Bentley 3300/35-02-01-01-00-00 Six-Channel RTD Temperature Monitoring Module Detailed Product Description
May 28, 2026

Bentley 3300/35-02-01-01-00-00 Six-Channel RTD Temperature Monitoring Module Detailed Product Description

The Bently 3300/35-02-01-01-00-00 is a six-channel RTD (platinum resistance) temperature monitoring module of the 3300 series TSI (turbo-generator monitoring instrument) system from Baker Hughes (formerly GE Bently Nevada). It is specifically designed for high-precision temperature monitoring and over-limit protection of low-temperature measurement points in large-scale rotating machinery (such as steam turbines, gas turbines, generators, compressors, etc.) in the power generation, nuclear power, petrochemical, and metallurgical industries. The module adopts a 19-inch standard rack structure, supports hot swapping, and can be mixed with other monitoring modules of the 3300 series to share the backplane - 24V DC power supply and system bus; it is compatible with Pt100 RTD, with a measurement range of 0–600°C, providing six independent temperature measurements, dual-level alarms, non-sealed SPDT relay output, and complete self-diagnosis functions. It has no analog output and complies with API 670 standards. It is the core equipment for low-temperature state monitoring and fault protection in rotating machinery.

Description

Bentley 3300/35-02-01-01-00-00 Six-Channel RTD Temperature Monitoring Module Detailed Product Description

I. Product Overview

The Bentley 3300/35-02-01-01-00-00 is a six-channel RTD (platinum resistance) temperature monitoring module of the 3300 series TSI (turbo-generator monitoring instrument) system from Baker Hughes (formerly GE Bentley Nevada), designed specifically for high-precision temperature monitoring and over-limit protection of large-scale rotating machinery (such as steam turbines, gas turbines, generators, compressors, etc.) in the thermal power, nuclear power, petrochemical, and metallurgical industries. The module adopts a 19-inch standard rack structure, supports hot-swapping, and can be mixed with other monitoring modules of the 3300 series to share the backplane - 24V DC power supply and system bus; it is compatible with Pt100 RTD, with a measurement range of 0–600°C, providing six independent temperature measurements, dual-level alarms, non-sealed SPDT relay output, and complete self-diagnosis functions. It has no analog output and complies with API 670 standards. It is the core equipment for monitoring and fault protection of low-temperature states in rotating machinery.

II. Model Coding Rules (3300/35-AA-BB-CC-DD-EE-FF)

3300: Bentley 3300 modular TSI system, unified rack, centralized power supply, hot-swappable architecture.

35: Function code, representing a six-channel temperature monitoring module, independently monitoring 6 temperature signals.

02: Range code, corresponding to **0–600°C** measurement range, suitable for the high-temperature section of Pt100 RTD, covering bearing, winding, lubricating oil, sealing cavity, etc. as low-temperature measurement points.

01: Sensor type code, suitable for Pt100 RTD (platinum resistance), an industrial general-purpose low-temperature temperature measurement configuration.

01: Relay configuration code, equipped with two SPDT non-sealed alarm relays, suitable for conventional industrial environment alarms and interlock circuits.

00: Output configuration code, no analog output, only retaining alarm relay output and system bus communication functions.

00: Certification level code, representing general industrial-level certification, suitable for conventional industrial environments.

III. Core Functions

1. Six-channel high-precision Pt100 RTD temperature measurement

Independent 6 RTD inputs, each adapted to Pt100 platinum resistance (three-wire system, IEC 751 standard), measurement range 0–600°C, covering normal operation and abnormal overheating intervals of rotating machinery bearings, windings, lubricating oil, sealing cavities, etc. High-precision constant current source excitation and signal conditioning technology is adopted, measurement accuracy ≤ ±0.1°C (25°C reference point), resolution 0.1°C, capable of accurately capturing small temperature changes in the low-temperature range. Real-time monitoring of RTD circuit status, early warning of broken wires, short circuits, incorrect wiring, cable damage, etc., suitable for complex industrial environments with strong electromagnetic interference and severe vibration.

2. Dual-level alarm and non-sealed SPDT relay output

Each channel independently configured **alert (ALERT), danger (DANGER)** two-level alarm thresholds, can be locally configured on the panel or remotely set, suitable for different low-temperature protection requirements in different equipment. Equipped with 2 non-sealed SPDT relays, contact specifications 250V AC/5A, 30V DC/5A, can directly drive sound and light alarms, DCS/PLC interlock circuits or shutdown protection devices. Alarm delay 0–10 seconds adjustable, filtering instantaneous temperature fluctuations, avoiding false alarms; relay status and module operation status are linked, faults trigger alarms automatically, ensuring timely response to low-temperature abnormalities. 3. No analog output, focusing on high-reliability alarm protection

This model does not have an independent analog output function. The core focuses on temperature monitoring + dual-level high-reliability alarm protection. It adopts a non-sealed relay design, suitable for conventional industrial environments, enhancing operational stability, and suitable for critical equipment scenarios with extremely high requirements for alarm reliability. Through the 3300 series system bus, it can upload 6 real-time temperature data, alarm status, and fault information to the BTL System 1 platform, enabling remote monitoring and data management, meeting basic monitoring and protection needs.

4. Local display and convenient configuration

The front panel is equipped with an LCD digital display window and multiple status LED indicators. It can display 6 temperature measurement values, RTD circuit resistance, alarm thresholds, and fault codes in real time. The OK, ALERT, DANGER, and BYPASS four groups of LEDs, corresponding to normal operation, warning alarm, dangerous alarm, and module bypass status respectively, make the operating status visible at a glance. It supports on-site button-based configuration, allowing for range calibration, RTD type matching, circuit resistance calibration, alarm threshold configuration, delay parameter adjustment, and loop diagnosis settings without the need for an upper computer, making the debugging efficient and convenient, and reducing the difficulty of on-site maintenance.

5. Comprehensive self-diagnosis and fault identification

It continuously monitors the module's own hardware, RTD circuit, power supply status, and signal integrity 24 hours a day. It can accurately identify RTD open circuit / short circuit, wiring errors, power fluctuations, module circuit faults, etc. The panel LEDs clearly indicate the fault type, and in combination with the local display of fault codes, it facilitates quick troubleshooting and maintenance, reducing the risk of unplanned shutdown due to low-temperature faults.

6. System integration and strong anti-interference capability

The metal shielding shell design, multiple electrical isolation between input, output, and power supply circuits, is suitable for industrial environments with strong electromagnetic interference and high vibration such as thermal power, nuclear power, and petrochemicals. It is compatible with the 3300 series system bus (type A), and can be connected to the BTL System 1 equipment status monitoring platform to achieve remote configuration, real-time data transmission, historical trend query, fault warning analysis, etc., integrating into the enterprise equipment management system. It supports interfacing with third-party systems such as DCS and PLC through bus protocol, meeting factory automation integration requirements, and ensuring stable transmission of temperature monitoring data.

Four. Detailed technical parameters

Measurement parameters

Monitoring channels: 6 independent temperature measurements (compatible with Pt100 RTD)

Sensor type: Pt100 platinum resistance (three-wire system, IEC 751 standard)

Measurement range: 0–600℃

Measurement accuracy: ≤±0.1℃ (25℃ reference point, typical value)

Resolution: 0.1℃

Excitation current: 1mA (constant current source, independent for each channel)

Response time: ≤3 seconds (reaching 90% stable reading)

Input impedance: ≥10MΩ (each channel)

Electrical parameters

Power supply: -24V DC (±10%), backplane power supply; supports short-circuit switching - 18V DC

Power consumption: typical 3.0W, maximum ≤5.0W

Relay output: 2 SPDT (ALERT+DANGER), non-sealed type, 250V AC/5A, 30V DC/5A

Analog output: None

Isolation strength: Input / power supply ≥2500V AC

Sensor power supply: Module internal constant current source excitation, no external power supply required

Environmental and mechanical parameters

Operating temperature: 0℃~+65℃ (standard industrial grade)

Storage temperature: -40℃~+85℃

Relative humidity: 5%–95% (no condensation) Vibration tolerance: Compliant with IEC 60068-2 standards, resistant to vibration and shock

Installation method: 19-inch standard rack slot, supports hot swapping

Dimensions: 203mm (height) × 330mm (depth) × 51mm (width)

Weight: Approximately 1.4kg

Protection level: IP20 (suitable for installation in control cabinets)

Certifications and compliance

Industry standards: Compliant with API 670 Rotating Machinery Monitoring and Protection Standards

Electromagnetic compatibility: CE certification, compliant with EN 61000-6-2/4

Safety certification: UL certification

Environmental compliance: RoHS Directive compliance

V, Typical application scenarios

Power industry (thermal power / nuclear power turbine / generator): Multi-point monitoring of turbine bearing temperature, generator winding temperature, lubricating oil temperature, sealing oil temperature, preventing overheating-induced bearing burnout, insulation aging, and equipment damage; full-stage low-temperature protection during startup acceleration, normal operation, and shutdown rotation, triggering alarms or interlocks upon overheating, ensuring safe and stable operation of the unit; 

Petrochemical industry (large compressors / pump sets / heating furnaces): Synchronous monitoring of compressor bearing temperature, pump set winding temperature, heating furnace medium temperature, equipment shell temperature, suitable for medium-low temperature and high-vibration industrial environments, preventing equipment failure and production interruption due to overheating, ensuring continuous industrial production.

Metallurgical industry (large motors / fans / rolling mills): Batch monitoring of motor winding temperature, fan bearing temperature, rolling mill lubricating oil temperature, key equipment temperatures, dual-level relay alarm linkage for equipment operation interlock, timely warning of overheating faults, reducing unplanned downtime risks, ensuring stable and efficient operation of the metallurgical process.

VI. Installation and commissioning specifications

Installation requirements

Frame installation: Push in smoothly into the vacant slot of the 3300 series frame, ensure that the rear connectors are fully engaged, tighten the panel fixing screws to avoid loosening and contact failure; reserve ventilation space at the installation location to avoid heat accumulation affecting module heat dissipation.

Sensor wiring: Pt100 RTD uses three-wire connection (red, white, black), equipped with dedicated RTD shielded cable, single-ended grounding of the shield layer (on the control cabinet side), avoiding circulating interference; during wiring, avoid bending or pulling the cables, preventing breakage or signal attenuation.

Alarm wiring: Distinguish between ALERT and DANGER relay contacts (SPDT with common terminal, normally open, normally closed), connect to the alarm / interlock circuit, confirm that the wiring is firm and there is no short-circuit hazard, ensuring reliable output of alarm signals.

Sensor installation: RTD probe is tightly attached to the surface of the measured equipment, fixed with thermal conductive silicone and a high-temperature clamp to ensure accurate temperature measurement; the probe cable is firmly fixed to avoid vibration wear or breakage, and keep away from strong electromagnetic radiation sources.

Commissioning steps

Power-on self-check: The module automatically performs self-check after power-on, the OK light is constantly on indicating normal hardware, when the fault light is on, check the wiring, sensors, or hardware issues.

Sensor calibration: Enter calibration mode through the panel buttons, select Pt100 RTD type, calibrate the three-wire circuit resistance to ensure temperature measurement accuracy.

Alarm settings: According to the equipment operation standards, set warning thresholds (such as 120°C) and danger thresholds (such as 150°C), adjust alarm delay (such as 2 seconds), save parameters.

Signal verification: During equipment operation, observe whether the 6 temperature values on the panel are stable, without jumps, drifts; check that the RTD circuit has no fault indication, confirm that the alarm function is normal before putting it into operation.

VII. Maintenance and fault troubleshooting

Daily maintenance

Regular inspection: Daily observation of panel temperature values, circuit status, and LED status, confirming no alarms or fault indications; Check that the terminal connections of the module are not loose or oxidized, and that the ventilation and heat dissipation of the rack are good.

Annual calibration: Use standard RTD to calibrate the temperature measurement accuracy every year, verify the alarm action value and delay accuracy of the relay, and ensure the reliability of monitoring and protection functions.

Cleaning and protection: Regularly clean the dust on the module surface with a dry soft cloth to avoid dust accumulation affecting heat dissipation; strictly prohibit liquids and metal debris from entering the module interior to prevent short-circuit faults.

Common fault troubleshooting

OK light goes out (module failure): Check if the backplane power supply is normal (-24V DC), reinsert and re-execute the module, if still abnormal, replace the module.

Abnormal temperature display (jumps / drifts): Check if the Pt100 RTD wiring is loose, wrongly connected, or broken, and if the cables are damaged. Reconnect the wiring or replace the sensor; check if the environmental temperature exceeds the working range and if there is strong electromagnetic interference.

No temperature display: Check if the RTD is damaged, if the three-wire connection is incorrect, if the cable is broken, and check and replace the faulty components.

Alarm triggered incorrectly: Re-calibrate the alarm threshold and delay parameters, check if the RTD circuit resistance is abnormal, optimize the installation and wiring shielding measures of the sensor.

VIII. Usage Notes

This model is of non-explosion-proof design. Installation and use are strictly prohibited in flammable and explosive hazardous areas.

It must be equipped with **Pt100 platinum resistance (three-wire system, IEC 751 standard)** temperature sensor and dedicated RTD shielding cable. Mixing with thermocouples (such as K type) or two-wire / four-wire RTD is not allowed, otherwise it will cause measurement errors or equipment damage.

It is only applicable for temperature monitoring within 0–600℃. For over-temperature scenarios, select the corresponding range module.

Do not disassemble the module, modify the internal circuitry, or replace non-original accessories without authorization. Illegal operations will result in the invalidation of equipment warranty and may cause safety hazards.

Before connecting or inspecting the module, cut off the main power supply of the rack to prevent short circuits and electric shock accidents; do not plug or unplug the module while it is powered on.

When the module is in a long-term shutdown state, it is recommended to remove the module from the rack, store it in a dry and cool environment to avoid moisture and dust affecting performance.


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