Tabletop Vacuum Packaging Machine - Advanced Type - VMS-153
Built-in vacuum pump!
This is an announcement about "VMS-153" from Yoshikawa Industrial Company.
- Company:吉川工業 真空包装事業部
- Price:Other
Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.
781~810 item / All 7372 items
Built-in vacuum pump!
This is an announcement about "VMS-153" from Yoshikawa Industrial Company.
After the chamber vacuum, we will inject an inert gas, so high-purity gas replacement packaging can be expected.
It prevents product deformation due to gas sealing, making it ideal for packaging confectionery, tea, coffee beans, shaved bonito flakes, and industrial products such as semiconductors.
Efficient use of limited space with a horizontal belt system.
New model. Easy joint with surrounding machines using a horizontal belt type.
It can be used with a household power supply (100V).
It is a general-purpose, economic type.
Excellent maintainability! It is a disposable dynamic mixer that does not require cleaning.
The "SNP Series" is a two-component mixing dispenser for materials such as polyurethane, epoxy, and silicone. By adopting a disposable dynamic mixer, it can accommodate various materials. Since it is disposable, there is no need for cleaning after use, and maintenance is also excellent. Additionally, by using a disposable, no-cleaning-required mixer (WONDER MIX), there is no need for cleaning after use, eliminating issues such as residue left behind. 【Features】 ■ No cleaning required ■ Compatible with various materials ■ No cleaning required after use ■ Excellent maintenance ■ No issues with residue left behind *For more details, please refer to the related link page or feel free to contact us.
Direct high-pressure pumping of high-viscosity materials from the material can! Introduction of air-driven supply pumps for high-viscosity materials.
The "SRCP Series" is a suction-type supply pump equipped with an air-driven piston pump. It can directly pump high-viscosity materials (such as grease, adhesives, sealants, etc.) from the material can at high pressure. Since the air motor and piston pump can be separated, it has good maintainability and operates solely on air pressure, requiring no power supply. 【Features】 ■ Equipped with an air-driven piston pump ■ Can directly pump high-viscosity materials from the material can at high pressure ■ Good maintainability due to the separation of the air motor and piston pump ■ Operates solely on air pressure, requiring no power supply *For more details, please refer to the related link page or feel free to contact us.
Low cost and high performance, ideal for various fields that require a vacuum.
Oil-sealed rotary vacuum pumps consist of precision pumps and high starting torque direct drive induction motors. The casing and impeller are made of aluminum alloy, featuring several characteristics such as mechanical strength, durability, lightweight, and a smooth external surface. Due to their low cost and high performance, they are the best choice for various applications requiring moderate vacuum. 【Features】 - Simple structure for easy installation and maintenance. - Multi-stage filtration system minimizes lubricant leakage to less than 0.1%. - The pump is driven by a high-efficiency induction motor that requires no liquid and is cooled by natural air only. - All components are processed under strict quality control, allowing for quiet operation and fast pumping speeds. - The pump is used in a wide range of fields, including food processing, packaging, hospitals, thermoforming, printing, printed circuit board testing, and vacuum treatment. *For more details, please refer to the PDF document or feel free to contact us.
It is an oil-sealed rotary vacuum pump CP10.
This is the oil rotary vacuum pump CP10. 【Specifications (Single Phase)】 ○ Model Number: CP10-410/CP10-510 → Voltage: 100-120/200-240 ○ Model Number: CP10-510 → Voltage: 100 ○ Model Number: CP10-450/CP10-550 → Voltage: 200-240 【Specifications (Three Phase)】 ○ Model Number: CP10-420/CP10-520 → Voltage: 200-240/380-440 *For more details, please refer to the PDF document or feel free to contact us.
This is a catalog of industrial pumps. For more details, please download the catalog or contact us directly.
A wide range of applications suitable for the pressurization, transportation, circulation, and mechanical equipment of water and liquids without general impurities.
It is a small bellows pump that fits in the palm of your hand, with all wetted parts made of fluororesin (PTFE/PFA), making it suitable for transferring high-purity chemicals.
The low-cost and compact bellows pump developed by White Knight does not use O-rings in the wetted parts, eliminating concerns about contamination. Additionally, the body seal utilizes White Knight's unique sealing technology, so maintenance tasks such as re-tightening are unnecessary. Since the entire pump, including the main body, is 100% non-metallic, there are no worries about contamination or corrosion.
Excellent transfer technology! Contactless, pulsation-free, and non-agitating twin-screw pump.
The "dual-axis screw pump" is a volumetric self-priming pump that uses two screws. The liquid (fluid) trapped in the chamber formed by the two screws and the casing is pushed in the thrust direction by the rotation of the screws. With the "in-tube transfer" method, it exerts minimal radial load, allowing for gentle transfer of liquids without pulsation, agitation, or shear, and can also handle liquids containing solids. During cleaning, the casing can be removed to completely expose the wetted parts, making disassembly and cleaning easy. Additionally, by increasing the rotational speed (up to 3,000 rpm), a single pump can handle everything from transfer to CIP cleaning, adapting to various cleaning methods. 【Features】 ■ Transfers and mixes multiple liquids simultaneously ■ Achieves liquid transfer and degassing at the same time ■ Ideal for transferring high-concentration slurry liquids ■ Smooth transfer of ultra-high viscosity liquids ■ Easy disassembly and cleaning *For more details, please refer to the catalog or feel free to contact us.
No tools needed, easy disassembly and cleaning.
Significantly reduce the time required for disassembly and cleaning! It demonstrates its effectiveness in processes that require daily disassembly.
A dual-axis screw pump with mixing function that transfers and mixes multiple liquids with just the pump!
The "Blending Pump (BQ Type)" is a dual-axis screw pump with stirring functionality that can transport multiple liquids or a combination of liquids and powders while kneading and mixing them. This eliminates the need for a stirring machine (stirring process) that was previously necessary in the manufacturing process, significantly simplifying the process by allowing a single compact pump to perform both transportation and kneading/mixing roles. Not only does it achieve substantial cost reductions in equipment, but it also enables simultaneous liquid transfer and mixing, leading to a significant reduction in production lead time and an increase in production efficiency. 【Features】 ■ Significant reduction in production lead time and increased production efficiency ■ No need for stirring machines or auxiliary equipment ■ Non-contact rotating parts ■ Contamination-free due to sanitary design ■ Equipped with the ability to mix uniformly while transporting liquids of low to high viscosity *For more details, please refer to the catalog or feel free to contact us.
Deaerating screw pump with blending function.
**Deforming Pump (VQ Type)** Adopts a vacuum degassing method that allows for compact design. Additionally, degassing of high-viscosity liquids, which was difficult with conventional screw pumps, has become possible by equipping traditional twin-screw pumps with a vacuum generation device. It allows for degassing while transferring liquids, and retains the characteristics of conventional twin-screw pumps, such as non-contact, shear-free, pulsation-free, and non-agitation. **Blending Pump (BQ Type)** This is a twin-screw pump with stirring functionality that can mix multiple liquids while transferring them with just the pump itself. It eliminates the need for a separate stirrer (mixing process) that was previously necessary in the manufacturing process, dramatically simplifying the process by allowing a single compact pump to perform both liquid transfer and mixing. This not only significantly reduces equipment costs but also enables simultaneous liquid transfer and mixing, leading to a substantial reduction in production lead time and an increase in production efficiency. *For more details, please refer to the catalog or feel free to contact us.*
A hygienic and heat-resistant self-priming stainless steel pump, ideal for the transfer of brewing liquids and industrial chemicals!
The self-priming stainless steel pump "Radial Rubber Pump" is a pump that draws in and discharges liquid by changing the volume of the impeller due to pressure changes. The impeller is made of rubber or silicone, which offers strong elasticity and excellent durability. The stainless steel pump casing is resistant to rust. 【Features】 ■ Self-priming with just one switch, without the need for priming water ■ Simple structure for easy handling and maintenance ■ Made of stainless steel, providing excellent corrosion resistance ■ Capable of pumping liquids mixed with slurry or viscous liquids ■ Continues to draw in even when air or gas is mixed in *For more details, please request materials or download the catalog.
Simultaneously achieving liquid delivery and degassing! Case studies of degassing pumps active in various industries are featured.
This document is a collection of case studies for the two-axis screw pump with degassing functionality, known as the "Deforming Pump," which allows for liquid transfer while degassing. It introduces examples that address one of the major challenges in pump transfer: the issue of air contamination in fluids, which leads to quality degradation and the generation of defective products. [Featured Cases] - Transfer of miso: Annual improvement effect of 4 million yen - Transfer of chocolate: Annual improvement effect of 5 million yen - Self-priming of tomato puree: Annual improvement effect of 3 million yen - Transfer of facial cream and toothpaste: Annual improvement effect of 3 million yen - Degassed transfer of resin: Annual improvement effect of 20 million yen, etc. For more details, please refer to the catalog or feel free to contact us.
The creativity and technical skills we have cultivated! We will pursue forms that are suitable for the new era.
Fuku Tiger Metal Industry Co., Ltd. is engaged in contract general machining and machine design, developing and manufacturing fluid transfer systems and radial pumps (made of stainless steel) that can accommodate a wide range of applications from low viscosity to high viscosity. The ideal systems born from innovative ideas are delivered as optimal products that meet our customers' needs. As a company that challenges the "forms" required by a new era and creates new technologies, we will continue to contribute to the company. 【Product Line】 ■ Manufacturing and sales of radial vane pumps and dual-screw pumps ■ Processing of components related to refrigeration and air conditioning equipment ■ Processing of components for textile machinery ■ Processing of components for hydraulic equipment *For more details, please refer to our catalog or feel free to contact us.
Transferring liquid while degassing" - for the transfer of low-viscosity liquids such as miso and cosmetic creams in food and pharmaceutical cosmetics, achieving "high self-priming that cannot be imagined with non-contact pumps.
The "Deforming Pump" is a pump that achieves high self-priming (-10m) "defoaming liquid transfer" while possessing the characteristics of a two-axis screw pump, such as non-contact, no shear, no pulsation, and no agitation. Since the shaft seal does not come into contact with the liquid, a mechanical seal is unnecessary. There is no concern about contamination from metal powders or other materials due to the absence of contact between parts. The need for a defoaming device is eliminated, allowing for a reduction in equipment costs. 【This pump solves the following challenges associated with transfer】 ■ Reducing the risk of air bubbles and foreign matter contamination in the liquid ■ Eliminating filling defects and molding defects ■ Preventing liquid leakage and seizing 【Features】 ■ The seal-less function of the shaft seal that does not come into contact with the liquid allows for complete dryness and self-priming capability ■ No priming water required, can run dry ■ Achieves high self-priming capability of -10.0m while being a non-contact pump ■ Minimal shape destruction for smooth transfer ■ Eliminates the need for a defoaming process with a defoaming device, resulting in reduced equipment costs *For more details, please request materials or view the PDF data available for download.
Introducing a case study on the use of radial vane pumps for the transfer of alcohol!
Here is an example of alcohol transfer in the field of chemistry. A problem occurred where air was being sucked in, causing the liquid to stop self-priming. By switching to our vane pump, it was able to self-prime even when air was present, eliminating the need for priming water. 【Case Overview】 ■ Purpose: Tank self-priming ■ Model: Radial Vane Pump V Type ■ Liquid Name: Alcohol ■ Problem: Air was being sucked in, causing the liquid to stop self-priming ■ Improvement: By switching to a vane pump, it was able to self-prime even with air present, eliminating the need for priming water *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the implementation of a deforming pump for gel transfer!
Here is an example of gel transfer in the field of chemistry. Due to the presence of air bubbles, a problem arose with variability in the filling. Therefore, we improved the filling consistency by transferring the liquid with a deforming pump while degassing. 【Case Overview】 ■ Purpose: Degassing and filling of high-viscosity gel ■ Model: VQ type twin-screw pump with degassing function ■ Liquid Name: Gel ■ Issues: Variability in filling due to trapped air bubbles ■ Improvements: Improved filling consistency by transferring the liquid with a deforming pump while degassing *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the implementation of screw pumps for the transfer of detergent solvents and resin solvents!
Here is an example of the transfer of detergent solvents and resin solvents in the field of chemistry. We were struggling with the transfer of high-viscosity resins and the cleaning of adhesive transfer liquids. By introducing a screw pump, we were able to achieve stable transfer of high-viscosity liquids at a large flow rate. The cleaning line that previously required a booster pump can now be handled by a single screw pump, leading to simplification of the line and savings in running costs. 【Case Overview】 ■ Purpose: Supply line to the tank ■ Model: Dual-axis screw pump, SQ type ■ Liquid name: Detergent solvent, resin solvent ■ Issues: Struggled with the transfer of high-viscosity resins and cleaning of adhesive transfer liquids ■ Improvements: Stable transfer of high-viscosity liquids at a large flow rate is now possible with the screw pump The cleaning line that previously required a booster pump can now be managed by one unit *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the introduction of screw pumps for the transportation of tea leaves!
Here is an example of the transfer of tea leaves in the field of chemistry. A problem arose where we wanted to transfer a liquid containing a large amount of tea leaves using a non-contact pump with as low a moisture content as possible, but there was no pump that could transfer the tea leaves stably without clogging inside the pump. By using a screw pump, we were able to achieve stable transfer at a lower moisture content than requested. 【Case Overview】 ■ Purpose: To transfer without breaking solid materials ■ Model: Twin-screw pump SQW type ■ Liquid name: Tea leaves ■ Issues: There was no pump that could transfer tea leaves stably without clogging inside the pump ■ Improvements: By using a screw pump, stable transfer at a lower moisture content than requested became possible *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the use of vane pumps for the transfer of water-soluble oils!
Here is an example of the transfer of water-soluble fats in the field of chemistry. We were using a gear pump, but it stopped transferring liquid when it sucked in air, requiring us to prime it, which caused production to halt. Therefore, we switched to a vane pump, which allowed for transfer even when air was sucked in, eliminating the need for constant priming. 【Case Overview】 ■ Purpose: Solving problems caused by air suction ■ Model: Radial Vane Pump, V type ■ Liquid Name: Water-soluble fats ■ Issues: Using a gear pump, it stops transferring liquid when it sucks in air Constant priming is required, and production stops ■ Improvements: No priming work required and improved productivity, with an improvement effect of 1 million per year *For more details, please refer to the PDF document or feel free to contact us.
Introducing an example of transporting isopropyl alcohol and aluminum slurry!
Here is an example of the transfer of isopropyl alcohol and aluminum slurry in the field of chemistry. We were using a centrifugal pump, but we had to replace the pump every six months, which was cumbersome and led to a decrease in productivity. Therefore, we introduced a screw pump. The wear resistance improved, allowing for 10 years of use without replacing major components. We eliminated pump costs and replacement efforts, resulting in an improvement effect of 2 million per year. 【Case Summary】 ■ Objective: Improvement of wear resistance ■ Model: Dual-axis screw pump SQ type ■ Liquid name: Isopropyl alcohol & aluminum slurry ■ Issues: The replacement was cumbersome and productivity decreased, so we were looking for a pump that was resistant to wear. ■ Improvements: By introducing a screw pump, we eliminated pump costs and replacement efforts. *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the implementation of a non-contact screw pump for the transfer of slurry!
Here is an example of slurry liquid transfer in the field of chemistry. We were using a contact-type pump, but issues arose with component wear and foreign matter contamination due to the transfer liquid containing slurry. By using a non-contact screw pump, we were able to reduce running costs associated with component wear and decrease the risk of foreign matter contamination in the transfer liquid. 【Case Overview】 ■ Purpose: Supply to the spray line ■ Model: Dual-axis screw pump, SQ type ■ Liquid Name: Slurry liquid ■ Issues: Component wear and foreign matter contamination due to transfer liquid containing slurry ■ Improvements: Reduced running costs due to component wear by using a non-contact screw pump *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the use of radial vane pumps for the transfer of organic solvents!
Here is an example of the transfer of organic solvents in the field of chemistry. We received a request for self-priming (organic solvent) capabilities from a tank. Therefore, we introduced a radial vane pump. This allowed for self-priming capability and air-entrained transfer. 【Case Overview】 ■ Purpose: Self-priming from the tank ■ Model: Radial Vane Pump R Type ■ Liquid Name: Organic Solvent ■ Issue: Need for self-priming (organic solvent) from the tank ■ Improvement: Introduction of the radial vane pump enabled air-entrained transfer *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the implementation of a deforming pump for the transfer of polymer solutions!
Here is an example of the transfer of polymer solutions in the field of chemistry. There are various liquids ranging from low to high viscosity, and we were requested to extract all of them. Therefore, we improved the system to allow the transfer of low to high viscosity liquids using a single pump by employing a deforming pump. 【Case Overview】 ■ Objective: Defoaming and extraction transfer from the tank ■ Model: VQ type twin-screw pump with defoaming function ■ Liquid Name: Polymer solution ■ Issues: Various liquids ranging from low to high viscosity that need to be extracted ■ Improvements: Enabled the transfer of low to high viscosity liquids using a single pump by employing a deforming pump *For more details, please refer to the PDF document or feel free to contact us.
Introducing a case study on the implementation of a deforming pump for the transport of dough!
Here is an example of transferring bread dough in the food sector. We wanted to portion the bread dough mixed by the mixer into trays, but due to the high liquid viscosity, there were no pumps available for transfer, resulting in time-consuming manual work. By using a deforming pump, we were able to quantitatively portion the bread dough, which was moved from the mixer to a hopper, with the push of a button, leading to reduced labor costs and improved production efficiency. [Case Overview] ■ Purpose: Self-priming from the hopper ■ Model: VQ type twin-screw pump with degassing function ■ Liquid Name: Bread dough ■ Issues: There were no pumps available for transfer, leading to time-consuming manual work ■ Improvements: By using a deforming pump, it became possible to quantitatively portion with the push of a button *For more details, please refer to the PDF document or feel free to contact us.