yamaha ttr 250 wiring diagram

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Yamaha TTR 250 Dual Sport Kit Installation

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Filed Under (Yamaha) by admin on 31-12-2011

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1. Get a degree in Mechanical and Electrical Engineering. (Just kidding!) 2. Remove the seat, side panels, and gas tank. If you are color blind or even think you might be a little color blind, now is the time to get someone to assist you. Successful installation of the kit requires good color recognition. You want to go riding this weekend, don’t you? Photo 1 3. Unplug the yellow, blue and black taillight wires from the stock wiring harness (Photo 1). 4. Unplug the headlight from the stock wiring harness and remove. 3 Photo 2 5. Remove the headlight on/off switch. Unplug the red two pin connector with yellow and brown wires (Photo 2) from its mate that was under the fuel tank. 6. Clip the zip tie holding the headlight leads to the fork tube, coil it up and secure it to the frame in front of the voltage regulator as shown in Photos 3 and 4. Remove bracket shown in Photo 3. 4 Headlight Leads Remove this bracket Photo 3 Coil up wires and secure with a zip tie Photo 4 7. Rear Turn Signal Installation: Turn signal mounting requires that you drill a 3/8 inch hole in either side of the rear fender near where it meets the side panels. You can achieve a clean, durable installation using this mounting location. Mount the rear turn signals by drilling a 3/8 hole in the rear fender in the location shown in Photo 5 and Photo 6. Use the templates provided at the back of this instruction manual to determine the hole locations. Note that you will also be drilling a 3/16 hole on each side as well. You may find it easier to remove the fender to drill and attach the turn signals rather than performing this modification while the fender is on the bike

Kawasaki Ninja 250 FAQ

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Filed Under (Kawasaki) by admin on 15-11-2010

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Am I too small for this motorcycle? Duke – Sun May 14 17:38:31 2000 I’m only about 5’2″ and don’t have a problem, even though I can only touch the ground with the ends of my toes. Once you get a feel for the balance of the bike it’s not hard to keep everything upright. Only place I have trouble is pushing the bike backwards in a parking lot. Usually I just walk the bike (beside it) to where I can get on and get going. How does the EX500 compare to the EX250? Craig M. – Mon May 22 10:23:29 2000 I have both the EX250 and the EX500; both are Y2K models. The 250 is a screamer that performs well and can easily get me into trouble. My only complaints about the 250 are the excessive nose dive when getting on the front brake hard and the skittishness of the rear during high speed cornering. Both are easily corrected with suspension adjustments, I’ve just been too lazy to get the parts and do the work. A bit more wind protection would be great too. The 500 addresses these problems, the diving of the front end (to a degree); the rear’s skittishness and the wind protection. A plus for the 500 is the greater torque and power off the line; it pulls stronger (in my opinion) and will get you into illegal speed territory just a bit quicker than the 250. With greater weight, is has more stability in high speed and windy situations. Insurance is just about the same for both, with the 250 getting the nod for gas mileage. Service requirements are almost identical for both as well, being that they’re both parallel twins, the technology is the virtually the same. The downfalls of the 500: $2K more than the 250 (can do a lot to the 250 with that kind of money); buzzy mirrors, barely useful; heavier weight to have to push around the garage; lesser gas mileage (55-60 MPG; 250 pushes 70 MPG easily); engine is worse than a nervous dog shaking around at idle and at speed (here the 250 is far superior and much smoother). In my opinion, the 500 is a better suited for a larger rider, from a comfort standpoint. I feel I can stretch out a bit more on it than the 250 (I’m 5′ 9″, 160 lbs). The 250′s brakes are better tuned than the 500 and the shifter is much smoother. That may be due to the 3,500 mile difference between the two bikes. Bottom line, both bikes are great, the 250 is now my wife’s ride (mainly) and the 500′s mine (unless she steals the keys away). In time, I’ll make the adjustments to the 250; she doesn’t push it like I do.

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2008 KTM 250 SX-F 250 XC-F, XCF-W 250 EXC-F, EXC-F SIX DAYS INSTALLATION MANUAL

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Filed Under (KTM) by admin on 22-10-2010

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Hand brake lever The hand brake lever [1] is mounted on the handlebars on the right and actuates the front wheel brake. The adjusting screw [A] can be used to change the basic position of the hand brake lever (see “Maintenance”). 1 A Short circuit button The short circuit button [2] turns off the engine. When pressing this button, the ignition circuit is short-circuited. 2 Headlamp switch (XCF-W) In this model the headlamp is switched on with the pull switch [5] . 5 Flasher switch The flasher switch is a separate unit and is mounted on the left portion of the handlebar. The wire harness is designed in a way that whenever you want to use your bike off-road, you can dismount the entire turn indicator system without affecting the function of the remaining electrical system. Flasher left Flasher right
OPERATION INSTRUMENTS » ENGLISH 7 1 2 3 4 5 Starter button Pushing the red starter button [1] will actuate the E-starter. Emergency OFF switch (EXC-F Australia) The red emergency-OFF switch [2] is arranged adjacent to the throttle grip. In this position, the E-starter is operational and the engine can be started. In this position, the E-starter and ignition circuits are interrupted.The E-starter cannot be actuated, and the engine will not start, not even if you attempt to start it with the kickstarter. Pushing the black starter button [3] will actuate the E-starter. Indicator lamps The green control lamp [4] flashes in the same rhythm as the flashing indicator when the indicator is working. The blue control lamp [5] lights up when the high beam is on. TEST All of the display segments briefly light up for the display function test. Electronic speedometer The display in the electronic speedometer is activated as soon as you press a button on the speedometer or an impulse is received from the wheel sensor. The display lights up when the engine is running. The display is cleared if no button is pressed for 1 minute or no impulse is received from the wheel sensor. The button is used to change between display modes. The + and – buttons are used to control various functions

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SUZUKI SV 1000 RADIATOR (COOLING SYSTEM) SERVICE MANUAL

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Filed Under (Suzuki) by admin on 26-02-2011

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FI SYSTEM MALFUNCTION CODE AND DEFECTIVE CONDITION MALFUNCTION CODE DETECTED ITEM DETECTED FAILURE CONDITION CHECK FOR COO NO FAULT C11 Camshaft position sen- sor The signal does not reach ECM for more than 3 sec . after receiving the starter signal . The camshaft position sensor wiring and mechanical parts (Camshaft position sensor, intake cam pin, wiring/coupler con- nection) C12 Crankshaft position sensor The signal does not reach ECM for more than 2 sec . after receiving the starter signal . The crankshaft position sensor wiring and mechanical parts (Crankshaft position sensor, wiring/coupler connection) C13 Intake air pressure sensor The sensor should produce following voltage . (0.50 V < sensor voltage < 4 .85 V) Without the above range, C13 is indicated. Intake air pressure sensor, wiring/coupler connection C14 Throttle position sen- sor The sensor should produce following voltage . (0.20 V < sensor voltage < 4 .80 V) Without the above range, C14 is indicated. Throttle position sensor, wiring/coupler connection C15 Engine coolant temperature sensor The sensor voltage should be the following. (0.15 V <_ sensor voltage < 4 .5 V) Without the above range, C15 is indicated. Engine coolant temperature sensor, wiring/coupler connection C21 Intake air temperature sensor The sensor voltage should be the following. (0.15 V < sensor voltage < 4 .5 V) Without the above range, C21 is indicated. Intake air temperature sensor, wiring/coupler connection C22 Atmospheric pressure sensor The sensor voltage should be the following. (0.50 V < sensor voltage < 4 .5 V) Without the above range, C22 is indicated. Atm. pressure sensor, wiring/coupler connection C23 Tip over sensor The sensor voltage should be the following for more than 2 sec . after ignition switch turns ON . (0 .20 V < sensor voltage < 4 .80 V) Without the above value, C23 is indicated. Tip over sensor, wiring/coupler connection C24 or C25 Ignition signalCrankshaft position sensor signal is produced and ECM determines the ignition signal but signal from ignition coil is interrupted continuous by 4 times or more. In this case, the code C24 or C25 is indicated. Ignition coil, wiring/coupler connection, power supply from the battery SERVICING INFORMATION 8 .3 C28 Secondary throttle valve actuator No operating voltage is supplied from the ECM, C28 is indicated. STVA can not operate. STVA lead wire/coupler, STVA C29 Secondary throttle valve position sensor The sensor should produce following voltage . (0.10 V < sensor voltage < 4 .90 V) Without the above range, C29 is indicated . Secondary throttle position sensor, wiring/coupler connection C31 Gear position signalGear position signal voltage should be higher than the following for more than 2 seconds. (Gear position switch voltage >_ 0 .6 V) Without the above value, C31 is indicated. Gear position sensor, wiring/coupler connection, gearshift cam, etc. C32 or C33 Fuel injector Crankshaft position sensor signal is produced and ECM determines the injection signal but fuel injection signal is interrupted continuous by 4 times or more. In this case, the code C32 or C33 is indicated. Injector, wiring/coupler connection, power supply to the injector C41 Fuel pump relay No voltage is applied to fuel pump although fuel pump relay is turned ON, or voltage is applied to fuel pump although fuel pump relay is turned OFF . Fuel pump relay, connecting lead, power source to fuel pump relay C42 Ignition switchIgnition switch signal is not input in the ECM . Ignition switch, lead wire/coupler C44 Heated oxygen sensor (HO2S) [For E-02, 19] During 02 feedback control, 02 sensor voltage is higher or lower than the specification . No signal is detected during engine operation or no electrical power is supplied from the battery . HO2S lead wire/coupler connection Battery voltage supply to the HO2S C49 PAIR control solenoid valve (PAIR valve) When no operating voltage is supplied from the ECM, C49 is indicated. PAIR valve can not operate. PAIR valve lead wire/coupler

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KYMCO MAXXER 300/ 250 MONGOOSE 300/ 250 SERVICE MANUAL

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Filed Under (Kymco) by admin on 26-10-2010

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apply or add designated greases and lubricants to the specified lubrication points. ÑAfter reassembly, check all parts for proper tightening and operation. ÑWhen two persons work together, pay attention to the mutual working safety. ÑDisconnect the battery negative (-) terminal before operation. ÑWhen using a spanner or other tools, make sure not to damage the motorcycle surface. ÑAfter operation, check all connecting points, fasteners, and lines for proper connection and installation. ÑWhen connecting the battery, the positive (+) terminal must be connected first. ÑAfter connection, apply grease to the battery terminals. ÑTerminal caps shall be installed securely. 1 . GENERAL INFORMATION 1-6 ATV 300/250 ÑIf the fuse is burned out, find the cause and repair it. Replace it with a new one according to the specified capacity. ÑAfter operation, terminal caps shall be installed securely. ÑWhen taking out the connector, the lock on the connector shall be released before operation. ÑHold the connector body when connecting or disconnecting it. ÑDo not pull the connector wire. ÑCheck if any connector terminal is bending, protruding or loose. Confirm Capacity 1 . GENERAL INFORMATION 1-7 ATV 300/250 ÑThe connector shall be inserted completely. ÑIf the double connector has a lock, lock it at the correct position. ÑCheck if there is any loose wire

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1992 Toyota Cressida Vehicle Wiring Chart and Diagram

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Filed Under (Toyota Manuals) by admin on 18-06-2011

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Listed below is the vehicle specific wiring diagram for your car alarm, remote
starter or keyless entry installation into your 1992 Toyota Cressida . This
information outlines the wires location, color and polarity to help you identify the
proper connection spots in the vehicle. Please be sure to test all of your wires
with a digital multimeter before making any connections. More information on
using a multimeter and testing wires please see our Technical Support Area.

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2006 KTM 250 SX-F 250 EXC RACING 400 EXC RACING 450 SX, XC, EXC RACING 525 SX, XC, EXC RACING, REPAIR MANUAL

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Filed Under (KTM) by admin on 05-05-2012

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Hot start lever (250 SX-F) If you pull the red hot start lever [1] during the starting procedure backward, a bore in the carburetor will be opened through which the engine may take in additional air. The result is a „lean” fuel-air mixture of the type needed for hot starts.
ENGLISH 7 OPERATION INSTRUMENTS » Headlamp switch (EXCUSA) In this model the headlamp is switched on with the pull switch [1] . Flasher switch The flasher switch is a separate unit and is mounted on the left portion of the handlebar. The wire harness is designed in a way that whenever you want to use your bike off-road, you can dismount the entire turn indicator system without affecting the function of the remaining electrical system. Flasher left Flasher right Starter button (EXC) Pushing the black starter button [2] will actuate the E-starter. Emergency OFF switch (EXC Australia) The red emergency-OFF switch [3] is arranged adjacent to the throttle grip. In this position, the E-starter is operational and the engine can be started. In this position, the E-starter and ignition circuits are interrupted.The E-starter cannot be actuated, and the engine will not start, not even if you attempt to start it with the kickstarter. Pushing the black starter button [4] will actuate the E-starter. 2 3 4 5 6 Indicator lamps The green control lamp [5] flashes in the same rhythm as the flashing indicator when the indicator is working. The blue control lamp [6] lights up when the high beam is on

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YAMAHA MOTOR CORPORATION, U.S.A. STREET & ENDURO MOTORCYCLE LIMITED WARRANTY

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Filed Under (Yamaha) by admin on 27-12-2011

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GENERALEXCLUSIONS from this warranty shall include any failures caused by: a. Competition or racing use. b. Installation of parts or accessories that are not qualitatively equivalent to genuine Yamaha parts. c. Abnormal strain, neglect, or abuse. d. Lack of proper maintenance. e. Accident or collision damage. f. Modification to original parts. g. Damage due to improper transportation. SPECIFIC EXCLUSIONS from this warranty shall include parts replaced due to normal wear or routine maintenance. THE CUSTOMER’S RESPONSIBILITY under this warranty shall be to: 1. Operate and maintain the motorcycle as specified in the appropriate Owner’s Manual. 2. Give notice to an authorized Yamaha motorcycle dealer of any and all apparent defects within ten (10) days after discovery, and make the machine available at that time for inspection and repairs at such dealer’s place of business. You may locate your nearest authorized Yamaha dealer through your local telephone directory. WARRANTY TRANSFER: To transfer any remaining warranty from the original purchaser to any subsequent purchaser, it is imperative that the machine be inspected and registered for warranty by an authorized Yamaha motorcycle dealer. In order for this warranty to remain in effect, this inspection and registration must take place within ten (10) days after transfer. Areasonable dealer imposed fee may be charged for the inspection. In no case will warranty be extended beyond the original period. EMISSIONS CONTROLSYSTEM WARRANTY Yamaha Motor Corporation, U.S.A. also warrants to the ultimate purchaser and each subsequent purchaser of each Yamaha motorcycle covered by this warranty with a displacement of 50cc or greater, that the vehicle is designed, built, and equipped so as to conform at the time of sale with all U.S. emissions standards applicable at the time of manufacture and that it is free from defects in materials and workmanship which would cause it not to meet these standards within the periods listed immediately below. Failures other than those resulting from defects in material or workmanship which arise solely as a result of owner abuse and/or lack of proper maintenance are not covered by this warranty.

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YAMAHA TTR 125 SHOCKS REMOVAL AND INSTALLATION MANUAL

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Filed Under (Yamaha) by admin on 08-01-2012

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1. With the bike unloaded on the side stand and the shock fully extended, have an assistant measure from a point at the axle (center point) to a point on the frame, fender or bodywork directly above it. Record this measurement. 2. With the bike off the stand and the rider in the seat, bounce on the suspension and let the bike settle. Have the assistant measure from the same two points. Subtract the second measurement from the first. 3. The amount of settle, or “sag” is a function of the wheel travel. It should only be between 1/4 and 1/3 of the total travel. 4. If the difference is less than the minimum, reduce the spring preload. Measure the distance again starting with Step 2. Adjust again if necessary. 5. If the difference is more than the maximum, increase the spring preload. Measure the distance again starting with Step 2. Adjust again if necessary. Note: If the ride height is too low, the shock will bottom unnecessarily, resulting in a harsh ride. If the ride height is too high, the shock will “top out” too easily when rebounding from a bump or under hard deceleration. NITROGEN PRESSURES IN EMULSION SHOCKS CAUTION: The pressure in these shocks cannot successfully be checked. Concerns with the gauge volume and the gas volume in the shock body create a situation where you cannot accurately determine what pressure was in the shock. In addition when the pressure is lowered (i.e. checking the pressure) the gas and some of the shock oil escapes into the gauge. It is possible to lose a large percentage of the shock oil by depressing the core of a charged shock to the atmosphere. Please note that in order to check the pressure, some of the gas must escape and fill the gauge assembly. The volume of the gas pocket is about half the size of your thumb, so a very small volume change results in a large pressure drop. Because the gauges’ volumes vary, it is not possible to deduce the actual pressure in the shock prior to attaching the gauge. Therefore it is imperative that any attempt to check pressure be accompanied by the capability of refilling the shock. In other words: If you don’t have a nitrogen source handy, don’t check the pressure

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APRILIA SPORTCITY 125-200 Technical specifications

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Filed Under (Aprilia) by admin on 07-11-2010

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The engine and transmission assembly also acts as swing arm. Suspension is provided by two rear shock absorbers. Spring preload is adjustable for maximum efficiency under all load and road conditions. Rear wheel travel is 80 mm , more than enough to smooth out even the roughest surfaces. The SPORTCITY 250 i.e. is equipped with 15 inch wheels and large, high profile tubeless tyres (120/70 at the front and 130/80 at the rear). Rolling diameter is therefore equivalent to that of a 16 inch tyre but the ability to absorb shocks from rough road surfaces is far better, ensuring a superbly smooth ride. In conjunction with the excellent frame, this intelligent choice of tyres gives the SPORTCITY 250 i.e. excellent stability and the sort of intuitive feel that makes it a piece of cake to ride even for novices . The brakes are another of the strong points of the SPORTCITY 250 i.e. . The new system features triple discs for far shorter stopping distances and far greater active safety. Even inexperienced riders will have no trouble in pulling up well ahead of trouble. At 90 km/h the SPORTCITY 250 i.e. takes just 2.7 seconds to come to a full stop . The front brakes feature two 260 mm discs and floating calipers with two parallel pistons . The rear disc is a 220 mm unit with single piston caliper. Engine technology is another major plus point for the SPORTCITY 250 i.e. Its new electronic fuel injected engine is state of the art on the scooter scene . Powerful, flexible, and extremely low on emissions and consumption, this 250 cc single cylinder unit is perfect for the job in hand. Developing 22.5 HP at 8,000 rpm with 21 Nm of torque at 6,250 rpm, the engine delivers standard-setting performance . It also enables the Sportcity to function as a fun to ride sports scooter not only in town centres but on fast urban ring roads too. And the SPORTCITY 250 i.e. respects the environment wherever it goes, being one of the few scooters to conform to Euro 3 emission control standards. Finally, miserly fuel consumption and a generous 9 litre tank give the SPORTCITY 250 i.e. great autonomy . Engine Horizontal, single cylinder, 4 stroke. Forced liquid cooling with centrifugal pump. 4 valve head with overhead camshaft Fuel Unleaded petrol Bore and stroke 72 x 60 mm Displacement 244,29 cc Compression ratio 11:1 Maximum power 16.5 HP (22.5 kW) at 8,000 rpm Maximum torque 21 Nm at 6,250 rpm Fuel system Electronic fuel injection Ignition Electronic inductive discharge ignition with variable advance Starting Electric Alternator 300 W Lubrication Wet sump. Forced circulation with mechanical pump Gearbox Automatic torque converter Clutch Automatic centrifugal dry clutch Primary drive V belt Final drive Gearbox Frame Open cradle in high tensile strength steel Front suspension Hydraulic telescopic fork with 35 mm stanchions. Wheel travel 100 mm Rear suspension Engine unit acting as swinging arm. Double hydraulic shock absorber with adjustable preload. Wheel travel 80 mm Brakes Front: Twin ∅ 260 mm stainless steel discs. Twin piston floating callipers Rear: ∅ 220 mm stainless steel disc Wheels Light alloy Front: 2.75 x 15″ Rear: 3.00 x 15″ Tyres Tubeless. Front: 120 / 70 x 15″ Rear: 130 / 80 x 15″ Dimensions Maximum length: 1,985 mm Maximum width: 880 mm (at mirrors) Wheelbase: 1,360 mm Seat height; 815 mm Dry weight 148 kg Tank capacity 9 litres (reserve 1.5 litres) Colours Excalibur Grey, Shot Grey, Couture Blue, Moka Black Accessories 28 litre top box, 32 litre top box, 35 litre top box, large windshield, sports windshield, leg cover