DC to AC (Power) Inverters

Image Part Number Description / PDF Quantity Rfq
TN-1500-212B

TN-1500-212B

MEAN WELL

INVERTER UPS 12VDC 1.5KW 1OUTLET

9

XP2-3-I-5-1

XP2-3-I-5-1

Exeltech

INVERTER 250WATT 230VAC 108VDC

1

A301-1K7-B2

A301-1K7-B2

MEAN WELL

INVERTER 12VDC 1.5KW 3 OUTLET

0

A301-1K0-F3

A301-1K0-F3

MEAN WELL

INVERTER 12VDC 100W 2 OUTLET

0

XPX-3-2-5-2

XPX-3-2-5-2

Exeltech

INVERTER 2000WATT 230VAC 24VDC

0

TN-1500-148A

TN-1500-148A

MEAN WELL

INVERTER UPS 48VDC 1.5KW 2OUTLET

14

D11A402B011US-WMBPDU

D11A402B011US-WMBPDU

Sanyo Denki SanUPS Products

DC/AC 4K BYPASS/CABINET UP TO 5K

0

A302-300-B2

A302-300-B2

MEAN WELL

INVERTER 24VDC 300W 2 OUTLET

0

TS-200-112A

TS-200-112A

MEAN WELL

INVERTER 12VDC 200W 2 OUTLET

51

XPK-1-4-6-1

XPK-1-4-6-1

Exeltech

DC TO AC POWER INVERTER, 1100WAT

26

PV1000HF

PV1000HF

Tripp Lite

INVERTER 1000W 12VDC 4 OUTLET

3

TN-3000-248B

TN-3000-248B

MEAN WELL

INVERTER UPS 48VDC 3KW 1 OUTLET

0

A301-300-F3

A301-300-F3

MEAN WELL

INVERTER 12VDC 300W 1 OUTLET

0

TS-400-224B

TS-400-224B

MEAN WELL

INVERTER 24VDC 400W 1 OUTLET

0

TS-3000-224B

TS-3000-224B

MEAN WELL

INVERTER 24VDC 3KW 1 OUTLET

0

APSINT3636VR

APSINT3636VR

Tripp Lite

INTL INVERTER/CHARGER 230VAC 30A

841

XP2-3-4-5-1

XP2-3-4-5-1

Exeltech

INVERTER 250WATT 230VAC 48VDC

2

XP6-1-2-6-1

XP6-1-2-6-1

Exeltech

DC TO AC POWER INVERTER, 600WATT

25

APS1012SW

APS1012SW

Tripp Lite

INVERTER CHARGER 120V 4A/40A

0

PV3000GFCI

PV3000GFCI

Tripp Lite

HEAVY DUTY INV DC TO AC 4 OUTLET

106

DC to AC (Power) Inverters

1. Overview

DC to AC power inverters are electronic devices that convert direct current (DC) into alternating current (AC). This conversion enables DC energy sources (e.g., batteries, solar panels) to power AC-based equipment. As critical components in renewable energy systems, uninterruptible power supplies (UPS), and grid-tied applications, inverters play a vital role in modern energy infrastructure by bridging DC generation/storage with AC consumption requirements.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Off-Grid InvertersOperate independently from utility grid, require battery storageRemote solar power systems
Grid-Tied InvertersSynchronize with utility grid, no battery requiredResidential solar installations
Hybrid InvertersCombine grid-tied and battery backup capabilitiesSmart energy management systems
Modified Sine WaveProduce stepped waveform, cost-effectiveBudget UPS systems
Pure Sine WaveGenerate clean sinusoidal output, high compatibilityMedical equipment, sensitive electronics

3. Structure and Components

Typical construction includes: - Input DC terminal/connection busbar - High-frequency switching circuit (MOSFET/IGBT) - Transformer (for isolation and voltage conversion) - Output filter circuit (LC filter or active filtering) - Control board with PWM controller - Thermal management system (heat sinks/fans) - Protection circuitry (OVP, OCP, SCP) - Communication interfaces (RS485, CAN)

4. Key Technical Parameters

ParameterValue RangeImportance
Input Voltage Range12V-1000V DCDetermines compatibility with power sources
Output Voltage120V/230V AC 2%Equipment operational compatibility
Frequency50/60Hz 0.5%Grid synchronization requirement
Efficiency85-98%System energy optimization
THD<3% (pure sine)Device protection and performance
Power Rating300W-1MWApplication scalability

5. Application Fields

  • Renewable Energy: Solar PV systems, wind turbines
  • Emergency Power: Hospital UPS systems
  • Transportation: EV charging infrastructure
  • Telecommunications: Base station power systems
  • Industrial: Factory automation equipment

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
ABBABB_AccessoriesSmart grid integration, 98% efficiency
SMA SolarSunny TripowerMulti-MPPT, 1500V DC input
APCSymmetra MWModular UPS systems
DeltaRPI M SeriesHybrid solar+storage capabilities

7. Selection Recommendations

Considerations include: - Match input/output specifications with system requirements - Evaluate efficiency curves under expected load conditions - Confirm protection ratings (IP class) for installation environment - Verify compliance with grid codes (IEEE 1547, UL1741) - Assess scalability for future system expansion

8. Industry Trends

Current developments include: - Increased adoption of SiC/GaN semiconductors for higher efficiency - Integration with IoT for predictive maintenance - Advancements in micro-inverter technology for distributed systems - Growing demand for bidirectional inverters in energy storage applications - Regulatory push toward higher grid-support functionalities (reactive power control, fault ride-through)

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