Pillar design automatic sensor infrared tap with temperature control lever

 

  • Features
  • Technical Details
  • Dimension
  • Contents
  • Functions
  • Special Notes
  • Add-ons

 

Features

Pillar striaght-neck design sensor tap
Ceramic mixing valve built-in
AC+DC Power
Manual temperature control lever
Hygienic and upto 70% water conservation
Independent battery holder: 4XAA Alkaline batteries (*subject to availability)
Hands free and reliable infrared activation technology
Exquisite and stylish pillar design
Solid brass construction
2x flexible supply hoses

QUICK VISUAL DATA

AC+DC Power only Single supply feed Drilling a hole?  
This sensor tap can only be powered by both Batteries and Mains This sensor tap comes with double water supply feeds 35mm  

 

Gravity-fed water supply users:

You'll need at least 0.75 bar of equal pressure from both hot and cold supply in order for this tap to work properly. A pressure pump/booster can be used to increase the water pressure. In summary, the pressure of 'hot' and 'cold' supply feeds must be equal for the temperature control to work efficiently.

 


TECHNICAL DETAILS

Hottest temperature: 45°C
Coldest temperature: 25°C
Diameter of 'inlet' flexible hoses: G1/2”
Water pressure range: 0.7 (Min) - 8 Bar (Max)
Voltage: DC6V (or AC Transformer with 6v Output)
Power consumption: =0.3MW
Sensing distance: 10-31cm
Respond time: 1 Second
Electricity Consumption: 4xAA alkaline batteries (2 years lifespan depending on level of usage)
Silent Consumption: 0.003W
Environment Temperature: 1-45 C
Flow Rate: 4L/Per minute
Pipe Threading: British Standard Whitworth (BSW)


DIMENSION: 

ATT-0057 dimension

 



CONTENTS

1x Sensor Tap
1x Battery Box
1x Transformer
2x Flexible G1/2" *600mm Connection Hoses
Fittings and Screws


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GRAVITY-FED WATER SUPPLY USERS:

You'll need at least 0.75 bar of equal pressure from both hot and cold supply in order for this tap to work properly. A pressure pump/booster can be used to increase the water pressure. In summary, the pressure of 'hot' and 'cold' supply feeds must be equal for the temperature control to work efficiently.

 

 


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