Product Core Brief
- Model: 136711-01
- Brand: Bently Nevada (Baker Hughes)
- Series: 3500 Machinery Protection System
- Core Function: Multi-channel RTD and Thermocouple input module for monitoring bearing metal temperatures and process variables.
- Product Type: Temperature I/O Monitor Module
- Key Specs: RTD/TC Inputs | Internal Termination | 3500/60 Function
- Condition: New Surplus / OEM Original
Key Technical Specifications
- Module Function: 3500/60 Temperature Monitor
- Input Types: RTD (Pt100, Pt1000, Cu10, Ni120) & Thermocouple (J, K, T, E, R, S, B, N)
- Termination: Internal Terminal Block
- Channel Count: 6 Channels
- Measurement Accuracy: ±0.5% of Span (Typical)
- Scan Rate: User-Configurable (100ms to 10s)
- Analog Output: 4-20 mA per channel (Isolated)
- System Compatibility: 3500/05 Frame, 3500/22 TDI
- Configuration: 3500 Rack Configuration Software
- Obsolescence Note: Legacy Part Number (Check for 163179-01 upgrade)
Product Introduction
Serving as the thermal guardian for critical rotating assets, this Bently Nevada 136711-01 continuously monitors bearing metal temperatures and lube oil conditions. It integrates directly into the 3500 protection logic, allowing temperature-driven alarms and trips to be voted with vibration data for comprehensive machine health assessment.
Unlike standalone temperature controllers, this module shares the 3500 backplane, enabling cross-channel correlation between high vibration and rising metal temps. For legacy systems, this internal-termination variant simplifies wiring by eliminating external terminal blocks, though you should verify if the newer 163179-01 revision offers better noise immunity for your specific grounding environment.
QA & Testing SOP
Temperature modules are prone to cold-junction compensation drift. We verify both the input accuracy and the backplane communication.
- Anti-Counterfeit & Visual Audit: We inspect the internal terminal block for stripped screws or corrosion, verify the Bently Nevada silkscreen, and check for any field-repair solder joints.
- Cold-Junction Compensation (CJC) Test: We inject a known mV signal for a K-type TC and verify the module reads the correct temperature, confirming the CJC sensor at the terminal block is functional.
- RTD Excitation Check: We measure the excitation voltage at the internal terminals to ensure it’s within spec (typically 1mA), preventing self-heating errors in Pt100 sensors.
- Backplane Enumeration: We install in a 3500/05 test frame to verify the 3500/22 TDI correctly polls the module and reports valid temperature values.
- ESD Safe Packaging: Precision analog front-ends are ESD sensitive. We pack in anti-static shielding with desiccant to prevent latent drift or failure.
BENTLY 136711-01
Installation Pitfalls & Guide
❗ Thermocouple Wire Polarity: It sounds basic, but reversed TC wires are the #1 field failure. If the temperature reads lower when the machine heats up, your leads are backwards. Always verify polarity with a millivolt source before connecting to the internal terminals.
❗ RTD Wire Configuration: This module typically supports 2-wire, 3-wire, or 4-wire RTDs. If you configure the software for 3-wire but wire a 2-wire RTD (or vice versa), you’ll get significant measurement errors due to lead resistance compensation failures. Double-check the jumper settings or software config against the physical wire count.
❗ Grounding & Shielding: Temperature signals are low-level DC. If you share a ground path with VFDs or motor leads, 60Hz noise will corrupt your readings. Use shielded twisted-pair cable and ground the shield at the 3500 module end only. Never ground at the sensor end in a floating thermocouple application.
Replacement SOP:
- Pre-Install: Document the current channel configuration, sensor types, and alarm setpoints; place the machine in bypass/maintenance mode.
- Removal: Power down the 3500 rack; carefully disconnect wires from the internal terminal block (label every wire!); remove mounting screws and extract the module.
- Install: Slide the 136711-01 into the designated slot; reconnect wires to the internal terminals, ensuring no stray strands are shorting adjacent terminals; secure mounting screws.
- Power-On Test: Power up the rack; verify the 3500/22 TDI sees the module; inject a known temperature signal (e.g., ice bath for RTD or mV calibrator for TC) to validate accuracy before removing bypass.
Technical FAQ
Is 136711-01 the same as 163179-01?
163179-01 is the newer, direct replacement part number for the 3500/60 RTD/TC module. Functionally, they are identical and interchangeable in the 3500/05 frame. If you’re replacing a failed 136711-01, the 163179-01 is the preferred option for new installations due to improved component availability, but the legacy part will work seamlessly in existing configurations.
Can I mix RTDs and Thermocouples on the same module?
Yes, but each channel must be configured independently. You can have channels 1-3 as Pt100 RTDs and channels 4-6 as K-type thermocouples. However, you cannot mix sensor types on the same channel. Verify your software configuration matches the physical wiring for each individual channel.
Does this module support Type S thermocouples for high-temp turbines?
Yes, the 3500/60 supports Type S, R, and B thermocouples for high-temperature applications. However, ensure your extension wires match the thermocouple type all the way to the module. Using copper extension wires with a Type S TC will introduce massive errors due to the Seebeck effect at the terminal block.
What is the scan rate, and can I change it?
The default scan rate is typically 1 second, but it’s user-configurable via the 3500 Configuration Software down to 100ms for fast-ramping temperature events. Be aware that faster scan rates increase backplane traffic; if you’re running 4+ temperature modules, keep the scan rate at 1s or higher to avoid communication bottlenecks.
Why is this sold as new surplus?
This unit was pulled from sealed OEM overstock or an unfulfilled project before installation. We test it on our OEM 3500 test racks to verify input accuracy and backplane communication, but we aren’t replacing internal components. You’re getting unused factory silicon with original manufacturing tolerances at a fraction of the active OEM list price.
Need the matching 3300 XL RTD sensors or the 3500/22 TDI module for your rack? I can pull those up for you.









