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HONDA CB650/ 750F/ 900F/ 1100F/ GL1100 Spark Unit Set Installation Manual

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Filed Under (Honda) by admin on 05-04-2011

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INSTALLATION INSTRUCTIONS: 1. All connections must be of the highest quality, use crimped or soldered connections; twisted wires will not give a satisfactory operation. 2. Remove the seat and/or petrol tank to gain access to the original spark units (if fitted); these are normally fitted under the seat between the top frame tubing. Each of these units consists of a small alloy metal box with sleeved wires terminated by a small connector (coupler). They also have a mounting tab with a single fixing hole. 3. On four cylinder machines there will be two units, normally mounted back to back; one for cylinders 1&4 and one for cylinders 2&3. 4. For safety, disconnect the battery. 5. Unplug the couplers from each of the units. Undo the fixings and remove the units. 6. Fit the new spark units in the place of the old ones or find a suitable alternative, close to the connectors. Secure the units to the frame or mounting platform using the supplied tie-straps and adhesive mounting base (if required). If required, a thin sheet of rubber or double-sided tape can be used to keep the units in position. Do not completely wrap the units in foam rubber. 7. Push the wiring harness plugs into the new spark unit socket connectors; they will only fit one way. Reconnect the battery. 8. If you are rewiring the machine or do not have the standard wiring harness, the spark unit wire colours & functions are as follows: GREEN Ö GROUND (0 VOLTS) BLACK/WHITE Ö IGNITION SUPPLY (+12 VOLTS) VIA ENGINE STOP SWITCH YELLOW Ö IGNITION COIL OUTPUT (TO COIL —) WHITE Ö PULSE GENERATOR (WHITE RING) BLUE Ö PULSE GENERATOR (UNMARKED) There are two pulse generators, one for cylinders 1&4 and one for cylinders 2&3. The left hand one is normally for cylinders 1&4 (see fig.1). There are two wires of the same colour coming from each pulse generator, one of these wires is normally marked with a white band. The pulse generator wire with the white band connects to the white wire from the corresponding spark unit, the other pulse generator wire connects to the blue wire on the corresponding spark unit. If the white band is missing, this is normally the upper wire coming from the pulse generator. 9. Refit the seat and tank (if removed earlier). 10. Fitting is now complete, although for best results you may wish to verify the ignition timing, see the following guide

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Honda CG125 Owners Workshop Manual

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Filed Under (Honda) by admin on 25-11-2010

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Clean the air filter Pull off the right-hand side panel and remove the two nuts which secure the air filter cover. Withdraw the cover, checking that the sealing gasket is in good condition, pull out the retaining spring and withdraw the element assembly. Peel off the inner and outer foam sleeves. Wash all components in white spirit (Stoddard solvent) or in warm water and detergent and dry them thoroughly. Soak the foam sleeves in the specified oil, then squeeze them gently (do not wring them out or they will be damaged) to expel all surplus oil. Refit the sleeves to the element frame. On reassembly ensure that all components are correctly fitted so that unfiltered air cannot bypass the element. 2 Check the spark plug Remove the spark plug cap, unscrew the plug and check its condition, comparing it with the photographs on page 65. If it is badly worn or fouled it must be renewed. If it is fit for further service check the gap and reset it if necessary, as described in Chapter 3.8. 3 Check the valve clearances It is important that the correct valve clearance is maintained. A small amount of free play is designed into the valve train to allow for expansion of the various components. If the setting deviates greatly from that specified, a marked drop in performance will be evident. In the case of the clearance becoming too great, it will be found that valve operation will be noisy, and performance will drop off as a result of the valves not opening fully. If on the other hand, the clearance is too small the valves may not close completely. This will not only cause loss of compression, but will also cause the valves to burn out very quickly. In extreme cases, a valve head may strike the piston crown, causing extensive damage to the engine. The clearances should be checked and adjusted with a cold engine. Place the machine on its centre stand and remove the rocker cover, taking care not to damage the 0 ring. Remove the gearchange pedal and the left-hand outer cover to expose the generator rotor. Remove plug and allow old oil to drain Remove the spark plug, then slowly rotate the engine anticlockwise by way of the generator rotor, watching the inlet valve. When it has opened and closed again (sunk down and risen up to its original position), rotate the engine further until the T mark on the rotor periphery aligns exactly with the raised index mark which is positioned between 12 and 1 o’clock (from the crankshaft) on the generator stator. The engine will then be in the correct position for checking the valve clearances, namely at Top Dead Centre (TDC) on the compression stroke; check that there is free play at both rockers. Using a 0.08 mm (0.003 in) feeler gauge, check the clearance between the top of each valve stem and its corresponding rocker. The feeler gauge must be a light sliding fit, with the rocker and valve stem just nipping it. If necessary, slacken the locknut, and turn the small square-headed adjuster to obtain the correct setting. Tighten the locknut, holding the adjuster at the same time to prevent it from moving. Finally, recheck the setting and then repeat the procedure on the other rocker. 4 Check the contact breaker points and ignition timing Note: since the generator stator plate is located by its countersunk retaining screws, the ignition timing can only be altered by opening or closing the contact breaker gap; therefore both operations are described as one. The full procedure is given here for ease of reference, but if the points are found to be in good condition and if the gap has not altered or is within the tolerance, then the ignition timing will be sufficiently accurate and there will be no need to carry out the full check. First remove the gearchange pedal, the left-hand outer cover, the spark plug and the left-hand side panel

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.

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2005 Honda CRF450R OWNER'S MANUAL AND COMPETITION HANDBOOK

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Filed Under (Honda) by admin on 02-12-2010

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Normal Engine Stop 1. Shift the transmission into neutral. 2. Turn the fuel valve OFF. 3. Lightly open the throttle (1) 2 – 3 times, and then close it. 4. Depress and hold the engine stop button (2) until the engine stops completely. Failure to close the fuel valve may cause the carburetor to overflow, result in hard starting. Emergency Engine Stop To stop the engine in an emergency, press the engine stop button. Basic Operating Instructions 15 Help assure your CRF’s future reliability and performance by paying extra attention to how you ride during the first operating day or 15 miles (25 km). During this period, avoid full-throttle starts and rapid acceleration. This same procedure should be followed each time when: •piston is replaced •piston rings are replaced •cylinder is replaced •crankshaft or crank bearings are replaced Break-in Guidelines 16 Basic Operating Instructions Servicing Your Honda 17 Servicing Your Honda Keeping your CRF well maintained is absolutely essential to your safety. It’s also a good way to protect your investment, get maximum performance, avoid breakdowns, and have more fun. To help keep your CRF in good shape, this section includes a Maintenance Schedule for required servicing and step-by-step instructions for specific maintenance tasks. You’ll also find important safety precautions, information on oils, and tips for keeping your Honda looking good. An ICM (Ignition Control Module) system is used on this motorcycle; consequently, routine ignition timing adjustment is unnecessary. If you want to check the ignition timing, refer to the Honda Service Manual (page 156).

HONDA GL1500CD/ VALKYRIE Specifications

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Filed Under (Honda) by admin on 29-01-2011

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position when it comes to the environment. We continue to develop low-emission technologies for our current and future motorcycles, ATVs, scooters and personal watercraft. We already produce models that exceed the stringent 2008 CARB emissions requirements years ahead of schedule. And that’s the kind of performance everybody can appreciate. BE A RESPONSIBLE RIDER. Riding a motorcycle is an exercise in responsibility—to yourself, to others, to the environment and to the sport. So remember, wear a helmet, eye protection and protective clothing whenever you ride. Never ride under the influence of drugs or alcohol, and never use the street as a racetrack. Inspect your motorcycle before riding, read your owner’s manual, and see your local Honda Dealer concerning reimbursement through the Honda Rider’s Club of America™for Motorcycle Safety Foundation (MSF) rider training.* Always obey local laws, use common sense, and respect the rights of others when you ride. Make sure you have a proper license when riding on public roads, and never modify your motorcycle’s exhaust system. 03 SPECIFICATIONS ACCESSORIES VALKYRIE Log on to our website at honda.com for more information about Honda Genuine Accessories . On a bike like the Valkyrie, you can never have too much chrome. And that’s precisely why we offer our Chrome Sidecovers and Chrome Swingarm-Pivot cover to help really brighten up these areas. Here’s one of our most popular Valkyrie accessory options. These Leather Saddlebags look great, hold plenty, and match some of the other leather accessories we have available. Got a long trip planned, or is winter right around the corner? Then make sure you take a look at-or should we say take a look through-a Honda Genuine Accessories Windshield for your new Valkyrie. GL1500CD 1520cc liquid-cooled horizontally opposed six-cylinder with belt-driven overhead camshafts Six 28mm constant-velocity carburetors 71.0 x 64.0mm Solid-state digital Five-speed constant-mesh Shaft 150/80R-17 radial 180/70R-16 radial Dual-disc with twin-piston calipers 28.9 inches 66.5 inches 5.3 gallons, including 1.1 gallon reserve 681 pounds Black Windshield, leather saddlebags, chrome exhaust tips, chrome rear carrier, CB transceiver kit, passenger CB talk switch, studded backrest pad, studded main seat, studded rear seat, deluxe backrest pad

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Honda Motorcycle Na vigation Kit

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Filed Under (Honda) by admin on 28-11-2010

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Honda Motorcycle Na vigation Kit Honda Motorcycle Navigation Kit G e n e r i c A c c e s s o r i e s 2 0 0 8 For your peace of mind Honda Genuine Accessories are carefully designed, researched and stringently test ed tot he highest standards. And since they’re all Honda approved you’llknowthat they’rejustastoughand well made as your Honda motorcycle. Please Note -All prices quoted are correct at time of printing and are subject to change without prior notice. y e a r w a r r a n t y GENUINE ACCESSORIES Honda Motorcycle Navigation Kit Model Part Number Description RRP Remarks NAKED CBF 600 08A 40MER800B CONTAINSNAVI GAT ION UNIT COMPONENT, CONTROLLER, £549.99 EARPHONE, MANUAL, MCC AR KIT, UN I TAT TACHM ENT KIT, BATTERY CBF 600 08A 40MER800A CONTAINSNAVI GAT ION UNIT COMPONENT, CONTROLLER, £549.99 EARPHONE, MANUAL, MCC AR KIT, UN I TAT TACHM ENT KIT, BATTERY ON/OFF XL700V 08A 40MFF800 * CONTAINS NA VI GAT ION UNIT COMPONENT, £549.99 Must be combined with quartet harness CONTROLLER, EARPH ONE, MANUAL, 08A 30MFF800 MCCAR KIT, UNI TAT TACH ME NT KIT, BATTERY XL 1000V 08A 40MBT800 CONTAINSNAVI GAT ION UNIT COMPONENT, £549.99 Must be combined with quartet harness CONTROLLER, EAR PH ONE, MANUAL, 08A 30MBT800 MCCAR KIT, UNI TAT TACH ME NT KIT, BATTERY TOURERS/SPORT TOUR ERS DN-01 08A 40MEH800 CONTAINSNAVI GAT ION UNIT COMPONENT, CONTROLLER, EARPHONE, £549.99 Must be combined with quartet harness MANUAL, MC CAR KIT, UNI TAT TACH MEN T KIT, AND BATTERY -CONTAINS 08A 30MEW800 ADDITIONALSTE ERIN G HANDLE C LAMPS FORV ISU AL INTE GRAT ION OF THE COMPONENT NT700V 08A 40MEW800 CONTAINSNAVI GAT ION UNIT COMPONENT, CONTROLLER, EARPHONE, £549.99 Must be combined with quartet harness MANUAL, MC CAR KIT, UNI TAT TACH MEN T KIT, BATTERY

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Honda XR600/ XR650L Camshaft Installation and removal Instructions

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Filed Under (Honda) by admin on 05-12-2011

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Remove the tappet covers. Remove the crankshaft cap and timing hole cap on the left engine case cover. Remove the spark plug. Rotate the engine in a counter clockwise direction. Position the engine at true top dead center (TDC) using the mark on the flywheel. True top dead center occurs when both the intake and exhaust valve are closed when the piston is at TDC. This is technically the end of the compression stroke and the beginning of the power stroke. The “artificial” TDC is during the overlap when both the intake and exhaust valves would be open. Since the rocker arms are located in the valve cover on an XR600, true TDC occurs when the cam lobes are pointed downward when the piston is at TDC. Remove the cylinder head cover. Warning, do not drop the locating dowels into the cam chain cavity. There are two dowels, one on either side of the cover. Remove and discard the gasket. Note the positioning of the cam lobes, this will help during installation of your new Hot Cams camshaft. Note also the location of the sealed bearing on the end of the camshaft and the direction in which it is facing. Loosen the bolts that hold the camshaft sprocket. Remove the lower camshaft sprocket bolt first, it will be necessary to rotate the engine. Rotate the engine back to TDC. Release the spring tension on the cam chain tensioner by lifting the end of the spring out of its hole in the tensioner block. A spring tool is a good method. Be careful not to scar the cylinder head’s gasket surface for the cylinder head cover. Remove the allen bolt that holds the end of the tensioner block shaft
just to the inside of the tensioner block. Note the location of the tensioner block shaft cap ridge. Using a pair of pliers pull the shaft out by grasping the ridge and using a clockwise rotation of the shaft while pulling outward. Pull the tensioner block upwards, out of the cylinder head. Remove the top camshaft sprocket bolt. Pull the sprocket off the camshaft but maintain upward tension, do not allow the chain to sag, it is possible for the chain to “slip” on the bottom sprocket of the crankshaft and change the cam timing. Remove the camshaft. Remove the cam bearings. Set the stock camshaft with the auto-decompression aside. It is not possible to use the auto-
decompression on the Hot Cams so do not attempt to re-install. Use a manual decompression. Install the bearings onto the new Hot Cam

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Honda CBR F4 or F4I 600cc Engine PE-ECU-1 System INSTALLATION

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Filed Under (Honda) by admin on 05-01-2012

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The PE-ECU-1 can be installed on virtually any 1,2,4,6 or 8 cylinder even-firing engine that requires fuel injection and/or ignition control. All of the functions of the ECU can be adjusted by using a laptop or PC running Windows. The following describes the basic requirements for using the system with a Honda 600cc F4 or F4I motorcycle engine. Please refer to the User’s Manual for a more in-depth description. Input Sensors The stock Honda F4 and F4I crank position sensors can be used with the PE-ECU-1 engine control system, provided the engine controller is configured for a 2- wire variable reluctance sensor. The configuration for the input is handled at the factory via a set of board jumpers. If the type of crank sensor should ever be changed, please contact PE for support on this issue. The stock Honda crank sensor should be wired according to the following: • Solid Yellow Wire – Pin 34 on ECU • Yellow with White Stripe (GND) – Pin 25 on ECU Failure to wire the sensor in this way may result in an engine that misfires and/or has incorrect ignition timing. The stock Honda trigger wheel cannot be used with the PE-ECU-1 system due to the differences in the number and spacing of the teeth. The PE-ECU-1 must be provided with a 12-1 pulse-train, correctly phased with TDC #1 according to Figure 1

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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.

Honda CB 750 SOHC 8v Performance and Racing Camshafts Installation

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Filed Under (Honda) by admin on 18-11-2011

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Upon installation of your WEB-CAM camshaft, check the following. These operations are very important to engine
life, please follow instructions! If your cam is described as a bolt-in in the WEB-CAM catalog, you may skip 1-5
below. Check piston to valve clearance. Provide the necessary clearance by removing material from the piston Minimum .050″ intake, .080″ exhaust.1. Check valve to valve clearance. It may be necessary to remove material from the valves or sink valve seat height in head. 2. Check the valve spring retainer to valve guide clearance at maximum lift. Remove material from the top,of valve guides to provide a minimum of .030″ clearance. 3. Check for valve spring coil bind at maximum valve lift. Clearance at every coil should be at least .015″4. Be certain that cam and/or rocker arms rotate
freely in head or block. Remove material from head,block, or rocker arms where necessary.5. Engine and cam life depend on proper installation. New or reground followers should be used when installing WEB-CAM profiles. Apply the provided
assembly lube to cam lobe and follower surfaces

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