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WD18 8GA

Uponor S-Press PLUS tee reducer

- Made of tin-plated DR brass

Uponor S-Press PLUS tee reducer

Item details

Uponor S-Press PLUS tee reducer 16-20-16
Uponor S-Press PLUS tee reducer 20-16-16
Uponor S-Press PLUS tee reducer 20-16-20
Uponor S-Press PLUS tee reducer 20-20-16
1070570

Uponor S-Press PLUS tee reducer 20-25-16

Item available on request, minimum lead time 2 weeks
Uponor S-Press PLUS tee reducer 20-25-16
Uponor S-Press PLUS tee reducer 20-25-20
Uponor S-Press PLUS tee reducer 25-16-16
1070573

Uponor S-Press PLUS tee reducer 25-16-20

Item available on request, minimum lead time 2 weeks
Uponor S-Press PLUS tee reducer 25-16-20
Uponor S-Press PLUS tee reducer 25-16-25
Uponor S-Press PLUS tee reducer 25-20-16
Uponor S-Press PLUS tee reducer 25-20-20
Uponor S-Press PLUS tee reducer 25-20-25
Uponor S-Press PLUS tee reducer 25-25-16
Uponor S-Press PLUS tee reducer 25-32-25
Uponor S-Press PLUS tee reducer 32-16-32
Uponor S-Press PLUS tee reducer 32-20-32
Uponor S-Press PLUS tee reducer 32-25-25
Uponor S-Press PLUS tee reducer 32-25-32

Documents

Product Information
259 B1142159

PI MLC tap water heating UK 1142159

Installation Report
116 B1120119

Installation Report MLC leak test report TW water (1120119)

Installation Report
127 B1120120

Installation Report MLC flushing protocol TW water (1120120)

Approval Certificate
262 B1095152

Uponor CER S-Press PLUS SYS MECH WRAS 1903901 GB (1095152)

Approval Certificate
836 B1089107

UPONOR CER MLC SYS MECH Lloyds Register 17-20013-2 GB EN (1089107)

About

Specification

- Unique press indicator
- Fast 3-step installation (press without bevel)
- Innovative QR code for immediate digital access
- Colour code
- Fixed press sleeve with insprection window
- Precise jaw fixation
- Fast diameter recognition
- Accurate test safety function
- 100% backward compatible with existing Uponor components
- Flow rate optimized fitting body

Application

-Heating systems (high temperature radiators) - where the water temperature does not continuously exceed 80ºC, 10 bar (Conditions to application Class 5 - BS EN ISO 21003-1:2008). The maximum short-term malfunction temperature is 100ºC for an accumulative 100 hours over the working life of the system. (Heating systems must be installed with room and water temperature controls in accordance with the current Building Regulations Parts L1 (Energy – Dwellings) and L2 (Energy – Non Dwellings) for England and Wales, or an equivalent national standard for Scotland or Republic of Ireland).

-Cold water domestic services: 0°C to 20°C where the water temperature does not exceed 20ºC, 16bar.

-Hot water domestic services: 20°C to 70°C where the water temperature does not continuously exceed 70ºC, 10 bar (Conditions to application Class 2 - BS EN ISO 21003-1:2008). The maximum short-term malfunction temperature is 95ºC for an accumulative 100 hours over the working life of the system.

-Uponor multilayer pipe can be used for DHW recirculating systems, provided the operating temperatures and pressures do not exceed the maximum conditions detailed under 'Domestic Services'

-Chilled water: -10°C to 10°C,10 bar. If risk of damage from freezing, a suitable anti-freeze additive must be used. Any additive must be suitable for use with Polyethylene, PPSU, EPDM and CW625N brass
if not different mentioned:

- Male and female threads acc.to EN 10226-1.

Certification

-WRAS : 1903901 - Uponor S-Press PLUS, S-Press PLUS, PPSU, MLC and SAC 16-32mm
-2101339 : Manifolds and adapters
-KIWA – UK water Regulation 4
-Manufacturing is in accordance with the international quality standard ISO 9001 and environmental standard ISO 14001.

Product drawings

1070566_ZMD
1070566
214 B
1070567_ZMD
1070567
214 B
1070568_ZMD
1070568
214 B
1070569_ZMD
1070569
214 B
1070570_ZMD
1070570
214 B
1070571_ZMD
1070571
214 B
1070572_ZMD
1070572
214 B
1070573_ZMD
1070573
214 B
1070574_ZMD
1070574
214 B
1070575_ZMD
1070575
214 B
1070576_ZMD
1070576
214 B
1070577_ZMD
1070577
214 B
1070578_ZMD
1070578
214 B
1070579_ZMD
1070579
214 B
1070580_ZMD
1070580
214 B
1070581_ZMD
1070581
214 B
1070582_ZMD
1070582
214 B
1070583_ZMD
1070583
214 B
1070566_LAB
1070566
90 B
1070567_LAB
1070567
90 B
1070568_LAB
1070568
90 B
1070569_LAB
1070569
90 B
1070570_LAB
1070570
90 B
1070571_LAB
1070571
90 B
1070572_LAB
1070572
90 B
1070573_LAB
1070573
90 B
1070574_LAB
1070574
90 B
1070575_LAB
1070575
90 B
1070576_LAB
1070576
90 B
1070577_LAB
1070577
90 B
1070578_LAB
1070578
90 B
1070579_LAB
1070579
90 B
1070580_LAB
1070580
90 B
1070581_LAB
1070581
90 B
1070582_LAB
1070582
90 B
1070583_LAB
1070583
90 B
1070566_REN
1070566
160 B
1070566_REN
1070566
47 B
1070567_REN
1070567
46 B
1070568_REN
1070568
48 B
1070569_REN
1070569
46 B
1070570_REN
1070570
47 B
1070571_REN
1070571
50 B
1070572_REN
1070572
46 B
1070573_REN
1070573
46 B
1070574_REN
1070574
46 B
1070575_REN
1070575
47 B
1070576_REN
1070576
47 B
1070577_REN
1070577
46 B
1070578_REN
1070578
50 B
1070579_REN
1070579
47 B
1070580_REN
1070580
47 B
1070581_REN
1070581
47 B
1070582_REN
1070582
49 B
1070583_REN
1070583
49 B