ICS Triplex T8110B | Trusted TMR Processor

Brand:​ ICS Triplex
Model:​ T8110B
Product Type:​ Trusted TMR Processor
Series:​ Trusted TMR System
Core Function:​ Triple modular redundant processor for safety-critical control systems
Key Specs:​ 100 MHz processor clock, 80W power consumption, 0°C to 60°C operating temperature
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Description

T8110B: Technical Specifications

Model Number:​ T8110B
Manufacturer:​ ICS Triplex
Product Type:​ Trusted TMR Processor
Voltage Range:​ 20 to 32V DC
Processor Clock:​ 100 MHz
Heat Dissipation:​ 80 W
Maximum Load:​ 80 W
I/O Interface:​ Triple redundant Inter-Module Bus
SOE Buffer Size:​ 1000 events, transferred to CI buffer of 4000 events
Operating Temperature:​ 0°C to 60°C (32°F to 140°F)
Non-operating Temperature:​ -25°C to 70°C (-13°F to 158°F)
Dimensions:​ 30.3 cm × 9.3 cm × 26.6 cm
Weight:​ 2.94 kg
Communication Interfaces:​ RS232, RS422/485, Ethernet
Memory:​ 512MB RAM
Safety Certification:​ SIL 3 per IEC 61508
Redundancy:​ Triple Modular Redundant (TMR) architecture
Power Supply:​ 24V DC (redundant configuration supported)

ICS TRIPLEX T8110B

ICS TRIPLEX T8110B

Core Features & Customer Value

Triple Modular Redundancy Architecture:​ The T8110B’s TMR design provides three independent processing channels that operate in parallel with continuous voting logic. For system designers, this architecture eliminates single points of failure and ensures continuous operation even if one or two channels experience faults. The voting system automatically detects and isolates faulty channels while continuing to operate with the remaining healthy circuits, maintaining safety system availability without requiring immediate shutdown. This fault tolerance is critical for safety instrumented systems where system unavailability could result in hazardous conditions or production losses. The TMR architecture provides the foundation for meeting SIL 3 requirements, which is essential for applications involving high-risk processes.
High-Performance Processing Capability:​ The processor’s 100 MHz clock speed with 512MB RAM delivers the processing power needed for complex safety logic execution and data logging. For process engineers, this performance ensures that safety functions can be executed with the required response times, even under peak load conditions. The controller can handle multiple safety functions simultaneously, including emergency shutdown sequences, fire and gas detection logic, and process interlock functions. The ample memory capacity supports comprehensive data logging for post-incident analysis and regulatory compliance requirements. The fast processing speed ensures that safety-critical functions are executed within the required time constraints, preventing process upsets or safety incidents.
Comprehensive Communication and Integration:​ The T8110B supports multiple communication protocols including Ethernet, RS-232, and RS-422/485, enabling seamless integration with plant control systems. For system integrators, this communication flexibility allows the safety controller to exchange data with distributed control systems (DCS), human-machine interfaces (HMI), and other plant systems. The Ethernet interface supports real-time data exchange for operator monitoring and control, while the serial interfaces provide connectivity to legacy systems and field devices. The controller’s ability to communicate with multiple systems simultaneously ensures that safety status information is available throughout the plant, enabling coordinated response to process deviations and emergency conditions.
Robust Industrial Design and Diagnostics:​ The processor’s rugged construction and wide operating temperature range (0°C to 60°C) make it suitable for deployment in harsh industrial environments. For maintenance personnel, the comprehensive diagnostic capabilities provide early warning of potential issues before they affect system operation. The controller continuously monitors its own health and the status of connected I/O modules, providing detailed diagnostic information that simplifies troubleshooting and reduces mean time to repair. The hot-swap capability allows for module replacement without taking the safety system offline, which is particularly important in continuous process applications where maintenance windows are limited and production downtime is costly.

ICS TRIPLEX T8110B

ICS TRIPLEX T8110B

Typical Applications

The ICS Triplex T8110B is extensively deployed in safety instrumented systems (SIS) within the oil and gas industry. In offshore production platforms, the processor is used for emergency shutdown (ESD) systems that monitor process parameters and initiate shutdown sequences when critical limits are exceeded. The TMR architecture ensures that the ESD system remains operational even if individual components fail, maintaining the ability to protect personnel and assets in the event of process upsets. The processor interfaces with pressure transmitters, temperature sensors, and flow meters to monitor process conditions, and controls emergency shutdown valves and isolation systems when required. The SIL 3 certification provides the necessary assurance that the system meets the highest safety integrity requirements for these critical applications.
In petrochemical facilities, the T8110B is used for fire and gas detection systems that monitor for hydrocarbon leaks and fire conditions. The processor processes signals from gas detectors, flame detectors, and smoke detectors, and initiates alarm and mitigation actions when hazardous conditions are detected. The triple redundancy ensures that the system remains functional even if sensors or processing channels experience faults, maintaining continuous protection for personnel and equipment. The processor’s fast response time and reliable operation are essential for these applications where early detection and rapid response can prevent catastrophic incidents.
For power generation applications, particularly in combined-cycle power plants, the T8110B is used for burner management systems (BMS) that ensure safe startup, operation, and shutdown of combustion equipment. The processor monitors flame conditions, fuel pressure, and air flow to ensure proper combustion and prevent dangerous conditions such as flame failure or fuel accumulation. The TMR architecture provides the fault tolerance required for these critical safety functions, where system availability directly impacts plant safety and reliability. The processor’s ability to handle multiple safety functions simultaneously makes it suitable for complex power generation applications with multiple burners and associated safety interlocks.
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