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190501 00 00 04velomitor ct velocity transducer-0

190501 Velomitor CT Transducer

Home >  Products >  For Bently Nevada >  190501 Velomitor CT Transducer

190501-00-00-04 Velomitor CT Velocity Transducer

  • Overview
  • Quick Detail
  • Description
  • Applications
  • Specifications
  • Competitive Advantage
  • Recommended Products
Overview

Place of Origin:

USA

Brand Name:

Bently Nevada

Model Number:

190501-00-00-04

Packaging Details:

Original new Factory Sealed

Delivery Time:

5-7 days

Payment Terms:

T/T

Supply Ability:

In stock

Quick Detail

Mounting Hardware Option:

No stud

Connection Option:

MIL-C-5015 connection interface

Agency Approval Option:

CSA/NRTL/C (Class I, Division 1), ATEX/IECEx/CSA (Class I, Zone 0/1)

Dimension:

8.3x3.5x3.2cm

Weight:

0.3kg

Description

The 190501-00-00-04 Velomitor CT Velocity Transducer is a low-frequency velocity sensor designed for automated vibration monitoring on cooling tower and air-cooled heat exchanger fans. The 190501-00-00-04 Velomitor CT Velocity Transducer features a 3.94 mV/mm/s sensitivity, 3 Hz to 900 Hz frequency response, and 316L stainless steel housing with MIL-C-5015 2-pin connector. Operating from -40°C to +85°C, the 190501-00-00-04 Velomitor CT Velocity Transducer measures fan casing vibration and motor-generated frequencies up to 300 rpm. With 5000 g shock resistance and 100% condensing humidity tolerance, this transducer integrates directly into automated monitoring systems, providing real-time vibration velocity data for predictive maintenance and fan performance control.

Applications

Measure Fan Casing Vibration on Cooling Towers
The 190501-00-00-04 Velomitor CT Velocity Transducer captures vibration velocity of fan casings at 100–300 rpm, providing real-time data to automated monitoring systems and enabling immediate detection of abnormal fan operation.

Monitor Air-Cooled Heat Exchanger Fans
Using the 190501-00-00-04 Velomitor CT Velocity Transducer, automated systems can track fan vibration amplitudes generated by motor and speed reducer operation, supporting predictive maintenance and performance optimization.

Integrate with Automated Fan Control Systems
The 190501-00-00-04 Velomitor CT Velocity Transducer outputs a 3.94 mV/mm/s signal via MIL-C-5015 connection, directly feeding industrial automation controllers to adjust fan speed or shut down equipment if vibration thresholds are exceeded.

Detect Motor Imbalances in Rotating Equipment
The 190501-00-00-04 Velomitor CT Velocity Transducer measures low-frequency vibrations caused by motor imbalances, enabling automated corrective actions before mechanical damage occurs.

Specifications

Sensitivity:

3.94 mV/mm/s (100 mV/in/s) ±5%

Frequency Response:

3.0 Hz to 900 Hz (180 to 54,000 cpm) ±1.0 dB or 1.5 Hz to 1.0 kHz (90 to 60,000 cpm) ±3.0 dB

Temperature Sensitivity:

-8% to +5% typical over the operating temperature range

Case Material:

316L stainless steel

Connector:

2-pin 316L stainless steel MIL-C-5015, top

Mounting Torque

4.5 N-m ± 0.6 N-m (40 in– lbf ± 5 in-lbf)

Mounting Angle

Any orientation

Mounting Surface

33 mm diameter (1.3 in diameter)

Operating Temperature:

-40°C to +85°C (-40°F to +185°F)

Storage Temperature:

-40°C to +100°C (-40°F to +212°F)

Shock Limit:

5000 g pk, maximum

Humidity Limit:

100% condensing, non-submerged

Competitive Advantage

High-Precision Velocity Measurement
The 190501-00-00-04 Velomitor CT Velocity Transducer provides accurate 3.94 mV/mm/s output and 3 Hz to 900 Hz frequency response, capturing low-frequency fan and motor vibrations for automation control.

Durable Construction for Industrial Environments
The 316L stainless steel housing of the 190501-00-00-04 Velomitor CT Velocity Transducer withstands -40°C to +85°C, 5000 g shocks, and 100% condensing humidity, ensuring reliable operation in automated monitoring setups.

Easy Mounting and Connection
With a 33 mm mounting surface, 3/4-14 NPT or torque-controlled installation, and MIL-C-5015 2-pin connector, the 190501-00-00-04 Velomitor CT Velocity Transducer simplifies integration into existing automated systems.

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