Description
Bently 3500/20‑01‑01‑00 (125760‑01)
- Key Features: High‑speed synchronous transient‑data acquisition; collects waveform, orbit and vector dynamic data; synchronizes sampling with Keyphasor pulse signal; internal termination circuit; supports data output to System 1 diagnostic platform; works cooperatively with all monitor modules inside rack; hot‑swap capable.
- Technical Specifications & Performance Parameters
- Power consumption: 8.1 W typical
- Operating temperature: 0 ℃ ~ +60 ℃
- Storage temperature: ‑40 ℃ ~ +85 ℃
- Data sampling rate: high‑synchronous multi‑channel sampling
- Weight: 0.50 kg
- Agency approval: base version without hazardous‑area certification
- Material Composition: FR‑4 high‑performance multilayer printed circuit board; high‑speed FPGA signal‑processing chip; precision timing circuit components; gold‑plated backplane edge connector; metal front‑panel with LED status indicators; internal termination circuit components.
- Structural Features: Full‑height plug‑in rack‑module mechanical construction; front‑panel LED indicators for power, bus and transient‑data status; rear‑side gold‑plated edge connector connects to rack backplane bus; signal termination circuit integrated inside module without external I/O wiring; mechanical locking latch for rack‑slot fixation.
- Working Principle: Module receives Keyphasor timing trigger signal and multi‑channel measurement raw data through rack backplane bus. It implements synchronous high‑speed sampling for multi‑channel dynamic vibration waveforms, rotor orbit and vector data. It buffers high‑resolution transient diagnostic data and transmits data stream to external diagnostic host equipment.
- Application Scenarios: Rotor dynamic fault diagnosis for turbine‑compressor units; rotor orbit and waveform data acquisition; high‑speed transient‑data collection for machinery fault event capture; petrochemical and power‑plant 3500 rack cooperating with System 1 diagnostic workstation.
- Installation Requirements: Install module into dedicated full‑height slot of 3500 rack; engage mechanical locking latch; complete rack configuration software setup for transient‑data acquisition parameters; confirm Keyphasor signal availability inside rack; establish data connection with external diagnostic host device.
- Usage Notes: Avoid unauthorized hot‑swap operation; static‑electricity protection is mandatory during module handling; observe front‑panel LED status during routine inspection; back‑up rack configuration file after parameter adjustment; ensure rack backplane bus operates normally.




