link to page 1 link to page 1 link to page 1 link to page 1 link to page 3 link to page 4 link to page 5 link to page 5 link to page 6 link to page 7 link to page 10 link to page 10 link to page 11 link to page 11 link to page 11 link to page 11 link to page 11 link to page 11 link to page 12 link to page 12 link to page 12 link to page 13 link to page 13 link to page 5 ADXL206Data SheetTABLE OF CONTENTS Features .. 1 Performance ...9 Applications ... 1 Applications Information .. 10 General Description ... 1 Power Supply Decoupling ... 10 Functional Block Diagram .. 1 Setting the Bandwidth Using CX and CY ... 10 Revision History ... 2 Self-Test ... 10 Specifications ... 3 Design Trade-Offs for Selecting Filter Characteristics: Absolute Maximum Ratings .. 4 Noise/Bandwidth Trade-Off .. 10 Thermal Resistance .. 4 Using the ADXL206 with Operating Voltages Other Than 5 V .. 11 ESD Caution .. 4 Using the ADXL206 As a Dual-Axis Tilt Sensor ... 11 Pin Configuration and Function Descriptions ... 5 Outline Dimensions ... 12 Typical Performance Characteristics ... 6 Ordering Guide .. 12 Theory of Operation .. 9 REVISION HISTORY 4/15—Rev. A to Rev. B Changes to Note 3, Table 1 .. 3 1/14—Rev. 0 to Rev. A Changes to Figure 3 .. 5 4/11—Revision 0: Initial Version Rev. B | Page 2 of 12 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAM TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION PERFORMANCE APPLICATIONS INFORMATION POWER SUPPLY DECOUPLING SETTING THE BANDWIDTH USING CX AND CY SELF-TEST DESIGN TRADE-OFFS FOR SELECTING FILTER CHARACTERISTICS: NOISE/BANDWIDTH TRADE-OFF USING THE ADXL206 WITH OPERATING VOLTAGES OTHER THAN 5 V USING THE ADXL206 AS A DUAL-AXIS TILT SENSOR Dual-Axis Tilt Sensor: Converting Acceleration to Tilt OUTLINE DIMENSIONS ORDERING GUIDE