產品詳細資料

Resistance (25°C) (Ω) 100000 Resistance tolerance (%) 1 Operating temperature range (°C) -40 to 150 Vin (min) (V) 5.5 Vin (max) (V) 5.5 Supply current (max) (µA) 0 Interface type Resistance Rating Catalog
Resistance (25°C) (Ω) 100000 Resistance tolerance (%) 1 Operating temperature range (°C) -40 to 150 Vin (min) (V) 5.5 Vin (max) (V) 5.5 Supply current (max) (µA) 0 Interface type Resistance Rating Catalog
SOT-5X3 (DYA) 2 1.28 mm² (1.6 mm × 0.8 mm) X1SON (DEC) 2 0.6 mm² (0 mm × 0 mm)
  • Silicon-based thermistor with a positive temperature coefficient (PTC)
  • Linear resistance change across temperature
  • 100-kΩ nominal resistance at 25 °C (R25)
    • ±1% maximum (0 °C to 70 °C)
  • Wide operating temperature of –40 °C to +150 °C
  • Consistent sensitivity across temperature
    • 6400 ppm/°C TCR (25 °C)
    • 0.2% typical TCR tolerance across temperature range
  • Fast thermal response time of 0.6 s (DEC)
  • Long lifetime and robust performance
    • Built-in fail-safe in case of short-circuit failures
    • 0.3% typical long term sensor drift
  • Silicon-based thermistor with a positive temperature coefficient (PTC)
  • Linear resistance change across temperature
  • 100-kΩ nominal resistance at 25 °C (R25)
    • ±1% maximum (0 °C to 70 °C)
  • Wide operating temperature of –40 °C to +150 °C
  • Consistent sensitivity across temperature
    • 6400 ppm/°C TCR (25 °C)
    • 0.2% typical TCR tolerance across temperature range
  • Fast thermal response time of 0.6 s (DEC)
  • Long lifetime and robust performance
    • Built-in fail-safe in case of short-circuit failures
    • 0.3% typical long term sensor drift

Get started today with the Thermistor Design Tool, offering complete resistance vs temperature table (R-T table) computation, other helpful methods to derive temperature and example C-code.

Linear thermistors offer linearity and consistent sensitivity across temperature to enable simple and accurate methods for temperature conversion. Low power consumption and a small thermal mass minimize the impact of self-heating. With built-in failsafe behavior at high temperatures and powerful immunity to environmental variation, these devices are designed for a long lifetime of high performance. The small size of the TMP6 series also allows for close placement to heat sources and quick response times.

Take advantage of benefits over NTC thermistors such as no extra linearization circuitry, minimized calibration, less resistance tolerance variation, larger sensitivity at high temperatures, and simplified conversion methods to save time and memory in the processor.

The TMP63 is currently available in a 0402 footprint-compatible X1SON package and a 0603 footprint-compatible SOT-5X3 package.

Get started today with the Thermistor Design Tool, offering complete resistance vs temperature table (R-T table) computation, other helpful methods to derive temperature and example C-code.

Linear thermistors offer linearity and consistent sensitivity across temperature to enable simple and accurate methods for temperature conversion. Low power consumption and a small thermal mass minimize the impact of self-heating. With built-in failsafe behavior at high temperatures and powerful immunity to environmental variation, these devices are designed for a long lifetime of high performance. The small size of the TMP6 series also allows for close placement to heat sources and quick response times.

Take advantage of benefits over NTC thermistors such as no extra linearization circuitry, minimized calibration, less resistance tolerance variation, larger sensitivity at high temperatures, and simplified conversion methods to save time and memory in the processor.

The TMP63 is currently available in a 0402 footprint-compatible X1SON package and a 0603 footprint-compatible SOT-5X3 package.

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針腳對針腳的功能與所比較的裝置相同。
TMP61 現行 採用 0402、0603/0805 及穿孔封裝的 1%、10-kΩ 線性熱敏電阻 10-kΩ resistance alternative
TMP64 現行 採用 0402、0603/0805 封裝的 1%、47-kΩ 線性熱敏電阻 47-kΩ resistance alternative

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 TMP63 ±1% 100-kΩ Linear Thermistor With 0402 and 0603 Package Options datasheet (Rev. D) PDF | HTML 2020/11/2
白皮書 Temperature Sensing with Thermistors (Rev. A) PDF | HTML 2023/5/31
應用說明 Achieve ±1°C Accuracy or Better Across Temp. W/Low-Cost TMP6x Linear Thermistors PDF | HTML 2022/11/30
應用說明 RTD Alternative Measurement Methods in Real-Time Control Applications (Rev. A) PDF | HTML 2022/6/17
應用說明 Creating a Polynomial for TMP6 Temperature Measurements PDF | HTML 2022/3/23
證書 UL Certification E516784 Vol 1 Sec 1 2022/2/9
使用指南 NTC Thermistor to TMP6 Linear Thermistor Replacement Guide PDF | HTML 2022/1/10
應用說明 Component Temperature Monitoring Using Differential Temperature Measurements PDF | HTML 2021/11/10
Application brief How to Protect Displays with the Latest Temperature Sensing Technology PDF | HTML 2021/7/26
技術文章 How accurate sensing in HVAC systems improves efficiency and saves consumers money PDF | HTML 2021/1/26
Circuit design Wide temperature range linear negative temperature coefficient (NTC) output PDF | HTML 2020/12/22
Circuit design Wide temperature range linear positive temperature coefficient (PTC) output PDF | HTML 2020/12/18
應用說明 TMP6X Oversampling PDF | HTML 2020/10/14
技術文章 Designing with linear thermistors PDF | HTML 2020/2/26
類比設計期刊 Measurement error caused by self-heating in NTC and PTC thermistors 2019/6/14

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

TMP6EVM — 線性矽 TMP6 熱敏電阻評估模組

TMP6EVM 評估套件是一款隨插即用系統,用於測試和評估線性矽 TMP6 熱敏電阻。此 EVM 可使用 USB 或 CR2032 鈕釦型單芯電池供電。此 EVM 是一款支援 TMP116 數位感測器和兩個類比通道的獨立模組。TMP116 可做為本機溫度參考使用。PCB 的感測器部分可與主 PCB 分離,以支援感測器位於主機控制器遠端的系統的原型設計。LCD 以 2Hz 的頻率顯示溫度量測的實時串流。
使用指南: PDF
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IDE、配置、編譯器或偵錯程式

ASC-STUDIO-TMP6 — ASC studio for configuring all aspects of the TMP6 temperature sensor

SysConfig can be used to help simplify configuration challenges and accelerate software development with the TMP6 temperature sensor.
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開發模組 (EVM) 的 GUI

TMP6EVM-GUI-WINDOWS — TMP6EVM GUI WINDOWS

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支援軟體

TMP6-THERMISTOR-DESIGN — Thermistor Design Tool

TMP6 線性熱敏電阻與市場上其他傳統的負溫度係數 (NTC) 或正溫度係數 (PTC) 熱敏電阻一樣,在系統中使用時需要電阻到溫度的轉換表。TMP6 熱敏電阻設計工具除了提供這些轉換表外,還提供了有助於完成系統設計的其他實用工具。此工具提供兩種選項,可將熱敏電阻用於電阻分壓器或恆流電路中,以適應任何設計需求。選擇正確的工具後,可以根據將要使用的 TMP6 熱敏電阻零件編號、偏壓電壓/電流、偏壓電阻(如需要)以及 ADC 分辨率進行配置。

在選擇符合系統需求的值後,開發人員可以使用其他選項卡來進行裝置之間的比較,並獲取理想的轉換方法的 ANSI 泛用 C (...)
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參考設計

TIDA-010300 — 尺寸為 20mm 的低功耗 CGM 感測器參考設計

此連續血糖監測器(CGM)參考設計提供全方位評估平台,用於評估 TI 最新的低功耗連續血糖監測資源,以支援糖尿病照護。此參考設計採用類比前端(AFE),以進行多達兩個通道的低功率且精準的電化學感測。TMP63 或 TMP118 可監控體溫,以提升血糖感測的準確度。電化學感測器讀數由低功耗 CC2340R5 Bluetooth® 低耗能(LE)微控制器處理,並傳送至智慧型手機,以即時顯示及資料收集。靈活選擇低 IQ 電壓轉換器,可支援氧化銀(1.5V)和鋰電池(3.0V)的電池輸入,同時維持直徑低於 20mm 的精巧設計。

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封裝 針腳 CAD 符號、佔位空間與 3D 模型
SOT-5X3 (DYA) 2 Ultra Librarian
X1SON (DEC) 2 Ultra Librarian

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