1 z 3

Emerson PR9268/300-000 Electrodynamic Velocity Sensor

Emerson PR9268/300-000 Electrodynamic Velocity Sensor

Only 4 item(s) left in stock
  • Manufacturer: Emerson

  • Product No.: PR9268/300-000

  • Country of origin:United States

  • Product Type: Electrodynamic Velocity Sensor

  • Barcode: 8537101190

  • Payment: T/T, Western Union

  • Weight: 1200g

  • Dimensions: 110 mm x 82 mm x 62 mm (H x W x D)

  • Shipping port: Xiamen

  • Warranty: 12 months

Množství
Zobrazit veškeré podrobnosti

Description

The Emerson PR9268/300-000 absolute vibration transducer operates on the seismic low-tuned measuring principle to deliver precise absolute vibration measurements for machinery protection systems. Designed primarily for horizontal measurement applications, the electro-dynamic sensor utilizes a measuring coil suspended on membrane springs as its seismic mass. When operated above the natural resonance frequency, the seismic coil remains stationary, generating a voltage signal directly proportional to the vibration velocity through the relative movement between the resting coil and the moving transducer housing. Housed in durable materials with splash-proof protection, this device provides continuous asset monitoring and machinery protection in hostile industrial monitoring applications. It is fully compatible with professional machinery health protection systems and cards, such as the A6120 bearing vibration monitor and the A6500-xR system rack monitoring modules.

Features

  • Designed for reliable machinery protection systems and continuous vibration monitoring
  • Electro-dynamic mechanical spring-mass sensor operating on a low-tuned seismic principle
  • Configured for horizontal measurement orientation with an operating temperature tolerance up to 100 degC
  • Available with additional cable protection via a built-in armored cable structure
  • Flexible integration options with or without an industrial Harting connector interface

Applications

  • Industrial machinery protection systems
  • Bearing vibration monitoring structures
  • Power generation plants and heavy rotating equipment protection
  • Hostile industrial process environments requiring continuous asset health monitoring

Technical Specifications

Parameter Value
Manufacturer Emerson
Measuring Principle Low tuned measuring principle for absolute vibrations (Electro-dynamic)
Measuring Direction Horizontal
Sensitivity (± 5%) @ 80 Hz / 20 degC / 100 kOhm: 28.5 mV/mm/s (723.9 mV/in/s)
Measurement Range ± 1,500 µm (59,055 µin)
Vibration Amplitude (Nominal Mounting) 3000 µm peak-peak
Limit Stops 4000 µm peak-peak
Frequency Range (± 3dB) 4 to 1,000 Hz (240 to 60,000 cpm)
Natural Frequency 4.5 Hz ± 0.75 Hz (at 20 degC and 100 kOhm load)
Transverse Sensitivity 0.27 at 110 Hz (horizontal mounting)
Damping Factor 0.56 at 20 degC (100 kOhm load), 0.42 at 100 degC (100 kOhm load)
Linearity Error of Sensitivity < 2%
Permissible Acceleration (Measuring) 10 g peak-peak continuous, 20 g peak-peak short-time
Permissible Acceleration (Transverse) 2 g peak-peak
Resistance Measuring Circuit 1875 Ohm ± 10% (resistive load)
Insulation Resistance > 1 MOhm (test voltage 500 V AC)
Inductance < 90 mH
Capacity against Housing < 1.2 nF (inclusive cable without corrugated hose)
Recommended Max Lifting Current 1.8 mA (maximum deviation 30 deg)
Operating Temperature Range -20 to 100 degC (-4 to 180 FX)
Storage/Transport Temperature -40 to +100 degC (without packing), -40 to +70 degC (with packing)
Humidity 0 to 100% Non-Condensing (in housing and plug)
Protection Class IP 55
Housing Material Al Mg Si Pb F28
Connection Cable 3 x 0.5 mm2 shielded, PTFE coating
Minimum Bending Radius 35 mm (for cable and protection hose)
Sensor Net Weight Approximately 260 g (transducer only)

Installation Guidelines

  • Handling Precautions: Do not expose the transducer to hard mechanical shocks and do not drop it. Hard impacts can lead to critical internal damage, causing impairment or total loss of sensitivity.
  • Mounting Surface: Mount the transducer firmly on a flat, clean surface using three through-bores for M6 screws or three blind hole threads for M4 screws (maximum thread depth 10 mm). Firmly tighten the mounting components to ensure accurate vibration transmission and measurement.
  • Mounting Angle Constraints: The transducer is optimized for a horizontal nominal measuring direction (90 deg position). Without a lifting or sinking current, the maximum allowed angular deviation from the nominal position is ±10 deg.
  • Lifting/Sinking Currents: When mounted with an angular deviation between ±60 deg and ±80 deg, a lifting current must be enabled via the system configuration software (maximum 1.8 mA at 60 deg deviation) to position the seismic mass accurately into the center of its working range. If deviation spans ±100 deg to ±120 deg, a corresponding sinking current must be utilized.
  • Cable Routing: Install the sensor connection cable without any structural torsion or elongation. Protect the cable from external environmental hazards. If using a model with a stainless steel armored protection hose, secure the hose with a clamp located as close to the transducer body as possible.
  • Grounding and Shielding: The metal protection hose on armored cable versions is fully insulated from the cable shield and the transducer housing. Ensure the system installation conforms to standard EMC regulations.

Compliance and Certifications

  • ATEX Certification: II 1G Ex ia IIC T6... T4 Ga (Certificate Number: BVS 22 ATEX E 007 X)
  • IECEx Certification: Ex ia IIC T6... T4 Ga (Certificate Number: IECEx BVS 22.0009X)
  • UKCA Certification: Designated explosive atmosphere protection regulations compliance
  • CE Mark: Complies with European Electromagnetic Compatibility (2014/30/EU), ATEX Directive (2014/34/EU), and RoHS Directive (2011/65/EU) standards.

Product Documentation

Technical Datasheet (PDF) Complete specifications and technical drawings.

Technical Datasheet

Emerson PR9268/300-000 Electrodynamic Velocity Sensor

What is the primary measurement orientation for this device?

The device is specified and configured for horizontal absolute vibration measurement applications.

What is the maximum allowed angular deviation without using lifting or sinking currents?

Without supplying a lifting or sinking current, the maximum admissible angular deviation from the nominal horizontal position is +/-10 degrees.

What is the insulation resistance value for the transducer circuit?

The insulation resistance must be higher than 1 MOhm when measured with a test voltage of 500 V AC.

What is the environmental protection rating of the sensor housing?

The sensor housing has an environmental protection class rating of IP 55.

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
Black
Country of origin
United States

Recently Viewed Products

Technical knowledge

Modernizing Bailey INFI 90 Symphony HMIs Running on OpenVMS Alpha

A practical guide to replacing aging Bailey Symphony operator stations running on OpenVMS Alpha. It compares Alpha emulation, OpenVMS x86 migration, OPC re-platforming, and phased ABB modernization.

Why Maintenance Data Is Essential for Industrial Reliability

Maintenance data connects work orders, sensor signals, asset history, costs, and technician knowledge. Used well, it improves planning, reliability, predictive maintenance, spare-parts control, and...

Elektrické pohony navržené jako náhrada hydraulických systémů: Praktická příručka průmyslové automatizace

Tento článek vysvětluje, jak integrované elektrické pohony, jako je řada e-Actuator od SMC, mění průmyslové řízení pohybu nahrazením tradičních pneumatických a hydraulických systémů. Zdůrazňuje...

Matematické operace pomocí OpenPLC pro průmyslové automatizační aplikace

Tento článek vysvětluje, jak PLC systémy provádějí základní matematické operace, jako jsou sčítání, odčítání, násobení, dělení, modulo a umocňování v rámci průmyslové automatizace. Ukazuje, jak tyto...

Pokročilá Booleovská logika s programováním FBD PLC: Praktické průmyslové aplikace nad rámec základní logiky

Článek vysvětluje několik pokročilých funkcí Booleovy logiky používaných v programování PLC nad rámec základních operací AND, OR a NOT. Popisuje, jak se v diagramu funkčních bloků (FBD) využívají...

Booleovská logika v programování PLC: Pochopení logických bran FBD

Booleovská logika je základem každého programu PLC. Od jednoduchých ovládání strojů až po složité průmyslové automatizační systémy určují logické hradla, jak řadiče reagují na měnící se vstupy a...