Showing posts with label 2010. Show all posts
Showing posts with label 2010. Show all posts

Norton NRV588 Race, 2010

 
 
 
 
Norton NRV588 Race, 2010

UK Specifications
MSRP: £11,995

This NRV-588 has an advanced, up-to-date technical specification using computers to control all operations, but the general configuration is as follows:

Engine
  • - 588cc twin-rotor Wankel type
  • - Fuel injected, direct spray into both bell mouths
  • - Fully variable intake tract to peak maximum torque between 8000-11,000rpm
  • - Electric water pump
  • " Ducted fan air cooling for rotors
  • " Fly-by-wire throttle

Power
" Projected at 170 BHP @ 11,500 RPM
" Max torque 80 Ibs ft, at variable rpm

Chassis
  • Twin spar aluminium, by Spondon
  • Front Suspension: Ohlins upside-down fork
  • Rear Suspension: Ohlins specially made long-stroke single-sided direct connection unit
  • Brakes: AP Discs with radial mounted front callipers and rear 2 piston brake calliper.
  • Wheels: Dymag 16.5in
  • Tyres: Dunlop
  • Weight: 130kg (dry)

Norton NRV588 - Rotary Revival
Alternative ideas for improving sportbike performance usually involve yet another arcane front suspension layout like the Bimota Tesi or BMW's Duolever/ Telelever designs-but rarely has anyone offered an alternative engine. Except for the two-stroke, which became a mainstream concept that eventually has been forced into near extinction by environmental concerns, and not counting the current fascination with renewable fuels, there haven't been any truly innovative concepts in gasoline-powered motorcycle engine design. Well, perhaps except for just one: the Wankel rotary.

The Norton Rotary Reborn
It's been 20 years since the rotary engine invented by German engineer Felix Wankel back in 1924 made its motorcycle roadracing debut in 1987. Powering the racebikes of the resurgent Norton factory, the rotary's then-superior performance led to eight years of competition that resulted in successive British roadrace titles, points-scoring GP finishes and victory in the Isle of Man TT against the top superbikes of the day. The fact that each Wankel engine cylinder has only three moving parts that simply rotate-compared with myriad moving pieces in a conventional four-stroke piston engine, many of which run at incredibly high velocities only to stop dead a couple of hundred times a second-makes this a plausibly more efficient mechanical solution. Admittedly, the thorny issue of the bike's exact engine capacity was always a matter of controversy. Because the rotary engine's unique three-sided rotor's power stroke occurs twice during a revolution of the crankshaft (actually called the eccentric shaft, basically a camshaft around which the rotor orbits), some claimed that its displacement should be measured by the single rotor-face-swept area of each of the Norton Wankel's two triangular rotors times two. Nonetheless the rules were massaged on an ongoing basis to make sure the crowd-pleasing Nortons could play their role as British underdogs taking on the might of Japan Inc.

I was able to test each successive year's variant of the Norton rotary racer and found the bikes thrilling to ride, with a good power-to-weight ratio that made them unquestionably fast and with adequate handling. Although the rotary is a dirtier, thirstier design than a conventional four-stroke, it's also lighter and more compact-and potentially more powerful. Just what you need to build a better racebike, as Brian Crighton proved by conceiving the Norton rotary racers that flourished two decades ago. Unfortunately the Nortons withered away after their last race in 1994, thanks to the corporate intrigue that eventually downed the parent company.

But some people never give up, and for 13 years, the 59-year-old Crighton continued to dream of building a Norton rotary racer as light and powerful as he always knew it had the potential to be. Now, with the financial backing of dedicated Norton enthusiast Roy Richards-founder and chairman of Britain's National Motorcycle Museum, where 16 of the 17 Norton factory rotary racers ever made now reside-Crighton's dream has reached reality. The Norton NRV588 is the bike he always wanted to build.

Launched a year ago at Britain's Birmingham Show, and after a season of development held back by the dismal British summer's constant rain, the NRV588 currently produces 165 horsepower at 11,450 rpm from its liquid-cooled twin-rotor engine, yet weighs just 289 pounds with all fluids but fuel. Crighton's ultimate rotary racer offers a power-to-weight ratio comparable to today's factory superbikes, with performance enhanced by current technology that includes a ride-by-wire throttle, fuel injection with a range of usable maps and traction control. "This is the bike I wanted to build for 1995 after we'd beaten the Yamahas and Ducatis plus the RC45 Honda to win the 1994 championship," says Crighton. "I wanted fuel injection for the road bikes to cope with emissions and ride-by-wire throttle to make it easier to ride in the wet via traction control. But they changed the rules to get rid of the Nortons, and anyway the company was fizzling out, so it never got built. But [a British magazine] published an article about my ideas back in August 1994, and when Roy Richards hired me three years ago to restore all his rotary Nortons for the museum, after I'd been working for him for a while I showed him the article. After reading it he said, 'Well, would you like to build it to finish the story off?' He said that he'd finance it personally, and that's how it's come about."

An Old Dog With New Tricks
The heart of the NRV588 is obviously the twin-rotor engine, one of the spare '94 Duckhams motors that incredibly hadn't even been opened and serviced since being built that year. Thus original mechanical spec is unchanged, with 9.6:1 compression and original porting (rotaries control intake and exhaust flow timing via ports, just like a two-stroke). But it's now fitted with fuel injection controlled by an Omex ECU using GEMS software, powered by a Yamaha R6 generator and controlling a single injector per rotor in Crighton's own dual 36mm throttle bodies. These are located beneath the required bulge in the front of the fuel tank to allow space for the tall shower-style injectors; they're necessary to permit usage of the NRV588's variable-intake system (hence the "V" in its designation). But while the concept is similar to the MV Agusta and Yamaha systems, the NRVs feature a linear electric servo motor that controls the movement of the telescopic intake trumpets via a gearbox driving a screw. This allows an actual progressive system, instead of the MV and Yamaha systems that only permit two positions. Plus, while the MV/Yamaha systems only allow a maximum of 75mm of variation in length, the Norton's fully progressive system extends over a huge 120mm range. The trumpets are fully extended at low rpm, then begin to contract from 6000 to 8000 rpm.

Other electric motor controlled by the ECU operates the throttle plates, in a copy of the modular ride-by-wire system on Ducati's MotoGP bikes. This has a conventional throttle cable running from the grip to a potentiometer, which translates the action in digital form to the ECU. The ECU then instructs the electric motor to operate the butterflies according to a preprogrammed map that can be altered depending on weather, track conditions, tire wear and so on.

A belt primary drive transfers power from the rotary's eccentric shaft (the Wankel's "crankshaft") to the separate Yamaha OW01 six-speed transmission. Although difficult to distinguish in this photo, the actual rotary engine is very compact, with an overall size not that much larger than the oversize ignition rotor. Note the oil-injection pump (the rotary is like a two-stroke in that its combustion components are lubricated by oil in the intake charge) driven off the clutch shaft.

An Ohlins inverted superbike fork rides on an ultralight 16.5-inch Dymag carbon-fiber wheel shod with Dunlop racing rubber, with radial-mount, monoblock, four-piston AP calipers biting down on 320mm steel discs. The extra-large radiator is necessary to shed the rotary's intense heat production.

These two shots show the Norton's innovative variable-intake system in full extension and retraction. Unlike the similar systems used on the Yamaha R1 and MV Agusta F4 CC, the NRV588's unit is a fully progressive-length system. Note also that as the intake stacks move through their 120mm range of travel (the Yamaha and MV systems only allow a maximum of 75mm), the shower-style injector towers follow in synchronized movement.

Having ridden both four-cylinder sportbikes fitted with variable-intake systems, I was interested to see how this would work on the rotary engine. I remembered from my several previous Norton rides that it had a broad spread of power but suffered from a lack of low-end torque, especially if tuned for top-end power like the original bikes were. That always made them even more like a two-stroke to ride, and the heavier flywheel required to tame the otherwise explosive powerband also tended to compromise acceleration, only partially rectified by the bike's light weight.

The NRV588 has no such problem. For example, compared with Steve Hislop's TT-winning ABUS Norton, which had a nice midrange but was definitely peaky in terms of power delivery, the new bike feels like it's powered by an extremely potent electric motor. There's a huge range of seamless, linear power from 3000 rpm all the way up to the 11,500-rpm rev limiter. Throttle response is crisp without being abrupt, a welcome trait considering the NRV's high power output and light weight. The 2D LCD dash is hard to read because of the lack of contrast in daylight and the smallish numbers, and the engine is so smooth that you have no sense of feel that it's time to shift. This caused me to bump into the rev limiter often; a bright shift light would help here. The excellent low-end torque meant that driving out of the tight turns could be done in second gear-no need for first gear in the separate six-speed Yamaha OW01 gearbox with belt primary drive. However, there's no power shifter fitted to the race-pattern gearshift, because the engine's relatively heavy flywheel and long gear spacing make it difficult to prevent shock loading while shifting through the lower gears.

But where the variable-intake system in the NRV588 really shows is when you get to 8200 rpm, where maximum torque of 82 ft-lb is delivered, according to Crighton. Here, instead of the midrange flat spot that plagued the older Nortons, the engine keeps pulling hard and continues to accelerate strongly right to the 11,500-rpm limiter. Note that the 165-horsepower number is quoted at 11,450 rpm, which incidentally Crighton says is a conservative figure-he feels 175 horsepower is easily achievable with more development.

The ECU software allows Crighton to dial in a different engine map for wet pavement as well as a different ride-by-wire throttle program and (though it wasn't yet installed for any of my tests) a choice of traction control programs depending on track conditions. With the continuous and overlapping power pulses of the rotary engine making the bike especially prone to wheelspin, this will be a useful feature in the future. It could also allow riders to run a softer rear tire, enhancing traction even more. As it was, even without traction-control programs installed, the NRV's smooth throttle response and linear power made it a confidence-inspiring ride on a wet track-maybe just not as much fun on a dry one.

The bodywork was designed by Harris Performance and painted in colors that recall Norton's classic-era Manx GP singles. The chassis is a Spondon aluminum twin-spar frame based on the '94 Duckhams British Superbike title winner, but because one of Crighton's key objectives in designing the new bike was to maximize the benefits of the rotary engine's compact build, the main spars are 25mm longer to allow for a front-mounted Radtech custom radiator rather than the previous twin side-mounted radiators. This helps reduce the NRV's overall width to just 450mm, more than 50 percent narrower than the old Nortons and not much wider than a 250GP racer. But the rotary engine also has some heat issues caused by the continuous power pulses that can result in exhaust temperatures reaching more than 1000 degrees C. This required a new exhaust system made from costly Inconel alloy, which is more resistant to heat than titanium and is even lighter. Also, to bring cooling air between the rotor housings Crighton borrowed an idea from one of his hobbies. "I fly model aircraft, and they use high-performance duct fans that run at very high speeds and generate lots of airflow," he explains. "There's an electrically driven extractor fan in the duct beneath the seat linked to the ECU, so that as the temperature rises it runs quicker and pulls the heat out of the middle of the engine. The forward ducts on the fairing give a positive effect there, and there's a negative effect at the rear, so you end up with a good cooling airflow. It's the same variable system as the engine's electric water pump, which has no thermostat, just a sensor that monitors engine temperature. As this rises the water pump speeds up, but then it slows down as it cools. It self-regulates so you don't need to tape up the radiator [on colder days]."

A small electric extractor fan pirated from an R/C model aircraft sits in an underseat duct in the tailsection, helping pull cooling air from between the rotary engine's housings. The fan's variable speed is controlled by the ECU according to engine temperature.

The air duct running down into the area below the fuel injection and airbox pulls cooling air between the rotor housings of the rotary engine, which can generate a staggering amount of heat due to its constant overlapping firing intervals.

A Yamaha R6 generator attached to the left side of the eccentric shaft powers the Norton's fuel injection and numerous electronic engine and rider aids. This shot also shows the rotary engine's incredibly compact dimensions, evident in the round, exposed case the generator plate is attached to.

There's just a single Ohlins rear shock on the NRV, offset to the right and operating without any link. "A monoshock with linkage is made very progressive, so it only moves a little when the wheel hits a small bump," says Crighton. "This makes it hard to control the damping accurately, as we proved with back-to-back tests on the Roton GP racer, which became Ian Simpson's title-winning Duckhams Superbike. Our system is better because we have more damping control and better consistency, and the braced swingarm is stiff enough we can move the single shock off to the side to help it run cooler without any flex." Rear-wheel travel is only 3.5 inches, while the wheelbase is extended slightly to 56.1 inches with an increased 54/46 percent front-end bias. The fully adjustable 43mm Ohlins fork is set at a 23.7-degree head angle (adjustable via eccentrics) with 102mm of trail.

The Norton was also the first one I rode with Dymag carbon wheels. As a result the pair of chicanes at Mallory Park, where I tested, suddenly became amazingly easy to flick through. However, I found that the Norton likes to take wide, sweeping lines to maximize turn speed rather than stop, turn and accelerate hard, as you might expect with such a slim, light bike wearing wide, 16.5-inch Dunlop slicks. Edge grip was obviously good on my one dry test day, although one handling aspect I didn't care for was the way the NRV liked to understeer under hard acceleration, perhaps because of the engine power compressing the rear shock without a progressive linkage.

But otherwise the Norton tracked straight and true, and I welcomed the exceptional feel of the radially mounted twin 320mm AP front discs and monoblock four-pad calipers. On a bike this fast on such a tight track you need to have absolute faith in your brake package, and the AP brakes provided it, countering the rotary motor's near-total absence of engine braking. The slipper clutch sourced from a Kawasaki parts bin helped keep the Norton stable as it stopped hard, although it was surely aided by the high 2000-rpm idle speed. The gear-change was a little notchy but nothing oppressive.

A single Ohlins shock in a cantilever setup without linkage controls the rear suspension, with the fat rear Dunlop 16.5-inch slick mounted on a wide, 6.5-inch Dymag carbon-fiber wheel. The exhaust system is made entirely from expensive Inconel alloy to withstand the rotary engine's incredibly high exhaust temperatures.

The Wankel rotary's compact size compared with a conventional four-stroke piston engine is apparent in this bodywork-off photo. Weight bias is 54/46 percent on the front, which helps keep the front tire on the ground when unleashing the Norton's 165 horsepower.

Sadly, in these days of increasing focus on what are labeled the "spec" classes of racing (production-based categories such as Superbike, Supersport, Superstock, and so on), there's no free-formula racing category where examples of alternative thought like the Norton can be raced. Well, except maybe just one. Back in the '90s, the rotary Nortons regularly raced in the European Battle of the Twins at circuits such as Assen, Monza and Spa-for precisely the reason that the Norton will hopefully be accepted by organizers of such events today, perhaps starting in Daytona in March: It's different.

"It would be nice to run in that kind of racing because of the interest it would create for people who like things that are out of the ordinary," says Crighton. "Whatever the argument is about the capacity, it's a 165-horsepower bike and we're thinking of running it against the 1000cc superbikes producing up to 200 horsepower, so it's a tall order. It'd be incredible if it could be competitive at all, but we're willing to give it a try by using the power-to-weight ratio to our advantage if it's possible. At the moment we've only got the one bike, so if we're going to do any sort of racing we'll need to get a second one built. We do have some spares available, though it is getting a bit difficult with the engine parts now. But we'd like to wave the Norton flag again to show people how a rotary ought to be done right."

Even more to the point, though: How great would a Norton NRV588 street replica be, complete with side ports and fuel injection taking care of emissions (just as it does for Mazda with its RX-8 sports car) and the variable-length intake setup offering superb rideability in a 170-horsepower, 300-pound package?


Norton Commando 961 Cafe Racer, 2010

 
 
 
Norton Commando 961 Cafe Racer, 2010

UK Specifications
MSRP: £13,495

Frame
  • - Frame: Steel tubular with integral oil tank
  • - Swing arm: Twin-sided steel construction
  • - Wheelbase: 1420mm (55.9 in)
  • - Rake: 24.5 degrees
  • - Trail: 99mm (3.9 in)
  • - Front suspension: 43mm Ohlins USD - Adjustable preload, compression & rebound damping.
  • - Rear suspension: Ohlins reservoir-style twin shocks - Adjustable ride height, reload, compression and rebound
  • - Front wheel: 36 spoke 3.50 x 17” Black Rim
  • - Rear wheel: 40 spoke 5.0 x 17” Black Rim
  • - Front tyre: 120/70 x 17”
  • - Rear tyre: 180/55 x 17”
  • - Front wheel travel: 115mm (4.53 in)
  • - Rear wheel travel: 100mm (3.94 in)

Brakes & Hydraulics
  • - Front brakes: Full Brembo system, twin Brembo 320mm semi-floating hi
  • carbon stainless steel discs & Brembo 4 piston radial callipers
  • - Rear brakes: Full Brembo system, single Brembo 220mm disc, Brembo 2 piston “Gold Line” calliper
  • - Brembo front brake master cylinder, with integral reservoir
  • - Brembo hydraulic clutch master cylinder, with integral reservoir
  • - Brembo rear brake master cylinder
  • - Brembo hydraulic clutch actuation slave cylinder
  • - Gear box: constant mesh 5 speed
  • - Final drive: 525 “O” ring chain
  • - Clutch: Wet multi-plate
  • - Electric start
Transmission
  • - Gear box: constant mesh 5 speed
  • - Final drive: 525 “O” ring chain
  • - Clutch: Wet multi-plate
  • - Electric star Power Assembly
  • - Engine type: Parallel twin with push-rod valve actuation, dry sump
  • - Displacement: 961cc
  • - Cooling system: Air
  • - Valve actuation: Push rod, hydraulic lifter, 2 valves per cylinder
  • - Bore x stroke: 88mm x 79mm
  • - Compression ratio: 10.1:1
  • - Power: 80PS @ 6500RPM
  • - Torque: 90Nm @ 5200RPM
  • - Exhaust: Café Racer Sports Exhaust
  • - Ignition: Crank fired electronic
  • - Euro 3 compliant with electronic fuel injection and multiple 3 way catalytic converter
Electronics & Controls
  • - Charging system: 300 watt hi-output charging system
  • - Instrumentation: Norton electronic analogue speedo & tachometer

Miscellaneous
  • - Fuel tank capacity: 17 litres (4.5 US gallon)
  • - Dry weight: 188kg (414.5 lbs)
  • - Seat height: 813mm (32 in)
  • - Steering: Black anodised billet yokes
  • - Handlebars: Clip-on handlebars
  • - Bodywork: Café Racer Fly-Screen

Colour Options
- Black & Gold
- Red & Gold
- Yellow & Black
- Silver, Red & Black

Price: £13,495
Price shown includes the 'On the Road' costs and VAT for the UK.

Benelli Cafe Racer 899, 2010

Benelli Cafe Racer 899, 2010

Specifications

ENGINE
  • TYPE In line 3 cylinders, 4-stroke, liquid cooled , 4 valves per cylinder
  • double overhead camshaft, with balancer shaft
  • DISPLACEMENT 899 cc
  • BORE x STROKE 88 x 49,2 mm
  • COMPRESSION RATIO 88 x 49,2 mm
  • RATED OUTPUT 88 kW (120 cv) @ 9500 rpm
  • MAX. TORQUE 88 Nm (9 kgm) @ 8000 rpm
  • FUEL SUPPLY Electronic injection with three throttle bodies ø53 mm
  • EXHAUST SYSTEM With catalytic converter and oxigen sensor
  • CERTIFICATION Euro 3
  • CLUTCH Wet clutch
  • GEARBOX 6 speed
  • FINAL DRIVE Chain drive, ratio 16:41

CHASSIS

  • FRAME Decomposable, front steel trestle, rear alluminium alloy casting
  • FRONT SUSPENSION Ø43 mm upside-down fork, with idraulic extension / compression
  • and spring preload adjustments
  • FRONT SUSPENSION STROKE 120 mm
  • REAR SUSPENSION Steel trestle swingarm, progressive rear dumper with idraulic
  • extension/compression and spring preload adjustments
  • REAR SUSPENSION STROKE 120 mm
  • FRONT BRAKE Twin floating disk ø320 mm with 4 piston calipers
  • REAR BRAKE Singol disk ø240 mm with double piston caliper
  • FRONT RIM 17”x3.50” DOT-D
  • REAR RIM 17”x6.00” DOT-D
  • FRONT TYRE 120/70-ZR17 58W (-120/65-ZR17 56W-)
  • REAR TYRE 190/50-ZR17 73W (-180/55-ZR17 73W --- 200/50-ZR17 75W -)

SIZES
  • LENGHT 2128 mm
  • WIDHT EXCLUDING MIRRORS 790 mm
  • HEIGHT EXCLUDING MIRRORS 1050 mm
  • SEAT HEIGHT 820 mm
  • WHEELBASE 1443 mm
  • UNLADEN WEIGHT* 208 kg
  • ROAD READY WEIGHT** 215 kg
  • PERMITTED TOTAL WEIGHT 400 kg
  • USABLE TANK VOLUME 16 lt
  • RESERVE N.D.

Bimota DB5S, 2010

 

Bimota DB5S, 2010

Specifications

ENGINE
  • Type: Ducati 1100DS
  • Configuration: 90 degree L-Twin
  • Displacement: 1079cc
  • Cooling: air/oil
  • Compression Ratio: 10.5±0.5:1
  • Valves per Cylinder: 2
  • Bore x Stroke: 98.0mm x 71.5mm
  • Redline: 9000rpm
  • Valve Angle: intake: 28 degree, outlet: 28 degree
  • Valvetrain Type: Desmodromic
  • Fuel Pump: Bitron 3.5bar, electronic
  • Throttle Body: 45mm
  • Air Filter: Foam
  • Exhaust System: 2 in 1 in 2, inox
  • Injection: Magneti Marelli
  • Lubrication: Wet Sump
  • Fuel Tank: 4.2gal/1.3gal reserve (16l/5l reserve)

TRANSMISSION
  • Type: Wet Clutch, multi-disc
  • Clutch: Hydraulic
  • Primary Drive: (TBA)
  • Final Drive: (TBA)
  • Gear Ratio: (TBA)

CHASSIS
  • Wheelbase: 56.1in (1425mm)
  • Swingarm Lenth: 20.3±0.8in (515±20mm)
  • Seat Height: 31.9in (810mm)
  • Footpeg Height: 14.6in - 15.2in (370mm - 385mm)
  • Handlebar Height: 33.9in (860mm)
  • Steering Stem to Seat Center: 25.2in (640mm)
  • Front Suspension: 50mm UD Marzocchi TIN Coated Fork, fully adjustable (Preload - External Hydraulic Device, Compression, Rebound), travel 4.7in (120mm)
  • Front Wheel: 3.50 x 17.0 Alluminium Alloy
  • Front Brake: Double 320mm Brembo floating discs, Brembo Radial Caliper, 4-piston, 4-pad
  • Rear Suspension: Extreme Tech monoshock, fully adjustable (Preload - External Hydraulic Device, Compression, Rebound)
  • Rear Wheel: 5.50 x 17.0 Aluminium Alloy
  • Rear Wheel Trail: 4.7in (120mm)
  • Rear Brake: 220mm Brembo Disc , 2-piston, 2-pad
  • Curb Weight: 417lb (189kg)

Bimota DB5R, 2010

 
Bimota DB5R, 2010

Specifications

ENGINE
  • Type: Ducati 1100DS
  • Configuration: 90 degree L-Twin
  • Displacement: 1079cc
  • Cooling: air/oil
  • Compression Ratio: 10.5±0.5:1
  • Valves per Cylinder: 2
  • Bore x Stroke: 98.0mm x 71.5mm
  • Redline: 9000rpm
  • Valve Angle: intake: 28 degree, outlet: 28 degree
  • Valvetrain Type: Desmodromic
  • Fuel Pump: Bitron 3.5bar, electronic
  • Throttle Body: 45mm
  • Air Filter: Foam
  • Exhaust System: 2 in 1 in 2, inox
  • Injection: Magneti Marelli
  • Lubrication: Wet Sump
  • Fuel Tank: 4.2gal/1.3gal reserve (16l/5l reserve)

TRANSMISSION
  • Type: Dry Clutch, multi-disc
  • Clutch: Slipper Clutch
  • Primary Drive: 32/59 teeth
  • Final Drive: 15/40 teeth
  • Gear Ratio: VI - 28/24; V - 24/23; IV - 22/24; III - 20/27; II - 17/30; I - 15/37

CHASSIS

  • Wheelbase: 56.1in (1425mm)
  • Swingarm Lenth: 20.3±0.8in (515±20mm)
  • Seat Height: 31.9in (810mm)
  • Footpeg Height: 14.6in - 15.32in (370mm - 385mm)
  • Handlebar Height: 33.9in (860mm)
  • Steering Stem to Seat Center: 25.2in (640mm)
  • Front Suspension: 43mm UD Öhlins TIN Coated Fork, fully adjustable (Pre-load, Compression, Rebound), travel 4.7in (120mm)
  • Front Wheel: 3.50 x 17.0 OZ Forged Alluminium
  • Front Brake: Double 320mm Brembo floating discs, Brembo Radial Caliper, 4-piston, 4-pad
  • Rear Suspension: Öhlins Monoshock, fully adjustable (Pre-load - External Hydraulic Device, Compression, Rebound)
  • Rear Wheel: 5.50 x 17.0 OZ Forged Aluminium
  • Rear Wheel Trail: 4.7in (120mm)
  • Rear Brake: 230mm Brembo Disc , 2-piston, 2-pad
  • Curb Weight: 375lb (170kg)

Aprilia Mana 850, 2010


 
 Aprilia Mana 850, 2010

Intermational Specifications
  • Engine: Aprilia 90° longitudinal V twin four stroke. Liquid cooled. Single overhead cam with chain drive, four valves per cylinder
  • Fuel: Unleaded petrol
  • Bore x Stroke: 88 x 69 mm
  • Total displacement: 839,3 cc
  • Compression ratio: 10:1
  • Maximum power at the crank: 56 kW (76.1 HP) at 8,000 rpm
  • Maximum torque at the crank: 7.45 kgm (73 Nm) at 5,000 rpm
  • Fuel system: Integrated engine management system. Weber Marelli electronic fuel injection with one 38 mm throttle body
  • Ignition: Digital electronic ignition, with two spark plugs per cylinder, integrated with fuel injection system
  • Starting: Electric
  • Exhaust: Two in one system in 100% stainless steel with three-way catalytic converter and Lambda probe
  • Generator: 450 W at 6000 rpm
  • Lubrification: Dry sump with separate oil reservoir
  • Gear box: Sequential with manual or automatic mode selectable by the user. 7 ratios in manual mode. 3 mappings (Touring, Sport, Rain) in automatic mode. Gear change by pedal or handlebar control. The user can switch from automatic to sequential mode at any moment.
  • Clutch: Automatic
  • Primary drive: Belt
  • Final drive: Chain
  • Frame: High strength steel trellis
  • Front suspension: 43 mm upside-down fork. Wheel travel: 120 mm.
  • Rear suspension: Aluminium alloy single-piece swingarm. Hydraulic shock absorber adjustable in spring preload and rebound damping. Wheel travel: 125 mm
  • Brakes: Front: double stainless steel floating disc (Æ 320 mm). Radial calipers with four pistons Rear: stainless steel disc (Æ 260 mm). Single piston caliper
  • Wheels: Aluminium alloy. Front: 3.50 x 17" Rear: 6.00 x 17"
  • Tyres: Radial tubeless. Front: 120/70 ZR 17 Rear: 180/55 ZR 17
  • Dimensions: Overall length: 2080 mm Overall width: 800 mm (at handlebars) Overall height: 1130 mm Seat height: 800 mm Wheelbase: 1463 mm Trail: 103 mm Rake angle: 24°
  • Fuel tank capacity: 16 litres
  • Other: Colours, specifications and technical data may be subject to change without prior notice.

Aprilia Dorsoduro 750, 2010


 Aprilia Dorsoduro 750, 2010


Intermational Specifications
  • Engine: Aprilia V90 four stroke longitudinal 90° V twin. Liquid cooling. Double overhead camshaft with mixed gear/chain drive; four valves per cylinder.
  • Fuel: Unleaded petrol
  • Bore x Stroke: 92 x 56,4 mm
  • Total displacement: 749,9 cc
  • Compression ratio: 11 : 1
  • Maximum power at the crank: 67.3 kW (92 HP) at 8750 rpm.
  • Maximum torque at the crank: 8.4 kgm (82 Nm) at 4500 rpm.
  • Fuel system: Integrated engine management system. Electronic fuel injection with ride-by-wire electronic throttle control.
  • Ignition: Digital electronic, integrated in the fuel injection system.
  • Starting: Electric
  • Exhaust: Two in one system in 100% stainless steel with three-way catalytic converter and Lambda probe.
  • Generator: 450 W at 6000 rpm.
  • Lubrification: Wet sump.
  • Gear box: Six speed. Transmission ratios: 1st 14/36 (2.57) 2nd 17/32 (1.88) 3rd 20/30 (1.5) 4th 22/28 (1.27) 5th 23/26 (1.13) 6th 24/25 (1.04)
  • Clutch: Hydraulically operated multi-plate wet clutch.
  • Primary drive: Spur gears. Transmission ratio 38/71 (1.87).
  • Final drive: Chain. Transmission ratio 16/46.
  • Frame: Modular steel trellis secured to aluminium side plates by high strength bolts. Detachable rear frame.
  • Front suspension: 43 mm upside-down fork. 160 mm wheel travel.
  • Rear suspension: Aluminium alloy swingarm.
  • Shock absorbers: Hydraulic shock absorber adjustable in spring preload and rebound damping. Wheel travel: 160 mm
  • Brakes: Front: Double stainless steel floating disc (Ø 320 mm). Four-piston radial calipers. Metal braided brake line. Rear: Stainless steel disc (diam. 240 mm) with single piston caliper. Metal braided brake line.
  • Wheels: Aluminium alloy. Front: 3.50 x 17". Rear: 6.00 x 17".
  • Tyres: Radial tubeless. Front: 120/70 ZR 17. Rear: 180/55 ZR 17.
  • Dimensions: Overall length: 2216 mm Overall width: 905 mm (at handlebars) Overall height: 1185 mm (at instruments) Seat height: 870 mm Wheelbase: 1505 mm Trail: 108 mm Rake angle: 26°
  • Dry weight: 186 kg
  • Fuel tank capacity: 12 litres (autonomy > 200 km)

Ducati Desmosedici RR, 2010

Ducati Desmosedici RR, 2010

 
 

DUCATI DESMOSEDICI RR: THE ULTIMATE DUCATI EXPERIENCE

The dream of a true GP replica has finally come true and the Desmosedici RR will be the first-ever road-going motorcycle to offer such a stunning wealth of performance and technology that comes directly from Ducati's experience in MotoGP. The RR derives from the Ducati Corse Grand Prix racing Desmosedici GP6, the same bike with which Loris Capirossi and Sete Gibernau are competing with in the 2006 MotoGP World Championship.
The body design and the aerodynamics faithfully reflect the Desmosedici GP6. The colour scheme, the fittings, the materials used in its construction as well as the technical features of the powerful four-cylinder desmodromic engine built by the Borgo Panigale factory engineers, leave no doubts whatsoever: the Desmosedici RR is the ultimate expression of the most extreme MotoGP racing machine today.
This is the new frontier of Ducati technological evolution, a dream come true, demonstrating once again the courage and the passion of Ducati, as well as the ability to transfer the experience of the racing world to a machine that is destined for road use.

The Engine
The Ducati Desmosedici RR features advanced technology and aerodynamics that are derived from the GP6 currently being raced in the 2006 MotoGP World Championship.
The engine of the Desmosedici RR accurately reflects that of the MotoGP bike: Ducati's traditional desmodromic distribution, guaranteeing precise valve control up to the highest revs, is perfectly matched to the 989 cc four-cylinder 'L' layout, with four titanium valves per cylinder, in asymmetrical Twin Pulse configuration, producing a masterwork of precision engineering.
The double overhead cams are gear driven, a sophisticated and reliable solution that enables precise valve timing in all conditions. This authentic copy of the Grand Prix engine is completed by a six-speed transmission, which retains its 'racing' characteristic by being cassette type, and a hydraulically actuated dry multi-plate slipper clutch.
The aim of producing a light but robust engine has led not only to an unrivalled quality component design but also the use of exclusive racing-derived materials: sand-cast, aluminium crankcase and cylinder heads, titanium connecting rods and valves, sand-cast magnesium engine covers.

Four 50 mm Magneti Marelli throttle bodies are present, with 12-hole 'microjet' injectors. For sophisticated management of the powerful four-cylinder engine a Magneti Marelli 5SM ECU and high-speed CAN line electronics have been used.
An all-time 'first' comes with the use of a '4 into 2 into 1' exhaust, with "vertical exit" silencer, hidden in the tail cover.
These are all benchmark performance features for a MotoGP replica bike, which is capable of delivering more than 200 hp of power with the 102 dB racing silencer and dedicated CPU race kit.
Amazingly the Desmosedici RR with its catalytic oxygen sensor exhaust, homologated for road use, fully complies with Euro3 emissions regulations.

The Chassis
The engine clearly represents the beating heart of this fantastic motorcycle, but the technological advancements also extend to the chassis: a signature tubular trellis hybrid frame, refined components, and a superb carbon fibre body. This is a motorcycle that is destined for an expert rider, someone who is always looking for extreme sporting performance, as well as being an exclusive, esoteric, reliable product that is more than capable of track racing.
The colour scheme of the Desmosedici RR was the work of Alan Jenkins, the designer and one of the men behind the Desmosedici MotoGP, who was also responsible for the aerodynamics package which is aimed at achieving maximum speed and excellent handling. The bike is totally inspired by the racing machine, the Ducati Desmosedici GP6, from which it inherits all the aggressiveness of its lines. It is fitted with a new lightweight multifunction dashboard, developed in collaboration with Ducati Corse, the same one that will be fitted to next year's racing machine, the Desmosedici GP7.
The bike's development could not have been made possible without the significant collaboration of Vittoriano Guareschi, the official Ducati Corse tester, whose riding abilities and hundreds of hours of track time have made a fundamental contribution to the evolution of the project.

For the first time the Ducati Desmosedici RR uses a new welded tubular steel trellis hybrid frame (ALS 450) with the frame geometry that is the same as that of the Desmosedici GP6.
This construction guarantees an excellent stiffness to weight ratio, allowing superior manoevrability and riding precision. Attached to the red frame is the rear seat support in high temperature resin type carbon fibre. This material, normally used only on racing bikes, has the characteristic of being extremely lightweight but exceptionally rigid.
The Desmosedici RR sports a new extra-long, cast, forged and pressed aluminium alloy swingarm. The geometry and the technology of this component derive directly from the MotoGP bike, and give the RR a high level of traction control, and excellent weight distribution as well as a superb stiffness to weight ratio.

In the suspension department the Ducati Desmosedici RR features the most advanced technical components.
The rear suspension geometry and layout is the same as that of the GP6, with the rear shock attached above the swingarm and to a rocker, which is hinged to the crankcase.
The front suspension features 43 mm upside-down Öhlins FG353 pressurized forks (PFF), with TiN coated sliders. The forks, which come directly from competition use, as well as being pressurized thus ensuring excellent track performance, are fully adjustable in preload, rebound and compression.

The DUCATI DESMOSEDICI RR Technical Specifications :

Engine
Type L-4 cylinder, liquid-cooled, DOHC, Desmodromic, 4 valves per cylinder, gear driven camshafts
Displacement 989 cc
Power More than 200 HP @ 13,500 rpm* Torque n/a
Fuel injection Four 50 mm Magneti Marelli throttle bodies, 12-hole "microjet"with injectors over throttle, manual idle control;
Exhaust '4 into 2 into 1'vertical exit exhaust/silencer
Emissions Euro 3

The Trasmission
Gearbox 6-speed; Cassette type
Clutch Dry multi-plate slipper clutch, hydraulically actuated

The Syspension
Body Full carbon fibre bodywork
Frame Tubular steel trellis hybrid, carbon fibre seat support, aluminium swingarm
Front Suspension Ohlins 'FG353' PFF forks USD 43 mm pressurized, with preload, rebound and compression adjustment, TiN coated sliders
Front Wheel Marchesini forged and machined magnesium alloy wheels, with 7 spoke design as GP6
Rear Suspension Ohlins rear shock, with rebound, low/high speed compression adjustment, and hydraulic preload adjustment
Rear Wheel Marchesini forged and machined magnesium alloy wheels, with 7 spoke design as GP6
Tyres Bridgestone
Front Brake Two Brembo radial "monoblock" callipers with four 34 mm pistons; two semi-floating 320 mm x 6 mm discs, with machined flange: the same as GP6 wet race set-up
Rear Brake 240 mm fixed disc, calliper with two 34 mm pistons
Fuel tank aluminium alloy
Dry Weight n/a
Instruments New lightweight Corse electronic multifunction dashboard with LCD 'bar' graph tachometer, trip/odometer, anti-theft immobilizer, lap time measurement, oil pressure, fuel reserve, EOBD, clock, air temperature, rev counter.

Honda Gold Wing GL18HPM Audio Comfort, 2010

Honda Gold Wing GL18HPM Audio Comfort, 2010

 


Experience the ultimate touring machine.

Hailed the world over as the undisputed champion of two-wheeled touring, the Honda Gold Wing® 1800 continues its reign as king of the road in 2010 as it brings an unmatched array of amenities for the long-haul rider. Luxury packages for GPS navigation, airbag, cold-weather comfort and more top off the superior power and handling available in every Gold Wing.

When it comes to touring, there’s really only one bike that should ever enter the conversation. That’s the Gold Wing, Honda powersports’ standard-bearer, the technological and luxury feature showcase rolled up into a machine Cycle World magazine has named one of its “Top 10 Bikes” an incredible 17 times! No surprise, since the Gold Wing is truly a touring bike that has it all: power, sporting performance, and long-range amenities to make any trip a first-class ticket to paradise.
Features
Four To Choose From.
We offer the Gold Wing in four distinct performance package options, with exclusive features like Premium Audio, XM Radio with Navigation, traffic and weather, a Tire Pressure Monitoring System, ABS, heated grips and seat, and even one with the industry’s first airbag.

Can-Am Spyder RTS roadster, 2010

  Can-Am Spyder RTS roadster, 2010



Media Press Release
Washington, D.C., September 2, 2009 – BRP introduces the new Can-Am Spyder RT roadster in response to specific consumer demand for a touring platform. The 2010 Can-Am Spyder roadster line-up now includes the Spyder RS (roadster sport) and the Spyder RT (roadster touring) models.
The introduction of the touring model coincides with a substantial gain in market presence on the heels of strong consumer demand since the roadster’s launch more than two years ago. Driven by a passionate owner community, the innovative three-wheel concept has become a global phenomenon in more than 50 countries to-date with authorized BRP dealers.

The Can-Am Spyder RT roadster powered by a Rotax 991 engine with Electronic Throttle Control optimized for touring stays true to the brand’s promise to deliver a perfect balance of performance and peace of mind. The roadster features the same acclaimed BOSCH-engineered Vehicle Stability System (VSS) as found in the Spyder RS roadster, which includes Anti-lock Brakes, Traction Control and Stability Control systems. The VSS, coupled with the inherent stability of the roadster’s ‘Y-architecture’ and overall ease of use reinvents riding for enthusiasts of all skill levels.

Can-Am Spyder RS Roadster, 2010

The Can-Am Spyder RS Roadster, 2010
 
 

There's nothing ordinary about the way it looks. Or the way it rides, for that matter. You gas, it comes to life.

You steer, it reacts and adapts. With its Rotax 990 V-Twin engine and unique, three-wheeled stance, the Can-Am™ Spyder roadster offers a bold, new way to experience open-road freedom. And it all starts at the end of your driveway.
A trip on the 2010 Can-Am Spyder RS roadster isn't just an escape, it's a full-on performance get-a-way.
 
Features and Specifications:

  • Rotax 990 V-Twin Engine
  • 3-spoke aluminum wheels
  • Multi-Function gauge display

Storage
  • Mechanical reverse
  • 44-Liter Front Storage - Lockable front storage with 44 liters of space. Can fit two helmets.
  • 3-Spoke Aluminum Wheels - A unique, die-cast aluminum design that echoes the RS roadster's distinctive footprint.

Vehicle Stability System (VSS) - The Y-architecture enables the Spyder to host an innovative and unique stability system. Developed in conjunction with Bosch, the Vehicle Stability System (VSS) reduces the risk of losing control, integrated into Vehicle Stability System (VSS) and Stability Control system (SCS), Traction Control System (TCS) and Anti-lock Braking System (ABS) functions.

 TRANSMISSION

1. Manual 5-speed gearbox, true mechanical reverse (SM5).
2. Semi-automatic finger-trigger shifting (SE5).

Ducati 848 Nicky Hayden Edition, 2010

Ducati 848 Nicky Hayden Edition, 2010



 



The new Ducati 848 Nicky Hayden Edition enjoys all the performance advancements of the entire Superbike family, while adding its own innovations to redefine the middleweight sport bike class.

The words ‘agile’ and ‘refined’ aptly describe the 848. At 168kg (369lbs) the 848 is an amazing 20kg (44lbs) lighter than its predecessor, and a significant 5kg (11lbs) lighter than its larger capacity brother, the 1098.

The highly advanced 848 engine uses an improved method of engine case production in which cases are vacuum die-cast formed. While providing significant weight savings of more than 3kg (6.5lbs), this method also ensures consistent wall thickness and increased strength. Further refinements include a sophisticated wet clutch that offers 1kg (2.2lbs) less weight, a much higher service life, improved clutch feel and quiet operation.

With the first twist of the wrist, the powerful rush of the Testastretta Evoluzione engine confirms that the rules have changed. The 848’s 134hp is not only 30% more powerful than its predecessor, but it provides a power-to-weight ratio even better than the potent 999.

Several upgrades features in addition to the special Hayden livery and full specifications listed below:
  • LED dash illumination for better visibility – particularly at night
  • Inclusion of a 30mm mirror extension kit, enabling a choice of two stem lengths for better vision
  • Aluminium cam belt tensioner pulleys to reduce weight and moving mass; in turn enabling better acceleration.

Engine
The 848 Testastretta Evoluzione engine becomes the benchmark for the middleweight sportsbike category, benefitting from all the experience accumulated with the larger engine on the 1198. It successfully adopts the same design guidelines and the same compact cylinder and cylinder head layout, but introduces for the first time ever an innovative solution for the crankcase, which has been designed with a further weight reduction for this advanced engine in mind. The overall layout of this engine integrates a series of avant-guard solutions, confirming the close links with the experience of Ducati’s racing department.

The 849cc engine has bore and stroke values of 94mm and 61.2mm respectively, which produce a ratio that is only slightly inferior to the 1098 (1.54 compared with 1.61), while maintaining the highly ‘over-square’ layout typical of racing engines.

Power output is an impressive 134hp (98.5kW) at 10,000 rpm and maximum torque is 71 lb/ft (96Nm) at 8250 rpm. The power and torque values confirm the high performance level of this engine, especially when compared to its predecessor, the Testastretta-engined 749.

The cylinder head has been modified in line with the characteristic bore and stroke of the engine in order to optimize the fluid dynamics of the intake (straight and plunging) and exhaust ducts and combustion chamber. The compression ratio is 12:1.

The valve angle is the same as the 1198 engine and diameter is 39.5mm for the inlet valve and 32mm for the exhaust. The technology used sees the application of a bi-metallic alloy that combines increased lightness with resistance and reliability required for these particular components. The desmodromic control system has also been designed with the weight and the inertia of the new components in mind, allowing extremely efficient valve lift during intake and exhaust phases. The excellent results achieved are confirmed by the engine’s power figures, producing outstanding performance thanks also to the use of MotoGP-derived elliptical throttle bodies, which have been fitted to the 1198 engine. The 2010 model year sees the addition of new lightweight cam belt tensioner pulleys; improving performance while shaving weight.

The design of a dedicated elliptical throttle body for the 848 demonstrates the attention that Borgo Panigale engineers have devoted to the development of the Superbike range. The cross-section is reduced from the 60 sq. mm of the 1098 to 56 sq. mm so as to optimize fluid dynamics at every engine speed. Just like on the 1098, the new cylinder heads benefit from fewer components and include magnesium covers.

This Testastretta Evoluzione engine sees the introduction of a special technology for the construction of the engine crankcase: Vacural casting. This is a forced vacuum die casting method that allows jet characteristics to be improved thanks to the absence of porosity, gas inclusion and oxidation. This allows extremely high measurement precision and greater ductility for aluminium alloy. Designers have been able to harness the benefits of this innovative process by redefining the shape and the wall thickness of the new crankcase by means of FEA (Finite Element Analysis) checks, which allowed the required reliability standards to be achieved, while simultaneously obtaining a significant weight saving of 3.5kg.

The 848 engine is fitted with a silent modular wet clutch, characterized by an exceptional resistance to wear that will lead to superior duration. This solution makes a useful contribution to weight saving, estimated to be around 1.6kg, which is also due to the use of a different type of clutch cover.

The high power figures achieved by this engine also come from the use of the same type of oil cooler and coolant radiator as the 1198’s engine, with an increased surface area assisted by lightweight, high flow electric fan assemblies.

Finally, the 848’s exhaust system follows the same layout and uses the same innovative technology as the 1198. The system terminates with Ducati’s trademark twin under-seat silencers, delivering the unmistakable signature sound of the big bore 90° L-Twin.
This power unit, just like all the other Ducati engines, has been designed to comply with Euro 3 exhaust emission norms.

Chassis


Trellis frame
Developed in cooperation with Ducati Corse, the 848 Trellis frame has a simplified tube layout featuring main section tubes increased in diameter from 28mm to 34mm, while being reduced in thickness from 2mm to 1.5mm. The result is a 14% increase in rigidity and a weight saving of 1.5kg (3.3lbs).

Single-sided swingarm
The 848, as all the Superbike family, is equipped with a unique single-sided swingarm. The engineers were encouraged to re-think the construction technique of this element. The solution was to produce the main operational components using individual aluminium castings so as to ensure strength around the pivot points, wheel hub and suspension links, with fabricated aluminium sections used to complete the construction into a single, beautifully engineered component.

Rear suspension

Highlighting the way in which individual components are influenced by each other, the new lightweight Trellis frame and single-sided swingarm have enabled a more compact and further weight-saving rear suspension linkage system to be used featuring separate lower pick-up points for the push-rod and suspension unit. This ‘tandem’ design effectively reduces stress around the linkage pick-up area of the Trellis frame. Working together with this highly efficient linkage is a fully adjustable Showa single shock for the 848, the same as the 1198.

Front suspension

At the front the 848 is equipped with fully adjustable 43mm Showa forks with radial mounts. This type of front suspension is professionally track-tuned and offers superior road holding, delivers superior feedback, and helps every rider to be more confident and in control.

Control

Brembo Monobloc calipers
The 848 brake system is characterized by M4 calipers using four 32mm pistons and two radial mounted pads. Matched to the calipers are two 320mm discs and the combination of these elements achieves spectacular braking power.

Super lightweight wheels

The 848 also benefits from lightweight Marchesini Y-shaped spoke wheels. The weight saving of 250gr achieved on the front wheel substantially reduces the moment of inertia and enhances the 848’s change of direction and braking performance. The rear wheel is just as impressive with a complete redesign for its single-sided swingarm application that has resulted in a reduction of over 1kg compared with traditional Ducati single-sided swingarm fitments. Finally a 5.50” wheel fitted with a 180/55 tyre guarantees the maximum agility at the rear.

Electronics
Desmosedici-style digital instrumentation is taken from Ducati’s MotoGP GP9 project; and for 2010 now features LED backlighting for better visibility. This pure racing, minimalist solution has no switches or buttons to compromise its clean lines. Instead, information additional to the default read-outs is managed by handlebar-mounted switch gear, allowing the rider to scroll through and select from various menus. The default read-out presents rpm and speed, with the former displayed across the screen in a progressive bar graph. Optionally, the rpm and speed can be displayed in numeric values. The instrument display also doubles as a control panel for the activation of the data acquisition system as well as listing lap times recorded by using the high-beam flash button as a stopwatch.

With the purchase of the Ducati Data Analyser (DDA), which includes PC software, a USB-ready data retrieval card and instructions, owners are ready to review and analyse the performance of the bike and its rider, and make comparisons between various channels of information. The DDA is available from Ducati Performance.

Normally used on race bikes only, the system records numerous channels of data including throttle opening, vehicle speed, engine rpm, engine temperature, distance travelled, laps and lap times. The system also automatically calculates engine rpm and vehicle speed data so as to also display gear selection as an additional channel of information. At the end of a ride or track session, up to 2mb (approximately 3.5 hours) of data can be downloaded to your PC ready to compare, analyse and get an inside view of you and your 848’s performance.

Data can be analysed in graphic form with options to zoom into detail of specific sections. Dragging a trace along a timeline to reveal individual values of the above listed channels enables the user to analyse performance in the same way that data technicians are able to do in factory teams.

Instrumentation
Digital Dashboard that displays derivation MotoGP: speedometer, tachometer, lap time on the stopwatch, clock, air temperature, water temperature, battery voltage, odometer, trip odometer fuel, preventive maintenance indicator. Spies segnalatiche: neutral arrows. projector beam, limiter, oil pressure, fuel level. Other Features: immobilizer, integrated DDA. 

Coyote, 2010

Coyote, 2010 
 





 Specification:
Dry Weight - Front.261 lbs (118 kg)
Dry Weight - Rear.401 lbs (182 kg)
Dry Weight - Total.662 lbs (300 kg)
GVWR.1012 lbs (459 kg)
GAWR - Front. 345 lbs (156 kg)
GAWR - Rear. 667 lbs (303 kg

Fuel - Total.......................3.8 gal (14.4 L)
Fuel - Main.......................3.4 gal (13 L)
Fuel - Reserve...................0.4 gal (1.5 L)
Oil Capacity......................2.875 - 3 qts (2.7 - 2.8 L)
Frame Rake......................39 degrees
Tree Rake.........................3 degrees
Trail..................................4.74" (120.3 mm)
Front Suspension...............41 mm Telescopic
Fork Length.....................+2.0" (50.8 mm)
Seat Height.......................24.5" (622.3 mm)
Ground Clearance..............4.5" (114.3 mm)
Wheel Base.......................77.5" (1969 mm)
Total Length......................102.5" (2604 mm)
Front Brake.......................4-Piston Diff Bore
Rear Brake........................4-Piston
Front Tire...........................MH90-21 56V
Rear Tire...........................250/40-R18 81V
Front Tire Pressure.............40 psi (275.8 kPa)
Rear Tire Pressure...............42 psi (289.5 kPa)
Front Wheel........................21" x 2.15" (533.4 mm x 54.6 mm)
Rear Wheel........................18" x 8.50" (457.2 mm x 215.9 mm)
Engine................................OHV 45 degree V-Twin
Displacement.....................117 c.i. (1917 cc)
Bore x Stroke....................4.125" x 4.375" (104.8 mm x 111.1 mm)
Compression Ratio.............9.6:1
Fuel System.......................Carbureted
Transmission......................6-Speed
Primary Drive....................Comp/Balance Drive
Final Drive........................1.125" (28.6 mm) Belt
Ignition..............................Electronic Single Fire
Charging Output...............35 Amp
Battery.............................310 CCA/Sealed AGM
Motorcycle Accident Lawyer Information
Richard A. Fisher
A Law Corporation
www.rfisherlaw.com


Motorcycle Accidents

Southern California motorcycle accident attorney Richard A. Fisher has been helping victims of Southern California motorcycle accidents for over thirty-five years. Our experience in handling these cases is supported by the many clients we have helped to obtain proper medical treatment and compensation due to injuries sustained from a motorcycle accident.

Types of motorcycle accidents
Whatever your experience has been in driving a motorcycle, many types of accidents involving motorcycles are common in Southern California. At the Law Offices of Richard A. Fisher, our first priority is to assess your case in detail so we can determine the type of accident you have been involved in. Whether you were rear-ended, had a left-turn collision, were involved with a drunk driver, hit from the side, etc., we can effectively help you get back on your motorcycle and retain compensation for your injuries.

Issues relating to motorcycle accidents
A motorcycle accident is very different from an auto accident. There are several different types of injuries that you can sustain from a motorcycle accident. While the types of injuries vary greatly, serious injuries can include: a brain injury, bodily injuries, a ruptured disc or even wrongful death. Our practice specializes in helping victims of motorcycle accidents recover the maximum damages allowable under the law for your case, from sprain and strain to catastrophic injuries.

Successful cases
The Law Offices of Richard A. Fisher has successfully handled hundreds of auto accident cases throughout Southern California. Some recent cases include:

= Motorcycle Accident (Riverside, California): Intersection Accident involving motorcyclist and automobile. Recovery: $320,000

= Motorcycle Accident: Woman passenger on motorcycle, when involved in a single vehicle accident. Sustained multiple fractures to leg requiring insertion of plate and fracture of scapula. Recovery: $250.000 policy limits

= Motorcycle Accident (Los Angeles, California): Intersection Accident involving motorcyclist and automobile. No witnesses - dispute as to who ran the red light. Recovery: $500,000