Each EconoPIM™ module integrates a rectifier bridge, a brake chopper, and an inverter stage. The Econo housing features a copper base plate for optimized heat spread and includes a thermistor (NTC). Econo modules are available with solderable pins or with PressFIT pins and an increasing number of Econo modules are available with pre-applied thermal interface material (TIM) already.

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EconoPIM™ integrates various chip technologies that allow to cover a wide range of application requirements, starting from NPT to TRENCHSTOP™ in 650 V/1200 V/1700 V. The latest addition to the EconoPIM™ family is the TRENCHSTOP™ IGBT7 chip generation, which is optimized for industrial drives applications. EconoPIM™ IGBT modules with IGBT7 can withstand 175°C Tvjop under overload conditions. The EconoPIM™ family was developed in order to have a cost-effective compact design as well as simplified and reliable mounting. With these modules, we offer an optimized product generation for low- and medium-power industrial drives.

EconoPIM™ 2 and 3 power modules offer customizable packages in terms of pin positioning and topology selection. Numerous variants in different voltages (600 V – 1700 V) and current classes (15 A – 200 A) are available to serve several applications and platform design strategies. Modules including IGBT7 with 100 A for EconoPIM™ 2 and 200 A for EconoPIM™ 3 for highest power density can be selected as well as optional pre-applied TIM which allows increased output power and a longer lifetime. PressFIT for main as well as auxiliary terminals can be chosen which reduces mounting efforts. The combination of rectifier bridge, brake chopper, inverter stage, and NTC in just one package enables system-cost-savings. All established housings are RoHS-compliant which ensures a high availability.

The EconoPIM™ 2 and 3 module portfolio with TRENCHSTOP™ IGBT7 ranges from 25 A up to 200 A. Compared to the previous IGBT4 chip generation, there is a higher power density, an increased switching frequency, and the cooling effort can be reduced.

All in all, there is the same or better lifetime while keeping the operating conditions unchanged.

The PIM (Power Integrated Module) topology is a module solution, that integrates a three-phase inverter, a rectifier bridge, and a break chopper circuit into one single module. The high level of integration results in a compact design.

EconoPIM™ integrates various chip technologies that allow to cover a wide range of application requirements, starting from NPT to TRENCHSTOP™ in 650 V/1200 V/1700 V. The latest addition to the EconoPIM™ family is the TRENCHSTOP™ IGBT7 chip generation, which is optimized for industrial drives applications. EconoPIM™ IGBT modules with IGBT7 can withstand 175°C Tvjop under overload conditions. The EconoPIM™ family was developed in order to have a cost-effective compact design as well as simplified and reliable mounting. With these modules, we offer an optimized product generation for low- and medium-power industrial drives.

EconoPIM™ 2 and 3 power modules offer customizable packages in terms of pin positioning and topology selection. Numerous variants in different voltages (600 V – 1700 V) and current classes (15 A – 200 A) are available to serve several applications and platform design strategies. Modules including IGBT7 with 100 A for EconoPIM™ 2 and 200 A for EconoPIM™ 3 for highest power density can be selected as well as optional pre-applied TIM which allows increased output power and a longer lifetime. PressFIT for main as well as auxiliary terminals can be chosen which reduces mounting efforts. The combination of rectifier bridge, brake chopper, inverter stage, and NTC in just one package enables system-cost-savings. All established housings are RoHS-compliant which ensures a high availability.

The EconoPIM™ 2 and 3 module portfolio with TRENCHSTOP™ IGBT7 ranges from 25 A up to 200 A. Compared to the previous IGBT4 chip generation, there is a higher power density, an increased switching frequency, and the cooling effort can be reduced.

All in all, there is the same or better lifetime while keeping the operating conditions unchanged.

The PIM (Power Integrated Module) topology is a module solution, that integrates a three-phase inverter, a rectifier bridge, and a break chopper circuit into one single module. The high level of integration results in a compact design.

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