產品詳細資料

Relative humidity accuracy (typ) (%RH) 0.5 Temperature accuracy (typ) (°C) 0.1 Relative humidity operating range (typ) (%RH) 0 to 100 Average supply current (typ) (µA) 0.4 Operating temperature range (°C) -40 to 125 Interface type I2C Rating Catalog
Relative humidity accuracy (typ) (%RH) 0.5 Temperature accuracy (typ) (°C) 0.1 Relative humidity operating range (typ) (%RH) 0 to 100 Average supply current (typ) (µA) 0.4 Operating temperature range (°C) -40 to 125 Interface type I2C Rating Catalog
WSON (DEF) 8 6.25 mm² (2.5 mm × 2.5 mm)
  • Relative humidity (RH) sensor:
    • Operating range: 0% to 100%
    • Accuracy: ±0.5% typical
    • Offset Error Correction: reduces offset to return device to within accuracy specification
    • Long-term drift: 0.19%RH/yr
    • Condensation protection with integrated heater
  • Temperature sensor:
    • Operating range: –40°C to 125°C
    • Accuracy: ±0.1°C typical
    • Long-term drift: ±0.03°C/yr
  • NIST traceability: relative humidity & temperature
  • Output Short Circuit Protection

  • Low power: average current 0.4µA
  • I2C interface compatibility up to 1MHz speeds
    • Four selectable I2C addresses
    • Data protection through CRC checksum
  • Supply voltage: 1.62V to 5.50V
  • Available auto measurement mode
  • Programmable interrupts
  • Programmable RH and Temp measurement offset
  • Factory-installed polyimide tape assembly cover
  • Factory-installed IP67 rated environmental cover
  • Relative humidity (RH) sensor:
    • Operating range: 0% to 100%
    • Accuracy: ±0.5% typical
    • Offset Error Correction: reduces offset to return device to within accuracy specification
    • Long-term drift: 0.19%RH/yr
    • Condensation protection with integrated heater
  • Temperature sensor:
    • Operating range: –40°C to 125°C
    • Accuracy: ±0.1°C typical
    • Long-term drift: ±0.03°C/yr
  • NIST traceability: relative humidity & temperature
  • Output Short Circuit Protection

  • Low power: average current 0.4µA
  • I2C interface compatibility up to 1MHz speeds
    • Four selectable I2C addresses
    • Data protection through CRC checksum
  • Supply voltage: 1.62V to 5.50V
  • Available auto measurement mode
  • Programmable interrupts
  • Programmable RH and Temp measurement offset
  • Factory-installed polyimide tape assembly cover
  • Factory-installed IP67 rated environmental cover

The HDC302x is an integrated, capacitive based relative humidity (RH) and temperature sensor . The device provides high accuracy measurements over a wide supply range (1.62V – 5.5V) and ultra low power consumption in a compact 2.5mm × 2.5mm × 0.8mm WSON 8-pin package. Both the temperature and humidity sensors are 100% tested and trimmed on a production setup that is NIST traceable and verified with equipment that is calibrated to ISO/IEC 17025 standards.

Offset Error Correction reduces RH sensor offset due to aging, exposure to extreme operating conditions, and contaminants to return device to within accuracy specifications. For battery IoT applications, auto measurement mode and ALERT feature enable low system power by maximizing MCU sleep time. There are four different I2C addresses that support speeds up to 1MHz. A heater is available to dissipate condensation and moisture.

The HDC3020 is an open cavity package without protective cover. Two device variants have a cover option to protect the open cavity RH sensor: HDC3021 and HDC3022. HDC3021 has removable protective tape to allow conformal coatings and PCB wash. HDC3022 has a permanent IP67 filter membrane to protect against dust and water condensation.

The HDC302x is an integrated, capacitive based relative humidity (RH) and temperature sensor . The device provides high accuracy measurements over a wide supply range (1.62V – 5.5V) and ultra low power consumption in a compact 2.5mm × 2.5mm × 0.8mm WSON 8-pin package. Both the temperature and humidity sensors are 100% tested and trimmed on a production setup that is NIST traceable and verified with equipment that is calibrated to ISO/IEC 17025 standards.

Offset Error Correction reduces RH sensor offset due to aging, exposure to extreme operating conditions, and contaminants to return device to within accuracy specifications. For battery IoT applications, auto measurement mode and ALERT feature enable low system power by maximizing MCU sleep time. There are four different I2C addresses that support speeds up to 1MHz. A heater is available to dissipate condensation and moisture.

The HDC3020 is an open cavity package without protective cover. Two device variants have a cover option to protect the open cavity RH sensor: HDC3021 and HDC3022. HDC3021 has removable protective tape to allow conformal coatings and PCB wash. HDC3022 has a permanent IP67 filter membrane to protect against dust and water condensation.

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HDC3022 現行 具有永久式 IP67 濾波器的 0.5% RH 數位濕度感測器 Permanent IP67 filter for water and dust protection
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技術文件

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重要文件 類型 標題 格式選項 下載最新的英文版本 日期
* 資料表 HDC302x 0.5%RH Digital Relative Humidity Sensor, 0.19%RH/yr Long Term Drift, 4s Response, Low-Power, Offset Error Correction, 0.1°C Temperature Sensor datasheet (Rev. D) PDF | HTML 2024/7/24
* 使用指南 HDC302x Silicon Users Guide (Rev. D) PDF | HTML 2025/2/18
Application brief Marketing Selection Guide For Sensing in Humanoids (Rev. A) PDF | HTML 2026/6/4
應用說明 How to Use the Integrated Heater to Mitigate RH Drift PDF | HTML 2026/5/1
應用說明 A Simple, Java-Based CRC Calculator PDF | HTML 2026/3/4
Product overview Humidity Sensor Comparison Guide PDF | HTML 2026/1/2
應用說明 TI Humidity Sensors: Programming & Integration Guide PDF | HTML 2025/11/3
應用說明 How to Debug RH Accuracy Issues in RH Sensors PDF | HTML 2025/10/30
應用說明 Humidity Sensor-Based Water Ingress Monitoring for Automotive Electronics (Rev. A) PDF | HTML 2025/8/5
Product overview NIST Traceability for Temperature and Humidity Sensors PDF | HTML 2025/4/15
Application brief Leak Detection, Flow, and Pressure Monitoring in Liquid-Cooled Server Cards and Coolant Distribution Units PDF | HTML 2024/10/9
Application brief How TI Humidity Sensors Remove Device Condensation Using On-Chip Heaters PDF | HTML 2023/2/10
Application brief Using RH to Derive Vapor Pressure, Dew Point, Absolute Humidity, and Enthalpy PDF | HTML 2023/2/9
Application brief Improving System Reliability in Auto and Ind. Cameras w/ AccurateTemp. Sensing PDF | HTML 2022/1/3
白皮書 85°C/85% RH Accelerated Life Test Impact on Humidity Sensors (Rev. A) PDF | HTML 2021/9/7
Application brief Leveraging Relative Humidity Sensor Enhanced Features for Ultra-Low-Power System (Rev. A) PDF | HTML 2021/9/1
Application brief How the HDC3020 Humidity Sensor Family Achieves The Industry's Lowest Drift (Rev. A) PDF | HTML 2021/8/31
技術文章 Why long-term consistent performance matters for relative humidity sensors PDF | HTML 2021/6/21
技術文章 Interface to sensors in seconds with ASC Studio PDF | HTML 2020/11/12
技術文章 Understanding tamper detection sensors PDF | HTML 2019/11/18

設計與開發

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開發板

HDC3020EVM — 適用於溫度和濕度感測器的 HDC3020 耗評估模組

設計人員可利用 HDC3020EVM 評估模組 (EVM) 評估 HDC3020 相對濕度及溫度感測器的操作和性能。此 EVM 託管 MSP430F5528 微控制器 (µC) 以及 HDC3020。µC 用於控制 HDC3020 並透過 USB 埠與主機 PC 通訊。如有必要 EVM 的設計可分成兩個部分。穿孔允許使用者中斷 HDC3020 的連接,以靈活地進行評估。

使用指南: PDF | HTML
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HDC3020FLXEVM — HDC3020 柔性印刷電路評估模組

HDC3020FLXEVM 是柔性印刷電路 (FPC) 架構的分接感測器電路板。其讓使用者可在精巧易用的電路板上,評估 HDC3020 數位相對濕度 (RH) 和溫度感測器的性能。
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IDE、配置、編譯器或偵錯程式

ASC-STUDIO-HDC3020 — ASC studio for configuring all aspects of the HDC3020 humidity sensor

SysConfig can be used to help simplify configuration challenges and accelerate software development with the HDC3020 humidity sensor.
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參考設計

TIDA-010253 — 適用於儲能系統的電池控制單元參考設計

此參考設計為高電壓鋰離子 (Li-ion)、磷酸鐵鋰 (LiFePO4) 電池架的中央控制器。此設計提供適用於高電壓繼電器的驅動電路、通訊介面 (包括 RS-485、控制器區域網路 (CAN)、菊鍊與乙太網路)、濕度感測器的可擴充介面、高電壓類比轉數位轉換器 (ADC),以及電流感測器。

此設計使用高性能微控制器進行開發和測試應用。這些功能讓此參考設計適用於高容量電池架應用的中央控制器。

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TIDA-010254 — 具有 Sub-1-GHz 和 Bluetooth® 5.2 的電池供電 mmWave 雷達感測器參考設計

此工業參考設計展示了將電池供電 IWRL6432 60GHz mmWave 雷達搭配 Sub-1 GHz 或 Bluetooth® 5.2 無線通訊使用的情況。此設計透過鋰電池,以人數計算和追蹤以及動作追蹤應用進行展示,前述應用會透過 Sub-1G 或 Bluetooth 將結果傳送至遠端主機,同時也相容於任何現有 IWRL6432 軟體。此參考設計將 LAUNCHXLCC1352R1 無線微控制器 LaunchPad™ 與 PC GUI 搭配使用,以視覺方式顯示雷達感測數據及偵測結果。

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TIDA-010997 — 邊緣 AI 感測器 BoosterPack™ 參考設計

此參考設計推出隨插即用時間序列感測器 BoosterPack™,其與多個 TI 評估模組 (EVM) 相容。此設計可直接存取不同感測器類型,以便您可透過簡易的資料收集功能使用 CCStudio™ Edge AI Studio 開發和評估邊緣 AI 應用。

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