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    <title>HoverGames Drone ChallengeのトピックOptimizing Low-Power Mode for Healthcare IoT Devices Using NXP MCUs</title>
    <link>https://community.nxp.com/t5/HoverGames-Drone-Challenge/Optimizing-Low-Power-Mode-for-Healthcare-IoT-Devices-Using-NXP/m-p/2036009#M205</link>
    <description>&lt;P&gt;I'm currently working on a healthcare IoT device that uses an NXP Kinetis MCU to collect and transmit patient data. The device needs to operate on battery power for extended periods, so optimizing low-power consumption is a key concern.&lt;/P&gt;&lt;P&gt;Some of the challenges I’m facing:&lt;/P&gt;&lt;OL&gt;&lt;LI&gt;Configuring the deep sleep mode while maintaining periodic sensor readings.&lt;/LI&gt;&lt;LI&gt;Reducing wake-up latency for real-time patient monitoring.&lt;/LI&gt;&lt;LI&gt;Efficient wireless data transmission without draining battery life (BLE vs. LoRa?).&lt;/LI&gt;&lt;/OL&gt;&lt;P&gt;Here’s a basic implementation of my low-power mode setup:&lt;/P&gt;&lt;P&gt;SMC_SetPowerModeVlpr(SMC);&lt;BR /&gt;while (1) {&lt;BR /&gt;if (new_data_available) {&lt;BR /&gt;process_data();&lt;BR /&gt;}&lt;BR /&gt;enter_low_power_mode();&lt;BR /&gt;}&lt;/P&gt;&lt;P&gt;Would enabling LPUART and RTC wake-up be the best approach for this? Or would a different power mode configuration work better for continuous monitoring?&lt;/P&gt;&lt;P&gt;While researching, I came across a &lt;A href="https://www.daffodilsw.com/healthcare-software-development-services/" target="_self"&gt;Healthcare Software Development Services&lt;/A&gt; resource that discusses strategies for optimizing power efficiency in medical IoT applications. Has anyone here implemented similar optimizations with NXP MCUs?&lt;/P&gt;&lt;P&gt;Looking forward to insights from the community!&lt;/P&gt;&lt;P&gt;&amp;nbsp;&lt;/P&gt;</description>
    <pubDate>Thu, 30 Jan 2025 06:22:01 GMT</pubDate>
    <dc:creator>jemmii</dc:creator>
    <dc:date>2025-01-30T06:22:01Z</dc:date>
    <item>
      <title>Optimizing Low-Power Mode for Healthcare IoT Devices Using NXP MCUs</title>
      <link>https://community.nxp.com/t5/HoverGames-Drone-Challenge/Optimizing-Low-Power-Mode-for-Healthcare-IoT-Devices-Using-NXP/m-p/2036009#M205</link>
      <description>&lt;P&gt;I'm currently working on a healthcare IoT device that uses an NXP Kinetis MCU to collect and transmit patient data. The device needs to operate on battery power for extended periods, so optimizing low-power consumption is a key concern.&lt;/P&gt;&lt;P&gt;Some of the challenges I’m facing:&lt;/P&gt;&lt;OL&gt;&lt;LI&gt;Configuring the deep sleep mode while maintaining periodic sensor readings.&lt;/LI&gt;&lt;LI&gt;Reducing wake-up latency for real-time patient monitoring.&lt;/LI&gt;&lt;LI&gt;Efficient wireless data transmission without draining battery life (BLE vs. LoRa?).&lt;/LI&gt;&lt;/OL&gt;&lt;P&gt;Here’s a basic implementation of my low-power mode setup:&lt;/P&gt;&lt;P&gt;SMC_SetPowerModeVlpr(SMC);&lt;BR /&gt;while (1) {&lt;BR /&gt;if (new_data_available) {&lt;BR /&gt;process_data();&lt;BR /&gt;}&lt;BR /&gt;enter_low_power_mode();&lt;BR /&gt;}&lt;/P&gt;&lt;P&gt;Would enabling LPUART and RTC wake-up be the best approach for this? Or would a different power mode configuration work better for continuous monitoring?&lt;/P&gt;&lt;P&gt;While researching, I came across a &lt;A href="https://www.daffodilsw.com/healthcare-software-development-services/" target="_self"&gt;Healthcare Software Development Services&lt;/A&gt; resource that discusses strategies for optimizing power efficiency in medical IoT applications. Has anyone here implemented similar optimizations with NXP MCUs?&lt;/P&gt;&lt;P&gt;Looking forward to insights from the community!&lt;/P&gt;&lt;P&gt;&amp;nbsp;&lt;/P&gt;</description>
      <pubDate>Thu, 30 Jan 2025 06:22:01 GMT</pubDate>
      <guid>https://community.nxp.com/t5/HoverGames-Drone-Challenge/Optimizing-Low-Power-Mode-for-Healthcare-IoT-Devices-Using-NXP/m-p/2036009#M205</guid>
      <dc:creator>jemmii</dc:creator>
      <dc:date>2025-01-30T06:22:01Z</dc:date>
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