Giới thiệu
In automotive and industrial electronics, a feeding error is not a rework ticket — it is a field failure waiting to happen. The K Type Axial Feeder answers with inspection built into the flow. Precision resistors, common-mode chokes, transistors, rectifier diodes and indicator LEDs are sequenced and oriented while a vision station reads body diameter and color-band code, and a laser micrometer cross-checks lead pitch and standoff. Anything outside the acceptance window is shunted before the spindle spends a stroke.
The scenarios span the demanding end of the industry. On-board charger and automotive lamp-driver lines use it to feed power components with documented consistency; body control module and instrument makers run high-mix campaigns on recipe changeover alone. Relay and transformer workshops mount it for automatic U-forming and lead cutting, while system integrators dock it to robot arms and non-standard automation cells where a proven feeding module, not a custom machine, is the sensible purchase. Automotive suppliers in particular value the audit trail that in-line inspection creates.
Control architecture suits the same environments: standalone push-button operation for simple cells, or IO-linked synchronization with the host insertion machine for data-visible smart factories. And when a product family retires, the feeder modules return to inventory for redeployment onto successor lines at the same station — capital that keeps working. For plants where quality is audited and budgets are questioned, the K-Type is feeding infrastructure, not an experiment.

New K-Type Axial Feeder
K-Type Axial Feeder Architecture for Power Supply and New Energy Electronics Insertion
Cái K Type Axial Feeder runs on a recipe swap rhythm rather than a tool reset rhythm between format switches. Bowl amplitude, track incline, escapement dwell, cam lift, and vision string thresholds index by part envelope rather than by station, so recipe swap loads from a controller key in the time it takes an operator to key set and the cassette holds a single recipe family across reels, sticks, and bulk bowls within a shift.
Closed loop drive control damps torque transients across reels, sticks, and bulk bowls on the same baseplate, so cassette throughput stays uninterrupted while a reel on one bay and a bulk bowl on another bay share the stroke’s cycle cadence without re homing. The cassette window becomes a stable cassette throughout the shift’s format switch transitions, and the stroke reads a consistent tolerance window across every stroke regardless of which format fed the part to the spindle.
Independent missing part detection confirms part presence at the bowl exit, the transfer point, and the post insertion station before the spindle commits a stroke and the stroke is qualified for spindle read through a vision station that reads body diameter and a downstream laser micrometer that cross checks lead pitch and standoff at power supply and new energy electronics factory insertion stations.

Thông số kỹ thuật
| Người mẫu | YN-A2412 |
| Dimensions (Length * Width * Height Unit: mm) |
536×109×140.5mm |
| Cân nặng | 9KG |
| Operating Voltage | DC 24V |
| Air Supply Required | 0.5–0.7Mpa |
| Maximum Current | 1.3A |
| Feeding Speed | 2s/Pcs |
| Drive Mode | Pneumatic |
| Bảng điều khiển hoạt động | 0.96-inch TFT color screen, 80 * 160 pixels |
| Material Pitch Error | ±0.4mm |
| Applicable Tape Width | 63-90 mm |

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