209 double bowl feeder

209 double bowl feeder is a feeder device designed specifically for bulk incoming materials. This product can be used on plug-in machines and is suitable for materials such as capacitors, transformers

209 double bowl feeder is a feeder device designed specifically for bulk incoming materials. This product can be used on plug-in machines and is suitable for materials such as capacitors, transformers, and pins. It has high economy, stability, and versatility, and can be customized according to different customer needs.

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Specialties

1) This model of vibrating disc adopts a dual disc and dual feeding track design, which increases the feeding amount and can meet the demand for simultaneous retrieval;

2) The feeding track adopts a direct vibration and photoelectric sensor for feeding, with fast feeding speed. The feeding track can customize start stop, alarm and other actions according to customer needs;

3) The size and track of the disk can be customized according to the incoming materials, covering a wide range of materials, and is generally suitable for materials that are not easily deformed.


Element

Working principle: pneumatic+electric

Weight: approximately 230Kg

Power supply: AC220V, DC24V

Air source: 0.5-0.65Mpa (clean and free of impurities)

Power: approximately 150-1000W (depending on disk size)


Feeder specifications

Overall dimensions: 560mm (L) x1065mm (W) x1270mm (H) (subject to final design dimensions)

Working height selection: 750MM/900MM

Discharge speed: not less than 100PCS/minute

Discharge speed: approximately 1.5S~2S/PIN (double take)

Refueling time: approximately 0.5H (depending on the quantity of material in the tray and the size of the tray)

Station occupancy: 2


Incoming material requirements

1. The material is supplied in bulk.

2. The pins of the material are not easily deformed to avoid track jamming.

3. The material body is not easily deformed or damaged.

4. A single material with an overall dimension tolerance of ± 0.3 and a pin pitch tolerance of ± 0.2. If there are shared materials and dimensions that exceed the tolerance, they need to be re evaluated.

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