DRV2667
- Integrated Digital Front End
- Up to 400-kHz I 2C Bus Control
- Advanced Waveform Synthesizer
- 2-kB Internal Waveform Memory
- 100-Byte Internal FIFO Interface
- Immersion TS5000-Compliant
- Optional Analog Inputs
- High-Voltage Piezo-Haptic Driver
- Drives up to 100 nF at 200 V PP and 300 Hz
- Drives up to 150 nF at 150 V PP and 300 Hz
- Drives up to 330 nF at 100 V PP and 300 Hz
- Drives up to 680 nF at 50 V PP and 300 Hz
- Differential Output
- 105-V Integrated Boost Converter
- Adjustable Boost Voltage
- Adjustable Boost Current Limit
- Programable Boost Current Limit
- Integrated Power FET and Diode
- No Transformer Required
- 2-ms Fast Start Up Time
- 3.3- to 5.5-V Wide Supply Voltage Range
- 1.8 V-Compatible, V DD-Tolerant Digital Pins
The DRV2667 device is a piezo haptic driver with integrated 105-V boost switch, integrated power diode, integrated fully-differential amplifier, and integrated digital front end capable of driving both high-voltage and low-voltage piezo haptic actuators. This versatile device supports HD haptics through the I 2C port or through the analog inputs.
The digital interface of the DRV2667 device is available through an I 2C-compatible bus. A digital interface relieves the costly processor burden of the PWM generation or additional analog channel requirements in the host system. Any writes to the internal FIFO will automatically wake up the device and begin playing the waveform after the 2-ms internal startup procedure. When the data flow stops or the FIFO under-runs, the device will automatically enter a pop-less shutdown procedure.
The DRV2667 device also includes waveform memory to store and recall waveforms with minimal latency as well as an advanced waveform synthesizer to construct complex haptic waveforms with minimal memory usage. This provide a means of hardware acceleration, relieving the host processor of haptic generation duties as well as minimizing bus traffic over the haptic interface.
The boost voltage is set using two external resistors, and the boost current limit is programmable through the R EXT resistor. A typical start-up time of 2 ms makes the DRV2667 an ideal piezo driver for fast haptic responses. Thermal overload protection prevents the device from being damaged when overdriven.
Technical documentation
Design & development
For additional terms or required resources, click any title below to view the detail page where available.
DRV-ACC16-EVM — Haptic accelerometer measurement tool
DRV2667EVM-CT — EVM for Piezo Haptic Driver with Boost, Digital Front End, and Internal Waveform Memory
The DRV2667 is a digitally controlled, high-voltage driver designed to control Piezo actuators with voltages between 40 Vpp and 200 Vpp. The DRV2667 eliminates many design complexities of driving Piezo by including an integrated 105V boost converter and 200-Vpp differential output amplifier. In (...)
DRV2667SW-LINUX — Linux Driver for DRV2667
Linux Mainline Status
Available in Linux Main line: Yes
Available through git.ti.com: N/A
Supported Devices:
- (...)
HAPTICS-CONSOLE — Haptic Control Console v1.6.0.2
The Haptic Control Console software is an evaluation and development suite for TI's haptic drivers. The Haptic Control Console software supports the evaluation of our haptic drivers and third-party haptic actuators to develop advanced tactile feedback.
To get started, simply connect an evaluation (...)
Supported products & hardware
Products
Piezo drivers
Haptic motor drivers
Hardware development
Evaluation board
Software
Application software & framework
DRV8662-2665-2667_DESIGN_TOOL — DRV8662/DRV2665/DRV2667 Design Equation Tool
SLOR113 — DRV8662, DRV2665, and DRV2667 Design Equations
The DRV8662/DRV2665/DRV2667 Design Equation document assists the user in the design phase by calculating the driver hardware configuration based off of user-defined input parameters. The DRV8662/2665/2667 is a piezo haptic driver with integrated 105 V boost switch, integrated power diode, and (...)
Supported products & hardware
Products
Piezo drivers
Hardware development
Evaluation board
TIDA-00314 — Touch on Metal Buttons With Integrated Haptic Feedback Reference Design
TIDA-00408 — Haptic Feedback Capacitive Touch Display Reference Design for Bldg Automation & Medical Applications
TIDA-00169 — Automotive TFT LCD Display Solution
Package | Pins | CAD symbols, footprints & 3D models |
---|---|---|
VQFN (RGP) | 20 | Ultra Librarian |
Ordering & quality
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- REACH
- Device marking
- Lead finish/Ball material
- MSL rating/Peak reflow
- MTBF/FIT estimates
- Material content
- Qualification summary
- Ongoing reliability monitoring
- Fab location
- Assembly location
Recommended products may have parameters, evaluation modules or reference designs related to this TI product.
Support & training
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