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MML™ Technology

MML Technology - Exceptional properties in one capacitor

We would like to use this chance to acquaint you with the nearly groundbreaking MML™ Technology and its impressive characteristic. This product unites all positive features regarding weight, capacity, and performance and is set to be a major factor in upcoming progress and unlock new possibilities within the technological framework.

MML Technology
MML – Miniature Micro-Layer Technology

MML™ is a revolutionary new technology that provides the highest capacitance per volume in film capacitors available on the market and can replace other technologies.

Outstanding size and weight reduction compared to other technologies or higher capacity and performances are only an excerpt of the technical performances.

Higher energy density & improved performance, as well as favorable performance characteristics compared to other film technologies, give more scope for system architecture.

MML™ technology can easily meet and exceed the capacitance and packaging requirements for ex. Markets like Commercial Aircraft ASCU, Motor control in eVTOL, Space, Defence or other.

Very briefly, MML™ Technology combines positive properties in terms of weight, volume, capacity and performance. What is really even more important here is the fact that with these properties, it offers new possibilities for system architecture and design.

Voltage 100 V to 1200 V
Custom Design Flexible
Temperature Up to 140°C
Voltage Custom Design Temperature
100 V to 1200 V Flexible Up to 140°C

the MML™ technology?

the MML™ technology?

Several studies have been conducted on actual cases of controls and DC-Links functions for aircraft applications. All have shown about 50% reduction in size and weight compared to other film technologies.

MML – Miniature Micro-Layer Technology
MML – Miniature Micro-Layer Technology
MML – Miniature Micro-Layer Technology
MML – Miniature Micro-Layer Technology
Criteria Ceramic (BME) Ceramic (PME) MML™
Energy density Limited Limited Very Good
Operating temp Up to 125 °C Up to 125 °C Up to 140 °C
Capacitance Drift (T)
(55 °C to 125 °C)
High, especially on X8R, X5R, Y5V, Z5U (+30% to 90%) High, especially on CL2* (+15% to 15%) Low (4% to +2%)
Capacitance Drift (V)
(@ rated voltage)
High, especially on X8R, X5R, Y5V, Z5U (50% to 80%) High, especially on CL2* (25% to 30%) No drift
Dielectric Losses (ẟ) High especially on X8R, X5R, Y5V, Z5U High, especially on CL2* (X7R typical 150x10⁻⁴) Low 60 X 10⁻⁴
Weight High High Low
Failure Mode Short Circuit Short Circuit Open Circuit
Self Healing None None Excellent

* CL2 Dielectric: BX, 2C1, X7R

MML – Miniature Micro-Layer Technology
MML – Miniature Micro-Layer Technology
Criteria Ceramic (BME) Ceramic (PME) MML™
Energy density Limited Limited Very Good
Operating temp Up to 125 °C Up to 125 °C Up to 140 °C
Capacitance Drift (T)
(55 °C to 125 °C)
High, especially on X8R, X5R, Y5V, Z5U (+30% to 90%) High, especially on CL2* (+15% to 15%) Low (4% to +2%)
Capacitance Drift (V)
(@ rated voltage)
High, especially on X8R, X5R, Y5V, Z5U (50% to 80%) High, especially on CL2* (25% to 30%) No drift
Dielectric Losses (ẟ) High especially on X8R, X5R, Y5V, Z5U High, especially on CL2* (X7R typical 150x10⁻⁴) Low 60 X 10⁻⁴
Weight High High Low
Failure Mode Short Circuit Short Circuit Open Circuit
Self Healing None None Excellent

* CL2 Dielectric: BX, 2C1, X7R

the MML™ technology?

the MML™ technology?

MML – Miniature Micro-Layer Technology
MML – Miniature Micro-Layer Technology

Here you'll find the Markets of the outstanding MML™ Technology like Space, Defence,
Commercial Aircraft, Aviation & eVTOL. Following you'll find an excerpt of Market and Applications.

MML – Miniature Micro-Layer Technology

If you would like general information about the the MML™ technology?, please contact our team directly or arrange a callback.

MML – Miniature Micro-Layer Technology

If you require the MML™ technology for one of your projects or would like advice on the MML™ technology regarding certain specifications, we will be happy to offer you a solution in person.

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