Produktdetails

Number of input channels 4 Features Integrated shield drivers Operating temperature range (°C) -40 to 125 Interface type I2C Resolution (Bits) 24 Rating Automotive, Catalog
Number of input channels 4 Features Integrated shield drivers Operating temperature range (°C) -40 to 125 Interface type I2C Resolution (Bits) 24 Rating Automotive, Catalog
VSSOP (DGS) 10 14.7 mm² (3 mm × 4.9 mm)
  • Qualified for automotive applications
  • AEC-Q100 qualified with the following results
    • Device temperature grade 1: –40°C to 125°C ambient operating temperature range
    • Device HBM ESD classification level 2
    • Device CDM ESD classification level C5
  • Input range: ±15pF
  • Measurement resolution: 0.5fF
  • Maximum offset capacitance: 100pF
  • Programmable output rates: 100/200/400 S/s
  • Maximum shield load: 400pF
  • Supply voltage: 3.3V
  • Temperature range: –40° to 125°C
  • Current consumption:
    • Active: 750µA
    • Standby: 29µA
  • Interface: I2C
  • Number of channels: 4
  • Qualified for automotive applications
  • AEC-Q100 qualified with the following results
    • Device temperature grade 1: –40°C to 125°C ambient operating temperature range
    • Device HBM ESD classification level 2
    • Device CDM ESD classification level C5
  • Input range: ±15pF
  • Measurement resolution: 0.5fF
  • Maximum offset capacitance: 100pF
  • Programmable output rates: 100/200/400 S/s
  • Maximum shield load: 400pF
  • Supply voltage: 3.3V
  • Temperature range: –40° to 125°C
  • Current consumption:
    • Active: 750µA
    • Standby: 29µA
  • Interface: I2C
  • Number of channels: 4

Capacitive sensing with grounded capacitor sensors is a very low-power, low-cost, high-resolution contact-less sensing technique that can be applied to a variety of applications ranging from proximity sensing and gesture recognition to material analysis and remote liquid level sensing. The sensor in a capacitive sensing system is any metal or conductor, allowing for low cost and highly flexible system design.

The FDC1004-Q1 is a high-resolution, AEC-Q100 qualified, 4-channel capacitance-to-digital converter for implementing capacitive sensing solutions. Each channel has a full scale range of ±15pF and can handle a sensor offset capacitance of up to 100pF, which can be either programmed internally or can be an external capacitor for tracking environmental changes over time and temperature. The large offset capacitance capability allows for the use of remote sensors.

The FDC1004-Q1 also includes shield drivers for sensor shields, which can reduce EMI interference and help focus the sensing direction of a capacitive sensor. The small footprint of the FDC1004-Q1 allows for use in space-constrained applications. The FDC1004-Q1 is available in a 10-pin VSSOP package, which allows for optical inspection in production, and features an I2C interface for interfacing to an MCU.

Capacitive sensing with grounded capacitor sensors is a very low-power, low-cost, high-resolution contact-less sensing technique that can be applied to a variety of applications ranging from proximity sensing and gesture recognition to material analysis and remote liquid level sensing. The sensor in a capacitive sensing system is any metal or conductor, allowing for low cost and highly flexible system design.

The FDC1004-Q1 is a high-resolution, AEC-Q100 qualified, 4-channel capacitance-to-digital converter for implementing capacitive sensing solutions. Each channel has a full scale range of ±15pF and can handle a sensor offset capacitance of up to 100pF, which can be either programmed internally or can be an external capacitor for tracking environmental changes over time and temperature. The large offset capacitance capability allows for the use of remote sensors.

The FDC1004-Q1 also includes shield drivers for sensor shields, which can reduce EMI interference and help focus the sensing direction of a capacitive sensor. The small footprint of the FDC1004-Q1 allows for use in space-constrained applications. The FDC1004-Q1 is available in a 10-pin VSSOP package, which allows for optical inspection in production, and features an I2C interface for interfacing to an MCU.

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Technische Dokumentation

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* Datenblatt FDC1004-Q1 4-Channel Capacitance-to-Digital Converter for Capacitive Sensing Applications datasheet (Rev. A) PDF | HTML 10.10.2024
Benutzerhandbuch Input Resistance Error for Current Sense Amplifiers PDF | HTML 12.07.2024
Anwendungshinweis Automotive Door Handle Design with Position Sensors PDF | HTML 10.04.2024
Application brief Automotive Door Handle Module Using Hall, Inductive and Capacitive Sensors PDF | HTML 29.11.2023
Anwendungshinweis FDC1004: Basics of Capacitive Sensing and Applications (Rev. A) 23.06.2021
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
Anwendungshinweis How to Calibrate FDC1004 for Liquid Level Sensing Applications 24.10.2016
Anwendungshinweis Capacitive Sensing: Direct vs Remote Liquid Level Sensing Performance Analysis (Rev. A) 24.07.2015
Anwendungshinweis Liquid Level Sensing with the Immersive Straw Approach 19.06.2015
Anwendungshinweis Capacitive Proximity Sensing Using the FDC1004 (Rev. A) 26.04.2015
Anwendungshinweis Capacitive Sensing: Ins and Outs of Active Shielding (Rev. A) 12.02.2015
Anwendungshinweis Capacitive Sensing: Out-of-Phase Liquid Level Technique 27.01.2015

Design und Entwicklung

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Evaluierungsplatine

FDC1004QEVM — 4-Kanal-Kapazitäts-Digital-Wandler für die Automobilindustrie – Evaluierungsmodul

The FDC1004Q evaluation module is used to evaluate the FDC1004-Q1, automotive 4-channel capacitive-to-digital converter. The evaluation modules features a breakable PCB composed of three sections: a USB to I²C converter based on the MSP430F5528 microcontroller, the FDC1004-Q1, and two sensor (...)

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GUI für Evaluierungsmodul (EVM)

SNOC028 — Sensing Solutions EVM GUI Tool v1.10.0

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Simulationsmodell

FDC1004Q1 IBIS MODEL

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VSSOP (DGS) 10 Ultra Librarian

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