소개
그만큼 Intelligent Dual Line DIMM Slot Feeder focuses on the front-end handling of DIMM sockets in automated PCB insertion environments. Instead of treating the connector supply as a single material stream, the machine establishes two coordinated feeding lanes for DIMM slot delivery. Each lane can receive sockets, guide their movement and transfer individual connectors toward a defined output position. This structure is valuable for motherboard assembly where several memory connectors must be installed according to a programmed board layout. Server and computing motherboards commonly allocate multiple DIMM sockets around the processor and memory subsystem, so the connector supply process must correspond with the required insertion order.
A typical production sequence begins with DIMM slots loaded into feeder channels. Internal conveying components separate sockets and control their travel along the route. At the presentation area, the connector is held in a suitable orientation for the insertion mechanism to transfer it toward the PCB. The dual-line structure gives production engineers two material paths operating according to the equipment program, supporting different socket supply requirements within the same assembly cell. For through-hole DIMM sockets, this process leads into connector insertion, where solder tails pass through PCB holes before downstream soldering. Connector manufacturers offer DIMM sockets in different configurations, including vertical solder-tail and press-fit versions, so feeder configuration can match the selected connector format and assembly architecture.
Its application range extends across AI computing electronics, server motherboard production, storage systems, networking equipment, telecommunications hardware and industrial computing platforms. A server motherboard line can position the feeder before automated insertion equipment, creating a dedicated route for memory socket preparation while other stations handle CPU sockets, expansion connectors and additional through-hole components. The machine can also serve NPI and repeated production environments where several motherboard models share related DIMM socket structures. Key characteristics include two independent feeding channels, controlled connector advancement, orientation management, socket separation, presentation control and coordination with downstream insertion machinery. The result is a specialized DIMM connector supply stage that connects material loading with PCB insertion and later soldering and inspection processes.

Intelligent Dual Line DIMM Slot Feeder
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Intelligent Dual Line DIMM Slot Feeder Enabling Coordinated DIMM Socket Insertion for Telecommunication Electronics
On a telecommunication PCB production line, the Intelligent Dual Line DIMM Slot Feeder can function as the material preparation stage immediately before automated connector insertion. The process starts with operators placing DIMM slots into the machine loading area. The feeder receives the sockets and directs them into two separate feeding channels. Each channel contains a defined transport route that moves connectors toward the discharge position while controlling their spacing and movement direction. For telecom server motherboards and network computing boards containing several DIMM interfaces, the dual-line architecture creates two organized component streams instead of relying on a single connector supply path.
During continuous operation, each DIMM slot travels through its assigned channel until it reaches the separation section. The feeder controls the release of individual sockets so multiple connectors do not enter the presentation position simultaneously. Orientation control then establishes the required connector direction before the socket reaches the handoff area. When the downstream insertion machine reaches the DIMM operation in its programmed sequence, the feeder releases the corresponding connector to the presentation position. The insertion head can then transfer the socket onto the PCB and push its terminals through the prepared through-holes. The same cycle can be repeated for the remaining DIMM positions on the board, creating a coordinated relationship between component delivery and insertion movement.
This workflow can be introduced into 5G infrastructure controller board lines, telecom server motherboard lines, network switch production lines, communication gateway assembly lines and edge computing equipment manufacturing. After the DIMM slots are inserted, the PCB can continue to soldering, AOI and electrical verification. The Intelligent Dual Line DIMM Slot Feeder contributes through its independent dual-channel routing, controlled release, socket separation, directional guidance and defined presentation position. These functions allow the DIMM insertion section to operate as a dedicated automated process rather than a manually supplied connector station, particularly when communication equipment factories produce boards with different socket quantities and insertion sequences.

명세서
| 모델 | YN-D2109 |
| 치수 (길이×너비×높이) | Please refer to the above drawing(Unit: mm) |
| 무게 | 162.5KG |
| Operating Voltage | AC 220V |
| 공기 공급 필요 | 0.5Mpa |
| 최대 출력 | 800W |
| Feed Speed | 2.5s/Pcs |
| 조작 패널 | Wecon Touch Screen |
| 제어 시스템 | Leisai Control Board |
| 채널 | 2 Channels |
| Applicable Tray | Please refer to the right-side drawing (Single side can load 8 layers of material) |
| Material | Compatible with both PTH and SMT materials; supports dual-track feeding for different materials (Automatic tray ejection when material runs out) |
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