Product Overview
3006 (3006) is a Triconex Main Processor Module II Enhanced designed for Triple Modular Redundant safety controllers. The 3006 processor executes control logic in parallel with two additional processors to form a fault tolerant TMR architecture. It manages I/O communication, performs voting operations, and supervises diagnostics across the Tricon backplane.
This processor module is widely deployed in emergency shutdown systems, burner management, and turbine protection platforms in oil and gas, power generation, and petrochemical plants. The module maintains deterministic scan execution while handling triplicated input tables and output voting. When one processor channel fails, the remaining channels maintain operation without process interruption, minimizing unplanned downtime and improving safety system availability.
Hardware Architecture and Processing Core
The Triconex 3006 Main Processor Module belongs to the Processor Module II Enhanced family. The module operates as one of three identical processors installed in the main chassis.
Key architecture characteristics:
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Triple processor channel operation A B C
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Parallel execution of user control logic
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Dedicated I/O processor for bus communication
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Triplicated TriBus synchronization and voting
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Fault tolerant communication with I/O modules
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Shared memory table for input and output voting
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Hot replacement supported in TMR configuration
Each 3006 processor exchanges input tables across the TriBus. The system compares data and selects the majority value. If disagreement occurs, the faulty channel is automatically corrected. This mechanism ensures deterministic and safe execution of safety logic.
The module communicates with I/O modules through the triplicated I/O bus. The processor assembles input tables, executes control algorithms, and transmits validated output tables to output modules.
Technical Specifications
| Parameter |
Specification |
| Model |
3006 |
| Brand |
Triconex |
| Product Type |
Main Processor Module II Enhanced |
| Architecture |
Triple Modular Redundant |
| Processor Channels |
3 independent channels |
| Memory |
SRAM with battery backup |
| Communication |
TriBus and triplicated I/O bus |
| System Compatibility |
Tricon v9 systems |
| Installation |
Main chassis processor slot |
| Hot Swap |
Supported in TMR system |
| Operating Temp |
0 to 60 deg C |
| Storage Temp |
-40 to 85 deg C |
| Humidity |
5 to 95 percent non condensing |
| Power Consumption |
Approx 20 W |
| Dimensions |
Approx 330 x 40 x 260 mm |
| Weight |
4 kg |
| Origin |
USA |
Technical FAQs
Is the 3006 processor compatible with 8120E main chassis?
Yes. The 3006 operates with Tricon main chassis including 8110 and compatible expansion architectures.
How many 3006 processors are required in one system?
Three 3006 modules form the TMR controller. Each processor handles one independent channel.
Can the 3006 be replaced online?
Yes. The Tricon architecture supports online replacement. The remaining processors maintain control.
What is the replacement for 3006 processor?
Typical upgrade paths include 3007, 3008, or 3009 depending on firmware and system revision.
Field Installation Recommendations
Install three identical 3006 modules from the same firmware revision. Mixed revisions may cause synchronization faults.
Ensure chassis cooling airflow remains unobstructed. Processor modules generate continuous heat under full scan load.
Verify backplane connectors before insertion. Misalignment may cause TriBus communication failure.
Reliability and Operational Advantages
The 3006 processor provides deterministic scan execution for SIL rated safety loops. The triplicated architecture eliminates single point processor failures.
The module supports online diagnostics and automatic fault isolation. This reduces maintenance time in critical plants.
Robust industrial design allows operation in high vibration cabinets. Conformal coated boards improve resistance to corrosive atmospheres.
Backward compatibility with earlier Tricon systems simplifies controller upgrades while preserving field wiring.