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Pre-certified hardware components

Pre-certified hardware components

SIC100

Cost-effective 1oo2 safety architecture based on two Cortex M4 controllers
with local safe inputs and outputs, as well as optional fieldbus connection.

The SIC100 is a low-cost safety hardware platform with 1oo2 architecture to achieve a SIl3 according to IEC61508 and performance level e and category 4 according to ISO13849. The two channels are implemented by a Cortex M4 microcontroller. A total of 16 safe digital inputs, 8 safe digital outputs and two SSI encoders can be connected. The safe digital inputs are type 3 inputs as defined in IEC61131-2. The safe digital outputs are short-circuit protected and fulfill the requirements of IEC61131-2. The power supply of the platform can be either 24VDC or 5VDC. A fieldbus connection is possible via an additional netX52 fieldbus controller.


SIC10E

Safety Module with a 1oo2 safety architecture based on one Cortex A7 and one Cortex M4 controller and a local fieldbus connection, as well as the possibility to expand local safe inputs and outputs.

The SIC10E is a safety hardware platform with 1oo2 architecture to achieve a SIL3 according to IEC61508 and performance level e and category 4 according to ISO13489. By implementing the first channel with a Cortex A7, the platform has a local EtherCAT Slave and Profinet Slave interface. The SIC10E is a plug-in module, so that it can be integrated into customer-specific hardware. A total of 16 safe digital inputs and 8 safe digital outputs can be connected. The safe IOs are GPIOs of the two microcontrollers, so that custom-specific physical input and output can be used. In addition, the platform has one SSI encoder input per microcontroller channel.

For development purposes, an IO board with 8 safe digital inputs and 4 safe digital outputs is also available. The safe digital inputs are type 3 inputs as defined in IEC61131-2. The safe digital outputs are short-circuit protected and fulfill the requirements of IEC61131-2. For customer specific applications the usRTS is integrated on the SIC10E.


SIC90e

High-performance 1oo2 safety architecture based on two Cortex A9 controllers
and a local fieldbus connection.

The SIC90e is a powerful hardware platform based on Cortex A9 microcontrollers in 1oo2 architecture. The platform fulfills the requirement of a SIL3 according to IEC61508 and performance level e and category 4 according to ISO13489.  Powerful Cortex A9 microcontrollers are used as microcontrollers for both channels. The module has a local EtherCAT slave and PROFINET slave fieldbus connection. Additionally, an Ethernet interface is available as engineering interface. The power supply is provided via 24VDC. TheSIC90e is the ideal hardware platform for PLC applications. With the usRTS a powerful safe and non-safe PLC is integrated on this platform.

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Pre-certified software components

Pre-certified software components

  • FSoE-Host / Device Stack

    The FSoE Host/Devise stack is pre-certified as ´compliant item' according to IEC61508. The compact and efficient implementation also allows integration into very small and cost-effective structures.

  • Safety Bus configurator

    The Safety Bus Configurator is pre-certified in accordance with IEC61508 for the configuration of safe fieldbuses such as FSoE.

  • Safety Parameter Tool

    The Safety Parameter Tool is a pre-certified T3 offline parameterization tool according to IEC62061. The customer-specific adaptation and definition of the safe parameter container is carried out via an XML structure.

  • Test library CORA

    The CORA Test Library is pre-certified according IEC6158 for performing CPU tests, RAM tests, ROM tests, firmware monitoring and stack monitoring (overflow/underflow) for ARM7, ARM9, Cortex M and Cortex A controller types. The configuration of the tests is done by a test manager, so that the test library is adaptable to HW needs.

  • Library Motion and Robotics

    Library Motion and Robotics is a pre-certified library for implementing safety motion functions according to IEC61800-5.2, as well as for monitoring 2- and 3-dimensional motion spaces in the area of robotics.

  • Safety Floating Point Library

    The Safety Floating Point Library is pre-certified according to IEC61508 for safe calculation of floating point values. The library can be used on processes with and without FPU.

  • SIC 100/400

    The SIC100/SIC400 is a modular hardware and software toolkit for building safety with 1oo2 safety architecture. The toolkit is a pre-certified ‘compliant item’ as specified in IEC61508. The SIC consists of the basic core, which can be extended by using safe digital inputs, safe digital outputs, encoder interfaces and a fieldbus connection. All diagnostics relevant for the interfaces are included in the software modules. Specific functions can be added in the application layer.

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Custom Safety Modules/PLCs

Custom safety modules/PLCs

Development & Production

TUV-certified hardware & software components 

Your custom safety PLC

ISH provides a range of standard pre-certified hardware and software components to develop your (custom) safety PLC. 
We also offer production for prototypes as well as small series final products. 

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Our USPs

Your benefits

  • More than 30 years of experience in functional safety

  • 100% custom approach

  • Pre-certified hard- & software components/toolkit

  • Prototype/small series production

  • Faster time to market

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Safety Consultancy & Development

Safety consultancy

Custom Hardware and Software Development

Competence in safety

From the idea to your SIL-certified product

For more than 30 years ISH has been engineering safety solutions for customers across a wide range of industries: machine & process automation, wind power, rail equipment, and robotics.

We support you from the idea to your SIL-certified product: PLCs, controllers, I/O boards, sensors, actors, field-bus communication – hardware & software. 

Our long-standing experience and our TUV-certified components allow us, to help you significantly reduce the risk of your custom development and time-to-market.

Our USPs

Your benefits

  • More than 30 years of experience in functional safety

  • 100% custom approach

  • Pre-certified hard- & software components/toolkit

  • Prototype/small series production

  • Faster time to market

From the idea to the SIL-certified product

Our five project steps

  • 1. Your idea

    Every custom development starts with your vision of an ideal safety solution

  • 2. Our concept

    Based on
    > 30 years of experience, we set up your functional safety project

  • 3. SRS

    We make
    sure that all specifications
    for safety requirements are reliably fulfilled

  • 4. Development

    Our services range from the definition of hardware and software details to system testing

  • 5. Approval

    Verification and validation with prototyping, test engineering and proof of conformity

TUV-certified hardware & software components

Your custom safety PLC

ISH provides a range of standard pre-certified hardware and software components to develop your (custom) safety PLC. 
We also offer production for prototypes as well as small series final products. 

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Safety Engineering & Runtimes

Safety engineering & runtimes

Safe & non-safe - one toolchain

Open, flexible & safe

Application- & safety-engineering

Based on our broad range of safe and non-safe runtime solutions
we offer a comprehensive toolset for the engineering of functional safe applications up to SIL 3 or ASIL C-level.

With our tools there is no longer need for two different toolchains for safe and non-safe anymore. Our toolchain supports both worlds – with the full flexibility of our state-of the art engineering toolkit
… with test management already on-bord.

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Our USPs

Your benefits

  • One highly flexible engineering tool for safe & non-safe

  • On-target browser-based parameterization tool

  • On-board testmanager

  • One runtime for safe & non-safe

One highly flexible engineering tool for safe and non-safe

logi.CAD 3 as our main engineering tool allows you to program your safe library as well as your safe application – provided as binary C code. The coding can take advantage of our full range of IEC languages, as well as C and C++ code, and it can even integrate MATLAB Simulink models.

You can already use our tool as part of a TÜV qualified development process. A full T3 certification will be available in Q2/2024. 

On-target browser-based parameterization tool 

logi.SAFE is an on-target browser-based IDE, that allows for the functional safe parametrization of your safe libraries without the need of a desktop IDE. The engineer can connect any kind of device via an on-target web-server and apply changes to an application directly on the control. 

On-board Test-Manager

Our toolchain includes a static code analysis as well as a comprehensive test manager, allowing you to automatize your unit tests.

One runtime for safe and non-safe

in two basic set-ups 

  1. Our µ(s).RTS works with C-code binaries and can be used to run safe and non-safe applications. 
  2. Our s.RTS comes together with logi.SAFE as an interpreter solution 

Our two solution paths

Your safety engineering solution

Safe runtime & safety toolchain engineering workflow

logi.SAFE engineering workflow

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