X-On Electronics has gained recognition as a prominent supplier of BM60212FV-CE2 Gate Drivers across the USA, India, Europe, Australia, and various other global locations. BM60212FV-CE2 Gate Drivers are a product manufactured by ROHM. We provide cost-effective solutions for Gate Drivers, ensuring timely deliveries around the world.

BM60212FV-CE2 ROHM

BM60212FV-CE2 electronic component of ROHM
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Part No.BM60212FV-CE2
Manufacturer: ROHM
Category: Gate Drivers
Description: Gate Drivers The BM60212FV-C is high and low side drive IC which operates up to 1200V with bootstrap operation, which can drive N-channel power MOSFET and IGBT. Under-voltage Lockout (UVLO) function and Miller Clamp function are built-in.
Datasheet: BM60212FV-CE2 Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
1: USD 5.8914 ea
Line Total: USD 5.89 
Availability - 1851
Ship by Thu. 21 Nov to Mon. 25 Nov
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
1851
Ship by Thu. 21 Nov to Mon. 25 Nov
MOQ : 1
Multiples : 1
1 : USD 5.8914
10 : USD 4.2408
100 : USD 3.6502
250 : USD 3.355
500 : USD 3.2611
1000 : USD 3.2208
4000 : USD 3.2074

   
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RoHS - XON
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Supply Voltage - Max
Supply Voltage - Min
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Off Time - Max
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Rds On - Drain-Source Resistance
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We are delighted to provide the BM60212FV-CE2 from our Gate Drivers category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the BM60212FV-CE2 and other electronic components in the Gate Drivers category and beyond.

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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

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