Analog Devices

ADUM3195ARWZ - Isolated Amplifier with Adjustable Gain | Analog Devices

MPN: ADUM3195ARWZ βœ“ Active
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3000 V rms Vdss [DATA_NEEDED: Supply Current (VDD1)] Id 16-lead SOIC (RW-16) Package
From $2.1 USD / Unit
MOQ: 1 |
Price updated: 2026-08-23
Volume Pricing
Qty Unit Price Extended
1 $3.24 $3.24
10 $2.92 $29.20
100 $2.59 $259.00
500 $2.33 $1,165.00
1,000 $2.1 $2,100.00
ℹ️ All prices are in USD

Drop-in alternatives for ADUM3195ARWZ 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:

ADUM3195WBRQZ

βœ… Drop-In
πŸ“¦ 16-QSOP
Automotive grade, AEC-Q100 qualified, same pinout

πŸ“‹ Reference alternative (not in catalog)

ADUM3195BRQZ

βœ… Drop-In
πŸ“¦ 16-QSOP
Similar isolated amplifier, check pin compatibility

πŸ“‹ Reference alternative (not in catalog)

ADUM3195ARQZ

βœ… Drop-In
πŸ“¦ 16-QSOP
Similar isolated amplifier, check pin compatibility

πŸ“‹ Reference alternative (not in catalog)

ADUM3195WARQZ

βœ… Drop-In
πŸ“¦ 16-QSOP
Automotive grade, similar specifications

πŸ“‹ Reference alternative (not in catalog)

ADUM3195WBRQZ-RL7

βœ… Drop-In
πŸ“¦ 16-QSOP
Tape and reel packaging variant of WBRQZ

πŸ“‹ Reference alternative (not in catalog)

ADUM3195ARWZ Maximum Ratings & Electrical Characteristics

Isolation Voltage 3000 V rms
Bandwidth 210 kHz
Supply Voltage VDD1 4.5 V to 5.5 V
Supply Voltage VDD2 4.5 V to 5.5 V
Gain Adjustable (external resistors)
Output Type Single-ended
Number of Channels 1
Package 16-lead SOIC (RW-16)
Operating Temperature Range -40Β°C to +125Β°C
Common-Mode Transient Immunity [DATA_NEEDED: Common-Mode Transient Immunity]
Input Offset Voltage [DATA_NEEDED: Input Offset Voltage]
Gain Error [DATA_NEEDED: Gain Error]
Supply Current (VDD1) [DATA_NEEDED: Supply Current (VDD1)]
Supply Current (VDD2) [DATA_NEEDED: Supply Current (VDD2)]
RoHS Status Compliant

ADUM3195ARWZ Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin 1 VDD1 β€” Input side supply voltage (4.5V to 5.5V)
Pin 2 GND1 β€” Input side ground
Pin 3 VIN+ β€” Non-inverting input
Pin 4 VIN- β€” Inverting input
Pin 5 GAIN β€” Gain setting pin (external resistor)
Pin 6 REF β€” Reference output
Pin 7 NC β€” No connect
Pin 8 NC β€” No connect
Pin 9 NC β€” No connect
Pin 10 NC β€” No connect
Pin 11 NC β€” No connect
Pin 12 NC β€” No connect
Pin 13 VOUT β€” Single-ended output
Pin 14 GND2 β€” Output side ground
Pin 15 VDD2 β€” Output side supply voltage (4.5V to 5.5V)
Pin 16 NC β€” No connect

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for ADUM3195ARWZ Drain-to-Source Voltage (Vds) Drain Current (Id)

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

Typical Applications

ADUM3195ARWZ is suitable for 6 applications: Isolated Voltage Sensing in Power Supplies, Current Sensing in Motor Drives, Isolated Signal Conditioning in Industrial Automation, Battery Management Systems, Solar Inverters, Medical Device Isolation.

⚑

Isolated Voltage Sensing in Power Supplies

The ADUM3195ARWZ is ideal for isolated voltage sensing in AC-DC and DC-DC converters. Its 3000 V rms isolation ensures safe measurement of high-voltage rails, while the 210 kHz bandwidth enables fast feedback for stable regulation. The adjustable gain allows precise scaling of the sensed voltage to match ADC input ranges, and the single-ended output simplifies interface with microcontrollers. In a typical flyback converter, the amplifier senses the output voltage across the isolation barrier and feeds the error signal to the PWM controller, ensuring accurate regulation without compromising safety.

🏭

Current Sensing in Motor Drives

In motor drives, the ADUM3195ARWZ is used for isolated current sensing in the inverter stage. Its high bandwidth of 210 kHz captures fast current transients, enabling precise torque control. The adjustable gain allows optimization for different current ranges, and the single-ended output directly interfaces with the motor control ADC. The isolation barrier protects the low-voltage control circuitry from the high-voltage motor supply, enhancing system safety. The device's common-mode transient immunity ensures reliable operation in the noisy switching environment of a motor drive.

🏭

Isolated Signal Conditioning in Industrial Automation

The ADUM3195ARWZ provides isolated signal conditioning for industrial sensors and transmitters. Its 3000 V rms isolation protects control systems from ground loops and high-voltage transients. The adjustable gain allows scaling of sensor outputs to match PLC or ADC inputs, and the single-ended output simplifies wiring. The wide operating temperature range of -40Β°C to +125Β°C makes it suitable for harsh industrial environments. The device's high bandwidth ensures accurate reproduction of fast-changing signals, such as those from pressure or flow sensors.

πŸ”‹

Battery Management Systems

In battery management systems (BMS), the ADUM3195ARWZ is used for isolated voltage and current monitoring of individual cells. Its 3000 V rms isolation ensures safe measurement of high-voltage battery stacks, while the adjustable gain allows precise scaling of cell voltages. The single-ended output interfaces directly with the BMS microcontroller, and the 210 kHz bandwidth supports fast sampling for accurate state-of-charge estimation. The device's low power consumption is beneficial for battery-powered systems, and its wide temperature range suits automotive and industrial BMS applications.

⚑

Solar Inverters

The ADUM3195ARWZ is used in solar inverters for isolated voltage and current sensing in the DC-DC and DC-AC stages. Its high isolation voltage ensures safety in high-voltage photovoltaic systems, and the 210 kHz bandwidth enables fast MPPT (Maximum Power Point Tracking) control. The adjustable gain allows optimization for different panel voltages, and the single-ended output simplifies interface with the inverter's DSP. The device's robust isolation and wide temperature range make it suitable for outdoor installations.

πŸ’Š

Medical Device Isolation

In medical devices, the ADUM3195ARWZ provides isolated signal conditioning for patient monitoring and diagnostic equipment. Its 3000 V rms isolation ensures patient safety by preventing dangerous leakage currents. The adjustable gain allows precise scaling of physiological signals, and the single-ended output interfaces with medical-grade ADCs. The device's high bandwidth supports accurate reproduction of ECG, EEG, and other biosignals. Its low power consumption is ideal for battery-operated devices, and its reliability meets the stringent requirements of medical applications.

Recommended Products Summary

AD7403 Isolated sigma-delta modulator for current sensing Used in: Isolated Voltage Sensing in Power Supplies, Current Sensing in Motor Drives, Isolated Signal Conditioning in Industrial Automation, Solar Inverters, Medical Device Isolation ADuM5401 Isolated DC-DC converter for power supply Used in: Isolated Voltage Sensing in Power Supplies, Isolated Signal Conditioning in Industrial Automation, Battery Management Systems, Medical Device Isolation ADSP-CM408F Motor control processor Used in: Current Sensing in Motor Drives, Solar Inverters ADBMS6948 Analog Devices Used in: Battery Management Systems
What is the isolation voltage of ADUM3195ARWZ?
The ADUM3195ARWZ provides 3000 V rms isolation voltage. According to the Analog Devices datasheet, this isolation rating ensures safe signal transfer across high-voltage barriers, making it suitable for industrial and power applications.
What is the bandwidth of ADUM3195ARWZ?
The ADUM3195ARWZ has a bandwidth of 210 kHz. This high bandwidth supports fast transient response in feedback loops, essential for stable operation in switching power supplies and motor control systems.
What is the supply voltage range for ADUM3195ARWZ?
The ADUM3195ARWZ operates with VDD1 and VDD2 each ranging from 4.5 V to 5.5 V. Both supplies must be within this range for proper operation, as specified in the datasheet.
How does ADUM3195ARWZ achieve adjustable gain?
The ADUM3195ARWZ achieves adjustable gain through an external resistor network. By selecting appropriate resistor values, designers can set the gain to meet their specific sensing requirements, as described in the datasheet.
What is the output type of ADUM3195ARWZ?
The ADUM3195ARWZ has a single-ended output. This simplifies interfacing with ADCs and microcontrollers, as no differential-to-single-ended conversion is needed.
Where can I buy ADUM3195ARWZ online?
ADUM3195ARWZ is available from major distributors such as DigiKey, Mouser, and Arrow. As of 2026-08-23, the 1ku list price starts at $3.24. Check current stock and pricing on distributor websites.
What is the price of ADUM3195ARWZ?
As of 2026-08-23, the 1ku list price for ADUM3195ARWZ starts at $3.24. Prices may vary by distributor and quantity. For example, DigiKey lists it at $3.24 for 1 unit, with volume discounts available.
What is the lead time for ADUM3195ARWZ?
The lead time for ADUM3195ARWZ depends on distributor stock and manufacturer availability. As of 2026-08-23, DigiKey shows it as 'ships today' for in-stock items. For larger quantities, lead times may extend to several weeks.
Is ADUM3195ARWZ in stock?
As of 2026-08-23, ADUM3195ARWZ is in stock at major distributors like DigiKey and Mouser. However, stock levels can change rapidly, so it is recommended to check current availability on distributor websites.
ADUM3195ARWZ vs ADUM3195WBRQZ - which is better for automotive applications?
The ADUM3195WBRQZ is the automotive-grade version of the ADUM3195, qualified to AEC-Q100 standards. For automotive applications, the WBRQZ is preferred due to its extended temperature range and reliability. The ARWZ is suitable for industrial and commercial applications.
What is the difference between ADUM3195ARWZ and ADUM3195WBRQZ?
The main difference is that ADUM3195WBRQZ is automotive-grade (AEC-Q100 qualified), while ADUM3195ARWZ is commercial-grade. Both have the same isolation voltage and bandwidth, but the WBRQZ is designed for harsher automotive environments.
When should I choose ADUM3195ARWZ over ADUM3195WBRQZ?
Choose ADUM3195ARWZ when you do not require automotive qualification and want a cost-effective solution for industrial or consumer applications. If your design targets automotive or requires AEC-Q100 compliance, select the WBRQZ variant.
What is the best drop-in replacement for ADUM3195ARWZ?
The ADUM3195WBRQZ is a drop-in replacement for ADUM3195ARWZ, as it is pin-compatible and has the same package (16-QSOP). However, it is automotive-grade, so verify if the extended temperature range is acceptable for your application.
Where can I download the ADUM3195ARWZ datasheet PDF?
The ADUM3195ARWZ datasheet PDF is available from Analog Devices at https://www.analog.com/media/en/technical-documentation/data-sheets/adum3195.pdf. It is also available on distributor sites like DigiKey and Mouser.
Where can I find the ADUM3195ARWZ pinout?
The ADUM3195ARWZ pinout is detailed in the datasheet, available from Analog Devices. The device is in a 16-lead SOIC package, with pins for VDD1, VDD2, input, output, and gain setting.

Engineering reference data for ADUM3195ARWZ β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the ADUM3195ARWZ when you need an isolated amplifier with adjustable gain and single-ended output for industrial, consumer, or medical applications. It offers a balance of performance and cost. If your application requires automotive qualification (AEC-Q100), select the ADUM3195WBRQZ instead. For applications where a fixed gain is acceptable and you need a lower-cost option, consider the ADUM3195BRQZ or ADUM3195ARQZ, but verify pin compatibility and specifications. The ARWZ is ideal for isolated voltage and current sensing in power supplies, motor drives, and battery management systems.

Comparison with Alternatives

Parameter This Product ADUM3195WBRQZ ADUM3195BRQZ ADUM3195ARQZ
Package 16-lead SOIC (RW-16) 16-QSOP 16-QSOP 16-QSOP
Brand Analog Devices Analog Devices Analog Devices Analog Devices
Isolation Voltage 3000 V rms 3000 V rms 3000 V rms 3000 V rms
Bandwidth 210 kHz 210 kHz 210 kHz 210 kHz
Supply Voltage VDD1 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V
Supply Voltage VDD2 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V
Gain Adjustable Adjustable Adjustable Adjustable
Output Type Single-ended Single-ended Single-ended Single-ended

Key Differentiators

  • Adjustable gain with single-ended output (vs ADUM3195WBRQZ)
  • Commercial grade cost-effective (vs ADUM3195WBRQZ)
  • Wide operating temperature range (vs ADUM3195BRQZ)

Design Notes

Ensure both VDD1 and VDD2 are within 4.5V to 5.5V. Use 0.1uF decoupling capacitors close to each supply pin to filter high-frequency noise. For optimal performance, place a 10uF bulk capacitor on each supply rail if the source is far from the device.

Maintain proper creepage and clearance distances on the PCB to meet isolation safety standards. The isolation barrier must be kept clean of copper traces to avoid reducing the isolation voltage. Use a slot or cutout under the device if necessary to increase creepage distance.

Place the gain-setting resistors close to the GAIN pin to minimize parasitic capacitance and inductance. Keep the input traces short and shielded to reduce noise pickup. For high-frequency operation, use a ground plane on both sides of the isolation barrier.

Compliance Information

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

RoHS compliant per Analog Devices product page. Not AEC-Q100 qualified; use ADUM3195WBRQZ for automotive.

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