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Automatic Transmission/ Transaxle Fluid Level Inspection Temperature Rang es

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Filed Under (Toyota Manuals) by admin on 12-10-2011

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For vehicles equipped witha transmission requiring the use of the overflow type automatic transmission fluid (ATF) inspection process, the A TF must be withinaspecific temperature range for accurate fluid level inspection. Inspecting the A TF outside of the specified temperature range may result in incorrectA TF fluid levels and could lead to shift quality, M.I.L. “ON”, and/or transmission damage issues. Please seethe information in this bulletin for updated A TF level inspection temperature ranges. HINT For additional information including animations and video illustrations, please seethe Technical Training course E076: “Toyota ATF Level Inspection”. NOTE Please see TSB No. TC 010-07, “World Standard Automatic Transmission Fluid”, for important tips when working with A TFWS. ©2008 ToyotaMotor Sales, USA Page 1of3
T-SB-0129-08 July9,2008 Page 2of3 Automatic Transmission/Transaxle Fluid Level Inspection Temperature Ranges Warranty Information OP CODE DESCRIPTION TIME OFP T1 T2 N/A Not Applicable to Warranty – - — Parts Information PREVIOUS PART NUMBER CURRENT PART NUMBER PART NAME QTY 00289-ATFWS Same ATFWS As needed Required Tools&Equipment

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Skyteam ST 125 SPECIFICATIONS AND SERVICE MANUAL

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

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BRAKES This motorcycle has a hydraulic brake system of front and rear . Brakes are items of personal safety and should be properly adjusted. Remember to check periodically the brake system and these checks should be conducted by qualified Jincheng dealer. Do not use the remained brake fluid from on a unsealed container, never reuse the brake fluid remained in the last repairing, because the used brake fluid may absorb the water from the air. Use DOT 4 brake fluid from a sealed container. Do not spill out the brake fluid, when the brake fluid is glued to the paint, plastic and rubber material, a chemical reaction shall take place, causing the damage. (1)lower level mark Front brake Rear brake BRAKE FLUID (1) (2) (3) (1) (1)Brake fluid cap (2)Max. fluid level mark (3)Min. fluid level mark Brake fluid may cause irritation. Avoid contact with skin or eyes. In case of contact, flush thoroughly with water and call a doctor if your eyes were exposed NOTICE WARINING * 9 BRAKE LINING The main points for checking the front brake lining are to see whether the lining wear is out of the range. Replace the brake lining wear is out of the range. Replace the brake lining if the lining wear is beyond the brake wear limit mark. FRONT BRAKE FLUID LEVEL Check that the fluid level is above the lower level mark(1) with the motorcycle in an upright position. Brake fluid must be added to the reservoir when ever the fluid level begins to reach the lower level mark(1). Fill the reservoir up to upper level mark. REAR BRAKE FLUID LEVEL There are two marks in rear brake fluid cap,keep the fluid lever between the Max. fluid level mark (2) and the Min. fluid level mark (3) always. Check if it is short of brake fluid, check the hose and other components for corrosion or cracks. limit mark Brake Pad Front brake Rear brake If the brake system or brake linings have to be repaired, we suggest that these repair should be performed by your authorized SKYTEAM dealer. SKYTEAM dealer knows your motorcycle best and is dedicated to your complete satisfaction

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FLUID SPECS MODEL- YEAR 1994- 2005 FOR TOYOTA CAMRY, COROLLA AND TACOMA

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Filed Under (Toyota Manuals) by admin on 17-09-2011

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Toyota Genuine Motor Oil 5W-30 Toyota Genuine Motor Oil 10W-30 Ethylene-Glycol Antifreeze Toyota Long Life Coolant Toyota Super Long Life Coolant 00272-SLLC2 Hypoid API GL-5 75W-90 Gear Lube T-IV Transmission Fluid ATF WS Transmission Fluid 08885-80306 Good brand of 80W-90 gear lube Hypoid API GL-5 80W-90 Gear Lube Castle V160 Gear Lube Sequential Manual Transmission Fluid 08885-01306 08886-02206 Synthetic Hypoid API GL-5 75W-140 Gear Lube Limited Slip Gear Oil

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New Automatic Transmission for Motorcycles Human-Friendly Transmission

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Filed Under (Honda) by admin on 18-12-2011

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High-pressure fluid flow The engine rotates the pump swash plate, which has a gear mechanism. The rotating swash plate pushes the pump pistons to increase the pressure on the hydraulic fluid and feed it to the high-pressure annular chamber. The high- pressure fluid is then fed to the oil motor piston chamber where it pushes the pistons forward, which then push the motor swash plate. Power Fluid flow from pump to motor Fluid flow from motor to pump Low-pressure fluid flow The lower-pressure hydraulic fluid returns to the pump through the low-pressure annular chamber. In this way, the fluid circulates between the pump and the motor. Movement of distributor valves and pistons The distributor valves play an important role in fluid circulation. The valves are placed both in the oil pump and motor. When the pump pistons move to the compression side, the valves connect the piston chamber and the high- pressure chamber. When the pump pistons move to the expansion side, the valves allow a connection between the piston chamber and the low-pressure chamber. The valve in the oil motor moves opposite to its counterpart in the pump, ensuring the circulation of fluid within the system

TOYOTA/ LEXUS U150/ U250 TOYOTA/LEXUS U150/U250 PRELIMINARY INFORMATION Presented to you by Wayne Colonna Automatic Transmission Service

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Filed Under (Toyota Manuals) by admin on 19-09-2011

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Starting at the beginning of production for the 2002 model year for Lexus and 2004 for Toyota, a spin-off of the U140/U240 Four speed transaxle, designated as the U150/U250 series was born. This transmission is classified as a 5 speed transmission, although it has 6 ratio’s possible in the Drive position. The U150/250 is very similar to it’s smaller brother, the U140, and actually uses some of the same parts. This Transaxles shift points, and shift feel are electronically controlled by a Powertrain Control Module. This is accomplished by the PCM monitoring engine load and adjusting solenoid duty cycle to match pressure rise and shift feel. The PCM also monitors the turbine and output speed sensors to calculate gear ratio and the Transmission Range Sensor for gear selection.

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2010 HONDA VFR1200F Dual Clutch Transmission Specifications

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Filed Under (Honda) by admin on 18-02-2011

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Specifications VFR1200F Dual Clutch Transmission (ED-type/ F-type) ENGINE Type Liquid-cooled 4-stroke UNICAM 76° V-4 Displacement 1237cc Bore  Stroke 81  60mm Compression Ratio 12:1 Max. Power Output ED: 127kW/10,000min-1 (95/1/EC) F: 83kW/9,500min-1 (95/1/EC) Max. Torque ED: 129Nm/8,750min-1 (95/1/EC) F: 115Nm/4,000min-1 (95/1/EC) Idling Speed 1,150 min-1 Oil Capacity 4.9 litres FUEL SYSTEM Carburation PGM-FI electronic fuel injection Aircleaner Oil-permeated, viscous-type paper filter Fuel Tank Capacity 18.5 litres Fuel Consumption ED/E : 15.9 km/l F : 15.9 km/l (tested in D-Mode) (WMTC mode*) VFR1200F 03/05/10 9 9 ELECTRICAL SYSTEM Ignition System Computer-controlled digital transistorised with electronic advance Ignition Timing 8.4° BTDC (idle speed) Sparkplug Type IMR9E-9HES (NGK); VUH27ES (DENSO) Starter Electric Battery Capacity 12V/11.2Ah (YTZ14S) ACG Output 570W Headlights H7x2 (55Wx2) Tail-light 5Wx2,STOP LIGHT 21W( 21/5W+5Wdual-light) DRIVETRAIN Clutch Wet multi-plate, hydraulic, dual Clutch Operation Hydraulic Transmission Type Constant mesh 6-speed Primary Reduction 1.738 (73/42) Gear Ratios 1 2.4666 (37/15) 2 1.7894 (34/19) 3 1.4090 (31/22) 4 1.1600 (29/25) 5 1.0322 (32/31) 6 0.9393 (31/33) VFR1200F 03/05/10 10 10 Final Reduction 2.7061 Final Drive Shaft FRAME Type Diamond; aluminium twin-spar CHASSIS Dimensions (LWH) 2250  740 1220mm Wheelbase 1,545mm Caster Angle 25.5° Trail 101mm Turning Radius 3.5m Seat Height 815mm Ground Clearance 125mm Kerb Weight 277kg Loaded Weight 473Kg SUSPENSION Type Front 43mm cartridge-type telescopic fork with stepless preload adjustment, 120mm axle travel RearPro-Link with gas-charged damper, VFR1200F 03/05/10 11 11 25-step (*stepless remote-controlled hydraulic) preload and stepless rebound damping adjustment, 130mm axle travel WHEELS Type Front 5-spoke hollow gravity Die-cast aluminium Rear7-spoke gravity Die-cast aluminium Rim Size Front 17M/C  MT3.50 Rear 17M/C  MT6.00 Tyre Size Front 120/70 ZR17M/C (58W) Rear 190/55 ZR17M/C (75W) Tyre Pressure Front 250kPa Rear 290kPa BRAKES Type Front 320mm dual floating hydraulic disc with two 6-piston callipers, C-ABS and sintered metal pads Rear276mm hydraulic disc with 2-piston calliper, C-ABS and sintered metal pads All specifications are provisional and subject to change without notice. * Please note that the figures provided are results obtained by Honda under standardized testing conditions prescribed by WMTC. Tests are conducted on a rolling road using a standard version of the vehicle with only one rider and no additional optional equipment. Actual fuel consumption may vary depending on how you ride, how you maintain your vehicle, weather, road conditions, tire pressure, installation of accessories, cargo, rider and passenger weight, and other factors

AUTOMATIC TRANSMISSION FLUID (ATF) APPLICATION GUIDE

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Filed Under (Toyota Manuals) by admin on 20-09-2011

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With so many automatic transmission fluids, it’s hard to choose the one best-suited for each vehicle. Beginning in 2007, there will be several changes to the way we look at transmission fluids. Products meeting current DEXRON®-III /MERCON® specifications will no longer be officially licensed by GM and Ford. However, products meeting these specifications will still be available – packaged as Valvoline® DEX/MERC and Valvoline’s MaxLife® DEX/MERC transmission fluids. The DEX/MERC fluids are recommended for GM, Ford and many import vehicles, 2005 and older. MERCON®V will also be compatible for Ford vehicles, 1996 and newer. GM has introduced DEXRON®-VI -a new, full-synthetic transmission fluid for GM vehicles and select imports, 2006 and newer. It is also backwards compatible for older GM vehicles. Valvoline now offers DEXRON®- VI fluid, officially licensed and approved by General Motors

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TOYOTA ELECTRONIC TRANSMISSION CHECKS & DIAGNOSIS

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Filed Under (Toyota Manuals) by admin on 16-09-2011

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The transmission requires regular maintenance intervals if it is to continue to operate without failure. As we discussed in previous sections, transmission fluid loses certain properties over time and especially due to heat. The Maintenance Schedules found in the repair manual or the Owners Manual indicate the appropriate replacement schedules based on how the vehicle is used. Schedule A for example, recommends replacement of the fluid every 20,000 miles or 24 months. Whereas Schedule B recommends just an inspection of the fluid every 15,000 miles or 24 months and no replacement interval. The chart below indicates which maintenance schedule to follow based on the use of the vehicle.

YAMAHA TW125 SERVICE MANUAL

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Filed Under (Yamaha) by admin on 19-11-2010

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Dimensions: Overall length Overall width Overall height Seat height Wheelbase Minimum ground clearance Minimum turning radius 2,140 mm , 810 mm 1,120 mm , 805 mm 1,330 mm , 260 mm 2,100 mm Basic weight: With oil and full fuel tank 125 kg Engine: Engine type Cylinder arrangement Displacement Bore stroke Compression ratio Compression pressure (STD) Starting system Lubrication system: Air-cooled 4-stroke, SOHC Forward-inclined single cylinder 0.124 L (124 cm3) 57.0 48.8 mm 10.0 : 1 1,200 kPa (12.0 kg/cm2, 12.0 bar) at 1,000 r/min Electric starter Wet sump Oil type or grade: Engine oil API standard: “SE” or higher grade ACEA standard: G4 or G5 Periodic oil change With oil filter replacement Total amount 1.0 L 1.1 L 1.3 L Air filter: Wet type element Fuel: Type Fuel tank capacity Fuel reserve capacity Regular unleaded gasoline 7.0 L 1.0 L 2-2 GENERAL SPECIFICATIONS SPEC Model TW125 Carburetor: Type/quantity Manufacturer Y24P/1 TEIKEI Spark plug: Type Manufacturer Spark plug gap DR8EA NGK 0.6 0.7 mm Clutch type: Wet, multiple-disc Transmission: Primary reduction system Primary reduction ratio Secondary reduction system Secondary reduction ratio Transmission type Operation Gear ratio 1st 2nd 3rd 4th 5th Spur gear 74/20 (3.700) Chain drive 50/14 (3.571) Constant mesh 5 speed Left foot operation 36/16 (2.250) 31/21 (1.476) 27/24 (1.125) 25/27 (0.926) 23/29 (0.793) Brake: Front brake type operation Rear brake type operation Single disc brake Right hand operation Drum brake Right foot operation Suspension: Front suspension Rear suspension Telescopic fork Swingarm (Monocross) Shock absorber: Front shock absorber Rear shock absorber Coil spring/Oil damper Coil gas spring/Oil damper Wheel travel: Front wheel travel Rear wheel travel 160 mm 150 mm Electrical: Ignition system Generator system Battery type Battery capacity C.D.I. C.D.I. magneto GM 7CZ-3D 12 V 7 AH Headlight type: Bulb type Bulb wattage quantity:

TOYOTA TACOMA TRANSMISSION TO ATLAS TRANSFER CASE

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Filed Under (Toyota Manuals) by admin on 20-09-2011

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Remove the stock transfer case from the stock tailhousing adapter. The stock tailhousing is retained along with the stock rubber crossmember support. Once the transfer case is removed, you’ll see a seal located in the stock tailhousing. This seal must be removed and discarded. Some tailhousings also had a bearing which also must be removed. Install the new oil seal into the large end of the seal adapter. The sealing lip should be facing down. The small end of the seal adapter has the same O.D. (outside diameter) as the old seal that was just removed from the stock tailhousing. The seal adapter is a press-fit into the stock tail and should now be installed. The kit comes with a new spud shaft which fits over the stock Toyota transmission 26 spline output shaft. This spud shaft has a Jeep 23 male spline on the opposite side which fits into a standard 23 spline Atlas case. When installing the spud shaft into the Toyota transmission, the spud shaft does not seal onto the new seal just previously installed. The seal contacts seal off of the Atlas input shaft. The adapter plate should now be installed onto the Atlas transfer case. The adapter plate indexes off of the Atlas front retainer

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