BECKHOFF TwinSAFE User Manual

Page 18

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Circuit examples

16

Application Guide TwinSAFE

and K2 are identical.

There is a coupling coefficient between the components that are connected via two channels. Examples
are temperature, EMC, voltage peaks or signals between these components. This is assumed to be the
worst-case estimation, where ß =10%. EN 62061 contains a table with which this ß-factor can be
precisely determined. Further, it is assumed that all usual measures have been taken to prevent both
channels failing unsafely at the same time due to an error (e.g. overcurrent through relay contacts, over
temperature in the control cabinet).

This produces for the calculation of the PFH value for block 1:

PFHtot= PFH(S1) + PFH(EL1904) + PFH(EL6900) + PFH(EL2904) +

β

* (PFH(K1)+

PFH(K2))/2

to:

PFH

PFH

PFH

PFH

tot

tot

tot

tot

=

==

=

2.50E-10 + 1.11E-09 + 1.03E-09 + 1.25E-09 + 10%* (7.96E-11+7.96E-11)/2 =

3.65E

3.65E

3.65E

3.65E----09

09

09

09

in the case of actuation 1x per week and indirect feedback

or

PFH

PFH

PFH

PFH

tot

tot

tot

tot

=

==

=

2.50E-10+1.11E-09 + 1.03E-09 + 1.25E-09 + 10%* (1.92E-11+1.92E-11)/2 =

3.65E

3.65E

3.65E

3.65E----09

09

09

09

in the case of actuation 1x per shift and direct feedback

The MTTF

d

value for block 1 (based on the same assumption) is calculated with:

1

ܯܶܶܨ

ௗ ௧௢௧

= ෍

1

ܯܶܶܨ

ௗ ௡

௜ୀଵ

as:

1

ܯܶܶܨ

ௗ ௧௢௧

=

1

ܯܶܶܨ

(ܵ1) +

1

ܯܶܶܨ

(ܧܮ1904) +

1

ܯܶܶܨ

(ܧܮ6900) +

1

ܯܶܶܨ

(2904)

+

1

(ܯܶܶܨ

(ܭ1))

with:

ܯܶܶܨ

(S1) =

ܤ10

(ܵ1)

0.1 כ ݊

௢௣

ܯܶܶܨ

(K1) =

ܤ10

(ܭ1)

0.1 כ ݊

௢௣

If only PFH values are available for EL1904 and EL6900, the following estimation applies:

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