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The information presented in this cross reference is based on TOSHIBA's selection criteria and should be treated as a suggestion only. Please carefully review the latest versions of all relevant information on the TOSHIBA products, including without limitation data sheets and validate all operating parameters of the TOSHIBA products to ensure that the suggested TOSHIBA products are truly compatible with your design and application.
Please note that this cross reference is based on TOSHIBA's estimate of compatibility with other manufacturers' products, based on other manufacturers' published data, at the time the data was collected.
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Plastic Case Module IEGTs (PMIs)

Characteristics of PMIs

Easy-to-assemble plastic module casing

Many IEGT chips are soldered on a ceramic insulating board and wire-bonded to the module terminals. The plastic module is easy to use because it dissipates heat from one side and is internally insulated.

Base plate made from a composite Al-SiC material

PMI Structure

To ensure thermal reliability, the package has a composite aluminum silicon-carbide (Al-SiC) plate with a low thermal expansion coefficient on its underside.

PMI Installation Example

A compact inverter circuit can be created by using 2-in-1 PMIs that contain two IEGTs.
The example shown at right uses three 2-in-1 PMIs. The stray inductance can be reduced by using a laminated electrode plate.

PMI Installation Example
Inverter Circuit

Application Examples

Rail traction

Main Circuit System for Rail Traction

PMIs are suitable for inverter and converter applications that drive traction motors for rail transport systems, including the Shinkansen, rapid transits and urban rail transits. PMIs help improve efficiency and save energy.

Subways and Light-Rail Systems

Main Circuit System for Light-Rail

PMIs are also used for inverter applications that drive rail traction powered by DC overhead lines.

Windmill

Windmill System

IEGTs are commonly used in the power converter for windmill that convert the power of wind into electricity.

Lineup

Part Number Package Absolute
Maximum Ratings
VCE(sat)(V) VF(V) Circuit
Configuration

VCES
(V)

IC
(A)

Tj
(˚C)

Max Test Condition
@IC (A) /
VGE(V)
Max Test Condition
@IF (A) /
VGE (V)
MG400FXF2YS53 PMI143C 3300
400 125 4.5 400 / 15 3.5
400 / 0 2 in 1
MG500FXF2YS61 PMI142C 3300 500 150 4.6
500 / 15 4.1
500 / 0
2 in 1
MG800FXF1US53 PMI143B 3300 800 125 4.5 800 / 15 3.5
800 / 0 1 in 1
MG1200FXF1US53 PMI193 3300 1200 125 4.5 1200 / 15 3.5
1200 /0
1 in 1
MG900GXH1US53 PMI193 4500 900 125 4.7
900 / 15 3.8 900 / 0 1 in 1

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