Biasi RinNova Adaptive 35C Combi Boiler - Natural Gas / LPG - 35kW
Biasi RinNova Adaptive 35C Combi Boiler - Natural Gas / LPG - 35kW
- Lead Time: 1-2 Working Days*
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Boiler Only
Available with Horizontal or Vertical Flue as a pack
Biasi RinNova Adaptive Brochure
Biasi RinNova Adaptive Combi User Manual
RinNova Adaptive, high efficiency wall hung boiler
- 1:9 Modulation
- 25 - 30 - 35kW
- Heating Water
- Domestic Water
- 12,8 - 15,2 - 17,0 L/min
- Natural Gas / LPG - the same model is suitable for both types
- Gas Adaptive
- A+ Energy Class
- NOx 6 Class
- Wi-Fi Ready
- Plastic Free
- Biasi Connect
- 7 Year Warranty
- ProFit Warranty - 8 Years
The RinNova Adaptive condensing boiler, differently to the traditional boilers, allows conventional boilers, recovers energy by condensing the water vapour contained in the flue gases, i.e., for the same amount of heat produced, it consumes less gas and in addition the flue gases contain less substances harmful to the environment.
The materials used and the control systems with which it is equipped offer you safety, high comfort and energy savings so that you can enjoy the advantages of independent heating.
Gas Adaptive Technology
The innovative Adaptive Gas technology, which all Rinnova all models in the Rinnova range are equipped with boilers to different types and qualities of gas. As well as detecting the flame, the electrode also detects the characteristics of the gas and automatically adapts the combustion parameters to maintain maximum efficiency, with a consequent reduction in consumption and emissions compared to traditional control systems. The Adaptive gas system makes the boiler ready for operation for operation with any type of gasa without any transformations.
A+ class option, with iControl Sysyem
All models in the Rinnova Adaptive range are also available in the comprehensive “iControl” option, the climate control which modulates the water temperature according to the room and external temperature, which thanks to the Wi-FI system and the Biasi Connect App makes it possible to manage remotely with a smartphone the heating system, optimising consumption, raising the energy class of the boiler to A+.
A Plastic-FREE production
An important element that has managed the entire design phase of the new Rinnova Adaptive boiler is a strong focus on the circular economy. This is why we used components with a higher recycling rate, eliminating the use of plastic as much as possible. The plastic assembly, for example, has been replaced with a brass assembly, which is fully recyclable. The boiler shells are made of cardboard instead of polystyrene.
Comfort at your fingertips
Biasi Connect
Thanks to the BIASI Connect App, it is possible to control the boiler remotely. To use it is necessary to have the Biasi Connect KIT in addition to the advanced remote control. The evolved control (class V) allows modulating the water flow temperature of the system according to the room temperature and the outside temperature.
What are the advantages?
Reduction of consumption, energy saving and extreme flexibility: the control is flexible according to one’s needs and daily habits. Needs and daily habits. You can also regulate with a click the temperature of the hot water. Awareness of your installation: you can always Real-time monitoring of the correct operation of the Operation of the heat generator. Safety: You can see in real time any anomalies can be seen in real time, together with the corresponding error code. Thus, you can intervene immediately and when possible remotely.
| RinNova ADAPTIVE 35C |
| Heat input | ||
| Nominal net (A) central heating | kW | 31,0 |
| Nominal net (A) domestic hot water | kW | 34,7 |
| Nominal gross (B) central heating |
kW | 34,4 |
| Nominal gross (B) domestic hot water | kW | 38,5 |
| Minimum net (A) C.H. - D.H.W | kW | 3,8 |
| Minimum gross (B) C.H. - D.H.W |
kW | 4,2 |
|
Useful output |
||
| Maximum (central heating) | kW | 30,6 |
| Maximum (domestic hot water) | kW | 34,1 |
| Minimum (C.H. - D.H.W.) | kW | 3,6 |
| Maximum condensing (central heating) | kW | 33,6 |
| Maximum condensing (domestic hot water) | kW | 37,7 |
| Minimum condensing (C.H. - D.H.W.) | kW | 4,0 |
|
Central heating |
||
| Min/Max flow temperature settings* | °C | 25-80 |
| Maximum pressure | bar | 3,0 |
| Minimum pressure | bar | 0,3 |
| Available head (in 1000 l/h) | bar | 0,32 |
|
Domestic hot water |
||
| Min/Max temperature settings | °C | 35 - 55 |
| Maximum pressure | bar | 10 |
| Minimum pressure | bar | 0,3 |
| Flow rate minimum | l/min | 2,5 |
| Flow rate 30° rise (D) | l/min | 16,9 |
| Flow rate 35° rise (D) | l/min | 14,3 |
| Flow rate 40° rise (D) | l/min | 12,4 |
|
Gas supply pressures |
||
| Natural G20 | ||
| Nominal pressure | bar | 20 |
| Minimum pressure | bar | 17 |
| Maximum pressure | bar | 25 |
|
Propane G31 |
||
| Nominal pressure | bar | 37 |
| Minimum pressure | bar | 25 |
| Maximum pressure | bar | 45 |
|
Gas rate maximum - central heating |
||
| Natural G20 | m3/h | 3,28 |
| Propane G31 | kg/h | 2,41 |
|
Gas rate maximum - domestic hot water |
||
| Natural G20 | m3/h | 3,67 |
| Propane G31 | kg/h | 2,70 |
|
Gas rate minimum - C.H. - D.H.W. |
||
| Natural G20 | m3/h | 0,40 |
| Propane G31 | kg/h | 0,30 |
|
Electrical data |
||
| Voltage | V~ | 230 |
| Frequency | Hz | 50 |
| Nominal Power consumption | W | 116 |
| Minimum Power consumption | W | 11 |
| Stand-by Power consumption | W | 3 |
| Protection degree | IPX5D | |
| External fuse rating | A | 3 |
| Internal fuse rating | A | N° 2 - 2 AF |
|
Flue Design |
||
| Boiler type B23P C13 C33 C43 C53 C63 C83 C93 |
||
| Ø Coaxial | mm | 60/100 |
| Ø Twin split pipes | mm | 80/80 |
| Ø Roof | mm | 60/100 |
| Ø Roof | mm | 80/125 |
| Nominal heat flow rate (A) (E) | kW | 34,7 |
| Exhaust temperature (E) | °C | 78,0 |
| Mass flow rate (E) | kg/s | 0,02 |
|
Flue gas figures |
||
| Nominal heat input (A) (E) | kW | 34,7 |
| CO2 content with gas G20 | % | 8,5 - 9,5 |
| O2 content with gas G20 | % | 4,8 |
| CO content with gas G20 | ppm | 200,0 |
| Exhaust temperature (E) | °C | 78,0 |
| NOx class | 6 | |
| Weighted NOx | ppm | 16 |
|
CO2 contents - central heating |
||
| Nominal heat input (A) (E) | kW | 31,0 |
| CO2 content with gas G20 (range min - max) | % | 8,5 - 9,5 |
| CO2 content with gas G31 (range min - max) | % | 9,6 - 10,6 |
| Minimum heat input (A) (E) | kW | 3,8 |
| CO2 content with gas G20 (range min - max) | % | 8,5 - 9,5 |
| CO2 content with gas G31 (range min - max) | % | 9,5 - 10,5 |
|
CO2 contents - domestic hot water |
||
| Nominal heat input (A) (E) | kW | 34,7 |
| CO2 content with gas G20 (range min - max) | % | 8,5 - 9,5 |
| CO2 content with gas G31 (range min - max) | % | 9,6 - 10,6 |
| Minimum heat input (A) (E) | kW | 3,8 |
| CO2 content with gas G20 (range min - max) | % | 8,5 - 9,5 |
| CO2 content with gas G31 (range min - max) | % | 9,5 - 10,5 |
|
Other specifications |
||
| Height | mm | 700 |
| Width | mm | 400 |
| Depth | mm | 300 |
| Weight (dry) | kg | 36,0 |
| Water volume in the boiler (up to 1 bar) | l | 2,5 |
* to the minimum useful output
(A) referred to the net calorific value at 15 °C and 1013,25 mbar: G20 = 34,02 MJ/m3 - G31 = 46,34 MJ/kg
(B) referred to the gross calorific value at 15 °C and 1013,25 mbar: G20 = 37,78 MJ/m3 - G31 = 50,37 MJ/kg
(C) The value is used in the UK Government’s Standard Assessment Procedure (SAP) for energy rating of dwellings. The test data from which it has been calculated have been certified by a notified body.
(D) Values subject to tolerance
(E) Values refer tests with a 1 m flue working at the nominal heat input
*Stock dependant

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