User Manual for GeoSIG models including: AC-43, Accelerometer, AC-43 Accelerometer

User Manual

AC-43

Kelly Crutchlow GeoSIG Ltd

User Manual AC-43 - GeoSIG

3 mar 2023 — User Manual. AC-43. Author: Serge Rudaz. Checked: Talhan Biro. Approved: Johannes Grob. Distribution: ... Removed downhole option and instructions.

User Manual


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GS AC-43 UserManual
User Manual AC-43

Author: Checked: Approved: Distribution:

Serge Rudaz Talhan Biro Johannes Grob GeoSIG Ltd (1), Customer on request

GeoSIG Ltd, Wiesenstrasse 39, 8952 Schlieren, Switzerland Phone: + 41 44 810 2150, Fax: + 41 44 810 2350 info@geosig.com, www.geosig.com

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Document Revision

Version 1
2 3 4 5 6 7
8
9

Date 12.02.2007
25.02.2008 23.09.2013 06.06.2014 07.05.2019 24.02.2022 04.08.2022
21.02.2022
03.03.2022

Modification
Adapted to new sensor housing; File name and title change
Updated with DH version
Axis orientation
New logo
Mounting section updated
Housing drawing updated
Updated chapter 2, electrical connector Changed chapter order; updated doc revision table
Removed AC-4X references; Removed downhole option and instructions
Updated electrical connector details & photos

Prepared Checked Released

SER

TAB

JOG

SER JLT VAG VAG KEC ALM

TAB MAE
ALB ALB ALB

JOG JOG
KEC

KEC KEC

BES ALB

VAG VAG

Disclaimer GeoSIG Ltd reserves the right to change the information contained in this document without notice. While the information contained herein is assumed to be accurate, GeoSIG Ltd assumes no responsibility for any errors or omissions.
Copyright Notice No part of this document may be reproduced without the prior written consent of GeoSIG Ltd. Software described in this document is furnished under a license and may only be used or copied in accordance with the terms of such a license.
Trademark All brand names and production names mentioned are trademarks or registered trademarks of their respective holders.
All rights reserved
GeoSIG Ltd Switzerland
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Table of Contents
Warnings and Safety ........................................................................................................... 3 1. Basic Specifications......................................................................................................... 4 2. Electrical Connector ........................................................................................................ 4
2.1. Binder Serie 623 .....................................................................................................................................4 2.2. Binder Serie 423 .....................................................................................................................................5 2.3. Connector Pin Description ......................................................................................................................5
3. Mounting.......................................................................................................................... 6 4. Theory of Operation......................................................................................................... 7
4.1. Introduction..............................................................................................................................................7 4.2. Principle...................................................................................................................................................7
List of Figures
Figure 1, Binder Serie 623 Connector ............................................................................................................4 Figure 2, Binder Serie 423 Connector ............................................................................................................5 Figure 3, AC-43 housing ..................................................................................................................................6 Figure 4, Sensor housing dimensions ...........................................................................................................6 Figure 5, AC-43 Sensor block diagram ..........................................................................................................7

Warnings and Safety
a
The sensor housing provides no protection against explosive atmosphere. It must not be directly operated in area where explosive gases are present; contact GeoSIG for this kind of special application.
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1. Basic Specifications

Sensor Series Input range Output range Frequency range Protections Power supply Current drain

AC-43 Acceleration, ±0.625, ±1, ±2, ±3, ±4 or ±5 g 0 ± 10 Volt differential output From DC to 100 Hz All connectors pins are protected by TransZorb diodes and VDR 7 - 15 VDC Average 74.1 mA @ 15 VDC

2. Electrical Connector
All AC-43 accelerometers are supplied as standard with a 2 m connection cable. Based on the intended use, the 12-pin metallic-style connectors will be supplied in one of the following options: Binder Series 623 or Binder Serie 423.

2.1. Binder Serie 623
GeoSIG Binder Serie 623

P/N #J_CIR.012.002.F P/N 99 4606 00 12

Figure 1, Binder Serie 623 Connector
The cable gland nut is determined according to cable external diameter, and it must be ordered separately. The cable gland nut must also provide the cable shield connection to the connector case.

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2.2. Binder Serie 423
GeoSIG Binder Serie 423

P/N #J_CIR.012.010.M P/N 99 5629 00 12

Figure 2, Binder Serie 423 Connector
The cable gland nut is determined according to cable external diameter, and it must be ordered separately. The cable gland nut must also provide the cable shield connection to the connector case.

2.3. Connector Pin Description

The connector pin assignment and cable colour code can be observed in the table below:

Binder Connector

Serie 623

Serie 423

Pinout Pinout

1

A

2

B

3

C

4

D

5

E

6

F

7

G

8

H

9

J

10

K

11

L

12

M

SIGNAL
OUTPUT X (+) OUTPUT X (-) OUTPUT Y (+) OUTPUT Y (-) OUTPUT Z (+) OUTPUT Z (-) TEST INPUT
GND +12 VDC power
GROUND AUX
GROUND

Comment

Colour

0 V ± 5 V voltage output, 47  output impedance

White

0 V ± 5 V voltage output inverted, 47  output impedance Brown

0 V ± 5 V voltage output, 47  output impedance

Green

0 V ± 5 V voltage output inverted, 47  output impedance Yellow

0 V ± 5 V voltage output, 47  output impedance

Grey

0 V ± 5 V voltage output inverted, 47  output impedance Pink

Test input, output will result in a sensor step response

Blue

Connected to Recorder's GND

Red

Power input, +7 to +15 VDC range, 74.1 mA @ 15 VDC Black

Ground, not connected to mechanical ground

Violet

Auxiliary input (reserved)

Grey/Pink

Ground, not connected to mechanical ground

Red/Blue

Table 1. AC-43 Connector Pin Assignment and Cable Colour Code

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3. Mounting

Figure 3, AC-43 housing
Small size and single bolt attachment allow the AC-43 to be easily installed, saving installation time. Levelling is accomplished via three-point levelling screws.
a
Do not overtighten the three-point levelling mechanism. This may damage the sensor.

Figure 4, Sensor housing dimensions
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The accelerometers must be firmly mounted to a surface and levelled, as the application requires. Check to ensure that the accelerometer is aligned to produce the desired output signals. Acceleration in the direction indicated on the case will produce a positive output signal. The orientation definitions as shipped are: X = East, Y = North, and Z = Vertical (Up).
The accelerometer has single-bolt, 3-feet-levelling mechanism.
The surface should have a scribed north/south orientation line accurately surveyed from reliable markers. The X-axis of the sensor has to be pointed to East or to any other main direction of the structure to monitor. One M8 expanding nut rock anchor must be used for the sensor fixation.

4. Theory of Operation

4.1. Introduction
The AC-43 sensor package is a triaxial accelerometer designed for free field and industrial applications regarding STRONG-MOTION earthquake survey, monitoring and research. This sensor is well suited for applications where a high sensitivity is required.
The AC-43 sensor can be optionally installed into a rugged protective housing of stainless steel for optimal environmental resistance. Optionally, the protective housing could be executed with an IP68 grade in circumstances where it is possible that the housing might become submerged in the free field location.
The sensor could be installed on either floor / ceiling or on the wall with a modification of the axis configuration. With the help of the TEST LINE, the complete sensor can be very easily and fully tested. Full scale can be field selected by the user with jumpers.

4.2. Principle

The AC-43 accelerometer is based on the modern MEMS (Micro Electro-Mechanical Systems) technology, consisting of sensing cells assembled in a way that optimises their performances. This, combined with the state-of-the-art proprietary circuit design, yields this cost effective and reliable accelerometer.
MEMS cells include linear accelerometer sensing elements, which measure the capacitance variation in response to any movement or inclination, and a factory-trimmed interface chip that converts the capacitance variations into analog or digital signal proportional to the motion.
The DC response allows the sensor to be easily repaired, tilt tested or recalibrated. With the help of the TEST LINE, the AC-43 accelerometer can be completely tested, assuring proper operation.

S1 x OUTPUT STAGE

S2 x

Charge

S/

amplifier

S1 y

MUX

DE-MUX

S/

R

S2 y

S/

Vout X Vout Y Vout Z

S1 z

SELF

TRIMMING

VOLTAGE AND

CLOCK AND

TEST

CIRCUIT

CURRENT

PHASES

REFERENCES GENERATOR S2 z

Figure 5, AC-43 Sensor block diagram

The test signal will move the seismic mass. The movement of the mass generates a voltage across the position detector, which is detected by the differential charge amplifier and induces an output signal.
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References

Kelly Crutchlow Adobe PDF Library 22.3.98