Regulated Feed Control System

Cibus Industries’ Regulated Feed Control System precisely meters raw materials like coconut flakes, moringa leaves, or spices into grinders, dryers, and cutters, ensuring consistent quality and stability. The system utilizes high-accuracy load-cell scales in combination with variable-frequency drives (VFDs) governing belt speeds or vibratory feeders to maintain feed rates within a tight ±2% tolerance. Capacities range from 100 kilograms per hour up to 3 tonnes per hour, adaptable to both small-batch artisanal processors and large-scale industrial plants. Customizable recipes can be programmed via intuitive touchscreen HMIs, allowing rapid changeovers between different feedstocks and operational parameters without stopping the production line.

“In the Cibus Regulated Feed Control System, precision feeding forms the backbone of smooth, repeatable processing and premium end product quality.”

During extensive validation trials, the system is challenged with a variety of feed materials differing in granulation, moisture content, and bulk density. Continuous real-time measurement of mass flow, scale drift, and setpoint response ensures that feed rate adjustments occur within seconds, minimizing deviations and eliminating surge or starvation conditions. Operator feedback is incorporated to evaluate ease of calibration, fault detection, and manual override functions. These trials confirm the system’s capability to provide stable, automated feeding that reduces waste and ensures uniform drying, grinding, or extraction performance downstream.

The Regulated Feed Control System is designed for seamless integration into your existing control architecture, featuring flexible mounting options, durable load-cell assemblies with protective enclosures, and robust communication protocols compatible with leading PLC and SCADA platforms. Its modular design facilitates easy maintenance, quick calibration, and scalability for future throughput expansion.

This precision feeding solution enhances your entire processing chain by synchronizing upstream material supply with downstream process demands, optimizing product consistency, operational efficiency, and yield.

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