1TS-200M - Active Vibration Isolation System

1TS-200M - Active Vibration Isolation System

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Isolation Dynamic 1Hz to 1kHz, purely passive beyond 1kHz
Transmissibility See curve. Above 10 Hz transmissibility <0.01 (-40dB)
Correction forces Maximum
System noise less than 20 nG/√Hz from 0.1-200 Hz in any direction
Minimum load ~100 kg (25 kg per single module)
Maximum Load 800 kg (200 kg per single module)
Static compliance approx. 120 m/N vertical; approx. 30-400 m/N horizontal
Electrical
Safety class 1
Power Consumption Typically 10 W, maximum 50 W (70 VA)
Input Voltage 115 - 230 V AC
Fuses 2 x 1.6A/250V slow, located in the power socket on the rear side of the unit
Normal Environmental
Protection Class IP 20
Temperature Range 5 - 40
Relative Humidity 10 - 90 % (5 - 30
Application Indoor
Altitude Up to 2000 m (6.500 ft)
Price list
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Attention! You can customise this product to your needs.
This moderately priced dynamic vibration isolation system achieves in a very small volume better isolation than is possible with the biggest and most expensive passive systems. Inertial feedback is used via electromagnetic transducers to provide not only isolation from building vibrations, but also isolation from vibration sources placed on the system itself. This means, for example, that a delicate microscope isolated by the system will remain at rest despite forces being applied via the operator's hands. The inherent stiffness of the system, typically 25 times greater than that of a 1 Hz resonance passive isolator, imparts excellent directional and positional stability. The characteristics of an active isolation system are typified by the virtual lack of any low frequency resonance, a resonance which plagues all passive isolation systems. The 1TS-200-M is a complete active isolation system measuring 210x210x125 mm per single unit. The system isolates against all six possible translational and rotational vibration modes and has been designed to offer excellent isolation even at frequencies as low as 2-3Hz, where many buildings show large horizontal amplitudes due to oscillation about the vertical axis.

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