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2008 KTM Model Engine Oil Recommendation Chart

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Filed Under (KTM) by admin on 24-11-2010

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2008 Model Type Recommended Engine Oil Type Quantity SPORTMINICYCLES AC 50 SX MINI Motorex ATF Super (Dexron II Gear Oil) 0.15-0.2 L SPORTMINICYCLES LC 50 SX JUNIOR Motorex ATF Super (Dexron II Gear Oil) 0.15-0.2 L 50 SX Motorex ATF Super (Dexron II Gear Oil) 0.15-0.2 L 65 SX Motorex Top Speed 4T 15W50 0.5L SX 2 STROKE 85 SX Motorex Top Speed 4T 15W50 0.5 L 105 SX Motorex Top Speed 4T 15W50 0.5 L 125 SX Motorex Top Speed 4T 15W50 0.7 L 144 SX Motorex Top Speed 4T 15W50 0.7 L 250 SX Motorex Top Speed 4T 15W50 0.7 L SX 4 STROKE 250 SX-F Motorex Power Synt 4T 10W50 1.1 L 450 SX-F Motorex Power Synt 4T 10W50 1.35 L 505 SX-F Motorex Power Synt 4T 10W50 1.35 L CROSS COUNTRY 2 STROKE 65 XC Motorex Top Speed 4T 15W50 0.5L 85 XC Motorex Top Speed 4T 15W50 0.5L 105 XC Motorex Top Speed 4T 15W50 0.5 L 200 XC Motorex Top Speed 4T 15W50 0.7 L
200 XC-W Motorex Top Speed 4T 15W50 0.7 L 250 XC Motorex Top Speed 4T 15W50 0.7 L 250 XC-W (e) Motorex Top Speed 4T 15W50 0.7 L 300 XC Motorex Top Speed 4T 15W50 0.7 L 300 XC-W (e) Motorex Top Speed 4T 15W50 0.7 L CROSS COUNTRY 4 STROKE 250 XC-F Motorex Power Synt 4T 10W50 1.1 L 250 XC-F-W Motorex Power Synt 4T 10W50 1.1 L 450 XC-F Motorex Power Synt 4T 10W50 1.35 L 450 XC-W (R) Engine – Motorex Power Synt 4T 10W50 Gearbox – Motorex 4T 10W50 0.7 L 0.9 L 505 XC-F Motorex Power Synt 4T 10W50 1.35 L 530 XC-W (R) Engine – Motorex Power Synt 4T 10W50 Gearbox – Motorex 4T 10W50 0.7 L 0.9 L ENDURO RACING 450 EXC (R) Engine – Motorex Power Synt 4T 10W50 Gearbox – Motorex 4T 10W50 0.7 L 0.9 L 530 EXC (R) Engine – Motorex Power Synt 4T 10W50 Gearbox – Motorex 4T 10W50 0.7 L 0.9 L SUPERMOTO LC4 690 Supermoto Motorex Power Synt 4T 10W60 Approx. 2.0 L SPORT ATV 450 XC Motorex Power Synt 4T 10W50 2.0 L 525 XC Motorex Power Synt 4T 10W50 2.0 L LC8 950 Super Enduro (R) Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 990 Adventure Orange Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 990 Adventure Black Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 990 Adventure S Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 990 Super Duke Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 990 Super Duke R Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L

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2006 Model Engine Oil Recommendation Chart

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Filed Under (KTM) by admin on 26-11-2010

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2006 Model Type Recommended Engine Oil Type Quantity SPORTMINICYCLES AC 50 MINI ADVENTURE Motorex ATF Super (Dexron II Gear Oil) 0.15-0.2 L 50 SENIOR ADVENTURE Motorex ATF Super (Dexron II Gear Oil) 0.15-0.2 L SPORTMINICYCLES LC 50 SX JUNIOR Motorex Top Speed 4T 15W50 0.15-0.2 L 50 SX Motorex Top Speed 4T 15W50 0.15-0.2 L 65 SX Motorex Top Speed 4T 15W50 0.3L SX 2 STROKE 85 SX Motorex Top Speed 4T 15W50 0.5 L 105 SX Motorex Top Speed 4T 15W50 0.5 L 125 SX Motorex Top Speed 4T 15W50 0.7 L 250 SX Motorex Top Speed 4T 15W50 0.7 L SX 4 STROKE 250 SX-F Motorex Power Synt 4T 10W50 1.1 L 450 SX Motorex Power Synt 4T 10W50 1.25 L 525 SX Motorex Power Synt 4T 10W50 1.25 L CROSS COUNTRY 2 STROKE 200 XC Motorex Top Speed 4T 15W50 0.7 L 200 XC-W Motorex Top Speed 4T 15W50 0.7 L 250 XC Motorex Top Speed 4T 15W50 0.7 L 250 XC-W Motorex Top Speed 4T 15W50 0.7 L 300 XC Motorex Top Speed 4T 15W50 0.7 L 300 XC-W Motorex Top Speed 4T 15W50 0.7 L CROSS COUNTRY 4 STROKE 450 XC Motorex Power Synt 4T 10W50 1.25 L 525 XC Motorex Power Synt 4T 10W50 1.25 L ENDURO RACING 400 EXC Motorex Power Synt 4T 10W50 1.25 L 450 EXC Motorex Power Synt 4T 10W50 1.25 L 525 EXC Motorex Power Synt 4T 10W50 1.25 L ADVENTURE LC8 950 Adventure orange Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 950 Adventure black Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 950 Adventure S Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L SUPERMOTO RACING 450 SMR Motorex Power Synt 4T 10W50 1.25 L 560 SMR Motorex Power Synt 4T 10W50 1.25 L SUPERMOTO LC4 625 SMC Motorex Power Synt 4T 10W50 Approx. 2.1 SUPERMOTO LC8 950 Supermoto orange Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L 950 Supermoto black Motorex Power Synt 4T SAE 10W50 (for temperatures over 32° F) and 5W40 (for temperatures under 32° F) Approx. 3.0 L

HIGH POWER MOTORCYCLE IGNITION CONTROLLER Specification

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Filed Under (Tips and Review) by admin on 12-11-2010

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Product Overview Instruction FM2981 is an electrical ignition IC for large power motorcycle. It has the features of high reliability and convenience, simple peripheral circuit. Feature ã Operating Voltage Range: 5V to 20 V ã Excellent temperature characteristic ã High voltage protection ã Operating Temperature Range: -10 to ℃+80 ℃ ã DIP package, 24 pin Pin Function Pin Function Pin Function 1 External charge capacitor 13 Ground 2 Reference voltage 14 External resistor and capacitor 3 External capacitor 15 Output 4 Reference voltage 16 High voltage protection 5 Reference voltage 17 Ground 6 External charge capacitor 18 Test 7 Current source output 19 Input 8 External resistor 20 NC 9 External resistor 21 Power 10 External resistor 22 External capacitor 11 External resistor 23 External capacitor 12 Ground

DUCATI 900 SuperSport Engine performance And technical specification

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Filed Under (Ducati) by admin on 11-11-2010

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Displacement: 904 cc Bore: 92 mm Stroke: 68 mm Max. power: 75 hp at 7000 rpm Max. torque: 80 Nm at 5000 rpm Max. velocity: 220 km/h Pass-By noise: 82 dB(A) Homologation: 1992 Main Targets of Development Today’s motorcycle market requests more powerful engines, however, legislative noise and pollution limits are becoming more severe. In order to reduce development cost only small modifications were allowed. Entirely new designs of technical components (i.e. cylinder head) had to be avoided. In additon, the complete development had to be finished in a relatively short time of about three months. The most important targets of development were: better engine performance: – more max. power: +5 hp – more torque at low rpm lower noise emission: -2 dB(A) 80 dB(A) (89/235/CEE) change from carburettor to fuel injection system Figure 1, Ducati 900 SS
3 Engine performance calculation with WAVE A complete model of the new engine concept (fuel injection) with actual intake- and exhaust geometry allowed us to set up a reference engine-cycle-simulation model for further optimization. The most important parameter-variation during the cycle-studies to improve volumetric efficiency were: intake duct length valve timing constant or even lower exhaust backpressure Figure 2 shows the improvement in calculated engine performance due to different intake-duct length and modified valve timing. Figure 3 gives an example of accuracy of the calculation results compared with measured data of engine performance with new intake-duct length. Figure 4 illustrates the final engine performance with modified valve-timing, intake-duct length and new exhaust silencer. A comparison of measured performance data between the original and the redesigned engine gives shows the improvements in terms of maximum power and torque at low rpm.

Yamaha YZ250F 2001-2080 Wiseco High Performance Camshaft INSTALLATION MANUAL

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Filed Under (Yamaha) by admin on 15-01-2012

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Wiseco’s new Camshafts are made from premium materials, state-of-the-art forgings, machined to exact tolerances, and specifically engineered for high performance and maximum durability. Brought to you by one of the most trusted names in the industry… Wiseco. Wiseco Cam- blue OEM Cam- red Wiseco’s new high-performance camshafts for the Yamaha YZ250F produce 3% horsepower and 3% torque gain over the stock OEM camshaft across the entire RPM range.

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Harley Davidson engine modification

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Filed Under (Harley Davidson) by admin on 02-11-2010

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Looking for high performance engine specifications for your Harley- Davidson motorcycle? Need to know what high performance equipment provides the best performance at the lowest costs for your H-D. Here you can look at performance modifications with the dyno runs of many different engine combinations, so you can pick your own equipment, horsepower rating and dollars to spend. An incremental approach to engine development has provided some good results on many engines. Find out what combination of carburetor, camshaft, exhaust systems, ignition systems, head work, pistons and the other high performance components work well. There are tests of some equipment that did not work well. Know what works and what does not. Compare the results of your current bike to those seen here. Are you getting the performance you paid for? If you have had success in your engine development program, send a picture of the bike and your performance results (dyno sheets or time slips) to the V -Twin Café for publication. The V -Twin Café is always looking for good articles on motorcycle performance work. If you write performance oriented articles, contact us. Twin Cam 88 and 95 cubic inches Twin Cam Engines from Harley-Davidson have a good design and some nice upgrades available from the local Dealer including a 95 cubic inch big bore kit. What can you expect from this engine? Here are some engine configurations that have been tested. 45 to 50 HP Stock Evolution Engines are the starting point for all the modifications. The only way to validate what the performance gain was for any change is to have dyno runs before and after. These are the before runs of several bikes. 55 to 65 HP Up to $750 Stage One Evolution Harley-Davidson engines involve no internal changes made to the engine. All modifications are made by changing or modifications to external components on the engine. These components include air cleaners, carburetors, exhaust systems and ignition systems. No special tools or training is required to perform stage one modifications.

8950 and 8960 Series High Performance Tire Changer Operation Manual

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Filed Under (Tips and Review) by admin on 23-11-2010

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GENERAL CAUTIONS A. DURING THE USE AND MAINTENANCE OF THE MACHINE IT IS MANDATORY TO COMPLY WITH ALL LAWS AND REGULATIONS FOR ACCIDENT PREVEN- TION. B. THE ELECTRICAL POWER SOURCE MUST HAVE A GROUND CABLE AND THE GROUND CABLE OF THE MACHINE MUST BE CONNECTED TO THE GROUND CABLE OF THE POWER SOURCE. C. BEFORE ANY MAINTENANCE OR REPAIRS ARE ACCOMPLISHED THE MACHINE MUST BE DISCONNECTED FROM THE AIR AND ELECTRICAL SUPPLY. D. NEVER WEAR TIES, CHAINS OR OTHER LOOSE ARTICLES WHEN USING, MAINTAINING OR REPAIRING THE MACHINE. LONG HAIR IS ALSO DANGEROUS AND SHOULD BE KEPT UNDER A HAT. THE USER MUST WEAR PROPER SAFETY ATTIRE – GLOVES, SAFETY SHOES AND GLASSES. 2.0 INSTALLATION Your new JBC 8950 or 8960 Series Tire Changer requires a simple installation procedure requiring only a few moments. Follow these instructions carefully to insure proper and safe operation. The Tire Changer is delivered mounted to a wooden skid. Remove tire changer from its mounts carefully, taking care to avoid any back strain. Place Changer where proper operation will be unobstructed to all sides. Install the machine in a covered and dry place. 2.0.1 Models with SRA attached (8955IN, 8965IN) Once placed in the desired location the tire changer must be bolted to the floor using only the rear two mounting holes. Mounting anchors are provided with those machines with a Safety Restraint Arm. Tire Changer must be anchored to concrete floor if equipped with a “Safety Restraint Arm” BUILDING ELECTRICAL INSTALLATION MUST BE MADE BY A LICENSED ELECTRICIAN. Check that the electrical specifications of the power source are the same of the machine. The machine uses 110v, 60 hz, single phase 20 amp source. Electric specifications are clearly marked on a label at the rear of the machine. FAILURE TO PROVIDE PROPER ELECTRICAL SUPPLY AND GROUNDING WILL CREATE A SHOCK HAZARD TO THE OPERATOR

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2004 Aprilia Mille RSV1000R SPECIFICATIONS AND PERFORMANCE DATA

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Filed Under (Aprilia) by admin on 06-11-2010

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Type: ………………….60°, DOHC V-twin Valvetrain: …………four valves per cyl., shim under bucket adjustment Size: ………………………………997.62cc Bore/stroke: ……………. 97.0 x 67.5mm Comp. ratio: ………………………. 11.8:1 Carburetion: Marelli integrated engine management, 2 x 57mm throttle bodies Exhaust:…………………………….2 into 2 DRIVE TRAIN Transmission: …………………. 6-speed Final drive: ………………………….. chain RPM @ 65 mph/redline..3975/10,500 DIMENSIONS Wheelbase: ………………………….. 55.7″ Rake/trail……………………..24.8°/4.00″ Ground clearance: ……………………4.8″ Seat height :…………………………..31.5″ GVWR: …………………………….884 lbs. Wet weight: …………………. 471.5 lbs. Carrying capacity: …………..412..5 lbs. SUSPENSION Front:Showa 43mm inverted cartridge forks, stepless adjustment for comp., rebound, and preload, 4.72″ travel Rear: ..Sachs monoshock, adjustable for comp., rebound, preload and ride height, 5.24″ travel BRAKES Front:……Two Brembo “Triple Bridge” 4-piston, 4-pad calipers, steel braided lines w/two 320mm floating discs Rear: ..Brembo twin-piston, dbl-action caliper, braided line, w/220mm disc TIRES & WHEELS Front: …… 120/70/ZR17 Michelin Pilot Sport on 3.50″ x 17″ wheel Rear:………. 190/50ZR17 MichelinPilot Sport on 6.00 ” x 17″ wheel ELECTRICS Battery: …………………………12V, 10AH Ignition: ……Integrated digital ignition Headlight: ……………………….4 x 55W FUEL Tank capacity: ………………….4.76 gal. Recommended octane…………95 RON High/low/avg.mpg: ….39.5/28.7/ 31.4 Instruments:……..Speedo, tach, clock, odometer, coolant temp., Tripometer (max. and ave. speed), battery voltage, 40-lap timer Indicators: ……high beam, turnsignal, adjustable shift light, low oil, low fuel sidestand, neutral, ECU fault MSRP: ……………………………. $13,899 Routine service interval:……..5100 mi. Valve adj. interval: ……………. 5100 mi. Warranty:……24 mo., unlimited miles. Colors: LeadGrey/Magnet Grey, Aprilia Back/Diablo Black, Fluro Red/Lead Grey PERFORMANCE Measured top speed……173.3 mph 0-1/4 mile………………10.43 sec. @ 135.44 mph 0-60 mph………………..3.09 sec. 0-100 mph………………6.27 sec. 60-0 mph……………………119.3′ Power to Weight Ratio……..1:4.14 Speed @ 65 mph indicated ….61.6 Low end Mid-range Top end Despite all the retuning on the new “Magnesium” engine, we found a noticeable decrease in midrange that was barely offset in the 1/4-mile by a slight increase at peak rpm and a 500-rpm greater rev range. Still, it is a very satisfying powerplant to ride. TEST NOTES PICKS Exotic styling that is arguably the best in the class Improved rider compartment that feels much better A bargain price for an Italian superbike PANS The engine’s ‘improvements’ cost midrange performance Comfort is a relative term, it’s still mediocre Sidestand touches down too easily in hard cornering 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 12345 6789 10 11 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 SAE CORRECTED REAR-WHEEL TORQUE, LB. FT. SAE CORRECTED REAR-WHEEL HORSEPOWER RPM, THOUSANDS 113.9 hp 66.6 lb. ft. • • DYNAMOMETER DATA M/C RATING SYSTEM EXCELLENT VERY GOOD GOOD FAIR POOR ——Open Sportbike—— Engine Transmission Suspension Brakes Handling Styling Riding Impression Instruments/Controls Attention to Detail Value OVERALL RATING

HARLEY DAVIDSON EFI SCREAMIN' EAGLE BIG BORE EFI STAGE 2 KIT INSTALLATION INSTRUCTIONS

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Filed Under (Harley Davidson) by admin on 29-01-2011

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INSTALLATION Installation of this kit is divided into six steps: 1. Big-Bore Cylinder and Piston Conversion 2. High Performance Camshafts 3. High Performance Clutch Diaphragm Spring 4. High Performance Air Cleaner 5. Calibrate the ECM 6. Exhaust NOTES This Big-Bore Stage 2 kit is intended for High Performance applications only. This engine-related performance part is legal for sale or use in California on pollution-controlled motor vehicles. Engine-related performance parts are intended for the experienced rider only. -J04173 1 of 5 The air cleaner contained in these kits is designed to perform with these kits only. Any other combination of components is not confirmed to be legal for street use. The Product Information Label contained in this kit is required in the state of California only. This label is required to aid in passing the California Smog Check Program. Place the Product Information Label on the right side of the frame, directly beneath the VIN sticker. Do not place the label on motorcycles other than those specified in the Instruction Sheet. Gaskets provided in the 1690 conversion kit eliminate the need for original head gasket O-rings. For this reason, DO NOT install the Original Equipment (OE) O-rings (Part Number 11273) to the top of cylinder dowels, or severe engine damage may occur. Big-Bore Cylinder and Piston Conversion NOTE Installation of this kit requires removal of the cylinder heads, cylinders and pistons. Refer to Section 3, ENGINE: STRIPPING MOTORCYCLE FOR SERVICE and TOP END OVERHAUL of the applicable Service Manual for instructions. High Performance Camshafts NOTE Installation of this kit requires removal and re-installation of the cam support plate. Refer to Section 3, ENGINE: BOTTOM END Cam Support Plate, Removal and Disassembly/Assembly (Camshaft, Camshaft Bearings) of the applicable Service Manual for instructions. Measuring Piston-to-Valve Clearance After installing non-stock cams, check piston-to-valve clear- ance. 1. Apply 1/8-inch (3 mm) layer of clay to crowns of pistons in areas where valves meet pistons. 2. Refer to the appropriate Service Manual and assemble the heads and valve train, and tighten cylinder studs to torque specified. 3. Turn engine through two complete revolutions by hand. 4. Remove heads and measure clay at its thinnest point. NOTE Clay must measure 0.080 inch (2.03 mm) at its thinnest point. If this measurement does not meet minimum thickness, depth of valve notches must be increased. The depth of the notches must not exceed 0.135 inch (3.43 mm). Measuring Valve-to-Valve Clearance NOTE Wait ten minutes before turning the engine after installing push rods. This allows tappets to bleed down and prevents you from bending push rods or valves. 1. Rotate the engine so that both valves of the front cylinder are partially open. Shine a light through the exhaust port and look through the spark plug hole to view the valves. Turn engine, if required, to the point where the exhaust evel sensor to the fuel pump with screw (3). Tighten the screw enough to seat the fuel sensor against the mounting tab e. Route fuel level sensor wiring under the fuel hose and connect the fuel level sensor to the low fuel switch connector on the fuel pump module. If necessary use the jumper harness (Figure 4, item 5). f. See Figure 2. Secure the fuel pump wires and con- nectors

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2006 King Cobra Service Procedure

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Filed Under (Cobra) by admin on 10-11-2010

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Cobra CX50 SR is a close-tolerance high performance machine and break- in time is very important for maximum life and performance. The CX50 SR can be ridden hard after the first ½ hour break-in time but it is recommended that no adjustments are made to the carburetion or suspension until the full 8 hours of bike break-in has elapsed. Also, after the engine, transmission, and drive train have been broken-in for the full 8 hours, the bike will be faster! Use a fuel / oil mixture of 32:1 for the full 8 hour break-in period. Be sure to use high-octane pump gas, with Cobra’s specially formulated Cobra Venom 2-cycle Race Oil . (Part # MCMUOL02) CAUTION: Failure to use proper fuel, oil, or fuel/oil mixture may result in premature engine wear or damage to the machine. Adhering to the following break-in schedule will result in long lasting high performance machine. • Start bike on stand • First 5 minute period, operate the bike on the stand with a combination of idle and high RPM operation. (avoid prolonged high RPM but spin the rear wheel good at least once or twice per minute) • Allow bike to cool • Ride for 15 minutes maximum (avoid prolonged high RPM operation and avoid abusing the clutch with throttle blipping. • Cool and inspect bike for loose fasteners. • Next ½ hour of operation, avoid prolonged operation at Wide Open Throttle. • After 1 hour of operation o Check for loose bolts and nuts on the bike and retighten as necessary (proper toque values are listed under Specifications). o Clean the carburetor bowl. o Change the transmission / clutch lubricant. • After 8 hours of operation o Change the fork oil. o Have a Certified Cobra Mechanic change the shock oil. • Your bike is now ready for the highest level of competition! NOTE: During break-in the bike will likely lose some engine coolant through the radiator overflow hose. Losing up to 4 oz (120 ml, ½ cup) is normal. Proper coolant level will cover the top of the radiator cores. Removing the radiator cap and looking inside is the only way to check the coolant level. 8
Never open the radiator cap of a machine that has a hot or warm engine or one that has recently been ridden. Burning and scalding could occur. CAUTION: It is important that the radiator cap is installed correctly and completely otherwise engine damage could occur. Starting Procedure Before starting the machine inspect the following: • Check for proper tire pressure in both tires. • Observe the chain tension and adjust if necessary. • Observe the coolant level and fill if necessary. • Verify that the chain rollers and sliders do not have improper wear. • Verify that the handlebars are tight. • Check the throttle for smooth operation and that it ‘clacks’ shut properly. • Check for loose bolts and nuts, and re-torque as necessary. • Verify that the air filter is clean and properly saturated with oil. • Insure that the fuel tank contains an adequate volume of fuel / oil mixture to complete the distance required. (High octane pump gas with Cobra’s specially formulated Cobra Venom 2-cycle Race Oil ) • Turn the fuel on by rotating the fuel petcock knob to the vertically downward position (reserve position is horizontally forward) CAUTION: For best results from your Cobra Motorcycle use only the recommended fuels. Testing has shown that most ‘race’ fuels actually degrade performance. Always wear a helmet and other protective riding gear. When your pre-ride inspection is complete the bike may be started. For a cold engine follow this procedure. 1. Place the motorcycle on a stand of sufficient strength that positions the motorcycle in a level upright position with the rear wheel off the ground. 2. Pull up the choke knob and turn it to lock it. 3. Kick start the engine. 4. Rev the engine in short spurts, turning the throttle no more than 1/4 open until the engine will run without the choke.

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