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BMW K1200 LT Passenger Arm Rests INSTALLATION AND OWNER'S MANUAL

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

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INSTALLATION OF STAY TO TRUNK 7 . Install the Left Stay to the left side of the trunk as illustrated. Fasteners6,7 and 9 are different lengths. Refer to figure 7 for correct placement. (4mm HexWrench) 8. Assemble the Pad to the Arm Rest as illustrated. Figure 8 (5mm Hex Wrench) 9. Assemble the Arm Rest Assembly to the Stay . Figure 9 (6mm Hex Wrench) Be careful that the Washer remains on the Bushing To maintain a flush fit of the arm to the stay. 10. Repeat steps 8-12 for opposite side of motorcycle. 11 . Tighten all fasteners to 7ft.lbs / 84 in.lbs (10Nm).

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HARLEY DAVIDSON HEEL REST KIT INSTALLATION MANUAL

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Filed Under (Harley Davidson) by admin on 10-04-2011

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Models Kit 50227-01 is designed for forward controls and fits: •1989 and later FX Softail Models with Original Equipment (OE) Forward Controls, •1993 through 2002 FXDWG, •Dyna models equipped with Forward Control Kit 49080- 93 or 49080-93A. Kit 50227-01 does not fit Dyna models equipped with Forward Control Kit 49080-03 or Forward Control Footrest Support 33695-03 (left) or 33697-03 (right). Kit 50236-01 is designed for mid controls and fits: •all 1990 and later Dyna Model Motorcycles with Original Equipment (OE) Mid Controls. Additional Parts Required Proper installation of this kit also requires installing a pair of Heel Rest Pegs, or Shifter Pegs, which can also be mounted as heel rests. Refer to the appropriate Parts Catalog for stock shifter pegs, sold separately. The current Harley-Davidson Genuine Motor Accessories and Parts catalog also has a selection of Heel Rest Pegs or Shifter Pegs and matching Footpegs. Any shifter peg style that is symmetrical in design can be used as a left or right side heel rest. The rider’s safety depends upon the correct installation of this kit. Use the appropriate service manual procedures. If the procedure is not within your capabilities or you do not have the correct tools, have a Harley-Davidson dealer perform the installation. Improper installation of this kit could result in death or serious injury. (00333a) NOTE A Service Manual for your model motorcycle is available from a Harley-Davidson Dealer. Kit Contents See Figure 1 and Table 1. INSTALLATION NOTE See Figure 1 for the following procedure. 1. Remove the screw (B), lock nut (C) and spring washer (E) securing the left footpeg to the footrest support bracket (A). Save the hardware for later installation. NOTE Heel rest levers are side-specific. Levers mount so the set screws are on the underside. 2. Obtain a Heel Rest Peg or Shifter Peg (D) (purchased separately) and the left side heel rest lever (3). Apply Loctite® 243 (7) to the threads of the peg and install it to the left heel rest lever. 3. Obtain the screw (B), spring washer (E) and lock nut (C) removed in step 1, and the heel rest lever and peg assembly (D). Position the lever assembly to the desired angle on the mount, and slide the lever assembly with the spring washer into the footrest support bracket as shown. NOTE Splines on the lever and mount provide for a limited range of heel rest angle adjustment. For Kit 50227-01. The heel rest lever (3) can be adjusted after the mount (1) is attached but before the set screw (2) is installed. Slide the lever inward off the spline, and rotate it to the desired angle. For Kit 50236-01. The heel rest lever (3) angle cannot be adjusted after the mount (1) is attached without removing them from the footrest support bracket (A). Check to ensure the heel rest (D) is in a comfortable position before tightening the mounting hardware. 4. Install the original screw (B) and lock nut (C) to secure the heel rest assembly to the footpeg mount. Tighten to 33 ft- lbs (45.6 Nm). 5. Obtain a screw (6), spring washer (5) and nut (4) from the kit. Install the footpeg to the heel rest assembly and tighten to 33 ft-lbs (45.6 Nm). 6. Obtain a set screw (2) from the kit. Apply Loctite® 243 (7) to the threads, and install the set screw to the heel rest lever. Tighten to 16 in-lbs (1.8 Nm). 7. Perform Steps 1 through 6 for the right side. USE

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YAMAHA ROAD STAR PASSENGER FLOORBOARD RELOCATION ARMS INSTALLATION INSTRUCTONS

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Filed Under (Yamaha) by admin on 23-12-2010

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1. If you are installing Relocation Arms and Passenger Floorboards, install the floorboards first per their instructions. When installing the Relocation Arms with Passenger Floorboards already installed proceed as follows. 2. Starting on the LEFT side, fold the floorboard up. Remove the socket head bolt which secures the floorboard to the motorcycles stock peg support and remove the floorboard taking notice of which pinholes the dowel pins are located in. 3. Locate the Relocation Arm that has an “L” stamped on the backside of it. Place two of the supplied dowel pins into one of the two sets of the pinholes in the backside of the arm that are directly across from one another. (180 degrees apart.) Place the arm onto the mounting block and align the pins in the arm with the holes closest to the desired height you wish the floorboard to be at. Bolt the arm to the mounting block loosely using one of the supplied 5/16″ X 1″ button head bolts. 4. Place the Passenger Floorboard with its two dowel pins into the set of pinholes at the other end of the relocation arm that allows the floorboard to be parallel (horizontal) to the ground. Use one of the supplied 5/16″ X 3/4″ socket head bolts to mount the floorboard to the relocation arm and make finger tight. 5. Install the RIGHT side in the same manner. Check to see that the right arm is at the same height and/or position as the left. Bolt the floorboard to the other end of the arm using the remaining dowel pins and socket head bolt. Tighten all four bolts on both sides securely. NOTE: Four other height positions are possible by using the other sets of holes on the front side of the mounting block and backside of the relocation arm

1994 – 2004 BMW Motorcycle History

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Filed Under (BMW) by admin on 17-11-2010

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1994 brought many changes to BMW, most obviously by the introduction of the “R259″ series twins and the elimination of the old standby “Airhead” twins that had been BMW’s trademark for seven decades. While it is interesting to look at all the technologies introduced during the 1994 to 2004 time block, it is also exciting to look into what was going on as far as changes in BMW more esoteric than measurable. In this author’s opinion there were unspoken changes in BMW’s mindset and philosophy. BMW had forged it’s reputation for long lasting, simple machines built to the highest standards and quality; aimed at a dwindling, older (OK, Jeff, more mature) market of enthusiastic but eccentric riders. They built motorcycles that were easy for the owners to maintain and modify to fit their specific wants. BMW had always built their bikes their way; often it seemed like they did so in spite of what the younger and upwardly mobile riders were looking for. By 1994, the airhead was simply not a sellable motorcycle; the buying market was younger and wanted performance in line with what the Japanese products offered at much lower prices. The K 75/100 series that were so far ahead of their time in 1984 when they were introduced were also showing their age. No doubt, BMW knew this was coming many years before the new “Oil Head” was introduced. They knew that the riding community had reduced its mean age substantially. The younger riders had money to spend on a bike that had to be BMW, yet had to be totally more modern both in performance and in perception than what BMW had been selling. Thus, the R259 was born. The Birth of the R259 Twins The new BMW corporate mindset, if you will, was no longer concerned with selling motorcycles that would be handed down from one generation to the next, nor was BMW concerned about ease of maintenance with standard hand tools. Although the new bikes were still able to outlast the riders, the concern for building units to last a quarter-million miles was not so much in the forefront of the design. The new models would have to be powerful, fast, handle better than anything on the road; they would need to offer a standard of technology that the Japanese would never build. They should be complex pieces of rolling art. Most obvious, though, was that they would build a product aimed at an entirely new market of riders who would likely not be interested in maintaining the bikes themselves or really understanding the nuances of design. The new customers BMW was looking for were serious riders who were more interested in the fun and excitement of riding than they were in savoring the history of the older designs

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PASSENGER FLOORBOARD RELOCATION ARMS FOR TRIUMPH AMERICA AND SPEEDMASTER

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Filed Under (Triumph) by admin on 25-12-2010

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1. If you are installing the relocation arms at the same time as floorboards install the floorboards first per their instructions. When installing the relocation arms with floorboards already installed proceed as follows. 2. Starting on the left side, fold the floorboard up. Remove the socket head bolt and nut which secures the floorboard to the motorcycles stock peg support and remove the floorboard taking notice of which holes the dowel pins are located in. 3. Install one of the 5/16″x1 Ω” hex bolts supplied thru the stock peg support from the backside (The threads of the bolt will face out towards you.) Place the two dowel pins into the holes at one o’clock and seven o’clock on the stock peg mount. Place the spacer blocks backside (stamped with an “L”) onto the bolt and align the hole with the pins. 4. Locate the relocation arm that has an “L” stamped on the backside of it. Place two of the supplied dowel pins into one of the two sets of the holes in the arm that are directly across from one another (180 degrees apart). Place the arm onto the spacer bock aligning the pins in the arm with the holes closest to six and twelve o’clock. Depending on which of the two sets of holes on the arm you chose the arm would, either be down at about seven o’clock or just below nine o’clock. These are the initial height settings and you may select which ever set is most comfortable for the passenger. Install one of the acorn nuts supplied onto the bolt and make finger tight. 5. Place the floorboard with its two dowel pins into the set of holes at the other end of the relocation arm that allows the floorboard to be horizontal or parallel to the ground. Use one of the 5/16″x3/4″ socket head bolts supplied to bolt the floorboard to the relocation arm and make finger tight. 6. Install the right side in the same manner, place the dowel pins in the holes at eleven o’clock and at five o’clock on the stock peg mount, then the spacer blocks backside (stamped “R”) onto the pins followed by the relocation arm with two dowel pins in one set of holes (180 degrees apart). Check to see that the right arm is at the same height or position as the left then install the acorn nut finger tight. Bolt the floorboard the other end of the arm using the remaining dowel pins and socket head bolt. Tighten the two bolts with the acorn nuts and the two socket head bolts securely

YAMAHA ROADLINER AND STRATOLINER PASSENGER FLOOBOARD RELOCATION ARMS

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Filed Under (Yamaha) by admin on 23-12-2010

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1. When installing floorboards at the same time first refer to their instructions and using the longer right side black floorboards mounting block supplied with this set of relocation arms. Leave the final floorboards mounting bolt installed loosely at this time. 2. If installing the relocation arms after installing the floorboards at an earlier date proceed as follows. 3. On the left side remove the Allen screw below the floorboards pivot and remove the floorboard from the black mounting block. Remove the dowel pins from their holes on the block. Locate the left relocation arm (stamped “L” and “R” on their backsides). On the end with the clearance hole (not threaded) Place the two dowel pins into one of the two sets of holes which are directly across from each other (180 degrees apart). Hold the arm with the dowel pins up to the mounting block. Align the dowel pins with each of the three sets of holes in the block one at a time noting the height of the opposite end of the arm where the floorboard will mount. Move the dowel pins to the other set of holes on the arm and again hold the arm with the dowel pins up to the blocks three sets of holes. Choose the set of holes in both the block and arm which will set the floorboard to the desired height and place the arm with the dowel pins onto the block. Using one of the button head Allen screws supplied bolt the arm to the block and tighten securely. 4. Locate two of the dowel pins supplied and one of the Allen screw removed earlier. Place the dowel pins into the holes of the arm which allow the floorboard to be level or parallel to the ground. Place a drop of loctite on the threads of the screw and tighten securely. Install the right floorboard in the same manner. 5. On the right side remove the floorboard from the mounting block. Remove the mounting block and replace it with the longer one supplied. Install the right arm in the same manner as the left using the set of dowel pin holes to match the height or angle of the left arm. Install the right floorboard and tighten securely. Recheck all fasteners for tightness.

HARLEY DAVIDSON FXSTD PASSENGER BACKREST AND LUGGAGE RACK INSTALLATION MANUAL

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Filed Under (Harley Davidson) by admin on 09-03-2011

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Do not exceed luggage rack weight capacity. Too much weight can cause loss of control, which could result in death or serious injury. (00373a) INSTALLATION Passenger Upright 1. Unscrew the captive screw fastening the seat rear bracket to the fender. 2. Remove the rubber plugs from the three holes in the rear fender where the passenger upright installs. 3. See Figure 2. Fasten the studplate (2) to the fender (A) with the backing plate (3) and three flange locknuts (4). 4. See Figure 1. Fasten the passenger upright (3) to the studplate (1) with three flange locknuts (2). 5. Insert the seat front bracket into the frame, then fasten the seat rear bracket to the fender. NOTE The seat must be temporarily bowed up in the center to fit the seat rear bracket through the slot in the passenger upright. 6. Kit 51144-02 only. See Figure 2. Carefully clean the lower hole (B) on the passenger upright (1) with isopropyl alcohol to remove any grease or dirt. Remove backing from adhesive emblem (5) and press the emblem firmly in to place. After installing seat, pull upward on seat to be sure it is locked in position. While riding, a loose seat can shift causing loss of control, which could result in death or serious injury. (00070b) 1 4 3 2 is03890 1. Stud plate 2. Locknut, flange (3) 3. Passenger upright 4. Backrest pad Figure 1. Passenger Upright, Backrest Pad and Luggage Rack Installation NOTE When temporarily removing the passenger upright, the mounting and backing plates may be left in place to simplify passenger-upright re-installation. Thread the flange nuts back onto studs to store the nuts. After installing seat, pull upward on seat to be sure it is locked in position. While riding, a loose seat can shift causing loss of control, which could result in death or serious injury. (00070b) Backrest Pad See Figure 2. Fasten the backrest pad (7) to the passenger upright (1) using the button-head screw (6) as shown. Luggage Rack NOTE See Figure 2. Fasten the luggage rack (8) to the backrest with the backrest pad (7) removed from the studplate (2). -Fasten the luggage rack (8) to the passenger upr ight (1) using the luggage-rack mounting plate (11), button-head screw (12)

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Harley Davidson Softail Drive Side Brake System Installation Manual

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Filed Under (Harley Davidson) by admin on 30-03-2012

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Removing The Stock Components Although the PM Drive Side Brake System can be installed with the swing arm bolted to the frame, we recommend removing it for better access as well as repainting. Begin by removing rear wheel,stock brake components and belt guard from swing arm. Photo #1 Using supplied 3/4 x 2″bolt,position Drive Side BrakeAssembly on swing arm. Slide assembly to center position of tab and axle spans. Making sure brake mounting tabs are flush with swing arm,snug 3/4 x 2″ bolt to hold assembly and mark swing arm area to be ground Photo #2 . Remove entire assembly from swing arm and thoroughly grind paint away from marked areas Photo #3 . Photo #4 Re-mount assembly to swing arm and slide to rear-most position of both axle and brake mounting tabs. Confirm that brake tabs are flush with swing arm and parallel to each other. Snug 3/4 x 2″bolt and 5/16″socket head cap screws in tabs to hold assembly during welding process. Warning Center the motorcycle on the lift so that it will not fall while you are working on it. Photo #6 Photo #5 Photo #7 Photo #9 Welding Tabs to Swing Arm Note PM recommends all welding be done by a certified welder. Photo #5 Tack weld rear of tabs to swing arm. Avoid excessive welding near brake as- sembly as heat can mar finish. Loosen socket head cap screws and 3/4″bolt,Slide entire assembly to forward most position and re tighten bolts Photo #6 (movement should require minimal effort if tabs are aligned properly) and tack front of tabs to swing arm. Remove brake assembly from swing arm. Weld tabs to swing arm.Verify alignment of tabs, as they must remain parallel to each other. Repaint swing arm and re-install on bike to factory torque specs. Installing Brake Assembly Remove primary bracket from tower assembly (this allows bracket to be installed without having to line up caliper on disc) by removing the three 5/16″socket head cap screws (commonly called allen bolts). Photo #7 Mount rear tire and bolt pulley to rear wheel. Place disassembled bracket against pulley using smaller of two supplied spacers between bracket and pulley. Slide wheel/brake assembly into swing arm. Place large spacer on right side and slide axle in. Do not tighten axle at this point . Photo #8 Slide caliper/tower assembly over disc and install 5/16″x 1″socket head cap screw in center hole to position assembly Photo #9 . Snug, but do not tighten bolt at this point.

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HARLEY DAVIDSON PASSENGER FOOTBOARD INSERT KITS INSTALLATION MANUAL

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Filed Under (Harley Davidson) by admin on 15-03-2011

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INSTALLATION If replacing an insert or inserts on a vehicle currently equipped with Swept Wing Passenger Footboards: Existing Footboard Insert Removal NOTE Carefully remove the currently installed footboard insert to avoid damage to chrome surfaces. 1. See Figure 1. Fold the passenger footboard (1) into the UP position. 2. Loosen, but do not remove the footboard insert setscrew (2). 3. With the footboard folded DOWN, carefully raise an outside corner of the existing insert with a suitable flat-bladed tool, taking care to avoid damaging the chrome footboard pan. 4. Continue around the insert, using a second tool if necessary to pry the existing insert (3) from the footboard pan. 5. If replacing both inserts, repeat for the opposite footboard. Swept Wing Passenger Footboard Installation 1. If installing inserts on a vehicle NOT currently equipped with Swept Wing Passenger Footboards: •Remove currently installed passenger footboards (if so equipped) per the instructions included with the Swept Wing Passenger Footboard Kit. •Remove currently installed passenger footpegs (if so equipped) by removing the socket screw with lockwasher retaining the footpeg support bracket to the rear fork (swingarm) bracket. 2. Follow the instructions in the Swept Wing Passenger Footboard Kit to install the passenger footboards. Footboard Insert Installation 3. ALL applications: Center the two footboard pivot pins. 4. Use soapy water to moisten the rubber dowel pins and pivot pin slots on the bottom of the new footboard insert. 5. Place the insert into position with the rubber dowel pins mating the holes in the footboard pan. Firmly press the insert into the footboard until the dowel pins pop into place. 6. Fold the passenger floorboard UP and tighten the setscrew to secure the insert. 7. Repeat Steps 3 through 6 for the opposite footboard. NOTE Avoid the contact of chrome surfaces with abrasive materials (stones, sand, etc.) as damage will result

Integral ABS and ASC – new Riding Dynamic Control Systems for BMW Motorcycles

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

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Entering its next generation, BMW Motorrad Integral ABS is taking a quantum leap in the process of evolution, advancing from a stand-alone solution acting only on the brakes into a fully networked all-round system. Offering the new generation of Integral ABS, BMW Motorrad provides the foundation for additional dynamic riding control systems with a reduction in technical requirements and features. And following the customer’s wishes, this new generation also opens up the option in future for further-reaching rider assistance functions. The first step in this direction is BMW Motorrad ASC Automatic Stability Control available as of 2007. This system serving to control drive spin on a production motorcycles is being introduced as an optional extra on the touring models in the BMW K and Boxer Series. Once again, therefore, BMW is acting as the pioneer in the introduction of advanced safety technologies on the motorcycle. This further enhances the leadership which BMW Motorrad has shown in the area of active safety for more than 15 years. Choosing the right development partner for both systems, BMW Motorrad obviously had to focus on that partner’s specific competence in control technology and the networking of functions within the vehicle. In recent years, major car suppliers have become aware of the technical challenges presented by the motorcycle with its specific riding dynamics and the growing potential for motorcycle control systems in the market. The decisive point in preselection of the development partner was the willingness and ability to develop specialised solutions suitable for use on BMW motorcycles. So taking this into account, joint development of the new generation of ABS brake technology started together with Continental-Teves in early 2003. Integral ABS. BMW Motorrad’s new Integral ABS technology has been developed separately from the previous system and the entire layout of the system has been newly conceived from the ground up. Capitalising on progress in technology in both hydraulics and electronics, the development engineers have succeeded in simplifying the architecture of the system while at the same time enhancing its functions to an even higher standard. The result is supreme stopping power and very short stopping distances even without electrical power assistance on the brakes.

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