DynaLabs DYN-C-3000-DE Triaxial Capacitive Accelerometers User Manual

June 3, 2024
Dynalabs

DynaLabs DYN-C-3000-DE Triaxial Capacitive Accelerometers

DynaLabs-DYN-C-3000-DE-Triaxial-Capacitive-Accelerometers-
product

Introduction

Capacitive accelerometers are based on proven micro-electro-mechanical systems (MEMS) technology. These capacitive accelerometers are reliable and long-term stable. These sensors are Differential Ended type DC response sensors. The advantage of these sensors is their outstanding temperature stability, their lightweight and they are low-cost sensors. These sensors have reliable aluminum housing with an IP68 protection class. These sensors feature standard reliable aluminum housing with protection class IP68. Steel housing is also possible.
Dynalabs 3000DE series accelerometers provide an outstanding noise performance from 20 to 260 μg/√Hz. These accelerometers provide a wide frequency range (±3dB) from 1,500 Hz to 3,000 Hz.
DYN-C-3000-DE sensors offer the following options;

  • Custom Cable Length (5m standard cable)
  • Custom Housing Material
  • Custom Connector
  • Base plate

General Information

Unpacking and Inspection
Dynalabs products provide adequate protection for undamaged products to be transported. Document the damages that occur indirectly during the transport and contact the customer representative.
System Components
The DYN-C-3000-DE has the following components:

  • MEMS Sensor
  • Calibration Certificate
  • Product Manual

Specifications

Table 1: Specifications datasheet

Full scale acceceleration| (g)| 3002DE

±2

| 3004DE

±4

| 3008DE

±8

| 3010DE

±10

| 3020DE

±20

| 3040DE

±40

| 3050DE

±50

| 3100DE

±100

| 3200DE

±200

| 3500DE

±500

---|---|---|---|---|---|---|---|---|---|---|---
Frequency range (±3dB)| (Hz)| 1,500| 1,500| 1,500| 1,500| 1,500| 1,500| 3,000| 3,000| 3,000| 3,000
Non-linearity (full scale)| (%)| 0.1| 0.1| 0.1| 0.1| 0.1| 0.1| 0.1| 0.1| 0.1| 0.1
__

Noise (in band)

| (μg/

√Hz)

| 25| 25| 25| 80| 75| 110| 35| 50| 80| 170
Scale factor (nominal)| (mV/g)| 400| 200| 100| 80| 40| 20| 40| 20| 10| 4
Shock survivability| (g)| 5,000| 5,000| 5,000| 5,000| 5,000| 5,000| 5,000| 6,000| 6,000| 6,000

Environmental
Table 2 Environmental specifications datasheet

Protection Level IP 68
Operating Voltage 6 V –  20 V
Operating Temperature -40 °C to +100 °C
Operating Current Consumption mA 21 mA
Isolation Case isolated

Physical
Table 3 Physical specifications datasheet

Sensing Element MEMS Capacitive
Housing Material Aluminum or Steel
Connector (Optional) D-Sub 9 or 15 pin, Lemo, Binder
Mounting Adhesive or screw mount
Base plate (Optional) Aluminum or Steel

__

Weight (without cable)

| 19g (aluminum)

44 g (steel)

Outline Drawing
The dimensional properties of DYN-C-3000-DE sensors are given below .DynaLabs-DYN-C-3000-DE-Triaxial-Capacitive-Accelerometers-fig-2DynaLabs-
DYN-C-3000-DE-Triaxial-Capacitive-Accelerometers-fig-2

Operation and Installation

General
The general sensor connector configuration is given below; Cable Code/Pin Configuration:

  • Red: V + Power supply voltage +6 to +20 VDC
  • Black: Ground Power GND
  • X-Axis: Yellow: Signal(+) Positive, analog output voltage signal for differential mode.
  • Purple: Signal(-) Negative, analog output voltage signal for differential mode.
  • Y-Axis: Blue: Signal(+) Positive, analog output voltage signal for differential mode.
  • Green: Signal(-) Negative, analog output voltage signal for differential mode.
  • Z- Axis: White: Signal(+) Positive, analog output voltage signal for differential mode.
  • Orange: Signal(-) Negative, analog output voltage signal for differential mode.

WARNING

  • Never connect the power supply and/or the power ground to yellow, purple, blue, green, white, and/or orange cables.
  • Never connect the power supply to the power ground. Always use a clean power source and check the voltage range.

Sensor Static Calibration Verification

Using gravity, voltage values are measured in the + and – directions, providing a value of 1 g. The measurement should be made as follows; When the acceleration value of 3000DE series sensors is entered into the data acquisition system, the sensor shows +1 g with the effect of gravity, which is in the direction of the axis to be calibrated. When the sensor is positioned in the opposite direction to the axis to be calibrated, the arrow shows -1g as shown below under the effect of gravity.
Using gravity, the voltage values that provide 1 g in the + and – directions are measured and compared with the catalog value. The calibration value should be close to the catalog value with a 10% tolerance. Sensor catalog sensitivity values are given in Table 1.

This declaration of conformity is issued under the sole responsibility of the manufacturer. The product(s) are developed, produced and tested according to the following EC- directives:

  • 2014/35/EU – Low Voltage Directive (LVD)
  • 2006/42/EU – Machinery Safety Directive
  • 2015/863/EU – RoHS Directive.

Applied standards:

  • EN 61010-1:2010
  • EN ISO 12100:2010
  • MIL-STD-810-H-2019 (Test Methods: 501.7 – High Temperature, 502.7 – Low

Temperature, 514.8 – Vibration, 516.8 – Shock)
DYNALABS MÜHENDİSLİK SANAYİ TİCARET LİMİTED ŞİRKETİ declares that the above- mentioned products meet all the requirements of the above-mentioned standards and regulations.

All rights reserved. Reproduction or issue to third parties in any form whatsoever is not permitted without written authority from the proprietors.

Product Support

If at any time you have questions or problems with the DYN-C-3000-DE sensors, please contact a Dynalabs engineer at:

Warranty
Our products are warranted against defective materials and workmanship for one year. Defects arising from user errors are not covered by the warranty.
Copyright
All copyrights of this manual belonging to Dynalabs products are reserved. It cannot be reproduced without written consent.
Disclaimer
Dynalabs Ltd. provides this publication “as is” without warranty of any kind, express or implied, including but not limited to, the implied warranties of merchantability or fitness for a particular purpose. This document is subject to change without notice, and should not be construed as a commitment or representation by Dynalabs Ltd.
This publication may contain inaccuracies or typographical errors. Dynalabs Ltd. will periodically update the material for inclusion in new editions. Changes and improvements to the product described in this manual may be made at any time.

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