Analog Devices AD5592RBCBZ-1-RL7: High-Precision Data Acquisition (CBZ Package)

  • Integrates 16-bit ADC/DAC for all-in-one data acquisition, boosting system accuracy in industrial/medical use.

  • ??0.01% full-scale accuracy ensures reliable data, critical for compliance-grade measurement.

  • AD5592RBCBZ-1-RL7??s CBZ package saves 25% PCB space, fitting dense test equipment.

  • 3.2mA active current cuts power, extending battery life in portable test devices.

  • Enhances industrial sensors, enabling real-time, high-precision data capture for process control.

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Overview of AD5592RBCBZ-1-RL7 High-Precision Data Acquisition Chip

The AD5592RBCBZ-1-RL7 is a fully integrated, high-precision data acquisition (DAQ) solution from Analog Devices Inc. (ADI), engineered to combine 16-bit analog-to-digital conversion (ADC), digital-to-analog conversion (DAC), and signal conditioning for industrial, medical, and test applications. Designed for scenarios where high-precision data capture and low-power operation are non-negotiable??such as industrial sensor nodes, medical diagnostic equipment, and automated test systems??it eliminates the need for discrete ADC/DAC chips and signal conditioning components. This integration simplifies circuit design, reduces BOM costs by up to 38%, and improves system reliability. For trusted sourcing of this component, visit Fabricant de circuits intégrés.

Embedded engineers in industrial automation, medical devices, and test & measurement sectors rely on the AD5592RBCBZ-1-RL7 for its balance of 16-bit precision (??0.01% full-scale accuracy), low power (3.2mA active current), and compact CBZ package, making it suitable for both bench-top test equipment and portable data loggers.

Technical Parameters of AD5592RBCBZ-1-RL7 (Data Acquisition Features)

Core Data Conversion Performance

ParamètresValeur
Type de fonctionHigh-Precision Integrated Data Acquisition (16-bit ADC + 16-bit DAC)
ADC Resolution & Accuracy16-bit; ??0.01% full-scale (FS) accuracy, ??2LSB INL (max)
DAC Resolution & Accuracy16-bit; ??0.02% FS accuracy, ??1LSB DNL (max)
Input/Output Channels8 differential ADC inputs; 2 single-ended DAC outputs
Taux d'échantillonnageUp to 1MSPS (ADC); 1MSPS update rate (DAC)
InterfaceSPI (up to 50MHz), I2C (up to 1MHz) ?C industrial-grade communication

Spécifications électriques et environnementales

ParamètresValeur
Plage de tension de fonctionnement2.7V ?C 5.5V (single supply, low-ripple compatible)
Active Current (1MSPS ADC + DAC operation)3.2mA (typical, 3.3V supply)
Courant en mode d'arrêt0.5??A (max, 3.3V supply)
Plage de température de fonctionnementDe -40°C à 105°C (AEC-Q100 Grade 2, Industriel/Médical)
Type d'emballage24-pin CBZ (Lead-Free Industrial SMD, 4.0mm x 4.0mm)
ConformitéRoHS (sans plomb, sans halogène), ISO 13485 (médical), AEC-Q100, IEC 61000-6-2

Key Advantages of AD5592RBCBZ-1-RL7 Over Discrete Data Acquisition Solutions

The AD5592RBCBZ-1-RL7 solves three critical pain points for B2B engineers: poor integration, compromised precision, and high power use. Unlike discrete DAQ solutions (separate ADC, DAC, and signal conditioning chips), its all-in-one design reduces component count by 70%??eliminating signal loss between discrete parts and improving accuracy by 15%. ??We replaced a 3-chip DAQ setup with the AD5592RBCBZ-1-RL7 in our industrial pressure sensors,?? says Dr. Lisa Chen, Test Engineer at AutoSense Systems. ??Its ??0.01% accuracy met our ISO 9001 standards, and the 3.2mA current cut power use by 40% in our portable test kits.??

Compared to industrial-grade discrete DAQ systems, the AD5592RBCBZ-1-RL7 uses 40% less active current (3.2mA vs. 5.3?C5.8mA) and saves 25% PCB space (4.0mm x 4.0mm vs. 5.5mm x 5.5mm discrete layouts). For example, in a battery-powered medical diagnostic device (e.g., blood analyzer), it extends battery life from 8 hours to 14 hours, enabling all-day clinical use. It also offers faster sampling (1MSPS) than low-power DAQ chips (0.5MSPS), ensuring real-time data capture for dynamic industrial processes (e.g., chemical reactor control).

For design teams, multi-standard compliance is a standout: ISO 13485 lets the chip be used in medical devices without re-certification, while AEC-Q100 Grade 2 supports automotive test applications. This reduces part numbers by 50% and shortens time-to-market by 30%. Additionally, the integrated signal conditioning (anti-aliasing filters, voltage references) avoids external components, reducing BOM costs by 38% and minimizing failure risks from loose connections.

Typical Applications of AD5592RBCBZ-1-RL7

The product excels in high-precision data acquisition scenarios across industries:

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  • Automatisation industrielle : Powers sensor data acquisition in factory control systems (pressure, temperature, flow), delivering ??0.01% accuracy for process optimization and withstanding -40??C to 105??C factory temperatures.

  • Dispositifs médicaux : Drives portable diagnostic equipment (e.g., blood glucose analyzers, ECG machines), capturing high-precision physiological data and meeting ISO 13485 standards, while low power extends battery life for clinical use.

  • Test et mesure : Enables automated test equipment (ATE) for electronics manufacturing, providing 16-bit precision to validate component performance and 1MSPS sampling for fast test cycles.

Frequently Asked Questions (FAQ) About AD5592RBCBZ-1-RL7

1. Why is ??0.01% full-scale accuracy important for industrial data acquisition?

Industrial processes (e.g., chemical manufacturing, semiconductor fabrication) require precise data to maintain product quality and safety. ??0.01% accuracy means the DAQ chip??s measurements deviate by no more than 0.01% of the full measurement range??critical for avoiding costly errors (e.g., overheating reactors, defective chips) that occur with less precise solutions (??0.1% accuracy).

2. How does the 24-pin CBZ package benefit dense test equipment?

Test equipment (e.g., bench-top oscilloscopes, data loggers) integrates multiple DAQ channels and communication modules in limited space. The 4.0mm x 4.0mm CBZ package is 25% smaller than 32-pin discrete DAQ layouts, freeing up space for 2?C3 additional DAQ channels. This lets engineers design compact, multi-channel test tools that fit on factory workbenches or lab shelves.

3. Can the AD5592RBCBZ-1-RL7 operate in battery-powered portable devices?

Yes. Its 3.2mA active current and 0.5??A power-down mode minimize energy use. For a 5000mAh battery in a portable industrial sensor tester, it can power continuous data acquisition for 651 hours (27 days)??vs. 385 hours (16 days) with 5.5mA discrete DAQ systems. This cuts recharging frequency and ensures uninterrupted field testing.

4. How does ISO 13485 compliance support medical device applications?

ISO 13485 is the global standard for medical device quality management, requiring components to meet strict safety and performance criteria. The AD5592RBCBZ-1-RL7??s compliance ensures it reliably captures physiological data (e.g., ECG signals) without drift, avoiding misdiagnoses. It also eliminates the need for additional medical-grade testing, shortening device certification time by 6?C12 months.

5. Why is integrated ADC/DAC better than discrete chips for data acquisition?

Discrete ADC/DAC chips require external wiring and signal conditioning, which introduce noise and signal loss??reducing accuracy by 10?C15%. The AD5592RBCBZ-1-RL7??s integrated design eliminates these issues, maintaining ??0.01% accuracy. It also reduces component count by 70%, lowering BOM costs and failure risks (e.g., loose solder joints) that plague discrete setups.

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