JAJSF37D
May 2014 – March 2018
DRV2605L
PRODUCTION DATA.
1
特長
2
アプリケーション
3
概要
概略回路図
4
改訂履歴
5
概要(続き)
6
Pin Configuration and Functions
Pin Functions
Pin Functions
7
Specifications
7.1
Absolute Maximum Ratings
7.2
ESD Ratings
7.3
Recommended Operating Conditions
7.4
Thermal Information
7.5
Electrical Characteristics
7.6
Timing Requirements
7.7
Switching Characteristics
7.8
Typical Characteristics
8
Parameter Measurement Information
8.1
Test Setup for Graphs
8.1.1
Default Test Conditions
9
Detailed Description
9.1
Overview
9.2
Functional Block Diagram
9.3
Feature Description
9.3.1
Support for ERM and LRA Actuators
9.3.2
Smart-Loop Architecture
9.3.2.1
Auto-Resonance Engine for LRA
9.3.2.2
Real-Time Resonance-Frequency Reporting for LRA
9.3.2.3
Automatic Switch to Open-Loop for LRA
9.3.2.4
Automatic Overdrive and Braking
9.3.2.4.1
Startup Boost
9.3.2.4.2
Brake Factor
9.3.2.4.3
Brake Stabilizer
9.3.2.5
Automatic Level Calibration
9.3.2.5.1
Automatic Compensation for Resistive Losses
9.3.2.5.2
Automatic Back-EMF Normalization
9.3.2.5.3
Calibration Time Adjustment
9.3.2.5.4
Loop-Gain Control
9.3.2.5.5
Back-EMF Gain Control
9.3.2.6
Actuator Diagnostics
9.3.2.7
Automatic Re-Synchronization
9.3.3
Open-Loop Operation for LRA
9.3.4
Open-Loop Operation for ERM
9.3.5
Flexible Front-End Interface
9.3.5.1
PWM Interface
9.3.5.2
Internal Memory Interface
9.3.5.2.1
Waveform Sequencer
9.3.5.2.2
Library Parameterization
9.3.5.3
Real-Time Playback (RTP) Interface
9.3.5.4
Analog Input Interface
9.3.5.5
Audio-to-Vibe Interface
9.3.5.6
Input Trigger Option
9.3.5.6.1
I2C Trigger
9.3.5.6.2
Edge Trigger
9.3.5.6.3
Level Trigger
9.3.5.7
Noise Gate Control
9.3.6
Edge Rate Control
9.3.7
Constant Vibration Strength
9.3.8
Battery Voltage Reporting
9.3.9
One-Time Programmable (OTP) Memory for Configuration
9.3.10
Low-Power Standby
9.3.11
I2C Watchdog Timer
9.3.12
Device Protection
9.3.12.1
Thermal Protection
9.3.12.2
Overcurrent Protection of the Actuator
9.3.12.3
Overcurrent Protection of the Regulator
9.3.12.4
Brownout Protection
9.4
Device Functional Modes
9.4.1
Power States
9.4.1.1
Operation With VDD < 2 V (Minimum VDD)
9.4.1.2
Operation With VDD > 5.5 V (Absolute Maximum VDD)
9.4.1.3
Operation With EN Control
9.4.1.4
Operation With STANDBY Control
9.4.1.5
Operation With DEV_RESET Control
9.4.1.6
Operation in the Active State
9.4.2
Changing Modes of Operation
9.4.3
Operation of the GO Bit
9.4.4
Operation During Exceptional Conditions
9.4.4.1
Operation With No Actuator Attached
9.4.4.2
Operation With a Non-Moving Actuator Attached
9.4.4.3
Operation With a Short at REG Pin
9.4.4.4
Operation With a Short at OUT+, OUT–, or Both
9.5
Programming
9.5.1
Auto-Resonance Engine Programming for the LRA
9.5.1.1
Drive-Time Programming
9.5.1.2
Current-Dissipation Time Programming
9.5.1.3
Blanking Time Programming
9.5.1.4
Zero-Crossing Detect-Time Programming
9.5.2
Automatic-Level Calibration Programming
9.5.2.1
Rated Voltage Programming
9.5.2.2
Overdrive Voltage-Clamp Programming
9.5.3
I2C Interface
9.5.3.1
General I2C Operation
9.5.3.2
Single-Byte and Multiple-Byte Transfers
9.5.3.3
Single-Byte Write
9.5.3.4
Multiple-Byte Write and Incremental Multiple-Byte Write
9.5.3.5
Single-Byte Read
9.5.3.6
Multiple-Byte Read
9.5.4
Programming for Open-Loop Operation
9.5.4.1
Programming for ERM Open-Loop Operation
9.5.4.2
Programming for LRA Open-Loop Operation
9.5.5
Programming for Closed-Loop Operation
9.5.6
Auto Calibration Procedure
9.5.7
Programming On-Chip OTP Memory
9.5.8
Waveform Playback Programming
9.5.8.1
Data Formats for Waveform Playback
9.5.8.1.1
Open-Loop Mode
9.5.8.1.2
Closed-Loop Mode, Unidirectional
9.5.8.1.3
Closed-Loop Mode, Bidirectional
9.5.8.2
Waveform Setup and Playback
9.5.8.2.1
Waveform Playback Using RTP Mode
9.5.8.2.2
Waveform Playback Using the Analog-Input Mode
9.5.8.2.3
Waveform Playback Using PWM Mode
9.5.8.2.4
Waveform Playback Using Audio-to-Vibe Mode
9.5.8.2.5
Waveform Sequencer
9.5.8.2.6
Waveform Triggers
9.6
Register Map
9.6.1
Status (Address: 0x00)
Table 4.
Status Register Field Descriptions
9.6.2
Mode (Address: 0x01)
Table 5.
Mode Register Field Descriptions
9.6.3
Real-Time Playback Input (Address: 0x02)
Table 6.
Real-Time Playback Input Register Field Descriptions
9.6.4
Library Selection (Address: 0x03)
Table 7.
Library Selection Register Field Descriptions
9.6.5
Waveform Sequencer (Address: 0x04 to 0x0B)
Table 8.
Waveform Sequencer Register Field Descriptions
9.6.6
GO (Address: 0x0C)
Table 9.
GO Register Field Descriptions
9.6.7
Overdrive Time Offset (Address: 0x0D)
Table 10.
Overdrive Time Offset Register Field Descriptions
9.6.8
Sustain Time Offset, Positive (Address: 0x0E)
Table 11.
Sustain Time Offset, Positive Register Field Descriptions
9.6.9
Sustain Time Offset, Negative (Address: 0x0F)
Table 12.
Sustain Time Offset, Negative Register Field Descriptions
9.6.10
Brake Time Offset (Address: 0x10)
Table 13.
Brake Time Offset Register Field Descriptions
9.6.11
Audio-to-Vibe Control (Address: 0x11)
Table 14.
Audio-to-Vibe Control Register Field Descriptions
9.6.12
Audio-to-Vibe Minimum Input Level (Address: 0x12)
Table 15.
Audio-to-Vibe Minimum Input Level Register Field Descriptions
9.6.13
Audio-to-Vibe Maximum Input Level (Address: 0x13)
Table 16.
Audio-to-Vibe Maximum Input Level Register Field Descriptions
9.6.14
Audio-to-Vibe Minimum Output Drive (Address: 0x14)
Table 17.
Audio-to-Vibe Minimum Output Drive Register Field Descriptions
9.6.15
Audio-to-Vibe Maximum Output Drive (Address: 0x15)
Table 18.
Audio-to-Vibe Maximum Output Drive Register Field Descriptions
9.6.16
Rated Voltage (Address: 0x16)
Table 19.
Rated Voltage Register Field Descriptions
9.6.17
Overdrive Clamp Voltage (Address: 0x17)
Table 20.
Overdrive Clamp Voltage Register Field Descriptions
9.6.18
Auto-Calibration Compensation Result (Address: 0x18)
Table 21.
Auto-Calibration Compensation-Result Register Field Descriptions
9.6.19
Auto-Calibration Back-EMF Result (Address: 0x19)
Table 22.
Auto-Calibration Back-EMF Result Register Field Descriptions
9.6.20
Feedback Control (Address: 0x1A)
Table 23.
Feedback Control Register Field Descriptions
9.6.21
Control1 (Address: 0x1B)
Table 24.
Control1 Register Field Descriptions
9.6.22
Control2 (Address: 0x1C)
Table 25.
Control2 Register Field Descriptions
9.6.23
Control3 (Address: 0x1D)
Table 26.
Control3 Register Field Descriptions
9.6.24
Control4 (Address: 0x1E)
Table 27.
Control4 Register Field Descriptions
9.6.25
Control5 (Address: 0x1F)
Table 28.
Control5 Register Field Descriptions
9.6.26
LRA Open Loop Period (Address: 0x20)
Table 29.
LRA Open Loop Period Register Field Descriptions
9.6.27
V(BAT) Voltage Monitor (Address: 0x21)
Table 30.
V(BAT) Voltage-Monitor Register Field Descriptions
9.6.28
LRA Resonance Period (Address: 0x22)
Table 31.
LRA Resonance-Period Register Field Descriptions
10
Application and Implementation
10.1
Application Information
10.2
Typical Application
10.2.1
Design Requirements
10.2.2
Detailed Design Procedure
10.2.2.1
Actuator Selection
10.2.2.1.1
Eccentric Rotating-Mass Motors (ERM)
10.2.2.1.2
Linear Resonance Actuators (LRA)
10.2.2.1.2.1
Auto-Resonance Engine for LRA
10.2.2.2
Capacitor Selection
10.2.2.3
Interface Selection
10.2.2.4
Power Supply Selection
10.2.3
Application Curves
10.3
Initialization Setup
10.3.1
Initialization Procedure
10.3.2
Typical Usage Examples
10.3.2.1
Play a Waveform or Waveform Sequence from the ROM Waveform Memory
10.3.2.2
Play a Real-Time Playback (RTP) Waveform
10.3.2.3
Play a PWM or Analog Input Waveform
11
Power Supply Recommendations
12
Layout
12.1
Layout Guidelines
12.1.1
Trace Width
12.2
Layout Example
13
デバイスおよびドキュメントのサポート
13.1
デバイス・サポート
13.1.1
法的告知
13.1.2
波形ライブラリのエフェクト一覧
13.2
ドキュメントのサポート
13.2.1
関連資料
13.3
ドキュメントの更新通知を受け取る方法
13.4
コミュニティ・リソース
13.5
商標
13.6
静電気放電に関する注意事項
13.7
Glossary
14
メカニカル、パッケージ、および注文情報
パッケージ・オプション
メカニカル・データ(パッケージ|ピン)
DGS|10
MPDS035C
YZF|9
MXBG027N
サーマルパッド・メカニカル・データ
発注情報
jajsf37d_oa
jajsf37d_pm
1
特長
柔軟な触覚および振動ドライバ
LRA (リニア共振アクチュエータ)
ERM (偏心回転質量)
I
2
C制御のデジタル・プレイバック・エンジン
波形シーケンサおよびトリガ
I
2
Cによるリアルタイム・プレイバック・モード
I
2
Cデュアル・モード駆動(オープンおよびクローズド・ループ)
スマート・ループ・アーキテクチャ(特許出願中の制御アルゴリズム)
自動オーバードライブおよびブレーキ
自動共振トラッキングおよび報告(LRAのみ)
自動アクチュエータ診断
自動レベル較正
広範なアクチュエータ・モデルのサポート
ライセンスされた
Immersion TouchSense®
2200の機能
Immersionエフェクト・ライブラリを内蔵
音声から振動への変換機能
バッテリ放電に対応して駆動を補償
広い電圧範囲(2V~5.2V)
効率的な差動スイッチング出力駆動
PWM入力、デューティ・サイクルの制御範囲0%~100%
ハードウェア・トリガ入力
短いスタートアップ時間
1.8V互換、V
DD
許容のデジタル・インターフェイス