Produktdetails

Features Integrated haptic effects, Smart loop Haptic actuator type ERM, LRA Input signal Analog, I2C, PWM Output voltage (max) (V) 5.5 Shutdown current (ISD) (µA) 1.75 Startup time (ms) 0.7 Vs (max) (V) 5.5 Vs (min) (V) 2.5 Operating temperature range (°C) -40 to 85 Rating Catalog
Features Integrated haptic effects, Smart loop Haptic actuator type ERM, LRA Input signal Analog, I2C, PWM Output voltage (max) (V) 5.5 Shutdown current (ISD) (µA) 1.75 Startup time (ms) 0.7 Vs (max) (V) 5.5 Vs (min) (V) 2.5 Operating temperature range (°C) -40 to 85 Rating Catalog
DSBGA (YZF) 9 3.0625 mm² (— mm × — mm)
  • Flexible Haptic/Vibra Driver
    • LRA (Linear Resonance Actuator)
    • ERM (Eccentric Rotating Mass)
  • I2C Controlled Digital Playback Engine
    • Real-Time Playback Mode via I2C
  • Smart Loop Architecture(1)
    • Automatic Overdrive/Braking (ERM/LRA)
    • Automatic Resonance Tracking (LRA)
    • Automatic Actuator Diagnostic (ERM/LRA)
    • Automatic Level Calibration (ERM/LRA)
  • Licensed Immersion™ TouchSense® 2200 features:
    • Integrated Immersion Effect Library
    • Audio to Vibe
  • Optional PWM Input with 0% to 100% Duty Cycle Control Range
  • Optional Analog Input Control
  • Optional Hardware Trigger Pin
  • Efficient Output Drive
  • Fast Start Up Time
  • Constant Acceleration Over Supply Voltage
  • 1.8 V Compatible, VDD Tolerant Digital Pins (1)

(1)Patent pending control algorithm

  • Flexible Haptic/Vibra Driver
    • LRA (Linear Resonance Actuator)
    • ERM (Eccentric Rotating Mass)
  • I2C Controlled Digital Playback Engine
    • Real-Time Playback Mode via I2C
  • Smart Loop Architecture(1)
    • Automatic Overdrive/Braking (ERM/LRA)
    • Automatic Resonance Tracking (LRA)
    • Automatic Actuator Diagnostic (ERM/LRA)
    • Automatic Level Calibration (ERM/LRA)
  • Licensed Immersion™ TouchSense® 2200 features:
    • Integrated Immersion Effect Library
    • Audio to Vibe
  • Optional PWM Input with 0% to 100% Duty Cycle Control Range
  • Optional Analog Input Control
  • Optional Hardware Trigger Pin
  • Efficient Output Drive
  • Fast Start Up Time
  • Constant Acceleration Over Supply Voltage
  • 1.8 V Compatible, VDD Tolerant Digital Pins (1)

(1)Patent pending control algorithm

The DRV2605 device is designed to provide extremely-flexible haptic control of ERM and LRA actuators over a shared I2C-compatible bus. This control relieves the host processor from ever generating pulse-width modulated (PWM) drive signals, saving both costly timer interrupts and hardware pins.

The DRV2605 device provides an extensive integrated library over 100 licensed effects from Immersion for ERM and LRA which eliminates the need to design haptics waveforms.

The DRV2605 device offers a licensed version of the TouchSense 2200 software from Immersion, which includes the 2200 Effects Library, and 2200 audio-to-vibe features. Additionally, the real-time playback mode allows the host processor to bypass the library playback engine and play waveforms directly from the host through I2C.

The DRV2605 device also contains a smart-loop architecture, which allows effortless auto resonant drive for LRA as well as feedback-optimized ERM drive. This feedback provides automatic overdrive and braking, which creates a simplified input waveform paradigm as well as reliable motor control and consistent motor performance. The audio-to-haptics mode automatically converts an audio input signal to meaningful haptic effects.

The DRV2605 device features a trinary-modulated output stage, providing greater efficiency than linear-based output drivers. The 9-ball WCSP footprint, flexible operation, and low component count make the DRV2605 device the ideal choice for portable and touch-enabled vibratory and haptic applications.

For an important notice regarding Immersion software, see the Legal Notice section.

The DRV2605 device is designed to provide extremely-flexible haptic control of ERM and LRA actuators over a shared I2C-compatible bus. This control relieves the host processor from ever generating pulse-width modulated (PWM) drive signals, saving both costly timer interrupts and hardware pins.

The DRV2605 device provides an extensive integrated library over 100 licensed effects from Immersion for ERM and LRA which eliminates the need to design haptics waveforms.

The DRV2605 device offers a licensed version of the TouchSense 2200 software from Immersion, which includes the 2200 Effects Library, and 2200 audio-to-vibe features. Additionally, the real-time playback mode allows the host processor to bypass the library playback engine and play waveforms directly from the host through I2C.

The DRV2605 device also contains a smart-loop architecture, which allows effortless auto resonant drive for LRA as well as feedback-optimized ERM drive. This feedback provides automatic overdrive and braking, which creates a simplified input waveform paradigm as well as reliable motor control and consistent motor performance. The audio-to-haptics mode automatically converts an audio input signal to meaningful haptic effects.

The DRV2605 device features a trinary-modulated output stage, providing greater efficiency than linear-based output drivers. The 9-ball WCSP footprint, flexible operation, and low component count make the DRV2605 device the ideal choice for portable and touch-enabled vibratory and haptic applications.

For an important notice regarding Immersion software, see the Legal Notice section.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt DRV2605 Haptic Driver for ERM and LRA With Built-In Library and Smart-Loop Architecture datasheet (Rev. E) PDF | HTML 03.04.2018
Anwendungshinweis Haptic Implementation Considerations for Mobile and Wearable Devices (Rev. A) PDF | HTML 14.11.2021
Anwendungshinweis Benefits of Auto-Resonance Tracking (Rev. A) PDF | HTML 11.11.2021
Benutzerhandbuch Haptic Control Console GUI (Rev. B) 14.10.2021
Anwendungshinweis Haptic Energy Consumption (Rev. A) PDF | HTML 28.09.2021
Technischer Artikel How does a linear resonant actuator work? PDF | HTML 27.10.2016
Benutzerhandbuch Low-Voltage Battery Buck-Boost Haptic Driver Design Guide 12.01.2015
Anwendungshinweis LRA Actuators: How to Move Them? 03.11.2014
Product overview Haptic Solutions for Wearable Devices (Rev. A) 30.09.2014
Anwendungshinweis DRV2605 Device Setup Guide 09.07.2014
Benutzerhandbuch DRV2605 ERM, LRA Haptic Driver Evaluation Kit (Rev. B) 28.03.2014
Product overview Automotive Haptics Solutions 16.09.2013
Product overview Haptics: Touch feedback that really moves you (Rev. A) 08.01.2013
Weitere Dokumente DRV2605EVM-CT Quick Start Guide 18.12.2012
Weitere Dokumente Haptics: Solutions for ERM and LRA Actuators 18.12.2012

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

DRV-ACC16-EVM — Haptischer Beschleunigungsmesser-Messwerkzeug

Das DRV-ACC16-EVM-Evaluierungsmodul (EVM) ermöglicht Ihnen die einfache Messung und Charakterisierung von haptischer Rückkopplung, Beschleunigung und Vibrationsfestigkeit. Das EVM erfasst die Beschleunigung unter Verwendung eines Beschleunigungsmesser-IC und gibt X-, X- und Z-Achsen-Daten als ein (...)
Benutzerhandbuch: PDF
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Evaluierungsplatine

DRV2605EVM-CT — DRV2605EVM-CT ERM/LRA Haptik-Treiber-Evaluierung

The DRV2605 is a haptic driver designed for Linear Resonant Actuators (LRA) and Eccentric Rotating Mass (ERM) motors. It provides many features which help eliminate the design complexities of haptic motor control including reduced solution size, high efficiency output drive, closed-loop motor (...)

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Anwendungssoftware und Frameworks

SLOC283 — DRV2605 API Software

Unterstützte Produkte und Hardware
Treiber oder Bibliothek

DRV260XSW-LINUX — Linux-Treiber für DRV260x

The Linux driver supports the DRV260X series of haptic motor drivers. The Linux driver supports communication through the I2C bus and interfaces with the input sub-system for a forced feedback response.

 

Linux Mainline Status

Available in Linux Main line: Yes
Available through git.ti.com: N/A

Supported (...)

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Firmware

SLOC318 — DRV2605EVM-CT Firmware v1.0

Unterstützte Produkte und Hardware
GUI für Evaluierungsmodul (EVM)

HAPTICS-CONSOLE — Haptic Control Console v1.6.0.2

Die Haptic Control Console-Software ist eine Evaluierungs- und Entwicklungssuite für die haptischen Treiber von TI. Die Haptic Control Console-Software unterstützt die Evaluierung unserer haptischen Treiber und haptischen Aktuatoren von Drittanbietern, um taktile Rückmeldungen zu entwickeln.

Um zu (...)

Unterstützte Produkte und Hardware
Berechnungstool

DRV2604-2605_DESIGN_TOOL — DRV2604- und DRV2605-Berechnungstool

The DRV2604/5 Design Equation document assists the user in the design phase by calculating the driver hardware configuration based off of user-defined input parameters.  The DRV2604/5 is designed to give extremely flexible haptic control of ERM and LRA actuators over a shared I2C compatible (...)

Unterstützte Produkte und Hardware
Berechnungstool

SLOR114 — DRV2604 and DRV2605 Configuration Tool and Design Equations

Unterstützte Produkte und Hardware
Referenzdesign

TIDA-00198 — Referenzdesignplatine mit Resistive Dual Touch und haptischer Rückmeldung für resistive Touch-Panels

This reference evaluation module, featuring the TSC2013-Q1 resistive dual touch controller, is a fully-functional USB powered platform that allows 4-wire resistive touch screen panels to be connected to the USB port of a PC or laptop for evaluation. User control is provided via a powerful, (...)

Unterstützte Produkte und Hardware
Referenzdesign

TIDA-00266 — Referenzdesign für haptisches Feedback mit Bluetooth® Low Energy und iOS-App

This reference design features the DRV2605 Eccentric Rotating Mass (ERM) and Linear Resonant Actuator (LRA) Haptic Driver with integrated pre-licensed effect library from Immersion.  The board includes an LRA, alkaline battery pack, and can be programmed and controlled with  the (...)

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Referenzdesign

TIDA-060039 — Referenzdesign für kontaktlose Benutzerschnittstellen mit Inductive Touch und Magnet-Drehregler

Dieses Referenzdesign verwendet induktive und Hall-Effekt-Sensortechnologien, um eine Mensch-Maschine-Schnittstelle bereitzustellen. Die induktiven Sensoren stellen acht verschiedene Touch-Tasten auf einer nahtlosen Oberfläche bereit. Der Hall-Effekt-Sensor wird verwendet, um einen magnetischen (...)

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Referenzdesign

TIDA-HAPTIC-MOTOR-CONTROL-REFERENCE-DESIGN — Erweiterter Haptiktreiber vereinfacht das Design taktiler Rückmeldungen in Unterhaltungselektronik u

This haptic driver reference design for LRA and ERM motors helps eliminate the design complexities of haptic motor control with features like reduced solution size, high efficiency output drive, closed-loop motor control, quick device startup and auto-resonance frequency tracking. This reference (...)

Unterstützte Produkte und Hardware
Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
DSBGA (YZF) 9 Ultra Librarian

Bestellen & Qualität

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