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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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46~87 item / All 87 items

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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
Smooth

Smooth flow pump

The Smooth Flow Pump not only boasts precision and capability but also responds to all needs with performance that exceeds expectations. We offer models that accommodate various transfer conditions and transfer liquids, including flow rate, pressure, viscosity, precision, and slurry. Key features of the Smooth Flow Pump: - No pulsation - Strong against slurry - Contamination-free - No change in liquid quality - Reduces TCO If you have fluid transfer challenges that cannot be solved elsewhere, the Smooth Flow Pump may have the potential to resolve them. Please feel free to request a catalog or consult with us.

Smooth Flow Pump XPL for Cosmetics Manufacturing

Accurate trace addition. Contributing to the improvement of cosmetic quality.

In the cosmetics manufacturing industry, precise micro-addition of ingredients that influence product quality is required. In particular, additives such as fragrances and colorants can significantly affect the final product and its stability with even slight differences in formulation. Inaccurate additions can lead to a decline in product quality and reduced yield. The Smooth Flow Pump XPL addresses these challenges through high-precision liquid delivery, contributing to quality improvement in cosmetics manufacturing. 【Application Scenarios】 - Micro-addition of fragrances, colorants, preservatives, etc. - Addition of reagents in research and development - Component adjustment in small-batch, diverse production 【Benefits of Implementation】 - Stabilization of product quality through improved formulation accuracy - Cost reduction by minimizing waste materials - Increased efficiency in the manufacturing process

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Smooth Flow Pump XPL for Semiconductors

Contributing to the improvement of semiconductor manufacturing quality with high-precision chemical supply!

In the semiconductor industry, accurate supply of chemicals is essential for the stable production of high-quality products. Especially as miniaturization progresses, it becomes important to maintain the purity of the chemicals and to suppress flow fluctuations caused by pulsation. Inadequate chemical supply can lead to reduced yield and deterioration of product quality. The Smooth Flow Pump XPL achieves a continuous, pulsation-free flow, enabling high-precision chemical supply. 【Application Scenarios】 - Chemical supply 【Benefits of Implementation】 - Stabilization of product quality - Improvement of yield - Reduction of TCO

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Smooth Flow Pump XPL for Fuel Cells

Contributing to fuel supply for fuel cells! Supporting quality improvement with high-precision liquid delivery!

In the fuel cell industry, the accurate supply of fuel is a crucial factor that influences the efficiency and lifespan of the system. Particularly, a stable supply of fuel is essential to maximize the performance of fuel cells. Inadequate supply can lead to performance degradation and early deterioration of the system. The Smooth Flow Pump XPL supplies fuel with a continuous, pulsation-free flow, contributing to the stable operation of fuel cells. 【Usage Scenarios】 * Fuel supply to fuel cell systems * Fuel supply in research and development 【Benefits of Implementation】 * Improved system efficiency through stabilization of fuel supply * Stabilization of product quality * Reduction of TCO (Total Cost of Ownership)

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Pulsation-free, metering pump 'TPL' for pharmaceutical manufacturing

Achieving high-precision flow control required for aseptic transfer.

In the pharmaceutical manufacturing industry, precise liquid transfer in a sterile environment is essential to ensure product quality and safety. In particular, accurate measurement of small amounts of liquid and clean transfer to prevent contamination are directly linked to the effectiveness and stability of the product. Improper transfer can increase the risk of product quality degradation and contamination in the manufacturing process. Our Smooth Flow Pump TPL achieves continuous constant flow with a reproducibility of less than ±0.1% and a pulsation rate of less than ±1%, meeting the requirements for sterile transfer. 【Usage Scenarios】 - Transfer of active pharmaceutical ingredients, intermediates, and additives in a sterile environment - Transfer of culture media and purified solutions for biopharmaceuticals - Precise measurement and filling of injectables and eye drops 【Benefits of Implementation】 - Stabilization of quality through high-precision liquid transfer - Reduction of contamination risk - Increased efficiency and yield in the manufacturing process

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High-Pressure Smooth Flow Pump HPL for Biopharmaceutical Manufacturing

Achieving high-pressure, pulsation-free liquid supply at 50 MPa for cell culture media!

In the supply of cell culture media for biopharmaceutical manufacturing, it is essential to maintain the culture environment and minimize the impact on the cells. Particularly when high-pressure conditions are required for fluid delivery, pulsation can stress the cells and potentially affect culture efficiency. Additionally, liquid leakage and contact with outside air increase the risk of contamination of the culture media. The high-pressure smooth flow pump HPL achieves high-pressure fluid delivery of up to 50 MPa and minimizes the impact on cells through non-pulsating delivery, contributing to the maintenance of culture media quality. Its completely sealed structure prevents liquid leakage and contact with outside air, reducing the risk of contamination. 【Usage Scenarios】 - High-pressure delivery of cell culture media - Culture processes requiring precise flow control - Situations where liquid leakage or contamination should be avoided 【Benefits of Implementation】 - Maintenance of cell culture media quality - Stabilization of the culture process - Reduction of total cost of ownership (TCO)

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High-Pressure Smooth Flow Pump HPL for Pharmaceutical Active Ingredient Manufacturing

Achieving high-purity transfer of pharmaceutical raw materials with high-pressure, pulsation-free liquid transfer at 50 MPa.

In the manufacturing of pharmaceutical raw materials, the transfer of high-purity liquids and the maintenance of quality are extremely important. In processes that require precise flow control under high pressure, the impact of pulsation on the liquid and the risk of foreign matter contamination can directly affect product quality. The High-Pressure Smooth Flow Pump (HPL) supports high-pressure liquid transfer up to 50 MPa and minimizes the impact on the liquid through non-pulsating delivery. Its completely sealed structure prevents liquid leakage and contact with outside air, reducing the risk of contamination and achieving high-purity transfer. 【Application Scenarios】 - High-pressure transfer of high-purity liquids - Processes requiring precise flow control - Situations where leakage or contamination should be avoided 【Benefits of Implementation】 - Maintenance of liquid quality - Stabilization of the manufacturing process - Reduction of total cost of ownership (TCO)

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Pulsation-free, quantitative pump 'TPL' for semiconductor manufacturing

Achieving a reproducibility accuracy of ±0.1% or less in high-precision coating for semiconductor manufacturing.

In the semiconductor manufacturing industry, extremely high precision is required for the formation of fine circuits and the application of functional materials. Particularly in thin film coating processes for optical films and separators, the uniformity and reproducibility of materials significantly affect product performance, making variations in fine dimensions and coating irregularities unacceptable. To address these challenges, Takumina's Smooth Flow Pump TPL provides continuous constant flow with a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less, supporting high-precision coating processes. 【Application Scenarios】 - Thin film coating of functional films such as optical films and separators - Precision metering processes - Inline injection 【Benefits of Implementation】 - Improved product yield due to enhanced coating accuracy - Enhanced functionality through uniform coating - Increased productivity through stable flow supply

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High-Pressure Smooth Flow Pump HPL for Pharmaceutical Research and Development

Achieving high-pressure, pulsation-free precision supply of small amounts with a diaphragm pump.

In pharmaceutical research and development, the precise supply of small amounts of liquid medicine significantly impacts the accuracy and reproducibility of experiments. Particularly in situations where liquid delivery under high pressure is required or where changes in liquid quality need to be avoided, it is essential to minimize the risks of pulsation and contamination. The High-Pressure Smooth Flow Pump (HPL) accommodates high-pressure liquid delivery up to 50 MPa and achieves precise supply while minimizing the impact on the liquid medicine through non-pulsating delivery. Its completely sealed structure prevents liquid leakage and contact with outside air, reducing the risk of contamination. 【Usage Scenarios】 - Liquid supply of pharmaceuticals requiring high-pressure delivery - Processes requiring precise flow control - Situations where liquid leakage or contamination needs to be avoided 【Benefits of Implementation】 - Maintenance of liquid medicine quality - Stabilization of research and development processes - Reduction of total cost of ownership (TCO)

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Chemical Transfer Pump 'PL' for Semiconductor Manufacturing

For long-distance transportation of high-purity liquid and additive injection.

In the semiconductor manufacturing industry, as miniaturization and high integration progress, maintaining the purity of chemicals in the manufacturing process and precise supply has become extremely important. Particularly in the transfer of high-purity chemicals, preventing contamination and changes in liquid quality directly impacts product yield and reliability. Conventional pumps have faced challenges such as the risk of foreign matter contamination, flow instability due to pressure fluctuations, and liquid leakage. Our Smooth Flow Pump 'PL' addresses these issues and enables stable supply of high-purity chemicals in the semiconductor manufacturing process. 【Usage Scenarios】 - Long-distance transfer of high-purity chemicals - Precise injection of additives - Processes where contamination must be avoided - Transfer of chemicals where changes in liquid quality must be avoided 【Benefits of Implementation】 - Maintenance of chemical purity - Stabilization of processes through stable flow supply - Reduction of liquid leakage risk - Contribution to improved yield

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Pulsation-free, metering pump 'TPL' for cosmetic manufacturing

Smooth flow pump that contributes to the homogeneous mixing of cosmetic ingredients.

In the cosmetics manufacturing industry, uniform mixing of raw materials is essential to maintain product quality and stability. Particularly in cosmetics containing delicate ingredients, uneven mixing can affect the product's texture and efficacy. Inconsistent mixing may also lead to variations in quality and customer complaints. Our Smooth Flow Pump TPL achieves a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less, supporting the precise mixing and transfer of cosmetic ingredients. 【Application Scenarios】 - Precise weighing and mixing of cosmetic ingredients - Transfer of delicate components - Stable supply in batch production 【Benefits of Implementation】 - Improved product homogeneity - Contributes to quality stabilization - Increased efficiency in the production process

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Liquid Transfer Pump 'PL' for Pharmaceutical Factories

High-pressure, pulsation-free quantitative injection for active pharmaceutical ingredient supply.

In pharmaceutical factories, high-precision and stable liquid transfer is required to ensure a stable supply of active pharmaceutical ingredients (APIs) and maintain quality. Particularly in the API supply process, accurate dosing of small amounts of liquid and preventing degradation of the liquid during long-distance transport are crucial. Traditional pumps have faced challenges such as flow fluctuations due to pulsation, degradation from contact with the liquid, and leaks, which could impact productivity and quality. The Smooth Flow Pump 'PL' addresses these challenges and enables the inline, automated, and continuous supply process of APIs. 【Application Scenarios】 - Long-distance transport of APIs - Accurate dosing of additives - High-pressure, pulsation-free metering 【Benefits of Implementation】 - Reduced risk of liquid degradation and contamination - Increased productivity through stable flow supply - Reduced maintenance workload and space-saving

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Smooth Flow Pump TPL - Non-Pulsating, Quantitative Pump for the Chemical Industry

Smooth Flow Pump TPL contributes to the precise control of chemical reactions.

In the field of chemical industry, precise and consistent supply of reagents is required to ensure the stability and reproducibility of reactions. Particularly, since even slight fluctuations or pulsations in flow can directly affect reaction rates and product quality, they may lead to process instability and quality degradation. Our Smooth Flow Pump TPL achieves a continuous constant flow with a reproducibility of ±0.1% or less and a pulsation rate of ±1% or less, addressing these challenges. 【Usage Scenarios】 - Reaction control through precise reagent injection - Stable transfer of liquids including slurries - Use in processes that are sensitive to contamination - Reaction processes where changes in liquid quality need to be avoided 【Benefits of Implementation】 - Stabilization and improvement of reaction reproducibility - Uniformity in product quality - Increased process yield - Reduction in maintenance frequency

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High-Pressure Smooth Flow Pump HPL for Antibody Pharmaceuticals

Achieving high-pressure, pulsation-free liquid transfer at 50 MPa for the purification of antibody drugs.

In the manufacturing process of antibody drugs, the transfer of purified liquids requires the maintenance of drug quality and stabilization of the manufacturing process. Particularly when liquid transfer under high pressure is necessary, the effects of pulsation and foreign matter contamination can adversely affect product quality. The high-pressure smooth flow pump HPL achieves high-pressure liquid transfer of up to 50 MPa and minimizes the impact on the drug solution through non-pulsating liquid transfer. Its completely sealed structure prevents liquid leakage and contact with external air, reducing the risk of contamination. 【Application Scenarios】 - Transfer of purified liquids for antibody drugs - Processes requiring precise flow control - Situations where liquid leakage and contamination need to be avoided 【Benefits of Implementation】 - Maintenance of antibody drug quality - Stabilization of the manufacturing process - Reduction of total cost of ownership (TCO)

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Chemical Plant Liquid Transfer Pump 'PL'

High-pressure, pulsation-free quantitative injection for raw material transfer in chemical plants.

In the transportation of raw materials in chemical plants, stable long-distance transport of various chemicals and precise additive injection are required. The continuous and automated processes are essential for improving production efficiency and reducing human errors. In particular, maintaining the quality of the liquid during transport, preventing leaks, and avoiding foreign matter contamination are emphasized as crucial for ensuring product quality and safety. Our Smooth Flow Pump "PL" addresses these challenges and enables the inline, automated, and continuous processes. 【Usage Scenarios】 - Long-distance transport of various chemical products - Precise injection of additives - Transport of fluids including slurries - Direct integration into process lines 【Benefits of Implementation】 - Increased productivity through automation and continuous transport processes - Reduced risk of quality changes and foreign matter contamination in liquids - Decreased risk of failures due to leaks and dry running - Reduction in maintenance workload and space-saving

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Chemical Transfer Pump 'PL' for Cosmetics Manufacturing

Addition of fragrances in cosmetics manufacturing and long-distance transportation.

In the cosmetics manufacturing industry, it is essential to accurately and uniformly add additives such as fragrances to maintain product quality. Particularly, to produce products of stable quality without compromising the delicate characteristics of fragrances, precise injection and transfer are indispensable. Improper addition can lead to variations in scent and a decline in product quality. Our Smooth Flow Pump "PL" is an ideal pump for long-distance transfer of a wide range of chemicals and the injection of additives, enabling the inline automation and continuous processing of procedures that were difficult with conventional pumps, thereby improving quality, productivity, and ease of use. 【Usage Scenarios】 - Precise addition and injection of fragrances - Long-distance transfer of raw materials - Automatic supply to manufacturing lines 【Benefits of Implementation】 - Quality stability through uniform addition of fragrances - Labor savings through automation of the transfer process - Reduced risk of liquid leakage and foreign matter contamination

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Agricultural and Fertilizer Liquid Transfer Pump 'PL'

For long-distance transport of liquid fertilizers and injection of additives.

In the agriculture and fertilizer industry, there is a demand for the accurate and stable supply of liquid fertilizers necessary for crop growth. In particular, uniform distribution over a wide area and the appropriate injection of additives according to the growth stage are directly linked to yield and quality, making high reliability essential. Conventional pumps often face challenges such as flow reduction due to pressure fluctuations during transfer and changes in the properties of the chemicals, which can hinder stable distribution operations. Our Smooth Flow Pump 'PL' addresses these issues, enabling efficient and accurate long-distance transfer of liquid fertilizers and injection of additives. 【Usage Scenarios】 - Long-distance transfer of liquid fertilizers over a wide area - Injection of additives tailored to growth stages - Automated liquid fertilizer supply systems 【Benefits of Implementation】 - Promotion of crop growth through uniform liquid fertilizer distribution - Stabilization of quality through improved precision in additive injection - Labor-saving through automation and continuous operation of tasks

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Liquid Transfer Pump 'PL' for Biotechnology

Stable supply of culture medium, high-pressure and pulsation-free quantitative injection.

In the field of biotechnology, stable supply of culture media and precise injection of additives are required in cell culture and media preparation. In particular, changes in the components of the culture media and contamination can significantly affect the reliability of experimental results. Our Smooth Flow Pump 'PL' addresses these challenges by preventing foreign matter contamination, avoiding flow rate reduction due to pressure fluctuations, and eliminating liquid leakage or changes in liquid quality, thereby ensuring stable supply while maintaining the quality of the culture media. 【Usage Scenarios】 - Media supply in cell culture processes - Precise injection of additives - Transport of culture media over long distances - Small-scale supply during research and development phases 【Benefits of Implementation】 - Maintenance and stabilization of culture media quality - Improvement in experimental accuracy - Increased efficiency through automation and continuous processes - Reduction of contamination risks

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Non-pulsating, quantitative pump for biotechnology

Achieved a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less for cell culture medium supply.

In the field of biotechnology, particularly in the supply of cell culture media, extremely precise and stable liquid supply is required to stabilize the culture environment and ensure healthy cell growth. Even slight fluctuations or pulsations in the culture medium can affect cell growth and compromise the reproducibility of experimental results. Our Smooth Flow Pump TPL achieves continuous constant flow with high precision of ±0.1% reproducibility and ±1% pulsation rate, addressing these challenges. 【Application Scenarios】 - Precise supply of cell culture media - Stable supply of culture media - Continuous injection into bioreactors 【Benefits of Implementation】 - Promotion of cell growth through stabilization of the culture environment - Improvement of reproducibility of experimental results - Reduction of contamination risk

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High-Pressure Smooth Flow Pump HPL for Vaccine Manufacturing

Achieving high-pressure, pulsation-free liquid delivery at 50MPa for aseptic filling!

In the vaccine manufacturing industry, the accurate supply and maintenance of quality of the drug solution during the aseptic filling process is extremely important. Liquid delivery under high pressure, slight pulsation, and foreign matter contamination can compromise the sterility of the product and affect its quality. The High-Pressure Smooth Flow Pump (HPL) accommodates high-pressure liquid delivery up to 50MPa and minimizes the impact on the drug solution through pulsation-free delivery. Its completely sealed structure prevents liquid leakage and contact with outside air, reducing the risk of contamination. 【Usage Scenarios】 - Drug solution supply requiring high-pressure delivery - Processes requiring precise flow control - Situations where liquid leakage or contamination should be avoided 【Benefits of Implementation】 - Maintenance of drug solution quality - Stabilization of the manufacturing process - Reduction of total cost of ownership (TCO)

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High-Pressure Smooth Flow Pump HPL for Diagnostic Drug Manufacturing

Realizing reagent mixing in diagnostic drug manufacturing with high pressure and non-pulsating flow.

In the manufacturing of diagnostic reagents, the accurate mixing of reagents and stable supply are directly linked to the reliability of test results. Particularly, when reagent mixing occurs under high pressure or when it is necessary to handle small amounts of reagents precisely, pulsation-induced mixing inconsistencies and foreign matter contamination can affect the quality of the diagnostic reagents. The High-Pressure Smooth Flow Pump (HPL) supports uniform mixing by minimizing the impact on reagents through high-pressure liquid delivery of up to 50 MPa and non-pulsating flow. Its completely sealed structure prevents liquid leakage and contact with outside air, reducing the risk of contamination. 【Application Scenarios】 - Mixing of reagents requiring high-pressure liquid delivery - Reagent supply requiring precise flow control - Situations where liquid leakage or contamination should be avoided 【Benefits of Implementation】 - Maintenance of diagnostic reagent quality - Stabilization of the manufacturing process - Reduction of total cost of ownership (TCO)

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High-Pressure Smooth Flow Pump HPL for Peptide Synthesis

Achieving high-pressure, pulsation-free liquid supply at 50 MPa for peptide synthesis reaction solutions.

In peptide synthesis, the accurate supply of the reaction solution and the maintenance of liquid quality are essential for the success of the synthesis. Particularly when high-pressure conditions are required for liquid delivery, the effects of pulsation and contamination can adversely affect the synthesis yield and the purity of the products. The high-pressure smooth flow pump HPL achieves high-pressure liquid delivery of up to 50 MPa and minimizes the impact on the reaction solution through non-pulsating delivery. Its completely sealed structure prevents liquid leakage and contact with outside air, reducing the risk of contamination. 【Usage Scenarios】 - Supply of reaction solutions requiring high-pressure delivery - Synthesis processes requiring precise flow control - Situations where liquid leakage or contamination should be avoided 【Benefits of Implementation】 - Maintenance of peptide synthesis quality - Stabilization of the manufacturing process - Reduction of total cost of ownership (TCO)

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Chemical Transfer Pump 'PL' for Water Treatment Facilities

For long-distance transportation of water treatment chemicals and the injection of additives.

In water treatment facilities, the accurate and stable dosing of chemicals is essential for maintaining treatment effectiveness. Particularly in long-distance transport and additive injection, variations in chemical concentration and supply amounts can lead to decreased treatment efficiency and increased environmental impact. Our Smooth Flow Pump 'PL' is the ideal pump for the precise supply and injection of a wide range of chemical solutions, including long-distance transport of water treatment chemicals and additive injection. It enables the inline, automation, and continuous processing of processes that were difficult with conventional pumps, improving quality, productivity, and ease of use. 【Usage Scenarios】 - Long-distance transport of water treatment chemicals - Injection of various additives - Continuous supply to process lines

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Chemical Transfer Pump 'PL' for Paint and Ink Manufacturing

For long-distance transport of pigment dispersion liquid, high-pressure and pulsation-free quantitative injection.

In the paint and ink manufacturing industry, the uniform transfer and precise injection of pigment dispersion liquids are essential for product quality stability. In particular, preventing pigment sedimentation and adhesion within pipes while maintaining a stable flow rate for long-distance transfer and additive injection is a significant challenge for maintaining production efficiency and product consistency. Conventional pumps have faced issues with variability in discharge volume due to the transfer of slurry-like fluids and pulsation. Our Smooth Flow Pump 'PL' addresses these challenges, enabling the inline processing, automation, and continuous operation of pigment dispersion liquids. 【Application Scenarios】 - Long-distance transfer of pigment dispersion liquids - Accurate injection of additives - Transfer of slurry-like fluids - Automation and continuous operation of processes 【Benefits of Implementation】 - Stabilization of pigment dispersion liquid quality - Improvement in production efficiency - Reduction in maintenance workload - Cost and space savings

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Chemical Transfer Pump 'PL' for Paper Mills

Achieving high precision and long-distance transfer in chemical mixing at a paper mill.

In a paper mill, the accurate mixing and stable supply of various chemicals are crucial for maintaining product quality. Particularly in long-distance transport and additive injection, challenges such as flow rate fluctuations, liquid leaks, and foreign matter contamination can impact production efficiency and product uniformity. Our Smooth Flow Pump "PL" addresses these challenges and supports the automation and continuous operation of processes. 【Application Scenarios】 - Long-distance transport of chemicals - Injection of additives - Supply of water treatment chemicals - Automatic supply to process lines 【Benefits of Implementation】 - Prevention of foreign matter contamination - Mitigation of flow rate reduction due to pressure fluctuations - Elimination of liquid leaks - Prevention of changes in liquid quality - Improved efficiency through inline processing

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Non-pulsating, metering pump 'TPL' for printing and coating.

Stable liquid supply for thin film coating of various functional films such as optical films and separators.

In the printing and coating industry, a constant and stable supply of liquid is required for thin film coating, which affects product quality. Variations in coating uniformity and thickness can lead to a decline in product performance and appearance defects. Our Smooth Flow Pump TPL achieves a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less, supporting the stable supply of liquid in precise thin film coating processes. 【Application Scenarios】 - Thin film coating of functional films such as optical films and separators - Precision metering processes - Inline injection 【Benefits of Implementation】 - Improved product quality by reducing coating unevenness - Enhanced yield - Maintenance of stable productivity

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Chemical Transfer Pump 'PL' for Petrochemicals

High-pressure, pulsation-free quantitative injection for catalyst supply.

In the petrochemical industry, the catalyst supply process requires accurate and stable supply of catalysts to maintain reaction efficiency and stabilize product quality. In particular, depending on the characteristics of the catalyst, pressure fluctuations and pulsations during supply can affect the reaction or put a load on the piping. Additionally, in cases where long-distance transfer or precise additive quantity management is necessary, conventional pumps may struggle to meet these needs. Our Smooth Flow Pump 'PL' direct type addresses these challenges, supporting stable catalyst supply and process efficiency. 【Usage Scenarios】 - Long-distance transfer of catalysts - Catalyst injection under high pressure - Precise control of catalyst addition amounts - Transfer of slurry-type catalysts 【Benefits of Implementation】 - Improved reaction efficiency through stabilization of catalyst supply - Uniformity of product quality - Reduced load on piping - Labor savings through automation and continuous processes

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Non-pulsating, quantitative pump for display manufacturing: Thin Film Coating TPL

For thin film coating of various functional films such as optical films and separators!

In the display manufacturing industry, uniform and precise film formation is required in thin film coating for functional films such as optical films and separators. Particularly, since it directly affects the performance and quality of the products, variations in fine dimensions and coating irregularities are not acceptable. In response to these challenges, our Smooth Flow Pump TPL achieves a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less, supporting a precise coating process. 【Application Scenes】 - Thin film coating of optical films - Precision coating in separator manufacturing - Uniform film formation of various functional films 【Effects of Introduction】 - Stabilization of product quality through improved coating accuracy - Improvement of yield - Enhancement of production efficiency

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Pulsation-free, quantitative pump for automotive parts manufacturing: Thin Film Coating TPL

Smooth flow pump for precision thin film coating contributing to functional film formation.

In the automotive parts manufacturing industry, uniform and precise application in functional film formation greatly impacts product performance and durability. In particular, thin film coating on functional films such as optical films and separators requires fine coating precision and stable flow rates. Variations in coating uniformity and flow rates can lead to a decline in product quality and defects. Our Smooth Flow Pump TPL achieves a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less for continuous constant flow, addressing these challenges. 【Application Scenarios】 - Precision thin film coating on functional films - Manufacturing processes for optical films and separators - Various coating processes 【Benefits of Implementation】 - Stabilization of product quality through improved coating precision - Improvement in yield - Increased production efficiency

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Non-pulsating, metering pump 'TPL' for papermaking

Smooth Flow Pump TPL, contributing to the functional enhancement of the paper industry.

In the paper industry, uniform and precise coating significantly affects product quality. Particularly in the manufacturing process of optical films and functional films, minute coating irregularities can impact product performance. Our Smooth Flow Pump TPL achieves a continuous and constant flow with a reproducibility accuracy of less than ±0.1% and a pulsation rate of less than ±1%, supporting precise thin-film coating. 【Application Scenarios】 - Coating of functional films - Coating of optical films - Precise injection of various additives 【Benefits of Implementation】 - Improved coating quality - Enhanced product yield - Increased production efficiency

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Chemical Transfer Pump 'PL' for Food Processing

For long-distance transportation of food additives and high-pressure, pulsation-free quantitative injection.

In the food processing industry, accurate and stable injection of additives is required to maintain quality and improve manufacturing efficiency. Particularly in long-distance transport, high-pressure injection, or trace addition, variations in injection volume and changes in liquid quality can affect product quality. Our Smooth Flow Pump 'PL' addresses these challenges, achieving stable supply of additives and automation and continuous processes. 【Usage Scenarios】 - Long-distance transport of food additives - Additive injection under high pressure - Automatic continuous injection into manufacturing lines - Precise adjustment of addition amounts for quality control 【Benefits of Implementation】 - Improved quality through stable and accurate supply of additives - Increased productivity through automation and continuous processes - Reduced risk of liquid leakage and foreign matter contamination - Decreased maintenance workload

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Smooth Flow Pump TPL - Non-Pulsating, Quantitative Pump for Food Processing

Smooth flow pumps for precise measurement and addition of food additives.

In the food processing industry, accurate addition of raw materials and additives is essential to maintain product quality and uniformity. In particular, precise measurement and addition of trace additives significantly impact the flavor and functionality of the product. Inaccurate addition can lead to variations in quality and unintended changes in flavor. Our Smooth Flow Pump TPL achieves a reproducibility accuracy of ±0.1% or less and a pulsation rate of ±1% or less, supporting a precise addition process. 【Application Scenarios】 - Precise measurement and addition of food additives - Uniform mixing and injection of flavorings and colorings - Stable transfer of low-flowability raw materials 【Benefits of Implementation】 - Stabilization of product quality - Improved yield - Enhanced work efficiency

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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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