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The Thermo Scientific AccelerOme automated sample preparation platform uses factory-manufactured reagents and kits, providing on-screen step-by-step instructions for both label-free quantification and tandem mass tag (TMT) multiplexing, allowing complex tasks to be completed in a short time. It executes the steps of a validated sample preparation workflow and simplifies method setup using a software wizard. Additionally, the reagents are pre-prepared and packaged according to purpose, making it ready for use regardless of the user's skill level. 【Features】 - Easy operation - Flexibility to meet demands - Assurance of high-quality samples - Maximization of productivity *For more details, please refer to the PDF materials or feel free to contact us.
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The Thermo Scientific WFYK (We Fit Your Kit) Nalgene sample box is a collection of square bottles of various resins and capacities selected from Nalgene bottles. Please use it to verify and evaluate the compatibility of the bottles. Nalgene bottles, made from high-quality plastic, feature an excellent leak-proof design and a wide range of options for various applications. For inquiries about the samples, please contact us via the "Contact Us" section at the bottom of the page. ◆Features◆ - Unique leak-proof design - Space-saving square shape - Manufactured from high-quality resin - Wide range of options - Certificates available for each lot ◆Sample Contents◆ Graduated square bottle (60 mL / PPCO) Square transparent bottle (125 mL / PC) Square brown reagent bottle (250 mL / HDPE) Wide-mouth square reagent bottle (125 mL / HDPE) Graduated square bottle (1,000 mL / HDPE)
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The Thermo Scientific Solaris Orbital Shaker is a benchtop product that utilizes a reliable three-axis eccentric drive, capable of operating across a wide range of applications including culturing, mixing, staining, hybridization, and washing. It features a large, bright touchscreen panel for easy setup and operation, along with the ability to create, download, and share programs between multiple units. Equipped with a rounded, removable platform, the unit can be cleaned quickly and easily. In addition to various platforms, it offers a wide range of accessories such as flask clamps and tube racks that can support nearly any capacity the user may need. The Solaris low-temperature incubation shaker incorporates a Peltier cooling function that requires no compressor, reducing costly energy consumption and minimizing hazards. For more details, please download the catalog.
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The Thermo Scientific Orion Lab Star meter series is a compact and user-friendly device suitable for basic experiments needed in laboratories, water quality testing, and a wide range of other research environments. When combined with electrodes, buffers, and reagents from the Thermo Scientific Orion series, the Orion Lab Star meter offers a high-quality measurement environment that meets the demands for cost-effectiveness, accuracy, and durability in testing and measuring parameters such as pH, conductivity, and dissolved oxygen. In the 2023 Scientists' Choice Awards for Life Sciences by SelectScience, the Thermo Scientific Orion Lab Star PH111 pH/mV meter was voted Best New General Lab Product of 2022 by scientists around the world*. *For more details on each product, please refer to the PDF download or feel free to contact us.
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The Thermo Scientific TDE series horizontal ultra-low temperature freezer equipped with the H-Drive system can be set to temperatures ranging from -50 °C to -86 °C. Its combination of rapid temperature recovery after door openings and excellent insulation against peak fluctuations makes it suitable for frequent storage and long-term preservation applications. **Performance** The new horizontal ultra-low temperature freezer with H-drive non-fluorocarbon technology saves up to 38% in energy consumption compared to models using conventional alternative refrigerants*1. Additionally, with a quiet operating noise of less than 55 dBA, it does not interfere with user activities even when installed in the lab. **User-Friendly** The H-Drive Information Center (HIC) features a 5.6-inch display that makes it easy to read the displayed temperature, combined with simple capacitive touch buttons. It is available in two sizes (360 L and 566 L) to accommodate various storage needs and lab space specifications. *1 Compared to the conventional model ULT2090-10D with a power consumption of 16.9 kWh/day, the TDEC39686FD has a power consumption of 10.5 kWh/day (according to our data).
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The Thermo Scientific TDE series ultra-low temperature freezers equipped with H-Drive feature four models that can accommodate between 30,000 and up to 60,000 2 mL vials, providing sustainable and reliable sample storage with outstanding sample security and energy-saving performance. Performance - These systems, equipped with H-drive hydrocarbon technology, reduce energy consumption by up to 27% compared to our ultra-low temperature freezers that use CFC refrigerants*1. - Quiet operation at less than 51 dBA. *1 Based on internal data comparing the energy consumption of the TDE series, TDE60086-ULTS at 10.9 kWh/day, with that of the conventional model UxF600 at 14.9 kWh/day.
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We can customize high-quality Gibco cell culture media and reagents to meet your specific needs. We offer media production services tailored to customer requirements, ranging from small-scale non-cGMP manufacturing to large-scale cGMP-grade production, regardless of the stage of research and development. Recommended for the following situations: ■ If you want to customize the components of the media - Removal, addition, or concentration changes of specific components in the media are possible. ■ If you want to change the format of the media - Scale-up is possible, such as changing from bottles to bags. ■ If you want it to be cGMP compliant - We can accommodate future clinical or commercial manufacturing. ■ If you want to add testing items (Quality check: QC) - You can add any tests not included in catalog products. *For more details, please refer to the PDF document or feel free to contact us.
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The Regenerative Medicine Creative Experience Lab (T-CEL) is a total solution experience lab specialized in regenerative medicine and cell and gene therapy, with the concept of "beyond the cutting edge." It focuses on the rapidly growing field of cell and gene therapy, showcasing our innovative products and solutions. We also offer demonstrations and training using these products, as well as tours. We support customers considering research and development or manufacturing processes. *The "Total Solution Catalog for Cell and Gene Therapy Development" is also available! Please download the PDF to view it. [Introducing T-CEL at the 7th BioPharma Expo, our booth] We will be exhibiting at the "7th BioPharma Expo (Interphex Week Tokyo)" held at Tokyo Big Sight from July 5, 2023. Our booth will showcase products specialized in research and development and manufacturing for regenerative medicine and cell and gene therapy. We will also introduce T-CEL, conduct product and technology seminars, and hold booth seminars. We look forward to your visit!
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This product is an integrated micro-spectrophotometer with built-in software, a personal model that brings the exceptional accuracy and reproducibility of the Thermo Scientific NanoDrop system closer to you. It can measure the concentrations of purified DNA, RNA, and proteins up to 30 Abs. It calculates the A260/A280 and A260/A230 purity ratios, which are important for sample purity. In addition, we also offer the Thermo Scientific NanoDrop One micro-spectrophotometer, as well as the NanoDrop Eight micro-spectrophotometer, which can measure 8 samples simultaneously. 【Features】 ■ Measurement of nucleic acids and protein concentrations at 230, 260, and 280 nm ■ Optional background measurement at 340 nm ■ All-in-one with built-in software (no PC required) ■ Protein concentration measurement (A280, BSA, IgG) ■ Automatic data saving and USB export ■ Optional printer module for printing on low-temperature resistant labels *For more details, please refer to the PDF document or feel free to contact us.
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Thermo Scientific Nalgene HDPE packaging bottles are designed to minimize the risk of contamination from biological materials and foreign substances. They are sturdy, easy-to-pour narrow-mouth HDPE bottles manufactured in a properly controlled environment. In addition to excellent chemical resistance and sterilizability, they are human DNA, RNase, DNase, and pyrogen-free, resulting in a high-quality product. ◆ Excellent chemical resistance ◆ Manufactured in a properly controlled environment ◆ Sterilized (SAL^-6) ◆ Human DNA, RNase, DNase, and pyrogen-free ◆ Leak-proof design (verified for leakage at 10 psi pressure) ◆ Sturdy and easy-to-pour narrow-mouth HDPE type ◆ Wide range of capacities available Equipped with a PP cap and packaged in a tray with shrink wrap, they can also be used for filling into manufacturing line equipment. Additionally, they are double-packaged in a poly bag, making them suitable for cleanroom manufacturing environments.
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The Thermo Scientific SpeedVac centrifugal concentrator can rapidly concentrate and dry a variety of samples. It utilizes centrifugal force to prevent boiling and foaming of samples while lowering the boiling point of solvents under reduced pressure, and it promotes the vaporization of solvents through heating. We have now launched the Thermo Scientific SpeedVac SRF110 cooling centrifugal concentrator, which is equipped with a cooling function. A blog is also available on our website. https://www.thermofisher.com/blog/learning-at-the-bench/centrifugal-evaporator-rna-workshop-lsd-1/ In addition to pre- and post-cooling functions, it comes standard with a feature that allows the internal temperature to be set to low during operation. *For more details, please refer to the PDF document or feel free to contact us.
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LIMS, or Laboratory Information Management System, is a system that automatically collects and analyzes data related to samples, experimental results, workflows, and analytical instruments. By automatically collecting all data in the lab, it improves the productivity and efficiency of the lab, enhances compliance by preventing errors and tampering from manual input, and promotes data integrity for the company. Thermo Scientific SampleManager LIMS software is an all-in-one solution that encompasses not only LIMS but also electronic lab notebooks (ELN), lab execution systems (LES), and scientific data management systems (SDMS). It is used in a wide range of laboratories across various industries, including quality control departments in pharmaceuticals, chemicals, metals, oil, and food, as well as in research and development (R&D) fields.
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The Gallery discrete automatic analysis system automates manual wet chemical analysis, spectrophotometric analysis (colorimetric and enzyme analysis), and electrochemical analysis (measurement of pH and electrical conductivity). You can view an overview of this system, including measurement examples and applications, from the PDF download.
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The basics of lab safety involve organizing equipment, reagents and chemicals, and samples. A cluttered environment can lead to mix-ups and operational errors, posing significant risks to safety management. Switching from glass labware to plastic can prevent injuries from breakage, and using chemical identification wash bottles can help avoid mix-ups and operational mistakes. ▼ Product lineup (excerpt) - Chemical identification wash bottles - Safety bottle carriers - Biohazard containers The first step in lab safety management and chemical regulation measures is identifying chemicals in the lab and conducting risk assessments. By implementing appropriate measures, you can ensure the safety of lab staff and achieve good research results. Please make use of the latest lab safety products to create a safe and efficient lab environment. We are also sharing information about lab safety management on our blog! ▼ Recommended blog articles are also available for the following individuals: - Those responsible for safety management and risk management in the workplace (lab) - Those who want to implement biosafety and biosecurity measures - Those who want to address the "chemical regulation" measures revised in the "Occupational Safety and Health Act" in April 2024 - Those concerned about lab safety
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Thermo Scientific vacuum ovens are designed with safety, reliability, and efficiency in mind. They are used in industries such as pharmaceuticals, food, electronics, and aerospace, and we offer a variety of models in different temperature ranges and sizes to accommodate many applications. *For more details, please refer to the PDF materials or feel free to contact us.*
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Ion contamination is a major concern for semiconductor manufacturing processes and finished devices, as it can lead to corrosion, erosion, and short circuits. Ion chromatography (IC) is an efficient analytical method that can quickly measure trace components and major constituents of various process contaminants in the semiconductor industry. We will introduce how our ion chromatography system can be utilized. *For more details, please download the PDF document or feel free to contact us.*
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Due to the recent shortage of helium gas supply, it has become urgent to review the operation of analytical instruments that use helium. Measures for GC and GC-MS include reducing helium consumption or using hydrogen as an alternative carrier gas. In addition to the general helium depletion issue, you can view an explanation of our solutions in the PDF download.
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- The control panel mounted on the top allows easy access to the CryoPlus microprocessor controller. - A combination of 16 preset audio and visual alarms maximizes product protection. - In addition to high-density polyurethane insulation, two independent gaskets reduce moisture ingress and freezing into the chamber. - 24 three-color LEDs continuously display the liquid nitrogen level and high/low levels. - The sleeve for temperature retention, which comes standard, helps maintain a lower temperature at the top, making operations in the vapor phase more efficient. - A digital temperature display sensor is placed under the lid to show the highest temperature reading inside the tank. - It is equipped with 24 three-color LEDs that continuously display the actual liquid nitrogen level and the high/low set points. - The storage tank is vacuum insulated with a stainless steel interior. - It features alarm contacts for remote monitoring of the storage tank's condition. - All models come standard with an LN2 transfer hose.
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The analytical methods for high-concentration sodium hydroxide (NaOH) are specified in JIS K1200 Industrial Sodium Hydroxide Parts 1 to 10. Among these, the methods for measuring chlorides include the mercuric thiocyanate spectrophotometric method, the modified Holthart method, and the ion chromatography analysis method. The mercuric thiocyanate spectrophotometric method is often avoided due to the strict handling and management of mercury compounds. The modified Holthart method quantifies chlorides by adding an excess of silver nitrate solution and performing back titration with ammonium thiocyanate solution, but it is not suitable for quantifying low-concentration chlorides in samples. The ion chromatography analysis method involves complex pretreatment operations and carries the risk of sample contamination; however, this application note introduces a method that automates the pretreatment step using cation exchange resin inline. This automated pretreatment is a technique for inline neutralization using our suppressor technology. It can accommodate not only NaOH but also many high-concentration basic samples, allowing for the analysis of anionic components in the samples.
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The industries where the use of ion chromatography is recommended are diverse, as follows. Our ion chromatograph features high speed and high separation, making it suitable for trace analysis of ionic compounds, impurities, and contaminants required in these fields, and it can be utilized in research and development as well as quality control. We have a wealth of measurement examples as listed below, so please make use of them to solve your current challenges and improve the efficiency of your analytical operations. - Semiconductors - Batteries - Electronic devices - Chemical products - Materials - Oil and gas - Biofuels - Power
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N-nitrosodimethylamine (NDMA) is an organic compound represented by the chemical formula (CH3)2NNO. NDMA is a known carcinogen found in some fermented foods. The measurement of nitrite ions can be performed using wet chemical analysis, but a representative method in instrumental analysis is ion chromatography (IC). In IC, separation is achieved using an ion exchange column, and detection is carried out using conductivity detection, electrochemical detection, UV detection, or mass spectrometry. Methods using IC typically require little to no sample pretreatment for many pharmaceutical samples, and derivatization of the target components is also unnecessary.
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The Gallery discrete automatic analyzer automates manual wet chemical analysis, spectrophotometric analysis (colorimetric and enzyme analysis), and electrochemical analysis (measurement of pH and electrical conductivity). The discrete method allows for the simultaneous measurement of many analytical components, reducing the overall analysis time and the operator's workload. The Gallery discrete automatic analyzer minimizes waste liquid volume by utilizing miniaturized components and a unique low-volume cell design, allowing analysis with a small amount of reagents, which in turn reduces the costs associated with analysis. *For more details, please refer to the PDF document or feel free to contact us.*
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The detection and identification of compounds of unknown origin is challenging, often involving complex volcanic processes, and it takes time to obtain results. Additionally, high reliability is required for final identification, which necessitates the confirmation of multifaceted information. By measuring the molecular weight of chemical substances with sufficient accuracy, it is possible to determine the elemental composition and identify the chemical structure of the substance using isotope ratios and fragmentation patterns. Using high-resolution GCMS allows for the reliable detection of target components from complex matrices due to its high mass resolution and mass accuracy. This technical document introduces a method for reliably identifying unknown substances almost instantaneously. It connects a direct injection probe to our high-resolution GCMS (Orbitrap GC-MS system) and rapidly identifies compounds using both electron ionization and chemical ionization.
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The chemical components of food packaging (especially those derived from polymers, dyes, and inks) can pose health risks to consumers by migrating into food. In the United States, the migration limit applicable to residual solvents and non-volatile food additives is 50 ppm. Additionally, the accurate quantification of residual solvents in flexible packaging is regulated by established methods such as EN 13628-1:2002. When analyzing volatile impurities in solid polymers using liquid injection, a cumbersome process of dissolving the sample in an appropriate solvent is required. Furthermore, high-viscosity solutions containing non-volatile long-chain polymers can contaminate the GC injector port, leading to increased analysis costs due to frequent maintenance. On the other hand, using headspace sampling allows for the rapid and easy extraction of volatile components from food packaging samples, eliminating the need for time-consuming sample preparation. This technical document presents the quantitative results of residual solvent analysis in food packaging materials conducted using the TriPlus 500 headspace (HS) autosampler. The dual detector configuration of FID/MS enabled the detection, identification (using hydrogen flame ionization detection), and confirmation (using mass spectrometry detection) of unknown impurities.
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We introduce water quality analysis equipment for beer brewing, such as microbreweries. The process of analyzing water quality, which is a crucial factor in determining the quality of beer, includes various stages such as brewing water, wort during fermentation, kegging, bottled beer, and even wastewater after brewing. There is a wide range of products required depending on the process. We showcase a comprehensive lineup of products used for water quality analysis on our dedicated beer brewing webpage. In addition to introducing the products needed for each stage, we provide useful information related to beer quality analysis, including technical notes that cover necessary technical information and measurement methods. By utilizing high-quality beer analysis solutions, we will continue to enhance our support to help you brew delicious beer.
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Organic solvents are widely used in the synthesis of pharmaceuticals, but they cannot always be completely removed during the manufacturing process. To ensure safety, the final product is tested to evaluate whether the solvents used have been efficiently removed and, if any remain, whether their concentrations are within acceptable limits. The United States Pharmacopeia (USP) method <467> provides detailed procedures for screening, confirming, and quantifying residual solvents, including sample preparation and analytical conditions. The new TriPlus 500 HS autosampler adopts an innovative design with a flow path that directly connects the heated valve to the GC column. This means high-precision sample introduction and excellent reproducibility of peak areas. Furthermore, by continuously purging the sample path, the robustness and reliability of the system are ensured, reducing the risk of contamination and carryover (which is important when analyzing high-boiling residual solvents). This technical document reports the results of residual solvent analysis conducted in accordance with USP <467>, using the TriPlus 500 HS autosampler and FID as the optimal detector.
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In the quantitative analysis of pesticide residues in food, triple quadrupole mass spectrometers such as GC-MS/MS and LC-MS/MS are commonly used. This is because they can separate trace amounts of pesticides from the food matrix and detect peaks with high sensitivity. On the other hand, our Orbitrap mass spectrometer allows for advanced mass separation, enabling the detection of pesticide peaks without interference from the food-derived matrix. This application note introduces a simultaneous analysis of 325 pesticide components using a GC-Orbitrap mass spectrometer. The Orbitrap mass spectrometer facilitates method development for data acquisition in Full MS measurements, and its high mass accuracy allows for the precise estimation of molecular formulas for each fragment ion, providing reliable quantitative information.
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Polycyclic aromatic hydrocarbons (PAHs) are components generated from the heating of organic materials, and due to concerns about their carcinogenicity and other health effects, PAHs present in food are regulated in some countries and regions. In particular, edible oils may undergo heating as a pretreatment during extraction from raw materials, which raises the possibility that PAHs could be generated during the thermal processing, even if the raw materials themselves do not contain PAHs. Since various countries have established standard values for PAHs, safety inspections may be required when exporting food abroad. These standard values are becoming stricter year by year, and high-sensitivity detection measurement devices are needed to accurately quantify these standard values. This application note presents a case of highly sensitive quantification of PAHs without interference from matrix components, achieved using the high mass resolution and mass accuracy of the Orbitrap GC-M system, a high-resolution GCMS. Data acquisition is performed through full scan measurements, making method development easier and enabling retrospective analysis (such as checking whether newly regulated components were present in previously measured samples).
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The processed foods we consume develop unique flavors and aromas due to various differences in the quantities and origins of the ingredients used, as well as cooking times, even if they share the same name. Understanding these differences at the component level is crucial in food research, and the use of GC/MS methods is expected to shed light on volatile components, which are believed to be factors influencing aroma. Non-target analysis that encompasses all contained components has been considered challenging due to the vast amount of information and the complexity of analytical operations. To obtain reliable results, efficient sampling methods, chromatographic separation, advanced mass separation, and software for smooth statistical analysis of the data are required. In this technical document, we present a workflow using high-resolution GC-MS (Orbitrap GC-MS) and Compound Discoverer software for low molecular analysis, as a solution to smoothly and accurately address this complex food comparison, exemplified by the inter-sample comparison of commercially available meat sauces from three food manufacturers.
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If your customer's GC is only operating intermittently, they are losing the profits that could have been generated by continuous operation. The Thermo Scientific TRACE 1600 series gas chromatograph (GC) was developed with time and space efficiency in mind. Our patented modular design features plug-and-play injectors and detectors, enabling offline maintenance and allowing for easy changes to different configurations with a single GC, thereby enhancing productivity. When combined with the Thermo Scientific AI/AS 1610 liquid autosampler, this system enables simple and reliable automatic sample injection, meeting a wide range of sample throughput demands. Additionally, the optional He-Saver H2-Safer module addresses helium shortages, significantly reducing helium consumption. *For more details, please refer to the PDF document or feel free to contact us.*
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In analytical testing labs, it is desirable to obtain reliable results easily and consistently at any time. The ISQ 7610 GC-MS is a system that provides consistent results across all lab systems due to its simplified operation, automated workflow, and wide dynamic range. With NeverVent technology, long-life detectors, and intelligent software, unnecessary downtime is reduced, and sample throughput is improved. This system can be upgraded from a basic configuration to an advanced configuration to address various analytical challenges. It offers high cost-effectiveness for regulatory-compliant GC-MS analysis. *For more details, please refer to the PDF materials or feel free to contact us.*
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Routine labs involved in food, environmental, and forensic/toxicological analysis are facing a changing environment characterized by regulatory requirement changes, lower detection levels, an increase in compounds, reduced turnaround times, decreased profits, and intensified competition. In such circumstances, your GC-MS/MS system must deliver high performance and consistently reliable quantitative results. The Thermo Scientific TSQ 9610 Triple Quadrupole GC-MS/MS system features a vacuum-free ion source and column exchange with NeverVent technology, a long-life detector, and intelligent software, which reduce unnecessary downtime, improve sample throughput, and provide a high return on investment (ROI). Additionally, the optional He-Saver H2-Safer module addresses helium shortages by significantly reducing consumption when using helium or hydrogen gas, ensuring safety. *For more details, please refer to the PDF document or feel free to contact us.*
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Introducing the Thermo Scientific Samco Capillary Transfer Pipette, which allows for efficient blood collection and dispensing. This is a must-see for customers like: - Those concerned about breakage with glass products - Users finding their current products difficult to handle due to air bubbles and low accuracy - Those who want to dispense within seconds and prefer not to use coagulants ■ Applications • Testing with whole blood samples, such as infectious disease tests, cardiac marker tests, cholesterol tests, etc. • POC or OTC test kits • Tests conducted outside of testing facilities • Rapid tests that provide results within minutes ■ How to Use STEP 1: Suction using capillary action STEP 2: Accurately suction to the mark horizontally STEP 3: Press the valve ■ Features • Capillary action allows for suction without air bubbles • Safer to handle than glass due to its plastic construction • Fixed volume ensures good accuracy with no waste of samples • Can dispense quickly (within seconds), eliminating the need for coagulants ■ Sizes Available in two types: 25 μL and 50 μL For samples, requests for materials, or inquiries, please contact us first.
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Don't you think all consumables are the same? Subtle differences in size, shape, and ease of use can affect usability. Please try the actual products as samples. ■ Plastic Tubes We offer sterilized products suitable for tissue culture, available in sizes of 5 mL, 14 mL, and 16 mL. ■ Standalone Conical Tubes 30 mL A perfect size with a maximum capacity of 25 mL. Proven performance in COVID testing labs. ■ Petri Dishes Essential for culturing fungi, bacteria, and other microorganisms. Available in 90 mm and 140 mm types. The contact dish is 57 mm with a 1 cm square grid. ■ Inoculating Loops & Needles The loop type is available in 1 μL and 10 μL with capacity calibration certification. Needle types are also available. Both are sterilized with electron beams. ■ Mini Trays Available in 60-well and 72-well formats. They have low protein adsorption and allow for efficient mixing of samples and reagents. ■ Sample Storage Vials Available in high-demand sizes of 90 mL and 120 mL. The click cap allows you to confirm that the cap is securely closed by sight, sound, and touch. For samples, requests for information, or inquiries, please contact us first.
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This is a stable isotope ratio mass spectrometer (IRMS) primarily designed for light elements such as carbon, nitrogen, sulfur, oxygen, and hydrogen. It is the latest model in the DELTA series, which has over 30 years of proven performance as a standard in stable isotope ratio analysis. ■ Compatible with various pretreatment devices to support a wide range of isotope ratio analysis applications <Representative pretreatment devices> - Bulk analysis of solid powder samples: EA IsoLink elemental analyzer pretreatment device - Analysis of components separated by GC: GC IsoLink II gas chromatograph pretreatment device - Analysis of oxygen and hydrogen in water, carbon and oxygen in carbonates, etc.: GasBench Plus general-purpose pretreatment device - Analysis of aqueous solutions or components separated by LC: LC IsoLink II liquid chromatograph pretreatment device <Application examples> - Determining the origin of food, additives, and authenticity - Criminal investigations, anti-doping analysis - Environmental dynamics analysis, biogeochemical research, etc. ■ Enables stable analysis and operation of the device - Inherits the high robustness and stability of conventional models ■ Allows for high-sensitivity analysis more easily than conventional models - Equipped with the Qtegra ISDS software, which is even more user-friendly and visually appealing than the traditional ISODAT software - Improved manufacturer-guaranteed sensitivity
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The "Nicolet RaptIR" is an infrared microscope equipped with the ability and precision for visible observation, allowing for a broad overview of the analysis target, quick identification of areas of interest, and insights at the micrometer scale. Using this product significantly enhances productivity in terms of both sample size and analysis time. Moreover, it is adaptable to various users and can flexibly accommodate use across different industries. The objective lens, infrared spectral capabilities, and clear images are beneficial in diverse research fields such as art restoration, quality control, and materials science. 【Features】 ■ Accurately identifies complex samples ■ Quickly obtains analysis results at the micrometer scale ■ Significantly reduces the time from sample to report generation ■ Scalability to achieve various objectives *For more details, please refer to the PDF document or feel free to contact us.
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The Thermo Scientific Process 16 twin-screw extruder adopts a segmented screw design, allowing for a shorter overall length, which enables control over residence time within the extruder and accommodates a wide range of materials with low processability. Additionally, it offers various options for barrels and feeders with different features, ensuring that even materials requiring delicate and advanced processing can achieve the optimal processing conditions due to its flexibility.
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The Luminex xMAP INTELLIFLEX System offers a compact design with a wide dynamic range. It features a touchscreen user interface, and its startup, shutdown, and maintenance processes are automated, making it user-friendly and easy to maintain. Additionally, it includes a lineup of models such as the DR-SE model, which can measure two parameters, the Luminex 200 Instrument System, and the Luminex FLEXMAP 3D Instrument System. 【Features】 ■ Wide dynamic range ■ Compact footprint ■ Improved ease of use ■ Supports high-throughput applications We are currently running a campaign offering a special price for a limited number of 10 units. 【Eligible Products】 Luminex 200 System Luminex xMAP INTELLIFLEX System Luminex xMAP INTELLIFLEX DR-SE System 【Campaign Period】 From May 24, 2024 (Friday) to September 27, 2024 (Friday) for orders received *For more details, please refer to the PDF materials and campaign page.
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The high-end model "Bigfoot Spectral Cell Sorter" enables both spectral analysis and conventional compensation. It allows sampling from 1.5 mL, 5 mL, and 15 mL tubes, equipped with automatic tube type identification and crash detection features. Automated 5-axis stream alignment and QC enhance usability and reduce variability from short to long durations. 【Features】 ■ Convenient storage space that helps organize lab space ■ Automatic mixing of sheath fluid and system cleaning without human intervention ■ Equipped with stirring and temperature control (4–37°C) functions ■ Built-in custom-designed Class II safety cabinet ■ Flexibly accommodates various cell sorting applications *For more details, please refer to the PDF document or feel free to contact us.
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**Features** - Compatible volume range for nL dispensing (50 nL to 50 µL) - Achieves high-speed dispensing of 384-well plates in 6 seconds (50 nL) - Compatible microplates (height 5–50 mm): 96, 384, 1,536 well plates - Graphic user interface and color LCD display - Dispensing to any well or customizable position - Supports normal diluents, buffers, protein solutions, as well as highly viscous cell solutions and beads - Minimal dead volume to reduce reagent loss - Backflush function allows recovery of reagents from the tube **Specifications** - Compatible plates: 96, 384, 1,536 well plates - Dispensing volume range: 50 nL to 50 µL - Dispensing accuracy CV: 1–10 µL: CV ≦ 4% - Dispensing speed: 384-well plate in 28 seconds (1 µL) - Dimensions (W×D×H): 355 × 375 × 220 mm - Weight: 9.6 kg - Robot connectivity available
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The Thermo Scientific Multidrop Pico 1 and Pico 8 Digital Dispensers use a non-contact dispensing method with dedicated dispensing head cassettes, eliminating the risk of sample mix-ups and contamination. 【Features】 - Reduces dead volume of reagents and samples by up to 10 times - Completes a task that takes 10 minutes by manual dilution in just 15 seconds - Speeds up qPCR workflows - PicoIT software features a flexible and intuitive design ◎ Supports the creation of complex dilution series, such as IC50 and drug-drug interactions - Capable of dispensing DMSO, aqueous solutions, and PCR master mixes - Pico 8 can set up to 8 different reagents simultaneously 【Specifications】 - Compatible plates: 12, 24, 48, 96, 384, 1,536 well plates - Dispensing volume range: 11 pL to 20 μL, 1 nL to 200 μL - Dispensing accuracy CV: ≤8% - Dispensing speed: 11 pL to 10 μL in a few seconds - Dimensions (W×D×H): Pico 8: 47×38×23 cm Pico 1: 31×28×20 cm - Robot connection: Only possible with Pico 8
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Thermo Scientific Samco Clicktainer vials support the careful handling of your valuable samples. • Easy sample collection • Safe sample transport • Large opening and leak-proof cap • Multi-click design that allows visual, auditory, and tactile confirmation of cap closure • Choice of packaging
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Whether your application's needs involve separation, large-volume pelletization, protein purification, or DNA isolation, Thermo Scientific Nalgene and Nunc centrifuge containers offer reliable solutions with a wide range of sizes from 10 mL to 2 L. The extensive product lineup includes numerous centrifuge tubes, tubes, bottles, caps, and sealing caps for various centrifugation applications.
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In recent years, there has been a rapid diversification of pharmaceutical modalities, including the widespread use of high molecular weight proteins such as antibodies, viral vectors for gene therapy, and cell medicines like CAR-T cell therapy. Maintaining the highest levels of safety, efficacy, and quality in the manufacturing of these biopharmaceuticals has become a challenge. The Thermo Scientific CentriPAK bioprocess container (BPC) is a new batch centrifugation system that provides innovative value in the recovery, separation, and purification processes of biopharmaceutical manufacturing. Features: - Gamma-ray sterilized & single-use, eliminating the need for cleaning and sterilization validation - Supports large volumes with a maximum capacity of 10.2 L (6 bags x 1.7 L capacity) - Employs a manifold system for filling in a closed system: eliminates contamination risks - Capable of centrifugation at a maximum centrifugal force of 7,187 x g - Compatible with sterile connectors and sterile welding - Bags that can store separated supernatant in a closed system - Accompanied by an analysis certificate - Flexible bags contribute to waste reduction compared to bottles - A single bag with a capacity of 1.7 L is also available: suitable for small-scale applications
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PFAS compounds include perfluorooctanoic acid (PFOA) and perfluorooctane sulfonic acid (PFOS), and due to the increasing number of organic fluorine compounds that impact the environment and precursors that cannot yet be analyzed, there is a demand for the development of suitable analytical methods. As a result, there is a growing need for a single analytical workflow that can directly quantify as many PFAS as possible. Traditional ion chromatography (IC) cannot directly analyze non-ionic perfluoroalkyl substances (PFAS). However, using continuous ion chromatography (CIC), it is possible to measure organic halogen contaminants such as AOX. Unlike the conventional titration AOX method, which only measures the total organic halogens, CIC provides additional information on adsorptive organic fluorine compounds and allows for the speciation of halogens. *Please note that the ion chromatograph introduced in this application note has been discontinued. The successor model is the Thermo Scientific Dionex Inuvion IC system.*
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