There is no rework budget for a satellite in orbit.

What you can Count on

What you can Count on

in Aerospace Contamination Control.

in Aerospace Contamination Control.

  • APMON Secure — real-time deposition rate monitoring with no data leaving the facility security perimeter, designed for classified and restricted-network environments. Full ISO 14644-17 measurement capability within a local data architecture.


  • APMON Live — networked monitoring for non-classified aerospace assembly facilities, with up to 16 sensors across integration areas, providing simultaneous deposition rate data at multiple critical locations.


  • SUMON — surface cleanliness measurement of optical substrates, mirror surfaces, sensor windows, and contact surfaces, per IEST-STD-CC1246E, before integration into flight assemblies.


  • Program documentation — timestamped event logs supporting mission readiness reviews, configuration audits, and post-launch anomaly investigations with complete assembly environment history.


  • Human activity correlation — deposition rate spikes correlated with personnel entries, process steps, and equipment operations, supporting behavioral intervention and gowning protocol validation.


In aerospace, contamination monitoring is not a quality program. It is a program requirement. The data it produces is part of the flight heritage.

  • APMON Secure — real-time deposition rate monitoring with no data leaving the facility security perimeter, designed for classified and restricted-network environments. Full ISO 14644-17 measurement capability within a local data architecture.


  • APMON Live — networked monitoring for non-classified aerospace assembly facilities, with up to 16 sensors across integration areas, providing simultaneous deposition rate data at multiple critical locations.


  • SUMON — surface cleanliness measurement of optical substrates, mirror surfaces, sensor windows, and contact surfaces, per IEST-STD-CC1246E, before integration into flight assemblies.


  • Program documentation — timestamped event logs supporting mission readiness reviews, configuration audits, and post-launch anomaly investigations with complete assembly environment history.


  • Human activity correlation — deposition rate spikes correlated with personnel entries, process steps, and equipment operations, supporting behavioral intervention and gowning protocol validation.


In aerospace, contamination monitoring is not a quality program. It is a program requirement. The data it produces is part of the flight heritage.

  • APMON Secure — real-time deposition rate monitoring with no data leaving the facility security perimeter, designed for classified and restricted-network environments. Full ISO 14644-17 measurement capability within a local data architecture.


  • APMON Live — networked monitoring for non-classified aerospace assembly facilities, with up to 16 sensors across integration areas, providing simultaneous deposition rate data at multiple critical locations.


  • SUMON — surface cleanliness measurement of optical substrates, mirror surfaces, sensor windows, and contact surfaces, per IEST-STD-CC1246E, before integration into flight assemblies.


  • Program documentation — timestamped event logs supporting mission readiness reviews, configuration audits, and post-launch anomaly investigations with complete assembly environment history.


  • Human activity correlation — deposition rate spikes correlated with personnel entries, process steps, and equipment operations, supporting behavioral intervention and gowning protocol validation.


In aerospace, contamination monitoring is not a quality program. It is a program requirement. The data it produces is part of the flight heritage.

Continuous monitoring in a programm record

Aerospace programs require documentation that contamination control was maintained throughout assembly, not only at qualification. A continuous APMON event log provides the deposition rate for every four-minute interval during the program, timestamped and stored. This is the contamination control record that mission readiness reviews, customer audits, and post-launch anomaly investigations draw on. A periodic sediment plate reading provides a daily average. The APMON event log provides the full operational history.

Aerospace programs require documentation that contamination control was maintained throughout assembly, not only at qualification. A continuous APMON event log provides the deposition rate for every four-minute interval during the program, timestamped and stored. This is the contamination control record that mission readiness reviews, customer audits, and post-launch anomaly investigations draw on. A periodic sediment plate reading provides a daily average. The APMON event log provides the full operational history.

For in-depth knowledge on contamination measurement,
explore the Brookhuis Academy.

For in-depth knowledge on contamination measurement,
explore the Brookhuis Academy.

Subscribe to our newsletter

Stay up to date on cleanrooms latest updates, expert insights and resources. Right in your inbox!

By submitting this form, I understand Brookhuis will process my personal information accordance with their Privacy policy.

Brookhuis Applied Technologies BV

Subscribe to our newsletter

Stay up to date on cleanrooms latest updates, expert insights and resources. Right in your inbox!

By submitting this form, I understand Brookhuis will process my personal information accordance with their Privacy policy.

Brookhuis Applied Technologies BV

Subscribe to our newsletter

Stay up to date on cleanrooms latest updates, expert insights and resources. Right in your inbox!

By submitting this form, I understand Brookhuis will process my personal information accordance with their Privacy policy.

Brookhuis Applied Technologies BV