Wstęp
Ten SMT Automatic Tube Feeder is a dedicated peripheral device that enables pick-and-place machines to consume components supplied in plastic or metal tubes without manual intervention. It is deployed across high-volume electronics assembly lines where integrated circuits, transistors, connectors, and other larger parts are economically or technically impractical to package on tape and reel. By automating tube handling, the feeder allows surface-mount lines to run continuously even when a significant portion of the bill of materials arrives only in tube form from component suppliers. This capability is essential for manufacturers of computing, telecommunications, and consumer electronics who must maintain high equipment utilization and minimize operator touchpoints throughout each shift.
In production, the feeder mounts directly onto the machine’s feeder base and presents tube-packaged parts at a fixed pick location with precise orientation. A vibratory or motor-driven mechanism advances components one by one from the bottom tube to the discharge point. When the active tube empties, the next tube automatically indexes into position, allowing the line to run continuously while operators reload tubes offline. This workflow is essential for power transistors, radio-frequency shields, oscillators, and various connectors used in computing, telecommunications, and consumer electronics. Automated tube feeding eliminates frequent manual tube changes at the machine, reduces the risk of misfeeds or empty picks that would otherwise halt production, and ensures a steady flow of parts to the placement head.
Typical applications include smartphone and tablet mainboards, laptop power stages, server motherboards, network switches, and set-top boxes. By automating tube handling, manufacturers eliminate manual tray loading and reduce mis-picks, enabling fully automated surface-mount lines even when a significant portion of components arrives only in tube form. These products rely on numerous tube-packaged devices in their power management, interface, and radio sections, where consistent placement quality and high throughput are critical to meeting market demand. The SMT Automatic Tube Feeder ensures that these components are presented to the nozzle in a stable, repeatable manner, supporting placement rates that exceed one hundred thousand components per hour on modern equipment.

SMT Automatic Tube Feeder
Boosting Throughput and Yield in Smartphone PCB Lines with Automatic Tube Feeders
Ten SMT Automatic Tube Feeder is a key enabler for smartphone electronics factories that assemble mainboards with many tube-packaged components. In these facilities, integrated circuits for power management, audio codecs, radio-frequency front ends, and various connectors are often supplied in rigid plastic or metal tubes rather than on reels. The feeder mounts directly onto pick-and-place machines and presents these parts at a fixed pick location with precise orientation and repeatable positioning.
Inside the smartphone PCB assembly line, the feeder uses a vibratory or motor-driven mechanism to advance components one by one from the bottom tube to the discharge point under sensor supervision. When the active tube empties, the next tube automatically indexes into position, allowing the line to run continuously while operators reload tubes offline in a separate staging area. This workflow is essential for power transistors, radio-frequency shields, crystal oscillators, and board-to-board connectors used in smartphone logic boards and subsystem modules.
Typical applications include flagship and mid-range smartphone mainboards, tablet system boards, wearable device controllers, and camera modules that require precise placement of tube-packaged devices. By automating tube handling, manufacturers eliminate manual tray loading and reduce mis-picks, enabling fully automated surface-mount lines even when a significant portion of components arrives only in tube form. The result is higher throughput, more stable cycle times, and fewer quality escapes related to manual handling in high-volume smartphone production.

Specyfikacje
| Model | YN-T2112 (Single Track) | YN-T2112H (Single Track with Cut-off) | YN-T2109 (Dual Track) |
| Dimensions (L×W×H) | 1500×76×1140mm | 1500×76×1140mm | 1500×90×1140mm |
| Waga | 35 kg | 95KG | 40KG |
| Operating Voltage | AC 220V | ||
| Air Supply Required | 0.5–0.7Mpa | ||
| Maximum Current | 2A | ||
| Feed Speed | <2s/Pcs | ||
| Operation Panel | 1.54″ OLED Display Screen | ||
| Channel Switching Time | <6s | ||
| Channel | Single Channel (Single/Dual Channel Optional) |
Single Channel (Single/Dual Channel Optional) |
Dual Channel (Single/Dual Channel Optional) |
| Lead Bending Function | Optional(Default: None) | ||
| Forming Function | Optional(Default: None) | ||
| Pre-lift Function | Optional(Default: None) | ||
| Cut-off Function | Optional(Default: None) | Yes | Optional(Default: None) |
| Cut-off Length | Optional(Default: None) | Customizable based on material requirements | Optional(Default: None) |
| Cut-off Pitch | Optional(Default: None) | ±1mm(Nastawny) | Optional(Default: None) |
| Applicable Tube Length | 400–600mm | 400–600mm | 400–600mm |
| Applicable Tube Height | 10mm–45mm | 10mm–45mm | 10mm–45mm |
| Applicable Tube Width | 10mm–40mm | 10mm–40mm | 10mm–28mm |

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