導入
その Automatic Tube Feeder delivers precision component feeding for electronics assembly applications where tube packaged parts must be supplied with exact timing and positioning accuracy. This high performance feeding device handles a wide range of components including memory chips, processors, interface controllers, and various connectors that are packaged in protective tubes to prevent damage during storage and handling. The feeder employs controlled vibration combined with pneumatic action to gently advance components to the pickup point, ensuring each part is correctly oriented and spaced for the placement head to mount onto PCBs without misalignment or lead damage that could compromise final product reliability.
Within complete SMT production lines, the Automatic Tube Feeder functions as an essential link between upstream solder paste processes and downstream placement operations, enabling continuous automated assembly from start to finish. As PCBs progress through the line, the feeder supplies components to multiple placement heads simultaneously, supporting high speed assembly of both small passive components and larger integrated circuits required for complex board designs. The system features quick changeover capabilities between different tube sizes and component types, allowing manufacturers to switch between product variants efficiently without extended setup times or complex reconfiguration procedures that would otherwise reduce overall line utilization rates.
The Automatic Tube Feeder provides measurable performance benefits that enhance manufacturing productivity while reducing total cost of ownership for electronics producers. Automated component feeding eliminates manual handling requirements, significantly lowering labor expenses and associated quality risks from human error during repetitive loading tasks. Precision engineering ensures minimal pick failures and maintains tight placement accuracy throughout extended production runs, critical for achieving high yield rates in competitive manufacturing environments. Companies leveraging the Automatic Tube Feeder gain a cost effective solution that optimizes their PCB assembly workflow, supporting high volume output with the reliable component feeding necessary for producing quality electronic products at scale while meeting demanding customer specifications and delivery timelines.

Automatic Tube Feeder
Efficient Automated Feeding Systems for Modern Small Home Appliance PCB Production
その Automatic Tube Feeder plays a vital role in small home appliance electronics factories by delivering tube packaged components with precision and reliability for efficient PCB assembly. In facilities producing rice cookers, blenders, air fryers, and coffee makers, control boards require integrated circuits, connectors, and power management chips that are commonly supplied in protective tubes. The feeder uses controlled vibration and pneumatic action to advance these components one by one to the pick and place machine, ensuring each part is correctly oriented and positioned for accurate mounting onto appliance control PCBs without manual handling errors or component damage.
Within small appliance production lines, the Automatic Tube Feeder integrates seamlessly into automated SMT workflows that connect solder paste printing, component placement, and reflow soldering stages. As bare PCBs for appliance control boards enter the line, the feeder continuously supplies tube packaged components including microcontrollers, triacs, relays, and terminal connectors without interruption. Its adaptable rail configuration accommodates various tube dimensions, supporting the flexible production needed for different appliance models ranging from basic toasters to advanced smart kitchen devices. Compatibility with major equipment brands enables deployment across existing production lines without costly modifications or extended downtime.
Operational efficiency gains from the Automatic Tube Feeder are substantial in high volume small appliance manufacturing where cost control and throughput directly impact competitiveness. The automated feeding process eliminates manual component loading, significantly reducing labor expenses while minimizing human error potential during repetitive tasks. Tight accuracy tolerances ensure reliable component delivery throughout extended production runs, minimizing pick failures and rework requirements that would otherwise slow output. Manufacturers achieve lower per unit production costs while maintaining the consistent assembly quality necessary for producing reliable small home appliances that meet consumer expectations and safety standards in demanding global markets.

仕様
| モデル | 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 |
| 重さ | 35KG | 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(調整可能) | 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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