AC DC Configurable Power Supply Modules

Image Part Number Description / PDF Quantity Rfq
CME

CME

UltraVolt

CONFG DC PWR MOD 24V(22.8-25.2V)

7

CMC-W01

CMC-W01

UltraVolt

CONFIG DC PWR MOD 24V WIDE ADJ

20

CMA

CMA

UltraVolt

CONFIG DC PWR MOD 5V (2.5-6V)

28

XGG

XGG

UltraVolt

CONFIG DC PWR MOD 2.5V(1.5-3.6V)

44

XG7

XG7

UltraVolt

CONFIG DC PWR MOD 24V (5-28V)

199

XGL

XGL

UltraVolt

CONFIG DC PWR MOD 48V (24-58V)

22

CMCC

CMCC

UltraVolt

CONFIG DC PWR MOD 24V (15-28V)

8

XGM

XGM

UltraVolt

CONFIG DC PWR MOD 5V (3.2-6V)

0

XG5

XG5

UltraVolt

CONFIG DC PWR MOD 48V (28-58V)

400

XGLC

XGLC

UltraVolt

CONFIG DC PWR MOD 48V (24-58V)

6

CMDC

CMDC

UltraVolt

CONFIG DC PWR MOD 48V (28-58V)

22

XG4

XG4

UltraVolt

CONFIG DC PWR MOD 24V (12-30V)

108

XGH

XGH

UltraVolt

CONFIG DC PWR MOD 5V (3.2-6V)

45

XG1

XG1

UltraVolt

CONFIG DC PWR MOD 2.5V(1.5-3.6V)

162

XGHC

XGHC

UltraVolt

CONFIG DC PWR MOD 5V (3.2-6V)

7

XGR

XGR

UltraVolt

CONFIG DC PWR MOD 24V (12-30V)

91

XGRC

XGRC

UltraVolt

MODULE POWER

196

XGT

XGT

UltraVolt

CONFIG DC PWR MOD 48V (28-58V)

566

XGDC

XGDC

UltraVolt

CONFG DC PWR MOD 48V(38.5-50.4V)

19

XG4C

XG4C

UltraVolt

CONFIG DC PWR MOD 24V (12-30V)

109

AC DC Configurable Power Supply Modules

1. Overview

AC-DC configurable power supply modules are electronic devices that convert alternating current (AC) from mains to regulated direct current (DC) outputs. They support adjustable voltage/current settings and are available in external (desktop/wall-mount) or internal (board-mounted) configurations. These modules are critical for powering modern electronics, enabling flexible power management in industrial, medical, and communication systems.

2. Major Types and Functional Classification

TypeFeaturesApplications
Fixed Output ModulesPre-set DC output voltages (e.g., 5V, 12V)Digital signage, IoT devices
Adjustable Output ModulesVoltage/current tunable via potentiometer or digital interfaceTest equipment, automation systems
Multi-Channel ModulesMultiple isolated DC outputsIndustrial controllers, robotics
High-Density ModulesCompact size with high power-to-volume ratioTelecom servers, 5G infrastructure
Wide Input Range ModulesAccept 85-264V AC universal inputGlobal medical devices, aerospace systems

3. Structure and Components

Typical construction includes:

  • Metal/plastic enclosure with EMI shielding
  • Primary side: AC input filter, bridge rectifier, PFC circuit
  • Transformer with primary/secondary isolation
  • Secondary side: DC-DC converter, output filter capacitors
  • Control circuitry: PWM controller, feedback optocoupler
  • Protection features: OVP, OCP, OTP, SCP

4. Key Technical Specifications

ParameterImportanceTypical Values
Input Voltage RangeDetermines global compatibility85-132V / 170-264V AC
Output PowerDefines load capacity10-1500W
EfficiencyEnergy conversion ratio85-95%
Output RippleAffects signal integrity<10mVpp
Isolation VoltageSafety and noise immunity1.5-4kV DC
MTBFReliability indicator100,000-500,000 hours

5. Application Areas

Key industries and equipment:

  • Industrial automation: PLCs, CNC machines
  • Medical devices: MRI scanners, patient monitors
  • Telecommunications: Base stations, optical networking equipment
  • Test & Measurement: Programmable power supplies for R&D
  • Renewable Energy: Solar inverters, energy storage systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsKey Features
TDK-LambdaHWS1500AP1500W, 94% efficiency, PMBus interface
Delta ElectronicsDPS-200AB200W configurable outputs, 5-year warranty
Mean WellLRS-350-24350W, fanless cooling, IP67 rating
CinconCFM200T-48200W telecom module, -40 C to +85 C

7. Selection Guidelines

Key considerations:

  • Match output requirements (voltage, current, power)
  • Environmental factors: Operating temperature, humidity
  • Compliance: Safety certifications (UL/CE/IEC), EMC standards
  • Form factor: Size constraints and cooling method
  • Digital control: PMBus/Modbus interface requirements
Case Study: A semiconductor testing system selected TDK-Lambda's HWS400P-24 (400W, 1% accuracy) for its low noise and remote monitoring capability.

8. Industry Trends

Emerging developments:

  • Increased efficiency (>96%) using GaN/SiC semiconductors
  • Miniaturization through 3D packaging technology
  • Smart power modules with IoT integration
  • Higher safety standards for EV charging infrastructure
  • Energy recovery functions for test equipment

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