- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
190501-08-00-00 |
Minimum Order Quantity: |
1 |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
5-7 days |
Payment Terms: |
T/T |
Supply Ability: |
In stock |
Quick Detail
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Mounting Hardware Option: |
Plate Stud 3/8-in 24 to 1/2-in 20 |
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Connection Option: |
MIL-C-5015 connection interface |
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Agency Approval Option: |
No Approvals |
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Dimension: |
8.5x3.5x3cm |
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Weight: |
0.32kg |
Description
The 190501-08-00-00 Velomitor CT Velocity Transducer is a precision piezoelectric velocity sensor engineered for advanced industrial automation applications. Designed as a low-frequency variant of the standard Velomitor series, this transducer accurately monitors casing vibration velocity on cooling tower fans, air-cooled heat exchangers, and industrial fan assemblies operating at speeds from 90 to 300 rpm. With a sensitivity of 3.94 mV/mm/s (100 mV/in/s) ±5%, and a wide frequency response range of 3.0 Hz to 900 Hz ±1.0 dB, or 1.5 Hz to 1.0 kHz ±3.0 dB, the Velomitor CT precisely captures both vibration amplitude and frequency signals. Its robust 316L stainless steel housing and MIL-C-5015 2-pin connector ensure reliable operation under harsh environmental conditions, including temperatures from -40°C to +85°C, 100% condensing humidity, and shock limits up to 5000 g pk. The transducer’s flexible mounting design accommodates any orientation on a 33 mm diameter surface, supporting consistent real-time vibration monitoring critical for predictive maintenance and automation system optimization. The 190501-08-00-00 Velomitor CT Velocity Transducer is ideal for engineers seeking accurate, durable, and high-performance vibration sensing in industrial automation setups.
Applications
The 190501-08-00-00 Velomitor CT Velocity Transducer is primarily used for monitoring vibration velocity on cooling tower fans, air-cooled heat exchangers, and industrial fan assemblies within automated systems. Its low-frequency design enables precise measurement of vibration amplitudes and frequencies produced by fan motors and speed reducers operating between 90 and 300 rpm. This transducer is ideal for predictive maintenance programs in industrial automation, allowing engineers to detect early signs of mechanical wear or imbalance in rotating equipment. The robust 316L stainless steel construction and MIL-C-5015 connector make it suitable for harsh operating environments, including high humidity, extreme temperatures, and high shock conditions, ensuring reliable real-time vibration monitoring for performance optimization.
Specifications
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Sensitivity: |
3.94 mV/mm/s (100 mV/in/s) ±5% |
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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 |
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Temperature Sensitivity: |
-8% to +5% typical over the operating temperature range |
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Case Material: |
316L stainless steel |
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Connector: |
2-pin 316L stainless steel MIL-C-5015, top |
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Mounting Torque: |
4.5 N-m ± 0.6 N-m (40 in– lbf ± 5 in-lbf) |
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Mounting Angle: |
Any orientation |
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Mounting Surface: |
33 mm diameter (1.3 in diameter) |
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Operating Temperature: |
-40°C to +85°C (-40°F to +185°F) |
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Storage Temperature: |
-40°C to +100°C (-40°F to +212°F) |
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Shock Limit: |
5000 g pk, maximum |
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Humidity Limit: |
100% condensing, non-submerged |
Competitive Advantage
The Velomitor CT Velocity Transducer 190501-08-00-00 offers superior sensitivity (3.94 mV/mm/s) and a wide frequency response range, providing accurate vibration detection across low-frequency industrial applications. Its flexible mounting orientation and compact dimensions (8.5 x 3.5 x 3 cm) simplify integration into existing automation setups. The transducer withstands extreme conditions, including -40°C to +85°C operation, 100% condensing humidity, and 5000 g shock loads, ensuring durability in demanding industrial environments. Compared to standard piezo-velocity sensors, the Velomitor CT provides enhanced low-frequency performance, high measurement accuracy, and long-term reliability, making it a preferred choice for engineers focused on predictive maintenance, process safety, and operational efficiency in automated systems.