Produktdetails

Type Time-to-digital converter Number of input channels 2 Supply voltage (min) (V) 2 Supply voltage (max) (V) 3.6 Operating temperature range (°C) -40 to 85 Interface type SPI Rating Catalog
Type Time-to-digital converter Number of input channels 2 Supply voltage (min) (V) 2 Supply voltage (max) (V) 3.6 Operating temperature range (°C) -40 to 85 Interface type SPI Rating Catalog
NFBGA (ZAX) 25 16 mm² 4 x 4
  • Resolution: 55 ps
  • Standard Deviation: 35 ps
  • Measurement Range:
    • Individual Mode 1: 12 ns to 2000 ns
    • Individual Mode 2: 250 ns to 8 ms
    • Combined Operation: 0.25 ns to 8 ms
  • Low Active Power Consumption: 2.7 mA
  • Supports up to 10 STOP Signals
  • Autonomous Multi-Cycle Averaging Mode
    for Low Power Consumption
  • Supply Voltage: 2 V to 3.6 V
  • Operating Temperature –40°C to +85°C
  • SPI Interface for Register Access
  • Resolution: 55 ps
  • Standard Deviation: 35 ps
  • Measurement Range:
    • Individual Mode 1: 12 ns to 2000 ns
    • Individual Mode 2: 250 ns to 8 ms
    • Combined Operation: 0.25 ns to 8 ms
  • Low Active Power Consumption: 2.7 mA
  • Supports up to 10 STOP Signals
  • Autonomous Multi-Cycle Averaging Mode
    for Low Power Consumption
  • Supply Voltage: 2 V to 3.6 V
  • Operating Temperature –40°C to +85°C
  • SPI Interface for Register Access

The TDC7201 is designed for use with ultrasonic, laser and radar range finding equipment using time-of-flight technique. The TDC7201 has two built-in Time-to-Digital Converters (TDCs) that can be used to measure distance down to 4 cm and up to several kilometers using a simple architecture, which eliminates the need to use expensive FPGAs or processors.

Each TDC performs the function of a stopwatch and measures the elapsed time (time-of-flight or TOF) between a START pulse and up to five STOP pulses. The ability to measure simultaneously and individually on two pairs of START and STOP pins using two built-in TDCs offers high flexibility in time measurement design.

The device has an internal self-calibrated time base which compensates for drift over time and temperature. Self-calibration enables time-to-digital conversion accuracy in the order of picoseconds. This accuracy makes the TDC7201 ideal for range finder applications.

When placed in the Autonomous Multi-Cycle Averaging Mode, the TDC7201 device can be optimized for low system power consumption, which is ideal for battery-powered flow meters. In this mode, the host can go to sleep to save power and wake up when interrupted by the TDC upon completion of the measurement sequence.

The TDC7201 is designed for use with ultrasonic, laser and radar range finding equipment using time-of-flight technique. The TDC7201 has two built-in Time-to-Digital Converters (TDCs) that can be used to measure distance down to 4 cm and up to several kilometers using a simple architecture, which eliminates the need to use expensive FPGAs or processors.

Each TDC performs the function of a stopwatch and measures the elapsed time (time-of-flight or TOF) between a START pulse and up to five STOP pulses. The ability to measure simultaneously and individually on two pairs of START and STOP pins using two built-in TDCs offers high flexibility in time measurement design.

The device has an internal self-calibrated time base which compensates for drift over time and temperature. Self-calibration enables time-to-digital conversion accuracy in the order of picoseconds. This accuracy makes the TDC7201 ideal for range finder applications.

When placed in the Autonomous Multi-Cycle Averaging Mode, the TDC7201 device can be optimized for low system power consumption, which is ideal for battery-powered flow meters. In this mode, the host can go to sleep to save power and wake up when interrupted by the TDC upon completion of the measurement sequence.

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Typ Titel Datum
* Data sheet TDC7201 Time-to-Digital Converter for Time-of-Flight Applications in LIDAR, Range Finders, and ADAS datasheet PDF | HTML 19 Mai 2016
Application brief Time of Flight and LIDAR - Optical Front End Design (Rev. A) PDF | HTML 29 Apr 2022
Application note Short Time Measurement Using TDC7201 30 Jun 2016

Design und Entwicklung

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Evaluierungsplatine

TDC7201-ZAX-EVM — TDC7201 Ultra-Messbereich, Zeit-Digital-Wandler – Evaluierungsmodul

TDC7201-ZAX-EVM ist ein Evaluierungsmodul, mit dem Benutzer den Zeit-Digital-Wandler TDC7201 testen und evaluieren können. TDC7201 kann für genaue Zeitmessungen in LIDAR-Anwendungen verwendet werden. Das EVM ist ein BoosterPack-Plug-in-Modul für das MSP430F5529-LaunchPad. TDC7201-ZAX-EVM verfügt (...)
Benutzerhandbuch: PDF | HTML
Simulationsmodell

TDC7201 IBIS Model

SNAM198.ZIP (37 KB) - IBIS Model
Referenzdesigns

TIDA-060025 — Reference design zum Maximieren der Transimpedanz-Bandbreite für LIDAR- und Time-of-Flight-Anwendung

Dieses Design demonstriert ein optisches Highspeed-Frontend mit einem Time-of-Flight (ToF)-Entfernungsmessungsschaltkreis unter Verwendung eines Glasfaser-Übertragungsmediums, das an jede Art von ToF-Messung, z. B. durch den freien Raum, angepasst werden kann. Dieses Design verfügt über ein (...)
Design guide: PDF
Schaltplan: PDF
Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
NFBGA (ZAX) 25 Ultra Librarian

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