1 of 3

Bently Nevada 3300/20 Dual Thrust Position Monitor

Bently Nevada 3300/20 Dual Thrust Position Monitor

Only 5 item(s) left in stock
  • Manufacturer: Bently Nevada

  • Product No.: 3300/20

  • Country of origin:United States

  • Product Type: Dual Thrust Position Monitor

  • Barcode: 8537101190

  • Payment: T/T, Western Union

  • Weight: 650g

  • Dimensions: 5cm x 20cm x 33cm

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantity
View full details

The Bently Nevada 3300/20 is designed to provide early warning of thrust bearing failure by continuously monitoring two independent channels of shaft axial positionIt is highly recommended to use a 2-out-of-2 (AND voting) configuration to prevent false trips caused by transducer failure.

Technical Specifications

1. Input & Signal Processing

  • Signal Input: Accepts one or two proximity probe signal inputs.
  • Input Impedance: 10 kΩ.
  • Sensitivity: User-programmable for 200 mV/mil (8 V/mm) or 100 mV/mil (4 V/mm).
  • Accuracy: Within ±0.33% of full-scale typical, ±1% maximum at +25°C (+77°F).
  • Nominal Consumption: 1.5 watts.

2. Outputs

  • Recorder Outputs: User-programmable for +4 to +20 mA, 0 to -10 Vdc, or +1 to +5 Vdc.
  • Buffered Transducer Outputs: One coaxial connector per channel on the front panel and one terminal connection per channel on the rear.
  • Output Impedance: 100 Ω.

3. Alarms & Displays

  • Alarm Setpoints: Alert and Danger alarms are bi-directional and digitally adjustable from 0 to 100% of full-scale.
  • Meter Display: Non-multiplexing vertical bargraph LCD per channel; includes a third center scale for Probe Gap.
  • OK LED: Indicates the condition of the monitor, transducers, and field wiring.

Ordering Information (Suffix Codes)

Format: 3300/20-AXX-BXX-CXX-DXX-EXX

A: Full-scale Range Option

  • 01: 25-0-25 mils

  • 02: 30-0-30 mils

  • 03: 40-0-40 mils

  • 05: 50-0-50 mils

  • 06: 75-0-75 mils

  • 11: 0.5-0-0.5 mm

  • 12: 1.0-0-1.0 mm

  • 13: 2.0-0-2.0 mm

B: Transducer Input Option

  • 01: 3300 or 7200 Proximitor® systems, 200 mV/mil

  • 02: 7200 11 mm (not 3300XL) Proximitor system, 100 mV/mil

  • 03: 7200 14 mm or 3300 HTPS Proximitor systems, 100 mV/mil

  • 04: 3000 Proximitor® 200 mV/mil (Requires -18 Vdc supply)

  • 05: 3300XL NSv and 3300 RAM Proximitor Sensor, 200 mV/mil

C: Alarm Relay Option

  • 00: No Relays

  • 01: Epoxy-sealed

  • 02: Hermetically-sealed

  • 03: Quad Relay (Epoxy-sealed only)

  • 04: Spare Monitor - No SIM/SIRM

D: Agency Approval Option

  • 00: Not required

  • 01: CSA/NRTL/C

  • 02: ATEX self-certification

E: Safety Barrier Option

  • 00: None

  • 01: External

  • 02: Internal

Field-programmable Jumper Options

  • Danger Relay Voting: AND voting (factory default) or OR voting.
  • Danger Relay Mode: Normally de-energized (factory default) or Normally energized.
  • Alarm Time Delay: 0.1 sec, 1 sec, 3 sec, or 6 sec.
  • Thrust Direction: Toward probe or Away from probe

Product Documentation

Technical Datasheet (PDF) Complete specifications and technical drawings.

Technical Datasheet

Bently Nevada 3300/20 Dual Thrust Position Monitor

正在加载 PDF,请稍候…

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Color pattern
Silver Greyish White
Country of origin
United States

Recently Viewed Products

Technical knowledge

Guide to Robotic Grippers: From Delicate Handling to Heavy-Duty Automation

Modern robotic grippers are evolving beyond traditional mechanical jaws. From gecko-inspired adhesive systems and soft food-grade grippers to AI-powered warehouse tools, advanced gripping...

Throwback: How Early Electric Motors Changed Underground Mining

From rope-driven DC compressors to battery-powered mine carts, early mining operations marked a turning point in industrial electrification. This article explores how electric motors transformed...

Factory I/O: A Modern PLC Simulation Tool for Industrial Automation Training

Factory I/O is transforming PLC education by delivering immersive 3D industrial simulations for students, engineers, and maintenance teams. The platform bridges the gap between theory and real-world...

Programming Single-Axis Motion Cycles on a CMZ Servo Drive

This tutorial examines how onboard PLC functionality inside a CMZ SBD servo drive can execute standalone motion programs, including homing logic, position control, and cyclic axis movement without an...

Single-Axis Motion Control Setup with CMZ Servo Drives

This tutorial explores the commissioning of a single-axis servo motion system using a CMZ SBD drive, covering hardware setup, axis scaling, homing configuration, and safe motion verification for...

Mitsubishi FX PLC Integration With FR-D700 VFD and HMI Control

This tutorial explains how Mitsubishi FX PLCs integrate with FR-D700 VFDs and HMI panels for forward/reverse motor control. It covers wiring logic, parameter configuration, ladder programming, and...