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Supplied by YOKO
YOKO-FGJ-D
YOKO-FGJ-D is an auger-filling family for dosing powder into bottles or other rigid containers. Seven reference configurations cover 1 g to 10,000 g depending on model, one to four filling nozzles, and listed outputs from 2 to 120 containers per minute. Powder flow, bulk density, aeration, target dose, allowable variation, dust, container opening, feedback weighing, product-contact materials, and cleaning method should drive configuration.
Equipment purpose
The system meters a controlled quantity of free-flowing or cohesive powder into presented containers using a model-specific auger and weighing arrangement. It is intended for pharmaceutical, nutraceutical, food, cosmetic, and compatible technical powders after material, hygiene, and accuracy requirements have been reviewed.
Operating sequence
Powder is conditioned in the hopper and moved by a rotating auger whose geometry and revolutions determine the initial dose. The container is positioned beneath one or more nozzles, and weight feedback can be used to correct or verify dosing on the configured model. Fill consistency depends on bulk density, deaeration, refill level, auger geometry, speed, product adhesion, dust extraction, weighing stability, and container presentation.
Process fit
Use these references to frame the first technical discussion. Suitability is confirmed with actual material, format, and process data.
Reference parameters
Values are model references for initial selection. The quotation and approved technical agreement define the final supplied configuration.
| Model | YOKO-1FGJ-D (rotary) / YOKO-1FGJ1-D (linear) / YOKO-1FGJ2-D (linear) / YOKO-2FGJ-D (linear) / YOKO-2FGJ1-D (linear) / YOKO-4FGJ-D (rotary) / YOKO-60FGJ-D (linear) |
|---|---|
| Filling Range (g) | 1000-10000 / 50-3000 / 50-500 / 100-5000 / 10-5000 / 1-500 / 10-5000 |
| Packing Capacity (bottles/min) | 2-5 / 8-12 / 6-12 / 15-40 / 50-70 / 60-120 / 10-80 |
| Filling Accuracy | ±0.1–0.2% / ≤±0.3-1% / ±0.2-1% / ±0.1–0.2% / ±0.5–1.5% / ≤±1-5% / ±0.5–1% |
| Number of Filling Nozzle | 1 / 1 / 1 / 2 / 2 / 4 / 4 |
| Container Size (mm) | Cylindrical Container · Diameter: 50–180 · Height: 50–350 / Cylindrical Container · Diameter: 20-100 · Height: 50–350 / — / Diameter: 60-210 · Height: 60–350 / — / Diameter: 20-100 · Height: 15-150 / — |
| Weighing Method | Screw metering with weight feedback tracking |
| Voltage | Configured for the destination electrical standard |
| Weight (kg) | 450 / 300 / — / 700 / 400 / 1000 / 800 |
| Dimension (mm) | 2000 × 1180 × 2150 / 2500 × 850 × 2150 / 2400 × 850 × 1950 / 3200 × 1170 × 2920 / 3000 × 980 × 2150 / 1770 × 1320 × 1950 / 3000 × 940 × 1985 |
Before quotation
A useful quotation starts with the product, container or format, target output, available utilities, and destination requirements.
Ask for the current datasheet, layout information, and available documentation package.
Request documentsSupporting files
Availability varies by model and configuration. Request the current demonstration, datasheet, layout, or documentation package when needed.
Ask whether a current model demonstration is available.
Model-specific operating manuals and layout files are supplied after configuration review.
Selection questions
Bulk density, particle size, cohesion, aeration, compressibility, and flow determine how much material an auger delivers per revolution and how consistently the screw fills. Two powders at the same target weight can require different auger diameter, pitch, speed, agitation, nozzle, refill, and cutoff settings.
Define the product lot, target dose, container, hopper refill method, startup treatment, machine speed, number and timing of samples, scale resolution, acceptable distribution, and test duration. Samples should cover the beginning, middle, and end of a run and include normal refill events because density can change during operation.
Weight feedback can correct gradual dosing drift or support a target-control strategy, but it does not remove the need for stable powder feeding. Scale isolation, container handling, feedback timing, auger response, and line rate determine whether feedback is practical. The control method should be described for the selected model.
Provide dustiness, occupational and cross-contamination concerns, containment requirement, available extraction, filter strategy, room pressure, cleaning method, and product recovery expectations. A negative-pressure connection can help at the nozzle, but the whole charging, hopper, filling, rejection, and cleaning path should be reviewed.
The family covers that broad overall range through different models, augers, nozzles, and layouts; it does not mean one configured machine provides equal performance at both extremes. The approved operating range and change parts should be established for the specific model, product, and accuracy requirement.
Model-level review
Share the material, product format, target sustained output, available utilities, destination standard, and expected documentation scope.
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