Inverters

Image Part Number Description / PDF Quantity Rfq
BXA-24529

BXA-24529

JKL Components Corporation

INVERTER 1000V FOR CCFL LAMP

565

BXA-12529

BXA-12529

JKL Components Corporation

INVERTER 1000V FOR CCFL UV LAMP

5

BXA-601

BXA-601

JKL Components Corporation

5V DUAL OUTPUT CCFL INVERTER

254

BXA-12577

BXA-12577

JKL Components Corporation

INVERTER 800V FOR CCFL LAMP

0

BXA-12529/PS1

BXA-12529/PS1

JKL Components Corporation

INVERTER POTTED 850V CCFL LAMP

0

NDL-217

NDL-217

JKL Components Corporation

INVERTER 100-170CM2 FOR EL LAMP

0

BXA-502

BXA-502

JKL Components Corporation

INVERTER 650V SGL FOR CCFL LAMP

0

BXA-12594-5M

BXA-12594-5M

JKL Components Corporation

INVERTER DIMMING SINGLE 12V 5MA

0

BXA-12598-5M

BXA-12598-5M

JKL Components Corporation

INVERTER DIMMING SINGLE 12V 5MA

0

BXA-12665-5M

BXA-12665-5M

JKL Components Corporation

INVERTER DIMMING SGL CCFL 12V

0

BXA-12565-6M

BXA-12565-6M

JKL Components Corporation

INVERTER 1000V 6MA SGL CCFL LAMP

0

BXA-12630-5.5M

BXA-12630-5.5M

JKL Components Corporation

INVERTER DIMMING DUAL OUTPT CCFL

0

BXA-12576

BXA-12576

JKL Components Corporation

INVERTER 800V FOR CCFL LAMP

0

BXA-12613-7M

BXA-12613-7M

JKL Components Corporation

INVERTER DIMMING DUAL 12V 7MA

0

BXA-12617C-6M

BXA-12617C-6M

JKL Components Corporation

INVERTER 12V INPUT 1200V OUTPUT

0

BXA-501

BXA-501

JKL Components Corporation

INVERTER 700V FOR CCFL UV LAMP

0

NDL-204

NDL-204

JKL Components Corporation

INVERTER 41-70CM2 FOR EL LAMP

0

BXA-12562-6M

BXA-12562-6M

JKL Components Corporation

INVERTER 1000V 6MA SGL CCFL LAMP

0

BXA-503

BXA-503

JKL Components Corporation

INVERTER 6V INPUT 1200V OUTPUT

0

NDL-202

NDL-202

JKL Components Corporation

INVERTER 19-38CM2 FOR EL LAMP

0

Inverters

1. Overview

Optoelectronics inverters are power electronic devices that convert direct current (DC) to alternating current (AC), integrating optical sensing and control technologies. They play a critical role in renewable energy systems, industrial automation, and grid-connected applications by enabling efficient energy conversion and system monitoring through optoelectronic components such as photodiodes and optocouplers.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Grid-Tied Inverters Synchronizes with utility grid, no battery storage Residential solar PV systems
Off-Grid Inverters Operates independently from utility grid Remote power systems
Hybrid Inverters Combines grid-tied and battery storage functions Smart energy storage systems
Microinverters Panel-level DC-AC conversion with MPPT Building-integrated photovoltaics

3. Structure and Components

Typical architecture includes:

  • Power stage: IGBT/MOSFET modules for DC-AC conversion
  • Optical sensors: For voltage/current isolation monitoring
  • Control board: DSP-based MPPT algorithm processor
  • Thermal management: Heatsinks and cooling fans
  • Protection circuitry: Overload, short-circuit and surge protection

4. Key Technical Specifications

Parameter Typical Range Importance
Rated Power 500W-100kW Determines system capacity
Conversion Efficiency 95%-98.5% Impacts energy yield
MPPT Efficiency 99.5% (typical) Maximizes solar energy harvest
Output THD <3% (grid-tied) Ensures power quality
Operating Temperature -25 C to +60 C Defines deployment environment

5. Application Fields

  • Renewable Energy: Solar PV farms, wind energy conversion systems
  • Industrial: Motor drives, uninterruptible power supplies (UPS)
  • Residential: Home energy systems with solar integration
  • Grid Infrastructure: Utility-scale energy storage systems

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
SMA Solar Technology Sunny Boy 3.0 97.3% efficiency, integrated smart monitoring
ABB ABB_ACS370PV 100kW three-phase inverter
Enphase Energy IQ8+ Microinverter Module-level power electronics
Huawei SUN2000-100K-H1 98.5% max efficiency, AI-based diagnostics

7. Selection Recommendations

Key considerations:

  • Match rated power to system DC capacity
  • Verify grid compliance standards (IEEE 1547, UL 1741)
  • Evaluate MPPT response time for variable irradiance
  • Assess cooling requirements for operating environment
  • Check compatibility with energy storage systems

8. Industry Trends

Emerging developments include:

  • Adoption of SiC/GaN wide bandgap semiconductors
  • Integration with IoT-based predictive maintenance
  • Advancements in multi-string inverter topologies
  • Development of bidirectional inverters for grid interaction
  • Enhanced cybersecurity features for smart grid applications
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