การแนะนำ
In contemporary electronics assembly lines, the Automatic Jumper Feeder serves as a critical integration node between bulk wire supply and precision insertion operations. Its core function—feeding reeled copper wires in fixed lengths, cutting them into shape, and delivering them to the insertion machine—bridges what would otherwise be a disruptive manual gap in an automated workflow. By converting raw reeled material into ready-to-insert components on demand, the feeder enables seamless line continuity and supports the lean manufacturing principle of continuous flow.
The feeder is engineered for compatibility with standard insertion machine interfaces, allowing it to be deployed as a modular upgrade to existing lines or integrated into new turnkey installations. Its feed-rate synchronization capability ensures that wire supply matches insertion demand in real time, preventing both starvation and accumulation at the insertion station. Adjustable length settings and form configurations provide the flexibility to accommodate multiple jumper specifications without extensive changeover, keeping line utilization high across diverse product mixes.
The strategic value of the Automatic Jumper Feeder lies in its ability to elevate entire production lines. By automating the wire-to-insertion handoff, manufacturers achieve tighter cycle-time control, reduced work-in-process inventory, and lower operator intervention frequency. The feeder’s contribution to line stability means that downstream stations operate under consistent input conditions, which improves first-pass yield and simplifies root-cause analysis when variations occur. For organizations pursuing Industry initiatives, this device provides both the data-ready automation footprint and the process reliability that intelligent manufacturing systems require.

Automatic Jumper Feeder
Automatic Jumper Feeder Delivers Programmable Cut-to-Length Precision for Wearable PCB Assembly
In smart wearable device electronics factories, board-level real estate is measured in fractions of a millimeter, and every jumper wire must land with exacting positional accuracy. The Automatic Jumper Feeder addresses this constraint directly by feeding reeled copper wires in programmable fixed lengths, cutting and forming each segment to specification, and delivering it to the insertion machine in precisely controlled orientation. This level of deterministic feeding is what makes reliable jumper insertion possible on the densely populated, ultra-compact PCBs found in smartwatches, fitness bands, and hearable devices.
The feeder’s performance strength lies in its repeatable cut-to-length precision and stable wire-tension management throughout the feed path. For wearable electronics, where jumper wires often bridge tightly spaced conductors on multi-layer flex-rigid boards, even minor length deviation or wire deformation can cause insertion misalignment or short-circuit risk. The Automatic Jumper Feeder eliminates these variables by maintaining consistent dimensional output across extended production runs, ensuring that every jumper supplied to the insertion machine conforms to the same engineering tolerance.
Within the competitive wearable manufacturing landscape, this dimensional consistency translates directly into market advantage. Manufacturers deploying the Automatic Jumper Feeder report lower insertion defect rates, reduced rework cycles, and improved first-pass yield on high-density wearable assemblies. By removing the variability that plagues manual or semi-automated wire preparation, the device enables factories to meet the stringent quality benchmarks that premium wearable brands demand, while simultaneously protecting throughput on lines where every minute of unplanned downtime carries significant cost.

ข้อกำหนด
| แบบอย่าง | YN-J2303 | Remarks |
| Dimensions (L×W×H) | 624×78×160mm | |
| น้ำหนัก | 6.5KG | |
| Operating Voltage | DC 24V | |
| Air Supply Required | ไม่มี | |
| Maximum Current | 2.5A | |
| Feed Speed | 1.5s/Pcs | |
| แผงควบคุมการทำงาน | 0.96″ TFT Color Screen Resolution: 80×160 pixels |
|
| Changeover Time | 3min | |
| Channel | Single Channel | |
| Lead Bending Function | Bending | |
| Pre-lift Function | Pre-lift available | |
| Cut-off Function | Cut-off | |
| Correction Function | Correction | |
| Material Wire Diameter | 0.4–1mm | Cannot use 0.6mm forming die to form 0.4mm wire; Can only use 0.6mm die for 0.6mm wire |
| Track Pitch | 5–26mm (Forming die depends on wire diameter) Cross-shaped die: 3 sizes in one set (large/medium/small) |
Cannot use 16mm forming die for 16mm track pitch; Must use 16mm length die |
| Forming Lead Length | 2.0~5.5mm | Within this range, different lengths can only be achieved by using different forming dies of corresponding sizes |


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