Datasheet 1200V High Voltage High and Low Side Driver BM60212FV-C General Description Key Specifications The BM60212FV-C is high and low side drive IC which High-Side Floating Supply Voltage: 1200V operates up to 1200V with bootstrap operation, which Maximum Gate Drive Voltage: 24V can drive N-channel power MOSFET and IGBT. Turn ON/OFF Time: 75ns (Max) Under-voltage Lockout (UVLO) function and Miller Logic Input Minimum Pulse Width: 60ns Clamp function are built-in. Features (Note 1) AEC-Q100 Qualified High-Side Floating Supply Voltage 1200V Package W(Typ) x D(Typ) x H(Max) Active Miller Clamping SSOP-B20W 6.50mm x 8.10mm x 2.01mm Under Voltage Lockout Function 3.3V and 5.0V Input Logic Compatible (Note 1) Grade 1 Applications MOSFET Gate Driver IGBT Gate Driver Typical Application Circuit SSOP-B20W VCCB Up to 1200V GND1 NC UVLO UVLO S ENA ENA Pulse GND2 Q Generator INA INA NC R INB INB VCCA VREG OUTAH Regulator Pre- driver VCCB OUTAL CVREG OUTBH MCA Pre- driver NC OUTBL + C VCCA - CVCCB 2V MCB GND2 TO LOAD NC GND1 + - 2V Pin 1 Figure 1. Typical Application Circuit Product structure : Semiconductor integrated circuit This product has no designed protection against radioactive rays www.rohm.com TSZ02201-0818ABH00270-1-2 2018 ROHM Co., Ltd. All rights reserved. 1/23 TSZ22111 14 001 18.Jan.2018 Rev.001 BM60212FV-C Contents General Description ........................................................................................................................................................................ 1 Features.......................................................................................................................................................................................... 1 Applications .................................................................................................................................................................................... 1 Key Specifications ........................................................................................................................................................................... 1 Package........................................................................................................................................................................................ 1 Typical Application Circuit ............................................................................................................................................................... 1 Recommended Range of External Constants ................................................................................................................................. 3 Pin Configuration ............................................................................................................................................................................ 3 Pin Descriptions .............................................................................................................................................................................. 3 Description of Functions and Examples of Constant Setting .......................................................................................................... 5 Absolute Maximum Ratings (Ta=25C) ........................................................................................................................................... 8 Thermal Resistance ........................................................................................................................................................................ 9 Recommended Operating Conditions ............................................................................................................................................. 9 Electrical Characteristics............................................................................................................................................................... 10 Typical Performance Curves ......................................................................................................................................................... 11 Figure 10. VCCB Circuit Current 1 vs Low-side Supply Voltage (OUTB=L) .............................................................................. 11 Figure 11. VCCB Circuit Current 2 vs Low-side Supply Voltage (OUTB=H) .............................................................................. 11 Figure 12. VCCB Circuit Current 3 vs Low-side Supply Voltage (INA=10kHz, Duty=50%) ...................................................... 11 Figure 13. VCCB Circuit Current 4 vs Low-side Supply Voltage (INA=20kHz, Duty=50%) ....................................................... 11 Figure 14. VCCA Circuit Current 1 vs High-side Floating Supply Voltage (OUTA=L) ................................................................ 12 Figure 15. VCCA Circuit Current 2 vs High-side Floating Supply Voltage (OUTA=H) ................................................................ 12 Figure 16. Logic H/L Level Input Voltage vs High-side Floating Supply Voltage ........................................................................ 12 Figure 17. OUTA (OUTB)Output Voltage vs Logic Input Voltage (V =15V, V =15V, Ta=+25C)......................................... 12 CCB CCA Figure 18. Logic Pull-down Resistance vs Temperature ............................................................................................................ 13 Figure 19. Logic Pull-down Current vs Temperature ................................................................................................................. 13 Figure 20. Logic Input Minimum Pulse Width vs Temperature .................................................................................................. 13 Figure 21. ENA Input Mask Time vs Temperature ..................................................................................................................... 13 Figure 22. OUTA ON Resistance (Source) vs Temperature ...................................................................................................... 14 Figure 23. OUTA ON Resistance (Sink) vs Temperature ........................................................................................................... 14 Figure 24. OUTB ON Resistance (Source) vs Temperature ...................................................................................................... 14 Figure 25. OUTB ON Resistance (Sink) vs Temperature .......................................................................................................... 14 Figure 26. OUTA Turn ON Time vs Temperature (INA=PWM, INB=L) ....................................................................................... 15 Figure 27. OUTA Turn OFF Time vs Temperature (INA=PWM, INB=L) ..................................................................................... 15 Figure 28. OUTB Turn ON Time vs Temperature (INA=L, INB=PWM) ...................................................................................... 15 Figure 29. OUTB Turn OFF Time vs Temperature (INA=L, INB=PWM) .................................................................................... 15 Figure 30. MCA ON Resistance vs Temperature ....................................................................................................................... 16 Figure 31. MCB ON Resistance vs Temperature....................................................................................................................... 16 Figure 32. MCA ON Threshold Voltage vs Temperature ............................................................................................................ 16 Figure 33. MCB ON Threshold Voltage vs Temperature ........................................................................................................... 16 Figure 34. VCCB UVLO ON/OFF Voltage vs Temperature ....................................................................................................... 17 Figure 35. VCCB UVLO Mask Time vs Temperature................................................................................................................. 17 Figure 36. VCCA UVLO ON/OFF Voltage vs Temperature ........................................................................................................ 17 Figure 37. VCCA UVLO Mask Time vs Temperature ................................................................................................................. 17 I/O Equivalence Circuits ................................................................................................................................................................ 18 Operational Notes ......................................................................................................................................................................... 19 Ordering Information ..................................................................................................................................................................... 21 Marking Diagram .......................................................................................................................................................................... 21 Physical Dimension, Tape and Reel Information .......................................................................................................................... 22 Revision History ............................................................................................................................................................................ 23 www.rohm.com TSZ02201-0818ABH00270-1-2 2018 ROHM Co., Ltd. All rights reserved. 2/23 TSZ22111 15 001 18.Jan.2018 Rev.001