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Part Details for DAC800 by National Semiconductor Corporation

Overview of DAC800 by National Semiconductor Corporation

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Part Details for DAC800

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Resources and Additional Insights for DAC800

Reference Designs related to DAC800

  • Modular battery tester reference design for 50-A: 100-A: and 200-A applications
    This reference design provides a modular battery test solution allowing users to have the flexibility to test batteries at different current levels with one design. This design leverages the TIDA-01041 reference design by providing two 100-A battery testers that can work independently or be connected in parallel to increase the maximum current output from 100 A to 200 A. This design describes the design theory: part selection: and optimization of this solution.
  • Battery tester reference design for multi-phase high-precision 0.5 to 100 A battery formation
    This reference design provides a multi-phase solution for a wide range of current battery test applications. Leveraging the dual phase buck/boost controller LM5170's daisy chain configuration gives the design the ability to achieve 100A charging/discharging rates. Utilizing high accuracy constant current (CC) and constant voltage (CV) calibration loops: TIDA-01041 can achieve up to 0.01% voltage control accuracy. All key design theories are described guiding users through the part selection process and optimization. Finally: schematic: board layout: hardware testing: and results are also presented.
  • Battery Tester Reference Design for High Current Applications
    Li-Ion battery formation and electrical testing require accurate voltage and current control: usually to better than ±0.05% over the specified temperature range.  This reference design proposes a solution for high-current (up to 50 A) battery tester applications supporting input (bus) voltages from 8 V–16 V and output load (battery) voltages from 0V–5V. The design utilizes an integrated multi-phase bidirectional controller: LM5170: combined with a high precisiondata converters and instrumentation amplifiers to achieve charge and discharge accuracies of 0.01% full scale. To maximize battery capacity and minimize battery formation time: the design uses highly-accurate constant current (CC) and constant voltage (CV) calibration loops with a simplified interface. All key design theories are described guiding users through the part selection process and optimization. Finally: schematic: board layout: hardware testing: and results are also presented.
  • Bi-Directional Battery Initialization System Control Board Reference Design
    The PMP40280 is a battery initialization reference design solution for automotive and battery applications. The MCU TM4C123GH6PZ sets charging/discharging current and real time monitors battery voltage and charging/discharging current. It will calibrate system gain error to meet charging/discharging current accuracy 0.1% when environment temperature changes. When system works in any faults: MCU can disable power converter. Communication is accomplished through standard CAN bus.
  • TIDA-00362 采用 DLP® 技术的工厂自动化用高分辨率 3D 扫描仪
    The Factory Automation reference design employs the Texas Instruments DLP® Advanced Light Control Software Development Kit (SDK) for LightCrafter™ series controllers, which allows developers to easily construct 3D point clouds by integrating TI&rs

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