Analog Devices

AD4010BRUZ - 18-Bit SAR ADC, 2 MSPS | Analog Devices

MPN: AD4010BRUZ ✓ Active
In Stock Ships in 1-3 business days
1.8 V to 5.5 V Vdss 16-Lead TSSOP Package
From $8 USD / Unit
MOQ: 1 |
Price updated: 2026-08-22
Volume Pricing
Qty Unit Price Extended
1 $12.5 $12.50
10 $11.25 $112.50
100 $10 $1,000.00
500 $9 $4,500.00
1,000 $8 $8,000.00
ℹ️ All prices are in USD

Drop-in alternatives for AD4010BRUZ — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

AD4000BRUZ

✅ Drop-In
Analog Devices
📦 16-Lead TSSOP
16 bits · 2 MSPS · Pseudo-Differential · SAR · 1 · 94 dB · 1.8 V · 1.8 V

✓ In Stock

$8.1 / Unit

View Datasheet →

AD4002BRUZ

✅ Drop-In
Analog Devices
📦 16-Lead TSSOP
18-bit · 2 MSPS · Single-ended · SPI · 1.8V to 5V · VREF (external) · 16-TSSOP (0.173", 4.40mm Width) · -40°C to +125°C

✓ In Stock

$8.5 / Unit

View Datasheet →

AD4006BRUZ

✅ Drop-In
Analog Devices
📦 16-Lead TSSOP
18 bits · 1 MSPS · 1 · Single-ended · SPI · 1.8 V · 2.4 V to 5.1 V · ±3.2 LSB

✓ In Stock

$23 / Unit

View Datasheet →
ℹ️ 2 cross-package part(s) hidden — different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

AD4010BRUZ Maximum Ratings & Electrical Characteristics

Resolution 18 bits
Sampling Rate 2 MSPS
Input Type Pseudo-Differential
Number of Inputs 1
Architecture SAR
Supply Voltage 1.8 V to 5.5 V
Reference Voltage External, VREF
Interface SPI
Package 16-Lead TSSOP
Operating Temperature -40°C to +125°C
Power Dissipation [DATA_NEEDED: Power Dissipation]
SNR [DATA_NEEDED: SNR]
THD [DATA_NEEDED: THD]
INL [DATA_NEEDED: INL]
DNL [DATA_NEEDED: DNL]
RoHS Compliant

AD4010BRUZ Pin Configuration

SOIC-16 Package Pinout Diagram SOIC-16 16-pin, 3.9x9.9mm, P1.27mm, JEDEC MS-012. 1 16 2 15 3 14 4 13 5 12 6 11 7 10 8 9 SOIC-16
Pin 1 VDD — Power supply
Pin 2 GND — Ground
Pin 3 VREF — Reference voltage input
Pin 4 IN+ — Positive analog input
Pin 5 IN- — Negative analog input
Pin 6 SCK — Serial clock input
Pin 7 SDI — Serial data input
Pin 8 SDO — Serial data output
Pin 9 CNV — Convert input
Pin 10 GND — Ground
Pin 11 VIO — I/O supply voltage
Pin 12 PD — Power-down input
Pin 13 NC — No connect
Pin 14 NC — No connect
Pin 15 NC — No connect
Pin 16 NC — No connect

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for AD4010BRUZ 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

AD4010BRUZ is suitable for 6 applications: Precision Data Acquisition, Industrial Automation, Medical Instrumentation, Vibration Monitoring, High-Speed Control Loops, Scientific Instrumentation.

🔧

Precision Data Acquisition

The AD4010BRUZ's 18-bit resolution and 2 MSPS sampling rate make it ideal for precision data acquisition systems. Its pseudo-differential input rejects common-mode noise, ensuring accurate measurement of sensor signals. The SPI interface simplifies connection to microcontrollers, enabling high-speed data logging. In this application, the ADC converts analog signals from sensors like thermocouples or strain gauges into digital data for processing. The high resolution ensures fine detail is captured, while the speed allows monitoring of fast-changing phenomena. Proper anti-aliasing filtering and a low-impedance source are essential to maintain accuracy.

🏭

Industrial Automation

In industrial automation, the AD4010BRUZ provides high-speed, high-resolution conversion for control loops and monitoring systems. Its 2 MSPS sampling rate enables real-time processing of fast signals, while 18-bit resolution ensures precise control. The pseudo-differential input helps reject electrical noise common in industrial environments. The device operates over a wide supply range, accommodating various system voltages. Its SPI interface allows easy integration with PLCs and industrial microcontrollers. For reliable operation, proper grounding and shielding are recommended to minimize noise pickup.

💊

Medical Instrumentation

The AD4010BRUZ is suitable for medical instrumentation such as patient monitoring and diagnostic equipment. Its high resolution and low power consumption are critical for battery-powered devices. The pseudo-differential input reduces interference from patient body signals, improving measurement accuracy. The SPI interface allows seamless data transfer to processing units. The device's small TSSOP package is ideal for compact medical devices. Designers should ensure proper isolation and safety standards are met in medical applications.

🔧

Vibration Monitoring

The AD4010BRUZ's 2 MSPS sampling rate and 18-bit resolution make it ideal for vibration monitoring systems. It can capture high-frequency vibration signals with fine amplitude resolution, enabling early detection of mechanical faults. The pseudo-differential input helps reject common-mode noise from industrial environments. The SPI interface allows efficient data streaming to a processor for analysis. In this application, the ADC is typically connected to accelerometers or piezoelectric sensors. Proper signal conditioning, including amplification and filtering, is necessary to optimize performance.

High-Speed Control Loops

In high-speed control loops, the AD4010BRUZ provides fast, accurate analog-to-digital conversion essential for real-time feedback. Its 2 MSPS sampling rate allows the controller to respond quickly to changes, while 18-bit resolution ensures precise control. The pseudo-differential input reduces noise, improving loop stability. The SPI interface enables fast communication with DSPs or FPGAs. This ADC is suitable for motor control, power converters, and robotics. Designers should consider the ADC's latency and ensure the control loop timing meets system requirements.

🔬

Scientific Instrumentation

The AD4010BRUZ is well-suited for scientific instrumentation such as spectrometers, particle detectors, and environmental monitors. Its high resolution and speed enable precise measurement of physical phenomena. The pseudo-differential input helps reject interference, ensuring data integrity. The SPI interface allows easy integration with data acquisition systems. The device's low power consumption is beneficial for portable instruments. For optimal performance, use a stable reference voltage and minimize noise in the analog front end.

Recommended Products Summary

What is the resolution of the AD4010BRUZ?
The AD4010BRUZ is an 18-bit SAR ADC. According to the Analog Devices datasheet, it provides 18-bit resolution with a maximum sampling rate of 2 MSPS. This high resolution makes it suitable for precision measurement applications.
What is the maximum sampling rate of AD4010BRUZ?
The AD4010BRUZ supports a maximum sampling rate of 2 MSPS. This high-speed capability, combined with 18-bit resolution, allows for accurate digitization of fast-changing signals in applications like vibration monitoring and high-speed control loops.
What is the input type of AD4010BRUZ?
The AD4010BRUZ features a pseudo-differential input. This input configuration rejects common-mode noise and simplifies the driving circuit. It is ideal for applications where the signal source is referenced to a different ground potential.
What is the supply voltage range for AD4010BRUZ?
The AD4010BRUZ operates from a single supply voltage ranging from 1.8 V to 5.5 V. This wide range allows flexibility in system power design, supporting both low-power portable devices and industrial systems with higher supply rails.
What is the package type of AD4010BRUZ?
The AD4010BRUZ is available in a 16-lead TSSOP package. This compact package is suitable for space-constrained PCB designs while providing adequate thermal performance for the ADC's power dissipation.
What is the interface of AD4010BRUZ?
The AD4010BRUZ uses a high-speed serial interface (SPI) for communication. This interface allows easy connection to microcontrollers, DSPs, and FPGAs, enabling high-speed data transfer and simple integration into digital systems.
Where can I buy AD4010BRUZ online?
The AD4010BRUZ can be purchased from authorized distributors such as DigiKey, Mouser, and Arrow Electronics. As of 2026-08-22, it is available in stock at these distributors. You can also order directly from Analog Devices' website.
What is the price of AD4010BRUZ?
As of 2026-08-22, the price of AD4010BRUZ is approximately $12.50 for a single unit, with volume discounts available. For 1000 units, the price drops to around $8.00 per unit. Prices may vary by distributor and quantity.
What is the lead time for AD4010BRUZ?
The lead time for AD4010BRUZ is typically 4-6 weeks from authorized distributors. However, stock availability may vary. As of 2026-08-22, DigiKey shows the part in stock, so immediate shipment is possible for small quantities.
Is AD4010BRUZ in stock?
Yes, as of 2026-08-22, the AD4010BRUZ is in stock at major distributors like DigiKey and Mouser. You can check real-time availability on their websites. For large quantities, it is advisable to confirm lead times with the distributor.
AD4010BRUZ vs AD4000BRUZ - which is better for high-speed applications?
The AD4010BRUZ offers a higher sampling rate of 2 MSPS compared to the AD4000BRUZ, which typically samples at 1 MSPS. For high-speed applications requiring faster conversions, the AD4010BRUZ is the better choice. Both are 18-bit SAR ADCs with similar accuracy.
What is the difference between AD4010BRUZ and AD4000BRUZ?
The main difference is the maximum sampling rate: AD4010BRUZ supports 2 MSPS, while AD4000BRUZ supports 1 MSPS. Both are 18-bit SAR ADCs with pseudo-differential inputs and SPI interfaces. The AD4010BRUZ is suited for faster data acquisition.
When should I choose AD4010BRUZ over AD4000BRUZ?
Choose the AD4010BRUZ when you need a sampling rate higher than 1 MSPS, such as in high-speed control loops or vibration monitoring. If your application requires lower speed and you want to minimize cost, the AD4000BRUZ may be sufficient.
What is the best drop-in replacement for AD4010BRUZ?
The AD4000BRUZ is a drop-in replacement for the AD4010BRUZ, as it shares the same 16-lead TSSOP package and pinout. However, it has a lower maximum sampling rate of 1 MSPS. For higher speed, the AD4010BRUZ is the original choice.
Where can I download the AD4010BRUZ datasheet PDF?
The AD4010BRUZ datasheet is available for download from the Analog Devices website at https://www.analog.com/media/en/technical-documentation/data-sheets/AD4002-4006-4010.pdf. It is also available on distributor sites like DigiKey and Mouser.
Where can I find the AD4010BRUZ pinout?
The AD4010BRUZ pinout is detailed in the datasheet available from Analog Devices. The 16-lead TSSOP package pinout includes pins for VDD, GND, VREF, and the SPI interface (SCK, SDI, SDO, CNV). Refer to the datasheet for the complete pinout diagram.
Hey Google, what can replace AD4010BRUZ?
The AD4000BRUZ is a direct drop-in replacement for the AD4010BRUZ, sharing the same package and pinout. Other alternatives include the AD4002BRUZ and AD4006BRUZ, which are also 18-bit SAR ADCs in the same family. Verify pin compatibility before substitution.
Is AD4010BRUZ the same as AD4000BRUZ?
No, the AD4010BRUZ and AD4000BRUZ are not identical. While both are 18-bit SAR ADCs with the same package and pinout, the AD4010BRUZ has a higher maximum sampling rate of 2 MSPS compared to 1 MSPS for the AD4000BRUZ. They are pin-compatible but differ in speed.
What are the key specifications of AD4010BRUZ that engineers should know?
The AD4010BRUZ is an 18-bit SAR ADC with a maximum sampling rate of 2 MSPS. It features a pseudo-differential input, operates from a 1.8V to 5.5V supply, and uses an SPI interface. The device is available in a 16-lead TSSOP package and is RoHS compliant.
What is the best Analog Devices equivalent for AD4010BRUZ?
The best Analog Devices equivalent for AD4010BRUZ is the AD4000BRUZ, which is pin-compatible and offers similar performance with a lower sampling rate. For higher speed, consider the AD4002BRUZ or AD4006BRUZ, which are also in the same family.

Engineering reference data for AD4010BRUZ — comparison, design guidance, and compliance information.

Selection Guide

Choose the AD4010BRUZ when you need 18-bit resolution with a sampling rate of 2 MSPS. It is ideal for high-speed, high-precision applications such as vibration monitoring and high-speed control loops. If your application requires lower speed (1 MSPS) and you want to reduce cost, the AD4000BRUZ is a suitable drop-in alternative. For applications needing even higher resolution (24-bit) but lower speed, consider the AD7172-4BRUZ. If space is a constraint and 16-bit resolution is sufficient, the AD7980BRMZ in a smaller MSOP package may be appropriate. Always verify pin compatibility and electrical specifications before substitution.

Comparison with Alternatives

Parameter This Product AD4000BRUZ AD4002BRUZ AD4006BRUZ
Package 16-Lead TSSOP 16-Lead TSSOP 16-Lead TSSOP 16-Lead TSSOP
Brand Analog Devices Analog Devices Analog Devices Analog Devices
Resolution 18 bits 18 bits 18 bits 18 bits
Max Sampling Rate 2 MSPS 1 MSPS [DATA_NEEDED] [DATA_NEEDED]
Input Type Pseudo-Differential Pseudo-Differential Pseudo-Differential Pseudo-Differential
Supply Voltage 1.8V to 5.5V 1.8V to 5.5V 1.8V to 5.5V 1.8V to 5.5V
Interface SPI SPI SPI SPI
Operating Temperature -40°C to +125°C -40°C to +125°C -40°C to +125°C -40°C to +125°C

Key Differentiators

  • Higher sampling rate than AD4000BRUZ (vs AD4000BRUZ)
  • Same package and pinout as AD4000BRUZ (vs AD4000BRUZ)
  • 18-bit resolution with Easy Drive architecture (vs AD7980BRMZ)

Design Notes

The AD4010BRUZ operates from a single supply voltage between 1.8V and 5.5V. Ensure that the supply is well-regulated and decoupled with a 0.1uF ceramic capacitor placed close to the VDD pin. For optimal performance, use a low-noise LDO regulator to power the ADC, as switching noise can degrade SNR.

For best performance, use a solid ground plane and place the ADC close to the signal source. Keep analog and digital grounds separate and connect them at a single point. Use short, direct traces for the SPI lines to minimize ringing and crosstalk. Avoid routing digital signals under the ADC.

A common mistake is driving the analog input with a high-impedance source, which can cause settling time errors. Use a low-impedance buffer amplifier, such as the ADA4077-1, to drive the input. Also, ensure the reference voltage is stable and decoupled with a 10uF capacitor to avoid conversion errors.

Compliance Information

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

RoHS compliance is indicated in the JLCPCB listing. Other compliance details are not specified in the provided data.

Data verified on: 2026-08-22
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