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TOYOTA Suspension Tire Inflation Pressure Compensation and Adjustment

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Filed Under (Toyota Manuals) by admin on 06-10-2011

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2004-2010 4Runner 2007-2010 Avalon, Camry, Camry HV, RAV4, Sienna 2008-2010 Corolla, FJ Cruiser, Highlander, Highlander HV, Matrix, Yar is 2006-2010 Land Cruiser, Prius, Tacoma 2005-2010 Sequoia, Tundra 2007-2008 Solara 2009-2010 Venza The purpose of this bulletin is to provide a procedure to adjust tire pressure correctly when outside temperature is significantly colder or warmer than shop temperature. Seasonal temperature change can dramatically alter tire pressure, which can cause the tire pressure warning lamp to illuminate. Tire temperature is dependent on”cold”tire pressure, driving distance and speed, ambient temperature and road surface temperature. As the temperature of the tire changes, air in the tire expands and contr acts, changing the tire’sairpressure. The cold tire pressure for all Toyota models will vary and will need to be adjusted accordingly. “Cold”tire pressure, as shown on the tire pressure label on our vehicles, is generally considered to be the pressure in a tire that has not been driven in the past 4 hours and has been parked outdoors. The TPWS MUST be initialized with the tire pressure marked on the vehicle placard. Tires are then adjusted according to the information in this bulletin to ensure that the TPWS light does not illuminate unnecessarily.

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2004 – 2006 4Runner TIRE PRESSURE SENSING TRANSMITTER ACTIVATION PROCEDURE DURING PDS

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Filed Under (Toyota Manuals) by admin on 29-10-2011

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pressure data is transmitted through a Tire Pressure Warning System antenna to the Tire Pressure Monitoring System receiver. The tire pressure sensing transmitter used for the Tire Pressure Monitoring System (TPMS) on 2004 – 2006 model year 4Runner vehicles needs to be activated during Pre-Delivery Service (PDS). 2004 – 2006 model year 4Runner vehicles. NOTE: After all the tire pressure sensing transmitters are activated, the flashing Low Tire Pressure Warning Light goes OFF. The Diagnostic Trouble Codes (DTCs) listed below may be stored in the system until the tire pressure sensing transmitters are activated. The codes will automatically clear when the tire pressure sensing transmitters are activated

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Turbo+2 , Roadstar , Quantum Sport , Quantum"GL" , Entourage Owners Manual

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Filed Under (Uncategorized) by admin on 03-12-2010

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tracking Any parting within the tread, sidewall, or inner liner of the tire extending to cord material. CT A pneumatic tire with an inverted flange tire and rim system in which the rim is designed with rim flanges pointed radially inward and the tire is designed to fit on the underside of the rim in a manner that encloses the rim flanges inside the air cavity of the tire. Curb weight The weight of a motor vehicle with standard equipment including the maximum capacity of fuel, oil, and coolant, and, if so equipped, air conditioning and additional weight optional engine. Extra load tire A tire designed to operate at higher loads and at higher inflation pressures than the corresponding standard tire. Groove The space between two adjacent tread ribs. Gross AxleWeight Rating The maximum weight that any axle can support, as published on the Certification /VIN label on the front left side of the trailer. Actual weight determined by weighing each axle on a public scale, with the trailer attached to the towing vehicle. Gross Vehicle Weight Rating The maximum weight of the fully loaded trailer, as published on the Certification /VIN label. Actual weight determined by weighing trailer on a public scale, without being attached to the towing vehicle. Hitch Weight The downward force exerted on the hitch ball by the trailer coupler. Innerliner The layer(s) forming the inside surface of a tubeless tire that contains the inflating medium within the tire. Innerliner separation The parting of the innerliner from cord material in the carcass. Intended outboard sidewall The sidewall that contains a white-wall, bears white lettering or bears manufacturer, brand, and/or model name molding that is higher or deeper than the same molding on the other sidewall of the tire or the outward facing sidewall of an asymmetrical tire that has a particular side that must always face outward when mounted on a vehicle. Light truck (LT) tire A tire designated by its manufacturer as primarily intended for use on lightweight trucks or multipurpose passenger vehicles. Load rating The maximum load that a tire is rated to carry fora given inflation pressure. Maximum load rating The load rating fora tire at the maximum permissible inflation pressure for that tire. Maximum permissible inflation pressure he maximum cold inflation pressure to which a tire maybe inflated.
-9- Maximum loaded vehicle weight The sum of curb weight, accessory weight, vehicle capacity weight, and production options weight. Measuring rim The rim on which a tire is fitted for physical dimension requirements. Pin Weight The downward force applied to the 5thwheelor gooseneck ball, by the trailer kingpin or gooseneck coupler.

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2001 – 2002 GL1800/ GL1800A Rear Tire Inspection

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Filed Under (Honda) by admin on 27-11-2010

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1. Inspect the motorcycle for a punch mark as described in Identification on page 2. If a punch mark is present no further action is necessary, return the unit to the customer. 2. Qualify the unit/customer as follows: •Is the tire on the motorcycle the original factory installed tire? •Is the air pressure loss more than three psi per month? Note: Refer to page 145 in the Owner’s Manual. “Even tires that are in good condition may lose one to two psi per month if not checked and adjusted regularly” . If the GL1800 meets the above qualifications, proceed with the repair procedure. 3. Place the motorcycle on a lift and secure it on the centerstand. 4. Remove the rear wheel as described on page 14-9 of the Service Manual. 5. Starting at the valve stem/balance mark area, carefully remove the rear tire from the wheel. Be sure to use plenty of commercially available tire lubricant on the inside and outside of both beads. 6. Carefully inspect the entire circumference of both tire beads. Inspect both the inside and outside of the bead for any distortion or injuries. See examples of injuries below. 2001 – 2002 GL1800/GL1800A Rear Tire Inspection GL1800 #6 OCTOBER 2001 MTB 9430 (0109) CUSTOMER INFORMATION: The information in this bulletin is intended for use only by skilled technicians who have the proper tools, equipment, and training to correctly and safely maintain your Honda. These procedures should not be attempted by “do-ityourselfers,” and you should not assume this bulletin applies to your Honda, or that your Honda has the condition described. To determine whether this information applies, contact an authorized Honda dealer. Service Bulletin American Honda Motor Co., Inc. 2001-2002 GL1800/GL1800A Rear Tire Inspection 0110 GL1800 #6*GL1800 #6*0110*2001-2002 GL1800/GL1800A Rear Tire Inspection*GL1800/GL1800A, Rear Tire Inspection, Bead, Tread*Motorcycle*1800 2 of 4 ©2001 American Honda Motor Co., Inc. – All Rights Reserved GL1800 #6 OCTOBER 2001 Inside BeadInjury Outside BeadInjury Outside BeadInjury 7. Carefully inspect the entire circumference of both tire beads. Inspect both the inside and outside of the bead for any distortion or injuries. See examples of injuries below. 8. If there is no evidence of bead damage, re-install the tire on the rim. Be sure to use plenty of commercially available tire lubricant on the inside and outside of both beads. Be sure to align the balance dot with the valve stem. Inflate the tire to 41 psi. Install the wheel assembly on the motorcycle and proceed to the Identification and then to the Warranty section. 9. If any damage or injury is present replace the tire and valve stem. Be sure to use plenty of commercially available tire lubricant on the inside and outside of both beads. Balance the new tire as necessary

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2008 Triumph Rocket III specifications and pictures

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

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Triumph Rocket III 2008 Picture credits – Triumph . Click to submit more pictures. 2008 Triumph Rocket III More pictures… Discuss this bike Rate this motorbike This bike’s rating Write a review Sell this motorcycle Such bikes for sale Tip a friend List related bikes General information Model: Triumph Rocket III Year: 2008 Category: Custom / cruiser Rating: 68.5 out of 100. Show full rating and compare with other bikes Engine and transmission Displacement: 2294.00 ccm (139.98 cubic inches) Engine type: In-line three Stroke: 4 Power: 140.00 HP (102.2 kW)) @ 6000 RPM Torque: 147.00 Nm (15.0 kgf-m or 108.4 ft.lbs) @ 2500 RPM Compression: 8.7:1 Bore x stroke: 101.6 x 94.3 mm (4.0 x 3.7 inches) Fuel system: Injection. Multipoint sequential electronic fuel injection Fuel control: DOHC Ignition: Digital – inductive type – via electronic engine management system Cooling system: Liquid Gearbox: 5-speed Transmission type final drive: Shaft drive (cardan) Clutch: Wet. multi-plate Physical measures Dry weight: 319.3 kg (704.0 pounds) Seat height: 739 mm (29.1 inches) If adjustable, lowest setting. Overall height: 1,166 mm (45.9 inches) Overall length: 2,499 mm (98.4 inches) Overall width: 970 mm (38.2 inches) Wheelbase: 1,694 mm (66.7 inches) Chassis and dimensions Frame type: Tubular steel. twin spine Rake (fork angle): 32.0° Front suspension: 43mm upside down forks Rear suspension: Chromed spring twin shocks with adjustable preload Front tyre dimensions: 150/80-R17 Rear tyre dimensions: 240/50-R16 Front brakes: Double disc Front brakes diameter: 320 mm (12.6 inches) Rear brakes: Single disc Rear brakes diameter: 316 mm (12.4 inches) Speed and acceleration Fuel capacity: 23.84 litres (6.30 gallons) Color options: Claret. Phantom Black Further information Parts and accessories Check out parts and accessories from our partners. Ask questions Join the 08 Triumph Rocket III discussion group, the new Triumph forum at Bikez.name or the new Custom / cruiser forum at Bikez.name. Insurance, loans, testsSearch the web for dealers, loan and insurance costs, tests, customizing, etc. Related bikes List related bikes for comparison of specs

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Oil Pressure Gauge Set Installation

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Filed Under (Tips and Review) by admin on 27-11-2010

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7. See Figure 3-4 . Assemble banjo bolt (3), washer (4), OIL PRESSURE GAUGE (1) banjo fitting and second washer onto adapter and tighten snugly. 8. Temporarily secure oil pressure gauge and hose to motorcycle frame with cable straps. Make sure gauge and hose assembly do not interfere with normal operation of the vehicle. Start engine and ride motorcycle at least 20 miles (32 km) at or above 50 mph (80 km/h) to allow engine to reach operating temperature. a. At 2500 RPM, oil pressure will vary from 10-17 psi (69-117 kN/m2). b. At idle speed (950-1050 RPM), oil pressure will vary from 7-12 psi (48-83 kN/m2). NOTE For an accurate reading, engine oil should be at normal operating temperature: 230°F (110°C). 9. Stop engine. Remove OIL PRESSURE GAUGE assembly from oil pressure indicator lamp switch mounting hole in crankcase. Cut cable straps that you installed in step 8. above, and remove banjo bolt, gauge assembly, washers and adapter from vehicle. 10. See Figure 3-2 . Coat threads of oil pressure switch (2) with LOCTITE 565 HIGH PERFORMANCE PIPE SEALANT with TEFLON. Reinstall oil pressure switch. Using OIL PRESSURE SENDING UNIT WRENCH, tighten switch snugly. DO NOT OVERTIGHTEN. 11. Plug in connector [120] (3) by pushing elbow connector straight up onto stud on oil pressure switch. 12. Install voltage regulator caddy and attach DC output connector and neutral switch wiring harness to caddy. See 7.28 MAIN WIRING HARNESS . NOTE If an appreciable amount of oil leaked out when oil pressure switch was removed, it will have to be replaced with fresh oil. 13. Check oil level in oil tank. See 1.5 ENGINE OIL AND FILTER . Top off oil level if necessary. 14. Start engine and test oil pressure switch for proper operation. Check oil pressure switch for leaks.

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2009 TRIUMPH DAYTONA 675 Triumph/ Arrow Race Rearsets

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Filed Under (Triumph) by admin on 12-11-2010

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race harness kit, air funnel kit, racing oil pump gearing kit, adjustable camshaft sprocket kit, manual camshaft tensioner and blade kit, a reusable engine cover gasket set and racing cylinder head gaskets. Here’s a closer look at the new racing parts and their associated performance improvements: TRACS – Triumph Race Calibration Software TRACS ( T riumph Ra ce C alibration S oftware) is a new computer program that allows racers to tune Triumph’s programmable race ECU from a laptop PC. Developed by one of Triumph’s most experienced EFI calibration engineers, the programmable ECU and software was created for the growing number of competitors that are riding Triumph motorcycles at the track. The new software provides racers with quick access to a wide range of adjustments that can be downloaded to the race ECU in about 35 seconds for tuning during testing, practice and qualifying sessions. Features include: Fully programmable fuel mapping (500rpm increments, for individual cylinders). Fully programmable ignition mapping. Switchable wet and dry maps. Adjustable pit lane speed limiter and speedo calibration. Adjustable quickshifter cut duration (adjustable at low, mid and high RPM) Adjustable rev limiter up to 15,000rpm. New software strategies to improve throttle progression. Optimized software to run faster to cater for the higher RPMs involved in a race environment. Ability to save multiple maps within the memory of the PC. Ability to update an existing 2007/2008 Race ECU to 2009 specification and functionality.* (*Not all features will be available if using the 2007/08 Race harness.) Exhaust – Triumph/Arrow Titanium “Stage 3″ System Triumph has continued to collaborate with Italian race exhaust specialists Arrow Special Parts to develop a new, full titanium racing exhaust system. This system complies with current FIM regulations, works as part of the factory race kit, and offers a significant weight reduction and considerable power gains.

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Triumph Center Mount Oil Pressure Gauge with active oil light Installation

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Filed Under (Triumph) by admin on 29-10-2010

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Remove the two hex head screws and spacers that secure the handlebars. Attach the oil pressure mounting bracket using the bolts removed earlier. It is not necessary to use the spacers as the bracket is the same thickness as the spacers that were removed. Make sure the oil pressure gauge bracket is clamped securely so that the handlebars cannot rotate. This part of the assembly is complete. Do not tighten the fitting mounted on the far side of the Swivel body. This fitting is designed to rotate and is sealed in place with Loctite 242 thread sealant. Over tightening will shear the threads resulting in destruction of the fitting. Remove oil pressure sending unit. Sit the copper crush washer aside for future use. The Swivel and Swivel Adaptor are supplied assembled. Remove the plug from the rear of the Swivel. Slip the crush washer removed earlier over the end of the Adaptor. There is an ‘O’-ring seal between the Adaptor and the Swivel, leaving the two assembled will prevent damage to the seal. Thread the Adaptor, with Swivel still attached, into the port from where the original sending unit was removed. With the use of a 5/32″ Allan wrench, reach inside the Swivel and tighten the Swivel against the Adaptor. Install the original oil pressure sending unit in the top port as shown using the new copper crush washer supplied. Use a wrench on both the Swivel and the original oil pressure sending unit to prevent imparting stress on the Adaptor to Swivel junction. Reinstall the 1/8 NPT plug in the end of the Swivel using with the use of a 3/16″ Allan wrench. Use Loctite 242 or equivalent semi-permanent thread sealant at this junction. Do not over tighten. Use a 3/16″ Allan wrench on the plug and an open end wrench on the Swivel to prevent imparting stress on the Adaptor to Swivel junction. Next, attach one end of the oil pressure line to the swivel fitting (located far side) by pushing the end of the tubing into the hole at the end of the fitting. FYI: these fittings are quick disconnect and self-clinching. They need only to be pushed in to connect. They will not slip out unless the ferrule at the end of the fitting is pushed back away from the tubing as the tubing is pulled from the fitting. Routing: Next, route the other end of the tube up along the frame and in front of the steering head over to the fitting in the gauge body. Avoid the exhaust pipes when routing the tubing. Push the end of the tube into the gauge fitting as was done at the swivel fitting at the other end of the tube. The tubing can be removed and cut to the length required by your routing. Make sure there is enough service loop remaining so

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BMW Motorcycles R 850/ R 1100 Series and K 1200 RS – New Clutch and Pressure Plate

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Filed Under (BMW) by admin on 16-11-2010

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Details: All R 850/R 1100 and K 1200 RS models produced from December 1997 have received a new clutch disc, manufactured by VALEO, and a new pressure plate (see applicable part numbers below). Earlier production for both series can be fitted with the new parts. However, due to changes in specifications (a thicker pressure plate, a thinner clutch disc), the new VALEO clutch disc is not compatible with the old pressure plate. In this application, the new clutch disc and pressure plate must be replaced as a pair. Series Production: R 850/R1100 models: Starting with December 1997 production. K 1200 RS: Starting with December 1997 production. Part Number: R 850/R1100 Models: VALEO Clutch Disc: 21 21 2 325 864 Used only in conjunction with Pressure Plate: 21 21 2 325 863 R 850/R1100 models: VALEO Clutch Disc with reduced play on gearbox input shaft (KD – Scheibe): 21 21 2 325 862 Used only in conjunction with Pressure Plate: 21 21 2 325 863 K 1200 RS: VALEO Clutch Disc: 21 21 2 332 973 Used only in conjunction with Pressure Plate: 21 21 2 332 974 Attention: For R 850/R1100 and K 1200 RS models with production dates of 12/97 and later, all clutch parts can be replaced individually, as the new pressure plate will already be installed. On earlier production examples, installing the new VALEO clutch disc without replacing the pressure plate will not allow the clutch to completely disengage.

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Ducati 916-998 / 748 Variable Pressure Fuel Regulator installation Manual

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

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1 RACING SERVICES 115 CARLINGFORD RD EPPING SYDNEY 2121 AUSTRALIA Part # EDU001 Type 3 Please note: These instructions refer to Type 3 Ducati VariRegs. Type 3 VariRegs may be distinguished by a hole & groove machined into the end face of the adjustment screw. VariReg -Variable Pressure Fuel Regulator Suitable for:- Ducati 916-998 / 748 all models. The Epicycle VariReg will allow a fuel pressure rate of 300 kPa (stock) to 540 kPa. By increasing the pressure available at the injectors, more fuel will flow thus richening mixtures. The available increase in fuel pressure is sufficient to allow the fitment of performance parts, without the high end lean condition normally experienced with the stock fuel pressure. This lean condition is the result of injectors that are too low in flow rate, and even when switched on continuously, are incapable of delivering the required quantity of fuel. Changes to the fuel mapping may be required when using this product. The increase in fuel pressure is variable by the owner and may be altered at any time as required. The unit comes pre-set at 450 kPa. It should be noted that the VariReg is designed for a maximum pressure of 540 kPa, but pressures in excess of 450 kPa require the fitment of the CORSA style high output fuel pump. ** Under no circumstances should the pressure exceed 450 kPa if using the standard road pump! ** Pressures may be set in the following manner. ** This method should be used as a guide only. Use of a suitable pressure gauge is recommended.** 1 . Rotate the adjustment screw “IN” (clockwise direction) using an 11mm or 7/16″ spanner until the head of the screw is seated against the body. Use a tommy bar in the 5mm hole in the side of the VariReg to prevent rotation of the body

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