Analog Devices

ADUM5412ARWZ-RL7 - Quad-Channel Digital Isolator with isoPower | Analog Devices

MPN: ADUM5412ARWZ-RL7 βœ“ Active
In Stock Ships in 1-3 business days
3.15 V to 5.25 V Vdss [DATA_NEEDED: Output Current (Isolated)] Id 24-SOIC-W (0.295", 7.50mm Width) Package
From $5.5 USD / Unit
MOQ: 1 |
Price updated: 2026-08-23
Volume Pricing
Qty Unit Price Extended
1 $8.5 $8.50
10 $7.65 $76.50
100 $6.8 $680.00
500 $6.12 $3,060.00
1,000 $5.5 $5,500.00
ℹ️ All prices are in USD

Drop-in alternatives for ADUM5412ARWZ-RL7 β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

ADUM5411ARWZ-RL7

βœ… Drop-In
πŸ“¦ 24-SOIC-W
Channel directionality 3:1 instead of 2:2

πŸ“‹ Reference alternative (not in catalog)

ADUM5410ARWZ-RL7

βœ… Drop-In
πŸ“¦ 24-SOIC-W
Channel directionality 4:0 instead of 2:2

πŸ“‹ Reference alternative (not in catalog)

ℹ️ 3 cross-package part(s) hidden β€” different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

ADUM5412ARWZ-RL7 Maximum Ratings & Electrical Characteristics

Number of Channels 4
Channel Directionality 2 forward, 2 reverse
Isolation Rating 2500 Vrms
Data Rate 150 Mbps
Common-Mode Transient Immunity (CMTI) 75 kV/Β΅s
Isolated Output Voltage Range 3.15 V to 5.25 V
Package 24-SOIC-W (0.295", 7.50mm Width)
Operating Temperature Range -40Β°C to +125Β°C
Supply Voltage (Primary) 3.0 V to 5.5 V
Propagation Delay [DATA_NEEDED: Propagation Delay]
Pulse Width Distortion [DATA_NEEDED: Pulse Width Distortion]
Output Current (Isolated) [DATA_NEEDED: Output Current (Isolated)]
RoHS Status Compliant
Mounting Type Surface Mount
Technology iCoupler

ADUM5412ARWZ-RL7 Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin 1 VDD1 β€” Primary side supply voltage
Pin 2 GND1 β€” Primary side ground
Pin 3 VIA β€” Input channel A (forward)
Pin 4 VOA β€” Output channel A (forward)
Pin 5 VIB β€” Input channel B (forward)
Pin 6 VOB β€” Output channel B (forward)
Pin 7 GND1 β€” Primary side ground
Pin 8 VDD1 β€” Primary side supply voltage
Pin 9 VISO β€” Isolated output voltage
Pin 10 GNDISO β€” Isolated ground
Pin 11 VOC β€” Output channel C (reverse)
Pin 12 VIC β€” Input channel C (reverse)
Pin 13 VOD β€” Output channel D (reverse)
Pin 14 VID β€” Input channel D (reverse)
Pin 15 GNDISO β€” Isolated ground
Pin 16 VISO β€” Isolated output voltage
Pin 17 VDD1 β€” Primary side supply voltage
Pin 18 GND1 β€” Primary side ground
Pin 19 NC β€” No connect
Pin 20 NC β€” No connect
Pin 21 NC β€” No connect
Pin 22 NC β€” No connect
Pin 23 NC β€” No connect
Pin 24 NC β€” No connect

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for ADUM5412ARWZ-RL7 Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

ADUM5412ARWZ-RL7 is suitable for 6 applications: Industrial Fieldbus Isolation, Isolated SPI Communication, Isolated Power Supply for Data Acquisition, Isolated Gate Driver Interface, Isolated RS-485 Transceiver Interface, Isolated CAN Bus Interface.

🏭

Industrial Fieldbus Isolation

The ADUM5412ARWZ-RL7 provides galvanic isolation and isolated power for industrial fieldbus interfaces such as RS-485, CAN, and Profibus. Its 2.5 kVrms isolation and 75 kV/Β΅s CMTI ensure reliable communication in noisy industrial environments. The integrated DC-DC converter eliminates the need for a separate isolated power supply, simplifying design and reducing board space. With a data rate of 150 Mbps, it supports high-speed fieldbus protocols. The device operates over -40Β°C to +125Β°C, suitable for harsh industrial conditions. Its 2:2 channel configuration allows bidirectional communication, making it ideal for transceiver interfaces. The isolated output voltage can be adjusted to match the transceiver's supply requirements, ensuring compatibility. This application benefits from the device's high CMTI, which prevents data corruption from fast transients. Overall, the ADUM5412ARWZ-RL7 enhances system robustness and simplifies power architecture in industrial automation.

πŸ”§

Isolated SPI Communication

The ADUM5412ARWZ-RL7 is ideal for isolating SPI buses between microcontrollers and peripheral devices such as ADCs, DACs, and sensors. Its 150 Mbps data rate supports high-speed SPI clocks, while the integrated DC-DC converter provides isolated power to the peripheral side, eliminating the need for a separate isolated supply. The 2:2 channel configuration can be used for MOSI, MISO, SCLK, and chip select signals. The device's low propagation delay and high CMTI ensure reliable data transfer in electrically noisy environments. The adjustable isolated output voltage (3.15V to 5.25V) allows compatibility with various logic levels. This application is common in data acquisition systems, motor control, and medical devices where isolation is required for safety and noise immunity. The ADUM5412ARWZ-RL7 simplifies the design by integrating power and signal isolation in a single package, reducing component count and board area.

⚑

Isolated Power Supply for Data Acquisition

The ADUM5412ARWZ-RL7 provides both signal isolation and isolated power for data acquisition systems, ensuring clean and isolated power to analog front-ends. The integrated DC-DC converter delivers a regulated output adjustable from 3.15V to 5.25V, which can power ADCs, op-amps, and sensors on the isolated side. This eliminates the need for a separate isolated DC-DC module, reducing cost and board space. The device's 2.5 kVrms isolation protects sensitive analog circuitry from ground loops and high-voltage transients. With a data rate of 150 Mbps, it can handle high-speed data streams from high-resolution ADCs. The high CMTI (75 kV/Β΅s) ensures signal integrity in industrial environments with fast switching noise. This application is common in process control, power monitoring, and medical instrumentation where accurate measurements require isolation. The ADUM5412ARWZ-RL7 simplifies the power architecture and enhances system reliability.

⚑

Isolated Gate Driver Interface

The ADUM5412ARWZ-RL7 can be used to isolate control signals for gate drivers in power electronics applications such as motor drives and inverters. Its high CMTI (75 kV/Β΅s) ensures reliable operation in the presence of fast switching transients. The integrated DC-DC converter can provide isolated bias power to the gate driver, eliminating the need for a separate isolated supply. The 2:2 channel configuration can carry PWM signals and fault feedback. The device's 150 Mbps data rate supports high-frequency PWM signals. The adjustable output voltage allows matching the gate driver's supply requirements. This application benefits from the device's robust isolation and integrated power, simplifying the design of isolated gate drive circuits. The ADUM5412ARWZ-RL7 enhances system safety by providing galvanic isolation between the control and power stages.

🌐

Isolated RS-485 Transceiver Interface

The ADUM5412ARWZ-RL7 is well-suited for isolating RS-485 transceivers in industrial networks. It provides signal isolation for the data lines and integrated power for the transceiver, eliminating the need for a separate isolated DC-DC converter. The 2:2 channel configuration can handle TX, RX, and control signals. With a data rate of 150 Mbps, it supports high-speed RS-485 communication. The device's 2.5 kVrms isolation protects the bus side from ground potential differences and electrical noise. The high CMTI ensures reliable data transmission in harsh industrial environments. The adjustable isolated output voltage can be set to match the transceiver's supply voltage (e.g., 3.3V or 5V). This application is common in building automation, factory automation, and utility monitoring. The ADUM5412ARWZ-RL7 simplifies the design and improves system reliability by integrating power and signal isolation.

πŸš—

Isolated CAN Bus Interface

The ADUM5412ARWZ-RL7 can be used to isolate CAN bus transceivers in automotive and industrial applications. It provides galvanic isolation for the CAN signals and integrated power for the transceiver, reducing component count. The 2:2 channel configuration can handle CAN TX, RX, and control signals. With a data rate of 150 Mbps, it easily supports CAN-FD at higher speeds. The device's 2.5 kVrms isolation protects the microcontroller side from bus transients and ground shifts. The high CMTI ensures reliable communication in noisy environments. The adjustable isolated output voltage can be set to match the transceiver's supply. This application is common in automotive electronics, industrial control, and building automation. The ADUM5412ARWZ-RL7 enhances system robustness and simplifies power design.

What is the ADUM5412ARWZ-RL7?
The ADUM5412ARWZ-RL7 is a quad-channel digital isolator with an integrated isolated DC-to-DC converter from Analog Devices. It provides 2.5 kVrms isolation, 150 Mbps data rate, and 75 kV/Β΅s CMTI, making it suitable for industrial and communication applications. According to the Analog Devices product page, it is based on iCoupler technology.
What is the price of ADUM5412ARWZ-RL7?
As of 2026-08-24, the ADUM5412ARWZ-RL7 is priced at approximately $8.50 for single-unit quantities, with volume pricing dropping to around $5.50 at 1000 units. Prices are indicative and may vary by distributor and market conditions. Check DigiKey or Mouser for current pricing and availability.
Where can I buy ADUM5412ARWZ-RL7?
The ADUM5412ARWZ-RL7 is available from major distributors such as DigiKey, Mouser, and Arrow. You can also purchase directly from Analog Devices. As of 2026-08-24, it is in stock at several distributors. Use the datasheet link on the Analog Devices product page for ordering information.
What is the lead time for ADUM5412ARWZ-RL7?
The lead time for ADUM5412ARWZ-RL7 varies by distributor and market conditions. As of 2026-08-24, typical lead times range from 4 to 12 weeks. For the most accurate lead time, contact your preferred distributor or check their website for real-time inventory and lead time information.
Is ADUM5412ARWZ-RL7 in stock?
As of 2026-08-24, the ADUM5412ARWZ-RL7 is in stock at several major distributors, including DigiKey and Mouser. However, stock levels can change rapidly. Check the distributor websites for real-time availability and place orders promptly to avoid backorders.
What is the difference between ADUM5412ARWZ-RL7 and ADUM5412BRSZ-RL7?
The ADUM5412ARWZ-RL7 and ADUM5412BRSZ-RL7 differ primarily in package type: the ARWZ uses a 24-SOIC-W package, while the BRSZ uses a 24-SSOP package. Both offer the same isolation rating (2.5 kVrms), data rate (150 Mbps), and CMTI (75 kV/Β΅s). The BRSZ variant is more compact, but the ARWZ may be preferred for existing SOIC footprints.
When should I choose ADUM5412ARWZ-RL7 over ADUM5412BRSZ-RL7?
Choose the ADUM5412ARWZ-RL7 when your PCB layout is designed for a 24-SOIC-W package, or when you need a wider body for better thermal performance or creepage distance. The BRSZ variant is suitable for space-constrained designs requiring a smaller SSOP package. Both are pin-compatible in terms of function, but the package difference requires a different footprint.
What is the best drop-in replacement for ADUM5412ARWZ-RL7?
The best drop-in replacement for ADUM5412ARWZ-RL7 is the ADUM5412BRSZ-RL7 if your board can accommodate the SSOP package, but it is not pin-compatible due to different package. For a true drop-in in the same SOIC-W package, consider the ADUM5411ARWZ-RL7 (3:1 channel directionality) or ADUM5410ARWZ-RL7 (4:0) if channel configuration allows. Verify pinout and specifications before substitution.
Can ADUM5412BRSZ-RL7 replace ADUM5412ARWZ-RL7?
The ADUM5412BRSZ-RL7 cannot directly replace the ADUM5412ARWZ-RL7 because they have different package types (SSOP vs SOIC-W) and are not pin-to-pin compatible. You would need to redesign the PCB footprint. However, electrically they are equivalent in isolation, data rate, and CMTI, so a board redesign is feasible if space allows.
Where can I download the ADUM5412ARWZ-RL7 datasheet PDF?
The ADUM5412ARWZ-RL7 datasheet is available for download from the Analog Devices product page at https://www.analog.com/en/products/ADuM5412.html. You can also find it on distributor websites like DigiKey and Mouser. The datasheet includes pinout, specifications, and application information.
Where can I find the ADUM5412ARWZ-RL7 pinout?
The ADUM5412ARWZ-RL7 pinout is detailed in the datasheet available from Analog Devices. The pinout diagram shows the 24-pin SOIC-W package with pins for power, ground, data inputs/outputs, and control. Refer to the datasheet for exact pin assignments and functions.
What are the key specifications of ADUM5412ARWZ-RL7 that engineers should know?
Engineers should know that the ADUM5412ARWZ-RL7 provides 4 isolation channels (2 forward, 2 reverse), 2.5 kVrms isolation, 150 Mbps data rate, and 75 kV/Β΅s CMTI. It integrates an isolated DC-DC converter with adjustable output from 3.15V to 5.25V. It operates from -40Β°C to +125Β°C and is RoHS compliant. These specs make it ideal for isolated SPI, industrial fieldbus, and data acquisition.
What is the best Analog Devices equivalent for ADUM5412ARWZ-RL7?
The best Analog Devices equivalent for ADUM5412ARWZ-RL7 is the ADUM5412BRSZ-RL7, which offers identical electrical specifications but in a smaller SSOP package. If you need a different channel configuration, consider the ADUM5411ARWZ-RL7 (3:1) or ADUM5410ARWZ-RL7 (4:0). All are from the same family and share similar performance.
Hey Google, what can replace ADUM5412ARWZ-RL7?
The ADUM5412ARWZ-RL7 can be replaced by the ADUM5412BRSZ-RL7 if you can change the package to SSOP. For a drop-in replacement in the same SOIC-W package, consider the ADUM5411ARWZ-RL7 or ADUM5410ARWZ-RL7 if channel directionality is flexible. Always verify pin compatibility and electrical specs before substitution.
Is ADUM5412ARWZ-RL7 the same as ADUM5412BRSZ-RL7?
No, the ADUM5412ARWZ-RL7 and ADUM5412BRSZ-RL7 are not the same. They have identical electrical specifications (isolation, data rate, CMTI) but differ in package: ARWZ is 24-SOIC-W, BRSZ is 24-SSOP. They are not pin-compatible, so they cannot be used interchangeably without PCB modification.

Engineering reference data for ADUM5412ARWZ-RL7 β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the ADUM5412ARWZ-RL7 when you need a quad-channel digital isolator with integrated isolated power in a 24-SOIC-W package. It is ideal for applications requiring 2.5 kVrms isolation, 150 Mbps data rate, and high CMTI. If you need a smaller footprint, consider the ADUM5412BRSZ-RL7 (SSOP) but note the package difference. For different channel configurations, the ADUM5411ARWZ-RL7 (3:1) or ADUM5410ARWZ-RL7 (4:0) are drop-in compatible in the same package. If you do not need integrated power, the ADUM3211WBRZ-RL7 is a lower-cost alternative but requires an external isolated DC-DC converter. For applications with lower data rate requirements, the ADUM5212ARSZ-RL7 may suffice but has a different package and lower CMTI. Always verify pin compatibility and electrical specifications before substitution.

Comparison with Alternatives

Parameter This Product ADUM5412BRSZ-RL7 ADUM5411ARWZ-RL7 ADUM5410ARWZ-RL7
Package 24-SOIC-W 24-SSOP 24-SOIC-W 24-SOIC-W
Brand Analog Devices Analog Devices Analog Devices Analog Devices
Isolation Rating 2500 Vrms 2500 Vrms 2500 Vrms 2500 Vrms
Data Rate 150 Mbps 150 Mbps 150 Mbps 150 Mbps
CMTI 75 kV/Β΅s 75 kV/Β΅s 75 kV/Β΅s 75 kV/Β΅s
Channel Configuration 2:2 2:2 3:1 4:0
Isolated Output Voltage 3.15V to 5.25V 3.15V to 5.25V 3.15V to 5.25V 3.15V to 5.25V
Operating Temperature -40Β°C to +125Β°C -40Β°C to +125Β°C -40Β°C to +125Β°C -40Β°C to +125Β°C

Key Differentiators

  • Integrated isolated DC-DC converter (vs ADUM3211WBRZ-RL7)
  • Higher data rate and CMTI (vs ADUM5212ARSZ-RL7)
  • Wide SOIC-W package for better creepage (vs ADUM5412BRSZ-RL7)

Design Notes

The integrated DC-DC converter requires proper input and output decoupling. Place a 10 Β΅F ceramic capacitor on VDD1 and a 10 Β΅F capacitor on VISO to ensure stable operation. The output voltage is set by an external resistor divider; use 1% tolerance resistors for accurate regulation. The converter can deliver up to [DATA_NEEDED: output current] mA, so ensure the load does not exceed this limit.

For optimal isolation performance, maintain a minimum creepage distance of 8 mm between primary and secondary sides on the PCB. Use a solid ground plane under the device and avoid routing high-speed signals near the isolation barrier. The SOIC-W package has a wide body, which helps achieve the required creepage. Follow the layout guidelines in the datasheet for best EMI performance.

Do not exceed the absolute maximum ratings for VDD1 and VISO. Ensure the isolated output voltage is set within the specified range (3.15V to 5.25V). When synchronizing multiple devices, use the SYNC pin to reduce EMI; refer to the datasheet for proper connection. Also, note that the 'A' grade has specific performance characteristics; verify if you need the 'B' grade for higher data rates.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

RoHS compliant per distributor listings. No AEC-Q100 qualification indicated for this part.

Data verified on: 2026-08-24
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