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Silencer / Development & testing

Understanding
the movement.

The Silencer brings springs, damping and the supported load into one mechanical system. Its development examines how these elements work together, using a dedicated test rig and computer simulation.

Explore the thinking
Exploded Silencer illustration showing the top plate and underlying structure
Silencer / A view inside the construction

01 / The principle

Support.
Movement. Control.

The spring carries the load and allows movement; damping controls the resulting oscillation. For SILENCER II, I·ctra specifies natural frequencies of 6 Hz vertically and 8 Hz laterally, with a maximum vertical vibration amplitude of approximately ±12 mm.

The spring.

Carries the supported load while allowing mechanical movement.

The damping.

Controls oscillation within the spring-and-load system.

The component.

Its mass forms part of the system being considered.

Silencer platform mounted above spring-equipped units in a development test arrangement
Silencer / Platform and development test arrangement

02 / The supported load

The component is
part of the system.

The load establishes the spring and damper’s operating point. It is therefore part of the engineering calculation, rather than simply an item placed on top. The development work considers the platform and its supported component together.

03 / The test method

Apply a signal.
Observe the response.

A signal generator and amplifier drive a dedicated vibration test rig. Accelerometers record the response, including movement at the top plate. Repeatable input signals allow structural designs to be compared within the test setup.

Shaker unit beneath a Silencer platform during development testing
Silencer II / Physical development test setup

Silencer II / Recorded response

A closer look
at the signals.

These recorded signals come from the Silencer II development test. The red trace shows the test-rig reference signal; the green trace shows the response recorded at the top plate.

I·ctra reports 96–98% isolation effectivity at the four measured frequencies below. The comparison covers 10 Hz < f < 100 Hz.

Red / Reference signal

Green / Top-plate response

Test frequency · reported isolation effectivity

  1. 90.82 Hz · 98%
  2. 64.22 Hz · 98%
  3. 33.11 Hz · 96%
  4. 16.05 Hz · 96%

The vertical scales differ between recordings. The percentages describe this documented test setup at the stated frequencies. Source: I·ctra engineering presentation, April 2026, slides 24–25; product presentation, September 2026, slides 3–4.

Four original red and green signal recordings from the Silencer II test, at 90.82, 64.22, 33.11 and 16.05 Hz from top to bottom. Each panel retains its own vertical scale.
Silencer II / Recorded test signalsView the original recording

04 / Measurement & simulation

Connecting the physical
and the digital.

Measured results inform the computer simulations used during development. This gives I·ctra a way to examine the relationship between the physical assembly and its calculated response, and to investigate the effect of design choices.

Apply

A repeatable input.

A controlled signal excites the test assembly.

Observe

A measured response.

Sensors record movement within the test setup.

Investigate

A closer comparison.

The measurements inform the computer model and further development.

Sources: I·ctra technical product information, engineering presentation (April 2026) and SILENCER product presentation (September 2026). Images and measurements show the documented development examples.