adjust idle speed on 2005 corolla

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1984 Mercedes Benz 190E Fuel Delivery and Air Induction Engine Testing And Adjustment Manual

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Filed Under (Mercedes-benz Manuals) by admin on 13-04-2012

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Note: Test and adjust lambda control with a lambda control tester. The lambda control and the idle speed emissions level must not be tested when the engine is very hot, e.g. immediately after driving sharply or after measuring engine output on the dynamometer. Testing, adjusting 1 Complete measurement sheet. 2 Switch off air conditioning or automatic climate control. Move selector lever into position “P”. 3 Read out DTC memory. Note: Not available on model year 1984-1986. 4 Connect testers: oil remote thermometer (018)124 589 07 21 00 lambda control tester (012) twin socket (031) trigger clamp (011) exhaust probe (005)126 589 11 63 00 CO measuring instrument (006) engine tester with oscilloscope (030) multimeter (003) test cable (033)102 589 04 63 00. 5 Position extraction device (014) at exhaust tail pipe. 6 Check engine coolant level, adjust to correct level. 7 Check engine oil level, pay attention to condition of oil (visual inspection). 8 Take off air cleaner. 9 Check ease of movement and condition of throttle control linkage and throttle valve. Grease all bearing points and ball sockets. 10 Check fulcrum lever, adjust. Check whether the roller (15) in the fulcrum lever (13) is resting free of tension against end stop. Adjust fulcrum lever (13) with the connecting rod (2), if necessary, so that the roller (15) is resting free of tension against end stop. 11 Idle stop. Check whether the throttle valve is resting against idle stop. Disconnect connecting rod (2) for this step. Adjust throttle control. Engines with cruise control only. Check whether the actuator is resting against idle stop of cruise control by pressing the lever of the actuator clockwise against idle stop at cruise control. When attaching the connecting rod (21), ensure that the lever of the actuator is lifted approx. 1 mm off the idle stop at the cruise control. Adjust tie rod, if necessary. Adjust throttle control. 12 Check wide open throttle stop from the accelerator pedal , adjust. 13 Voltages Test (battery and ignition coil ): No-load voltage Connect voltmeter to the battery, paying attention to the polarity, and take reading of voltage. Specification: 12.2 volts . Ignition coil Switch on ignition with engine not running. Test the voltage terminal 15 to ground at contact 5 of diagnostic connector. Specification: battery voltage Test difference in voltage between terminal 15 and terminal 1 at contacts 5 and 4 of diagnostic connector. Specification: 0 volts If the specified values are not reached, test

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1999 Jeep Grand Cherokee Limited AUTOMATIC TRANSMISSIONS Chrysler 45RFE Electronic Controls Repair Manual

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Filed Under (Jeep Manuals) by admin on 11-07-2012

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INTERNAL TCM Circuit Description The TCM is reporting internal errors. Diagnostic Procedure 1. Turn ignition switch to LOCK position. Remove transmission control relay. Measure resistance between ground and relay ground circuit (Black/Yellow wire) in relay connector. If resistance is greater than 5 ohms, repair open circuit. If resistance s not greater than 5 ohms, go to next step. 2. The TCM has an internal problem and must be replaced. P0715: INPUT SPEED SENSOR ERROR Circuit Description DTC P0715 will set if an excessive change in input RPM has been detected in any gear. Possible Causes * Intermittent wiring and connector problems. * Faulty input speed sensor. * Input speed sensor circuits shorted to ground, shorted to voltage, or open. * Faulty TCM. Diagnostic Procedure 1. Place gear selector in “P” position and start engine. Using scan tool, monitor input speed sensor value. If value is less than 400 RPM, go to next step. If value is not less than 400 RPM, go to step 9. 2. Turn ignition switch to LOCK position. Install Transmission Simulator (8333). Turn ignition on. Using transmission simulator, turn rotary knob to middle (1000/3000) position. Turn INPUT/OUTPUT switch on. Using scan tool, monitor input and output speed sensor values. If input speed sensor value is 2950- 3050 RPM and output speed sensor value is 950-1050 RPM, replace input speed sensor. If speed sensor values are not as specified, go to next step. 3. Turn ignition switch to LOCK position. Disconnect TCM harness connector. Remove transmission control relay. Using fused jumper wire, jumper fused B+ circuit (Red/White wire) and transmission relay output circuit (Red wire) together at relay connector. Turn ignition on. Measure voltage between ground and input speed sensor signal circuit (Red/Black wire) at TCM harness connector. If voltage is greater than 3 volts, repair circuit for short to voltage. If voltage is not greater than 3 volts, remove jumper wire, install relay and go to next step. 4. Turn ignition switch to LOCK position. Disconnect input speed sensor harness connector. Measure resistance of input speed sensor signal circuit (Red/Black wire) between TCM and input speed sensor. If resistance is greater than 5 ohms, repair open circuit. If resistance is not greater than 5 ohms, go to next step. 5. Measure resistance of input speed sensor ground circuit (Dark Blue/Black wire) between TCM and input

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1997-2005 Ford Expedition REAR AXLE NOISE REPAIR MANUAL

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

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5L3Z-4209-F = (9.75-Inch Ring Gear/3.73 ratio) •205-506 – Seal Protectors (Rotunda Tool) (1997-2005 F-150, 1997-2005 •W710084-S439 – Wheel End Nuts Expedition/Navigator) •390266-S100 – Differential Slave Pin Bolt (9.75? axles) NOTE 9.75 REAR AXLE HOUSINGS WERE •387426-S100 – Differential Slave Pin Bolt (8.8? REDESIGNED IN MID-1999, INCREASING FRONT axles) PINION BEARING SIZE. REPLACING RING & •4B422 – Axle Circlips PINIONS IN AN OLD-STYLE AXLE ASSEMBLY •ZC-21 – Metal Surface Cleaner WILL REQUIRE INSTALLATION OF SPACER P/N •TA-29 – Ultra Silicone Sealant YL3Z-4662-CA. SPACER IS TO BE INSTALLED BETWEEN INNER PINION BEARING AND •TA-27 – Stud and Bearing Mount Retaining COLLAPSIBLE SPACER. Compound and Sealer •F3TZ-4121-AA – Fluid Tag (REQUIRED IF FLUID THE AXLE SERVICE KITS INCLUDE THE TYPE IS CHANGED FROM FEHP DURING FOLLOWING COMPONENTS: REPAIR) •4630 – Head Bearing WARRANTY STATUS: Eligible Under Provisions Of •4628 – Head Bearing Cup New Vehicle Limited •4676 – Pinion Seal Warranty Coverage •386989-S2 – Washer (Slinger) OPERATION DESCRIPTION TIME •4621 – Tail Bearing 052303A 1997-2002 Expedition, 4.7 Hrs. 1998-2002 Navigator, •4616 – Tail Bearing Cup 1997-2004 F-150 Heritage, •4222 – Differential Bearing Cups 2004-2005 F-150: Rear •4221 – Differential Bearings Axle Noise Repair •4209 – Gear Set (includes pinion shims, pinion (Includes Time For Road nut and crush spacer) Test To Verify Concern (Beam Axle)) (Do Not Use •4209 – Instruction Sheet With 4205A Or 4205A4) NOTE 052303A 2003-2005 Expedition: 5.8 Hrs. THE KIT DOES NOT INCLUDE THE FOLLOWING Rear Axle Noise Repair ITEMS. SOME OR ALL OF THESE ITEMS WILL (Includes Time For Road BE REQUIRED TO COMPLETE THE AXLE Test To Verify Concern (Irs SERVICE, DEPENDING ON AXLE Axle)) (Do Not Use With APPLICATION/STYLE. 4010D Or 4010D4) 052303A 2003-2005 5.9 Hrs. ORDER AS NEEDED:

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2003-2005 Toyota Corolla HEATER PERFORMANCE IMPROVEMENT Repair Manual

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Filed Under (Toyota Manuals) by admin on 23-01-2012

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HEATER PERFORMANCE IMPROVEMENT – AC002-05 February 14, 2005 Page 3 of 15 Install Air Conditioner Unit Assembly. Air Conditioner Unit Assembly 1. Evacuate Refrigerant HFC-134a (R-134a). Equipment: Robinair R-134a Refrigerant Recovery/Recycling Machine (Robinair P/N: 342000) 2. Disconnect Negative Terminal of Battery. 3. Drain Coolant. CAUTION: Do not remove the radiator cap while the engine and radiator are still hot, as coolant and steam can be blown out under pressure. A. Remove the radiator cap. B. Loosen the radiator and engine drain plugs and drain the coolant. C. Close the drain plugs. Engine Drain Torque: 13 Nm (130 kgfcm, 9 ftlbf) HEATER PERFORMANCE IMPROVEMENT – AC002-05 February 14, 2005 Page 4 of 15 4. Disconnect Cooler Refrigerant Suction Hose No. 1. A. Install the SST to the piping clamp. SST: 09870-00015 HINT: Confirm the direction of the piping clamp claw and the SST using the illustration shown on the caution label. B. Push down the SST and release the clamp lock. NOTE: Be careful not to deform the tube when pushing the SST. C. Pull the SST slightly and push the release lever. Then remove the piping clamp with the SST. D. Remove the piping clamp from the SST. E. Disconnect the cooler refrigerant suction hose No. 1. NOTE: Disconnect the tube by hand only. Do not pry the tube apart. Cap the open fittings immediately to keep moisture or dirt out of the system. Disconnect the same way as cooler refrigerant suction hose No. 1. 6. Disconnect Heater Inlet Water Hose. Using pliers, grip the claws of the clip and slide the clip and disconnect the heater inlet water hose. 7. Disconnect Heater Outlet Water Hose. Using pliers, grip the claws of the clip and slide the clip and disconnect the heater outlet water hose. 8. Place Front Wheels Facing Straight Ahead. 9. Remove Horn Button Assembly. NOTE: If the airbag connector is disconnected with the ignition switch ON, DTCs will be recorded. Before working on SRS, please refer to the Technical Information System (TIS), 2005 model year Corolla Repair Manual: Supplemental Restraint System: Supplemental Restraint System: Precaution. A. Using a torx socket wrench, loosen the 2 torx screws until the groove along the screw circumference catches on the screw case.

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LM7, L59 or L33 Engines with Cold Start Rough or Incorrect Idle, Misfire, Malfunction Indicator Lamp (MIL) or Flashing Requiring O2 Sensor Replacement

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Filed Under (More Manuals) by admin on 08-06-2011

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2004-2005 Cadillac Escalade 2004-2005 Chevrolet Avalanche, Silverado 1500, Suburban, Tahoe 2005 Chevrolet Silverado Hybrid (HP2) 2004-2005 GMC Sierra 1500, Yukon, Yukon XL 2005 GMC Sierra Hybrid (PH2) with Vortec 5300 5.3L V-8 Engine (VINs T, Z, B — RPOs LM7, L59, L33 Some customers may comment on a Malfunction Indicator Lamp (MIL) On or that the MIL is flashing. An actual engine misfire may or may not be felt along with an incorrect idle speed. Typically this occurs during cold winter months, on cold engine starts. Some vehicles may have been previously serviced for the same condition. Technicians may also find the following DTCs stored with the Tech 2® P0131, P0133, P0134, P0137, P0138, P0140, P0151, P0153, P0154, P0157, P1133, which may be in conjunction with P0171, P0174, P0300 and P1138. Cause Water shock occurs when water droplets are present in the exhaust. The water in the exhaust contacts the sensor element inside the HO2 sensor, causing the HO2 sensor element to crack. Correction Upon diagnostic investigation, the technician may find that the HO2 sensor requires replacement. In addition to replacing the affected HO2 sensor, these vehicles should also be reflashed with the latest PCM calibration. An updated PCM calibration will be available to dealerships as part of TIS 2000 incremental satellite update 11.0 (NAO version 25.010) or greater. Always, make sure your Tech 2 is updated with the latest software version

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2005 TOYOTA AVALON TVIP V4 (REMOTE ENGINE STARTER) INSTALLATION MANUAL

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Filed Under (Toyota Manuals) by admin on 26-03-2012

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TOYOTA AVALON 2005 – TVIP V4 (REMOTE ENGINE STARTER) Procedure Page 2 of 33 pages Issue: C 02/02/05 Care must be taken when installing this accessory to ensure damage does not occur to the vehicle. The installation of this accessory should follow approved guidelines to ensure a quality installation. These guidelines can be found in the “Accessory Installation Practices” document. This document covers such items as:- • Vehicle Protection (use of covers and blankets, cleaning chemicals, etc.). • Safety (eye protection, rechecking torque procedure, etc.). • Vehicle Disassembly/Reassembly (panel removal, part storage, etc.). • Electrical Component Visassembly/Reassembly (battery disconnection, connector removal, etc.). Please see your Toyota dealer for a copy of this document. 1. Vehicle Disassembly. (a) Remove the negative battery cable. (Fig. 1-1) (1) Protect the fender before starting. (2) Do not touch the positive terminal with any tool removing the cable. (b) Remove the glove box under-dash cover. (Fig. 1-2) (c) Remove the passenger’s step cover. (Fig. 1-3) Fig. 1-1 10mm Wrench Negative Battery Cable Battery Step Cover Fig. 1-3 Nylon Panel Removal Tool Fig. 1-2 Under-Dash Cover Nylon Panel Removal Tool TOYOTA AVALON 2005 – TVIP V4 (REMOTE ENGINE STARTER) Procedure Page 3 of 33 pages Issue: C 02/02/05 (d) Remove the passenger’s cowl cover. (Fig. 1-4) (1) Remove one nut securing the cowl cover. (e) Remove one screw and one bolt from the glove box assembly. (Fig. 1-5) (f) Remove the glove box assembly. (Fig. 1-6) (1) Open the glove box door and remove three screws securing the glove box assembly. (2) Disconnect the trunk opener cancel switch from the glove box assembly if equipped. For vehicles with Smart Entry, the disassembly process ends on Step f. Go to Section 5. For vehicles without Smart Entry, continue the disassembly process. FOR VEHICLES WITHOUT SMART ENTRY SYSTEM ONLY. (Step g) NOTE: Do not perform this step if the vehicle has Smart Entry. (g) Remove the driver’s step cover. (Fig. 1-7) Screw Fig. 1-5 10mm Wrench, Phillips Screwdriver Bolt Glove Box Assembly Cowl Cover Fig. 1-4 Nut Fig. 1-6 Nylon Panel Removal Tool, Phillips Screwdriver Screws (x3) Glove Box Assembly Trunk Opener Cancel Switch Connector Fig. 1-7 Step Cover Nylon Panel Removal Tool
TOYOTA AVALON 2005 – TVIP V4 (REMOTE ENGINE STARTER) Procedure Page 4 of 33 pages Issue: C 02/02/05 FOR VEHICLES WITHOUT SMART ENTRY SYSTEM ONLY. (Steps h-l) NOTE: Do not perform this step if the vehicle has Smart Entry. (h) Remove the driver’s cowl cover. (Fig. 1-8) (1) Remove the one nut securing the cowl cover. (i) Remove the hood release cable. (Fig. 1-9) (1) Do not bend the hood release cable. (j) Open the screw cover on the lower dash cover. Insert the tip of a Nylon Panel Removal Tool in the upper slot to loosen it. (Fig. 1-9) (1) Remove one screw and one bolt securing the lower dash cover. (k) Remove the lower dash cover. (Fig. 1-10) (1) Disconnect the temperature sensor (connector and aspirator hose) from the lower dash cover if equipped. (l) Carefully remove the driver side airbag assembly. (Fig. 1-11) (1) Remove four bolts securing the driver side airbag assembly. (2) Be careful not to get cut by the sharp metal edges. (3) Do not disconnect the airbag assembly. (4) Use the empty V4 kit box to support the airbag assembly on the floor

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Toyota Corolla Repair Manual 2003-2005

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Filed Under (Toyota Manuals) by admin on 13-01-2012

repair and service manual covers Toyota Corolla, all US and Canadian models, 2003-2005. (Note: this manual does NOT include information specific to XRS models).

Table of Contents

Introduction: About this manual | Introduction | Vehicle identification numbers | Maintenance techniques, tools and working facilities | Buying parts | Jacking and towing | Booster battery (jump) starting | Conversion factors | Automotive chemicals and lubricants | Safety first! | Troubleshooting

1992 Toyota Truck Pickup 2WD Cooling and Exhaust Engine Ignition Timing Adjustments Manual

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Filed Under (Toyota Manuals) by admin on 15-03-2012

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1. Connect a tachometer test probe to terminal IG of the check connector, Fig. 211 2. NOTE: Never let the tachometer lead touch ground as this could cause damage to the igniter and/or coil. Be sure to check that your tachometer is compatible with this ignition system. Consult the operating manual for your instrument. Service Check Connector 3. Fig. 223 Ignition Timing (10) Check idle speed . 4. Idle Speed : 800 rpm Using a timing light, verify that the timing mark on the timing cover is aligned with the mark on the crankshaft pulley, Fig. 223 5. Ignition Timing: 10°BTDC at idle Tighten the distributor bolt and recheck the ignition timing. 6. Remove service wire. 7. Check idle advance timing with service wire removed. 8. Ignition Timing: 8°BTDC at idle Check idle speed and adjust if necessary, COMPUTERIZED ENGINE CONTROLS. 9. Disconnect tachometer and timing light from engine. 10. Timing Belt Removal Notes Fan Shroud Removal & Installation Remove radiator fan upper and lower shrouds. 1. Installing Power Steering Pump And Belt Remove power steering pump drive belt and pump. 2. Disconnect No. 2 and No. 3 air hoses from air pipe. 3. 4. Fan Removal Remove alternator drive belt , cooling fan, belt guide and fan pulley. 5. Remove No. 2 timing belt cover. 6. Fig. 6 Aligning Timing Marks Place No. 1 cylinder at TDC of compression stroke by turning the crankshaft pulley and aligning pulley groove with the “0” mark on the No. 1 timing belt cover. Ensure alignment marks on the camshaft timing sprockets and the No. 3 timing belt cover are correctly aligned, Fig. 6. 7. If not, turn the crankshaft pulley one complete revolution. 8. Crankshaft Pulley Removal

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HIGH TECH DUAL QUAD THROTTLE LINKAGE KIT INSTALLATION MANUAL

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Filed Under (More Manuals) by admin on 24-02-2012

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INSTALLATION 1. This kit contains all the necessary parts to operate Edelbrock carburetors in a progressive or 1: 1 type operation. Figure 1 illustrates typical progressive type installation in which the rear carburetor is the primary carb. This simplifies linkage attachment to the vehicle’s existing throttle linkage. 2. Before attaching anything to the carburetors, loosely assemble the major components of the linkage kit using Figure 1 as a guideline. Note that the longer rod will go to the rear carb with the flat facing down, and the short rod goes to the front carb with the flat facing up. The brass bearing blocks should be positioned so that the set screws will tighten against the flat of the short rod, i.e., both bearing block set screws will be up. Attach the aluminum collar to the long rod between the bearing blocks with the set screw against the flat. 3. Attach the linkage assembly to the carbs with the 10-24 allen head screws and locknuts. Attach to the rear carb using one of the brass 518″ O.D. x 3/16″ I.D. shoulder spacers and the tapered brass anti-rotation shoulder spacer in the top hole of the throttle arm (112″ diameter). Note that the shoulder spacer goes on the inside and the anti-rotation spacer goes on the outside of the throttle arm. Attach to the front carb using the 3/16″ hole just below the large hole in the throttle arm. ADJUSTMENT – NOTE: If carburetors are full of fuel, place rags in the carb throats to absorb the fuel discharged when working the throttle linkage. This will prevent flooding and possible damage to the piston rings upon start-up. Be sure to remove the rags before starting engine. 1. Tighten the set screw and locknut on the rear bearing block, making sure that the bearing block is close to the end of the shaft from the front carburetor. 2. Push the throttle arms of both carbs to WOT (Wide Open Throttle), then adjust the aluminum collar to touch the rear brass bearing block. Securely tighten the set screw and locknut on the aluminum collar. 3. Let both throttle arms return to idle position, then adjust the front brass bearing block to almost touch the aluminum collar. Leave about .020″-.030″ clearance to allow for independent idle speed adjustment of each carburetor. Tighten all set screws, locknuts, and bolts at this time. 4. Check for smooth operation of linkage from idle to WOT and note that the rear carb will open about 20″ before starting to open the front carb. Both carbs should reach WOT at the same time. 5. IMPORTANT: Attach a return spring to both carburetors as shown in Figure 1. Use the return spring brackets supplied, bending as necessary for attachment to your engine. Generally the brackets can be attached to the intake manifold using the existing bolts. Use the longer or shorter spring on either the front or rear carburetor as required for your particular application. Check for smooth operation and positive return to idle. 6. Attach existing throttle linkage to rear carburetor using the 3/16″ hole below the large hole in the throttle arm. It may be necessary to shorten your existing linkage rod or cable, or to use an aftermarket cable mounting plate. BEFORE STARTING ENGINE, DOUBLE-CHECK FOR SMOOTH OPERATION OF LINKAGE FROM IDLE TO WIDE OPEN THROTTLE AND FOR POSITIVE RETURN TO IDLE. OPTIONAL 1:l INSTALLATION If 1:l linkage is desired, assemble and attach linkage kit as above, except that the attachment point to the front carburetor’s throttle arm will be the large 112″ hole using the other two 518″ O.D. x 3/16″ I.D. shoulder spacers (similar to the rear carburetor). Adjust the bearing blocks to eliminate all freeplay, so that all motion to the rear carburetor’s throttle arm is transmitted directly to the front carb’s throttle arm

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HIGH TECH DUAL QUAD THROTTLE LINKAGE KIT INSTALLATION INSTRUCTIONS

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Filed Under (More Manuals) by admin on 02-01-2012

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INSTALLATION 1. This kit contains all the necessary parts to operate Edelbrock carburetors in a progressive or 1: 1 type operation. Figure 1 illustrates typical progressive type installation in which the rear carburetor is the primary carb. This simplifies linkage attachment to the vehicle’s existing throttle linkage. 2. Before attaching anything to the carburetors, loosely assemble the major components of the linkage kit using Figure 1 as a guideline. Note that the longer rod will go to the rear carb with the flat facing down, and the short rod goes to the front carb with the flat facing up. The brass bearing blocks should be positioned so that the set screws will tighten against the flat of the short rod, i.e., both bearing block set screws will be up. Attach the aluminum collar to the long rod between the bearing blocks with the set screw against the flat. 3. Attach the linkage assembly to the carbs with the 10-24 allen head screws and locknuts. Attach to the rear carb using one of the brass 518″ O.D. x 3/16″ I.D. shoulder spacers and the tapered brass anti-rotation shoulder spacer in the top hole of the throttle arm (112″ diameter). Note that the shoulder spacer goes on the inside and the anti-rotation spacer goes on the outside of the throttle arm. Attach to the front carb using the 3/16″ hole just below the large hole in the throttle arm. ADJUSTMENT – NOTE: If carburetors are full of fuel, place rags in the carb throats to absorb the fuel discharged when working the throttle linkage. This will prevent flooding and possible damage to the piston rings upon start-up. Be sure to remove the rags before starting engine. 1. Tighten the set screw and locknut on the rear bearing block, making sure that the bearing block is close to the end of the shaft from the front carburetor. 2. Push the throttle arms of both carbs to WOT (Wide Open Throttle), then adjust the aluminum collar to touch the rear brass bearing block. Securely tighten the set screw and locknut on the aluminum collar. 3. Let both throttle arms return to idle position, then adjust the front brass bearing block to almost touch the aluminum collar. Leave about .020″-.030″ clearance to allow for independent idle speed adjustment of each carburetor. Tighten all set screws, locknuts, and bolts at this time. 4. Check for smooth operation of linkage from idle to WOT and note that the rear carb will open about 20″ before starting to open the front carb. Both carbs should reach WOT at the same time. 5. IMPORTANT: Attach a return spring to both carburetors as shown in Figure 1. Use the return spring brackets supplied, bending as necessary for attachment to your engine. Generally the brackets can be attached to the intake manifold using the existing bolts. Use the longer or shorter spring on either the front or rear carburetor as required for your particular application. Check for smooth operation and positive return to idle. 6. Attach existing throttle linkage to rear carburetor using the 3/16″ hole below the large hole in the throttle arm. It may be necessary to shorten your existing linkage rod or cable, or to use an aftermarket cable mounting plate. BEFORE STARTING ENGINE, DOUBLE-CHECK FOR SMOOTH OPERATION OF LINKAGE FROM IDLE TO WIDE OPEN THROTTLE AND FOR POSITIVE RETURN TO IDLE. OPTIONAL 1:l INSTALLATION If 1:l linkage is desired, assemble and attach linkage kit as above, except that the attachment point to the front carburetor’s throttle arm will be the large 112″ hole using the other two 518″ O.D. x 3/16″ I.D. shoulder spacers (similar to the rear carburetor). Adjust the bearing blocks to eliminate all freeplay, so that all motion to the rear carburetor’s throttle arm is transmitted directly to the front carb’s throttle arm

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