產品詳細資料

Haptic actuator type Piezo Input signal Analog, PWM Vs (min) (V) 3 Vs (max) (V) 5.5 Vout (max) (V) 100 Peak-to-peak output voltage (max) (V) 200 Iq (typ) (mA) 5 Shutdown current (ISD) (µA) 13 Startup time (ms) 1.5 Operating temperature range (°C) -40 to 70 Rating Catalog
Haptic actuator type Piezo Input signal Analog, PWM Vs (min) (V) 3 Vs (max) (V) 5.5 Vout (max) (V) 100 Peak-to-peak output voltage (max) (V) 200 Iq (typ) (mA) 5 Shutdown current (ISD) (µA) 13 Startup time (ms) 1.5 Operating temperature range (°C) -40 to 70 Rating Catalog
VQFN (RGP) 20 16 mm² 4 x 4
  • 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
  • Integrated Boost Converter
    • Adjustable Boost Voltage
    • Adjustable Current Limit
    • Integrated Power FET and Diode
    • No Transformer Required
  • Fast Start Up Time of 1.5 ms
  • Wide Supply Voltage Range of 3.3 V to 5.5 V
  • 1.8 V Compatible Digital Pins
  • Thermal Protection
  • Available in a 4 mm × 4 mm × 0.9 mm QFN package (RGP)
  • 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
  • Integrated Boost Converter
    • Adjustable Boost Voltage
    • Adjustable Current Limit
    • Integrated Power FET and Diode
    • No Transformer Required
  • Fast Start Up Time of 1.5 ms
  • Wide Supply Voltage Range of 3.3 V to 5.5 V
  • 1.8 V Compatible Digital Pins
  • Thermal Protection
  • Available in a 4 mm × 4 mm × 0.9 mm QFN package (RGP)

The DRV8662 is a single-chip piezo haptic driver with integrated 105 V boost switch, integrated power diode, and integrated fully-differential amplifier. This versatile device is capable of driving both high-voltage and low-voltage piezo haptic actuators. The input signal can be either differential or single-ended. The DRV8662 supports four GPIO-controlled gains: 28.8 dB, 34.8 dB, 38.4 dB, and 40.7 dB.

The boost voltage is set using two external resistors, and the boost current limit is programmable via the R EXT resistor. The boost converter architecture will not allow the demand on the supply current to exceed the limit set by the R EXT resistor; therefore, the DRV8662 is well-suited for portable applications. This feature also allows the user to optimize the DRV8662 circuit for a given inductor based on the desired performance requirements.

A typical start-up time of 1.5 ms makes the DRV8662 an ideal piezo driver for fast haptic responses. Thermal overload protection prevents the device from being damaged when over driven.

The DRV8662 is a single-chip piezo haptic driver with integrated 105 V boost switch, integrated power diode, and integrated fully-differential amplifier. This versatile device is capable of driving both high-voltage and low-voltage piezo haptic actuators. The input signal can be either differential or single-ended. The DRV8662 supports four GPIO-controlled gains: 28.8 dB, 34.8 dB, 38.4 dB, and 40.7 dB.

The boost voltage is set using two external resistors, and the boost current limit is programmable via the R EXT resistor. The boost converter architecture will not allow the demand on the supply current to exceed the limit set by the R EXT resistor; therefore, the DRV8662 is well-suited for portable applications. This feature also allows the user to optimize the DRV8662 circuit for a given inductor based on the desired performance requirements.

A typical start-up time of 1.5 ms makes the DRV8662 an ideal piezo driver for fast haptic responses. Thermal overload protection prevents the device from being damaged when over driven.

下載 觀看有字幕稿的影片 影片

您可能會感興趣的類似產品

open-in-new 比較替代產品
功能與所比較的裝置相似
LM48560 現行 具 I2C 控制和整合式 30-V H 類升壓的單聲道、類比輸入、陶瓷揚聲器驅動器 This product is a <30Vpp piezo & ceramic speaker driver

技術文件

star =TI 所選的此產品重要文件
找不到結果。請清除您的搜尋條件,然後再試一次。
檢視所有 5
類型 標題 日期
* Data sheet DRV8662 Piezo Haptic Driver with Integrated Boost Converter datasheet (Rev. C) PDF | HTML 2022年 10月 18日
Application note DRV8662, DRV2700, DRV2665, and DRV2667 Configuration Guide (Rev. A) PDF | HTML 2021年 12月 8日
EVM User's guide DRV8662 Piezo Haptics Driver Evaluation Module (RevD Silicon) (Rev. B) 2016年 3月 9日
Product overview Automotive Haptics Solutions 2013年 9月 16日
Analog Design Journal High-definition haptics: Feel the difference! 2012年 7月 17日

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

DRV8662EVM — DRV8662 評估模組

The DRV8662EVM Evaluation Module (EVM) is a fully-differential, high-voltage piezo actuator driver that provides quick response time for single layer and multi-layer piezo actuators. The DRV8662 drives piezo loads up to 200V differentially using an adjustable integrated boost converter. The (...)
使用指南: PDF
TI.com 無法提供
模擬型號

DRV8662 TINA-TI Spice Model

SLOM224.ZIP (21 KB) - TINA-TI Spice Model
計算工具

DRV8662-2665-2667_DESIGN_TOOL — DRV8662/DRV2665/DRV2667 設計方程式工具

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 (...)
計算工具

SLOR113 DRV8662, DRV2665, and DRV2667 Design Equations

支援產品和硬體

支援產品和硬體

產品
壓電式驅動器
DRV2665 具 105-V 升壓轉換器與 DAC 的壓電式觸控驅動器 DRV2667 具 105-V 升壓轉換器、波形記憶體與 DAC 的壓電式觸控驅動器 DRV8662 採 QFN 封裝且具整合式 105-V 升壓轉換器的壓電式觸控驅動器
硬體開發
開發板
DRV2667EVM-CT 具有升壓、數位前端及內部波形記憶功能的壓電觸控驅動器 EVM DRV8662EVM DRV8662 評估模組
軟體
計算工具
DRV8662-2665-2667_DESIGN_TOOL DRV8662/DRV2665/DRV2667 設計方程式工具
封裝 針腳 CAD 符號、佔位空間與 3D 模型
VQFN (RGP) 20 Ultra Librarian

訂購與品質

內含資訊:
  • RoHS
  • REACH
  • 產品標記
  • 鉛塗層/球物料
  • MSL 等級/回焊峰值
  • MTBF/FIT 估算值
  • 材料內容
  • 認證摘要
  • 進行中持續性的可靠性監測
內含資訊:
  • 晶圓廠位置
  • 組裝地點

建議產品可能具有與此 TI 產品相關的參數、評估模組或參考設計。

支援與培訓

內含 TI 工程師技術支援的 TI E2E™ 論壇

內容係由 TI 和社群貢獻者依「現狀」提供,且不構成 TI 規範。檢視使用條款

若有關於品質、封裝或訂購 TI 產品的問題,請參閱 TI 支援。​​​​​​​​​​​​​​

影片