Stihl RM 756 GC Petrol Lawn mower

SKU: 6378 011 3431

Stihl RM 756 GC Petrol Lawn mower

SKU: 6378 011 3431

Original price was: £1,979.00.Current price is: £1,682.00.

RM 756 GC petrol-driven lawn mower: with comfort handlebar and 3-speed wheel drive for professional mowing use

The STIHL RM 756 GC petrol lawn mower has been specially developed for tough, long-lasting use in a professional environment. With its 54cm/21″ cutting width and its 3-speed gearing, this professional lawn mower is designed to mow areas up to 3000m². The hybrid housing is sturdy and durable. The foldable, mono-comfort handlebar can be adapted to your body height, ensuring the most comfortable working position, essential when you’re mowing for long periods of the day. This model features anti-vibration elements which effectively reduce engine vibration, allowing you to comfortably use the mower for a full working day. With a 3 litre fuel tank for long running times coupled with the reliable and powerful Kawasaki engine, this mower is designed for large and tough mowing jobs. An 80 l grass catcher bag– made from tough fabric makes it easy to see when the grass catcher bag is full, whilst allowing excellent air flow to ensure the bag is filled to the brim. Each wheel can be adjusted independently to suit the lawn conditions, the alloy wheels also have premium, well sealed bearings for a long service life. The RM 756 GC comes with a 1 year professional warranty (subject to registration and servicing).

Part number

6378 011 3431

Displacement

179 cm³

Motor type

FJ 180 V KAI OHV

CO2

1068 g/kWh

Device weight

60 kg

Max. lawn area

up to 3000 m²

Cutting width

54 cm

Cutting height

25 - 90 mm

Rated speed of sweeping attachment

2800 rpm

Grass catcher box volume

80 l

Device width

59 cm

Device height

116

Front wheel diameter

207 mm

Rear wheel diameter

232 mm

Measured sound pressure level LpA

86 dB(A)

Sound power level, guaranteed LWA

98 dB(A)

Uncertainty factor, sound pressure level KpA

2 dB(A)

Vibration, guide bar, ahw

2.4 m/s²

Vibration uncertainty K

1.2 m/s²