IGBT Module Selection Guide for General Frequency Converter Applications

Comprehensive IGBT module selection table for general frequency converters covering 0.4kW to 415kW power range, including 220V single-phase and 380V three-phase models with driver capacity, output current, and motor power specifications.
IGBT Module Selection Guide for General Frequency Converter Applications

 

IGBT Module Selection Guide for General Frequency Converter Applications

IGBT modules are the core power devices in general-purpose frequency converters, responsible for DC-to-AC power conversion. This article provides a detailed IGBT module selection reference for different power ratings of frequency converters, covering both 220V single-phase and 380V three-phase application scenarios, offering precise model matching guidance for frequency converter design engineers.

220V Single-Phase Frequency Converter IGBT Module Selection Table

The following table lists IGBT module selection options for 220V single-phase input frequency converters, suitable for small converter applications ranging from 0.4kW to 22kW:

Power (kW)Module ModelQuantityDriver Capacity (kVA)Output Current (A)Motor Power (kW)
2S_0.4ID10FT06A1-S112.50.4
2S_0.75ID15FT06A1-S1250.75
2S_1.5ID20FT06A1-S12.871.5
2S_3.7GD30PIK60C5S16.8173.7
2S_5.5GD50PIK60C6S110255.5
2S_7.5GD75PIK60C6S113.2337.5
2S_11GD100HFT60C1S119.64911
2S_15GD100HFT60C2S1266515
2S_18.5GD150HFT60C2S1328018.5
2S_22GD200HFT60C2S138.49622

380V Three-Phase Frequency Converter IGBT Module Selection Table

The following table lists IGBT module selection options for 380V three-phase input frequency converters, covering a wide power range from 0.75kW to 415kW to meet various application requirements from small equipment to large industrial drives:

Power (kW)Module ModelQuantityDriver Capacity (kVA)Output Current (A)Motor Power (kW)
0.75GD10PIK120L1S12.22.70.75
1.5GD15PIK120L1S13.241.5
2.2GD15PIK120C5S1452.2
3.7GD25PIK120C5S16.88.53.7
5.5GD40PIT120C5S11012.55.5
7.5GD40PIT120C5S11417.57.5
11GD50PIT120C6S1192411
15GD75PIT120C6S1263315
15GD75FFT120C6S1263315
15GD50HFL120C1S1263315
18.5GD100FFT120C6S1324018.5
18.5GD75HFL120C1S1324018.5
22GD150FFT120C6S1374722
22GD100HFL120C1S1374722
30GD150HFL120C6S1526530
30GD100HFL120C2S1526530
37GD150HFL120C2S1648037
45GD200HFL120C2S1729145
55GD300HFL120C2S18411055
75GD300HFL120C2S111615275
90GD400HFL120C2S113417690
110GD400HFL120C2S1160210110
132GD200HFL120C2S2193253132
160GD300HFL120C2S2230304160
185GD300HFL120C2S2260340185
200GD400HFL120C2S2290380200
220GD400HFL120C2S2325426220
250GD300HFL120C2S3381480250
280GD400HFL120C2S3427560280
300GD400HFL120C2S3450580300
315GD400HFL120C2S3460605315
345GD400HFL120C2S3502660345
375GD400HFL120C2S4544715375
400GD400HFL120C2S4582765400
415GD400HFL120C2S4604795415

Key Considerations for Frequency Converter IGBT Module Selection

When selecting IGBT modules for frequency converters, several key factors must be considered comprehensively: the driver capacity (kVA) determines the voltage and current rating selection; the output current (A) directly corresponds to the module’s rated current specification; and the applicable motor power (kW) is the ultimate basis for selection. For high-power applications above 132kW, multiple modules are typically connected in parallel, requiring attention to current sharing characteristics and thermal management design.

Module Model Naming Convention

The module models in the table follow a standard naming convention: the GD series indicates the module product code, the numerical portion indicates the current rating (e.g., 50=50A, 100=100A), HF/L indicates hard-switching/soft-switching type, 120 indicates 1200V voltage rating, and suffixes such as C1S/C2S/C5S/C6S indicate different package types and internal configurations. Selection should be based on the converter’s topology (two-level/three-level) and switching frequency requirements.

Frequency Converter Application Scenarios and Module Selection

General-purpose frequency converters are widely used in industrial scenarios such as fans, pumps, compressors, and conveyors. For small power converters from 0.4 to 7.5kW, IPM packaged modules are typically used to simplify design; the 15-75kW medium power range uses half-bridge or six-in-one modules; and high-power converters above 110kW employ dual-module parallel or multi-module parallel configurations. Selection must also consider the module’s cooling method (natural convection/forced air/water cooling) and its compatibility with the overall thermal design of the converter.

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