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タクミナ

EstablishmentNovember 1956
capital89299Ten thousand
number of employees324
addressOsaka/Chuo-ku, Osaka-shi/10th Floor, Daiwa Kitahama Building, 2-2-14 Awajicho
phone06-6208-3971
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last updated:Jun 18, 2026
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タクミナ Product Lineup

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Lab / Research and Development Lab / Research and Development
Smooth flow pump Smooth flow pump
Motor-driven metering pump Motor-driven metering pump
Solenoid-driven metering pump Solenoid-driven metering pump
Chemical transfer pump Chemical transfer pump
Tank and injection system Tank and injection system
Mixer machine Mixer machine
Disinfection devices and equipment Disinfection devices and equipment
Measurement and control equipment Measurement and control equipment
Device/Unit Device/Unit
Fluid analysis and actual liquid testing Fluid analysis and actual liquid testing
Implementation case Implementation case
Lab

Lab / Research and Development

At Takumina, we offer pumps that can easily scale up from lab and research development to pilot and process lines.

Non-pulsating small pump "0.01ml/min unit! Lab-use Q"

For research purposes! A precision pump that can deliver stable liquid over a long period in 0.01mL increments.

Solving all pump-related issues and complaints from research and development to process lines at once! The Smooth Flow Pump provided by Takumina, a precision pump manufacturer. The 'Q' is a new mechanism precision pump for micro-dosing that combines the ease of use of a tube pump with the liquid delivery accuracy of a syringe pump. It allows for long periods of continuous liquid delivery without a decrease in flow rate over time. <Customer Feedback> "I no longer need to monitor or adjust the flow rate!" "I was able to conduct long experiments continuously!" "The delivery conditions remained unchanged, and I obtained highly reliable data!" <Features> ■ Excellent quantitativeness and responsiveness ■ Long-lasting liquid delivery accuracy ■ Continuous, constant flow without pulsation ■ No leakage or alteration of the liquid ■ Resistant to pipe blockage and dry running ■ Easy to scale up ■ User-oriented simple design ■ Compatible with a wide range of chemical liquids We also offer types that can handle suspensions (slurries) and are suitable for autoclave sterilization. The Smooth Flow Pump has a lineup that meets various usage conditions and liquid requirements, including flow rate, pressure, liquid viscosity, discharge accuracy, slurry diameter and material, installation and transfer conditions, and cost. Please feel free to contact us as we will help you select and introduce the most suitable product for your needs.

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Slurry and suspension compatible! Long-lasting stability! Laboratory non-pulsating micro liquid delivery pump Q

A slurry liquid with solid particles can also be delivered stably! A precision pump that can deliver stably for a long time in 0.01 mL increments.

The Takumina precision pump offers the "Smooth Flow Pump," a problem-solving pump that resolves all issues and complaints related to pumps, from research and development to process lines! This is the Q Pump series, utilized from laboratory and research development applications to process lines. Even when used for long periods in the transport of suspensions (slurries), it can deliver stable liquid transfer without wear or flow rate reduction. 【Features】 - Excellent metering and responsiveness - Flow rate setting in 0.01 mL increments - Consistent delivery accuracy over long periods - Lightweight, compact, quiet, and low vibration - Easy operation and maintenance - Does not break under dry running or abnormal pressure - Continuous constant flow without pulsation - Does not leak or alter the liquid - Does not break under pipeline blockage or dry running - Easy to scale up - Compatible with a wide range of chemical liquids The Smooth Flow Pump has a lineup that accommodates various usage conditions and liquids, including flow rate, pressure, liquid viscosity, discharge accuracy, slurry diameter and material, installation and transport conditions, and costs. Please feel free to contact us, and we will help you select and introduce the most suitable product for your needs.

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Non-pulsating small pump "5μL/min - Lab Micro Q"

Flow rate adjustable freely in the range of 5 to 5000 μL/min! A precision lab pump ideal for research and development applications.

The Takumina precision pump offers the problem-solving "Smooth Flow Pump," which resolves all issues and dissatisfaction related to pumps from research and development to process lines! This product is a pump that can continuously deliver precise liquid at the μL scale. Flow rate can be adjusted freely within the range of 5 to 5000 μL/min. There is no liquid leakage or contact with outside air, allowing for the transfer of strong acids, strong alkalis, and water-sensitive substances. Its compact size makes it easy to install anywhere. It boasts excellent flow accuracy and reproducibility, providing stable delivery with a continuous flow that has no pulsation. 【Features】 ■ Excellent flow accuracy and reproducibility ■ Stable delivery with a continuous flow that has no pulsation ■ Freely adjustable flow rate within the range of 5 to 5000 μL/min ■ Maximum discharge pressure of 3 MPa ■ No liquid leakage or contact with outside air (can also transfer strong acids, strong alkalis, and water-sensitive substances) ■ Flow rate does not decrease even with long-term use The Smooth Flow Pump has a lineup that accommodates various usage conditions and liquids, including flow rate, pressure, liquid viscosity, discharge accuracy, slurry diameter and material, installation and transfer conditions, and cost. Please feel free to contact us, and we will help you select and introduce the most suitable product for your needs.

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The rental plan for the lab-use non-pulsating pump "SubscrQ Pump" is now available!

Since its release, the Q Pump, widely adopted for research and development purposes, has launched a "subscription service"!

The "Smooth Flow Pump," a problem-solving type pump provided by Takumina, meets all needs for precision pumps, resolving pump-related issues and dissatisfaction from research and development to process lines in one go. Now, the "Smooth Flow Pump Q Series," widely used in research and development scenes such as flow synthesis and long-term continuous dripping, introduces a new value of "pump subscription service," allowing use without purchase. ~ Three Key Points ~ 1. Use only for the duration of research and experiments, and return it when finished. 2. Affordable and easy to use even without a purchase budget. 3. Reliable performance as it comes from a pump manufacturer. ~ Benefits of Subscription ~ ■ Low initial cost! ■ Use only for the necessary period! ■ Monthly payments available! This service is environmentally friendly as you return the pump instead of disposing of it after use. ~ Features of Q Pump ~ ✓ Compatible with a wide range of chemicals ✓ Excellent metering and responsiveness ✓ Consistent delivery accuracy over long periods ✓ Continuous steady flow without pulsation ✓ No leakage or alteration of the liquid ✓ Resistant to pipe blockage and dry running ✓ Easy to scale up for processes ★ For more details, please download the catalog. Feel free to contact us with any inquiries.

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Micro Liquid Delivery Pump for Semiconductor Manufacturing

Precise supply of liquid medicine at a rate of 0.01 ml/min. Contributes to quality improvement in semiconductor manufacturing.

In the semiconductor manufacturing industry, accurate supply of chemicals is essential for the stable production of high-quality products. Particularly in the fine processing processes, even slight fluctuations in the flow rate or supply amount of chemicals can significantly impact product quality. Instability in chemical supply can lead to reduced yield and the occurrence of defective products, which can severely decrease production efficiency. The pulsation-free, metering pump 'Q' allows for micro-dosing at 0.01 mL increments, achieving long-term stable delivery. This addresses the challenges of chemical supply in the semiconductor manufacturing process and contributes to the stable production of high-quality products. 【Application Scenarios】 - Supply of resist liquid in photolithography processes - Supply of chemicals in etching processes - Supply of slurry in CMP processes - Supply of chemicals in cleaning processes 【Benefits of Implementation】 - Improved yield through stabilization of chemical supply amounts - Reduction in the rate of defective products - Increased efficiency of the manufacturing process - Stable supply of high-quality semiconductor products

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[For medical devices] Micro liquid delivery Q at a rate of 0.01 ml/min.

For research purposes! A precision pump that can deliver stable liquid over long periods in 0.01mL increments.

In the field of medical devices, particularly in infusion therapy, accurate medication delivery is directly linked to patient safety and treatment efficacy. The ability to supply small amounts of medication stably over long periods is crucial for improving the quality of treatment. Variations in flow rate and pulsation can lead to dosing errors and increased burden on patients. Our non-pulsatile, quantitative pump 'Q' allows for micro-dosing at increments of 0.01 mL/min, maintaining high precision even during long-term continuous delivery. [Usage Scenarios] - Infusion therapy - Nutritional support - Medication administration [Benefits of Implementation] - Improved treatment efficacy through accurate medication delivery - Reduced burden on patients - Increased operational efficiency for healthcare professionals

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[For Research Institutions] 0.01ml/min Unit Micro Liquid Delivery Q

For research purposes! A precision pump that can deliver stable liquid over long periods in 0.01mL increments.

In experiments at research institutions, precise control of the liquid delivery volume is essential for accurate data acquisition. Particularly in experiments involving small amounts of reagents or chemicals, even slight variations in the delivery volume can significantly impact the experimental results. Additionally, stability in the delivery volume is required for long-duration experiments. The pulsation-free, quantitative pump "Q" that delivers micro amounts at a rate of 0.01 ml/min combines the ease of use of a tube pump with the delivery accuracy of a syringe pump, enabling continuous delivery over extended periods. It eliminates the hassle of monitoring and adjusting flow rates, contributing to reliable data acquisition. 【Application Scenarios】 - Cell culture - Reagent supply to analytical instruments - Micro-reaction experiments - Material synthesis 【Benefits of Implementation】 - Improved reproducibility of experiments - Reduced experimental time - Decreased waste of reagents - Enhanced reliability of experimental data

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Ideal for microfluidics in materials science! Precision pump

From research and development to process lines, micro-dosing at 0.01 mL/min units.

In the field of materials science, coating processes require uniform film thickness and high-quality coatings. In particular, the precise application of small amounts of liquid is a crucial factor that affects product performance. Inaccurate liquid delivery can lead to uneven coatings and defects, potentially resulting in a decline in product quality. Our pulsation-free, quantitative pump "Q" for micro liquid delivery at 0.01 mL/min enables precise delivery of small amounts, contributing to improved coating quality. 【Application Scenarios】 - Precision coating - Thin film formation - Research and development 【Benefits of Implementation】 - Improved delivery accuracy - Enhanced coating quality - Increased reliability of experimental data

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Micro Liquid Delivery Pump '0.01ml/min Unit Q' for Chemical Reaction Control

For research purposes! A precision pump that can deliver stable liquid over a long period in 0.01mL increments.

In the field of chemical reaction control, there is always a demand for improved reproducibility and accuracy of reactions. In particular, precise flow control in the addition of trace reagents and the supply of reactants is a crucial factor that influences the efficiency and quality of the reaction. Variations and pulsations in flow can lead to instability in the reaction and a decrease in the yield of the desired products. Our non-pulsating, quantitative pump 'Q' for micro-dosing at 0.01 ml/min combines the ease of use of a tube pump with the delivery accuracy of a syringe pump, enabling long-term continuous delivery. 【Application Scenarios】 - Trace addition of reagents in chemical reactions - Precise supply of reactants - Stabilization of long-term reactions 【Effects of Implementation】 - Improved reproducibility of reaction conditions - Increased reliability of experimental data - Enhanced yield of desired products

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Optimal for micro liquid delivery for fuel cells! Precision pump

For research and development and manufacturing of fuel cells. Stable liquid delivery at a rate of 0.01 mL/min.

In the energy industry, particularly in the field of fuel cells, high performance and efficiency are always required. One of the factors that influence the performance of fuel cells is the precise supply of reactants. Accurately and stably supplying small amounts of liquid is essential for enhancing the efficiency of fuel cells and improving product quality. Takumina's non-pulsating, quantitative pump "Q" for micro-dosing at 0.01 ml/min solves the challenges of small liquid supply from fuel cell research and development to manufacturing processes. [Application Scenarios] - Reagent supply in fuel cell research and development - Reaction liquid supply in the fuel cell manufacturing process - Performance evaluation tests for fuel cells [Benefits of Implementation] - Improved reliability of experimental data due to enhanced dosing accuracy - Increased research efficiency through long hours of continuous operation - Reduction of chemical waste and optimization of costs

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Micro Liquid Delivery Pump for Cosmetic Ingredient Analysis

Stable delivery in 0.01mL units. Contributes to improved accuracy in cosmetic ingredient analysis.

In the cosmetics industry, accurate delivery of trace samples during ingredient analysis is a crucial factor that affects the reliability of the analysis results. Particularly when handling expensive reagents or valuable samples, it is essential to eliminate waste and obtain precise data. Takumina's non-pulsating, quantitative pump 'Q' allows for micro-sample delivery at a rate of 0.01 mL/min, achieving stable delivery over long periods. This contributes to improved accuracy and efficiency in ingredient analysis. [Usage Scenarios] - Analysis of cosmetic raw materials - Ingredient analysis in quality control - Delivery of trace components in research and development [Benefits of Implementation] - Enhanced reliability of analysis results - Reduction of waste in reagents and samples - Increased efficiency in analytical tasks

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Micro Liquid Delivery Pump for Environmental Analysis

Supports contaminant analysis at a rate of 0.01 mL/min.

In the field of environmental analysis, it is essential to accurately measure trace contaminants in soil and water quality. Particularly when analyzing trace components at the ppb level, the accuracy of the delivery system significantly affects the reliability of the analytical results. Pulsations can cause fluctuations in the delivery flow rate, potentially leading to measurement errors. Additionally, it is important to prevent sample degradation. Our products enable micro-delivery at a rate of 0.01 mL/min, achieving stable delivery over extended periods. This allows for accurate and highly reliable analytical results. 【Application Scenarios】 - Trace component analysis in water quality pollution investigations - Trace component analysis in soil pollution investigations - Environmental analysis in research institutions 【Benefits of Implementation】 - Achievement of high-precision analytical results - Reduction of analysis time - Improvement of experimental data reliability

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Precision pump ideal for trace addition of food additives.

Accurately supply additives at a rate of 0.01 ml/min. Contributes to food quality control.

In the field of food additives, precise measurement and supply of additives are essential to ensure product quality and safety. Even a slight error in the amount added can significantly impact the product's flavor, texture, and shelf life. Additionally, excessive use of additives may increase health risks for consumers. Our non-pulsating, quantitative pump "Q" for micro-dosing at 0.01 mL/min enables precise supply of food additives. This allows food manufacturers to stabilize product quality and enhance safety. 【Application Scenarios】 - Precise measurement and mixing of food additives - Accurate addition of flavors and colorants - Research and development of food samples 【Benefits of Implementation】 - Minimizes errors in additive amounts, stabilizing product quality - Reduces risks associated with over- or under-use of additives - Supports the acquisition of highly reproducible data in research and development

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Q Series Non-Pulsating, Quantitative, Slurry Pump for Semiconductors

For stable liquid delivery of photoresist. Precision metering pump in 0.01mL increments.

In the semiconductor industry, precise application of photoresist, which is essential for forming fine circuit patterns, is required. Photoresist may contain fine particles, and variations in flow rate or particle sedimentation during transfer can affect application accuracy. To achieve uniform and stable application, a pump capable of stable liquid delivery over long periods, even at low flow rates, is necessary. Our Q Pump series addresses these challenges and enables stable transfer of photoresist. [Usage Scenarios] - Supply of photoresist - Precise application of small amounts of liquid - Reagent supply in research and development [Effects of Implementation] - Improved application accuracy - Enhanced yield - Maintenance of stable productivity

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Q Series Non-Pulsating, Metering, Slurry Pump for Pharmaceuticals

Ideal for cell culture! A precision pump that can deliver stable liquid over a long period in 0.01mL increments.

In the pharmaceutical industry, cell culture requires a stable supply of culture medium and minimizing damage to cells. In particular, precise injection of small amounts of culture medium and the transfer of cell suspensions can be affected by fluctuations and pulsations in flow rate, which may impact the cell growth environment. It is also important to prevent the degradation of culture medium components and reduce the risk of contamination. Our Q Pump series addresses these challenges and enables stable fluid transfer in the cell culture process. 【Use Cases】 - Precise supply of cell culture medium - Stable injection of culture medium - Low-damage transfer of cell suspensions - Transfer of small samples during research and development stages 【Benefits of Implementation】 - Stabilization of the cell culture environment - Improved culture efficiency - Reduced risk of contamination - Acquisition of highly reproducible experimental results

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Q Series Non-Pulsating, Volumetric, Slurry Pump for Food Applications

Stable delivery of solid particle dispersion. Precise addition of additives in 0.01 mL units.

In the food industry, the accurate mixing and uniform dispersion of additives are crucial for maintaining product quality. Particularly for additives containing fine solid particles, pump wear and flow rate reduction can affect mixing precision and compromise product uniformity. Our Q Pump Series achieves stable liquid transfer without wear or flow rate reduction, even after prolonged use, supporting the precise mixing of additives. 【Application Scenarios】 - Precise weighing and mixing of various additives - Stable transfer of dispersion liquids - Accurate sampling in quality control - Mixing of small quantities of additives in research and development stages 【Benefits of Implementation】 - Improved mixing precision of additives - Assurance of product uniformity - Stable quality control - Enhanced efficiency in research and development

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Q Series Non-Pulsating, Volumetric, Slurry Pump for Cosmetics

Stable liquid delivery of pigment dispersion. A precision pump capable of stable liquid delivery for long periods in 0.01 mL increments.

In the cosmetics industry, stable transfer of slurry liquids with dispersed solid particles such as pigments is essential to maintain product quality. In particular, the uniform dispersion of fine pigments greatly affects the color and texture of the product, and fluctuations in flow rate or precision degradation due to wear during transfer can lead to variations in quality and product defects. Our Q Pump series can transfer slurry liquids with dispersed solid particles stably for long periods, achieving precise liquid delivery without a decrease in flow rate. 【Usage Scenarios】 - Formulation and mixing of cosmetic ingredients - Transfer of pigment slurries - Sampling - Research and development applications 【Benefits of Implementation】 - Maintains uniform dispersion of pigments - Stabilizes product quality - Improves yield - Enhances efficiency in research and development

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Q Series Non-Pulsatile, Quantitative, Slurry Pump for Medical Devices

Solid particle dispersion can also be delivered stably for a long time in 0.01 mL increments.

In the field of medical devices, precise fluid control directly impacts product performance and safety. Particularly in inkjet printing, the ability to uniformly and stably discharge ink containing fine particles is crucial for achieving high-resolution print quality. Variations in ink distribution or discharge volume can lead to printing defects or equipment failures. Our Q Pump series can stably transfer slurry liquids containing solid particles without wear or flow reduction, thereby meeting the needs for precise fluid control in inkjet printing. 【Application Scenarios】 - Ink supply in medical inkjet printers - Precise quantitative discharge of liquids containing fine particles - Evaluation of ink properties during the research and development phase 【Benefits of Implementation】 - Achievement of high-resolution print quality - Improved yield through stabilization of ink discharge volume - Extended equipment lifespan and reduced maintenance costs

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Q Series Non-Pulsating, Quantitative Slurry Pump for Agriculture

For pesticide application. Stable delivery of solid particle dispersion. Precision pump with 0.01 mL increments.

In the agricultural sector, the uniform and accurate application of pesticides significantly affects crop growth and quality. In particular, slurry-type pesticides tend to have particles that easily settle and adhere, leading to issues such as pump wear, reduced flow rates, and clogging. These challenges can result in uneven application, decreased effectiveness of pesticides, and even equipment failure. Our Q Pump series achieves stable liquid transfer for such slurry liquids without wear or flow reduction over extended periods. 【Usage Scenarios】 - Transfer from pesticide mixing and dilution tanks - Automated spraying systems with precise chemical injection - Stable supply of slurry-type pesticides 【Benefits of Implementation】 - Improved uniformity of pesticide application - Maximization of pesticide effectiveness - Reduced maintenance burden on pumps - Cost reduction through precise flow control

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Pulsation-free, metering, slurry pump for automotive coating Q

Stable delivery of solid particle dispersion. A precision pump capable of long-term stable delivery in 0.01 mL increments.

In the automotive industry’s coating process, the precise application of paints and additives directly affects the quality and durability of the products. Particularly when using slurry-like coating liquids that contain fine solid particles, wear on pumps and fluctuations in flow rate can lead to uneven application and a decline in quality. In response to these challenges, our Q Pump series achieves stable transfer of slurry liquids and maintains high delivery accuracy over extended periods. 【Usage Scenarios】 - Precise supply of various coating liquids - Stable transfer of paints and additives - Small-batch, diverse coating tests during research and development stages - Uniform application on production lines 【Benefits of Implementation】 - Improved coating quality - Reduced application unevenness - Decreased material loss - Enhanced production efficiency

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Q Series Non-Pulsating, Quantitative, Slurry Pump for Materials Science

Stable delivery of solid particle dispersion slurry. Precise long-term delivery in 0.01 mL increments.

In the field of materials science, particularly in ceramics molding, the uniform transfer and accurate supply of raw material slurries are directly linked to product quality. Wear on pumps caused by solid particles in the slurry and fluctuations in flow rate during transfer can lead to molding defects and product variability. In response to these challenges, our Q Pump series achieves stable liquid delivery without wear or flow reduction, even with slurries containing dispersed solid particles, thereby supporting precise ceramics molding processes. 【Application Scenarios】 - Formulation and transfer of ceramics raw material slurries - Precise supply to molding machines - Transfer of small samples during research and development stages - Sampling in quality control 【Benefits of Implementation】 - Reduction of wear and flow reduction during slurry transfer - Stabilization of molded product quality - Improvement in yield - Increased efficiency in research and development

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Q Series Non-Pulsating, Quantitative, Slurry Pump for the Chemical Industry

Stable delivery of solid particle dispersion. Precise long-term delivery in 0.01 mL increments.

In the chemical industry, the precise and stable supply of small amounts of catalysts significantly impacts reaction efficiency and product quality. Particularly in the case of slurry catalysts with solid particles, concerns about pump wear and flow rate reduction can make stable supply difficult. Our Q Pump series addresses these challenges by achieving stable liquid delivery without wear or flow rate reduction over extended periods. 【Application Scenarios】 - Precise supply of catalysts - Transfer of slurry reagents - Micro-sampling in research and development - Stable supply in process lines 【Benefits of Implementation】 - Improved accuracy in catalyst supply - Stabilization of reaction efficiency - Uniformity in product quality - Reduced maintenance burden on pumps

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Pulsation-free, quantitative slurry pump for biotechnology Q

Stable delivery of gene introduction in 0.01 mL units. A precise pump ensures safe handling of slurries.

In the field of biotechnology, particularly in gene introduction, it is essential to introduce target substances accurately and uniformly while minimizing damage to the cells. When transferring slurry reagents or cell suspensions, issues such as sedimentation of solid particles, clogging of pipes, and fluctuations in flow rate can affect the reproducibility of experiments and the results. In response to these challenges, our Q Pump series achieves a pulsation-free continuous flow with precise flow rate settings in 0.01 mL increments and maintains consistent delivery accuracy over long periods, supporting a stable gene introduction process. 【Usage Scenarios】 - Introduction of reagents into cells - Transfer of slurry reagents - Precise injection of small volumes of liquid - Establishment of a highly reproducible experimental environment 【Benefits of Implementation】 - Reduced damage to cells - Uniform introduction of reagents - Improved reproducibility of experimental results - Reduction of issues during slurry transfer

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Q Series Non-Pulsating, Quantitative, Slurry Pump for the Energy Industry

The slurry liquid essential for fuel cell development is also delivered stably in 0.01 mL increments.

In the energy industry, particularly in fuel cell development, precise and stable transfer of liquids containing solid particles, such as electrolytes and catalyst slurries, is required. These slurry liquids are prone to particle sedimentation and aggregation during transfer, which can lead to issues such as pump wear, reduced flow rates, and even pipe blockages. These challenges directly result in delays in development and decreased reliability of experimental results. Our Q Pump series achieves stable liquid transfer without wear or flow reduction over extended periods, even for these slurry liquids. 【Application Scenarios】 - Transfer of fuel cell material slurries - Precise application of catalyst inks - Quantitative supply of electrolytes - Reagent supply during research and development stages 【Benefits of Implementation】 - Stable and precise liquid transfer of slurries - Suppression of pump wear and flow reduction - Increased efficiency and reliability in development and experimentation - Compatibility with a wide range of chemical liquids

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