manual
#Repeater pipette pro
#Repeater pipette series
#Repeater pipette free
Trusted Supplier for Industrial & Military.
#Repeater pipette pro
Manufactured, packaged and stored under current Good Manufacturing Practices (cGMP). This repeater pipettor is designed for repeated distribution of micro volumes with easy handling like that of a normal pipette along with the flexibility of a. Eppendorf Repeater Pro Pipette Easy Click-Quote-Buy Today Fast Shipping. The Repeater E3X is for pipetting supernatants, titration and/or sequential dispensing. DWK-Life-Sciences-Stepper-174-411-Repeater-Pipette at Spectrum Chemical. The Repeater E3 model is designed for standard pipetting and dispensing applications. The Repeater E3 and E3x have a wide dispensing range of 1 µL to 50 mL, 5,000 different.
#Repeater pipette series
Combitips Advanced tips snap quickly into place. The Rainin NanoRep electronic repeater pipette from METTLER TOLEDO accurately dispenses volumes from 50 mL down to a low of 100 nL, providing ways to effecti. These electronic positive displacement dispenser pipettes are ideal for stress-free, long series repetitive dispensing due to their lightweight, ergonomic design, and easy, motor driven action which reduces fatigue and the risk of repetitive strain injuries.
#Repeater pipette serial
The pipettes automatically recognize tip size and displays dispensing volume. The Utah Amateur Radio Club (UARC) supports four repeaters along the Wasatch Front: The 146 Acting in its secondary function, the signal repeater extends the range of data transmission between the pump and valve Electronic Pipettor, the HandyStep ® Electronic Repeater for Serial Dispensing: Overview: The Ratiolab HandyStep ® Electronic. The one-button tip ejector streamlines tip changes.
#Repeater pipette free
Single-channel pipets are workhorses in liquid handling multichannel pipets are common in PCR and ELISA applications, with the number of channels ranging from 4 to 64.The Eppendorf Repeater E3 & E3X Repeating Pipette offers rapid and ergonomic dispensing via a motorized piston selection wheel. Both repeater pipettes are robust and maintenance free instruments that secure ergonomically correct and reliable repetitive pipetting. Repeating electronic pipets are useful in biochemistry, microbiology, and immunology. With easy-to-use controls, AutoRep S gives you the ability.
#Repeater pipette manual
AutoRep S is a manual repeater pipette with a volume range of 2 L-5 mL and features the high precision and accuracy of positive-displacement pipetting. Manual pipettors tend to be very durable and easily maintained, while electronic pipettors have the advantage of increased accuracy, reduced force, and a lower risk of repetitive stress injuries. A manual repeater pipette allows the user to repeat-dispense precise aliquots of any liquid, including viscous or volatile liquids. Next, choose manual versus electronic operation. No air cushion means more accurate pipetting of high-density samples. Pipette holder 2 for an electronic Eppendorf Multipette (Repeater) f.Carousel 2,wall mounting (w/o charging function). Samples that are viscous, radioactive, corrosive, or volatile tend to require a positive-displacement pipet, which has a disposable piston and direct piston–sample contact. Start by choosing a displacement method: Air-displacement pipets are often recommended for aqueous samples since there is always an air cushion (dead volume) between the sample and the piston. Pipets and pipettors are used to transfer or measure set volumes of liquid, ranging from 0.1 µL to 10 mL. Repeater Pipette Tips BRAND Sterile PD-Tip II Precision Dispenser Tips for Repeating Pipettes BRAND Sterile PD-Tip II Precision Dispenser fits all instruments using standard repeating tips.
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Repeater pipette
Repeater pipette serial#
Repeater pipette manual#
More than 100 aliquots can be dispensed with each syringe, eliminating time-consuming refills. As with all Gilson pipettes, DISTRIMAN delivers precise and reliable performance.ÄISTRIMAN covers a large range of aliquot volumes from 1 µL to 1.25 mL using only three DISTRITIPS syringes making it economical. Capp Rhythm stepper Repeater Pipette is an ideal basic repeating pipettor offering 45 dispensing volume options and covering the dispensing volumes from 1L. There is no risk of accidental conversion errors with the direct read out. Volumes are displayed clearly in microliters or milliliters on the digital read out.Äispense the exact volume required for any analysis protocol and achieve optimal pipetting results even with volatile or viscous liquids. No tables to read, no conversions to make, just set the volume and dispense. It is ideal for repetitive dispensing in clinical, hospital, biological, chemical, food & beverage, pharmaceutical, cosmetics, and forensics labs.Äispense exact volumes without tedious calculations.
Repeater pipette manual#
With DISTRIMAN, you can dispense the exact volume required for any protocol, even fractional volumes. Lab Equipment Pipettes Calibration Centrifuge eppendorf Electronic Pipettes Pipetting Multichannel Pipettes Capp Motorized Pipette Controllers pipette My Science Matters Pipette Calibration Pipette Tips Product Reviews benchmark biology incubator oxford lab products spectrophotometry Cell Culture. Repeater Plus1 is the ideal precision instrument for reducing the time associated with manual, long-series pipetting. Wheaton Science Products W835001 Socorex Acura Manual Microdispenser Repeater Pipette, 5 to 50 L Volume Range: : Industrial & Scientific. View product details on the Socorex website or contact your closest distributor.DISTRIMAN® is a positive-displacement, continuously adjustable, repetitive pipette with direct read out designed to simplify multiple dispensing when used with DISTRITIPS® syringes. Stepper™ contains neither battery nor electronic compound and offers a very long life span. If remaining liquid in the syringe is smaller than the selected aliquot volume, the built-in self-locking mechanism stops distribution to prevent false delivery. This allows you to increase production and remove wasted movement. Pipette Supplies offers repeater pipettes in manual and electronic formats, single channel and multichannel. 1, Optimized for smooth dispensing of even the smallest volumes 2, Five easy-to-select settings. A graduation on the syringe helps monitoring liquid content. Repeater pipettes, both in manual and electronic variants, are great for instances where you are going to be repeatedly dispensing the same volume of liquids multiple times without having to aspire in between. Repeater Pipette, StepMate Muliti-Dispenser, Stepper. The colour codes on both syringes and setting knobs eliminate any risk of wrong use. A repeater or repeating pipette can be used in almost any protocol. Volume selection is easy and quick, with a clear reading of the adjustment chosen. The Eppendorf Repeater M4 Pipette brings you easy-to-use digital pipetting and dispensing in an comfortable to use instrument. The repeaters transmit frequency is your radios receive frequency in the 462 MHz. There are three interchangeable setting knobs, bearing volumes and corresponding number of aliquots. The syringes are available in regular, non-sterile version, as well as in a sterile, high purity bioproof™ grade version. Ecostep™ syringes are made of PP and PE materials providing for excellent chemical resistance. DISTRIMAN® is a positive-displacement, continuously adjustable, repetitive pipette with direct read out designed to simplify multiple dispensing when used with DISTRITIPS® syringes. And the very fine syringe tip end facilitates distribution in narrow tubes.Īssociated with only three Ecostep™ positive displacement syringes, it provides a broad choice of 53 different volumes, and up to 73 aliquots per filling. Stepper™ offers a great flexibility in use, fitting well in many laboratories performing repeat dispensing tasks such as screening procedures, dividing samples in small portions, or dispensing reagents in vials. Its unique four-finger activation eliminates thumb fatigue, enabling smooth monitoring of each step, whatever the pipetting speed.
Repeater pipette serial#
The crystal blue repeater pipette Stepper™ 416 from Socorex is a compact and reliable instrument intended for serial dispensing from 10 to 5000 µL. Repeating pipette has an injection inlet (5) for the fastening section of an injector (6), a receptor body (9) with a piston uptake for the operation section of an injection piston.
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Global Electronic Pipettes Market New Trend, Size, Swot Analysis, New Innovation and Rising Business Opportunities Forecast Till 2027
Global Electronic Pipettes Market
Electronic Pipettes are used in pharmaceutical, biotechnology, and chemical laboratories in order to transfer certain volume of liquids which are manufactured using a unique technology that makes the more specific for research and scientific field devices. Electronic pipettes provide various benefits such as a high level of accuracy, increase resistance to contamination and less reliability on force.
Market Drivers
Growing research and development activities in the field of pharmaceutical and biotechnology due to the high prevalence of infectious diseases are the major factors driving the electronic pipettes market growth. Furthermore, rapid development in technology, acquisition of medical device campiness will positively influence the market growth. Also, the rise in government initiatives to support the research and development is expected to fuel the global electronic pipettes market growth. Pharmaceutical companies are mainly focusing on conducting research and development activities as well as outsourcing such activities to private research institutes and academic sector. This is expected to increase demand for liquid handling systems like pipettes.
Get Sample Copy of this Report @ https://qualiketresearch.com/request-sample/Electronic-Pipettes-Market/request-sample
Market Restraints
High price is the major restraint is expected to hinder the global electronic pipettes market growth. For instance, the price of the Xplorer plus electronic single channel pipettes with charging adapter around US$ 1000 which may not affordable for some laboratories due to its high price. Also, long approval time will limit the market growth during this forecast period.
Market Segmentation
Global Electronic Pipettes Market is segmented into type such as Fixed Volume, Variable-Volume, Single Channel, and Multi-Channel, by technology such as Electronic Repeater Pipettes, Multichannel Electronic Pipettes, Picus pipettes, and Others. Further, market is segmented into end user such as Research & Academic Institutes, Diagnostic laboratories, and others.
Also, Global Electronic Pipettes Market is segmented on the basis of five regions such as North America, Latin America, Europe, Asia Pacific, and Middle East & Africa.
Market Key Players
Various key players are discussed in this report such as, Thermo Fisher Scientific, Inc., Integra Biosciences AG, Gilson, Inc., Hamilton Company, Sartorius Group ,Eppendorf AG, Corning Incorporated, and Greiner Bio-One International GmbH.
Market Taxonomy
By Type
Fixed Volume
Variable-Volume
Single Channel
Multi-Channel
By Technology
Electronic Repeater Pipettes
Multichannel Electronic Pipettes
Picus pipettes
Others
By End User
Research & Academic Institutes
Diagnostic laboratories
Others
By Region
North America
Latin America
Europe
Asia Pacific
Middle East & Africa
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QualiKet Research is a leading Market Research and Competitive Intelligence partner helping leaders across the world to develop robust strategy and stay ahead for evolution by providing actionable insights about ever changing market scenario, competition and customers. QualiKet Research is dedicated to enhancing the ability of faster decision making by providing timely and scalable intelligence. We use different intelligence tools to come up with evidence that showcases the threats and opportunities which helps our clients outperform their competition.
#Electronic Pipettes Market size#Electronic Pipettes Market Share#Electronic Pipettes Market Trend#Electronic Pipettes Market Growth#Electronic Pipettes Market Application
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Electronic Pipettes Systems Market 2021-Industry Size, Analysis, Researches, Trends and Forecasts to 2027
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Electronic Pipettes Systems Market is analyzed with industry experts in mind to maximize return on investment by providing clear information needed for informed business decisions. This research will help both established and new entrants to identify and analyze market needs, market size and competition. It explains the supply and demand situation, the competitive scenario, and the challenges for market growth, market opportunities and the threats faced by key players.
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A 360 degree outline of the competitive scenario of the Global Electronic Pipettes Systems Market is presented by Axel Reports Market Insights. It has a massive data allied to the recent product and technological developments in the markets.
It has a wide-ranging analysis of the impact of these advancements on the market’s future growth, wide-ranging analysis of these extensions on the market’s future growth. The research report studies the market in a detailed manner by explaining the key facets of the market that are foreseeable to have a countable stimulus on its developing extrapolations over the forecast period.
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It offers seven-year assessment of Global Electronic Pipettes Systems
It helps in understanding the major key product segments.
Researchers throw light on the dynamics of the market such as drivers, restraints, trends, and opportunities.
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It offers massive data about trending factors that will influence the progress of the Global Electronic Pipettes Systems
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By Market Players: Thermo Fisher Scientific Eppendorf Mettler-Toledo Tecan Sartorius PerkinElmer Corning Danaher Gilson Agilent Integra Holding By Type Single Channel Pipettes Multichannel Pipettes By Application Academic & Research Institutes Pharmaceutical & Biotechnology Companies
A detailed outline of the Global Electronic Pipettes Systems Market includes a comprehensive analysis of different verticals of businesses. North America, Latin America, Asia-Pacific, Africa, and Europe have been considered for the studies on the basis of several terminologies.
This is anticipated to drive the Global Electronic Pipettes Systems Market over the forecast period. This research report covers the market landscape and its progress prospects in the near future. After studying key companies, the report focuses on the new entrants contributing to the growth of the market. Most companies in the Global Electronic Pipettes Systems Market are currently adopting new technological trends in the market.
Finally, the researchers throw light on different ways to discover the strengths, weaknesses, opportunities, and threats affecting the growth of the Global Electronic Pipettes Systems Market. The feasibility of the new report is also measured in this research report.
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Table of Contents:
Global Electronic Pipettes Systems Market Overview
Economic Impact on Industry
Market Competition by Manufacturers
Production, Revenue (Value) by Region
Production, Revenue (Value), Price Trend by Type
Market Analysis by Application
Cost Analysis
Industrial Chain, Sourcing Strategy and Downstream Buyers
Marketing Strategy Analysis, Distributors/Traders
Market Effect Factors Analysis
Global Electronic Pipettes Systems Market Forecast
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Electronic Pipettes Market Size, Industry Analysis and Forecast Report by 2027
Electronic Pipettes are used in pharmaceutical, biotechnology, and chemical laboratories in order to transfer certain volume of liquids which are manufactured using a unique technology that makes the more specific for research and scientific field devices. Electronic pipettes provide various benefits such as a high level of accuracy, increase resistance to contamination and less reliability on force.
Request Sample Copy of this Report @ https://qualiketresearch.com/request-sample/Electronic-Pipettes-Market/request-sample
Market Drivers
Growing research and development activities in the field of pharmaceutical and biotechnology due to the high prevalence of infectious diseases are the major factors driving the electronic pipettes market growth. Furthermore, rapid development in technology, acquisition of medical device campiness will positively influence the market growth. Also, the rise in government initiatives to support the research and development is expected to fuel the global electronic pipettes market growth. Pharmaceutical companies are mainly focusing on conducting research and development activities as well as outsourcing such activities to private research institutes and academic sector. This is expected to increase demand for liquid handling systems like pipettes.
Market Restraints
High price is the major restraint is expected to hinder the global electronic pipettes market growth. For instance, the price of the Xplorer plus electronic single channel pipettes with charging adapter around US$ 1000 which may not affordable for some laboratories due to its high price. Also, long approval time will limit the market growth during this forecast period.
Market Key Players
Various key players are discussed in this report such as, Thermo Fisher Scientific, Inc., Integra Biosciences AG, Gilson, Inc., Hamilton Company, Sartorius Group, Eppendorf AG, Corning Incorporated, and Greiner Bio-One International GmbH.
Market Taxonomy
By Type
Fixed Volume
Variable-Volume
Single Channel
Multi-Channel
By Technology
Electronic Repeater Pipettes
Multichannel Electronic Pipettes
Picus pipettes
Others
By End User
Research & Academic Institutes
Diagnostic laboratories
Others
By Region
North America
Latin America
Europe
Asia Pacific
Middle East & Africa
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After many years building successful technology businesses, Jeremy Sohn never imagined that at 43 he would find himself on the payroll of a big pharmaceutical company.
But 18 months ago he was appointed global head of digital business development and licensing at Swiss drugmaker Novartis. His appointment is evidence of how an industry, slow to respond to the disruption of digitisation, is grasping its importance as it confronts pricing pressures, ever-vaster quantities of patient data and more empowered consumers.
Digitalization is changing the way pharma interacts with payers, doctors and patients, leading drugmakers to seek out different skills and personality traits in employees.
Germany’s Merck last year appointed 30-year-old James Kugler as its first chief digital officer, with a degree in biomedical engineering and a tech background. Boehringer Ingelheim, Europe’s biggest private drugmaker, hired Simone Menne as chief financial officer from airline Lufthansa. She is in charge of a new digital “lab”, recruiting data specialists and software developers.
Mr Sohn, whose role at Novartis includes overseeing venture capital investments in technology companies – a growing trend in Big Pharma – says that working alongside highly qualified scientists, he “typically feels like the dumbest person in any meeting”. However, he and other external recruits have brought mindsets that are helping the group evolve from a pure science company into “a data [and] technology company”, he adds.
According to Steven Baert, head of human resources, Novartis is starting to reap considerable benefits from digital investments, particularly in the speed and efficiency with which it can test medicines.
He says: “We’re already seeing how real-time data capture can help analyse patient populations and demographics, to make it easier to recruit patients for clinical trials, and how real-time data-capture devices, like connected sensors and patient engagement apps, are helping to create remote clinical trials that aren’t site-dependent.”
Sweeping changes
In the past five years, these changes have been visible in Novartis’s workforce. While staffing overall has risen by just over 20 per cent, the salesforce – the traditional bedrock of pharma companies, and their combined $1tn in global revenues – has increased by just 13 per cent.
At the same time the number employed in “market access” – negotiating prices with payers, whether governments or insurers – has risen up to five times faster than the average growth rate and now stands at 1,100.
En 2015, le gouvernement suisse est intervenu auprès de la Colombie afin d’empêcher le déclassement du brevet du Glivec, un anticancéreux produit par Novartis (à droite sur l'image, son CEO Joe Jimenez). Une illustration du soutien que la Confédération porte à ses entreprises pharmaceutiques au-delà même des frontières nationales.
Novartis employs more than 1,200 dual-qualified mathematicians and engineers to analyse big data sets and calculate the value of new drugs – for instance, their potential to reduce hospitalisations and so cut costs. As recently as six years ago, not a single one was on the payroll.
Behind these changes lie two key shifts. The first is the determination of cash-constrained global health systems to secure better value from the drugs they buy.
The second is the advance of digital technology, which is increasingly playing a role in how patients manage their conditions and companies communicate the benefits of their medicines to doctors. GlaxoSmithKline, for example, employs more than 50 people to run webinars with physicians – a “multichannel media team” that did not exist five years ago.
The UK drugmaker has begun hiring astrophysicists to work in research and development, keen to deploy their ability to visualise huge data sets. The company says these qualities are especially important as it seeks to use artificial intelligence to help spot patterns and connections amid a mass of information.
At Boehringer, senior executives say that this level of disruption calls for agility and entrepreneurialism in employees – which in some cases may be better found outside the life sciences sector. Andreas Neumann, head of HR, explains that, although new CFO Ms Menne had “no clue” about pharma, she had worked in a sector that had faced substantial upheaval.
“She has significant experience in an industry which is under tremendous cost pressure and has gone through a tremendous amount of change. And you can learn from that experience, as a company.”
Data mining
US-based Pfizer last year recognised this new landscape by establishing a division to bring together health economists; researchers measuring the outcomes produced by different medicines; and market access specialists. Previously these groups had been spread throughout the organisation.
Andy Schmeltz, who heads the division, gives the example of Eliquis, an anticoagulant produced with Bristol-Myers Squibb. Data analysts processed “real world” evidence – derived from patients going about their normal lives, rather than taking part in a carefully managed trial – that suggested it was more cost effective than the long-established anticoagulant, Warfarin.
Underpinning this work is a massive repository of data, from sources such as electronic medical records, that covers “over 300m lives”, says Mr Schmeltz.
This, he says, “enables us to query the database and generate insights, even when we’re just trying to figure out the design of a trial and the feasibility of recruitment; are there enough patients out there that meet certain entry criteria? It enables us to make better decisions on clinical trial development. It also enables us to model different outcomes across different diseases.”
At Merck, chief executive Stefan Oschmann enthuses about its new breed of digitally savvy employee, led by “forward-thinking” Mr Kugler. “We’re working on stuff like the connected lab,” he says, “a laboratory where everything, every container, every machine, every pipette, is smart and connected and captures data automatically… So we [employ] a very different type of people these days.”
While the project is still in the planning stages, when complete it will allow staff to manage inventory and research across multiple labs and share findings more readily, as well as making it easier to access safety and regulatory compliance data.
The road ahead
The pharma industry still has a considerable way to go before it exploits digital technology as successfully and automatically as many other sectors. A recent report by McKinsey, the global consultancy, assessed “digital maturity” under a range of categories including strategy and customer focus. Only the public sector, an infamous digital laggard, came out worse.
Stefan Biesdorf, who leads McKinsey’s digital pharma and medical technology work in Europe, says: “While virtually every pharma company has either worked on its digital strategy or made plans about how to address the topic, compared with other industries pharma… still has a lot to do.”
One analyst describes some big pharma companies as “schizophrenic” about how to respond to digital advances, aware they needed to act but unsure how much investment to divert from their core mission of drug discovery.
Alyse Forcellina, leader of the Americas healthcare practice at executive recruitment consultancy Egon Zehnder, says Big Pharma needs outsiders because “nobody in pharma is excellent at digital”. She warns, however, of the risk of “organ rejection” of new recruits who, for instance, may not understand that “many things are illegal or just not possible” in pharma, such as direct approaches to patients.
Mr Baert of Novartis acknowledges there is also a danger that companies will hire the right people but fail to foster the internal culture required to take advantage of their expertise. However, he cites as a warning the example of Kodak, which was at the forefront of discovering digital technology but failed to accelerate the shift to a new business model.
At Boehringer, Mr Neumann acknowledges the process is not always smooth. But he is in no doubt about the potential gains if companies can create an environment in which diversity of background is seen as an advantage, not a threat.
He says: “If you hire someone who is disruptive because you want disruption, you get what you have hired, right?”
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Multichannel Electronic Pipettes Market is estimated to value over USD xx billion by 2026 end and register a CAGR of over xx% during the forecast period 2019 to 2026.
#Multichannel Electronic Pipettes Market Share#Multichannel Electronic Pipettes Market Research Reports#Multichannel Electronic Pipettes Market Size#Multichannel Electronic Pipettes Market Trends
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8 Channel Micropipette | Multichannel Micropipette | Microlit USA
Microlit offers the 8 Channel Micropipette that is lightweight variable volume multichannel micropipette for accurate and precise sampling and dispensing of liquids. This multichannel pipette has universal tipcone for internationally accepted tips, lightweight with soft grip for maximum user comfort and fully autoclavable to ensure safety from cross contamination of hazardous liquid. Microlit offers the calibration certificate confirmed to ISO 8655 standards and product certification with ISO 9001, ISO 13485, ISO 17025 and CE for all multichannel micropipettes. For more details, https://www.microlit.us/product-category/micropipettes/
#Electronic Multichannel Pipette#eppendorf multichannel pipette#Micropipette#Pipette#electronic pipettes#multichannel pipettor#manual multichannel pipettes#multi-channel pipette#gilson multichannel pipette#rainin multichannel pipette#multichannel pipette
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Next Generation Pipettes Market Promising Growth Opportunities over 2019-2029
Growing life science industry and laboratories demand highly advance technology and solution to make researcher task easier and reduce errors. Research, development and testing methods are followed by various steps and needs different advance instruments to maximize accuracy and reduce efforts. Life science industry is shifting towards electronically operated liquid handling devices to reduce errors. Researchers are adopting next generation pipettes in the place of glass pipettes, plastic pipettes, mechanical pipette and pipette tips. Switching towards next generation pipettes are included several benefits such as precision, accuracy, efficiency. Next generation pipettes are used routinely in all kind of laboratories from the academic setting to pharmaceutical research labs. Next generation pipettes are available in various shapes and channels with various technologies include in it. Next generation pipettes provide several benefits to the scientist such as save time and reduce strain injury. Next generation pipettes are pre-programmable pipettes with digital display and motor operation which increase accuracy and precision. Next generation pipettes can reduce the possibility of human errors. Availability of multichannel and multifunction operation in the next generation pipettes are provided features such as multi-dispensing, pipetting, reverse pipetting, mixing, and diluting.
Increasing research and development activities and growing investments in biopharmaceutical production boost p the growth of the next generation pipettes market. Growing demand for devices to improve productivity & accuracy, improve lab outcome, and reduce errors drives the next generation pipettes market. Growing DNA based research, cell culture research, increasing drug discovery activities favour the growth of the next generation pipettes market. Growing pharmaceutical and healthcare research spur the demand for ergonomic next generation pipettes among pharmaceutical manufacturers. Moreover, the introduction of robotic-assisted liquid handling systems expected to hamper the demand for electrically operated next generation pipettes over the forecast period.
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The global next generation pipettes market is segmented on basis of product type, and end user and region:
Segmentation by Product Type
Segmentation by End User
Electronic Single Channel Pipettes
Electronic Multi Channel Pipettes
Accessories
Hospitals
Specialty Clinics
Diagnostic Laboratories
Academic Research Institutes
Pharmaceutical & Biotechnology Companies
Next generation pipettes market expected to grow with the major growth rate as growing demand for the electronic and digital device for the liquid handling in the laboratories. Next generation pipettes market is available in the different product type such as electronic single channel pipettes, electronic multi channel pipettes and accessories. Manufactures are focusing on the launch of new products to gain significant market share and provide advanced instruments for laboratory purpose. For instance, recently in February 2019 Andrew Alliance S.A. and Sartorius launched Pipette+ system based on Internet of Things (IoT) solution technology which can transmit data such as step-by-step actions taken by the operator, possible errors, operator identity and more. Next generation pipettes are gaining significant demand in Academic Research Institutes and diagnostic laboratories to maintain workflow and increase diagnostic efficiency.
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North America expected to dominate the next generation pipettes market as advancement in diagnostic laborites and research institutes. Europe expected to contribute the second-highest revenue share in the next generation pipettes market as increasing research and development activities in the European countries such as Germany, the United Kingdom and France. The Asia Pacific next generation pipettes market expected to grow with higher pace as growing need for advanced equipment for diagnostic procedures and growing funding for the research activities. Asian countries such as South Korea, India and China expected to grow with the highest growth rate over the forecast period as the growing adoption of new healthcare technologies and growing government investments for diagnostic laboratories advancement.
Some of the players operating in the global next generation pipettes market are VWR International, LLC., Accuris Instruments, Artel Inc., Hamilton Company, Sartorius AG, Gilson, Inc., Thermo Fisher Scientific, Inc., Eppendorf AG, Greiner Bio-One International GmbH, Integra Biosciences AG and other companies. Manufacturers are focusing on integration with software companies to add new features and advance their next generation pipettes.
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