AC DC Configurable Power Supplies (Factory Assembled)

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VA-E1666394

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MP5-775487

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PC3-12-16257-G

PC3-12-16257-G

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PM2-12-10079-G

PM2-12-10079-G

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PS1-10-15997

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PS1-01-9950

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PM3-03-512-2

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VA-D1139643

VA-D1139643

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MM2-135812

MM2-135812

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VA-D2260624

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MX5-7514821-G

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PM4-13-9408-G

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VA-K2734261E

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VIPAC ARRAY

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MP4-76598

MP4-76598

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MX1-7417527-2

MX1-7417527-2

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PC3-30-651

PC3-30-651

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MX6-7617519-2

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PC4-40-13723-G

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AC DC Configurable Power Supplies (Factory Assembled)

1. Overview

AC DC Configurable Power Supplies are factory-assembled power conversion devices that can be customized for specific voltage, current, and functional requirements. These power supplies support both AC and DC input sources and deliver stable DC output through modular design or pre-defined configurations. They play a critical role in modern electronics by enabling flexible power management solutions for industrial automation, medical equipment, telecommunications, and test & measurement systems. Their adaptability reduces development time while ensuring compliance with global safety and efficiency standards.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Modular Configurable PSUHot-swappable modules, parallel operation capabilityData center servers, redundant power systems
Rack-Mountable PSUStandard 19" form factor, front-access I/OTelecom equipment, broadcast systems
Embedded Configurable PSUCustom mechanical dimensions, direct PCB mountingMedical imaging devices, industrial controllers
Programmable PSUDigital control via UART/SPI, remote monitoringAutomated test equipment, R&D labs

3. Structure and Components

Typical construction includes:

  • Enclosure: Aluminum alloy or reinforced plastic with IP20-IP67 protection ratings
  • Power Stage: Based on LLC resonant or active clamp flyback topology
  • Control Circuitry: Digital signal processors (DSP) or microcontrollers
  • Cooling System: Intelligent fan or conduction cooling
  • I/O Interfaces: AC input filter, DC output terminals, communication ports
  • Protection Circuits: OVP, OCP, OTP, and short-circuit protection

4. Key Technical Specifications

ParameterTypical RangeImportance
Input Voltage Range85-264V AC / 120-370V DCEnsures global compatibility
Output Power50W-3kWDetermines system scalability
Efficiency85%-95% (80 PLUS certified)Impacts thermal management
Output Voltage Accuracy 0.5% to 2%Guarantees load stability
Ripple & Noise<30mV pp (20MHz bandwidth)Ensures signal integrity
MTBF50,000-200,000 hoursReliability indicator

5. Application Fields

Primary industries include:

  • Telecommunications: 5G base stations, optical network units
  • Medical: MRI scanners, patient monitoring systems
  • Industrial: PLC controllers, CNC machines
  • Test & Measurement: ATE systems, power analyzers
  • Renewables: Solar inverters, energy storage systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TDK-LambdaHWS4000 series4000W, 80 PLUS Titanium
Delta ElectronicsDPS-1200FB1200W, AI-based thermal control
Mean WellDRP-240 series240W, 5kV isolation
CoselPBY2Q2405240W, aviation-grade reliability
ArtesynPFH1500-481500W, hot-swap support

7. Selection Guidelines

Key considerations:

  • Power Requirements: Calculate peak/sustained load with 20% safety margin
  • Environmental Conditions: Operating temperature (-40 C to +70 C), humidity
  • Certifications: UL/IEC/EN standards for target markets
  • Control Interface: Analog/digital control requirements
  • Form Factor: Space constraints and cooling method
  • Redundancy: N+1 configuration for critical systems
Example: For semiconductor test equipment, select programmable PSU with <0.1% voltage regulation and SCPI command support.

8. Industry Trends

Current development directions:

  • Integration of GaN/SiC devices for >96% efficiency
  • Smart power supplies with IoT connectivity (e.g., PMBus interface)
  • Higher power density (>50W/in ) through advanced packaging
  • Compliance with EU CoC Tier 2 and Energy Star 8.0 standards
  • Customizable AI-driven thermal management algorithms
Market forecasts predict 7.2% CAGR through 2028, driven by EV charging infrastructure and edge computing demands.

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