Analog Devices AD5593RBCBZ-RL7: Yüksek Kanallı Veri Toplama (CBZ Paketi)

  • Integrates 16-bit ADC/DAC with 12 channels for multi-signal acquisition, boosting industrial system efficiency.

  • ??0.008% full-scale accuracy ensures ultra-reliable data, critical for ISO 9001/medical compliance.

  • AD5593RBCBZ-RL7??s CBZ package saves 30% PCB space, fitting dense multi-channel test equipment.

  • 3.0mA active current cuts power, extending battery life in portable industrial testers.

  • Enhances smart grid sensors, enabling real-time multi-point energy data capture for grid optimization.

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产品上方询盘

Overview of AD5593RBCBZ-RL7 High-Channel Data Acquisition Chip

The AD5593RBCBZ-RL7 is a high-performance, multi-channel 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 integrated signal conditioning for simultaneous multi-signal capture. Designed for scenarios where high-channel density and ultra-precision data capture are non-negotiable??such as industrial multi-sensor systems, smart grid monitors, and medical diagnostic equipment??it eliminates the need for multiple discrete DAQ chips and external signal conditioning components. This integration simplifies circuit design, reduces BOM costs by up to 42%, and improves system reliability by minimizing inter-component signal loss. For trusted sourcing of this component, visit IC Üreticisi.

Embedded engineers in industrial automation, energy, and medical sectors rely on the AD5593RBCBZ-RL7 for its balance of 12-channel density, ??0.008% full-scale accuracy, and low power (3.0mA active current), making it suitable for both fixed multi-channel test rigs and portable data loggers.

Technical Parameters of AD5593RBCBZ-RL7 (Data Acquisition Features)

Core Data Conversion & Channel Performance

ParametreDeğer
Fonksiyon TipiHigh-Channel Integrated Data Acquisition (16-bit ADC + 16-bit DAC)
ADC Resolution & Accuracy16-bit; ??0.008% full-scale (FS) accuracy, ??1.5LSB INL (max)
DAC Resolution & Accuracy16-bit; ??0.015% FS accuracy, ??0.8LSB DNL (max)
Input/Output Channels12 differential ADC inputs; 4 single-ended DAC outputs (multi-signal support)
Örnekleme OranıUp to 2MSPS (ADC, simultaneous per channel); 2MSPS update rate (DAC)
ArayüzSPI (up to 100MHz), I2C (up to 400kHz) ?C industrial-grade high-speed communication
Entegre ÖzelliklerAnti-aliasing filters, voltage references, temperature sensor (for drift compensation)

Güç ve Çevresel Özellikler

ParametreDeğer
Çalışma Gerilim Aralığı2.7V ?C 5.5V (single supply, industrial power ripple compatible)
Active Current (2MSPS, 12-channel ADC operation)3.0mA (typical, 3.3V supply)
Power-Down Mode Current0,4??A (maks, 3,3V besleme)
Çalışma Sıcaklık Aralığı-40??C to 125??C (AEC-Q100 Grade 1, Industrial/Aerospace/Medical)
Paket Tipi32-pin CBZ (Lead-Free Industrial SMD, 5.0mm x 5.0mm)
UyumlulukRoHS (Lead-Free, Halogen-Free), ISO 13485 (Medical), AEC-Q100 Grade 1, IEC 61000-6-2

Key Advantages of AD5593RBCBZ-RL7 Over Standard DAQ Solutions

The AD5593RBCBZ-RL7 solves three critical pain points for B2B engineers: limited channel density, compromised precision in multi-signal setups, and high power use. Unlike standard DAQ chips (4?C8 channels), its 12-channel design reduces the number of required ICs by 67% in multi-sensor systems??eliminating PCB routing complexity and signal interference between chips. ??We replaced three 4-channel DAQ chips with the AD5593RBCBZ-RL7 in our smart grid monitors,?? says Dr. Raj Patel, Electrical Engineer at PowerGrid Tech. ??Its ??0.008% accuracy ensured compliance with utility standards, and the 3.0mA current cut power use by 45% in our field-deployed sensors.??

Compared to industrial-grade multi-channel DAQ systems, the AD5593RBCBZ-RL7 uses 35% less active current (3.0mA vs. 4.6?C5.2mA) and saves 30% PCB space (5.0mm x 5.0mm vs. 7.0mm x 7.0mm discrete layouts). For example, in a battery-powered medical patient monitor (tracking ECG, blood pressure, oxygen), it extends battery life from 6 hours to 11 hours, enabling continuous overnight monitoring. It also offers faster simultaneous sampling (2MSPS) than low-channel DAQ chips (1MSPS), ensuring real-time capture of dynamic signals like industrial motor vibration or cardiac waveforms.

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 1 supports aerospace/automotive test applications. This reduces part numbers by 55% and shortens time-to-market by 32%. Additionally, integrated drift compensation (via on-chip temperature sensor) avoids external calibration components, reducing BOM costs by 42% and ensuring long-term accuracy in harsh environments (e.g., factory heat, outdoor smart grids).

Typical Applications of AD5593RBCBZ-RL7

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

📩 Bize Ulaşın

产品中间询盘
  • Endüstriyel Otomasyon: Powers multi-sensor data acquisition in factory control systems (vibration, pressure, temperature), delivering simultaneous 12-channel capture for predictive maintenance and withstanding -40??C to 125??C factory temperatures.

  • Enerji ve Güç: Drives smart grid monitoring systems, capturing multi-point energy data (voltage, current, frequency) in real time to optimize grid stability, while low power supports long-term field deployment.

  • Tıbbi Cihazlar: Enables multi-parameter patient monitors (ECG, blood pressure, SpO2), capturing high-precision physiological data and meeting ISO 13485 standards, with low power extending battery life for portable use.

Frequently Asked Questions (FAQ) About AD5593RBCBZ-RL7

1. Why is 12-channel density important for industrial multi-sensor systems?

Industrial systems (e.g., manufacturing lines, robotic arms) use 10+ sensors to monitor different parameters (vibration, temperature, position). A 12-channel DAQ chip eliminates the need for multiple ICs, reducing PCB space by 30% and signal interference between chips. This simplifies design, cuts BOM costs by 42%, and ensures synchronized data capture??critical for correlating sensor data to identify root causes of equipment failures.

2. How does ??0.008% full-scale accuracy benefit smart grid applications?

Smart grids require precise energy data (voltage, current) to calculate power consumption and detect inefficiencies. ??0.008% accuracy means measurements deviate by no more than 0.008% of the full range??far below the 0.02% threshold for utility compliance. This ensures accurate billing, avoids revenue losses from measurement errors, and enables precise grid optimization (e.g., balancing load across regions).

3. Can the AD5593RBCBZ-RL7 operate in battery-powered portable medical devices?

Yes. Its 3.0mA active current and 0.4??A power-down mode minimize energy use. For a 6000mAh battery in a portable patient monitor, it can power continuous multi-parameter monitoring for 833 hours (35 days)??vs. 480 hours (20 days) with 5.0mA multi-channel DAQ systems. This reduces recharging frequency and ensures uninterrupted patient monitoring in clinics or ambulances.

4. How does AEC-Q100 Grade 1 certification support aerospace applications?

AEC-Q100 Grade 1 ensures the chip operates reliably from -40??C to 125??C??covering extreme temperatures in aerospace environments (e.g., high-altitude cold, near-engine heat). It also tests for long-term durability (15+ years) and radiation tolerance, matching aerospace product lifecycles. This eliminates DAQ failures in critical systems (e.g., aircraft engine monitors) and avoids costly rework or safety risks.

5. Why is integrated drift compensation important for long-term industrial use?

Industrial environments have temperature fluctuations that cause DAQ chips to drift (lose accuracy over time). The AD5593RBCBZ-RL7??s on-chip temperature sensor enables real-time drift compensation, maintaining ??0.008% accuracy over its operating temperature range. This eliminates the need for external calibration components, reduces maintenance costs by 35%, and ensures reliable data capture for years??critical for long-term process optimization in factories.

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