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Bently Nevada 3500/53-02-00 133388-01 Overspeed Detection Module

  • Manufacturer: Bently Nevada
  • Product Number: 3500/53-02-00 133388-01
  • Condition: New & In Stock
  • Product Type: Overspeed Detection Module
  • Origin: USA
  • Payment Methods: T/T, Western Union
  • Dimensions: 241.3 x 24.4 x 241.8 mm
  • Weight: 0.82 kg
  • Shipping Port: Xiamen, China
  • Lead Time: 1-3 Working Days
  • Warranty: One Year
  • Certificate: COO
  • Courier partners: DHL, UPS, TNT, FedEx and EMS.

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Company Information
e-mail [email protected]
Mobile +8615305023276
Whatsapp +8615305023276
WeChat 15305023276
Add to Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China

Technical Specifications

Parameter Specification
Manufacturer Bently Nevada
Model 3500/53-02-00
Part Number 133388-01
Product Type Electronic Overspeed Detection Module
Product Series 3500 Machinery Protection System
Primary Function Overspeed detection and high-speed machinery protection
System Type Redundant tachometer-based overspeed protection system
Channel Configuration 2-channel configuration
Input Type Single transducer signal per overspeed detection module
Compatible Transducers Proximity probes and magnetic pickups
Supported Proximitor Types 3300 8 mm, 3300 16 mm HTPS, 7200 5 mm/8 mm/11 mm/14 mm, 3300 RAM Proximitor
Input Signal Range +10.0 V to -24.0 V
Input Signal Protection Signals exceeding the specified range are internally limited
Input Impedance 20 kΩ
Maximum Input Frequency 20 kHz
Speed Measurement Supported
Overspeed Detection Supported
Redundant Voting 2-out-of-2 and 2-out-of-3 configurations
Recommended Voting Configuration 2-out-of-3 for redundant overspeed protection
Overspeed Response Fast-response electronic detection
Recorder Output +4–20 mA, proportional to configured full-scale speed
Recorder Output Impedance 550 Ω
Transducer Power Supply -24 V DC, up to 40 mA
Front Panel Indicators OK, TX/RX, Bypass, Test Mode, Alarm
OK Indicator Indicates normal module operation
TX/RX Indicator Indicates communication with other 3500 rack modules
Bypass Indicator Indicates Bypass Mode
Test Mode Indicator Indicates Test Mode operation
Alarm Indicators Indicate associated alarm conditions
Rack Installation Bently Nevada 3500 Rack
Rack Power Requirement Redundant power supplies required for overspeed protection applications
API Compliance Designed for API 670 and API 612 overspeed protection requirements
Operating Temperature -30°C to +65°C
Storage Temperature -40°C to +85°C
Relative Humidity Up to 95%, non-condensing
Typical Power Consumption 8.0 W
Dimensions 241.3 × 24.4 × 241.8 mm
Weight 0.82 kg

FAQ

1. What is the main function of the Bently Nevada 3500/53-02-00 133388-01?

The 3500/53-02-00 133388-01 is an electronic overspeed detection module used as part of the Bently Nevada 3500 Machinery Protection System. Its primary purpose is to provide fast and reliable detection of excessive rotational speed on critical rotating equipment. The module receives a tachometer signal from a compatible proximity probe or magnetic pickup and continuously evaluates the incoming speed information. When the detected speed reaches the configured overspeed condition, the system can provide the required protection signal to the machinery protection system. The 3500/53 is particularly suitable for turbines, compressors, generators, pumps, and other high-speed rotating equipment where excessive rotational speed could result in severe mechanical damage. Multiple modules can also be combined to create redundant voting arrangements for applications requiring a higher level of protection reliability.

2. What types of sensors can be used with the 3500/53 133388-01?

The 3500/53 133388-01 can accept signals from compatible proximity probes and magnetic pickups. Supported Bently Nevada sensor configurations include 3300 8 mm Proximitor, 3300 16 mm HTPS, 7200 series 5 mm, 8 mm, 11 mm, and 14 mm Proximitor sensors, as well as 3300 RAM Proximitor systems and compatible magnetic pickups. The correct sensor must be selected according to the machine shaft design, target arrangement, operating speed, and required signal characteristics. During commissioning, the sensor output should be checked to make sure the pulse signal reaches the overspeed detection module with sufficient amplitude and stability. Incorrect sensor selection, poor probe installation, damaged cabling, or unstable pulses can cause unreliable speed detection and should be eliminated before investigating the module itself.

3. How does the 3500/53 detect an overspeed condition?

The 3500/53 continuously monitors the tachometer signal generated by the connected speed sensor. The incoming pulses correspond to the rotational movement of the machine shaft, allowing the system to determine the current operating speed. The measured speed is evaluated against the configured overspeed protection threshold. If the detected speed exceeds the applicable limit, the overspeed detection system responds through its protection circuitry and communicates the condition through the 3500 rack. The module is designed for fast response because overspeed events can develop rapidly and may cause serious mechanical stress on turbine or compressor components. For critical applications, multiple 3500/53 modules can be combined into a redundant voting arrangement so that the protection decision does not depend on a single detection channel.

4. What is the difference between 2-out-of-2 and 2-out-of-3 voting configurations?

The 3500/53 can be configured into redundant overspeed protection systems using 2-out-of-2 or 2-out-of-3 voting logic. In a 2-out-of-2 arrangement, both independent detection channels must agree that an overspeed condition exists before the corresponding protection decision is made. This provides redundancy but still depends on both detection channels for the configured protection logic. In a 2-out-of-3 arrangement, three independent overspeed detection channels are used, and at least two channels must identify the overspeed condition before the protection decision is made. This configuration provides greater tolerance to a single faulty detection channel and is generally recommended for high-reliability overspeed protection applications. The actual voting arrangement should be selected according to the machinery protection design and applicable safety requirements.

5. What should be checked if the 3500/53 does not detect the correct shaft speed?

Troubleshooting should begin with the complete tachometer signal path. First inspect the connected proximity probe or magnetic pickup and verify its mechanical installation, sensor gap where applicable, and physical condition. The field cable should then be checked for open circuits, shorts, loose terminals, shielding problems, and electrical interference. The sensor output should be measured while the machine is operating to verify that stable pulses are reaching the 3500/53 input. If the input signal is correct, the configuration of the 3500/53 and associated rack should be reviewed. Incorrect sensor selection, speed scaling, target configuration, or system parameters can result in an incorrect speed interpretation. If the sensor and configuration are confirmed to be correct but the speed measurement remains abnormal, the I/O interface and overspeed detection module should then be investigated for hardware problems.

6. What do the OK, TX/RX, Bypass, and Test Mode LEDs indicate?

The front-panel indicators provide important information about the operating state of the 3500/53. The OK LED indicates that the module is operating correctly. The TX/RX LED indicates communication activity between the 3500/53 and other modules within the 3500 rack. The Bypass LED indicates that the module or applicable protection function is operating in Bypass Mode, which requires particular attention during maintenance because bypassing a protection function can affect machinery protection. The Test Mode LED indicates that the module is operating in a test condition. Alarm indicators provide information about associated alarm states. During commissioning or troubleshooting, these LEDs should be considered together with the rack configuration and system status rather than using a single indicator as the only basis for diagnosing a problem.

7. Why are redundant power supplies required for the 3500/53 overspeed protection system?

Overspeed protection is a critical machinery safety function, so maintaining power availability is essential. The 3500/53 system is designed to operate in a 3500 rack equipped with redundant power supplies for overspeed protection applications. Redundant power allows the protection system to continue operating if one power supply experiences a failure, reducing the possibility that a single power-supply fault will disable the overspeed detection function. This is particularly important for turbines, compressors, and other machines where loss of overspeed protection could create a serious safety risk. During commissioning and maintenance, both power supplies should be checked to confirm that they are operating correctly and that the rack does not contain an unresolved power-related fault.

8. What should be checked after replacing a 3500/53-02-00 133388-01 module?

After replacing a 3500/53-02-00 133388-01, the complete overspeed protection system should be checked before the protected machine is returned to normal operation. First confirm that the replacement module is the correct model and channel configuration, then verify that it is properly installed in the 3500 rack. Check the associated tachometer input, sensor wiring, signal quality, and rack connections. The system configuration and overspeed setpoints should be reviewed carefully to ensure that they match the approved machinery protection settings. If the system uses 2-out-of-2 or 2-out-of-3 voting, verify that the redundant modules are correctly assigned and communicating with each other. The OK, TX/RX, Bypass, and Test Mode indicators should also be checked. Finally, the overspeed protection function should be tested according to the site’s approved maintenance and commissioning procedure. This verification is important because correct physical installation alone does not confirm that the module, voting logic, tachometer signals, and protection outputs are all operating correctly.

Bently Nevada 3500/53-02-00 133388-01 Overspeed Detection Module is in stock. Please contact us for a quick quote and competitive pricing.

Company Information
e-mail [email protected]
Mobile +8615305023276
Whatsapp +8615305023276
WeChat 13950166376
Add to Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China


Company Introduction

Xiamen Shengruite Trading Co., Ltd. is a company specializing in the supply of industrial PLC spare parts.

We provide high-quality PLC spare parts to customers in the global manufacturing, energy and power, chemical and other fields.

Since its establishment in 2011, after 13 years of rapid development, the cumulative global shipments have reached 223,650 pieces, with an annual output value of US$50 million.

Successfully served more than 500 customers in more than 100 countries and regions including Saudi Arabia, UAE, the United States, Europe, Africa, and Southeast Asia

Our Mission

Provide customers with the best quality PLC spare parts and the fastest delivery service to ensure that their industrial automation systems are always in the best operating condition.

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We provide a 1-year warranty service, and we support returns and exchanges for any issues to ensure your rights and interests are fully protected.

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Returns are accepted within 30 days if the product is unused, unopened, and in its original packaging. Please note that return shipping and associated costs are the buyer\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\’s responsibility.

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