MBF-2003 Mini Bowl Feeder for SMT Machines
The MBF-2003 Mini Bowl Feeder is designed for feeding small electronic and hardware components to SMT mounting equipment. Its compact design makes it suitable for applications where machine-side installation space is limited.
Typical applicable materials include terminals, crystals, ICs, chip diodes, SMD triodes, hardware parts and other compatible components.
Key Features
Compact Mini Bowl Design: Provides component feeding in a narrow machine-side footprint.
200 mm Width: Compact width helps reduce the installation space required beside the SMT machine.
Fast Feeding Cycle: Reference cycle time is ≤0.8 second.
Vibration Control: Vibration amplitude and frequency can be controlled through the Vibration AMP.
Multiple Component Applications: Suitable for terminals, crystals, ICs, chip diodes, SMD triodes and hardware parts.
SMT Machine Integration: Mechanical height and communication can be matched according to the target SMT machine.
Stable Construction: The feeder is mainly manufactured from steel and aluminum alloy for structural stability and long service life.
Technical Specifications
| Model | MBF-2003 |
|---|---|
| Feeder Type | Mini vibratory bowl feeder |
| Applicable Components | Terminals, crystals, ICs, chip diodes, SMD triodes, hardware parts and compatible components |
| Dimensions | 850 × 200 × 930 mm |
| Width | 200 mm |
| Power Supply | 110 / 220 V |
| Cycle Time | ≤0.8 second |
| Control Method | Vibration AMP (V & Hz) |
| Main Construction | Steel and aluminum alloy |
Typical Applications
Terminal feeding
Crystal component feeding
IC feeding
Chip diode feeding
SMD triode feeding
Hardware parts feeding
SMT machine component supply
SMT Machine Compatibility
The MBF-2003 can be mechanically matched and configured for communication with Panasonic, JUKI, FUJI, ASM, Universal and other SMT machines according to the actual machine requirements.
Customization
Final component compatibility, mechanical height and communication configuration should be confirmed according to the SMT machine model and actual component.