Process development configuration

Desktop Laser Solder Ball Jetting System

A desktop or laboratory-oriented configuration can provide a controlled environment for application evaluation before a larger automated solution is selected. It is intended to make soldering parameters, workholding, positioning references and sample results visible to the engineering discussion—not to imply that every development setup is identical.

What the system is

A configuration selected around the application

A desktop or laboratory-oriented configuration can provide a controlled environment for application evaluation before a larger automated solution is selected. It is intended to make soldering parameters, workholding, positioning references and sample results visible to the engineering discussion—not to imply that every development setup is identical.

Suitable application contexts

◆Early feasibility studies
◆Fixture and pad-access trials
◆Small batch engineering work
◆Process-development and sample evaluation

Machine structure

Process elements that must work together

The system connects material delivery, energy, positioning, workholding and programmable control. The precise relationship is defined through the application and sample process.

01

Compact working envelope

Specified as part of the relevant application and system configuration.

02

Solder ball feeding and laser jetting head

Specified as part of the relevant application and system configuration.

03

Programmable motion axes

Specified as part of the relevant application and system configuration.

04

Fixture mounting surface

Specified as part of the relevant application and system configuration.

05

Optional camera / vision support

Specified as part of the relevant application and system configuration.

06

Operator-oriented process interface

Specified as part of the relevant application and system configuration.

Process workflow

From application information to a stable process

  1. 01Collect component and joint information
  2. 02Set up representative fixture support
  3. 03Select initial solder ball condition
  4. 04Run controlled parameter trials
  5. 05Inspect and review sample appearance
  6. 06Use findings to select next process or system step

Integration options

Defined around the manufacturing flow

→

Laboratory fixture set-up

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Application-specific workholding

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Method development records

→

Potential transfer of proven conditions to larger automation

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Engineering demonstration support

Engineering notes

Read technical data in its documented context

The available information supports a practical engineering conversation. The final configuration follows the selected system and sample result.

A compact platform does not remove the need for process development.

The required laser, vision and motion configuration should match the actual joint and sample.

Sample results should be evaluated against the customer’s own acceptance criteria.

Real process evidence

See laser solder ball jetting in action

Real supplied process video and frames show the head, workpiece, fixture and repeat sequence without audio autoplay.

Supplied process video

Precision solder ball jetting process

Supplied footage showing the workpiece / fixture and repeated jetting context.

Visible FAQ

Configuration questions

Answers remain application-led and avoid generic performance promises.

Is desktop equipment only for R&D?+

It can support process development and engineering work; the appropriate role depends on the application and operational requirement.

Can a developed process transfer to automation?+

Potentially, after fixture, motion, safety and handling requirements have been separately evaluated.

Have a micro-soldering application to evaluate?

Send the component information. Start with the process.

Share drawings, sample photographs or soldering requirements. The engineering discussion can connect the component to a suitable process and machine configuration.

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