2006 impala gear shift fuse location

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2002 NISSAN ALTIMA MANUAL A/C TEMPERATURE NOT ADJUSTABLE REPAIR MANUAL

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Filed Under (Nissan Manuals) by admin on 11-05-2012

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SERVICE PROCEDURE 1. Remove the following components; • cluster lid “C” (HVAC control surround trim) • fuse box cover • driver’s side instrument panel lower cover (attached with 2 screws). 2. Remove the screw from the center of the cable operated gear (see Figure 2). Figure 2 3. Locate the small (about 1″ dia.) white air mix door gear. Hopefully it is still on the floor. NOTE: If you cannot find the old air mix door gear, order a new gear. Refer to the Parts Information section of this bulletin. 4. To see how it is supposed to fit, temporarily install the gear into the air mix door shaft (see Figure 3). Figure 3 Air mix door drive gear (shown installed) Heater box Cable operated gear Retaining screw (remove) Front TP020106 Cable (do not detach) On the left side of the heater case, remove the screw from the center of the cable operated gear for the air mix door. Note: It is not necessary to detach the cable from the gear or the heater box. Proper pin location for air mix door/door gear with door/gear turned fully clock wise. Front TP010607a The gear can fit two different ways, only one of which is correct. Install the gear and rotate the gear/mix door shaft assembly fully clockwise so the gear’s index pin is at the 2 to 3 o’clock position. Cable (do not detach) Note: If the gear is in the correct spot, the alignment pin will be at the 2 to 3 o’clock position. POSITIONING THE GEAR CORRECTLY IS CRITICAL TO GETTING THE DOOR TIMING RIGHT. 3/5 5. Remove the gear, thoroughly clean the gear shaft of any grease, and apply the glue. See Figure 4. Figure 4 6. Re-install the gear into the mix door shaft (see Figure 5). Figure 5 TP010606a Air mix door gear (back side) Apply Glue to Shaded areas b. Apply plastic glue (3M dp-8005 or equivalent) to the shaft of the air mix door gear in the area where it inserts into the air mix door shaft. a. Thoroughly clean the air mix door gear shaft. Note: It is not necessary to clean the grease from the gear teeth. Front TP020100 Re-install the gear so the gear’s index pin is at the 2 to 3 o’clock position when the gear/mix door shaft assembly is turned fully clockwise. Proper pin location for air mix door/door gear with door/gear turned fully clock wise. 4/5 7. Set the HVAC control temperature dial as shown in Figure 6. Figure 6 8. Re-install the cable operated gear (see Figure 7). Figure 7 9. Operate the temperature control while watching the air mix door gear movement. They should operate freely with no binding. 10.Check the adjustment of the temperature cable as follows: A. Rotate the temperature control knob to the full COLD position (i.e., fully counterclockwise) and confirm the air mix door is fully seated (sealed) in the down position, then B. Rotate the temperature control knob to the full HOT position (i.e., fully clockwise) and confirm the air mix door is fully seated (sealed) in the up position. If the air mix door does not fully seat (seal) in either the full HOT or full COLD position: • Adjust the temperature control cable, with the temperature control knob in the full hot position, using the clip at the heater unit (see Figure 7) 11.Re-install the trim pieces removed in step 1.

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RICHMOND GEAR INSTALLATION INSTRUCTIONS

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Filed Under (Toyota Manuals) by admin on 19-03-2012

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VERIFY RATIO BEFOREASSEMBLY STEP 1 . Remove the gears to be replaced and thoroughly clean both the gear carrier and housing with solvent to remove any gear/bearing residue, which could lead to abrasive failure of the new gear set. After cleaning, dry- wipe (or air-dry) all disassembled parts, housings, and covers. STEP 2. Examine the ring gear mounting surface for nicks or burrs which might prevent total landing of the newly installed ring gear. Ring/pinion tooth depth variations can result from a ring gear that is “cocked”on its mounting surface. If a ring gear spacer is to be used, also check it for similar surface imperfections, dressing these with block backed pieces of grit paper or a small file. Following material removal (from ANY part of the assembly), bathe the pieces in the solvent and wipe or air-dry. NOTE: Spacers not normally recommended STEP 3. Study the illustrations provided with these instructions. Familiarize yourself with the terms “backlash”and “pinion depth” (sometimes called checking distance). Each set of gears is a matched pair which has been prerun on a gear test machine. Consequently, the pair should never be mixed with other rings or pinions, Also, since all gear sets have been run-checked, specific settings are supplied with each ring/pinion pair. These specifications vary from set to set. Backlash settings are marked on the outside diameter face of the ring gear as follows (see illustration A): Ref: BL.008, which means a backlash figure of .008 inch at the closest point. Pinion depth settings (or checking distance) are marked on the face of the pinion gear as follows (see illustration B): Ref: CD 2.799, which means distance of 2.799 inches from centerline of the ring gear to pinion face. Dimensional variations for backlash SHOULD NOT EXCEED .004″variation. Example: If backlash is .008, the backlash — including maximum variation — should be .008-.012. 1 Illustration B Location of checking distance (pinion depth) & serial no. on pinion Location of backlash dimension & gear serial no. on ring gear Illustration A STEP 4. When installing the pinion gear you must check its depth in the housing as per the pinion depth dimension. Add or subtract pinion depth shims to arrive at the checking distance etched on the surface of the pinion face. (See illustration C.). Refer to Helpful Hints & Additions to Richmond Gear Installation Instructions on pages 3 and 4. STEP 5. Using a mew crush collar or preload shim pack, set the pinion rotating torque to 10-15 (used bearings) 20-25 (new bearings) inch pounds. For oval track applications when not using a cooling pump, set at 16- 17 inch pounds on new bearings and 10 inch pounds maximum on used bearings. STEP 6. After correct installation of the pinion gear, position the ring gear and check for backlash. Mount a magnetic-base dial indicator on the axle housing in such a way that the indicator plunger will be moving in a line that is tangent to rotation of the ring gear. This will provide you with a backlash reading which should conform to the figure etched on the side of the ring gear. Again, maintain a tolerance of .004 variation. Example: If backlash is .008, the backlash – including maximum variation – should be .008-.012. (Backlash is always measured in 3 or more places equally spaced around in the ring gear.) Note: For oval track racing set BL at approximately .012-.014 inches. STEP 7. Compensation for variations in this setting can be made by side-adjustment of the ring gear. Adjusting rings or side-shim packs can be changed to bring the backlash and rotating torque figures into tolerance. (Use same torque on gear bearings as on pinion bearings.) You are now ready to check the tooth contact pattern to assure that no accidental departures from the factory- marked specifications have been made. Apply a thin coat of RICHMOND GEAR compound (“Part # 55-0001- 1″) on gear teeth for best results. Tooth contact patterns should comply with those shown on next page. (Note rounded or bullet nose shape at heel end of pattern on Gear drive sides). See page 4 for patterns and additional installation hints

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2003 Honda Accord EX A/ T INTERLOCK SYSTEM REPAIR MANUAL

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Filed Under (Honda Manuals) by admin on 21-01-2012

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A/T Interlock System Circuit Diagram SHIFT LOCK SYSTEM CIRCUIT TROUBLESHOOTING 1. Press the brake pedal. Are the brake lights ON? YES -Go to step 2. NO -Repair faulty brake light circuit. 2. Connect the HDS to the DLC. Check engine speed and throttle position in the A/T data list. Is the engine speed at idle, and TPS about 0.5 V? YES -Go to step 3. NO -Repair engine speed or throttle position input. 3. Select SHIFT LOCK SOL TEST in MISC. TEST MENU, then carry out shift lock solenoid function test. Does the shift lock solenoid work properly? YES -System circuit is OK. Check the shift lock mechanism, if necessary. NO -Go to step 4. 4. Remove the center console (See CENTER CONSOLE REMOVAL/INSTALLATION ). 5. Disconnect the shift lock solenoid connector. 6. Turn the ignition switch ON (II). 7. Measure the voltage between No. 1 terminal of the shift lock solenoid connector and body ground. Fig. 3: Measuring Voltage Between No. 1 Terminal Of Shift Lock Solenoid Connector & Body Ground Is there battery voltage? YES -Go to step 8. NO -Check for blown No. 21 fuse in the under-dash fuse/relay box. If the fuse is OK, repair open in the wire between the shift lock solenoid connector and the under-dash fuse/relay box. 8. Shift the shift lever into the P position, and press the brake pedal. Do not press the accelerator. 9. Measure the voltage between shift lock solenoid connector terminals while pressing the brake pedal Fig. 4: Measuring Voltage Between Shift Lock Solenoid Connector Terminals Is there battery voltage? YES -Check the shift lock mechanism. If the mechanism is OK, replace the shift lock solenoid (see Shift Lock Solenoid Replacement ). NO -Check for poor or loose PCM connector terminal E2 at the PCM, and check for an open in the wire between PCM connector terminal E2 and shift lock solenoid connector. If the connection and wire is OK, substitute a known-good PCM and recheck. KEY INTERLOCK SYSTEM CIRCUIT TROUBLESHOOTING

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2002 Dodge Truck RAM 2500 Symptom Related Diagnostic Procedures/ Installation Manual

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Filed Under (Dodge Manuals) by admin on 16-02-2012

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46RE AUTOMATIC TRANSMISSION DIAGNOSIS AND TESTING – ROAD TESTING Before road testing, be sure the fluid level and control cable adjustments have been checked and adjusted if necessary. Verify that diagnostic trouble codes have been resolved.Observe engine performance during the road test. A poorly tuned engine will not allow accurate analysis of transmission operation. Operate the transmission in all gear ranges. Check for shift variations and engine flare, which indicates slippage. Note if shifts are harsh, spongy, delayed, early, or if part throttle downshifts are sensitive. Slippage indicated by engine flare, usually means clutch , band or overrunning clutch problems. If the condition is advanced, an overhaul will be necessary to restore normal operation. A slipping clutch or band can often be determined by comparing which internal units are applied in the various gear ranges. The Clutch and Band Application chart provides a basis for analyzing road test results. Note that the rear clutch is applied in all forward ranges (D, 2, 1). The transmission overrunning clutch is applied in first gear (D, 2 and 1 ranges) only. The rear band is applied in 1 and R range only. Note that the overdrive clutch is applied only in fourth gear and the overdrive direct clutch and overrunning clutch are applied in all ranges except fourth gear. For example: If slippage occurs in first gear in D and 2 range but not in 1 range, the transmission overrunning clutch is faulty. Similarly, if slippage occurs in any two forward gears, the rear clutch is slipping. Applying the same method of analysis, note that the front and rear clutches are applied simultaneously only in D range third and fourth gear . If the transmission slips in third gear, either the front clutch or the rear clutch is slipping. If the transmission slips in fourth gear but not in third gear, the overdrive clutch is slipping. By selecting another gear, which does not use these clutches, the slipping unit can be determined. For example, if the transmission also slips in Reverse, the front clutch is slipping. If the transmission does not slip in Reverse, the rear clutch is slipping. If slippage occurs during the 3-4 shift or only in fourth gear , the overdrive clutch is slipping. Similarly, if the direct clutch were to fail, the transmission would lose both reverse gear and overrun braking in 2 position (manual second gear). If the transmission will not shift to fourth gear , the control switch, overdrive solenoid or related wiring may also be the problem cause.

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Malfunction Indicator Lamp (MIL) On, Transmission Stuck in Second or Third Gear, Instrument Cluster Inoperative (Verify and Repair Source of Voltage Loss In Transmission Solenoid Power Supply Circuit )

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Filed Under (More Manuals) by admin on 09-05-2012

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2006 and Prior GM Passenger Cars and Light Duty Trucks 2005-2006 HUMMER H2 2006 HUMMER H3 2005-2006 Saab 9-7X with 4L60-E, 4L65-E, 4L80-E or 4L85-E Automatic Transmission (RPOs M30, M32, M33, MT1, MN8) 1. With the ignition switch in the RUN position, test for battery voltage at the circuit fuse in the transmission solenoid power supply circuit. Refer to the appropriate SI Document for the transmission solenoid power supply circuit information. 2. If battery voltage is present at the fuse, inspect the ignition voltage circuit between the fuse and the transmission for possible opens. 3. If battery voltage is not present at the fuse, test for continuity between the fuse and the ignition switch. If NO ontinuity is between the fuse and the ignition switch, repair the open in that circuit. 4. If you have continuity between the fuse and the ignition switch, the most likely cause is the ignition switch. Replace the ignition switch using the appropriate Ignition Switch Replacement procedure in SI. Refer to group number 2.188 of the parts catalog for part description and usage of the ignition switch. Warranty Information (excluding Saab U.S. Models) For vehicles repaired under warranty, use: Warranty Information (Saab U.S. Models) For vehicles repaired under warranty, use: Labor Operation Description Labor Time N6630 Wiring and/or Connector, Transmission – Repair Use published labor operation time Labor Operation Description Failed Object Fault/Reason Code Location Code Warranty Type Repair/Action Code Labor Time 3711401 Replace part, Adj., Wiring Harness, A/T Incl. diagnosis time 2005 37114 67 0 01 05 Use published labor operation time

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2002 Chrysler 300M Special Floor Shift Service and Repair Manual

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Filed Under (Chrysler Manuals) by admin on 14-02-2012

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Vehicle Level Transmission and Drivetrain Automatic Transmission/Transaxle Shift Linkage Shift Cable Service and Repair Floor Shift Automatic Transmission GEAR SHIFT CABLE – FLOOR / REMOVAL 1. Using suitable size allen wrench, remove the shift handle retaining screw (Fig. 251). 2. Remove shift handle from shifter assy. 3. Remove console bezel from vehicle 5. Remove retaining clip from shift cable conduit bracket (Fig. 253). 6. Disconnect shifter cable from cable attach stud (pin) (Fig. 253). 7. Remove cable from center console routing. Leave flat on floor for ease of removal. 8. Raise hood. Remove gearshift cable from throttle/gearshift cable bracket (Fig. 254) 9. Unseat cable grommet at firewall and remove cable from interior of vehicle (Fig. 255). 10. Raise vehicle on hoist and disconnect fill tube bracket from transaxle. Rotate fill tube to gain access to shift cable clamp. 11. Remove cable from routing bracket (Fig. 256) 12. Remove cable-to-transaxle nut and slide cable off of stud (Fig. 255). 13. Disconnect shifter cable from shift lever assembly at transaxle (Fig. 255). 14. Remove cable from underneath vehicle. INSTALLATION 1. Make sure transaxle shift lever is in “Park.” This is the most rearward position. Verify park sprag is fully engaged by rotating either a tire or an axle shaft . 2. Position cable in vehicle and connect cable end to the transaxle shift lever (Fig. 255). 3. Verify that the washer (Fig. 255) is still in place on the cable mounting stud. Install cable to transaxle and tighten nut to 28 Nm (250 inch lbs.). 4. Rotate fill tube to original location. Install and tighten fill tube bracket bolt. 5. Install cable “push pin” into bracket as shown in (Fig. 254)

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2002 Dodge Truck RAM 2500 46RE AUTOMATIC TRANSMISSION DIAGNOSIS AND TESTING – ROAD TESTING

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Filed Under (Dodge Manuals) by admin on 20-02-2011

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The Clutch and Band Application chart provides a basis for analyzing road test results. Note that the rear clutch is applied in all forward ranges (D, 2, 1). The transmission overrunning clutch is applied in first gear (D, 2 and 1 ranges) only. The rear band is applied in 1 and R range only. Note that the overdrive clutch is applied only in fourth gear and the overdrive direct clutch and overrunning clutch are applied in all ranges except fourth gear. For example: If slippage occurs in first gear in D and 2 range but not in 1 range, the transmission overrunning clutch is faulty. Similarly, if slippage occurs in any two forward gears, the rear clutch is slipping. Applying the same method of analysis, note that the front and rear clutches are applied simultaneously only in D range third and fourth gear . If the transmission slips in third gear, either the front clutch or the rear clutch is slipping. If the transmission slips in fourth gear but not in third gear, the overdrive clutch is slipping. By selecting another gear, which does not use these clutches, the slipping unit can be determined. For example, if the transmission also slips in Reverse, the front clutch is slipping. If the transmission does not slip in Reverse, the rear clutch is slipping. If slippage occurs during the 3-4 shift or only in fourth gear , the overdrive clutch is slipping. Similarly, if the direct clutch were to fail, the transmission would lose both reverse gear and overrun braking in 2 position (manual second gear). If the transmission will not shift to fourth gear , the control switch, overdrive solenoid or related wiring may also be the problem cause. This process of elimination can be used to identify a slipping unit and check operation. Proper use of the Clutch and Band Application Chart is the key. Although road test analysis will help determine the slipping unit, the actual cause of a malfunction usually cannot be determined until hydraulic and air pressure tests are performed. Practically any condition can be caused by leaking hydraulic circuits or sticking valves.Unless a malfunction is obvious, such as no drive in D range first gear , do not disassemble the transmission. Perform the hydraulic and air pressure tests to help determine the probable cause.

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3406E TRUCK ENGINE 2WS Camshaft Gear Removal And Installation Manual

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Filed Under (More Manuals) by admin on 28-05-2012

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1. Verify that the timing mark on camshaft gear (1) is aligned with Timing Mark (X) on front housing (3) . 2. Remove top bolt (2) from camshaft gear (1) . Install Tooling (A) in place of the bolt. 3. Remove remaining bolts (2) and remove camshaft gear (1) . 4. NOTICE Do not turn the crankshaft or the camshaft while the camshaft gear is removed. If the front gear group is not correctly timed during installation, interference can occur between the pistons and the valves, resulting in damage to the engine. Remove Tooling (A) . 5. Installation Procedure Required Tools Tool Part Number Part Description Qty A 9U-6896 Guide Bolt 1. Align the hole in the back of camshaft gear (1) with the dowel in the adapter. Install camshaft gear (1) over Tooling (A) . Note: Camshaft timing is critical. The timing mark on the camshaft gear must be aligned with the timing mark on the front cover when the No. 1 piston is at the top center of the compression stroke. Refer to Testing and Adjusting, “Gear Group (Front) – Time”. Verify that the timing mark on camshaft gear (1) is aligned with Timing Mark (X) on front housing (3) . 3. Note: If the timing marks are not aligned, remove camshaft gear (1) and rotate the camshaft until the timing marks are aligned. Install bolts (2) . Remove Tooling (A) and install remaining bolt (2) . 4. 5. Check the backlash between the camshaft gear and the adjustable idler gear. The backlash should be 0.216 ± 0.114 mm (0.0085 ± 0.0045 inch). Refer to Testing and Adjusting, “Gear Group (Front) – Time” for the backlash adjustment procedure. 6. End By: Install the front cover. Refer to Disassembly and Assembly, “Front Cover – Install”

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2006-2009 Toyota Camry Harsh 5-4 Downshift on Deceleration Repair Manual

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Filed Under (Toyota Manuals) by admin on 30-05-2012

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Harsh 5-4 Downshift on Deceleration Repair Procedure 1. Test drive and verify that the 5-4 harsh downshift condition occurs as described in the Introduction section in this TSB. 2. Replace the SLT solenoid assembly. Refer to the Technical Information System (TIS): •2006 modelyearCamry Repair Manual: Drivetrain -AutomaticTransmission/Transaxle-”Transmission ValveBodyAssy (U 250E) : Replacement” •2007 modelyearCamry Repair Manual: Drivetrain -Automatic Transmission/Transaxle: Unit Repair -”U250EAutomatic Transaxle: Shift Solenoid Valve: Re moval, Dis ass embly, Ins pec ti on, Re ass embly” •2008 modelyearCamry Repair Manual: Drivetrain -Automatic Transmission/Transaxle: Unit Repair -”U250EAutomatic Transaxle: Shift Solenoid Valve: Re moval, Dis ass embly, Ins pec ti on, Re ass embly” •2009 modelyearCamry Repair Manual: Drivetrain -Automatic Transmission/Transaxle: Unit Repair -”U250EAutomatic Transaxle: Shift Solenoid Valve: Re moval, Dis ass embly, Ins pec ti on, Re ass embly” NOTE For SLTsolenoid identification, refer to TSB No. TC 007-05, “U250E Transmission Solenoid Identification”. 3. Reinstall the automatic transaxle oil pan. Refer to TIS: •2006 modelyearCamry Repair Manual: Drivetrain -AutomaticTransmission/Transaxle-”Transmission ValveBodyAssy (U 250E) : Replacement” • 2007 / 2008 / 2009 model year Camry Repair Manual: Drivetrain -Automatic Transmission/Transaxle: Unit Repair -”U250EAutomatic Transaxle: Shift Solenoid Valve: Installation” 4. Test drive and verify that the A TM operates normally

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Remote Keyless Entry (RKE) Inoperative, Poor Range, Tire Pressure Monitor (TPM) Message Displayed, Remote Vehicle Start (RVS) (Replace/Reprogram RCDLR, Replace Antenna and Transmitters)

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Filed Under (More Manuals) by admin on 28-01-2011

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Models: 2006-2007 Buick Lucerne 2006-2007 Cadillac DTS 2006-2007 Chevrolet Impala, Monte Carlo 1. Replace the RCDLR module and the RCDLR antenna using the following procedure: Impala / Monte Carlo DTS • DTS / Lucerne: 5/1/07 • Impala / Monte Carle: 3/1/07 • The 2006 and 2007 Impala LS without AP8 does not have a coax antenna. • The 2006 and 2007 Lucerne without AP3 or AP8 does not have a coax antenna. 1.1. Remove the driver’s side “A” pillar molding and I/P closeout panel. 1.2. Unplug the speaker. 1.3. To expose the RCDLR antenna, partially remove the driver’s side upper I/P closeout panel (near windshield). 1.4. Remove the clips holding the RCDLR antenna wire at the RCDLR module and along the “A” pillar. 1.5. Cut the old RCDLR antenna wire a minimum of 152 mm (6 in) from the button (connecting to the windshield), leaving that portion of the old RCDLR antenna connected to the windshield. 1.6. Remove the I/P carrier bolt and remove the old RCDLR antenna. 1.7. Remove the RCDLR module. 1.8. Install the new RCDLR module. 1.9. Lay in the new RCDLR antenna and reinstall the carrier bolt. 1.10. Connect the new antenna to the RCDLR antenna module. 1.11. Clip the new RCDLR antenna into place using the existing holes on the “A” pillar. 1.12. Reinstall the I/P close-out panel. 1.13. Reconnect the speaker wire. Important: Be sure that the end of the old RCDLR antenna is tucked behind the “A” pillar molding. The button on the windshield is no longer functional, however leaving the cover on the button will provide a cleaner look to the vehicle. 1.14. Reinstall the “A” pillar molding and I/P side closeout panel. 1.1. Remove the rear seat cushion. 1.2. Remove the rear seat back.

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