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350092 133323-01 High Temperature Vibration and Process Monitoring Module

350092 133323-01 is a high-temperature vibration and process monitoring module belonging to the BENTLY3500 series, which is renowned for its outstanding performance in harsh industrial environments. This module is designed specifically for extreme high temperature environments, serving as an interface between high-temperature resistant sensors (such as thermocouples, quartz accelerometers) and control systems, providing real-time equipment health data.

Model 350092 133323-01
Brand BENTLY
Type: High temperature monitoring module
Input channel 2-channel configurable (IEPE/TC/LVDT)
Sampling rate of up to 5 kHz per channel
Working temperature range -40 ° C to+125 ° C
Power supply 18-32 V DC (dual redundant)
Dimensions: 120mm (width) x 160mm (height) x 70mm (depth)
Installation method: DIN rail or customized panel installation
Certified ATEX/IECEx (Zone 1/21), CE, UL
Environmental protection level IP66, IEC 61000-6-2 (EMC)

Description

350092 133323-01 is a high-temperature vibration and process monitoring module belonging to the BENTLY3500 series, which is renowned for its outstanding performance in harsh industrial environments. This module is designed specifically for extreme high temperature environments, serving as an interface between high-temperature resistant sensors (such as thermocouples, quartz accelerometers) and control systems, providing real-time equipment health data.

350092 133323-01

350092 133323-01

As a core component of distributed control systems (DCS) or independent monitoring racks, 350092 133323-01supports configurable input channels for measuring vibration, temperature, or displacement in environments up to+125 ° C. Its modular architecture allows engineers to integrate specialized sensors such as thermal expansion or strain monitoring, while supporting industrial protocols such as Profibus DP and EtherNet/IP, ensuring seamless communication with PLCs and cloud platforms. For system integrators, their explosion-proof certification (ATEX/IECEx) and sturdy casing simplify deployment in hazardous areas, reducing compliance difficulties.

The core advantage of350092 133323-01 lies in its combination of thermal tolerance and analytical accuracy. Advanced algorithms can filter out vibration data noise caused by high temperatures, enabling accurate fault detection (such as bearing wear and misalignment) even in hot environments, making it a key equipment in industries where traditional electronic devices cannot handle it, ensuring uninterrupted operation and extending service life.

350092 133323-01

350092 133323-01

Main features and advantages:
Extreme temperature performance
Working temperature range: -40 ° C to+125 ° C (without active cooling), achieved through a heat dissipating aluminum alloy shell and thermal conductive filler.
Sensor compatibility: Supports high-temperature sensors (such as K-type thermocouples, quartz IEPE accelerometers), suitable for precise measurement of furnaces or kilns.
Industrial grade durability
Explosion proof certification: ATEX/IECEx certification, applicable to Zone 1 (gas) and Zone 21 (dust) hazardous areas, meeting safety standards for flammable environments.
IP66 protection level: resistant to high-pressure water spray, dust and mechanical impact (peak impact resistance: 50g).
Precision data collection
24 bit ADC synchronous sampling: Each channel has a maximum sampling rate of 5 kHz, ensuring high fidelity vibration waveform analysis in high-temperature noise environments.
Digital filtering: Built in FFT and envelope analysis algorithms can separate fault frequencies (such as gear meshing and blade passing frequency) from thermal noise.
Flexible integration
Multi protocol connectivity: Supports Profibus DP, EtherNet/IP, and Modbus TCP, seamlessly integrating with legacy SCADA systems or modern IIoT platforms.
Redundant power supply and hot swappable: Dual 18-32 V DC input and hot swappable design, supporting maintenance without interrupting the system.

350092 133323-01

350092 133323-01

Technical specifications:
Model 350092 133323-01
Brand BENTLY
Type: High temperature monitoring module
Input channel 2-channel configurable (IEPE/TC/LVDT)
Sampling rate of up to 5 kHz per channel
Working temperature range -40 ° C to+125 ° C
Power supply 18-32 V DC (dual redundant)
Dimensions: 120mm (width) x 160mm (height) x 70mm (depth)
Installation method: DIN rail or customized panel installation
Certified ATEX/IECEx (Zone 1/21), CE, UL
Environmental protection level IP66, IEC 61000-6-2 (EMC)

Contact Us
Phone:+86 16626708626
WeChat/WhatsApp:+86 16626708626
Email: 3772179818@qq.com

350092 133323-01

350092 133323-01

Application areas:
In steel production, the working temperature of furnaces and rolling mills exceeds 1000 ° C, and the equipment is subjected to severe thermal stress and high temperature tests. The 350092 133323-01 module monitors the vibration, temperature, and axial displacement of the conveying rollers, blast furnace drive devices, and annealing furnace in real-time through high-temperature sensors, and can continuously and stably collect data in high-temperature environments close to molten metal or flames (+125 ° C).
In glass manufacturing, precise thermal control is required for kilns and forming equipment. This module can detect early signs of component fatigue or misalignment, avoiding production line downtime and material waste. Chemical refineries rely on their robust design to monitor pumps and valves in high-temperature processing areas, ensuring equipment meets explosion-proof and high-temperature resistance requirements in environments with flammable gases and corrosive substances.

350092 133323-01

350092 133323-01

Related products:
350092 133324-01-4 channel version, suitable for multi area high temperature monitoring
350091 190782-01- Standard temperature version, supporting a wider range of protocols
350040M-HT – High Temperature Proximity Probe Interface Module
350022M-EX – Explosion proof Vibration Monitor, Suitable for Basic Applications
350033-HT – TSI module with thermal compensation, suitable for process integration

 

Installation and maintenance:
Precautions before installation:
Install the module using a high-temperature resistant bracket at least 30 cm away from the heat source (such as a furnace).
Use mineral insulated copper-clad cables (MICC) to connect sensors and ensure signal integrity in high-temperature areas.
Ensure good grounding to reduce electromagnetic interference (EMI) from induction heating systems or electric arc furnaces.
Maintenance suggestion:
Monthly: Check if the thermal interface material is aging and reapply high-temperature resistant compound if necessary.
Quarterly: Run self diagnostic tests through the module’s web interface to check ADC accuracy and temperature drift.
Every year: Use high-temperature calibration equipment (such as dry block furnaces) to recalibrate sensors and module inputs.
Firmware update: Update the firmware every six months to optimize the thermal compensation algorithm; Deploy after testing in a controlled environment

 

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