Introduzione
IL New K-Type Axial Feeder functions as a conversion module that transforms conventional pick-and-place machines into fully automated axial insertion stations. Its standardized mounting interface couples directly with pick-and-place rail systems, enabling the host platform to acquire, singulate, and present horizontal resistors, horizontal transistors, and taped jumper wires at the placement head’s pickup position without manual pre-forming or hand loading. This mounting compatibility extends to modified and retrofitted equipment, allowing legacy surface-mount platforms to assume axial insertion duties that previously required dedicated through-hole machinery or manual operator stations, directly displacing the labor burden associated with conventional axial component handling.
Beyond pick-and-place integration, the K-Type serves as a pre-validated supply subsystem for non-standard automated equipment. By presenting singulated, cut-to-length components at a fixed datum position, the feeder eliminates the need for custom material handling design within each non-standard machine, compressing engineering lead times and transferring material handling reliability from unproven custom mechanisms to a field-tested feeding module. The same standardized output geometry interfaces with robotic arm end-effectors, which extract components from the feeder’s fixed pickup position without requiring inter-system communication protocols or synchronization handshakes, enabling robotic workcells to achieve fully autonomous component acquisition.
This platform-agnostic deployment architecture means that a single feeder model can migrate between pick-and-place stations, non-standard assembly cells, and robotic workcells as production priorities shift. The auto-calibrating rail reconfigures its material channel to accommodate dimensional variance across resistors, transistors, and jumper wires through stepper-driven width adjustment without fixture substitution, ensuring that each host platform receives components positioned within the same placement tolerance envelope regardless of the component family being processed, and that the feeder’s conversion capability is not constrained by the specific host it is mounted upon.

New K-Type Axial Feeder
The New K-Type Axial Feeder Handling Resistors Transistors and Jumper Wires Across Robotics Boards
The architectural diversity of robotics electronics — spanning power distribution boards, communication interface modules, sensor processing substrates, and battery management systems — generates a correspondingly diverse demand for horizontal tape-packaged passive and active components that the New K-Type Axial Feeder addresses through its multi-family processing envelope. Horizontal resistors populate current-sensing networks in motor driver circuits, impedance-matching networks in communication modules, and voltage-division chains in sensor signal conditioning stages, while horizontal transistors serve load-switching functions in power distribution, signal amplification in sensor interfaces, and switching regulation in battery management boards, with each board architecture imposing distinct component specifications within the same horizontal tape packaging format.
Taped jumper wires constitute a third component family essential to robotics board production, providing board-to-board interconnects and configuration links across the multi-layer architectures typical of modular robotics controllers. The K-Type’s auto-calibrating rail accommodates the dimensional variance across all three component families — resistors, transistors, and jumper wires — through stepper-driven bilateral width adjustment that establishes self-referenced zero positions without fixture substitution, allowing a single feeder to transition between component types as the production sequence traverses the diverse passive and active element populations of each robotics board design within a mixed-model manufacturing schedule.
The adaptive gap regulation of the severing assembly maintains consistent burr-free shear quality across this full component spectrum by automatically conforming to each type’s specific lead diameter and material composition, while the selectable K-position punching option allows the same feeder to impart stand-off-governing K-bends for power resistors requiring thermal clearance and flat geometry for jumper wires destined for low-profile interconnect positions. The selectable paper tape return mode completes this configurational envelope, enabling the feeder’s tape ejection path to adapt to the layout constraints of each board-specific assembly station, ensuring that a single hardware unit can service the heterogeneous component supply requirements of an entire robotics electronics production portfolio without dedicated feeder allocation per board architecture.

Specifiche
| Modello | YN-A2412 |
| Dimensioni (Length * Width * Height Unit: mm) |
536×109×140.5mm |
| Peso | 9KG |
| Operating Voltage | DC 24V |
| Air Supply Required | 0.5–0.7Mpa |
| Maximum Current | 1.3A |
| Feeding Speed | 2s/Pcs |
| Drive Mode | Pneumatic |
| Pannello operativo | 0.96-inch TFT color screen, 80 * 160 pixels |
| Material Pitch Error | ±0.4mm |
| Applicable Tape Width | 63-90 mm |


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