導入
その 自動ジャンパー供給装置 is engineered around a motorized spool-drive system that pays out fine-gauge jumper wire from a reel directly into a precision feeding channel, eliminating the need for carrier tape entirely. A torque-controlled unwind motor maintains constant back-tension on the wire spool, preventing loose loops and snarls that plague passive spool holders while ensuring the wire enters the feed track with uniform linear tension from the first meter to the last. The wire travels through a dual-roller straightening assembly that counteracts the natural coil memory imparted by the reel, presenting a straightened segment at the pickup window so the placement nozzle can grip a flat, untwisted length rather than a curved arc.
At the delivery stage, a servo-driven cutter module shears the wire to a programmable length with clean, burr-free ends, then advances the cut segment into a vacuum-assisted pickup pocket. The cutter blade geometry is optimized for soft-copper and tinned-copper jumper alloys, producing a perpendicular cut that prevents stubbing or partial-severing issues that can jam downstream mechanisms. A wire-breakage sensor positioned between the spool and the straightener halts the feed sequence instantly if the reel runs out or the wire snaps, sending a digital fault signal to the placement machine before an empty pickup attempt occurs.
These design choices translate directly into production reliability. The feeder turns what was traditionally a manual operation — cutting jumper wires to length and positioning them for pickup — into a fully automated sequence synchronized to the placement head’s cycle time. Wire length is held within tight tolerance from piece to piece, eliminating the variability of hand-cut jumpers. And because the system handles the full diameter range of standard jumper gauges without mechanical tooling changes, a single feeder unit covers the majority of wire-jumper applications on a typical SMT line.

自動ジャンパー供給装置
Automatic Jumper Feeder for BMS and Inverter Module Assembly in New Energy Manufacturing
その 自動ジャンパー供給装置 processes reel-fed jumper wire through an integrated unwind-straighten-cut-place sequence where every stage is actively controlled rather than passively guided. A programmable spool drive with torque feedback monitors and adjusts unwind force continuously, compensating for the decreasing spool diameter as wire is consumed and the corresponding change in rotational inertia. The wire feeds into a linear track equipped with tension-sensing pinch rollers that detect subtle variations in conductor surface friction and adjust grip pressure in response, preventing the slip that produces length errors on the finished jumper while avoiding the excessive clamping that mars the wire surface.
The cutting and delivery end of the feeder is purpose-built for the conductor types and end-use requirements specific to new energy electronics. The shear mechanism uses a double-acting blade set driven by a dedicated servo actuator controlling cutting speed and blade-dwell time, producing a perpendicular cut face with minimal burr formation on the copper alloys preferred for power-handling jumpers. After cutting, the jumper transfers into a pickup nest with a precision-machined channel that positions the wire segment for nozzle pickup — no reliance on gravity alone, no possibility of the jumper rolling out of alignment. An optical confirmation sensor at the nest verifies jumper presence and orientation, preventing pickup attempts on an empty or mispositioned nest.
The product advantage in new energy manufacturing is straightforward: the feeder replaces manual wire cutting and placement with a repeatable, synchronized process that produces jumpers of identical length and end quality at machine speed. Where BMS boards, inverter modules, and power distribution assemblies demand jumpers capable of carrying significant current, the Automatic Jumper Feeder supplies them from bulk stock without intermediate packaging steps. It eliminates the scrap generated by hand-cut length variations, reduces the handling contamination that degrades solder wetting on thick conductors, and turns what is often the last manual bottleneck on a high-power electronics line into an automated, self-regulating supply station.

仕様
| モデル | YN-J2303 | 備考 |
| 外形寸法(長さ×幅×高さ) | 624×78×160mm | |
| 重さ | 6.5kg | |
| Operating Voltage | DC 24V | |
| 必要な空気供給量 | None | |
| 最大電流 | 2.5A | |
| Feed Speed | 1.5秒/個 | |
| Operation Panel | 0.96インチのTFT カラー画面の解像度:80×160ピクセル |
|
| 切り替え時間 | 3分 | |
| チャンネル | シングルチャンネル | |
| リード曲げ機能 | 曲げ加工 | |
| リフト前の機能 | リフト前のサービスをご利用いただけます | |
| カットオフ関数 | カットオフ | |
| 補正関数 | 訂正 | |
| 材質 線径 | 0.4~1mm | 0.4mmのワイヤを成形するには、0.6mmの成形ダイは使用できません。; 0.6mmのワイヤには、0.6mmのダイのみを使用できます。 |
| 線間距離 | 5~26mm (成形ダイは線径によって異なります) 十字型の型:1セットに3サイズ入り(大・中・小) |
16mmの軌間には、16mmの成形金型は使用できません。; 長さ16mmのダイスを使用する必要があります |
| リード長の形成 | 2.0~5.5mm | この範囲内では、さまざまな長さを実現できるのは 対応するサイズのさまざまな成形金型を使用することで |
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