Produktdetails

Applications Metal proximity detection Number of input channels 1 Rating Catalog Vs (max) (V) 3.46 Vs (min) (V) 1.71 Operating temperature range (°C) -40 to 125
Applications Metal proximity detection Number of input channels 1 Rating Catalog Vs (max) (V) 3.46 Vs (min) (V) 1.71 Operating temperature range (°C) -40 to 125
VSON (DRC) 10 9 mm² (3 mm × 3 mm)
  • Wide Operating Voltage Range: 1.8 V to 3.3 V
  • Sensor Frequency Range: 500 kHz to 10 MHz
  • RP Resolution: 16-Bit
  • L Resolution: 16- or 24-Bit
  • 180-kSPS Conversion Rate
  • Threshold Detection Functionality
  • 1% Part-to-Part Variation in RP Measurement
  • Supply Current:
    • 1.4-µA Shutdown mode
    • 135-µA Sleep mode
    • 1.9-mA Active Mode (no sensor connected)
  • Sub-Micron Distance Resolution Achievable
  • Remote Sensor Placement Isolating the LDC from Harsh Environments
  • Robust Against Environmental Interferences such as Oil, Water, Dirt, or Dust
  • Minimal External Components
  • Magnet-Free Operation
  • Operating Temperature: –40°C to +125°C
  • Wide Operating Voltage Range: 1.8 V to 3.3 V
  • Sensor Frequency Range: 500 kHz to 10 MHz
  • RP Resolution: 16-Bit
  • L Resolution: 16- or 24-Bit
  • 180-kSPS Conversion Rate
  • Threshold Detection Functionality
  • 1% Part-to-Part Variation in RP Measurement
  • Supply Current:
    • 1.4-µA Shutdown mode
    • 135-µA Sleep mode
    • 1.9-mA Active Mode (no sensor connected)
  • Sub-Micron Distance Resolution Achievable
  • Remote Sensor Placement Isolating the LDC from Harsh Environments
  • Robust Against Environmental Interferences such as Oil, Water, Dirt, or Dust
  • Minimal External Components
  • Magnet-Free Operation
  • Operating Temperature: –40°C to +125°C

The LDC1101 is a 1.8-V to 3.3-V, high-resolution inductance-to-digital converter for short-range, high-speed, contactless sensing of position, rotation, or motion, enabling reliable, accurate measurements even in the presence of dust or dirt, making it ideal for open or harsh environments.

The LDC1101 features dual inductive measurement cores, allowing for > 150 ksps 16-bit RP and L measurements simultaneous with a high-resolution L measurement which can sample at > 180 ksps with a resolution of up to 24 bits. The LDC1101 includes a threshold-compare function which can be dynamically updated while the device is running.

Inductive sensing technology enables precise measurement of linear/angular position, displacement, motion, compression, vibration, metal composition, and many other applications in markets including automotive, consumer, computer, industrial, medical, and communications. Inductive sensing offers better performance and reliability at lower cost than other, competing solutions.

The LDC1101 offers these benefits of inductive sensing in a small 3-mm × 3-mm 10-pin VSON package. The LDC1101 can be easily configured by a microcontroller using the 4-pin SPI™.

The LDC1101 is a 1.8-V to 3.3-V, high-resolution inductance-to-digital converter for short-range, high-speed, contactless sensing of position, rotation, or motion, enabling reliable, accurate measurements even in the presence of dust or dirt, making it ideal for open or harsh environments.

The LDC1101 features dual inductive measurement cores, allowing for > 150 ksps 16-bit RP and L measurements simultaneous with a high-resolution L measurement which can sample at > 180 ksps with a resolution of up to 24 bits. The LDC1101 includes a threshold-compare function which can be dynamically updated while the device is running.

Inductive sensing technology enables precise measurement of linear/angular position, displacement, motion, compression, vibration, metal composition, and many other applications in markets including automotive, consumer, computer, industrial, medical, and communications. Inductive sensing offers better performance and reliability at lower cost than other, competing solutions.

The LDC1101 offers these benefits of inductive sensing in a small 3-mm × 3-mm 10-pin VSON package. The LDC1101 can be easily configured by a microcontroller using the 4-pin SPI™.

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* Datenblatt LDC1101 1.8-V High-Resolution, High-Speed Inductance-to-Digital Converter datasheet (Rev. D) PDF | HTML 03.10.2016
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 LDC Device Selection Guide (Rev. D) PDF | HTML 15.06.2021
Anwendungshinweis Sensor Design for Inductive Sensing Applications Using LDC (Rev. C) PDF | HTML 21.05.2021
Anwendungshinweis LDC Target Design (Rev. B) PDF | HTML 13.05.2021
Anwendungshinweis EMI Considerations for Inductive Sensing 22.02.2017
Technischer Artikel How to use the LDC calculations tool PDF | HTML 10.11.2016
Technischer Artikel Did you know inductive proximity sensing can be implemented with a single chip? PDF | HTML 25.04.2016
Anwendungshinweis Setting LDC1312/4, LDC1612/4, and LDC1101 Sensor Drive Configuration PDF | HTML 05.04.2016
Anwendungshinweis Optimizing L Measurement Resolution for the LDC161x and LDC1101 PDF | HTML 12.02.2016
Technischer Artikel Inductive sensing: target size matters PDF | HTML 16.11.2015
Anwendungshinweis Measuring Rp of an L-C Sensor for Inductive Sensing 01.10.2015

Design und Entwicklung

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Evaluierungsplatine

LDC1101EVM — LDC1101 1,8 V, hochauflösender Induktivitäts-Digital-Wandler – Evaluierungsmodul

The LDC1101 evaluation module demonstrates inductive sensing technology to sense and measure the presence or position of a conductive target. The evaluation board includes an example PCB sensor coil that connects to the LDC1101. An MSP430 microcontroller is used to interface the LDC to a host (...)
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LDC1101 IBIS MODEL

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Berechnungstool

LDC-CALCULATOR-TOOLS — Inductive Sensing Design Calculator Tool

Die Berechnungstools für die induktive Sensorik bieten zwei Excel-Tabellen, die Sie bei der Entwicklung von Induktiv/Digital-Wandler (LDC) unterstützen. Diese Tools unterstützen Sie beim Spulendesign und bieten Ihnen einige gerätespezifische Konfigurationen.

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Referenzdesign

TIDA-00460 — Induktive lineares Positionserfassungs-Boosterpack – Referenzdesign

Typical implementations of distance measurements use expensive rare-earth magnets. To lower overall system cost, this reference design walks through the implementation of industry’s first inductance-to-digital converters from TI for linear position sensing without the use of any expensive (...)

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Referenzdesign

TIDA-00563 — Induktives Näherungsschalter-BoosterPack – Referenzdesign

TIDA-00563 offers highly-integrated analog front end (AFE) inductance-to-digital converters (LDCs) optimized for use in industrial proximity sensors for contactless and robust applications such as presence detection and event counting. Inductive sensing technology provides reliable and accurate (...)

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Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
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