OPT3001 by: Texas Instruments

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Part Details for OPT3001

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Reference Designs related to OPT3001

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    In this reference design, the TPS62120 provides a small, simple, and efficient voltage inverting circuit to be used for low power negative voltage rails, such as biasing an op amp.  This configuration has been tested with a full test report and operation explanation.
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    This reference design provides accurate measurements of ambient light intensity used to detect arc flash faults with a fast response of 1 ms: protecting or minimizing damages to power distribution switchgear. This design also monitors temperature (using switch: analog: digital or remote ): humidity: dust: and pressure accurately for online monitoring of busbar: transformers: and capacitor banks for early indication of faults: insulation failures: or ageing: resulting in increased operational life. This design provides a unique diagnostics approach within 1 ms during low load current for diagnostics of an ambient light sensor (ALS): increasing the system reliability. The sensors can be interfaced to microcontrollers with I2C or a low-power: wireless interface to perform weather transmitter functions for continuous online monitoring to simplify the system design.
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    This reference design shows multiple architectures for extending primary battery life using a secondary battery or supercapacitor with energy harvested from a current transformer (CT) or solar cells. Optimal power management is done using efficient LED drivers to drive series or parallel strings of LEDs to control intensity for uniform 360 ° visibility.
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  • PR1070 采用适配器或 USB 输入为主机控制的单体锂离子电池供电
    PR1070 配置 bq24160 电池充电器,以在从 USB 电源 (4.2V to 6V) 或墙壁适配器 (4.2V- 10V) 对单体锂离子电池充电的同时,提供至少 3.7V 的系统轨。使用 I2C 通信,充电电压最高可设置为 4.44V,充电电流最高可设置为 2.5A,USB 输入的每个输入电流限制最高可设置为 1.5A,适配器输入的每个输入电流限制最高可设置为 2.5A。在适配器检测期间,bq24160 使用它的 D+/D- 输入以确定端口为 SDP(电流限制为 100mA)还是 CDP/DCP(电流限制为 1.5A)。
  • Energy Harvesting Ambient Light and Environment Sensor Node for Sub-1GHz Networks Reference Design
    TIDA-00488 demonstrates an ultra-low power and a renewable method of wireless environmental sensing using daylight energy harvesting with a long backup battery life. This reference design uses our ultra-low power harvester power management SimpleLink™ ultra-low power sub-1 GHz wireless microcontroller (MCU) platform and ambient light: humidity and temperature sensing technologies to achieve continuous monitoring while the energy harvesting circuit is active and interrupt monitoring when running from the backup battery.
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