PUR 80A PUR 90A Rubber 80A TUBUS Operating Instructions Profile Dampers Is su e 1 .2 0 0 4 Prior to mounting, check whether the damper can be used for your specific application. The following conditions must be fulfilled: Correct dimensioning of the damper The energy absorption per stroke under the permanent load W3 must not be exceeded. Exceptions with indivi- dual impacts: In this case the W3-ratings can be exceeded by up to 40%. Please, remember that the moved load does not dece- lerate to an exact datum position and that the impact energy is not 100% absorbed. For this reason, a limited…
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PUR 80A PUR 90A Rubber 80A TUBUS Operating Instructions Profile Dampers Is su e 1 .2 0 0 4 Prior to mounting, check whether the damper can be used for your specific application. The following conditions must be fulfilled: Correct dimensioning of the damper The energy absorption per stroke under the permanent load W3 must not be exceeded. Exceptions with indivi- dual impacts: In this case the W3-ratings can be exceeded by up to 40%. Please, remember that the moved load does not dece- lerate to an exact datum position and that the impact energy is not 100% absorbed. For this reason, a limited…
File type: application/pdf
Referenced at:
PUR 80A PUR 90A Rubber 80A TUBUS Operating Instructions Profile Dampers Is su e 1 .2 0 0 4 Prior to mounting, check whether the damper can be used for your specific application. The following conditions must be fulfilled: Correct dimensioning of the damper The energy absorption per stroke under the permanent load W3 must not be exceeded. Exceptions with indivi- dual impacts: In this case the W3-ratings can be exceeded by up to 40%. Please, remember that the moved load does not dece- lerate to an exact datum position and that the impact energy is not 100% absorbed. For this reason, a limited…
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Referenced at:
Is su e 4. 20 09 S pe ci fic at io ns s ub je ct to c ha ng e 76 76 The profi le damper type TA from the innovative ACE TUBUS series is a main- tenance-free, self-contained damping element made from a special Co-Poly- ester Elastomer. As a result of the degressive damping characteristic it provides a high energy absorption at the beginning of its stroke. The excellent temperature characteristic of the material provides consistent damping performance over a tempera- ture of -40 °C to 90 °C. The low installed weight, the economic price and the long operating life of up to 1 million cycles make…
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Referenced at:
Is su e 4. 20 09 S pe ci fic at io ns s ub je ct to c ha ng e 76 76 The profi le damper type TA from the innovative ACE TUBUS series is a main- tenance-free, self-contained damping element made from a special Co-Poly- ester Elastomer. As a result of the degressive damping characteristic it provides a high energy absorption at the beginning of its stroke. The excellent temperature characteristic of the material provides consistent damping performance over a tempera- ture of -40 °C to 90 °C. The low installed weight, the economic price and the long operating life of up to 1 million cycles make…
File type: application/pdf
Referenced at:
Is su e 4. 20 09 S pe ci fic at io ns s ub je ct to c ha ng e 76 76 The profi le damper type TA from the innovative ACE TUBUS series is a main- tenance-free, self-contained damping element made from a special Co-Poly- ester Elastomer. As a result of the degressive damping characteristic it provides a high energy absorption at the beginning of its stroke. The excellent temperature characteristic of the material provides consistent damping performance over a tempera- ture of -40 °C to 90 °C. The low installed weight, the economic price and the long operating life of up to 1 million cycles make…
File type: application/pdf
Referenced at:
Is su e 4. 20 09 S pe ci fic at io ns s ub je ct to c ha ng e 76 76 The profi le damper type TA from the innovative ACE TUBUS series is a main- tenance-free, self-contained damping element made from a special Co-Poly- ester Elastomer. As a result of the degressive damping characteristic it provides a high energy absorption at the beginning of its stroke. The excellent temperature characteristic of the material provides consistent damping performance over a tempera- ture of -40 °C to 90 °C. The low installed weight, the economic price and the long operating life of up to 1 million cycles make…
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Referenced at:
Special-Sensors for Automation ISO 9001 certified Opto Hi gh Capa city Sys tems For band-edge control For band-crack detection Through beam sensors For turbidimetry For positioning System description The Opto Edge controller consists of an amplifier (1) to which two fibre-optic cables (2) of up to 10 m in length can be connected via a rapid action coupling. The first fibre- optic cable routes a send signal generated by the amplifier to a first optical converter (3), while the second fibre-optic cable returns a send signal detected by a second optical converter (4) to the amplifier as a…
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Special-Sensors for Automation ISO 9001 certified Opto Hi gh Capa city Sys tems ■ For band-edge control ■ For band-crack detection ■ Through beam sensors ■ For turbidimetry ■ For positioning System description The Opto Edge controller consists of an amplifier (1) to which two fibre-optic cables (2) of up to 10 m in length can be connected via a rapid action coupling. The first fibre- optic cable routes a send signal generated by the amplifier to a first optical converter (3), while the second fibre-optic cable returns a send signal detected by a second optical converter (4) to the amplifier as…
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Referenced at:
Special-Sensors for Automation ISO 9001 certified Opto Hi gh Capa city Sys tems ■ For band-edge control ■ For band-crack detection ■ Through beam sensors ■ For turbidimetry ■ For positioning System description The Opto Edge controller consists of an amplifier (1) to which two fibre-optic cables (2) of up to 10 m in length can be connected via a rapid action coupling. The first fibre- optic cable routes a send signal generated by the amplifier to a first optical converter (3), while the second fibre-optic cable returns a send signal detected by a second optical converter (4) to the amplifier as…
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Referenced at: