1999 kawasaki concours 1000 camshaft position sensor

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SUZUKI SV 1000 RADIATOR (COOLING SYSTEM) SERVICE MANUAL

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Filed Under (Suzuki) by admin on 26-02-2011

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FI SYSTEM MALFUNCTION CODE AND DEFECTIVE CONDITION MALFUNCTION CODE DETECTED ITEM DETECTED FAILURE CONDITION CHECK FOR COO NO FAULT C11 Camshaft position sen- sor The signal does not reach ECM for more than 3 sec . after receiving the starter signal . The camshaft position sensor wiring and mechanical parts (Camshaft position sensor, intake cam pin, wiring/coupler con- nection) C12 Crankshaft position sensor The signal does not reach ECM for more than 2 sec . after receiving the starter signal . The crankshaft position sensor wiring and mechanical parts (Crankshaft position sensor, wiring/coupler connection) C13 Intake air pressure sensor The sensor should produce following voltage . (0.50 V < sensor voltage < 4 .85 V) Without the above range, C13 is indicated. Intake air pressure sensor, wiring/coupler connection C14 Throttle position sen- sor The sensor should produce following voltage . (0.20 V < sensor voltage < 4 .80 V) Without the above range, C14 is indicated. Throttle position sensor, wiring/coupler connection C15 Engine coolant temperature sensor The sensor voltage should be the following. (0.15 V <_ sensor voltage < 4 .5 V) Without the above range, C15 is indicated. Engine coolant temperature sensor, wiring/coupler connection C21 Intake air temperature sensor The sensor voltage should be the following. (0.15 V < sensor voltage < 4 .5 V) Without the above range, C21 is indicated. Intake air temperature sensor, wiring/coupler connection C22 Atmospheric pressure sensor The sensor voltage should be the following. (0.50 V < sensor voltage < 4 .5 V) Without the above range, C22 is indicated. Atm. pressure sensor, wiring/coupler connection C23 Tip over sensor The sensor voltage should be the following for more than 2 sec . after ignition switch turns ON . (0 .20 V < sensor voltage < 4 .80 V) Without the above value, C23 is indicated. Tip over sensor, wiring/coupler connection C24 or C25 Ignition signalCrankshaft position sensor signal is produced and ECM determines the ignition signal but signal from ignition coil is interrupted continuous by 4 times or more. In this case, the code C24 or C25 is indicated. Ignition coil, wiring/coupler connection, power supply from the battery SERVICING INFORMATION 8 .3 C28 Secondary throttle valve actuator No operating voltage is supplied from the ECM, C28 is indicated. STVA can not operate. STVA lead wire/coupler, STVA C29 Secondary throttle valve position sensor The sensor should produce following voltage . (0.10 V < sensor voltage < 4 .90 V) Without the above range, C29 is indicated . Secondary throttle position sensor, wiring/coupler connection C31 Gear position signalGear position signal voltage should be higher than the following for more than 2 seconds. (Gear position switch voltage >_ 0 .6 V) Without the above value, C31 is indicated. Gear position sensor, wiring/coupler connection, gearshift cam, etc. C32 or C33 Fuel injector Crankshaft position sensor signal is produced and ECM determines the injection signal but fuel injection signal is interrupted continuous by 4 times or more. In this case, the code C32 or C33 is indicated. Injector, wiring/coupler connection, power supply to the injector C41 Fuel pump relay No voltage is applied to fuel pump although fuel pump relay is turned ON, or voltage is applied to fuel pump although fuel pump relay is turned OFF . Fuel pump relay, connecting lead, power source to fuel pump relay C42 Ignition switchIgnition switch signal is not input in the ECM . Ignition switch, lead wire/coupler C44 Heated oxygen sensor (HO2S) [For E-02, 19] During 02 feedback control, 02 sensor voltage is higher or lower than the specification . No signal is detected during engine operation or no electrical power is supplied from the battery . HO2S lead wire/coupler connection Battery voltage supply to the HO2S C49 PAIR control solenoid valve (PAIR valve) When no operating voltage is supplied from the ECM, C49 is indicated. PAIR valve can not operate. PAIR valve lead wire/coupler

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Harley-Davidson Softail, Touring, Dyna, Sportster and V-Rod, SELF LEARNING MODULE INSTALLATION MANUAL

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Filed Under (Harley Davidson) by admin on 17-04-2012

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STEP 1 – BATTERY CONNECTION Locate the battery and disconnect the negative battery cable. Mount the module in the open area in front of the battery with 2-tie straps or velcro straps, directing the harness from the module towards the 6 o’clock position. STEP 2 – THROTTLE POSITION SENSOR (TPS): Remove the air cleaner assembly and unplug the TPS sensor connector at the TPS sensor. The harness includes (2) TPS connectors which should be routed under the gas tank into the factory wire loom to the TPS sensor. The TPS sensor is located on the left side of the throttle body. Plug the (2) TPS connectors from the module in between the TPS sensor and to the factory TPS connector. STEP 3 – O2 SENSOR: Systems equipped with factory O2 sensors Rear: Unplug the Rear O2 sensor connector from the factory harness, which is located at the Rear exhaust pipe. Route the module’s harness which includes (2) O2 sensor connectors and connect one connector to the Rear O2 sensor and connect the other connector to the main factory O2 sensor connector. Front: Unplug the Front O2 sensor connector from the factory harness, which is located at the Front exhaust pipe. Route the module’s harness which includes (2) O2 sensor connectors, and connect one connector to the Front O2 sensor and connect the other connector to the main factory O2 sensor connector. Systems not equipped with factory O2 sensors NOTE: Many aftermarket exhaust systems are now equipped with plugged O2 sensor bungs which can be removed to accept an aftermarket O2 sensor. Typically these bungs already have a thread size of 18 mm x 1.5 mm. Exhaust systems not equipped with O2 sensor bungs need to have the supplied 18 mm x 1.5 mm thread size bung welded to the exhaust pipe in order to install an O2 sensor. The O2 sensor bung should be installed 3 to 6 inches away from the rear cylinder exhaust port and in front of the exhaust torque tube pipe area. The module prefers to receive information from the O2 sensor from an area that is NOT contaminated from atmospheric air. This air may enter through the tail pipe of an unrestricted or un-baffled exhaust pipe. The bung should not be installed in the “5 to 7 o’clock” area. If mounted in this area the O2 sensor can be damaged. The moisture from the gases exiting from the rear cylinder exhaust port will harm the ceramic shell element of the O2 sensor.

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YAMAHA YZF-R1P/ YZF-R1PC SERVICE MANUAL

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Filed Under (Yamaha) by admin on 25-11-2010

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1Fuel pump 2Pressure regulator 3Fuel injector 4Throttle body 5Intake temperature sensor 6Throttle position sensor 7Intake air pressure sensor 8ECU 9Atmospheric pressure sensor 0Coolant temperature sensor ACylinder identification sensor BCrankshaft position sensor ÈFuel system ÉAir system ÊControl system Illustration is for reference only. 1 – 4 GEN INFO FEATURES Fuel control block The fuel control block consists of the following main components: An engine trouble warning light is provided on meter panel. Component Function Control block ECU Total FI system control Throttle body Air volume control Pressure regulator Fuel pressure detection Sensor block Intake air pressure sensor Intake air pressure detection Atmospheric pressure sensor Atmospheric pressure detection Coolant temperature sensor Coolant temperature detection Intake temperature sensor Intake temperature detection Throttle position sensor Throttle angle detection Cylinder identification sensor Reference position detection Crankshaft position sensor Crankshaft position detection and engine RPM detection Speed sensor Speed detection Actuator block Injector Fuel injection Fuel pump Fuel feed Air Induction system, air cut valve Induction of secondary air A. Power supply circuit The power supply circuit obtains power from the battery (12 V) to supply the power (5 V) that is required for operating the ECU. B. Input interface circuits The input interface circuits convert the signals output by all the sensors into digital signals, which can be processed by the CPU, and input them into the CPU. C. CPU (Central Processing Unit) The CPU determines the condition of the sensors in accordance with the level of the signal that is output by the respective sensor. Then, the signals are temporarily stored on the RAM in the CPU. Based on those stored signals and the basic processing program on the ROM, the CPU calculates the fuel injection duration, injection timing, and ignition timing, and then sends control commands to the respective output interface circuits. D. Output interface circuits The output interface circuits convert the control signals output by the CPU into actuating signals for the respective actuators in order to actuate them. They also output commands to the indicator and relay output circuits as needed.

1999-2004 Kawasaki 1500 Drifter Power Commander Installation Instructions

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Filed Under (Kawasaki) by admin on 25-10-2010

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1 Remove the seat. 2 Remove the left side cover. 3 Remove the speedometer assembly. 4 Unbolt the fuel tank. NOTE: It is not necessary to remove the fuel tank. It does however make the installation easier. If you do remove the tank, pay attention to the vent hose routing. Pressing the tabs on the black fuel line connector will allow the fuel line to be disconnected (Fig. A) 5 Remove the battery/ECU hold down bracket (Fig. B). 6 Unbolt and move the bank angle (tip over) sensor out of the way (Fig. C). Fig. A Fig. B Fig. C i201-411 www.powercommander.com 1999-2004 Kawasaki 1500 Drifter – PCIII USB – 2 Bank angle sensor (tip over switch) Remove these 2 bolts 7 Loosen the bolts holding the plastic tray on the left side of the bike (under the left side cover) (Fig. D). 8 Route the wire from the PCIII behind the plastic tray and under the frame side rail (Fig. E). 9 Retighten the bolts holding the plastic tray. 10 Continue routing the wires from the PCIII under the frame near the lower fuel tank mount and go up to the throttle body area (Fig. F). Fig. D Fig. E Fig F i201-411 www.powercommander.com 1999-2004 Kawasaki 1500 Drifter – PCIII USB – 3 Route PCIII harness between plastic tray and frame Route wires under frame Loosen these bolts 11 Disconnect the injector connector from the rear injector (Fig. H). 12 Plug the female PCIII connector with ORANGE/WHITE wire onto the rear injector (Fig. H). 13 Connect the male PCIII connector with ORANGE wire onto the stock injector connector (Fig. H). 14 Repeat steps 11 thru 13 for front injector using the PCIII connectors with the YELLOWcolored wires. 15 Locate the wires coming from the throttle position sensor. (Fig. H). The throttle position sensor is located on the right hand side of the throttle body. It is between the frame and engine

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Harley Davidson Big Twin EVO Engines Edelbrock Performer-Plus Camshaft , Performer RPM Camshaft , & Performer RPM Camshaft INSTALLATION INSTRUCTIONS

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

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Disconnect the battery. Secure the motorcycle on a suitable stand with the rear wheel off the ground. Remove components necessary for easy access to rocker covers, pushrod covers, and gear case cover, i.e., exhaust system, gas tank, air cleaner, foot rest, etc. Remove spark plugs. 2. Remove top and middle sections of rocker boxes, then rotate engine so both valves are closed on the cylinder head being worked on (put transmission in high gear and move rear wheel to slowly rotate engine). Remove the two 5/16″ bolts nearest the rocker arm shafts (keep all shafts, rocker arms, and pushrods in order so they can be installed in their original position). Remove the pushrod covers and pushrods. NOTE: The use of adjustable time-saver pushrods will simplify installation. Follow the manufacturer’s recommendations for installation of those parts. 3. It is not necessary to remove the tappet guides if you use a cam installation tool such as Crane #9-0020 to hold the tappets in place during cam installation. If you remove the tappet guides, you must use a tappet block alignment tool such as Crane #9- 0021 to re-install the tappet guides. Tappets can be held up in place during removal of guides by using U-shaped piece of safety wire or paper clip hooked to the tappets. 4. Remove ignition covers on gearcase cover by drilling out rivets to gain access to sensor plate. Remove the inner cover, sensor plate and rotor. NOTE: For re-installation, use new rivets H-D #8699 or drill and tap for 10-32 screws. 5. Remove the gearcase cover screws and remove cover while holding end of cam inward. Now remove the camshaft, spacing washer and thrust plate

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Kawasaki KZ 900/ KZ 1000 Piston Kits Installation Manual

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Filed Under (Kawasaki) by admin on 25-10-2010

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075CC 72MM KZ 900: Resleeving and bore crankcase ROAD 10.5:1 MTC-K1075 KZ 1000: 2mm oversize 2.834 In KZ 1000: Cylinder boring DRAG 12.5:1 MTC-K1075H TURBO 9.0:1 MTC-K1075T 1135CC 74MM Resleeving and bore crankcase ROAD 10.5:1 MTC-K1135 KZ 1000: 4mm oversize 2.913 In DRAG 12.5:1 MTC-K1135H TURBO 7.8:1 MTC-K1135T 1197CC 76MM Resleeving and bore crankcase ROAD 10.5:1 MTC-K1197 KZ 1000: 6 mm oversize 2.992 In DRAG 12.5:1 MTC-K1197H TURBO 7.8:1 MTC-K1197T 1261CC 78MM Resleeving and bore crankcase ROAD 10.5:1 MTC-K1261 KZ 1000: 8mm oversize 3.070 In DRAG 12.5:1 MTC-K1261H TURBO 7.8:1 MTC-K1261T 1327CC 80MM Big block required bore crankcase ROAD 10.5:1 MTC-K1327 KZ 1000: 10mm oversize 3.149 In DRAG 13.5:1 MTC-K1327H TURBO 7.8:1 MTC-K1327T 1428CC 83MM Big block required bore crankcase ROAD 10.5:1 MTC-K1428 KZ 1000: 13mm oversize 3.267 In DRAG 13.5:1 MTC-K1428H TURBO 7.8:1 MTC-K1428T 1500CC 85MM Big block required bore crankcase DRAG 13.5:1 MTC-K1500H KZ 1000: 15mm oversize 3.346 In TURBO 7.8:1 MTC-K1500T

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WEGO II Wide-Band Exhaust Gas Oxygen Sensor Interface Installation Instructions

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Filed Under (Tips and Review) by admin on 27-10-2010

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1. Turn off the ignition switch before proceeding. 2. Select a convenient mounting location for the Bosch sensor. In general, the sensor should be mounted as close to the exhaust valve or exhaust manifold as practical. When choosing a mounting location, allow several inches clearance for the sensor wire harness. The wire harness must exit straight out from the sensor. Do not loop the harness back onto the sensor body. The sensor responds to oxygen pressure. Excessive backpressure will cause a reading error. For turbocharged applications, you must mount the sensor downstream of the turbo. 3. For temporary use during dyno tuning, you can mount the Bosch wide-band sensor in place of one of the original equipment rear oxygen sensors (after the catalytic converter). You can also use a sniffer in the tailpipe. For permanent mounting, an 18 x 1.5 mm weld nut must be welded onto the exhaust pipe. After welding, run an 18 x 1.5 mm tap through the threads. Failure to clean the threads may result in sensor damage. Note that most automotive muffler shops are familiar with oxygen sensor weld nut installation on custom pipes. Do not install the sensor until after the free air calibration procedure described in the following section. Always use an anti-seize lubricant such as Permatex 133A on the sensor threads. 4. Install the WEGO II unit. The WEGO II unit should be mounted where the LCD display will be visible during testing. You can secure the WEGO II unit with Velcro tape strips. 5. Connect the Bosch sensor to the 6 pin mating connector on the WEGO II wire harness. 6. Refer to Figure 1. Connect the black WEGO II wire to frame ground using the supplied ring terminal. Try to use an existing wire harness ground location. Do not extend the WEGO II ground wire or ground the WEGO II to the battery minus terminal or to the engine. 7. Connect the red WEGO II wire to switched +12 volt power. You can usually find switched +12V power at an accessory fuse on the fuse block. You can use the supplied fuse tap and 3/16″ female crimp terminal for this purpose

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SUZUKI MOTORCYCLES Gsxr 600, Gsxr 750, Gsxr 1000 teak the lead

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

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The launch of the sixth generation of Gsxr marked a shift in Suzuki’s emphasis on two fronts. One, the Gsxr 1000 now took the upper hand in the development stakes. Historically, the Gsxr 750 led the march-arriving first, gaining the most recent technology, absorbing the lion’s share of corporate pride-but by 2003 the Gsxr 1000 was in the lead. Two, the Gsxr 1000 represents another, more subtle shift for Suzuki engineering, in which the designers-the lucky guys who get to clothe these amazing machines-have more freedom of expression. With this generation, the designs turned edgier, sharper, more aggressive looking than ever. What’s more, the Gsxr 1000 K3 would be the proving ground for a host of changes brought to the Gsxr 600 and Gsxr 750 for 2004. In fact, nearly every upgrade to the smaller bikes appeared on the Gsxr 1000 a year before. But the real impetus for driving the Gsxr 1000 to the head of development and, indeed, shortening its development cycle was competition both on the track and in the showroom. For the track, it was understood that Superbike racing would revert to allowing 1000 cc four-cylinder bikes in place of the 750s that had been the limit since 1982. In 2002, Yoshimura and Mat Mladin barely lost the AMA Superbike crown to Nicky Hayden aboard the Honda RC5!. But it would be the RC’s swan song of competitiveness with the change to 1000 cc fours. To keep speeds in check, the AMA Superbike rules would require 1000 cc fours to have some additional limitations compared to the twins and triples. For example, “Cylinder heads may be ported and machined, but altering of valve angles will not be permitted; aftermarket valves, springs, retainers, and other valve-train components will be permitted; valves must be stock size and same basic material as original equipment; aftermarket camshafts will be permitted, but earn lift and resulting valve lift must be no greater than stock. “In addition, the “stock crankshaft must be retained, The only allowable modifications are balancing, polishing of bearing surfaces and attachment of accessory drives. Homologated transmission gear sets (one optional set of ratios per approved model) will be permitted. Optional sets will be price-controlled and must be available to any legitimate AMA Superbike competitor. Homologated fuel-injection throttle-body assemblies (one optional type per approved model) and aftermarket airboxes will be permitted. Modifications to throttle bodies will not be permitted. Optional throttle bodies will be price-controlled and must be available to any legitimate AMA Superbike competitor.” The thinking was simple: keep the liter bikes from sucking through massive throttle bodies, and the horsepower might not (and, it was hoped, would not) go through the roof. In preparation for racing, Suzuki moto wanted to make a host of small changes to the Gsxr 1000, but its motivation was also to keep the bike at the forefront of open-class street bikes. Suzuki engineers knew that Honda and Kawasaki were readying all-new models-the CBR 954 RR and the ZX 9 R had long since been vanquished-and rumor had it that Yamaha was ready with yet another push with the R1.It was the right time to make alterations to the Gsxr 1000. Heading the list was, as one might expect, a revised engine.

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2001-2002 GL1800 A ABS Speed Sensor Wire Clamp Location INSPECTION/ REPAIR PROCEDURES

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Filed Under (Honda) by admin on 29-01-2011

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1. If the VIN is within the preceeding range, inspect the front ABS speed sensor wire clamp according to the following illustrations. 2001-2002 GL1800A ABS Speed Sensor Wire Clamp Location INCORRECT Installation CORRECT Installation Service Bulletin American Honda Motor Co., Inc. 2001-2002 GL1800 ABS Speed Sensor Wire Clamp Location 0112 GL1800 #9*GL1800 #9*0112*2001-2002 GL1800 ABS Speed Sensor Wire Clamp Location*GL1800, ABS Speed Sensor Wire Clamp Location*Motorcycle*1800 2 of 2 ©2001 American Honda Motor Co., Inc. – All Rights Reserved GL1800 #9 DECEMBER 2001 IDENTIFICATION There is no identification mark associated with this Service Bulletin. PARTS INFORMATION There is no parts information associated with this Service Bulletin. WARRANTY INFORMATION The normal warranty claim submission requirements apply. Submit one warranty claim per VIN with the following information only: Inspected and REPAIRED Template: GL#9 Hours: 0.2 hours Parts: None If the clamp is installed correctly on top of the speed sensor, no further action is necessary. 3. If the clamp is installed incorrectly under the speed sensor, remove and reinstall the clamp and speed sensor correctly. Torque the bolts,. Torque: 12 N • m (1.2 kgf • m, 9 lbf • ft) If the speed sensor wire clamp for the front ABS speed sensor is installed incorrectly, the ABS speed sensor air gap may be out of specification. This does not affect ABS speed sensor operation, but the clamp should be installed correctly. Inspect and repair all affected units using the Inspection/Repair procedures listed below. Inspect all unsold units and customer units brought in for service. AFFECTED UNITS 2001-2002 GL1800A units as follows: MODEL 2001 GL1800A All units 2002 GL1800A 1HFSC474*2A100001 – 1HFSC474*2A101643 * = denotes check digit Any unit in the above VIN range may be affected and should be inspected according to the procedures in this Service Bulletin. All units outside of the above VIN range do not require inspection. CUSTOMER NOTIFICATION There is no customer notification associated with this Service Bulletin.

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WEGO IV Wide-Band Exhaust Gas Oxygen Sensor System Installation Instructions

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Filed Under (Harley Davidson) by admin on 21-04-2012

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1. Turn off the ignition switch before proceeding. 2. Select a convenient mounting location for the Bosch sensor. In general, the sensor should be mounted as close to the exhaust valve or exhaust manifold as practical. When choosing a mounting location, allow several inches clearance for the sensor wire harness. The wire harness must exit straight out from the sensor. Do not loop the harness back onto the sensor body. The sensor responds to oxygen pressure. Excessive backpressure will cause a reading error. For turbocharged applications, you must mount the sensor downstream of the turbo. 3. For temporary use during dyno tuning, you can mount the Bosch wide-band sensor in place of one of the original equipment rear oxygen sensors (after the catalytic converter). You can also use a sniffer in the tailpipe. For permanent mounting, an 18 x 1.5 mm weld nut must be welded onto the exhaust pipe. After welding, run an 18 x 1.5 mm tap through the threads. Failure to clean the threads may result in sensor damage. Note that most automotive muffler shops are familiar with oxygen sensor weld nut installation on custom pipes. Do not install the sensor until after the free air calibration procedure described in the following section. Always use an anti-seize lubricant such as Permatex 133A on the sensor threads. 4. Install the WEGO IV unit where the display will be visible during testing. The unit is not sealed and must be mounted in a dry location away from sources of heat. We recommend underdash mounting or use in a dyno lab environment. The unit is not intended for underhood mounting. The unit can be secured by means of Velcro tape strips. Use nylon tie wraps to secure the wire harness near the unit. 5. Working with clamping terminal blocks . All connections to the WEGO IV terminal block must be clearly identified either by means of distinct wire colors (such as shown in Figure 1) or wire labels. If you use different wire colors, mark up Figure 1 for future reference. All connections can be made with 18-20 AWG wire. Wire should be stripped back

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