產品詳細資料

Number of input channels 4 Operating temperature range (°C) -40 to 125 Vs (min) (V) 2.7 Interface type I2C Resolution (Bits) 28 Rating Catalog
Number of input channels 4 Operating temperature range (°C) -40 to 125 Vs (min) (V) 2.7 Interface type I2C Resolution (Bits) 28 Rating Catalog
WQFN (RGH) 16 16 mm² (4 mm × 4 mm)
  • EMI-resistant architecture
  • Maximum output rates (one active channel):
    • 13.3kSPS (FDC2112, FDC2114)
    • 4.08kSPS (FDC2212, FDC2214)
  • Maximum input capacitance: 250nF (at 10kHz with 1mH inductor)
  • Sensor excitation frequency: 10kHz to 10MHz
  • Number of channels: 2, 4
  • Resolution: up to 28 bits
  • System noise floor: 0.3fF at 100SPS
  • Supply voltage: 2.7V to 3.6V
  • Power consumption: active: 2.1mA
  • Low-power sleep mode: 35µA
  • Shutdown: 200nA
  • Interface: I2C
  • Temperature range: –40°C to +125°C
  • EMI-resistant architecture
  • Maximum output rates (one active channel):
    • 13.3kSPS (FDC2112, FDC2114)
    • 4.08kSPS (FDC2212, FDC2214)
  • Maximum input capacitance: 250nF (at 10kHz with 1mH inductor)
  • Sensor excitation frequency: 10kHz to 10MHz
  • Number of channels: 2, 4
  • Resolution: up to 28 bits
  • System noise floor: 0.3fF at 100SPS
  • Supply voltage: 2.7V to 3.6V
  • Power consumption: active: 2.1mA
  • Low-power sleep mode: 35µA
  • Shutdown: 200nA
  • Interface: I2C
  • Temperature range: –40°C to +125°C

Capacitive sensing is a low-power, high-resolution contactless sensing technique that can be applied to a variety of applications ranging from proximity detection and gesture recognition to remote liquid level sensing. The sensor in a capacitive sensing system is any metal or conductor, allowing for a highly flexible system design.

The main challenge limiting sensitivity in capacitive sensing applications is noise susceptibility of the sensors. With the FDC2x1x resonant sensing architecture, performance can be maintained even in the presence of fluorescent light.

The FDC2x1x is a multi-channel family of high-resolution, high-speed capacitance-to-digital converters for implementing capacitive sensing solutions. The devices employ an innovative narrow-band based architecture to offer high rejection of out of band noise while providing high resolution at high speed. The devices support a wide excitation frequency range, offering flexibility in system design. A wide frequency range is especially useful for reliable sensing of conductive liquids such as detergent, soap, and ink.

The FDC221x is optimized for high resolution, up to 28 bits, while the FDC211x offers a fast sample rate of up to 13.3kSPS for easy implementation of applications that use fast moving targets. The large maximum input capacitance of 250nF allows for the use of remote sensors, as well as for tracking environmental changes over time such as temperature and humidity.

The FDC2x1x family targets proximity sensing and liquid level sensing applications for any type of liquids. For non-conductive liquid level sensing applications in the presence of interferences such as human hands, the FDC1004 is recommended and features integrated active shield drivers.

Capacitive sensing is a low-power, high-resolution contactless sensing technique that can be applied to a variety of applications ranging from proximity detection and gesture recognition to remote liquid level sensing. The sensor in a capacitive sensing system is any metal or conductor, allowing for a highly flexible system design.

The main challenge limiting sensitivity in capacitive sensing applications is noise susceptibility of the sensors. With the FDC2x1x resonant sensing architecture, performance can be maintained even in the presence of fluorescent light.

The FDC2x1x is a multi-channel family of high-resolution, high-speed capacitance-to-digital converters for implementing capacitive sensing solutions. The devices employ an innovative narrow-band based architecture to offer high rejection of out of band noise while providing high resolution at high speed. The devices support a wide excitation frequency range, offering flexibility in system design. A wide frequency range is especially useful for reliable sensing of conductive liquids such as detergent, soap, and ink.

The FDC221x is optimized for high resolution, up to 28 bits, while the FDC211x offers a fast sample rate of up to 13.3kSPS for easy implementation of applications that use fast moving targets. The large maximum input capacitance of 250nF allows for the use of remote sensors, as well as for tracking environmental changes over time such as temperature and humidity.

The FDC2x1x family targets proximity sensing and liquid level sensing applications for any type of liquids. For non-conductive liquid level sensing applications in the presence of interferences such as human hands, the FDC1004 is recommended and features integrated active shield drivers.

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FDC1004 現行 具 EMC 保護主動屏蔽式驅動器的 4 通道 16 位元電容至數位轉換器 This device is a 4-channel, high resolution FDC with integrated active shield drivers

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 FDC2x1x Multi-Channel, High Resolution Capacitance-to-Digital Converter for Capacitive Sensing Applications datasheet (Rev. B) PDF | HTML 2024/10/10
應用說明 Common Inductive and Capacitive Sensing Applications (Rev. B) PDF | HTML 2021/6/22
應用說明 Simulate Inductive Sensors Using FEMM (Finite Element Method Magnetics) (Rev. A) PDF | HTML 2021/6/16
技術文章 Accurate frost or ice detection based on capacitive sensing PDF | HTML 2018/3/1
Application brief Quantifying Ice and Frost Buildup Using Capacitive Sensors PDF | HTML 2017/11/30
技術文章 How to ensure precision in automated processes PDF | HTML 2017/11/7
應用說明 Capacitive Proximity Sensing Using FDC2x1y (Rev. A) 2017/10/20
技術文章 Comparing capacitive and ultrasonic kick-to-open sensing PDF | HTML 2017/9/6
應用說明 Ground Shifting in Capacitive Sensing Applications PDF | HTML 2016/5/27
技術文章 How to remove the ground-shift phenomenon from your capacitive-sensing application PDF | HTML 2016/5/9
技術文章 Engineers do better than magicians: HMI touch through a thick glass PDF | HTML 2016/4/26
技術文章 Design an energy-efficient, lower-acoustic cooker hood with an elegant user interf PDF | HTML 2016/3/29
技術文章 Reduce power consumption in your capacitive-sensing applications PDF | HTML 2016/1/19
應用說明 Power Consumption Analysis for Low Power Capacitive Sensing Applications PDF | HTML 2016/1/18
技術文章 Capacitive sensing: simple algorithm for proximity sensing PDF | HTML 2015/11/23
技術文章 Capacitive sensing: which architecture should you choose? PDF | HTML 2015/10/20
應用說明 Derivative Integration Algorithm for Proximity Sensing 2015/9/29
應用說明 Capacitive Sensing: Direct vs Remote Liquid Level Sensing Performance Analysis (Rev. A) 2015/7/24

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

FDC2214EVM — 具有兩個電容式感測器的 FDC2214 評估模組

FDC2214 評估模組展現電感感測技術,可精確偵測傳導性目標通過固定閾值。此評估模組包含兩組連接至 FDC2214 四個通道中其中兩個的 PCB 電容感測器。MSP430 微控制器用於將 FDC2214 介接至主機電腦。此模組旨在為使用者提供系統原型設計的最大彈性,且其在兩個位置設有折斷槽:

  1. 在 PCB 電容感測器與 FDC2214 之間
  2. FDC2214 和 MSP430 介面之間


第一個穿孔可讓使用者選擇從模組中拆下 PCB 線圈,並使用自訂感測器線圈進行實驗,第二個穿孔則可讓使用者將 FDC2214 和感測器線圈連接至不同的微控制器系統,或在單一系統中使用多個感測器。隨附的 GUI (...)

使用指南: PDF | HTML
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開發板

FDC2214PROXSEN-EVM — FDC2214PROXSEN-EVM - 近距感測和電容式觸控感測評估模組

FDC2214PROXSEN-EVM 展示利用 TI FDC221x 電容感測技術的電容式近接與觸控按鈕感測。此評估模組是一套完整的硬體與韌體解決方案,將 4 通道 FDC2214、MSP430FR5969 與 TPS61029 整合於單一設計中。韌體利用自適應演算法處理資料,以判斷物體是否在目標感測區域內。所有處理都在 MSP430 上進行,因此此評估模組為獨立的系統。當裝置偵測到目標物靠近電路板或偵測到觸控按鈕時,專用 LED 就會亮起。FDC2214PROXSEN-EVM 由一顆 AA 電池供電。

評估步驟

第一步:購買 FDC2214PROXSEN-EVM

第二步:下載  (...)

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開發模組 (EVM) 的 GUI

SNOC028 — Sensing Solutions EVM GUI Tool v1.10.0

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支援軟體

SNOC033 — FDC211x/FDC221x Current Consumption Estimator

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模擬型號

FDC2214 IBIS MODEL

SLAM255.ZIP (26 KB) - IBIS 模型
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參考設計

TIDA-00464 — 高溫玻璃觸控參考設計

人機介面 (HMI) 是製程廠區的關鍵組件,因其為人員與設備交互的主要管道之一。  此參考設計提供適用於嚴苛與危險區域的人機介面解決計方案。在製程工廠中,操作人員需與防爆型顯示器/控制器互動,此類裝置封裝於金屬旋緊式外殼中,並配有厚玻璃視窗以供本地讀取與編程操作。

本參考設計採用整合於 FDC2214 中的電容式感測技術。操作人員可在無需打開外殼的情況下與控制器互動,藉此節省時間,避免申請工作許可或導致工廠停機。

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參考設計

TIDA-00466 — 雜訊抗擾電容式近距感測器系統參考設計

FDC2214 近距和電容式感測設計展示了 TI 的電容式感測技術在感知和偵測各種物體存在方面的應用。該設計是一個完整的硬體和韌體解決方案。韌體透過 FDC2214 處理來自一個近距感測器和兩個電容式觸控按鈕的數據,以確定物體是否在預期的感應區域內。當裝置偵測到目標靠近電路板或偵測到按鈕被按下時,專用的彩色 LED 燈會亮起。此設計由一節 AA 電池供電。

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參考設計

TIDA-01465 — 解析度小於 1mm、溫度漂移小於 0.25% 的電容式冰霜偵測參考設計

冷卻機體和蒸發器上的結霜和冰堆積可能會大幅降低冰箱、空調和冷涷器等許多電器應用的系統能源效率。此感測器參考設計可感測冷卻機體外殼和金屬表面的積冰量(解析度小於 1mm)以僅在必要時觸發除霜週期,進而減少不必要的除霜週期數,有助於滿足現代電器更嚴格的能源效率要求。相比之下,傳統除霜觸發方法是使用定時器或溫度感測器控制。
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封裝 針腳 CAD 符號、佔位空間與 3D 模型
WQFN (RGH) 16 Ultra Librarian

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