Produktdetails

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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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt FDC2x1x Multi-Channel, High Resolution Capacitance-to-Digital Converter for Capacitive Sensing Applications datasheet (Rev. B) PDF | HTML 10.10.2024
Anwendungshinweis Common Inductive and Capacitive Sensing Applications (Rev. B) PDF | HTML 22.06.2021
Anwendungshinweis Simulate Inductive Sensors Using FEMM (Finite Element Method Magnetics) (Rev. A) PDF | HTML 16.06.2021
Technischer Artikel Accurate frost or ice detection based on capacitive sensing PDF | HTML 01.03.2018
Application brief Quantifying Ice and Frost Buildup Using Capacitive Sensors PDF | HTML 30.11.2017
Technischer Artikel How to ensure precision in automated processes PDF | HTML 07.11.2017
Anwendungshinweis Capacitive Proximity Sensing Using FDC2x1y (Rev. A) 20.10.2017
Technischer Artikel Comparing capacitive and ultrasonic kick-to-open sensing PDF | HTML 06.09.2017
Anwendungshinweis Ground Shifting in Capacitive Sensing Applications PDF | HTML 27.05.2016
Technischer Artikel How to remove the ground-shift phenomenon from your capacitive-sensing application PDF | HTML 09.05.2016
Technischer Artikel Engineers do better than magicians: HMI touch through a thick glass PDF | HTML 26.04.2016
Technischer Artikel Design an energy-efficient, lower-acoustic cooker hood with an elegant user interf PDF | HTML 29.03.2016
Technischer Artikel Reduce power consumption in your capacitive-sensing applications PDF | HTML 19.01.2016
Anwendungshinweis Power Consumption Analysis for Low Power Capacitive Sensing Applications PDF | HTML 18.01.2016
Technischer Artikel Capacitive sensing: simple algorithm for proximity sensing PDF | HTML 23.11.2015
Technischer Artikel Capacitive sensing: which architecture should you choose? PDF | HTML 20.10.2015
Anwendungshinweis Derivative Integration Algorithm for Proximity Sensing 29.09.2015
Anwendungshinweis Capacitive Sensing: Direct vs Remote Liquid Level Sensing Performance Analysis (Rev. A) 24.07.2015

Design und Entwicklung

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Evaluierungsplatine

FDC2214EVM — Evaluierungsmodul für FDC2214 mit zwei kapazitiven Sensoren

The FDC2214 evaluation module demonstrates capacitive sensing technology to detect the presence of a conductive or non-conductive target. The evaluation module includes two PCB capacitive sensors that connect to two of the four channels of the FDC2214. An MSP430 microcontroller is used to interface (...)

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Evaluierungsplatine

FDC2214PROXSEN-EVM — FDC2214PROXSEN-EVM – Näherungs- und Abtastung mit kapazitiver Touch-Technologie – Evaluierungsmodul

The FDC2214PROXSEN-EVM demonstrates capacitive proximity and touch button sensing with the use of TI's FDC221x capacitive sensing technology. The evaluation module is a complete hardware and firmware solution that integrates the 4-channel FDC2214, MSP430FR5969 and TPS61029 into one design. The (...)

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GUI für Evaluierungsmodul (EVM)

SNOC028 — Sensing Solutions EVM GUI Tool v1.10.0

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Support-Software

SNOC033 — FDC211x/FDC221x Current Consumption Estimator

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Simulationsmodell

FDC2214 IBIS MODEL

SLAM255.ZIP (26 KB) - IBIS-Modell
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Referenzdesign

TIDA-00464 — Touch-Bedienung durch Glas für hohe Temperaturen – Referenzdesign

Mensch-Maschine-Schnittstellen (HMI) sind ein wesentlicher Bestandteil von Prozessanlagen, da sie eine der wichtigsten Formen der Interaktion von Mensch und Maschine darstellt.  Dieses Referenzdesign bietet eine HMI-Lösung für Anwendungen in rauen und gefährlichen Bereichen. In Prozessanlagen (...)

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Referenzdesign

TIDA-00466 — Referenzdesign für störfestes kapazitives Näherungssensorsystem

The FDC2214 proximity and capacitive sensing design demonstrates the use of TI's capacitive sensing technology to sense and detect the presence of various objects. The design is a complete hardware and firmware solution. The firmware  processes the data from one proximity sensor and two (...)

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Referenzdesign

TIDA-01465 — Referenzdesign zur kapazitiven Frost- oder Eisdetektion, Auflösung von <1 mm, Temperaturdrift <0,25 

Die Ansammlung von Frost und Eis auf Kühlkörpern und Verdampfern kann die Energieeffizienz des Systems in zahlreichen Haushaltsgeräten wie Kühlschränken, Klimaanlagen und Gefrierschränken erheblich verringern. Dieses Sensor-Referenzdesign trägt dazu bei, die strengeren Anforderungen moderner (...)
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Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
WQFN (RGH) 16 Ultra Librarian

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