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ADXL335 Accelerometer: Datasheet, Pinout, Application

ANALOG DEVICES - ADXL335BCPZ - MEMS Accelerometer, 3-Axis, Analogue, X, Y, Z, ± 3g, 1.8 V, 3.6 V, LFCSP

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Aug 17, 2021

Raymond Owen

How to use the ADXL335 Accelerometer

 

ANALOG DEVICES - ADXL335BCPZ - MEMS Accelerometer, 3-Axis, Analogue, X, Y, Z, ± 3g, 1.8 V, 3.6 V, LFCSP

The ADXL335 is a small, thin, low power, complete 3-axis accelerometer with signal conditioned voltage outputs. This article will unlock more detailed information about ADXL335.

 

ADXL335BCPZ

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ADXL335 Pinout

ADXL335 CAD Model

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ADXL335 Description

The ADXL335 is a small, thin, low power, complete 3-axis accelerometer with signal conditioned voltage outputs. The product measures acceleration with a minimum full-scale range of ±3 g. It can measure the static acceleration of gravity in tilt-sensing applications, as well as dynamic acceleration resulting from motion, shock, or vibration.

Specifications

Analog Devices Inc. ADXL335BCPZ technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. ADXL335BCPZ.

ADXL335BCPZ Tech Specifications

Analog Devices Inc. ADXL335BCPZ technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. ADXL335BCPZ.

Product Attribute Attribute Value
Lifecycle StatusPRODUCTION (Last Updated: 1 month ago)
Factory Lead Time16 Weeks
Contact PlatingTin
Mounting TypeSurface Mount
Package / Case16-LQFN Exposed Pad, CSP
Surface MountYES
Number of Pins16Pins
Operating Temperature-40°C~85°C TA
PackagingTray
JESD-609 Codee3
Pbfree Codeno
Part StatusActive
Moisture Sensitivity Level (MSL)3 (168 Hours)
Number of Terminations16Terminations
ECCN CodeEAR99
Product Attribute Attribute Value
TypeAnalog
HTS Code9031.80.80.85
Voltage - Supply1.8V~3.6V
Terminal PositionQUAD
Peak Reflow Temperature (Cel)260
Number of Functions1Function
Supply Voltage3V
Terminal Pitch0.65mm
Depth4mm
Time@Peak Reflow Temperature-Max (s)40
Base Part NumberADXL335
Pin Count16
Output TypeAnalog Voltage
Supply Voltage-Max (Vsup)3.6V
Power Supplies3V
Product Attribute Attribute Value
Supply Voltage-Min (Vsup)1.8V
Operating Supply Current350μA
Nominal Supply Current350μA
-3db Bandwidth1.6 kHz
AxisX, Y, Z
Acceleration Range±3g
Sensitivity (mV/G)300
FeaturesAdjustable Bandwidth
Height1.5mm
Length4mm
Width4mm
REACH SVHCNo SVHC
Radiation HardeningNo
RoHS StatusROHS3 Compliant
Lead FreeContains Lead
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ADXL335 Features

  • 3-axis sensing

  • Small, low profile package

  • 4 mm × 4 mm × 1.45 mm LFCSP

  • Low power: 350 μA (typical)

  • Single-supply operation: 1.8 V to 3.6 V

  • 10,000 g shock survival

  • Excellent temperature stability

  • BW adjustment with a single capacitor per axis

  • RoHS/WEEE lead-free compliant

ADXL335 Functional Block Diagram

The user selects the bandwidth of the accelerometer using the CX, CY, and CZ capacitors at the XOUT, YOUT, and ZOUT pins. Bandwidths can be selected to suit the application, with a range of 0.5 Hz to 1600 Hz for the X and Y axes, and a range of 0.5 Hz to 550 Hz for the Z-axis. The functional block diagram is shown below.

ADXL335 Application

  • Cost-sensitive, low power, motion- and tilt-sensing

  • applications

  • Mobile devices

  • Gaming systems

  • Disk drive protection

  • Image stabilization

  • Sports and health devices

ADXL335 Dimensions

ADXL335 Manufacture

Analog Devices (NASDAQ: ADI) is a world leader in the design, manufacture, and marketing of a broad portfolio of high-performance analogue, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs) used in virtually all types of electronic equipment. Since our inception in 1965, we have focused on solving the engineering challenges associated with signal processing in electronic equipment. Used by over 100,000 customers worldwide, our signal processing products play a fundamental role in converting, conditioning, and processing real-world phenomena such as temperature, pressure, sound, light, speed, and motion into electrical signals to be used in a wide array of electronic devices.

Datasheet PDF

Download datasheets and manufacturer documentation for Analog Devices Inc. ADXL335BCPZ.

ADXL335BCPZ Documents

Download datasheets and manufacturer documentation for ADXL335BCPZ

Frequently Asked Questions

What is ADXL335?
The ADXL335 is a small, thin, low power, complete 3-axis accelerometer with signal conditioned voltage outputs. The product measures acceleration with a minimum full-scale range of ±3 g. ... The user selects the bandwidth of the accelerometer using the CX, CY, and CZ capacitors at the XOUT, YOUT, and ZOUT pins.
How do you test ADXL335?
Testing ADXL335 Z-axis Response Using Multimeter When they are standing still facing downward, the only acceleration the accelerometer senses is due to gravity (-1g) pulling down on it. This Cytron ADXL335 breakout board represent the -1g output as a voltage which is approximately 1.37V.
What is the difference between ADXL335 and ADXL345?
The ADXL335 is a triple axis MEMS accelerometer with a low power consumption of 150 μA in the measurement model! Grove – ADXL345 is with the extremely low power consumption, as low as 23 μA in measurement mode and 0.1 μA in standby mode.
FAQ
What is ADXL335?
The ADXL335 is a small, thin, low power, complete 3-axis accelerometer with signal conditioned voltage outputs. The product measures acceleration with a minimum full-scale range of ±3 g. ... The user selects the bandwidth of the accelerometer using the CX, CY, and CZ capacitors at the XOUT, YOUT, and ZOUT pins.
How do you test ADXL335?
Testing ADXL335 Z-axis Response Using Multimeter When they are standing still facing downward, the only acceleration the accelerometer senses is due to gravity (-1g) pulling down on it. This Cytron ADXL335 breakout board represent the -1g output as a voltage which is approximately 1.37V.
What is the difference between ADXL335 and ADXL345?
The ADXL335 is a triple axis MEMS accelerometer with a low power consumption of 150 μA in the measurement model! Grove – ADXL345 is with the extremely low power consumption, as low as 23 μA in measurement mode and 0.1 μA in standby mode.

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