$2,640.00 Original price was: $2,640.00.$1,399.00Current price is: $1,399.00.
The Bently Nevada 84152-01 is a seismic sensor (accelerometer) designed for measuring vibration in industrial machinery, providing reliable, low-noise acceleration data to support machinery condition monitoring and protection in harsh operational environments.
| Parameter | Details |
|---|---|
| Model | 84152-01 |
| Manufacturer | Bently Nevada |
| Product Type | Seismic Accelerometer |
| Sensing Technology | Piezoelectric (for low-noise acceleration measurement) |
| Measurement Axis | Single-axis (vertical or horizontal, configurable via mounting) |
| Sensitivity | 100 mV/g (±5% tolerance at 100 Hz) |
| Frequency Range | 0.2 Hz to 10,000 Hz |
| Measurement Range | ±50 g peak |
| Resonant Frequency | ≥ 30,000 Hz |
| Output Type | Voltage-output (differential, low-impedance) |
| DC Bias Voltage | 2.5 V DC (typical, for signal conditioning reference) |
| Noise Floor | ≤ 0.0005 g RMS (at 1 Hz to 10 kHz bandwidth) |
| Operating Temperature Range | -55 °C to +121 °C (-67 °F to +250 °F) |
| Storage Temperature Range | -65 °C to +150 °C (-85 °F to +302 °F) |
| Housing Material | Stainless Steel (AISI 316L, corrosion-resistant for harsh industries) |
| Mounting Type | 1/4-28 UNC threaded stud (for secure attachment to machinery) |
| Connector Type | M12 x 1 4-pin male connector (IP67-rated for dust/water protection) |
| Dimensions (Diameter x Length) | 25.4 mm (1.0 in) x 50.8 mm (2.0 in) |
| Weight | 0.15 kg (0.33 lb) |
| IP Rating | IP67 (ingress protection against dust and temporary water immersion) |
| Shock Resistance | 1000 g peak (1 ms duration, half-sine wave) |
| Compatibility | Works with Bently Nevada 3500, 2300, and 1900 series monitoring systems |
| Applications | Vibration monitoring of pumps, fans, gearboxes, motors, and compressors in oil and gas, power generation, and manufacturing industries |
The BENTLY 3500 system is a professional machinery protection and condition monitoring solution widely used in industries like oil and gas, power generation, and petrochemicals. It adopts a modular design, allowing flexible configuration of monitoring modules (e.g., vibration, temperature, and speed modules) to track key operating parameters of rotating equipment such as turbines and compressors. By collecting and analyzing data in real time, it can promptly identify issues like equipment imbalance or bearing wear, trigger alarms or shutdowns when thresholds are exceeded, and effectively prevent unexpected equipment failures to ensure production continuity.

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