Equipment - Power Supplies (Test, Bench)

Image Part Number Description / PDF Quantity Rfq
BOP 50-8DC

BOP 50-8DC

Kepco Power

POWER SUPPLY RACK MNT 400W CAPAC

10

ATE 25-10DM

ATE 25-10DM

Kepco Power

POWER SUPPLY RACK MNT 250W LCD

10

KLP 150-16R

KLP 150-16R

Kepco Power

POWER SUPPLY 1200W + RODC

10

ATE 6-100DMG

ATE 6-100DMG

Kepco Power

POWER SUPPLY RACK MNT 1000W LCD

10

BOP 72-6DC4886

BOP 72-6DC4886

Kepco Power

POWER SUPPLY RACK MNT 400W CAPAC

10

KLN 150-20G

KLN 150-20G

Kepco Power

POWER SUPPLY 3000W + GPIB INTER

10

ATE 75-8DM

ATE 75-8DM

Kepco Power

POWER SUPPLY RACK MNT 500W LCD

10

BOP 50-4D-802E

BOP 50-4D-802E

Kepco Power

POWER SUPPLY RACK MNT 200W ETHER

10

KLR 75-32

KLR 75-32

Kepco Power

POWER SUPPLY 2400W

10

BOP 20-5DL-4886

BOP 20-5DL-4886

Kepco Power

POWER SUPPLY RACK MNT 100W INDUC

10

KHX 48-30

KHX 48-30

Kepco Power

1500W POWER SUPPLY - SEALED

10

BOP 200-1DC4886

BOP 200-1DC4886

Kepco Power

POWER SUPPLY RACK MNT 200W CAPAC

10

BOP 36-6DC802E

BOP 36-6DC802E

Kepco Power

POWER SUPPLY RACK MNT 200W CAPAC

10

KLN 300-10E

KLN 300-10E

Kepco Power

POWER SUPPLY 3000W + LXI INTERF

10

BOP 36-6D-4886

BOP 36-6D-4886

Kepco Power

POWER SUPPLY RACK MNT 200W GPIB/

10

KLN 300-2.5

KLN 300-2.5

Kepco Power

POWER SUPPLY 750W

8

BOP 20-10DL

BOP 20-10DL

Kepco Power

POWER SUPPLY RACK MNT 200W INDUC

10

KLR 20-120R

KLR 20-120R

Kepco Power

POWER SUPPLY 2400W + RODC

10

KLN 80-9.5G

KLN 80-9.5G

Kepco Power

POWER SUPPLY 750W + GPIB INTERF

10

ATE 55-10DM

ATE 55-10DM

Kepco Power

POWER SUPPLY RACK MNT 500W LCD

10

Equipment - Power Supplies (Test, Bench)

1. Overview

Bench power supplies are adjustable DC or AC power sources designed for testing, troubleshooting, and development in electronic engineering. They provide stable, precise, and controllable electrical power to devices under test (DUTs) in laboratory, production, and field service environments. Their importance lies in ensuring product reliability, validating circuit performance, and supporting R&D workflows across industries.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Linear Power SuppliesLow noise, high stability, fast transient responseLaboratory testing of analog circuits
Switching Power SuppliesHigh efficiency (>80%), wide input range, compact sizeAutomated production line testing
Programmable Power SuppliesComputer-controlled output, waveform generation, data loggingAutomotive electronics validation
Multi-channel Power SuppliesIndependent voltage/current control for multiple outputsTesting IoT devices with multiple rails

3. Structure and Components

Typical bench power supplies include:

  • Metallic enclosure with ventilation slots
  • AC/DC power module (linear/regenerative topology)
  • Control panel with digital/analog interfaces
  • Output terminals (banana jacks, binding posts)
  • Active cooling system (fan/heat sink)
  • Communication ports (USB/LAN/GPIB)

4. Key Technical Specifications

ParameterDescriptionImportance
Output Voltage Range0-200V (single/multi-range options)Determines compatibility with DUT requirements
Current Resolution1mA-10 A precisionImpacts test accuracy for low-power devices
Load Regulation<0.01% change under varying loadEnsures stable output during dynamic testing
Ripple & Noise<3mVpp @ 20MHz bandwidthCritical for sensitive analog circuit testing
Transient Response Time10-100 s recovery timeMeasures stability during sudden load changes

5. Application Fields

  • Electronics manufacturing (IC testing, PCB validation)
  • Telecom equipment (5G base station power simulation)
  • Automotive R&D (ECU power cycling tests)
  • Aerospace (avionics power quality analysis)
  • Educational labs (student project prototyping)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Keysight TechnologiesN6700 Modular Power SystemHot-swappable modules, 16-bit resolution
Teledyne LeCroyTS-8080800W regenerative AC/DC source
Siglent TechnologiesSPD1168X16-bit touchscreen control, list mode
Chroma Systems62000P SeriesGrid simulation, energy recovery

7. Selection Recommendations

Key considerations:

  • Match output specs to DUT's maximum power requirements
  • Choose appropriate control interface (analog/digital)
  • Assess thermal management needs for continuous operation
  • Prioritize calibration features for traceable measurements

Example: For battery simulation applications, select a bidirectional power supply with dynamic profiling capabilities.

8. Industry Trends

Current development trends include:

  • Integration of AI-based predictive maintenance
  • Higher power density (3-5W/cm ) through GaN technology
  • Adoption of PMBus for smart power system management
  • Expansion of 800V DC test capabilities for EV applications
  • Cloud-connected power supplies for remote monitoring

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