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Triton EXE - Product Overview and Safety Warnings; Site and Water Pressure Requirements; Typical Domestic Installations

Triton EXE
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bath shower mixer
2
Replacement parts can be ordered from Triton Customer
Service. See ‘spare parts’ for details and part numbers.
INTRODUCTION
This book contains all the necessary tting and
operating instructions for your Triton mixer
shower. Please read them carefully and read
through the whole of this book before beginning
your installation.
The shower installation must be carried out by
a suitably competent person and in sequence of
this instruction book.
Care taken during the installation will give a long
and trouble free life from your mixer shower.
SITE REQUIREMENTS
The installation must be in accordance with
Water Regulations and Bylaws.
Water pressure requirements
Running water pressure:
0.1 bar min.
10 bar max.
Maximum static water pressure:
Gravity and mains - 10 bar
This mixer shower is designed for all pressures
found in the UK.
For effective operation of the internal seals, the
maximum static pressure must not be exceeded.
Water minimum ow rate
For best performance within the specied
running pressure range a minimum ow of
8 litres per minute should be available to both
inlets.
Water temperature requirements
Maximum hot water temperature: = 80°C
Recommended maximum: = 65°C
Minimum hot water temperature: = 52°C
Maximum cold water temperature: = 20°C
The mixer shower MUST NOT be subjected to
water temperatures above 80°C.
BS 6700 recommends that the temperature of
stored water should never exceed 65°C.
A stored water temperature of 60°C is considered
sufcient to meet all normal requirements and
will minimise the effects of scale in hard water
areas.
SAFETY WARNINGS
a. DO NOT choose a position where the shower
could become frozen.
b. DO NOT connect this mixer shower to any
form of tap or tting not recommended by
the manufacturer.
c. DO NOT allow the inlet pressure or ow
rates to operate outside the guidelines laid
out in ‘site requirements’.
IMPORTANT
This B.S.M is not thermostatic and will
not stop water owing if there is a loss
of either supply.

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