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Tube Packaged MOSFET Placement Supported by Automatic Tube Feeder Technology

Descripción: El Automatic Tube Feeder combines controlled indexing, component sensing, and sequential presentation to handle tube packaged MOSFETs during automated placement. Components are advanced individually from the tube and positioned at the pickup point for direct access by the placement head. Its regulated feeding action helps maintain stable component availability while reducing interruptions caused by irregular movement or manual feeding. The tube based supply method also helps protect semiconductor devices during handling. For MOSFET placement, the feeder delivers each device in sequence according to programmed component requirements and designated PCB positions.

Cantidad mínima de pedido: 1 unidad

Plazo de entrega: 15 días

Introducción

El Automatic Tube Feeder serves as a critical interface between bulk component packaging and automated placement, converting tube-stored components into a controlled, single-file presentation ready for pick-and-place. Its servo-driven indexing aligns with the cadence of modern assembly lines, keeping components correctly oriented and available exactly when the placement head requires them. By replacing intermittent manual loading with continuous, regulated component part flow, it stabilizes the entire downstream placement process and protects sensitive semiconductor packages from handling damage during every single transfer cycle.

In production, the feeder addresses one of the most persistent bottlenecks in electronics manufacturing: inconsistent part feeding. By maintaining uniform component pitch and stable pickup coordinates, it reduces placement errors, prevents component bridging, and protects delicate package leads from mechanical stress—benefits that translate directly into higher first-pass yield and lower rework cost. Tight sensor feedback confirms component presence at each station, preventing empty picks and stopping irregular advances before they disrupt the placement cycle, so downstream operations run without interruption throughout long production shifts.

The equipment finds application across diverse manufacturing scenarios: mixed-technology PCB assembly combining SMT and through-hole, semiconductor final test and packaging operations, and automotive or industrial control board production where component variety is high. From telecommunications infrastructure boards to power management modules, the feeder supports reliable, repeatable delivery of tube-packaged devices in any environment prioritizing precision and uptime. Its flexibility suits both high-volume dedicated lines and high-mix contract environments, where frequent product changeovers demand fast, accurate component handling to maintain steady output and quality.

 

Automatic Tube Feeder

Automatic Tube Feeder

 

Automatic Tube Feeder Maximizes Placement Output with Unbroken Tube Packaged MOSFET Feed

El Automatic Tube Feeder provides an automated feeding method for MOSFETs supplied in protective tubes. In automotive electronics manufacturing, MOSFETs are frequently used as electronic switching elements in power-management and control circuits. When these MOSFETs are packaged in tubes, the Automatic Tube Feeder transfers them one by one from the tube toward the pickup point. The feeding mechanism controls the movement of the components so that the placement machine can access individual MOSFETs in the required sequence. This makes the feeder a dedicated interface between tube-packaged MOSFETs and automated component placement.

The application is particularly relevant to automotive PCBs where MOSFETs perform switching functions. In a battery management system, MOSFETs can control current paths during battery charging, discharging, and protection operations. In an electric vehicle motor-control board, MOSFETs can function as switching devices within the power stage. In power conversion circuits, MOSFETs can provide controlled switching for energy conversion. For these applications, the Automatic Tube Feeder delivers the required MOSFETs directly to the placement head, allowing each component to be positioned according to the PCB assembly program and its designated circuit location.

The feeding process is based on sequential component presentation. After a MOSFET is picked by the placement head, the feeder advances the next device from the tube into the pickup area. This prevents the operator from having to manually remove and position individual MOSFETs during placement. The feeder can therefore be assigned to specific MOSFET part numbers used on an automotive PCB, with its feeding position corresponding to the component requirements programmed in the placement machine. The Automatic Tube Feeder is consequently suited to automated placement of tube-packaged MOSFETs where controlled component presentation is required.

 

 

Presupuesto

Modelo YN-T2112 (pista única) YN-T2112H (pista única con corte) YN-T2109 (doble vía)
Dimensiones (largo × ancho × alto) 1500 × 76 × 1140 mm 1500 × 76 × 1140 mm 1500 × 90 × 1140 mm
Peso 35KG 95 kg 40 kg
Operating Voltage 220 V CA
Suministro de aire necesario 0,5–0,7 MPa
Corriente máxima 2A
Feed Speed <2 s/unidad
Panel de operaciones Pantalla OLED de 1,54″
Tiempo de cambio de canal <6 s
Canal Un solo canal
Opcional: un canal o dos canales
Un solo canal
Opcional: un canal o dos canales
Doble canal
Opcional: un canal o dos canales
Función de doblado de plomo OpcionalValor predeterminado: Ninguno
Función de formación OpcionalValor predeterminado: Ninguno
Función previa a la elevación OpcionalValor predeterminado: Ninguno
Función de corte OpcionalValor predeterminado: Ninguno OpcionalValor predeterminado: Ninguno
Longitud de corte OpcionalValor predeterminado: Ninguno Personalizable en función de los requisitos de material OpcionalValor predeterminado: Ninguno
Paso de corte OpcionalValor predeterminado: Ninguno ±1 mmAjustable OpcionalValor predeterminado: Ninguno
Longitud de tubo aplicable 400–600 mm 400–600 mm 400–600 mm
Altura del tubo aplicable 10 mm–45 mm 10 mm–45 mm 10 mm–45 mm
Ancho de tubo admisible 10 mm–40 mm 10 mm–40 mm 10 mm–28 mm

 

 

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