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Hima Safety Instrumented System Control Card

HIMA Safety Control Card Core Product Line


1. HIMatrix series controllers
(1) Technical parameters of CPU module
Processor architecture: Dual core lockstep processor (with self diagnostic function)

Safety level: SIL3 (IEC 61508), AK6 (T Ü V certified)

Scanning cycle: minimum 10ms (configurable)

Memory capacity:

Application code storage: 8MB Flash

Operating memory: 4MB SRAM (with ECC checksum)

Communication interface:

2 x Ethernet (10/100Mbps, supporting HISec security protocol)

2 x Serial Interface (RS-232/485)

Dedicated safety bus interface

(2) Comparison of Typical Models
Model H41q H51q H61q
Processor core dual core 800MHz dual core 1.2GHz quad core 1.5GHz
Maximum I/O capacity 2048 points, 8192 points, 16384 points
Safety certification SIL3 SIL3 SIL4
Typical Application: Small ESD System, Whole Plant SIS System, Railway Signal System
2. HIMa series controller card
(1) Main characteristics
Hardware architecture: Quadruple Redundant Architecture (QMR)

Fault detection rate:>99.99%

MTBF:>100 years (certified by T Ü V)

Special Features:

Online module replacement (hot swappable)

Automatic channel synchronization

Real time clock synchronization (± 1 μ s accuracy)

(2) Key module parameters
Power module: 24VDC input, dual redundant, with battery backup

Communication card: Supports PROFIBUS DP-V1, Modbus TCP, OPC UA

I/O interface card: Supports HART protocol and has short-circuit protection function

3、 Deep analysis of technical characteristics
1. Security architecture design
Diversified redundancy: using core chips from different manufacturers

Fault oriented safety: any single fault leading to a safe state

Online diagnosis:

CPU load monitoring (<70% design margin)

Memory CRC check (per scan cycle)

Watch dog time monitoring (hardware+software)

2. Communication security mechanism
HISec protocol: proprietary secure communication protocol

Data Encryption (AES-256)

Timestamp verification (preventing replay attacks)

Message authentication code (MAC verification)

Network topology: Dual star redundant architecture

3. Adaptability to special environments
Wide temperature version: -40 ° C~+85 ° C (compliant with IEC 60068-2)

Explosion proof certification: ATEX/IECEx Zone 2

Seismic design: compliant with IEC 61373 (5-150Hz, 5Grms)

4、 Typical application cases
1. SIS system of hydrocracking unit in refinery
Project requirements:

SIL3 level safety interlock

Response time<100ms

Integrate existing DCS system

HIMA Solution:

Hardware configuration:

H51q controller (redundant configuration)

32 channel analog input card (with HART)

64 channel digital output card

Security function:

Reactor over temperature protection

Compressor surge protection

Emergency pressure relief control

Implementation effect:

System PFDavg=1.2E-05 (better than SIL3 requirements)

Mean Time to Repair (MTTR)<2 hours

Certified by T Ü V SIL3

2. Emergency shutdown system for LNG receiving station
Special Challenge:

-162 ° C low temperature environment

Large scale combustible gas monitoring

Massive interlocking points (>5000 points)

Technical highlights:

Adopting H61q quadruple controller

Low temperature type I/O module (-60 ° C~+70 ° C)

Fiber redundant ring network (20km span)

Integrated Fire Gas Detection System

Operating data:

System availability>99.9999%

Successfully handled 8 real emergency incidents

SIL4 certification (EN 50129) passed

5、 Maintenance and diagnostic functions
1. Online diagnostic tool
HIMatrix Diagnostics:

Real time display of hardware status

Fault history record (saved for ≥ 10 years)

Predictive maintenance reminder

2. Key maintenance indicators
Module lifespan warning:

Electrolytic capacitor status monitoring

Relay mechanical life counting

Fan operation hours statistics

Suggested replacement cycle:

Power module: 8 years/50000 hours

Output relay card: 5 years/100000 actions

TRICONEX TRICON system card module

The TRICONEX TRICON system is the core of Triple Modular Redundancy (TMR) Safety Instrumented Systems (SIS), widely used in high-risk industries such as petrochemicals, natural gas, power, and pharmaceuticals to ensure the safety control of critical processes. Its modular design supports high reliability, online maintenance, and fault tolerance.


1. Main Processor Module
Model: 3008/3009/3101
Function:
-Implement security logic control, using  3 independent processors running in parallel , and ensuring security through a 2-out-of-3 (2oo3) voting mechanism.
-Support online modification of logic and hot swappable replacement (requiring redundant configuration).
key parameter
-Processor architecture: PowerPC/x86 (different models)
-Scanning cycle *: 10ms~2s (configurable)
-Memory: 16MB~512MB (depending on model)
-Communication interface:
-Support TriStation 1131 * * programming software
-Supports Modbus TCP/IP, OPC UA, Ethernet/IP
-Safety level: SIL 3 (IEC 61508)**
-Working temperature: -40 ° C~+70 ° C

2. Digital Input Module (DI)
Model: 3700A/3704E (32 channels)
Function:
-Collect on-site switch signals (such as emergency stop buttons, liquid level switches, pressure switches, etc.).
-Supports NAMUR sensor input (applicable to hazardous areas).
Key parameters:
-Input type: dry contact/24VDC/NAMUR
-Number of channels: 8/16/32 (different models)
-Response time:<5ms
-Isolation voltage: 1500VAC (between channels)
-Diagnostic function: open circuit and short circuit detection
-Safety certification: SIL 3

### **3. Analog Input Module (AI)**
####Model: 3503E/3504E (16 channels)**
**Function * *:
-Collect analog signals such as 4-20mA, 0-10V, etc. (such as temperature, pressure, flow transmitters).
-Supports * * HART communication * * (requires cooperation with a HART modulator).

**Key parameters * *:
-* * Input range * *: 4-20mA/0-10V/RTD/TC (thermocouple)
-* * Resolution * *: 16 bits (0.05% accuracy)
-Isolation between channels: 250VAC
-* * Sampling rate * *: 50ms/channel
-* * Diagnostic function * *: Over limit and wire breakage detection
-* * Safety level * *: * * SIL 3**

### **4. Digital Output Module (DO)**
####Model: 3805E/3806E (8 channels)**
**Function * *:
-Control switch devices such as relays and solenoid valves.
-Support * * short circuit protection * * and * * fail safe status * *.

**Key parameters * *:
-Output Type: Relay/Transistor (24VDC)
-* * Load capacity * *: 2A/channel (relay)
-* * Response time * *:<10ms
-Isolation voltage: 1500VAC
-* * Safe mode * *: * * De energize on Fault (power off in case of failure)**
-* * Certification * *: * * SIL 3**

### **5. Communication Modules**
####Model: 4351B (Modbus TCP/IP)/4329 (Ethernet/IP)**
**Function * *:
-Communicate with DCS, PLC, SCADA systems.
-Support * * redundant communication * * (dual network ports).

**Key parameters * *:
-* * Protocol support * *: Modbus TCP/IP, OPC UA, Ethernet/IP
-* * Communication speed * *: 10/100/1000 Mbps
-* * Maximum number of connections * *: 32 (Modbus TCP)
-* * Security Features * *: Data Verification, CRC Error Detection

##* * Typical application cases**
###Case 1: Emergency Shutdown System (ESD) for Offshore Oil Platforms**
-* * System Configuration * *:
-* * Main processor * *: TRICON 3008 (TMR)
-* * DI module * *: 3704E (collecting ESD button, flame detector)
-DO module: 3805E (control shut-off valve)
-Communication module: 4351B (integrated with DCS)
-* * Effect * *:
-Fault detection time<100ms
-Prevent accidental parking (2oo3 voting mechanism)
-Compliant with SIL 3 * safety standards.

Case 2: Chemical Plant Combustion Management System (BMS)**
-System configuration * *:
-Main processor: TRICON 3101
-AI module: 3503E (monitoring furnace temperature and gas pressure)
-DO module * *: 3806E (controlling fuel valve)
-Effect:
-Prevent burner explosion (automatic shutdown due to overheating)
-Support online maintenance to reduce downtime.

The card module of the TRICONEX system has core advantages such as high reliability, TMR redundancy, and SIL 3 certification, making it suitable for critical safety control. The main modules include:
1. * * Main processor (3008/3101) * * – executes security logic
2. * * Digital input (3704E) * * – Collect switch signals
3. * * Analog Input (3503E) * * – Monitoring Process Variables
4. * * Digital output (3805E) * * – Control actuator
5. * * Communication module (4351B) * * – Integrated with upper level system

These modules together form a complete Safety Instrumented System (SIS) to ensure the safe operation of industrial processes.

BENTLY NEVADA 3500 System Module

BENTLY NEVADA as a brand under General Electric (GE), is a leading global supplier of mechanical condition monitoring and protection systems. The BENTLY 3500 series is a modular monitoring system designed specifically for industrial equipment, widely used for the protection and status monitoring of critical units. This system combines high-precision sensors, powerful signal processing capabilities, and flexible communication interfaces to provide real-time data collection, fault diagnosis, and alarm management, helping users optimize equipment operation, extend equipment lifespan, and reduce maintenance costs.

2. Main functions and advantages of BENTLY 3500 series
2.1 Core Functions
Vibration monitoring: Measure shaft and bearing vibrations through eddy current sensors, accelerometers, etc., and analyze mechanical imbalances, misalignment, looseness, and other faults.

Displacement monitoring: Monitor axial displacement, differential expansion, etc. to prevent friction between the rotor and stator.

Temperature monitoring: Monitor bearing temperature, lubricating oil temperature, etc. to avoid overheating and damage.

Speed/phase monitoring: used for start stop analysis and torsional vibration monitoring.

Dynamic data collection: supports waveform and spectrum analysis to assist in fault diagnosis.

Alarm and protection: Provides multi-level alarms (warning, danger) and can be linked to shutdown protection.

2.2 Technical advantages
Modular design: monitoring channels can be flexibly configured according to requirements and support expansion.

High reliability: Compliant with international standards such as API 670, suitable for harsh industrial environments.

Intelligent diagnosis: Combining expert systems to provide root cause analysis of faults.

Industrial communication integration: Supports protocols such as Modbus, Profibus, OPC, and seamlessly integrates with DCS/PLC.

Remote monitoring: Data can be accessed remotely through the network, supporting predictive maintenance.

3. Typical industry application cases
Case 1: Monitoring of Centrifugal Compressors in Petrochemical Plants
The cracking unit of a large petrochemical enterprise uses multiple high-pressure centrifugal compressors. Due to long-term high load operation, rotor dynamic balance problems occur frequently, and unplanned shutdowns were caused by excessive vibration, resulting in single losses exceeding one million US dollars.

Solution:

Deploy BENTLY 3500 system, equipped with 3500/42M vibration monitoring module and eddy current sensor, to monitor compressor bearing vibration in real time.

Set multi-level alarm thresholds to trigger an alarm when the vibration value exceeds 4.0 mm/s (warning) or 6.3 mm/s (danger).

By combining spectrum analysis, the characteristics of rotor imbalance were discovered, and dynamic balance correction was arranged in advance to avoid sudden failures.

effect:

Unplanned equipment downtime is reduced by 60%, and annual maintenance costs are reduced by approximately 30%.

Through trend analysis, the maintenance cycle has been optimized, and the operating life of the equipment has been extended by 20%.

Case 2: Differential Expansion Monitoring of Power Plant Steam Turbine
The 300MW steam turbine of a certain thermal power plant was severely damaged due to uneven thermal expansion, which caused friction between the rotor and cylinder. Traditional monitoring methods cannot accurately capture changes in inflation.

Solution:

Adopting BENTLY 3500 system, integrating 3500/45 axial displacement/differential expansion module to monitor the relative displacement between rotor and cylinder.

Set the differential expansion alarm threshold (± 1.5 mm) and adjust the thermal expansion effect based on temperature data.

By comparing historical data, optimize the start-up temperature curve to avoid dynamic friction.

effect:

Successfully prevented multiple friction risks and reduced the start-up time of the unit by 15%.

The reliability of the equipment has significantly improved, and the annual maintenance cost has been reduced by 25%.

4. BENTLY 3500 series representative models and parameters
(1) 3500/42M Four Channel Vibration Monitoring Module
Function: Used for radial vibration monitoring, supporting input of velocity or acceleration signals.

Key parameters:

Measurement range: 0-20 mm/s (RMS) or 0-200 μ m (peak).

Frequency response range: 10 Hz~1 kHz (expandable to 10 kHz).

Accuracy: ± 1% FS (full scale).

Alarm output: 4-20 mA analog signal, relay contact.

(2) 3500/45 Axial Displacement/Differential Expansion Monitoring Module
Function: Monitor rotor axial displacement or turbine expansion difference.

Key parameters:

Measurement range: ± 2 mm (standard), customizable ± 10 mm.

Resolution: 0.1 μ m.

Linearity: ± 0.5% FS.

Output: Dual channel independent alarm, supporting Modbus RTU communication.

(3) 3500/22 Temperature Monitoring Module
Function: Used for temperature monitoring of bearings, lubricating oil, etc.

Key parameters:

Input type: RTD (PT100) or thermocouple (K-type).

Measurement range: -50 ℃~400 ℃ (RTD), 0 ℃~800 ℃ (thermocouple).

Alarm accuracy: ± 1 ℃.

5. Summary
The BENTLY 3500 series, with its high precision, modularity, and intelligence, has become a benchmark solution for industrial equipment condition monitoring. Whether it is vibration management of petrochemical compressors or differential expansion control of steam turbines, this system can provide reliable data support and fault warning, helping enterprises achieve predictive maintenance and intelligent operation and maintenance. In the future, with the development of Industry 4.0 and Internet of Things (IIoT) technology, the BENTLY 3500 series will further integrate big data analysis to drive the industry towards a more efficient and secure direction.

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