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Bently Nevada 3300/14 AC Power Supply Module – 3300 Series

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Key Product Information

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Brand
Bently Nevada
Primary Part Number
3300/14
Product Type
AC Power Supply Module
Series / Family
3300 Series
Country of Origin
US
Catalog Category
Power Supplies
Operating Temp.
0 °C to +65 °C
Warranty
12 months from date of shipment
Model confirmed for inquiry 3300/14 Send quantity, destination and urgency. The RFQ form keeps this part number attached.
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Product Overview

Bently Nevada 3300/14 AC Power Supply Module – Backbone of Continuous Machinery Protection

The Bently Nevada 3300/14 is a single-slot, rack-mount AC power supply module engineered exclusively for the 3300 Series Machinery Protection System (MPS). Its primary function within the control loop is to convert wide-range AC mains input into a tightly regulated DC bus that feeds every monitor card installed in the same rack chassis. Without a stable, low-ripple DC rail, the analog front-end circuits of vibration, position, and speed monitors cannot maintain the microvolt-level measurement resolution required by API 670 machinery protection standards. The 3300/14 therefore occupies a foundational position in the signal chain: it is not a peripheral accessory but the electrical foundation upon which all downstream measurement accuracy depends.

In rotating-equipment protection applications — gas turbines, steam turbines, centrifugal compressors, boiler feed pumps, and large induction motors — the power supply module must sustain uninterrupted DC output across transient mains disturbances, brownouts, and high-frequency conducted noise injected by variable-frequency drives operating in the same switchgear room. The 3300/14 addresses these demands through an isolated, regulated topology with sufficient hold-up capacitance to bridge short mains interruptions without triggering a rack-level power fault that would mask a genuine machinery alarm.

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Technical Parameters

Parameter Specification
Part Number 3300/14
Series Bently Nevada 3300 Machinery Protection System
Module Function AC-to-DC Rack Power Supply
AC Input Voltage Range 85 – 264 V AC (universal input, auto-ranging)
AC Input Frequency 47 – 63 Hz
DC Output Bus Regulated DC rail supplying all monitor modules in chassis
Form Factor Single-slot, 3300 Series rack-mount card
Operating Temperature 0 °C to +65 °C
Storage Temperature −40 °C to +85 °C
Relative Humidity 5 % to 95 % non-condensing
Approximate Weight ~2,040 g
Compliance Standards API 670 (4th & 5th Ed.), CE, UL/CSA
Chassis Compatibility All standard 3300 Series rack frames
Warranty 12 months from date of shipment

Hardware Logical Analysis

The 3300/14 employs a switched-mode power conversion topology with galvanic isolation between the AC mains input and the DC output bus. This isolation barrier serves two distinct engineering purposes: it prevents ground-loop currents — common in large industrial facilities where multiple earthing points exist at different potentials — from coupling noise into the measurement circuits, and it provides a defined fault-containment boundary so that a mains-side transient cannot propagate destructive energy into the low-voltage monitor cards.

The input rectification and bulk storage stage is designed to tolerate the harmonic-rich current waveforms produced by nearby variable-frequency drives and soft-starters. The power factor correction network upstream of the switching stage reduces reflected harmonic distortion back onto the plant bus, which is a non-trivial consideration in facilities where multiple protection racks share a common distribution panel with motor-drive equipment.

Output regulation is achieved through a closed-loop PWM controller that samples the DC bus voltage and adjusts switching duty cycle within microseconds. The result is a DC rail with tight load regulation — output voltage deviation remains within a narrow band even when monitor cards simultaneously execute self-test routines that momentarily spike current draw. This deterministic voltage stability is what allows the analog-to-digital converters inside each monitor module to maintain their calibrated full-scale accuracy without requiring individual card-level voltage references.

EMC performance is addressed at the hardware level through a multi-stage input filter comprising common-mode chokes and X/Y-class capacitors. These components attenuate both differential-mode and common-mode conducted emissions in the 150 kHz – 30 MHz band, ensuring the module meets EN 55011 Class A industrial emission limits. The PCB layout routes high-frequency switching nodes away from the low-level analog signal paths on adjacent monitor cards, and the chassis slot connector includes a dedicated shield ground pin that bonds the module’s enclosure directly to the rack frame, providing a low-impedance return path for capacitively coupled interference.

Hold-up time — the duration the DC output remains within regulation after a complete mains loss — is sized to exceed the minimum interval required by the 3300 Series system firmware to log a power-fault event and assert the appropriate relay outputs before the bus collapses. This sequenced shutdown behavior prevents ambiguous alarm states where a power interruption could be misinterpreted as a machinery trip.

System Integration Benefits

  • Deterministic DC Bus Stability: Tight closed-loop regulation ensures all monitor cards in the rack operate from a voltage rail within specification at all times, preserving the calibrated accuracy of vibration, position, and speed measurements without card-level compensation.
  • Universal AC Input Acceptance: The 85–264 V AC auto-ranging input eliminates the need for external step-down transformers or tap-selection when deploying racks across facilities with 110 V, 220 V, or 240 V plant distribution systems.
  • Galvanic Isolation for Ground-Loop Rejection: The isolation barrier between mains and DC bus prevents ground-potential differences between the protection rack and field sensor cabling from introducing common-mode noise into the measurement chain.
  • Conducted EMI Suppression: Multi-stage input filtering attenuates switching-frequency harmonics, protecting adjacent instrumentation on the same distribution panel from interference generated by the power supply’s own conversion process.
  • Controlled Hold-Up Sequencing: Sufficient bulk capacitance bridges short mains interruptions and enables an orderly firmware-managed shutdown sequence, preventing false machinery trips during momentary power disturbances.
  • API 670 Compliance: The module’s electrical characteristics are validated against the API 670 standard for machinery protection systems, satisfying the power-supply requirements specified for continuous monitoring of critical rotating equipment in oil & gas and power-generation facilities.
  • Single-Slot Rack Economy: Occupying only one slot in the 3300 Series chassis, the 3300/14 maximizes the number of available monitor card positions, allowing a single rack to accommodate the maximum number of measurement channels per unit of panel space.
  • Wide Operating Temperature Range: Rated operation from 0 °C to +65 °C covers the thermal envelope of enclosed electrical rooms in tropical refineries, arctic LNG terminals, and offshore platform control cabinets without requiring supplemental cooling for the power supply module itself.
  • Diagnostic Transparency: The module’s power-fault output signal is monitored by the 3300 Series system controller, enabling the DCS or SCADA layer to distinguish between a genuine machinery protection trip and a rack power anomaly — a critical distinction for post-event root-cause analysis.
  • Drop-In Replacement Compatibility: The 3300/14 is mechanically and electrically interchangeable with all standard 3300 Series rack frames, allowing field replacement without chassis modification, re-wiring, or firmware reconfiguration.

Quality Assurance & Global Logistics

Every 3300/14 unit supplied through siemensplc.com is sourced as genuine Bently Nevada original equipment. Each module undergoes incoming inspection that includes functional power-on verification, DC output voltage measurement under load, and visual inspection of connector contacts and PCB condition. Units with evidence of counterfeit markings, re-labeling, or non-original internal components are rejected at intake and never listed for sale.

Our inventory is held at a climate-controlled warehouse in Xiamen, China — a logistics hub with direct access to Xiamen Gaoqi International Airport and the Port of Xiamen, both of which support daily freight departures to major industrial destinations across Southeast Asia, the Middle East, Europe, and the Americas. Standard export documentation — commercial invoice, packing list, and certificate of origin — is prepared for every shipment. DHL Express, FedEx International Priority, and UPS Worldwide Express are the primary carriers for time-sensitive orders, with typical transit times of 3–5 business days to most destinations. Sea freight consolidation is available for bulk orders where lead time permits.

All units are shipped in anti-static packaging with foam-lined outer cartons rated for the mechanical shock and vibration levels specified in ISTA 2A transit testing. Export classification and HS code documentation are prepared in compliance with Chinese customs regulations and the import requirements of the destination country. A 12-month warranty covering manufacturing defects and functional failure under normal operating conditions is provided with every unit.

Contact Information

Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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