AD5676R (8)

The AD5676R is available from Analog Devices at Xecor. Designed for high-precision digital-to-analog conversion, the AD5676R offers exceptional performance with features such as 16-bit resolution, low power consumption, and a 2.5 V internal reference with a low drift of 2 ppm/°C. Available in multiple package options, including 20-lead TSSOP and 16-ball WLCSP, it is ideal for applications in optical transceivers, base-station power amplifiers, industrial automation, and data acquisition systems. Whether used in process control, PLC input/output cards, or telecommunications, this series ensures accuracy, reliability, and efficiency for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the AD5676R series below.

Part Number Description Package Inventory Add To Bom
AD5676RBRUZ DAC 8-CH Segment 16-bit 20-Pin TSSOP Tube TSSOP-20 6,182
AD5676RARUZ High-Precision DAC - Eight-channel, 16-bit nanoDAC+ with 2 ppm per Celsius Reference Voltage and SPI Bus TSSOP-20 9,096
AD5676RBCPZ-REEL7 Serial input loading enables fast data acquisition and processin LFCSP-20 7,744
AD5676RARUZ-REEL7 Highly Accurate Analog Conversion: The ADR provides a high degree of accuracy and stability for your analog conversion need TSSOP-20 7,201
AD5676RACPZ-REEL7 DAC 8-CH Segment 16-bit 20-Pin LFCSP EP T/R WFQFN-20 7,245
AD5676RACPZ-RL High-resolution digital-to-analog converter for precision application WFQFN-20 5,602
AD5676RBCPZ-RL DAC 8-CH Segment 16-bit 20-Pin LFCSP EP T/R WFQFN-20 6,194
AD5676RBRUZ-REEL7 Precise voltage output for a wide range of analog applications TSSOP-20 7,879

Key Featrues

High Precision 16-Bit Resolution: The AD5676RARUZ offers 16-bit resolution, ensuring highly accurate digital-to-analog conversion. This precision is critical for applications requiring fine control, such as optical transceivers and industrial automation, where even minor errors can significantly impact performance.
Integrated 2.5 V Internal Reference with Low Drift: The device includes a 2.5 V internal reference with a low drift of 2 ppm/°C. This feature enhances stability and accuracy over temperature variations, reducing the need for external components and simplifying system design.
Octal Output Channels with Buffered Voltage Outputs: With eight independent DAC channels, the AD5676RARUZ can simultaneously control multiple signals. The buffered voltage outputs ensure robust signal integrity, making it ideal for multi-channel applications like process control and data acquisition systems.
Wide Operating Voltage Range (2.7 V to 5.5 V): The device operates from a single supply voltage ranging from 2.7 V to 5.5 V, providing flexibility in various power supply environments. This versatility extends its use cases to portable, industrial, and automotive applications.
Low Power Consumption with Power-Down Mode: The AD5676RARUZ features a power-down mode that reduces current consumption to 1 µA typical. This energy-efficient design is beneficial for battery-powered devices and applications where minimizing power usage is critical.

Applications

Optical Transceiver Calibration: The AD5676RARUZ is ideal for calibrating optical transceivers by providing precise voltage outputs to control laser diodes and photodetectors. Its 16-bit resolution and low drift internal reference ensure accurate signal generation, making it suitable for high-speed communication systems in data centers and telecommunications.
Base-Station Power Amplifier Control: The AD5676RARUZ is perfect for controlling power amplifiers in base stations. Its octal DAC configuration allows for independent tuning of multiple amplifier stages, ensuring optimal performance and efficiency in wireless communication networks.
Process Control Systems: The AD5676RARUZ is well-suited for process control systems, such as PLC input/output cards. Its high accuracy and SPI interface enable precise control of analog outputs, making it ideal for industrial automation and monitoring applications.
Data Acquisition Systems: The AD5676RARUZ is excellent for data acquisition systems requiring high-resolution analog outputs. Its low power consumption and wide operating temperature range make it suitable for use in harsh environments, such as automotive testing and environmental monitoring.