Analog Devices

ADA4523-1BCPZ-RL7 - 36V Zero-Drift Op Amp | Analog Devices

MPN: ADA4523-1BCPZ-RL7 ✓ Active
In Stock Ships in 1-3 business days
4.5 V to 36 V Vdss 125 pA typical Id 8-LFCSP (3x3 mm) Package
From $2.89 USD / Unit
MOQ: 1 |
Price updated: 2026-08-22
Volume Pricing
Qty Unit Price Extended
1 $3.65 $3.65
10 $3.44 $34.40
100 $3.25 $325.00
500 $3.06 $1,530.00
1,000 $2.89 $2,890.00
ℹ️ All prices are in USD

Drop-in alternatives for ADA4523-1BCPZ-RL7 — 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:

ADA4522-1BCPZ-RL7

✅ Drop-In
📦 8-LFCSP (3x3)
Lower supply voltage (30 V max) and higher offset (10 µV max), pin-compatible

📋 Reference alternative (not in catalog)

ℹ️ 4 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.

ADA4523-1BCPZ-RL7 Maximum Ratings & Electrical Characteristics

Amplifier Type Zero-Drift
Number of Channels 1
Supply Voltage Range 4.5 V to 36 V
Maximum Offset Voltage ±4 µV
Offset Voltage Drift 0.01 µV/°C maximum
Input Noise Voltage (0.1 Hz to 10 Hz) 88 nV p-p typical
Input Bias Current 125 pA typical
Gain Bandwidth Product 5 MHz
Slew Rate 2.5 V/µs
Rail-to-Rail Input/Output Yes
EMI Immunity High (on-chip filtering)
Operating Temperature Range -40°C to +125°C
Package 8-LFCSP (3x3 mm)
Mounting Type Surface Mount
RoHS Status Compliant

ADA4523-1BCPZ-RL7 Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin 1 OUT — Amplifier output
Pin 2 V- — Negative supply
Pin 3 IN+ — Non-inverting input
Pin 4 IN- — Inverting input
Pin 5 V+ — Positive supply
Pin 6 NC — No connect
Pin 7 NC — No connect
Pin 8 NC — No connect

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for ADA4523-1BCPZ-RL7 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

ADA4523-1BCPZ-RL7 is suitable for 6 applications: Precision Instrumentation, Weigh Scale Systems, Thermocouple Signal Conditioning, Battery-Powered Systems, Industrial Process Control, Medical Instrumentation.

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Precision Instrumentation

The ADA4523-1BCPZ-RL7 is ideal for precision instrumentation due to its ultra-low offset voltage of ±4 µV and offset drift of 0.01 µV/°C. In a data acquisition system, it can amplify small sensor signals from thermocouples or strain gauges with minimal error. Its wide supply range of 4.5 V to 36 V allows operation from various power rails, and the rail-to-rail output maximizes ADC input range. The low 1/f noise of 88 nV p-p ensures accurate low-frequency measurements. For best performance, use precision resistors and proper guarding techniques.

⚖️

Weigh Scale Systems

In weigh scale systems, the ADA4523-1BCPZ-RL7 amplifies the small differential output of a load cell. Its zero-drift architecture eliminates offset drift over temperature, ensuring stable readings. The low input bias current of 125 pA minimizes errors from source impedance imbalance. With a gain bandwidth of 5 MHz, it can support higher-speed measurements if needed. The wide supply range allows direct operation from 5 V to 24 V systems. For optimal noise performance, use a low-pass filter at the output and shield the input traces.

🌡️

Thermocouple Signal Conditioning

The ADA4523-1BCPZ-RL7 is well-suited for thermocouple signal conditioning due to its low offset voltage and drift, which are critical for accurate temperature measurement. The device's 0.1 Hz to 10 Hz noise of 88 nV p-p ensures minimal noise in the low-frequency thermocouple signal. Its rail-to-rail input allows direct connection to the thermocouple without level shifting. The wide supply range supports both 5 V and 24 V systems. For cold-junction compensation, pair with a temperature sensor and a precision ADC.

📱

Battery-Powered Systems

The ADA4523-1BCPZ-RL7 is suitable for battery-powered systems due to its low power consumption and wide supply range. It can operate from a single lithium-ion cell (3.7 V) down to 4.5 V, making it ideal for portable instruments. The rail-to-rail output maximizes dynamic range with low supply voltages. Its precision specifications ensure accurate measurement of battery voltage and current. For extended battery life, consider the device's quiescent current, which is not specified in the provided data but is typically low for zero-drift amplifiers.

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Industrial Process Control

In industrial process control, the ADA4523-1BCPZ-RL7 provides accurate amplification of sensor signals in harsh environments. Its wide supply range of up to 36 V allows direct operation from 24 V industrial buses. The device's EMI immunity, thanks to on-chip filtering, ensures reliable operation in electrically noisy environments. The operating temperature range of -40°C to +125°C covers industrial requirements. For 4-20 mA loop applications, the amplifier can condition the signal before ADC conversion.

💊

Medical Instrumentation

The ADA4523-1BCPZ-RL7 is suitable for medical instrumentation such as patient monitors and diagnostic equipment. Its low offset voltage and drift ensure accurate measurement of physiological signals like ECG and EEG. The low noise performance is critical for detecting small biopotential signals. The wide supply range allows operation from battery or mains-powered systems. The compact LFCSP package is ideal for portable devices. For safety, ensure proper isolation and compliance with medical standards.

What is the supply voltage range of ADA4523-1BCPZ-RL7?
The ADA4523-1BCPZ-RL7 operates from a supply voltage range of 4.5 V to 36 V. According to the Analog Devices datasheet, this wide range allows use in both low-voltage battery applications and industrial 24 V systems. The device maintains precision performance across this range, with a maximum offset voltage of ±4 µV.
What is the offset voltage of ADA4523-1BCPZ-RL7?
The ADA4523-1BCPZ-RL7 has a maximum offset voltage of ±4 µV. This ultra-low offset is achieved through self-calibrating zero-drift circuitry, which also limits offset drift to 0.01 µV/°C maximum. This makes the amplifier ideal for precision applications requiring high DC accuracy.
What is the input noise of ADA4523-1BCPZ-RL7?
The ADA4523-1BCPZ-RL7 has a 0.1 Hz to 10 Hz input noise voltage of 88 nV p-p typical. This low-frequency noise performance, combined with zero-drift technology, makes it suitable for amplifying small sensor signals without introducing significant noise.
What is the gain bandwidth product of ADA4523-1BCPZ-RL7?
The ADA4523-1BCPZ-RL7 has a gain bandwidth product of 5 MHz. This allows it to amplify signals up to a few hundred kHz with adequate gain, balancing speed with precision. For higher bandwidth requirements, consider alternatives like the ADA4522-1ARZ-RL7, which offers similar precision with a different speed/power trade-off.
Is ADA4523-1BCPZ-RL7 rail-to-rail?
Yes, the ADA4523-1BCPZ-RL7 features rail-to-rail input and output. This allows the input common-mode voltage to extend to both supply rails and the output to swing within millivolts of the rails, maximizing dynamic range in low-supply-voltage applications.
What is the package of ADA4523-1BCPZ-RL7?
The ADA4523-1BCPZ-RL7 is offered in an 8-lead LFCSP (3x3 mm) package. This compact, surface-mount package is suitable for space-constrained designs and provides good thermal performance. The package is lead-free and RoHS compliant.
What is the operating temperature range of ADA4523-1BCPZ-RL7?
The ADA4523-1BCPZ-RL7 operates over a temperature range of -40°C to +125°C. This industrial temperature range ensures reliable operation in harsh environments, such as automotive and industrial control systems.
Where can I buy ADA4523-1BCPZ-RL7?
ADA4523-1BCPZ-RL7 is available from authorized distributors including Mouser, DigiKey, and Newark. As of 2026-08-22, pricing starts at $3.65 for single-unit quantities, with volume discounts available. Check current stock and lead times on distributor websites.
What is the price of ADA4523-1BCPZ-RL7?
As of 2026-08-22, the unit price for ADA4523-1BCPZ-RL7 is $3.65 at quantity 1, decreasing to $2.89 at quantity 1000. Prices are from distributor listings and may vary by region and availability.
What is the lead time for ADA4523-1BCPZ-RL7?
Lead time for ADA4523-1BCPZ-RL7 varies by distributor and stock levels. As of 2026-08-22, DigiKey lists it as 'ships today' for in-stock items. For larger quantities, typical lead times are 4-8 weeks. Contact distributors for current lead time information.
Is ADA4523-1BCPZ-RL7 in stock?
As of 2026-08-22, ADA4523-1BCPZ-RL7 is in stock at major distributors like DigiKey and Mouser. Availability can change rapidly, so check the distributor websites for real-time stock status.
ADA4523-1BCPZ-RL7 vs ADA4522-1ARZ-RL7 - which is better for precision applications?
Both ADA4523-1BCPZ-RL7 and ADA4522-1ARZ-RL7 are zero-drift amplifiers from Analog Devices. The ADA4523-1 offers a wider supply range (4.5 V to 36 V) and lower offset voltage (±4 µV max) compared to the ADA4522-1, which operates from 4.5 V to 30 V and has a max offset of 10 µV. For applications requiring the highest precision and higher voltage, the ADA4523-1 is superior. For lower voltage and cost-sensitive designs, the ADA4522-1 may suffice.
What is the difference between ADA4523-1BCPZ-RL7 and ADA4522-1ARZ-RL7?
The ADA4523-1BCPZ-RL7 and ADA4522-1ARZ-RL7 differ in supply voltage range (36 V vs 30 V), maximum offset voltage (±4 µV vs ±10 µV), and package (LFCSP vs SOIC). The ADA4523-1 also has a higher gain bandwidth product (5 MHz vs 2.7 MHz). Both are zero-drift amplifiers, but the ADA4523-1 offers higher precision and voltage capability.
When should I choose ADA4523-1BCPZ-RL7 over ADA4522-1ARZ-RL7?
Choose ADA4523-1BCPZ-RL7 when you need a supply voltage above 30 V, lower offset voltage (±4 µV vs ±10 µV), or higher bandwidth (5 MHz vs 2.7 MHz). It is ideal for high-voltage precision applications like industrial process control and battery monitoring. If your design operates below 30 V and cost is a priority, ADA4522-1ARZ-RL7 may be sufficient.
What is the best drop-in replacement for ADA4523-1BCPZ-RL7?
The best drop-in replacement for ADA4523-1BCPZ-RL7 is the ADA4523-1BRZ-RL7, which is the SOIC-8 version of the same amplifier. It offers identical electrical specifications but in a different package, so PCB layout changes are required. For a pin-compatible LFCSP alternative, consider the ADA4522-1BCPZ-RL7, but verify pinout and supply voltage compatibility.
Where can I download the ADA4523-1BCPZ-RL7 datasheet PDF?
The ADA4523-1BCPZ-RL7 datasheet PDF is available from the Analog Devices website at https://www.analog.com/media/en/technical-documentation/data-sheets/ada4523-1.pdf. It is also available on distributor sites like DigiKey and Mouser, and on third-party datasheet aggregators like Alldatasheet.
Where can I find the ADA4523-1BCPZ-RL7 pinout?
The ADA4523-1BCPZ-RL7 pinout is detailed in the datasheet available from Analog Devices. The 8-lead LFCSP pinout includes non-inverting input, inverting input, output, V+, V-, and no-connect pins. Refer to the datasheet for the exact pin assignments.
Hey Google, what can replace ADA4523-1BCPZ-RL7?
ADA4523-1BCPZ-RL7 can be replaced by the ADA4523-1BRZ-RL7 (SOIC-8 version) or the ADA4522-1BCPZ-RL7 (lower voltage, same package). For cross-brand options, consider the OPA189 (Texas Instruments) or LTC2057 (Analog Devices) if pin-compatible. Always verify pinout and specifications before substitution.
Is ADA4523-1BCPZ-RL7 the same as ADA4522-1ARZ-RL7?
No, ADA4523-1BCPZ-RL7 and ADA4522-1ARZ-RL7 are different amplifiers. The ADA4523-1 has a higher supply voltage (36 V vs 30 V), lower offset voltage (±4 µV vs ±10 µV), and higher bandwidth (5 MHz vs 2.7 MHz). They are not pin-compatible due to different packages (LFCSP vs SOIC).
What are the key specifications of ADA4523-1BCPZ-RL7 that engineers should know?
Engineers should know that ADA4523-1BCPZ-RL7 is a zero-drift op amp with a supply range of 4.5 V to 36 V, max offset voltage of ±4 µV, offset drift of 0.01 µV/°C, input noise of 88 nV p-p (0.1-10 Hz), gain bandwidth of 5 MHz, and rail-to-rail I/O. It comes in an 8-lead LFCSP package and operates from -40°C to +125°C.
What is the best Analog Devices equivalent for ADA4523-1BCPZ-RL7?
The best Analog Devices equivalent for ADA4523-1BCPZ-RL7 is the ADA4523-1BRZ-RL7, which is the SOIC-8 version of the same die. It offers identical electrical performance but requires a different PCB footprint. For a drop-in LFCSP alternative, the ADA4522-1BCPZ-RL7 is pin-compatible but has a lower supply voltage (30 V) and higher offset (10 µV).

Engineering reference data for ADA4523-1BCPZ-RL7 — comparison, design guidance, and compliance information.

Selection Guide

Choose ADA4523-1BCPZ-RL7 when you need a high-voltage (up to 36 V) zero-drift amplifier with ultra-low offset voltage (±4 µV) and drift (0.01 µV/°C) in a compact LFCSP package. It is ideal for precision instrumentation, weigh scales, and industrial process control. If you require a lower supply voltage (up to 30 V) and can tolerate higher offset (10 µV), the ADA4522-1BCPZ-RL7 is a cost-effective drop-in alternative. For a different package (SOIC-8) with identical performance, consider the ADA4523-1BRZ-RL7, but note the PCB layout change. For cross-brand options, the OPA189 (TI) offers lower offset and drift but in a different package. Evaluate your supply voltage, accuracy, and package requirements to make the best choice.

Comparison with Alternatives

Parameter This Product ADA4523-1BRZ-RL7 ADA4522-1BCPZ-RL7 OPA189AIDR
Package 8-LFCSP (3x3) 8-SOIC 8-LFCSP (3x3) 8-SOIC
Brand Analog Devices Analog Devices Analog Devices Texas Instruments
Supply Voltage Range 4.5 V to 36 V 4.5 V to 36 V 4.5 V to 30 V 4.5 V to 36 V
Maximum Offset Voltage ±4 µV ±4 µV ±10 µV ±3 µV
Offset Voltage Drift 0.01 µV/°C 0.01 µV/°C 0.02 µV/°C 0.005 µV/°C
Input Noise (0.1-10 Hz) 88 nV p-p 88 nV p-p 100 nV p-p 100 nV p-p
Gain Bandwidth Product 5 MHz 5 MHz 2.7 MHz 14 MHz
Input Bias Current 125 pA 125 pA 150 pA 150 pA

Key Differentiators

  • Wider supply voltage range (36 V) compared to ADA4522-1BCPZ-RL7 (30 V) (vs ADA4522-1BCPZ-RL7)
  • Lower maximum offset voltage (±4 µV) vs ADA4522-1BCPZ-RL7 (±10 µV) (vs ADA4522-1BCPZ-RL7)
  • Higher gain bandwidth product (5 MHz) vs ADA4522-1BCPZ-RL7 (2.7 MHz) (vs ADA4522-1BCPZ-RL7)

Design Notes

Ensure proper power supply decoupling. Place a 0.1 µF ceramic capacitor close to each supply pin (V+ and V-) and a 10 µF tantalum capacitor at the power entry point. This is critical for maintaining the low noise performance of the zero-drift amplifier.

For optimal performance, use a solid ground plane and keep input traces short and shielded. Avoid routing high-frequency digital signals near the input pins. The LFCSP package has an exposed pad that should be soldered to the ground plane for thermal and electrical performance.

Do not exceed the absolute maximum supply voltage of 36 V. Also, be aware that the input common-mode range includes the rails, but for best linearity, keep the input within 100 mV of the rails. Use precision resistors (0.1% or better) in the feedback network to maintain accuracy.

Compliance Information

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

RoHS compliant per distributor listings. Not AEC-Q100 qualified. Lead-free per package design.

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