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STMicroelectronics
Series | Category | # Parts | Status | Description |
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Series | Category | # Parts | Status | Description |
---|---|---|---|---|
STMicroelectronicsA1P35ACEPACK1 sixpack topology, 1200 V, 35 A trench-gate field stop IGBT M series, soft diode and NTC | ACEPACK 1 and 2 | 3 | 1 | This power module is a sixpack topology in an ACEPACK™ 1 package with NTC, integrating the advanced trench gate field-stop technologies from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |
STMicroelectronicsA1P35S12M3ACEPACK1 sixpack topology, 1200 V, 35 A trench-gate field stop IGBT M series, soft diode and NTC | STPOWER ACEPACK modules | 2 | 1 | This power module is a sixpack topology in an ACEPACK™ 1 package with NTC, integrating the advanced trench gate field-stop technologies from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |
STMicroelectronicsA1P35S12M3-FACEPACK1 sixpack topology, 1200 V, 35 A trench-gate field stop IGBT M series, soft diode and NTC | ACEPACK 1 and 2 | 3 | 1 | This power module is a sixpack topology in an ACEPACK™ 1 package with NTC, integrating the advanced trench gate field-stop technologies from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |
STMicroelectronicsA1P50ACEPACK 1 sixpack topology, 650 V, 50 A trench gate field-stop IGBT M series, soft diode and NTC | STPOWER ACEPACK modules | 4 | 1 | This power module is a sixpack topology in an ACEPACK™ 1 package with NTC, integrating the advanced trench gate field-stop technologies from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |
STMicroelectronicsA1P50S65M2ACEPACK 1 sixpack topology, 650 V, 50 A trench gate field-stop IGBT M series, soft diode and NTC | STPOWER ACEPACK modules | 4 | 1 | This power module is a sixpack topology in an ACEPACK™ 1 package with NTC, integrating the advanced trench gate field-stop technologies from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |
STMicroelectronicsA1P50S65M2-FACEPACK 1 sixpack topology, 650 V, 50 A trench gate field-stop IGBT M series, soft diode and NTC | ACEPACK 1 and 2 | 1 | 1 | This power module is a sixpack topology in an ACEPACK™ 1 package with NTC, integrating the advanced trench gate field-stop technologies from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |
Low power amplifiers | 4 | 1 | The A21SP16 is a differential class-D BTL power amplifier. It is able to drive up to 2.3 W into a 4 Ω load and 1.4 W into a 8 Ω load at 5 V. It achieves outstanding efficiency (88% typ.) compared to classical Class-AB audio amps. The gain of the... Read More | |
STMicroelectronicsA22H165 | Audio Amplifiers | 2 | 8 | |
Gate drivers | 2 | 1 | The A2387 is a single chip half-bridge gate driver for N-channel power MOSFETs or IGBTs. The high-side (floating) section is designed to stand a voltage rail of up to 150 V. The logic inputs are CMOS/TTL compatible for easy interfacing of the microcontroller or DSP. The A2387 features supply UVLOprotection... Read More | |
STMicroelectronicsA2C25ACEPACK 2 converter inverter brake, 1200 V, 25 A trench gate field-stop IGBT M series, soft diode and NTC | IGBTs | 4 | 1 | This power module is a converter-inverter brake (CIB) topology in an ACEPACK 2 package with NTC, integrating the advanced trench gate field-stop technology from STMicroelectronics. This new IGBT technology represents the best compromise between conduction and switching loss, to maximize the efficiency of any converter system up to 20 kHz. |