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Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. For power semiconductor devices (such as BJT, MOSFET, thyristor or IGBT), the safe operating area (SOA) is defined as the voltage and current conditions over which the device can be expected to operate without self-damage. SOA is usually presented in transistor datasheets as a graph with VCE (collector-emitter voltage) on the abscissa and ICE (collector-emitter current) on the ordinate; the safe ''area'' referring to the area under the curve. The SOA specification…mehr

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Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. For power semiconductor devices (such as BJT, MOSFET, thyristor or IGBT), the safe operating area (SOA) is defined as the voltage and current conditions over which the device can be expected to operate without self-damage. SOA is usually presented in transistor datasheets as a graph with VCE (collector-emitter voltage) on the abscissa and ICE (collector-emitter current) on the ordinate; the safe ''area'' referring to the area under the curve. The SOA specification combines the various limitations of the device maximum voltage, current, power, junction temperature, second breakdown into one curve, allowing simplified design of protection circuitry.