DOSING SYSTEMS
VOLUMETRIC and GRAVIMETRIK FEEDER
Stock Code: 7 V1
Volumetric and Gravimetric Vibratory Feeders are advanced industrial solutions that provide homogeneous flow control in the dosing processes of materials that are difficult to feed, such as glass fiber. The advanced vibration technology developed by Puls Elektronik maximizes production efficiency by ensuring the transfer of materials to the system through precise volumetric or weight-based (gravimetric) measurement. These systems offer a cost-effective structure that raises quality standards by preventing raw material waste.
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GENERAL INFORMATION
Puls Electronik Vibratory Feeding Systems operate based on two fundamental methods depending on the physical characteristics of the material: while volumetric systems offer volume-based control, gravimetric systems provide maximum accuracy based on weight. Vibration technology enables the consistent dosing of particularly low-flowability or delicate, difficult-to-feed materials, such as glass fiber, without causing mechanical damage.
ADVANTAGES AND USAGE AREAS

Puls Electronic offers specialized dosing solutions for glass fiber and difficult-to-flow materials using advanced vibration technology. The system controls material flow within milliseconds through volumetric or weight-based (gravimetric) measurement options. In cases where mechanical screws could damage the material or cause clogging, the vibratory structure creates a homogeneous flow channel, allowing for dosing without compromising the raw material's form. Raising quality standards in the food, chemical, and pharmaceutical industries, this system is manufactured with over 25 years of expertise. While increasing your production efficiency through its compact design and smart software filters, it serves as a reliable partner in processes requiring precise dosing. We ensure spare parts continuity and maximize your operational profitability by implementing flexible designs tailored to your production line.

Advantages and Usage Areas:

  • Difficult-to-Feed Materials: Clog-free, smooth vibration technology for glass fiber, fragile fibers, and sticky powders.
  • Protection of Raw Material Form: Ability to dose sensitive raw materials without damaging their physical structure, thanks to a design that minimizes mechanical friction.
  • Homogeneous Flow Control: Even distribution along the channel and stable feeding performance with advanced control cards.
  • Maximum Precision: Consistent and precise dosing within the highest tolerance bands by instantly monitoring weight loss in the gravimetric option.
  • Easy Cleaning and Maintenance: Quick cleaning and minimum service requirements due to a design that reduces the number of moving and rotating parts.
  • Flexible Industrial Integration: Compact and modular mounting possibilities compatible with complex lines in food, pharmaceutical, and chemical plants.
  • Spare Parts Continuity: Fast technical support with direct manufacturer advantage and the assurance of long-lasting stainless steel construction.
  • Efficiency Increase: An "optimum" cost-performance balance that prevents production downtime and raw material waste.

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OUR ALTERNATE PRODUCTS

Gravimetric Single Screw Dosing System is a cost-effective gravimetric feeder solution designed to operate in demanding industrial environments based on over 25 years of manufacturing experience, offering high durability and long life with its stainless steel structure. Thanks to superior software technology and its real-time adaptive filtering feature, it ensures precise and homogeneous feeding of raw materials, providing optimum dosing with 0.2% accuracy. The system, which offers superior measurement and sampling capabilities, ensures sustainability by minimizing service requirements through spare part continuity derived from our manufacturing power. Capable of managing up to 20 feeders and refill bunker controls from a single panel via its user-friendly software, this technology is offered with our engineering capacity to quickly realize non-standard designs.
The Batch Type High Precision Micro Feeder is a micro-feeding solution focused on consistency and repeatability, providing precision dosing at the gram level in industrial processes. It plays a critical role especially in the pharmaceutical, food, chemical, and additive manufacturing (3D printing) sectors. <br> The system feeds a wide variety of materials, such as powders, granules, and fibers, with high precision. Thanks to its advanced PLC control and touchscreen interface, it enables the fully automated dosing of very small quantities of material. Its corrosion-resistant stainless steel design and minimum dust emission feature significantly enhance production quality.
Batch Type Gravimetric Feeders, offered by Puls Elektronik, are high-precision weighing and dosing systems developed for "batch/lot" based recipe management in industrial production lines. Equipped with advanced loadcell technology, these systems minimize waste rates by operating with a precision of ±0.01 g, even at very low quantities. In sectors such as food, pharmaceuticals, and chemicals, where the margin of error must be near-zero, they maximize operational efficiency by providing consistent quality and full traceability in every batch.
Puls Volumetric Feeders are high-durability and cost-effective solutions that operate on the principle of volumetric measurement in industrial dosing processes. This system, which performs dosing based on the volume scanned by the feeding screw per unit of time, ensures the homogeneous feeding of bulk materials such as powders, granules, and similar substances. Its stainless steel structure, developed with over 25 years of experience, offers long-lasting use and minimum service requirements in demanding industrial environments. Serving as a more economical alternative to gravimetric systems, these feeders stand out with a guarantee of optimum efficiency and spare parts continuity, especially in processes where material density remains constant.
<p> Loss-in-Weight (LIW) Feeder systems are engineering solutions that provide superior precision and efficiency through weight-based continuous measurement technology in industrial dosing processes. The LIW feeder offers maximum accuracy in dosing operations by monitoring raw material weight in real-time and dynamically adjusting the feeding speed. Equipped with advanced sensor technology, these systems optimize production quality while reducing raw material waste across the chemical, plastic, rubber, masterbatch, and textile sectors. These cost-effective solutions, backed by Puls Electronic’s expertise, enhance your business's digital transformation and profitability by establishing sustainable quality standards on industrial production lines. </p> <h4 style="margin-bottom: 5px;">Key Highlights of the System:</h4> <ul style="margin-top: 0;"> <li><strong>Dynamic Accuracy:</strong> Real-time weight monitoring ensures the feed rate is always optimized, regardless of material density changes.</li> <li><strong>Sectoral Versatility:</strong> Specifically designed for demanding applications in chemical, plastic, rubber, masterbatch, and textile industries.</li> <li><strong>Operational Efficiency:</strong> Minimizes raw material waste, directly contributing to higher profit margins and sustainable production.</li> <li><strong>Digital Integration:</strong> A critical component for modern production lines looking to achieve full digital control and traceability.</li> </ul>
Floor-standing Type Gravimetric Feeder is a professional gravimetric feeder solution that operates on the "Loss-in-Weight (LIW)" principle in industrial dosing processes and offers a higher feeding capacity compared to standard models. Thanks to its advanced weighing platform, the system measures the amount of material in real-time and instantly optimizes the motor speed, ensuring maximum raw material savings with 0.2% precision. This floor-standing design, which guarantees an uninterrupted and homogeneous flow on large-scale production lines with its expanded material hopper structure, maximizes operational efficiency through its closed-loop control mechanism.