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HIMA X-CI 24 01 Safety Function

Safety Function

The counter module samples the switching operations of the connected sensors with

safety-related accuracy (1 % if the frequency is measured, ± 1 pulse if the pulse is

measured) .

The safety function is performed in accordance with SIL 3.

Reaction in the Event of a Fault

If a fault occurs, the counter module enters the safe state. The rotation speed is set to 0.

The user program retains its last valid process value for the counter readings.

The module activates the Error LED on the front plate.

Scope of Delivery

The counter module must be installed on a suitable connector board to be able to operate.

If a FTA is used, a system cable is required to connect the connector board to the FTA.

Connector boards, sensor selection plug, system cables and FTAs are not included within

the module’s scope of delivery.

The various connector boards are described in Chapter 3.6. the system cables in Chapter

3.7. The FTAs are described in separated manuals.

HIMA HIMax® X-DI 32 02 Safety Function

Safety Function

The module evaluates the input signals of proximity switches and contact makers and

monitors the proximity switch / contact maker circuit for open-circuits and short-circuits.

The safety function is performed in accordance with SIL 3.

Reaction in the Event of a Fault

If a fault occurs, the module adopts the safe state and the assigned input variables transmit

the initial value to the user program.

The initial values must be set to 0 to ensure that the input variables transmit the value 0 to

the user program if a fault occurs. If the raw value is evaluated instead of the process

value, the user must program the monitoring function and the value in the event of faults

from within the user program.

The module activates the Error LED on the front plate.

Scope of Delivery

The module must be installed on a suitable connector board to be able to operate. If a FTA

is used, a system cable is required to connect the connector board to the FTA. Connector

boards, system cables and FTAs are not included within the scope of delivery.

The connector boards are described in Chapter 3.6. the system cables are described in

Chapter 3.7. The FTAs are described in own manuals.

HIMA HIMax® X-DI 32 02 Digital Input Module

Product Description

The X-DI 32 02 digital input module is intended for use in the programmable electronic

system (PES) HIMax.

The module can be inserted in any of the base plate slots with the exception of the slots

reserved for system bus modules. For more information, refer to the System Manual

(HI 801 001 E).

The module is used to evaluate up to 32 safety proximity switches (e.g., P+F), proximity

switches in accordance with EN 60947-5-6 (NAMUR) or wired contacts.

The module has been certified by the TÜV for safety-related applications up to SIL 3

(IEC 61508. IEC 61511 and IEC 62061), Cat. 4 (EN 954-1) and PL e (EN ISO 13849-1).

Refer to the HIMax Safety Manual (HI 801 003 E) for more information on the standards

used to test and certify the module and the HIMax system.

HIMA X-COM 01 E Response in the Event of a Fault

Response in the Event of a Fault

If faults occur, the module enters the temporary STOP_ERROR state. The module is then

rebooted and restarted from the INIT state.

No process data is exchanged with external communication partners in the STOP_ERROR

state. No process data is transferred to the process module.

Scope of Delivery

To operate, the module must be installed on a matching connector board. The connector board

is described in Chapter 3.7.

The connector board is not included within the scope of delivery of the module.

The module can be equipped with fieldbus submodules ex-factory. The specifications are made

with the order using the module’s part number; refer to the communication manual for more

details (HI 801 101 E).

Processor System

The processor system uses self-tests to control and monitor communication. Data is exchanged

between communication and processor modules via the redundant system bus. The system bus

has a redundant structure for reasons of availability. Redundancy is only ensured if both system

bus modules are inserted in the base plates and configured accordingly.

The operating system and the error code history are stored in a non-volatile memory and can be

read in SILworX via the diagnostics

HIMA HIMax® X-COM 01 E Replacement and Compatibility

Replacement and Compatibility

An X‑COM 01 E module has more memory capacity than an X-COM 01 module. This is a

prerequisite for new protocols such as the PROFINET IO Controller V2.4+.

An X‑COM 01 E module can replace an X-COM 01 module installed in an existing system. To

ensure compatibility, observe the following points:

▪ The new X-COM 01 E module must be equipped with the same fieldbus submodules used

for the X-COM 01 module to replace.

▪ The X-COM 01 E operating system supports all protocols that were operated in the X-COM

01 module. Exception: PROFINET IO Controller V2.2. see Chapter 3.1.1.

▪ The existing X-CB 001 02 connector board can continue to be used with an X‑COM 01 E

module for all protocols. Exception: PROFINET IO Controller V2.4+.

▪ When using the PROFINET IO Controller V2.4+ protocol, the X-CB 001 04 connector board

is to be used instead of the X-CB 001 02 connector board.

Downgrade

If the PROFINET IO V2.2 protocol is to be used in an X‑COM 01 E module, then downgrade the

X‑COM 01 E module to an X-COM 01 operating system ≤ V14.12.

Refer to the maintenance manual for details on how to load operating systems.

HIMA HIMax® X-COM 01 E Communication Module

Product Description

The X‑COM 01 E communication module is intended for use in the programmable electronic

system (PES) HIMax.

The module can be inserted into any of the base plate slots with the exception of the slots

reserved for system bus modules. Refer to the system manual (HI 801 001 E) for details.

The module is approved for use in the safety-related HIMax system and can be employed to

transport safety-related protocols.

The module ensures communication with systems via Ethernet and fieldbus interfaces with

SafeEthernet and diverse standard protocols.

Safety Function

No safety function is performed by the communication module.

Response in the Event of a Fault

If faults occur, the module enters the temporary STOP_ERROR state. The module is then

rebooted and restarted from the INIT state.

No process data is exchanged with external communication partners in the STOP_ERROR

state. No process data is transferred to the process module.

HIMA HIMax Hardware Features

Hardware Features

• The 32-channel HART module can have a HIMax baseplate inserted

in any of the slots, with the exception of the slot reserved for the system

bus module.

• The module can be combined with analog input or output modules in

a mono or redundant design by using connector boards.

• HART communication for up to 3200 I/Os per HIMax system (calculated

based on HIMax performance:

100 I/O modules + 100 X-HART modules x 32 field instruments)

HIMax HART Package

• Import data for predefined HART variables + CUT LDB

• Predefined library of modules for all standard HART commands – 15

implemented commands

• Simple base for building your own command modules on the application

level, including possibility for command sequences

HIMax HART Data Tunneling

• HART data is transmitted from the X-HART modules via the internal system

bus to the assigned X-COM module.

• From the X-COM module, HART data is transferred via HART over IP Protocol

version 7 (IPv7) to the asset management system or the HART OPC server.

HIMax HART solution Supported Asset Management Systems

Benefits

• Less engineering required

• Faster commissioning

• Less maintenance required

• Additional trend information

• And more…

Supported Asset

Management Systems

• PACTWARE

• FIELDCARE

• Honeywell FDM

• Yokogawa FieldMate

• Others available on request

HIMax HART solution from HIMA

Transform Standard Diagnostic Data into Valuable Information

The HIMax HART solution from HIMA enables plant operators

to use diagnostic data captured by field devices for the asset

management system. Unauthorized changes to the devices are

recognized and prevented by write protection.

This particularly reduces the potential danger of cyber attacks.

The solution comprises the HIMax X-HART 32 01 module and

the HIMax HART package. The software bundle enables usage

of HART data in the application program, supplies a predefined

library of functions, and can be extended with your own libraries.

Specific commands from any device manufacturer can be

quickly implemented. This makes particularly complicated

tasks, such as evaluations and reports, significantly easier.

Even complex command sequences can be mapped.

Standards/Certificates/SIL Design

• TÜV certified up to SIL 3 (IEC 61508. IEC 61511. IEC 62061)

• Write protection can be deactivated for parameter adjustment

by module

• Deactivation of HART communication per channel

Beckhoff ED2504 | EtherCAT Terminal, 4-channel PWM output

The ED2504 EtherCAT Terminal offers up to four digital outputs,

which are output as pulse-width modulated signals. The output

signal can be modulated in both pulse width and frequency in

the range of 1 Hz to 64 kHz. The output level is determined by

the external voltage to be fed in and can be freely selected in

the range from 5 V DC to 24 V DC.

The outputs are short circuit and overcurrent protected.

Each channel also has a digital input with configurable filter times.

The switching characteristic can be selected as either positive

or ground switching (PNP/NPN) for each channel.

The input can be used as a digital input or to enable the PWM

output. If the PWM signal is used to control the fan, for example,

the additional input can be used for the measurement of rotary

speed.

The ED series EtherCAT Terminals have push-in connection

technology which makes wiring easy and tool-free.

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