BM60014FV-CE2 Equivalent & Substitute Parts

Part Overview

The BM60014FV-CE2 is a digital isolated gate driver featuring magnetic coupling technology with 2500Vrms isolation rating and single-channel configuration in a 20-SSOP package. This component is designed for automotive-grade applications requiring galvanic isolation between control and power circuits. The part maintains Active product status with AEC-Q100 qualification, ensuring reliability in demanding automotive environments. Substitute parts are identified to address specific application requirements such as higher isolation voltage ratings, different package configurations, or alternative propagation delay characteristics while maintaining core functional compatibility.

Substiute Parts

BM60014FV-CE2
Rohm SemiconductorIn Stock: 3401BM60014FV-CE2 Datasheet
BM60014FV-CE2
Current Part
BM61M41RFV-CE2
Rohm SemiconductorIn Stock: 2761BM61M41RFV-CE2 Datasheet
BM61M41RFV-CE2
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Key Parameters

Parameter Value
Manufacturer Part Number BM60014FV-CE2
Manufacturer Rohm Semiconductor
Technology Magnetic Coupling
Number of Channels 1
Voltage - Isolation 2500Vrms
Common Mode Transient Immunity (Min) 100kV/µs
Propagation Delay tpLH / tpHL (Max) 120ns / 120ns
Rise / Fall Time (Typ) 50ns / 50ns
Current - Output High, Low 3A / 3A
Current - Peak Output 5A
Voltage - Output Supply 10V ~ 24V
Operating Temperature -40°C ~ 125°C
Package / Case 20-SSOP (0.240", 6.10mm Width)
Grade Automotive
Qualification AEC-Q100
Product Status Active
RoHS Status ROHS3 Compliant

Substitute Part Grouping Explanation

Substitution eligibility for the BM60014FV-CE2 is determined by the following critical parameters:

  • Technology: Magnetic coupling isolation technology must be maintained
  • Number of Channels: Single-channel configuration required
  • Voltage - Isolation: Minimum 2500Vrms isolation rating
  • Common Mode Transient Immunity: Minimum 100kV/µs
  • Grade & Qualification: Automotive grade with AEC-Q100 qualification
  • Operating Temperature Range: -40°C ~ 125°C compatibility
  • Voltage - Output Supply: Overlapping supply voltage range (10V ~ 24V)

The identified substitute BM61M41RFV-CE2 meets these core substitution criteria while introducing variations in package configuration, propagation delay characteristics, and output current ratings. These variations represent design trade-offs suitable for specific application scenarios.

Parameter Comparison

Parameter BM60014FV-CE2 BM61M41RFV-CE2
Manufacturer Rohm Semiconductor Rohm Semiconductor
Technology Magnetic Coupling Magnetic Coupling
Number of Channels 1 1
Voltage - Isolation 2500Vrms 3750Vrms
Common Mode Transient Immunity (Min) 100kV/µs 100kV/µs
Propagation Delay tpLH / tpHL (Max) 120ns / 120ns 65ns / 65ns
Rise / Fall Time (Typ) 50ns / 50ns 15ns / 15ns
Current - Output High, Low 3A / 3A 4A / 4A
Voltage - Output Supply 10V ~ 24V 9V ~ 24V
Operating Temperature -40°C ~ 125°C -40°C ~ 125°C
Package / Case 20-SSOP (0.240", 6.10mm Width) 10-SSOP (0.315", 8.00mm Width)
Grade Automotive Automotive
Qualification AEC-Q100 AEC-Q100
Product Status Active Active
RoHS Status ROHS3 Compliant ROHS3 Compliant

Engineering Selection Recommendations

Both the BM60014FV-CE2 and BM61M41RFV-CE2 maintain Active product status with AEC-Q100 automotive qualification and ROHS3 compliance, ensuring regulatory and supply chain continuity. Selection between these parts depends on application-specific requirements:

The BM60014FV-CE2 is suitable for applications requiring the specified 2500Vrms isolation rating with standard propagation delay characteristics in a compact 20-SSOP package footprint.

The BM61M41RFV-CE2 provides enhanced isolation voltage (3750Vrms), faster propagation delay (65ns versus 120ns), improved rise/fall time performance (15ns versus 50ns), and increased output current capability (4A versus 3A). The 10-SSOP package presents a larger footprint but accommodates the enhanced performance characteristics. This substitute is applicable when designs require higher isolation margins, faster switching response, or increased drive current capacity.

Both parts operate across the -40°C ~ 125°C automotive temperature range and maintain the 100kV/µs common mode transient immunity specification.

Frequently Asked Questions (FAQ)

Q: Can BM61M41RFV-CE2 directly replace BM60014FV-CE2 in existing designs?

A: Direct replacement requires PCB layout modification due to package differences (20-SSOP versus 10-SSOP). The 10-SSOP package has different pin pitch and footprint. Electrical compatibility exists for applications not constrained by the original 2500Vrms isolation specification, as the substitute provides 3750Vrms isolation. Verify that the application circuit accommodates the faster propagation delay (65ns versus 120ns) and improved rise/fall time characteristics.

Q: What are the key differences between these parts?

A: Primary differences include isolation voltage rating (2500Vrms versus 3750Vrms), propagation delay (120ns versus 65ns), rise/fall time (50ns versus 15ns), output current (3A versus 4A), and package configuration (20-SSOP versus 10-SSOP). Both maintain identical channel count, technology platform, common mode transient immunity, operating temperature range, and automotive qualification.

Q: Are both parts suitable for automotive applications?

A: Yes. Both parts carry Automotive grade designation and AEC-Q100 qualification, meeting automotive reliability and qualification standards. Both are ROHS3 compliant and maintain REACH Unaffected status.

Q: What packaging considerations apply to substitution?

A: The BM60014FV-CE2 uses 20-SSOP packaging (0.240" width, 6.10mm), while BM61M41RFV-CE2 uses 10-SSOP packaging (0.315" width, 8.00mm). PCB redesign is required for physical substitution. Pin configuration and electrical interface compatibility must be verified against the specific application schematic.

Q: Can the substitute handle the same output supply voltage range?

A: The BM61M41RFV-CE2 operates across 9V ~ 24V, which encompasses the BM60014FV-CE2 range of 10V ~ 24V. The substitute provides extended lower voltage capability, making it compatible with applications operating at the original part's specified supply range.

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