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Rainwater Factors | Adam Dean | 58 Leighton Avenue | Swindon | Wiltshire | UK | SN3 2HT | [email protected] | www.rainwaterfactors.com | Ph: 07904 847 477 System Control RWF X 100 Overview Product description The System Control RWF X 100 consists of a metal console inside the building and three stainless steel submersible pumps in the rainwater tank. The console inside the building has a very compact design. On the metal console are the pump controls and a solenoid valve with funnel for topping up with mains water. The system controls switch on the submersible pumps as soon as water begins to be consumed. The pumps will supply the system even in situations where the length and height condi- tions are unfavourable. A float switch constantly monitors the level of the rainwater tank so that it automatically switches to supply with mains water when the rainwater level is low. The intelligent link between the system controls and the sole- noid valve is fully automated and topping up with mains water only occurs when needed! © SpinFlow 28.10.2014 Multistage stainless steel submersible pumps with 1 ¼“ intake and pressure adapters and 15m rubber hose 1m floating extractor Stainless steel manifold to connect the three submersi- ble pumps Base console made of metal with cover Electrically operated mains water top-up with solenoid valve and funnel Specially developed system controls Electrical connections with pluggable connections System Control RWF X 100 – controls inside the building Brief technical description Very quiet Very reliable operation Easy to install Specially developed automatic controls Need-based topping up of mains water in compliance with EN 1717 Commercial process water consumption Garden irrigation Up to a volume of 21 m³/h Product benefits Area of use
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System Control RWF X 100 - Rainwater · PDF fileSystem Control RWF X 100 ... © SpinFlow 28.10.2014 ... Max. pressure in bar 4.2 8.6 5.1 6.4 7.7 Current consumption in A 3 x 4.4

Mar 14, 2018

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Page 1: System Control RWF X 100 - Rainwater  · PDF fileSystem Control RWF X 100 ... © SpinFlow 28.10.2014 ... Max. pressure in bar 4.2 8.6 5.1 6.4 7.7 Current consumption in A 3 x 4.4

Rainwater Factors | Adam Dean | 58 Leighton Avenue | Swindon | Wiltshire | UK | SN3 2HT | salesrainwaterfactorscom | wwwrainwaterfactorscom | Ph 07904 847 477

System Control RWF X 100

Overv iew

Product description

The System Control RWF X 100 consists of a metal console

inside the building and three stainless steel submersible pumps

in the rainwater tank The console inside the building has a very

compact design On the metal console are the pump controls

and a solenoid valve with funnel for topping up with mains

water

The system controls switch on the submersible pumps as soon

as water begins to be consumed The pumps will supply the

system even in situations where the length and height condi-

tions are unfavourable A float switch constantly monitors the

level of the rainwater tank so that it automatically switches to

supply with mains water when the rainwater level is low

The intelligent link between the system controls and the sole-

noid valve is fully automated and topping up with mains water

only occurs when needed

copy S

pin

Flo

w 2

81

02

01

4

Multistage stainless steel submersible pumps with 1 frac14ldquo

intake and pressure adapters and 15m rubber hose

1m floating extractor

Stainless steel manifold to connect the three submersi-

ble pumps

Base console made of metal with cover

Electrically operated mains water top-up with solenoid

valve and funnel

Specially developed system controls

Electrical connections with pluggable connections

System Control RWF X 100 ndash controls inside the building

Brief technical description

Very quiet

Very reliable operation

Easy to install

Specially developed automatic controls

Need-based topping up of mains water in compliance

with EN 1717

Commercial process water consumption

Garden irrigation

Up to a volume of 21 msup3h

Product benefits

Area of use

Rainwater Factors | Adam Dean | 58 Leighton Avenue | Swindon | Wiltshire | UK | SN3 2HT | salesrainwaterfactorscom | wwwrainwaterfactorscom | Ph 07904 847 477

Console W x H x D 550 x 550 x 320 mm

Manifold entry 3 x 1ldquo inside thread

Manifold exit 1 frac12ldquo outside thread

Mains water connection 1rdquo outside thread

Mains water top-up DN100 adapters

Level sensor

20m (no ground ca-

ble)

Weight (controls) 10 kg

System Control RWF X 100

Overv iew

Technical data (pumps)

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pin

Flo

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02

01

4

Submersib le pumps

RWF X 100

14-40

RWF X 100

14-80

RWF X 100

20-50

RWF X 100

20-60

RWF X 100

20-70

Max pump capacity in msup3h 14 14 21 21 21

Max pressure in bar 42 86 51 64 77

Current consumption in A

3 x 44

(3 x ~230V)

3 x 78

(3 x ~230V)

3 x 52

(3 x ~230V)

3 x 65

(3 x ~230V)

3 x 78

(3 x 230V)

Motor power P1 in KW 3 x 094 3 x 15 3 x 12 3 x 15 3 x 18

Pump length in mm 603 697 603 670 697

Technical data (controls)

Pump characteristic curve

Page 2: System Control RWF X 100 - Rainwater  · PDF fileSystem Control RWF X 100 ... © SpinFlow 28.10.2014 ... Max. pressure in bar 4.2 8.6 5.1 6.4 7.7 Current consumption in A 3 x 4.4

Rainwater Factors | Adam Dean | 58 Leighton Avenue | Swindon | Wiltshire | UK | SN3 2HT | salesrainwaterfactorscom | wwwrainwaterfactorscom | Ph 07904 847 477

Console W x H x D 550 x 550 x 320 mm

Manifold entry 3 x 1ldquo inside thread

Manifold exit 1 frac12ldquo outside thread

Mains water connection 1rdquo outside thread

Mains water top-up DN100 adapters

Level sensor

20m (no ground ca-

ble)

Weight (controls) 10 kg

System Control RWF X 100

Overv iew

Technical data (pumps)

copy S

pin

Flo

w 2

81

02

01

4

Submersib le pumps

RWF X 100

14-40

RWF X 100

14-80

RWF X 100

20-50

RWF X 100

20-60

RWF X 100

20-70

Max pump capacity in msup3h 14 14 21 21 21

Max pressure in bar 42 86 51 64 77

Current consumption in A

3 x 44

(3 x ~230V)

3 x 78

(3 x ~230V)

3 x 52

(3 x ~230V)

3 x 65

(3 x ~230V)

3 x 78

(3 x 230V)

Motor power P1 in KW 3 x 094 3 x 15 3 x 12 3 x 15 3 x 18

Pump length in mm 603 697 603 670 697

Technical data (controls)

Pump characteristic curve