S3010A Radial Insertion Machine by Southern Machinery
The S3010A Radial Insertion Machine by Southern Machinery helps EMS, ODM, automotive electronics, medical electronics, and industrial control manufacturers automate radial through-hole component insertion. With source-listed values such as 12,000 CPH real insertion rate, support for 2.5 mm to 10.0 mm insertion spans, and 450 mm x 450 mm PCB size, it can reduce repetitive manual insertion work, improve process repeatability, and make THT assembly easier to integrate with board handling, soldering, inspection, training, spare parts, and full-line automation support.
Jul 23, 2026 · Updated Jul 23, 2026 · Southern Machinery

S3010A Radial Insertion Machine by Southern Machinery
For EMS, ODM, automotive electronics, medical electronics, and industrial control manufacturers, radial through-hole component insertion is often one of the places where manual handling, inconsistent lead forming, and line balancing issues limit output. The S3010A Radial Insertion Machine from Southern Machinery is designed for automated radial component insertion in THT PCB assembly, with source-listed specifications including 12,000 CPH real insertion rate, speeds up to 22,000 CPH, less than 1000 PPM reliability, positioning accuracy below 0.001 mm, 2.5 mm to 10.0 mm insertion span support, and 450 mm x 450 mm maximum PCB size. Final project values should always be confirmed against the component package, PCB design, feeder configuration, and acceptance standard.

What is this machine used for?
The S3010A is used to automate insertion of radial leaded components into PCB through holes. In practical factory terms, it helps replace repetitive manual radial component insertion with a controlled machine process, so production teams can improve labor allocation, stabilize insertion quality, and connect radial insertion into a broader SMT and THT automation flow.
Typical radial components can include leaded parts supplied in compatible formats and prepared for automated insertion. The exact component list should be checked during technical evaluation because insertion span, component body height, lead condition, PCB hole design, and feeder setup all affect whether a component is suitable.
Why EMS and ODM factories evaluate S3010A radial insertion
Radial insertion is not just a speed problem. It is a repeatability problem, a labor planning problem, and a downstream soldering quality problem. Manual insertion can work for low-volume builds, but as production mix and volume increase, teams need a repeatable way to manage component placement, lead insertion, and handoff to the next THT process.
The source document positions the S3010A around four practical factory values:
- Throughput improvement: the page lists a real insertion rate of 12,000 CPH and speeds up to 22,000 CPH.
- Placement control: the source lists positioning accuracy of less than 0.001 mm and an advanced vision system.
- Component coverage: the source lists 2.5 mm to 10.0 mm insertion spans and component height up to 22 mm without derating.
- Faster programming: the page describes visual operating software with Gerber file import and new PCB program creation in about 5 minutes, subject to final technical confirmation for each product.
Key specifications from the source document
| Selection item | Source-listed value |
|---|---:|
| Insertion rate, real | 12,000 CPH |
| Speed reference | Up to 22,000 CPH |
| Reliability | Less than 1000 PPM |
| Positioning accuracy | Less than 0.001 mm |
| Component span | 2.5 mm to 10.0 mm |
| Maximum component height | 22 mm without derating |
| Maximum PCB size | 450 mm x 450 mm |
| Drive system | Full Fuji servo drive system |
These values are useful for initial line planning, but final cycle time and yield depend on product mix, PCB panel layout, component packaging, feeder quantity, insertion sequence, board transfer, and acceptance criteria.

Typical application scenarios
Automotive electronics
Automotive PCB assemblies often include radial capacitors and other through-hole components that need stable mechanical insertion before soldering. S3010A can be evaluated when the factory needs repeatable insertion quality across higher-volume programs.
Industrial control boards
Industrial power, control, and inverter boards commonly combine SMT devices with radial THT components. Automated insertion helps keep the THT stage from becoming the bottleneck after SMT placement.
EMS mixed-product production
For EMS factories, the value is not only the machine speed. It is the ability to create a more predictable process when multiple customer products share similar radial component families and board sizes.
Medical and regulated electronics manufacturing
Where process consistency and documentation matter, automated radial insertion can help reduce operator-to-operator variation. The final validation plan should still be defined by the manufacturer's quality system and product requirements.
How to connect S3010A into a complete PCB assembly line
A practical PCB assembly flow may include SMT printing, placement, reflow, AOI, THT insertion, wave soldering or selective soldering, inspection, and board handling. In that flow, S3010A normally belongs in the THT automation segment after SMT assembly and before soldering.
A common integration discussion should cover:
- Upstream PCB loading or magazine handling.
- Board positioning and transfer method.
- Component feeder configuration for the radial parts.
- Program setup using PCB data and Gerber files where applicable.
- Downstream conveyor, wave soldering, selective soldering, AOI, or manual inspection process.
- Spare parts, operator training, maintenance routine, and production support plan.
Southern Machinery was established in Shenzhen, China in 2011 and focuses on SMT/THT PCB assembly automation equipment. For buyers planning a full line, Southern Machinery can discuss SMT, THT insertion, wave soldering, board handling, inspection, spare parts support, professional training, and global service for high-efficiency and cost-effective factory automation projects.

Key buying parameters to confirm
Before selecting a radial insertion machine, engineering and purchasing teams should confirm these items with samples and drawings:
- Radial component type, body size, lead diameter, lead pitch, polarity, and packaging.
- Required insertion span, especially within the 2.5 mm to 10.0 mm range listed by the source page.
- Maximum component height and clearance on the PCB.
- PCB size, panel design, tooling holes, fiducials, warpage, and board support.
- Target output, takt time, product mix, and changeover frequency.
- Feeder count, feeder compatibility, and maintenance requirements.
- Upstream and downstream board handling method.
- Quality acceptance criteria, including insertion depth, missing parts, lead damage, polarity, and soldering readiness.
- Operator training, spare parts package, and local service expectations.
ROI, quality, and capacity value
The ROI case for S3010A should be built from measurable factory data, not generic promises. The core comparison is manual radial insertion cost and quality variation versus automated insertion capacity, feeder setup time, operator allocation, and downstream soldering stability.
Factories should model:
- Labor hours currently used for radial component insertion.
- Rework caused by missing parts, wrong orientation, poor insertion depth, or bent leads.
- Line stoppages caused by THT bottlenecks.
- Output improvement when radial insertion is synchronized with board handling and soldering.
- Savings from moving skilled operators from repetitive insertion to inspection, setup, and process control.
The source-listed 12,000 CPH real insertion rate can support this analysis, but actual ROI depends on configuration and must be confirmed with the buyer's component set and production plan.

FAQ
Is S3010A only for high-volume factories?
No. It is most valuable when radial insertion volume, labor pressure, or quality requirements justify automation. EMS factories with repeated product families may also benefit even when each single model is not extremely high volume.
Can it handle every radial component?
No machine should be assumed to handle every component without evaluation. The source lists 2.5 mm to 10.0 mm component span support and up to 22 mm component height, but final suitability depends on component geometry, lead condition, packaging, feeder setup, and PCB design.
How does S3010A fit with wave soldering?
S3010A can be placed before wave soldering or another THT soldering process. The purpose is to deliver more consistent inserted boards to the soldering stage, reducing variation created by manual insertion.
What information should buyers send for evaluation?
Send PCB drawings or Gerber data, BOM, radial component drawings, packaging photos, current process video if available, target output, and quality requirements. This lets Southern Machinery evaluate feeder configuration and line integration.
Does Southern Machinery provide complete line support?
Yes. Southern Machinery focuses on SMT/THT PCB assembly automation equipment and can support broader SMT, THT insertion, wave soldering, board handling, and inspection line planning, with spare parts support and professional training.
CTA
If your radial insertion process is limiting THT output or creating unstable manual quality, contact Southern Machinery with your PCB files, component drawings, target output, and current process notes. The engineering team can review whether the S3010A Radial Insertion Machine is suitable for your line and propose a high-efficiency, cost-effective automation configuration for your factory.
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