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Geometrics MicroEel Operation Manual

Made by: Geometrics
Type: Operation Manual
Category: Analytical Instruments
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MicroEel 

Solid Analog Streamer 

P/N 60101-13 Rev. C 

May 6, 2012 

 
 
 
 

Operation Manual 

 
 
 
 
 

GEOMETRICS, INC. 

2190 Fortune Drive 

San Jose, CA 95131 USA 

Tel: (408) 954-0522 

Fax: (408) 954-0902 

sales@geometrics.com

  

support@geometrics.com

www.geometrics.com

 

 
 
 
 
 

COPYRIGHT © 2011, 2012 

 

 


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Table of Contents 

 

1 – INTRODUCTION

....................................................................................................... 4

 

2 – SYSTEM COMPONENTS

........................................................................................ 5

 

2.1 C

ABLE

.................................................................................................................. 5 

2.1.1

 

Hydrophones ............................................................................................... 7

 

2.1.2

 

Hydrophone Preamplifiers.......................................................................... 7

 

2.1.3

 

Deck and Tow Cable Connector Terminations........................................... 7

 

2.1.4

 

Cable Crate................................................................................................. 9

 

2.2 P

OWER 

S

UPPLY AND 

R

EQUIREMENTS

................................................................ 10 

2.2.1

 

DHA-7/MicroEel Battery Pack ................................................................. 10

 

2.2.2

 

Power Consumption.................................................................................. 12

 

2.2.3

 

AC Battery Charger .................................................................................. 12

 

3 – SYSTEM SET-UP

.................................................................................................... 13

 

3.1 I

NTERCONNECTIONS

........................................................................................... 13 

3.2

 

 

D

EPLOYMENT

.................................................................................................... 13 

3.3

 

 

B

ATTERY 

C

HARGING

......................................................................................... 14 

4 – APPENDIX

............................................................................................................... 16

 

4.1 C

ONNECTOR 

W

IRING

......................................................................................... 16 

4.2 C

ALIBRATION

..................................................................................................... 16 

4.3 S

PECIFICATIONS

................................................................................................. 17 

4.4 W

ARRANTY AND 

S

ERVICE

................................................................................. 18 

 

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List of Figures 

 
Figure 1.  MicroEel active section with solid flotation (green) and tow cable (black)....... 4 
Figure 2.  MicroEel solid analog streamer block diagram.................................................. 6 
Figure 3.  Topside deck cable connector terminations (NK-27 termination not shown).... 8 
Figure 4.  Deck cable 55-socket connector termination. .................................................... 8 
Figure 5.  Tow cable 55-pin connector termination shown with Kellems grip. ................. 9 
Figure 6.  Crate for transport, storage, and deployment. .................................................. 10 
Figure 7.  DHA-7/MicroEel Battery Pack. ....................................................................... 11 
Figure 8.  Detail of DHA-7/MicroEel Battery Pack. ........................................................ 11 
Figure 9.  Sheet lead, tin snips, and Bulldog tape............................................................. 14 
Figure 10.  DHA-7/MicroEel-D Battery Pack wiring....................................................... 16 
 
 

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1 – Introduction 

 
The MicroEel Solid Analog Streamer is designed for high-resolution marine seismic 
imaging.  It is ideal for shallow oil and gas investigations, stratigraphic and structural 
mapping, and teaching and research.   
 
The MicroEel features solid-type construction specifically designed to withstand the 
harsh conditions of commercial marine surveys.  The active section is built using 
Geometrics continuous-flotation molding method (Figure 1).   
 

 

Figure 1.  MicroEel active section with solid flotation (green) and tow cable (black).  

 
In addition, the MicroEel uses unique proprietary polymer hydrophones, which unlike 
ceramic hydrophones are non-shattering.  Polymer hydrophones provide superior 
durability and performance under the rigors of marine applications with a stable signal 
response up to 10 kHz.   
 
Depending on your location, the MicroEel may require a US Department of Commerce 
license for export. 
 
This manual provides operating instructions, including description of the MicroEel 
system components, setup, calibration, and warranty. 

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2 – System Components 

 
The standard MicroEel Solid Analog Streamer system includes the following items: 
 

ƒ

 

Active section cable with tow cable, tail and eye bolt, and deck cable, coiled in a 
plastic crate 

ƒ

 

DHA-7/MicroEel Battery Pack 

ƒ

 

Universal AC battery charger for the DHA-7/MicroEel Battery Pack 

ƒ

 

CD with support documents (*.pdf) including the operations manual, connector 
wiring tables, and hydrophone calibration plots 

 

2.1 Cable 

 
The active section consists of a series of hydrophone groups, with the number of groups 
equal to the number of channels, either 12 or 24 as a standard; other channel counts are 
available through custom order.  The available group intervals are a minimum of 1 m and 
a maximum of 6.25 m in length.  For group intervals between 3.125 and 6.25 m, there are 
three depth-limited hydrophones spaced 0.11 m apart (0.22 m aperture) with the signal 
summed electrically and connected to a preamplifier.  For hydrophone groups less than 
3.125 m, there is one hydrophone per group connected to a preamplifier.  Other 
hydrophone counts per group are available through custom order.  All of the components 
are in-line molded to a multi-conductor cable with a polyurethane jacket and Kevlar 
center stress core; this is further encased in Geometrics’ proprietary solid flotation 
material. 
 
The tow, active section, and tail cables are all one integrated piece, with no 
interconnections in between.  The tow cable connects to a topside deck cable.  The deck 
and tow cables are terminated with mating waterproof connectors.  The opposite end of 
the deck cable is finished with a Y-type termination to connect to the DHA-7/MicroEel 
Battery Pack and seismograph.  The total maximum length of the streamer from head of 
the deck cable to tail of the active section is 400 m. 
 

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Figure 2.  MicroEel solid analog streamer block diagram. 

 
 

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2.1.1 Hydrophones 

 
The streamer uses Geometrics’ unique proprietary polymer hydrophones.  The 
hydrophone incorporates design features offering superior performance compared to 
previous polymer hydrophone designs as well as the traditional PZT ceramic-type 
hydrophones.

  

Specifically, it is non-shattering and incorporates an isolating platform, 

making it immune to cable-borne energy.  In addition, other design aspects allow its 
response to acoustic pressure alone to dominate the output.   
 
The hydrophones are depth-limited and become inoperable at depths greater than 30 ±5 
m.  The inoperable state is temporary and functionality fully recovers when the depth is 
reduced.  This limitation allows the MicroEel to be exported under less strict US 
Department of Commerce laws.  
 

2.1.2 Hydrophone 

Preamplifiers 

 
The true differential preamplifier used with the hydrophone is of a single-pole low-cut 
and a single pole high-cut design.  The low-cut frequency is determined by the ½

π

 RC 

time constant which is related to the element capacitance and the input resistance of the 
preamplifier front-end.  The preamplifier features exceptionally low noise.  Nominal 
element capacitance is 7.2 nF at 22 degrees C.  The design also provides full voltage 
regulation at each preamplifier.  The voltage regulator isolates each channel from the 
other which is desired when all preamplifiers share a common power bus. 
 

2.1.3  Deck and Tow Cable Connector Terminations 

 
The standard topside deck cable termination is a Y-type with one 61-socket connector 
(PT06J-24-61S) for analog output, and one 4-pin connector [PT06A-8-4P(SR)] for power 
connection to the DHA-7/MicroEel Battery Pack (Figure 3).  As an option, the analog 
output termination may be ordered with a 27-socket connector(s) (NK-27-21C) instead of 
the 61-socket connector.  Adaptor cables are also available to connect to seismographs 
with other analog input connector types. 
 

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4-pin 

connector 

61-socket 
connector 

Figure 3.  Topside deck cable connector terminations (NK-27 termination not shown). 

 
The standard deck cable termination for analog input from the tow cable is one 55-socket 
waterproof connector (Glenair 220-06E16-55SN) (Figure 4).   
 

 

Figure 4.  Deck cable 55-socket connector termination. 

 

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The standard tow cable termination for analog output to the deck cable is one 55-pin 
waterproof connector (Glenair 220-01E16-55PN) (Figure 5).   
 

 

Figure 5.  Tow cable 55-pin connector termination shown with Kellems grip. 

 
The connector pair between the deck and tow cables feature red marks on their collars to 
indicate when pin and socket are aligned.   
 

2.1.4 Cable 

Crate 

 
The streamer is shipped coiled in a crate for storage, transport, and deployment (Figure 
6).  The crate is fully composed of inorganic plastic to comply with international shipping 
regulations.   

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Figure 6.  Crate for transport, storage, and deployment. 

 

2.2 

Power Supply and Requirements 

 
The streamer is powered by the DHA-7/MicroEel Battery Pack. The battery pack is 
rechargeable using the included AC battery charger. 
 

2.2.1  DHA-7/MicroEel Battery Pack 

 
The DHA-7/MicroEel Battery Pack (Figure 7) contains two 12V DC deep discharge (5 
Amp-hour) sealed lead-acid batteries used in a ±12V DC differential power 
configuration.  The deck cable power lead is connected to the battery pack via the 4-
socket connector located on the right-hand side of the battery pack. This connector is also 
used to connect the AC battery charger.  Next to the connector is a grounding post (¼”-20 
bolt and nut).  
 

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Figure 7.  DHA-7/MicroEel Battery Pack. 

 
The battery pack front panel includes a Power ON/OFF switch, a VOLTAGE (Volts) 
meter, a CURRENT (Amps) meter with the associated +/- polarity switches for each 
respective meter (Figure 8).  The metering provides a method of measuring the individual 
battery voltage and current being supplied to the streamer. 
 

 

Figure 8.  Detail of DHA-7/MicroEel Battery Pack. 

 
The MicroEel is designed to be powered by the DHA-7/MicroEel Battery Pack; use of 
another power source is not advised and could damage the streamer and void the 
warranty.  In addition, under no circumstances should power to the streamer be shared 
with another instrument. 
 

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2.2.2 Power 

Consumption 

 
Each hydrophone preamplifier draws approximately ±10.8 mA per channel.  Based on 
this draw, a 12-channel streamer with 6.25 m group interval has a total current of 
approximately 130 mA, and a 24-channel streamer with 6.25 m group interval has a total 
current of approximately 260 mA.  The battery pack, with two 5 Amp-hour batteries, 
should have sufficient capacity to power the streamer for the desired length of time.  If 
the batteries are fully charged, a 24-channel streamer can be powered continuously for 
approximately 19 hours (5 Amp-hours divided by 260 mA).   
 
The actual operating time will vary depending on the state, temperature, and age of the 
batteries.  The ideal battery operation temperature is between 41 to 77 degrees F (5 to 25 
degrees C).  Long-term exposure to temperatures above 106 degrees F (41 degrees C) can 
shorten the life of the batteries.  As temperature decreases, the available battery capacity 
and performance are reduced; however, this is not a permanent condition and capacity 
will be recovered as temperature rises. 
 

2.2.3 AC 

Battery 

Charger 

 
The AC battery charger is suitable for use anywhere in the world with a universal input 
from 90V AC to 264V AC.  The output is 1.5 Amps constant current at 24V DC.  
Depending on the recharging mode of the charger and the state of the batteries, output 
levels will vary.     

 
 

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3 – System Set-up 

3.1 Interconnections 

 
The procedure for setting up the MicroEel, DHA-7/MicroEel Battery Pack, and 
seismograph interconnections is as follows.  
 

1)

 

With the battery pack power switch in the OFF position, connect the deck cable to 
the tow cable and the 4-pin power connector on the deck cable to the 4-socket 
power connector on the battery pack. 

 
2)

 

Move the battery pack power switch to the ON position.  The CURRENT and 
VOLTAGE meters will turn on and indicate the status of the batteries.   

 

Toggle the +/- switch next to the CURRENT meter to measure the battery draw 
for each polarity.  Each current measurement should read approximately 130 mA 
for a 12-channel streamer and 260 mA for a 24-channel streamer.   

 

Next, toggle the +/- switch next to the VOLTAGE meter to measure the battery 
potential for each polarity.  The voltage should read from 11.8V DC to 13.4V DC 
for each battery.

  

The streamer will operate with a minimum voltage of 

approximately 10.8V DC depending in the length of the cable lead.  Recharge the 
battery pack (see Section 3.3) immediately when the minimum permissible 
voltage is reached. 
 

3)

 

Connect the analog output connector on the deck cable to the seismograph and 
check for incoming signal.  It is also recommended that the seismograph gain be 
set to the lowest possible setting. 

 

For ideal testing conditions allowing optimal hydrophone response, it is 
recommended that the streamer be in water with no direct contact with any solid 
surface, such as the ground, other parts of the cable, etc.   

 

3.2  

Deployment 

 
Most MicroEel streamers are easily deployed by hand or a small winch may be desired.  
Avoid rubbing the tow cable jacket and active section flotation material on sharp or rough 
edges. 
 
The MicroEel is designed to be neutrally buoyant in fresh water.  Depending on the water 
salinity, weight may need to be added to the streamer.  This is easily done with sheet lead 
(Ames 4#, 4 by 36 by 1/16-inches thick, or similar) and brown friction seawater 
(Bulldog) tape (2-inches thick, or similar) (Figure 9).  If it is determined that the streamer 
is too buoyant, at a minimum, weight should be added at the head, middle, and tail of the 
active section.  Simply use tin snips to cut sections of lead sheet to wrap around the 

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streamer; secure by wrapping with Bulldog tape.   
 
 

 

 

 

Figure 9.  Sheet lead, tin snips, and Bulldog tape. 

 

3.3  

Battery Charging 

 
A new DHA-7/MicroEel Battery Pack should be charged for a minimum of 20 hours 
prior to use.  In addition, the temperature when the charging occurs should be between 41 
to 77 degrees F (5 to 25 degrees C).  If charging takes place above 77 degrees F (25 
degrees C), the time required for a full charge will increase and the potential recharge 
cycles will be reduced.  
 
The procedure for charging the battery pack is as follows. 
 

1)

 

Plug the battery charger into an AC outlet and connect the 4-pin connector on the 
charger cable to the 4-socket connector on the battery pack.  Open the battery 
pack enclosure vent located between the case latches to allow gas venting during 
the charge cycle.   

 

2)

 

Switch the battery pack power switch to the ON position (the power switch must 
be ON to charge the internal batteries from the external charger).  The VOLTAGE 
and CURRENT meters will turn on and indicate the status of the batteries.   

 

3)

 

The charger changes the recharging mode based on the state of the batteries, as 
well, the values of the VOLTAGE and CURRENT meters will vary depending on 
the cycle mode of the charger.  There is an LED on the charger to indicate 
charging status.  

 

A lit LED indicates that the charger has power and is properly functioning. 
 
An orange LED indicates that the charger is in charging mode with a constant 
current of approximately 1.5 Amps.   
 
A flashing LED indicates that the charger is in deep-discharge charging pulse 
mode and charging starts at 0.5V DC, giving pulse currents up to 5V DC.  This 
has the effect of removing loose sulphation formed during the deep-discharge 

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state of the batteries.  
 
A green LED indicates that the charger is in standby mode and the current slowly 
reduces to zero.   

 
Recharge the battery pack after every 6 to 8 hours of use.  It will not be harmed if left on 
a continuous charge past the normal recharge time; however, continuous charging for 
extended periods of time will reduce the life of the batteries.  Therefore, it is 
recommended that a continuous charge be limited to no more than 1 week.   
 
The battery pack will lose capacity without use.  A battery pack in storage must be 
recharged at least every 6 months or sulphation will reduce the storage capacity.  
Depending on the charging, depth of discharge, and use conditions, the expected number 
of recharge cycles is usually between 500 and 1000. 

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4 – Appendix 

4.1 Connector 

Wiring 

 
Wiring tables for the deck and tow cables are included on the serialized CD included with 
each shipment.  Channel 1 is always wired as the first hydrophone/hydrophone group in 
the active section.   
 
Figure 10 shows the battery pack-to-streamer wiring. 

 

Figure 10.  DHA-7/MicroEel-D Battery Pack wiring. 

 

4.2 Calibration 

 
All hydrophone channels of any given streamer have been low-frequency calibrated over 
a band from 0 to 200 Hz as a quality control measurement.  The performance band 
defined by the low-cut of the polymer film capacitance and input resistance of 10 Hz, and 
a high-cut of 10 kHz has been demonstrated to be “predictably flat” over a entire band.  
Significant testing has demonstrated that the low frequency calibration of the hydrophone 
is 99.99% representative of the broadband response up to 10 kHz.  This low frequency 
calibration is performed by the substitution method where a known calibrated reference is 
compared with the unknown hydrophone channel under calibration.  The calibrated 
reference and the unknown are placed in a sealed chamber into which white noise is 
injected.  A dual channel FFT analyzer is used to compare the response of the two and the 
resulting transfer function indicates the response in dB of the unknown in terms of 
sensitivity relative to 1V per µPa and phase.  
 
All hydrophone channels in the streamer are guaranteed to be within a ±1 dB relative 
span.  The calibration plots for each hydrophone are provided on the serialized CD 
included with each shipment. 

 

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4.3 Specifications 

Hydrophone 

  

  

  

Sensor Type 

Proprietary Polymer 

  

Frequency Response 

10 Hz to 10,000 Hz ±1.0 dB 

  

Capacitance 

7.2 nF per element at 22° C 

  

Sensitivity (Nominal) 

-196 dB re 1 Volt per 1 µPa 

  

Sensitivity to Acceleration 

< -70 dB re 1 Volt per g 

  

Operating Depth (Maximum) 30 ±5 m 

Preamplifier 

  

  

  

Type 

Ultra-low noise differential 

  

Gain 

6 dB 

 

Low Corner Frequency 

-3 dB at 10Hz 

  

Current 

11mA per channel 

  

Power 

±12 V DC DHA-7/MicroEel Battery Pack (topside) 

Active Section 

  

  

  

Channels 

12 or 24; other counts available* 

  

Hydrophones per Group 

1 or 3; other counts available* 

  

Group Aperture 

0 or 0.22 m; up to 1 m maximum* 

  

Group Interval 

3.125 m or 6.25 m; other intervals available to 1 m minimum* 

  

Flotation Material 

Polyurethane-based 

  

Outside Diameter 

32 mm 

  

Weight (in air) 

0.79 kg/m 

  

Bend Radius 

0.46 m 

  

Strength Member 

Kevlar center stress core 

  

Working Load 

182 kg 

  

Breaking Strength 

909 kg 

Deck and Tow Cables 

  

  

  

Type 

Multi-conductor with polyurethane jacket 

  

Length (Maximum Total) 

400 m (including active section) 

  

Termination 

Deck: Y-type with one 61-socket connector (or 27-socket connector),  
one 4 pin connector (topside); one 55-socket waterproof connector 
Tow: one 55-pin waterproof connector 

  

Outside Diameter 

13.5 mm 

  

Weight 

0.15 kg/m 

  

Bend Radius 

0.46 m 

  

Strength Member 

Kevlar center stress core 

  

Working Load 

182 kg 

  

Breaking Strength 

909 kg 

Temperature 

  

  

  

Operating Range 

-10°C to +60°C 

  

Storage Range 

-40°C to +60°C 

 
*Please contact the factory to discuss your requirements. 

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4.4 

Warranty and Service 

 
Geometrics warrants the MicroEel system for 6 months. Warranties commence on the 
date of shipment. If the equipment fails during the applicable warranty period, 
Geometrics will repair or replace the defective item at its factory in San Jose, California 
at no charge to the customer for parts and labor. The cost to ship the equipment to 
Geometrics' factory and back to the customer's site is for the customer's account.  Repairs 
might be done at a local service center, if available, nearest the customer’s location.  
Geometrics must be notified within 7 days of system failure for any warranty claim.  
Geometrics must establish to its satisfaction that failures have not been the result of abuse 
or improper deployment of the system. Warranties are void for damage caused by 
incorrectly applying power, including over-voltage and reverse voltage. 
 
The limited warranty stated herein is in lieu of all other warranties expressed or implied 
(including the implied warranties of merchantability and fitness for a particular purpose) 
and of all other obligations or liability on the part of Geometrics, and Geometrics neither 
assumes nor authorizes any person to assume for it any other liability. Geometrics shall 
not be liable for special, incidental, or consequential damages of any nature (including, 
but not limited to lost revenue or profits) with respect to any merchandise or services 
sold, delivered or rendered hereunder. 
 
Should the instrument or any part thereof need to be returned to the factory for servicing, 
please contact the Customer Service Department via email at 

support@geometrics.com

 or 

telephone at 408-954-0522. Be ready to provide the serial number, which may be found 
on the tow cable connector collar, and an explanation of the problem. You will be issued 
an RMA number and instructions for shipping the instrument. 

 

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