LTC1655 (13)

The LTC1655 is available from Analog Devices at Xecor. Designed for 16-bit digital-to-analog conversion, the LTC1655 offers monotonicity over temperature, rail-to-rail voltage output, and low power consumption (600µA typical). Available in an SO-8 package, it is ideal for applications such as industrial process control, automatic test equipment, and cellular telephones. Whether used in digital calibration or precision instrumentation, this series ensures high performance, accuracy, and reliability for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the LTC1655 series below.

Part Number Description Package Inventory Add To Bom
LTC1655CS8#PBF Data acquisition converter SOIC-8 6,424
LTC1655IS8#PBF Specs: 16, SOIC-8, -40 85 SOIC-8 7,557
LTC1655CS8 Single-channel 16-bit digital-to-analog converter SOIC-8 7,137
LTC1655LIS8#TRPBF LTC1655LIS8#TRPBF: Achieve high-resolution analog output SOIC-8 6,113
LTC1655LIS8#PBF 20 microsecond SPI 2.7V to 5.5V 16-bit SO-8 DACs SOIC-8 3,109
LTC1655LCS8#TRPBF High-performance DAC for precision analog applications SOIC-8 5,610
LTC1655LCS8#PBF Single-channel design with compact 8-Pin SOIC package SOIC-8 7,852
LTC1655IN8#PBF Low-power 16-bit DAC with rail-to-rail output PDIP-8 5,694
LTC1655CS8#TRPBF LTC1655CS8#TRPBF is a DAC with 1 channel and a 16-bit resolution, packaged in an 8-pin SOIC format for easy integration on circuit boards SOIC-8 6,344
LTC1655CN8#PBF Effortlessly convert digital signals to analog waves with precision and accuracy PDIP-8 2,985
LTC1655IS8#TRPBF DAC 1-CH 16-bit 8-Pin SOIC N T/R SOIC-8 5,374
LTC1655LCN8#PBF Ideal for precision voltage control in compact designs PDIP-8 3,366
LTC1655LIN8#PBF Control voltage with LTC1655LIN8#PBF micropower DAC PDIP-8 6,162

Key Featrues

16-Bit Monotonicity Over Temperature: Ensures consistent and accurate digital-to-analog conversion across varying temperatures, enhancing reliability in precision applications such as industrial process control and automatic test equipment.
Deglitched Rail-to-Rail Voltage Output: Provides clean and stable voltage output from the lowest to the highest levels, minimizing signal distortion and improving performance in sensitive applications like cellular telephones.
Low Power Consumption (600µA Typical): Reduces energy usage, making it ideal for battery-powered or energy-efficient devices, while maintaining high performance in micropower applications.
750kHz Max Update Rate: Enables fast signal updates, suitable for high-speed applications such as digital calibration and real-time control systems, ensuring minimal latency.
3-Wire Cascadable Serial Interface: Simplifies integration with SPI/QSPI and MICROWIRE™ protocols, allowing for easy cascading of multiple DACs and reducing system complexity in multi-channel designs.

Applications

Digital Calibration System: The LTC1655/LTC1655L is ideal for digital calibration systems, providing precise 16-bit resolution and rail-to-rail voltage output. Its low power consumption and compact SO-8 package make it suitable for portable calibration equipment, ensuring accurate adjustments in industrial and laboratory settings.
Industrial Process Control: The LTC1655/LTC1655L excels in industrial process control applications, offering a 16-bit DAC with a settling time of 20µs and a maximum DNL error of ±1LSB. Its robust 3-wire serial interface and internal reference ensure reliable and accurate control of industrial processes, even in harsh environments.
Automatic Test Equipment: The LTC1655/LTC1655L is perfect for automatic test equipment (ATE), providing high-resolution 16-bit digital-to-analog conversion with a 750kHz update rate. Its rail-to-rail output and low power consumption make it ideal for generating precise test signals in ATE systems, ensuring accurate and repeatable measurements.
Cellular Telephones: The LTC1655/LTC1655L is well-suited for cellular telephones, offering a compact SO-8 package and low power consumption. Its 16-bit resolution and internal reference ensure high-quality audio and signal processing, making it ideal for advanced communication applications in mobile devices.