![]() |
|||||
![]() |
||||||||||||||
Tridyne Netweighers feature either single or dual vibratory feed systems and provide two-stage feeding. The initial stage feeds at high rate until a preset weight just below your target weight has been reached. At this point, the bulk or fast feed ceases and the dribble or final topping off stage takes over. During the brief dribble stage, the feeder(s) slow, the bulk gate closes (on systems requiring a bulk gate), and a fine stream completes the fill. Because of Tridyne's two-stage feed system, the packager needing both speed and accuracy can be satisfied. Static Accuracy: Other Factors Which Determine Fill Accuracy: When weighcounting parts, the dribble tray is designed to encourage single-file feeding at the final dribble stage, keeping overages to a minimum. Again, the overage depends on the static accuracy and the quantity of parts in suspension when the scale senses the correct weight. It also depends greatly on the consistency of the piece weights. When counting by weight, variations in piece weights will cause counts to vary accordingly. Speed and accuracy are a trade-off when netweighing. Increased speeds may be achieved by allowing a wider accuracy tolerance. By the same token, accuracy may be improved by decreasing speed. As you become familiar with your system and how your particular product flows, you will discover the balance between speed and accuracy that best fits your needs. Operating manuals are provided with each system and unlimited telephone support is available to you to help you achieve the optimum performance from your Tridyne system. |
||||||||||||||
Focused on quality, simplicity and dependability. If you are looking for net weigh filling machines for your product, you have come to the right place. We lead the industry in the manufacture and custom design of automatic net weigh scales (net weigh fillers). In addition, Tridyne provides fully integrated, automatic packaging systems. From small to large operations, Tridyne has a solution for your packaging needs. |
||||||||||||||
![]() |
||||||||||||||