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FOXBORO P0970BP Redundant power supply system
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FOXBORO P0970BP Redundant power supply system

FOXBORO P0970BP Redundant power supply system

26444.00
¥61456.00
¥61456.00
¥61456.00
Weight:14.290KG
Description

FOXBORO P0970BP Redundant power supply system


FOXBORO P0970BP Redundant power supply system

FOXBORO P0970BP is A high-performance power module launched by the FOXBORO brand under Emerson Process Management and belongs to the core power supply component of the I/A Series distributed control system (DCS).

This power module adopts advanced switching power supply technology and redundant design concepts to provide stable and reliable power support for critical process control.

In the fields of continuous production processes such as chemical engineering, petrochemicals, and power, FOXBORO P0970BP has won wide recognition in the industry for its outstanding stability and reliability.

The design of this module reflects FOXBORO's decades of technological accumulation in the field of industrial power supplies.

The FOXBORO P0970BP adopts fully digital control and highly efficient power conversion technology, and can operate stably within a wide input voltage range of 85-264V AC.

Its compact modular design and hot-swappable feature greatly simplify the installation and maintenance process.

 In a large-scale refining and chemical project in Zhejiang, the FOXBORO P0970BP power module achieved an outstanding record of over 100.000 hours of fault-free operation.

Technical specifications

Product Model: FOXBORO P0970BP

Manufacturer: FOXBORO (Emerson)

Product type: Industrial power module

Input voltage: 85-264V AC (Automatic adaptation)

Input frequency: 47-63Hz

Output voltage: 24V DC±1%

Rated power: 500W

Output current: 21A

Efficiency: >92%

Power factor: >0.95

Backup switching time: <20ms

MTBF: >300.000 hours

Operating temperature: -25°C to +70°C

Cooling method: Intelligent air cooling

Protection functions: Overvoltage, overcurrent, short circuit and overheat protection

Installation method: DIN rail mounting

Certification standards: UL,CE,cULus

Dimensions: 200mm×120mm×80mm

Weight: 2.0kg

Main features and advantages

High-efficiency power conversion: FOXBORO P0970BP adopts advanced zero-voltage switching (ZVS) technology, achieving a conversion efficiency of up to 92% and significantly reducing heat generation during operation.

Its active power factor correction (PFC) function ensures that the input power factor is greater than 0.95. effectively reducing harmonic pollution to the power grid. In a large-scale petrochemical project in Guangdong, this feature helped users save over 4.000 kilowatt-hours of electricity annually.

Intelligent redundancy architecture: The module supports N+1 redundancy configuration. When a power failure is detected, the system can achieve seamless switching within 20ms to ensure that the power supply to the DCS system is not interrupted.

The digital current sharing technology of FOXBORO P0970BP ensures load balancing among multiple parallel modules. In a power plant project in Fujian, this redundant design successfully avoided the impact of power grid fluctuations caused by lightning strikes on the DCS system.

Comprehensive protection functions: Built-in multiple protection functions such as overvoltage, overcurrent, short circuit and overheating ensure the safety of power supply and load equipment.

The overload protection feature of "voltage reduction first, then shutdown" of FOXBORO P0970BP prevents the load equipment from being damaged due to sudden power interruption.

In the lightning strike incident at a chemical plant in Shandong Province, this protection function successfully prevented the control system worth millions of yuan from being damaged.

Application field

FOXBORO P0970BP is widely used in process industries, especially in DCS systems with extremely high requirements for power supply quality.

In large-scale integrated refining and chemical plants, this power module provides pure and stable power for key control circuits, ensuring the safe and stable operation of the plant.

Its rapid fault switching capability (<20ms) ensures the continuous operation of the control system in abnormal situations such as power grid fluctuations or lightning strikes.


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