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B – Options
DPN 402196 Issue 4.1
© Teledyne TSS
B- 11
B.1.7 Power Supply Requirement
CAUTION
You might cause permanent damage to the sub-sea installations of the 440 or the
350 System if you operate them from an incorrect electrical supply.
The standard sub-sea components of both Systems operate from a nominal 110V
AC electrical supply. Optionally, both Systems are available for operation from a
nominal 240V AC electrical supply.
When you interconnect the 440 and the 350 Systems within a Dualtrack
installation,
you must operate both Systems from the same electrical supply
.
Specifications for the Dualtrack System are as listed in Section 8.1 of the relevant Manual for the 440
and 350 Systems.
Note however that the sub-sea components of the Dualtrack System must operate from the same
nominal supply voltage (either 110V or 240V AC as appropriate).
The maximum current consumption for the Dualtrack System is 3.1A at 110V AC nominal electrical
supply or 1.8A at 240V AC nominal electrical supply.
B.2 Training
The Teledyne TSS 440 Pipe and Cable Survey System is a precision ‘front line’ survey tool. To exploit
the full potential of the System, all personnel involved with a survey that uses the 440 System – from
the initial planning stages to final data presentation – should possess a sound understanding of the
performance of the System and its application.
Teledyne TSS has developed two levels of training course to provide for the needs of those who will be
involved with a survey that uses the 440 System. For effective learning, the maximum number of
participants in each course is limited.
Participants who successfully complete the training course, which includes a written test, receive a
numbered Training Certificate
❐
System overview
❐
Principles of operation
❐
Initial installation
❐
Software overview and interfacing with other equipment
❐
Operational considerations and limitations
❐
Practical demonstration
❐
Use of the System as part of a Dualtrack installation
Summary of Contents for 440
Page 12: ...List of Figures x Teledyne TSS DPN 402196 Issue 4 1 ...
Page 18: ...Glossary xvi Teledyne TSS DPN 402196 Issue 4 1 ...
Page 24: ...1 Introduction 1 6 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 32: ...2 System Overview 2 8 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 66: ...4 Electrical Installation 4 20 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 88: ...5 Operating Software 5 22 Teledyne TSS DPN 402196 Issue 4 1 Figure 5 10 Altimeter Test ...
Page 144: ...6 Operating Procedure 6 40 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 154: ...7 Operational Considerations 7 10 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 164: ...8 System Specifications 8 10 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 203: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 17 Figure 10 15 SDC10 Dimensions ...
Page 230: ...A Operating Theory A 12 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 242: ...B Options B 12 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 244: ...C Altimeter C 2 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 246: ...D Reference D 2 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 248: ...D Reference D 4 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 250: ...D Reference D 6 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 252: ...D Reference D 8 Teledyne TSS DPN 402196 Issue 4 1 ...
Page 254: ...D Reference D 10 Teledyne TSS DPN 402196 Issue 4 1 ...