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Technical data 521
•
Speed measurement subsystem
is a mix of two different safety data as the
speed estimation is calculated independently by the FSO and the drive. In the
safety data tables, these two safety data are already combined in the safety data
of this subsystem. This subsystem can be used together with the following safety
functions: STO (with or without SBC), SS1, SSE, SLS, varSLS, SMS, and SSM.
Note:
POUS does not use any speed measurement subsystem.
•
PROFIsafe
is a subsystem for the reliability of PROFIsafe connection. This
subsystem is used in case the PROFIsafe connection is in use in the application
through FENA-21 or FPNO-21 module. FSO module takes care of the reliability
and safety of this connection.
•
Logic subsystem
is included in each safety function implemented with the FSO.
Logic subsystem is divided into Logic 1 and Logic 2. If the safety function contains
any single channel digital input or output without diagnostic pulses, the subsystem
"Logic 1" must be used. Otherwise the subsystem "Logic 2" is used.
•
STO output from the FSO
to the Drive STO. STO is a critical subsystem for all
safety functions other than SSM. Therefore it shall be included in safety
calculations of those functions.
•
Drive STO
is the actuator for the STO of the drive. For the safety data, see the
drive hardware manual.
Note:
All safety functions (except SSM) have the capability to activate STO. This
means that STO subsystems (STO output and Drive STO) are always part of the
safety function's calculations even though it might not be activated in normal use.
•
Speed measurement with FSE-31
is a subsystem for safety encoder interface,
FSE-31. This subsystem can be used with following safety functions: STO (with or
without SBC), SS1, SSE, SLS, varSLS, SMS, SSM, and SDI. SDI and STO with
speed limit activated SBC always use speed measurement with encoder.
•
Sensors, input devices, encoders, PLCs, and possible additional actuators.
See section
FSO safety calculations guide (without PROFIsafe)
on page
. For
the safety data, see the manufacturer's documentation.
Safety data for some typical configurations of these subsystems is precalculated and
shown in section
Safety data for some typical configurations
After calculating the total PFDavg/PFH for the safety function, it must be verified that
the PFDavg/PFH of the safety function fulfills the requirement for the targeted SIL/PL.
For additional information on safety calculations, see standards EN ISO 13849-1,
EN/IEC 62061, IEC 61508, IEC 61511, or
ABB Drives Technical guide No. 10,
Functional safety
(3AUA0000048753 [English]).
Содержание FSO-21
Страница 1: ... OPTIONS FOR ABB DRIVES FSO 21 safety functions module User s manual ...
Страница 4: ......
Страница 16: ...16 Safety instructions ...
Страница 34: ...34 Safety information and considerations ...
Страница 52: ...52 Overview ...
Страница 236: ...236 PROFIsafe ...
Страница 265: ...PROFIsafe 265 2 Select your CPU from the list 3 Install the FENA 21 GSDML file ...
Страница 275: ...PROFIsafe 275 20 In ABB_Drive FB add blocks DPRD_DAT and DPWR_DAT 21 Insert values to blocks ...
Страница 282: ...282 PROFIsafe 5 To read the diagnostic messages select the I O Device Diagnostics tab ...
Страница 286: ...286 PROFIsafe ...
Страница 304: ...304 Installation ...
Страница 400: ...400 Configuration ...
Страница 488: ...488 Verification and validation ...
Страница 506: ...506 Fault tracing ...
Страница 514: ...514 Maintenance ...
Страница 536: ...536 Technical data ...
Страница 538: ...538 Dimension drawings 3AXD50000018513 ...