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Epro PR9268/205-000 Electric Speed Sensor

Epro PR9268/205-000 Electric Speed Sensor

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Brand:Epro PLC
Item No.:PR9268/205-000
Product Origin:Germany
Product Dimensions:78 × 58 mm
Product Weight:0.93 kg
Payment:T/T, Western Union, Credit Card
Goods_stock:15
Shipping Port:Xiamen, China
Lead Time:1-3 Days
Condition:Brand New And Original
Warranty:1 Year
Certificate:COO

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Introduction

The Epro PR9268/205-000 is an industrial electrodynamic speed sensor designed for accurate monitoring of rotational motion in critical machinery. It is commonly used in turbine and compressor systems where precise speed feedback is essential for safe and efficient operation.


Technical Specifications

ParameterSpecification
Product ModelPR9268/205-000
Sensor TypeElectrodynamic speed / vibration sensor
Measurement PrincipleElectrodynamic induction
Speed RangeSystem dependent (industrial turbine class)
Frequency Range4–1000 Hz (typical PR9268 series range)
Operating Temperature-20°C to +100°C
Output SignalAnalog vibration/speed signal
Protection ClassIP55 (typical PR9268 series)
MaterialIndustrial metal housing
Weight0.93 kg
Dimensions78 × 58 mm

Recommended Related Models

ModelProduct Name
PR9268/201-000Epro Electrodynamic Velocity Sensor Vertical Type
PR9268/203-000Epro Electrodynamic Velocity Sensor Standard Type
PR9268/301-000Epro Electric Speed Sensor 0–5000 RPM
PR9268/305-000Epro Dual Output Speed Sensor

Popular Related Models

ModelProduct Name
PR9268/205-000Epro Electric Speed Sensor Industrial Type
PR9268/201-000Epro Velocity Sensor Turbomachinery Version
PR9268/303-000Epro Speed Sensor 78×58 mm Compact Type
PR9268/302-000Epro High-Precision Speed Sensor


Applications

• Turbines and power generation systems
Used for monitoring rotational speed and vibration in steam, gas, and hydro turbine systems.

• Compressors and pumps
Provides speed feedback and vibration monitoring for rotating equipment in process industries.

• Industrial machinery protection systems
Helps detect overspeed, imbalance, and abnormal mechanical behavior.

• Condition monitoring systems
Supports continuous machine health monitoring in critical industrial environments.

• Oil and gas equipment
Used in rotating assets operating under harsh environmental conditions.

• Heavy industrial automation systems
Ensures stable speed measurement for process control and safety systems.


Key Advantages

• Non-contact electrodynamic measurement
Provides reliable speed/vibration sensing without mechanical wear.

• Stable signal output
Delivers consistent performance for long-term industrial operation.

• High resistance to harsh environments
Suitable for vibration, temperature variation, and industrial noise conditions.

• Wide industrial applicability
Works across turbines, compressors, pumps, and general rotating machinery.

• Fast dynamic response
Accurately captures changes in rotational speed and vibration behavior.

• Maintenance-free operation
No contact parts reduce wear and service requirements.


Technical FAQs

Q1: What does the PR9268/205-000 measure?
It measures rotational speed and vibration in rotating machinery.

Q2: Is it suitable for turbine applications?
Yes, it is widely used in turbine monitoring systems.

Q3: Does it require external power?
It operates based on electrodynamic principles and typically does not require external excitation for sensing.

Q4: What industries use it most?
Power generation, oil & gas, and industrial manufacturing sectors.

Q5: Can it measure low-speed rotation?
Yes, within its designed frequency range for industrial machinery.

Q6: Is it suitable for harsh environments?
Yes, it is designed for industrial temperature and vibration conditions.

Q7: Does it support continuous monitoring?
Yes, it is intended for 24/7 operation.

Q8: Does it require calibration frequently?
No, it is designed for long-term stability with minimal maintenance.

Q9: What is its main function in a system?
It provides speed and vibration feedback for machine protection.

Q10: Is it affected by mechanical wear?
No, because it uses non-contact measurement technology.


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