ACPL-3130-560E Equivalent & Substitute Parts

Part Overview

The ACPL-3130-560E is a 3.75kVrms optical isolation gate driver manufactured by Broadcom Limited. This single-channel device provides 2.5A peak output current with 40kV/µs common mode transient immunity, designed for high-speed gate driving applications requiring galvanic isolation. The part is currently in active production status with 907 units in stock. Substitute parts are identified when equivalent functional performance can be maintained within the specified electrical and mechanical parameter ranges for gate driver optical coupling devices.

Substiute Parts

ACPL-3130-560E
Broadcom LimitedIn Stock: 954ACPL-3130-560E Datasheet
ACPL-3130-560E
Current Part
VO3120-X001
Vishay Semiconductor Opto DivisionIn Stock: 927VO3120-X001 Datasheet
VO3120-X001
MFR Recommended

Key Parameters

Parameter Value
Manufacturer Part Number ACPL-3130-560E
Manufacturer Broadcom Limited
Technology Optical Coupling
Number of Channels 1
Voltage - Isolation 3750Vrms
Common Mode Transient Immunity (Min) 40kV/µs
Propagation Delay tpLH / tpHL (Max) 500ns / 500ns
Pulse Width Distortion (Max) 300ns
Rise / Fall Time (Typ) 100ns / 100ns
Current - Output High, Low 2A / 2A
Current - Peak Output 2.5A
Voltage - Output Supply 15V ~ 30V
Operating Temperature -40°C ~ 100°C
Mounting Type Surface Mount
Package / Case 8-SMD, Gull Wing
Product Status Active
RoHS Status ROHS3 Compliant

Substitute Part Grouping Explanation

Substitution of the ACPL-3130-560E is determined by the following critical parameters:

  • Single-channel optical isolation gate driver topology
  • Isolation voltage rating of 3750Vrms or higher
  • Peak output current capability of 2.5A or greater
  • Common mode transient immunity of 25kV/µs or higher
  • Propagation delay specifications compatible with 500ns maximum
  • Output supply voltage range overlap with 15V ~ 30V
  • Operating temperature range encompassing -40°C ~ 100°C
  • 8-DIP package configuration
  • Active product status with current manufacturing support
  • ROHS3 compliance and equivalent regulatory approvals

The VO3120-X001 from Vishay Semiconductor Opto Division meets these substitution criteria with enhanced isolation voltage (5300Vrms), improved propagation delay (400ns), and compatible output current specifications.

Parameter Comparison

Parameter ACPL-3130-560E (Broadcom) VO3120-X001 (Vishay) Compatibility
Technology Optical Coupling Optical Coupling Identical
Number of Channels 1 1 Identical
Voltage - Isolation 3750Vrms 5300Vrms Substitute exceeds requirement
Common Mode Transient Immunity (Min) 40kV/µs 25kV/µs Main part exceeds substitute
Propagation Delay tpLH / tpHL (Max) 500ns / 500ns 400ns / 400ns Substitute improves performance
Pulse Width Distortion (Max) 300ns 200ns Substitute improves performance
Rise / Fall Time (Typ) 100ns / 100ns 100ns / 100ns Identical
Current - Output High, Low 2A / 2A 2.5A / 2.5A Substitute exceeds requirement
Current - Peak Output 2.5A 2.5A Identical
Voltage - Output Supply 15V ~ 30V 15V ~ 32V Substitute range encompasses main part
Operating Temperature -40°C ~ 100°C -40°C ~ 110°C Substitute range encompasses main part
Mounting Type Surface Mount Through Hole Different mounting technology
Package / Case 8-SMD, Gull Wing 8-DIP (0.300", 7.62mm) Different package form factor
Product Status Active Active Both actively manufactured
RoHS Status ROHS3 Compliant ROHS3 Compliant Identical

Engineering Selection Recommendations

The VO3120-X001 qualifies as a functional substitute for the ACPL-3130-560E based on active product status, ROHS3 compliance, and equivalent regulatory approvals (cUR, UR, VDE vs. CSA, IEC/EN/DIN, UR). Both devices maintain REACH unaffected status and EAR99 export classification.

Electrical performance of the VO3120-X001 meets or exceeds the ACPL-3130-560E in isolation voltage, propagation delay, pulse width distortion, and output current specifications. The substitute device supports an extended operating temperature range (-40°C ~ 110°C) and wider output supply voltage range (15V ~ 32V).

Package and mounting differences require circuit board redesign consideration. The ACPL-3130-560E uses surface mount technology (8-SMD, Gull Wing), while the VO3120-X001 uses through-hole technology (8-DIP). These are distinct form factors requiring different PCB layouts and assembly processes.

The ACPL-3130-560E provides higher common mode transient immunity (40kV/µs vs. 25kV/µs), which may be a determining factor in applications with severe dV/dt conditions.

Frequently Asked Questions (FAQ)

Q: Can the VO3120-X001 directly replace the ACPL-3130-560E on the same PCB?

A: No. The ACPL-3130-560E is a surface mount device (8-SMD, Gull Wing), while the VO3120-X001 is a through-hole device (8-DIP). Different PCB layouts and assembly processes are required.

Q: What are the key electrical differences between these parts?

A: The VO3120-X001 provides higher isolation voltage (5300Vrms vs. 3750Vrms), faster propagation delay (400ns vs. 500ns), and higher output current in the low state (2.5A vs. 2A). The ACPL-3130-560E offers superior common mode transient immunity (40kV/µs vs. 25kV/µs).

Q: Are both parts currently available?

A: Yes. The ACPL-3130-560E has 907 units in stock, and the VO3120-X001 has 822 units in stock, both from active manufacturing.

Q: Do both parts meet the same regulatory standards?

A: Both are ROHS3 compliant and REACH unaffected. Regulatory approvals differ: ACPL-3130-560E carries CSA, IEC/EN/DIN, and UR approvals; VO3120-X001 carries cUR, UR, and VDE approvals. Application-specific requirements determine which certification set is necessary.

Q: Which part should be selected for high dV/dt environments?

A: The ACPL-3130-560E is specified for 40kV/µs common mode transient immunity, compared to 25kV/µs for the VO3120-X001. Applications requiring immunity to rapid voltage transients should prioritize the ACPL-3130-560E.

Q: What is the temperature operating range difference?

A: The ACPL-3130-560E operates from -40°C to 100°C, while the VO3120-X001 extends to 110°C. The VO3120-X001 provides a 10°C higher maximum operating temperature.

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