ADP480120W3 STMICROELECTRONICS | Alldatasheet

Document overview

  • Manufacturer or author: STMICROELECTRONICS
  • PDF pages: 15

Technical content

Datasheet sections

  • 1 Electrical ratings
  • 2 Electrical characteristics
  • 3 NTC
  • 4 ACEPACK DRIVE power module details
  • 5 Electrical characteristics (curves)
  • 6 Topology, pin description and positioning
  • 7 Package information
  • 7.1 ACEPACK DRIVE package information

Features

  • Designed for automotive applications
  • 1200 V blocking voltage
  • 3.5 mΩ of typical R DS(on)
  • Maximum operative junction temperature T Jop = 175 °C
  • Very low switching energy
  • Low inductive compact design for an higher power density
  • Si 3 N 4 AMB substrate to improve thermal performance
  • SiC Power MOSFET chip sintered to substrate for improved lifetime
  • 4.2 kV DC 1 s insulation
  • Direct cooled Cu base plate with pin fins
  • Three integrated NTC temperature sensors Application
  • Traction main inverter

Description

The ACEPACK DRIVE is a compact six pack module optimized for hybrid and electric vehicles traction inverter. This power module features switches based on silicon carbide Power MOSFET 2 nd generation, are characterized by very low R DS(on) , very limited switching losses and outstanding performances in synchronous rectification working mode. This will ensure superb efficiency in final application, saving battery recharging cycles. A copper base plate with pin-fin base structure make direct fluid cooling available for this power module minimizing thermal resistance. A dedicated pin-out has been developed to get the best switching performances and press-fit pins will ensure optimal connection with driving board. Product status link ADP86012W2 Product summary Order code ADP86012W2 Marking ADP86012W2 Package ACEPACK DRIVE Leads type Press fit Packing Tray Automotive-grade ACEPACK DRIVE power module, six pack topology 1200 V, 3.5 mΩ typ. SiC MOSFET gen.2 based ADP86012W2 Datasheet DS12998 - Rev 3 - January 2021 For further information contact your local STMicroelectronics sales office. ACEPACK DRIVE

  • AQG 324 qualified
  • 1200 V blocking voltage
  • 1.9 mΩ of typical R DS(on)
  • Maximum operating junction temperature T J = 175 °C
  • Very low switching energy
  • Low inductive compact design for an higher power density
  • Si 3N4 AMB substrate to improve thermal performance
  • SiC Power MOSFET chip sintered to substrate for improved lifetime
  • 4.2 kV DC 1 s insulation
  • Directly liquid cooled base plate with pin-fins
  • Three integrated NTC temperature sensors Application
  • Main inverter (electric traction)

The ACEPACK DRIVE is a compact sixpack module optimized for hybrid and electric vehicles traction inverter. This power module features switches based on silicon carbide Power MOSFET 3rd generation, are characterized by very low RDS(on), very limited switching losses and outstanding performances in synchronous rectification working mode. This will ensure superb efficiency in final application, saving battery recharging cycles. A copper base plate with pin-fin base structure make direct fluid cooling available for this power module minimizing thermal resistance. A dedicated pin-out has been developed to get the best switching performances and press-fit pins will ensure optimal connection with driving board. Product status link ADP480120W3 Product summary Order code ADP480120W3 Marking ADP480120W3 Package ACEPACK DRIVE Leads type Press fit Packing Tray Automotive-grade ACEPACK DRIVE power module, sixpack topology 1200 V, 1.9 mΩ typ. SiC MOSFET gen.3 based ADP480120W3 Datasheet DS13766 - Rev 3 - October 2022 For further information contact your local STMicroelectronics sales office.

1 Electrical ratings

Table 1. Absolute maximum ratings of each switch

  1. Specified by design, not tested in production.
  2. Pulse width limited by maximum junction temperature.
  3. Maximum baseplate temperature has to be always limited to 125 °C.

Table 2. Thermal data of each switch

  1. Simulated value considering 50% water/ 50% ethylene glycol cooling fluid. Refer to TN1412 "ACEPACK DRIVE assembly

2 Electrical characteristics

TJ = 25 ˚C, unless otherwise specified. Table 3. Electrical characteristics of each switch

  1. R DS(on) is referred to switch level.
  2. Specified by design, not tested in production.

Table 4. Switching energy of each switch

  1. Using active Miller clamp circuit.

Electrical characteristics

Table 5. Source-drain diode characteristics of each switch Note: Values are calculated taking in account an active Miller clamp circuit.

3 NTC

Table 6. Absolute maximum ratings for NTC temperature sensor, considered as stand-alone

4 ACEPACK DRIVE power module details

Table 7. Ratings for module

5 Electrical characteristics (curves)

Figure 1. Typical output characteristics (TJ = -40 °C) Figure 2. Typical output characteristics (TJ = 25 °C) Figure 3. Typical output characteristics (TJ = 175 °C) Figure 4. Typical reverse conduction characteristics Figure 5. Typical reverse conduction characteristics Figure 6. Typical reverse conduction characteristics

6 Topology, pin description and positioning

Figure 18. Topology, pin description and positioning Figure 19. ACEPACK DRIVE PCB drawing (dimensions are in mm.)

7 Package information

In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions and product status are available at: www.st.com. ECOPACK is an ST trademark. ADP480120W3

Package information

DS13766 - Rev 3 page 11/15

7.1 ACEPACK DRIVE package information

Figure 20. ACEPACK DRIVE short tab package outline (dimensions are in mm.)

Revision history

Table 8. Document revision history 03-Jun-2021 1 First release. Section 1 Electrical ratings. Inserted and updated Table 3. Electrical characteristics of each switch, added Table 4. Switching energy of each switch under Section 2 Electrical characteristics. Inserted Section 5 Electrical characteristics (curves). diode characteristics of each switch.

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