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GPRP-DI
GPRP-DI
GPRP-DI
Part No: #23077

OVERVIEW

Based on GPR-DI package, the GPRP-DI Package is a versatile and adaptable platform for the operation of direct injected engines up to twelve cylinders (hardware dependent) that use inductive direct injectors and synchronous direct injection fuel pumps, such as Bosch HDP5 or Hitachi HFS034 that also includes paddle shift gearbox control using switched actuators.

In addition to the primary direct injectors, secondary port injectors may also be configured.

Included are many ancillary features commonly found on race cars, such as anti-lag, driver switches (pit switch, launch enable, boost trim, etc.), gearbox control, knock control, intercooler sprays, launch control, gearbox coolant pumps, gear shift air pump and traction control. Also accommodated are many systems found on modified road vehicles such as air conditioning control.

The product provides pre-defined CAN messaging for full integration with other MoTeC products like Display Loggers, Video, Power Distribution Modules, Expanders, Shift Lights and more.

ECU VARIANTS

The Package is available across MoTeC's M1 direct injection ECU range:

  • M122 up to 4 cylinders

  • M142 up to 8 cylinders

  • M182 up to 12 cylinders

A pinout example for each ECU variant is provided.

LICENCING

To load the Package onto the ECU, the M1 LICENCE - GPRP-DI WITH PADDLE SHIFT(GPRDI + GBC) (part number 23077) is required.

VEHICLE COMPATIBILITY

This product is a general purpose Package for engine control and does not include CAN messaging for OE vehicle systems such as power steering, ABS, starting systems and dashboards.

PADDLE SHIFT FEATURES

  • Paddle shift gearbox control for sequential gearboxes with switched actuators.
  • Paddle Shift Input can be hard wired or received via CAN as either up and down switches or a single linear sensor.
  • Optional Lockout for Netural and Reverse selection.
  • Up/Down actuator control, with preload times preceding the shifts and hold time to safely engage gears.
  • Configurable Minimum/Maximum blip time on downshifts.
  • Multiple gear shift modes such as: manual, automatic, fault modes, switch selection only, disabled.
  • Closed loop gear shift strategy including retries for missed shifts.
  • Gear Shift actuator air pump support with air pressure monitoring.
  • Drive by wire throttle blip control with engine speed matching.
  • Optional throttle blip and engine speed matching when the clutch is engaged.

FEATURES

  • Operates gasoline direct injected engines from 1 to 12 cylinders with inductive injectors and synchronous direct injection fuel pumps (M142 suits up to 8 cylinders). Refer to the Engine Compatibility section for known applicable engines.
  • Optionally configurable secondary (port injector) fuel control with a tuneable balance table. Only saturated (high-ohm) secondary injectors are supported in this hardware. Peak-hold (low-ohm) secondary injectors are not supported.
  • Optional alternative fuel operation for Flex Fuel using ethanol composition sensor, or Secondary Fuel operation on secondary injectors.
  • Configurable engine synchronisation mode for many common engine types. Refer to the Engine Synchronisation Modes section for current details.
  • Configurable top dead centre for each cylinder allows for odd-fire engines.
  • Configurable ignition output pin for each cylinder allows for coil-on-plug or wasted spark and distributor ignition systems.
  • Configurable on-board knock for each cylinder with up to 4 assignable knock sensors (hardware dependant) and 4 selectable centre frequencies.
  • Configurable camshaft control from 1 to 4 cams, plus 1 switched camshaft.
  • Configurable control of 1 or 2 synchronous direct injection fuel pumps, such as Bosch HDP5 or Hitachi HFS034.
  • 5 auxiliary outputs for PWM control of added actuators:
    • Duty cycle tables using Engine Speed and Throttle or Manifold Pressure Axes
    • Activation based on inlet manifold pressure or throttle position
    • Auxiliary Output 1 includes tables for Ignition Timing Compensation, Fuel Volume Trim and Mixture Aim
  • Dual bank lambda control supported; requires optional LTC with Bosch LSU4.9 sensor or LTCN with NTK sensor.
  • Physical settings for engine displacement, fuel density+molar mass, stoichiometric ratio and injector characteristics allow for simplified engine start-up prior to tuning.
  • Easy and fast engine tuning using engine efficiency map.
  • Engine load modelling based on inlet manifold pressure and inlet manifold temperature. Alternatively, for example, when using individual throttle bodies, throttle position can be used.
  • Fuel volume calculation considers delay effects resulting from the secondary (high) injector installation position.
  • Sensor calibrations available for many common automotive sensors.
  • Support for analogue and digital (frequency or duty cycle) sensors.
  • Transient fuelling compensation using physical modelling of fuel film.
  • Nitrous system with two activation stages and additional fuel pumps, bottle heater control and pressure sensor.
  • Transmission brake control ('bump') functionality for perfect positioning of cars.
  • Support of MoTeC devices: ADR, E8XX, PDM, SLM, VCS
  • Test settings for most outputs, including injection and ignition outputs, for easier setup.
  • Turbocharger wastegate pressure control with pressure sensor and two PWM outputs.
  • Configurable boost control with single wastegate actuator. Single and dual solenoids supported.
  • Configurable turbocharger bypass control.
  • Configurable anti-lag for single turbo with ignition timing limit, fuel volume trim, ignition cut, engine speed limit, boost aim and throttle aim tables.
  • Supports 2 coolant fan outputs (PWM controlled).
  • Configurable closed loop alternator system for PWM field winding control.
  • Supports 2 switchable inlet manifold flaps with position feedback, and 1 switchable inlet manifold runner with position feedback, for variable inlet systems.
  • Air conditioner support with switched output control.
  • Coolant temperature compensations for engine speed limit, ignition timing, fuel volume, fuel mixture, boost limit.
  • Coolant pump output with PWM control.
  • Coolant pump after-run functionality, optionally with additional pump output.
  • Engine speed limiting with ignition cut and/or fuel cut.
  • Fuel pump switched output.
  • Fuel Flow Supply Sensor and Fuel Flow Return Sensor.
  • Gearbox position detection via optional dual sensor or engine speed / wheel speed estimate.
  • Optional Gearbox shift request via Up Shift Switch / Down Shift Switch or Gear Lever Force sensor.
  • Gearbox shift support with ignition cut, fuel cut, throttle blip and engine speed matching in forward gears.
  • GPS acquisition and logging via CAN or RS232.
  • Intercooler temperature and spray control.
  • Closed loop Alternator control.
  • Lap distance, time and number via BR2, GPS or switched input, with split and sector options.
  • Configurable launch control with tables for engine speed, throttle limit, boost aim and fuel volume trim.
  • Race time system with tables for ignition timing trim, fuel mixture aim, boost limit and throttle limit.
  • Idle closed loop control system using ignition, drive by wire actuation or idle solenoid.
  • Idle bypass control with stepper motor supported.
  • Engine Load Average channel with tables for engine speed limit, ignition timing trim, fuel mixture aim, boost limit and throttle limit.
  • Ease of engine start with dedicated fuel volume and idle compensations during crank and post start.
  • Engine run time total for engine hour logging.
  • Configurable security for multiple users with differing access options.
  • Configuration of brake state using a switch or a pressure sensor.
  • Configuration of clutch state using a switch, a position sensor or a pressure sensor.
  • Calculation of clutch slip.
  • ECU-internal G-force (acceleration) – longitudinal, lateral, vertical
  • ECU CAN receive from a defined CAN ID for data reception from MoTeC devices. Support of 3 (M142/M182) CAN buses.
  • ECU CAN transmit of the most common channels using standard MoTeC CAN templates.
  • 8 configurable switches and 8 rotary switches (wired or CAN input) with each of 9 positions simultaneously mappable to Launch Control, Pit Switch, Anti-Lag, Traction, Race Time Reset, Engine Speed Limit Maximum, Throttle Pedal Translation, Ignition Timing, Fuel Mixture Aim, Boost Limit, Traction Aim and Traction Control Range.
  • Pulsed tachometer output with configurable output pin and scaling.
  • Dual bank drive by wire throttle servo control.
  • Configurable throttle sensor input, with 2 channel analogue or single wire digital (SENT) protocol.
  • Throttle Pedal sensor with translation table. Hybrid OE pedals (for example Ford) are supported - one analogue and one digital channel.
  • Use of a Throttle Pedal sensor or a Throttle Position sensor in case of a cable throttle.
  • Differential pump output with differential temperature threshold and hysteresis control.
  • Transmission pump output with transmission temperature threshold and hysteresis control.
  • Traction control with tables for Aim Main, Aim Compensation and Control Range.
  • Vehicle speed measurement using wheel speed sensors, estimation or GPS.
  • Vehicle Speed Limit Control system (DBW-throttle based), which can also be used for pit speed limiting.
  • Configurable warning system with light and CAN output.
  • Auxiliary time system with tables for ignition timing compensation, fuel volume trim and fuel mixture aim.
  • Optional channels for additional sensors via input pin and/or CAN message, including:
    • Airbox Mass Flow, Pressure and Temperature
    • Ambient Pressure and Temperature
    • Boost Pressure
    • Brake Pressure Front and Rear
    • Brake Switch
    • Clutch Pressure and Position
    • Clutch Switch
    • Coolant Pressure and Temperature
    • Differential Temperature
    • Engine Oil Pressure and Temperature
    • Engine Crankcase Pressure
    • Exhaust Pressure Bank 1 and Bank 2
    • Exhaust Temperature (EGT) via TCA Thermocouple Amplifier, Generic CAN, or E888 for Collector, Bank 1 and 2 Collector, and Cylinders 1 to 8 (M142) or 1 to 12 (M182)
    • Exhaust Lambda via LTC, LTCN, or PLM for Collector, Bank 1 and 2 Collector, and Cylinders 1 to 8 (M142) or 1 to 12 (M182)
    • Fuel Pressure and Temperature
    • Fuel Tank Level
    • Gear Position
    • Gear Lever Force
    • Gear Paddle
    • Gear Neutral Switch
    • Gear Shift Air Pressure
    • Inlet Manifold Flap Position x 2, Inlet Manifold Runner Position
    • Intercooler Temperature
    • Steering Angle and Pressure
    • Transmission Pressure and Temperature
    • Turbocharger Speed
    • Turbocharger Inlet/Outlet Temperature
    • Turbocharger Wastegate Position
    • G-Force (acceleration) – Longitudinal, Lateral, Vertical
    • Wheel Speed sensors front/rear left/right, wired or CAN input.

ENGINE COMPATIBILITY

This product is suitable for 4, 5, 6, 8, 10 or 12 cylinder engines with inductive direct injectors and synchronous direct injection fuel pumps. note; 10 and 12 cylinder engines are only supported by M182 ecu

Engines of more than 8 cylinders should have injector and wiring loadings calculated prior to commencement of project. Contact MoTeC for details.
Engines that are suitable:
Engine Family - Four Cylinder Engine Designation Year Vehicle Platform DI Fuel Pump Comment
Ford 1.6 Ecoboost 1.6Ti-VCT Sigma, 1.6 GTDI 2013+ Ford Fiesta ST Bosch HDP5
Ford 2.0 Ecoboost 2.0 GTDI 2013+ Ford Focus Bosch HDP5
Hyundai 1.6 Gamma T-GDi Gamma (G4FJ) 2012+ Hyundai Veloster FS-t, Kia Pro-Ceed GT Bosch HDP5
Nissan 1.6 DIG-T MR16DDT 2013+ Juke ST-S, Tiida ST-S, RenaultSport Clio
Subaru FA20DIT 2014+ Forester, WRX Hitachi This is the Direct Injected only variant of the engine.
Mazda L3-VDT 2007+ Mazda 3 MPS Hitachi
GM 2.0 Ecotec

Gen II

LDK, A20NFT 2014+ Opel Astra J OPC Bosch HDP5 Variants with GM single wire digital throttle (SENT protocol) are supported.
Audi / VW TFSI / TSI EA113 2005+ Platforms may include Audi S3, Audi TT, Golf Mk5 GTI Hitachi 2.0 litre capacity
Audi / VW TFSI / TSI EA111 2008+ Platforms may include Golf Mk6 Variants with 1.2, 1.4 litre capacity
Audi / VW TFSI / TSI EA888 Gen I, Gen II 2007+ Platforms may include Audi A4, Audi TT Mk2, VW Golf Mk5 GTI, Mk6 GTI Hitachi Variants with 1.8, 2.0 litre capacity. Gen III with electrical wastegate is not supported.
Mini N18 Mini R56N Cooper S
BMW N13B16 2011+ F20 116i, 118i, F30 316i, 320i Same as Mini N18
BMW N20B20 2011+ F30 320i, 328i, E89 Z4 sDrive28i,
Mini N20
Engine Family - Five Cylinder Engine Designation Year Vehicle Platform DI Fuel Pump Comment
Audi 2.5 R5 20v TFSI CEPA, CEPB 2009+ Audi TT RS, Audi RS3 Hitachi
Engine Family - Six Cylinder Engine Designation Year Vehicle Platform DI Fuel Pump Comment
GM SIDI 3.0, 3.6L Alloytec V6 LLT, LFX 2008+ Holden Commodore, Chevrolet Camaro, Impala, Caprice, Traverse Bosch HDP5
BMW 335 N55B30 (late) 2011+ BMW 335i (F30) Bosch HDP5
Audi 3.2 V6 24v TFSI 06E, CAKA, CCBA 2009+ Audi S4 (B8), A8, A6, A4 Hitachi
Engine Family - Eight Cylinder Engine Designation Year Vehicle Platform DI Fuel Pump Comment
GM 6.2l LT1, LT4 2014+ Chevrolet Corvette C7, Chevrolet Silverado Stanadyne GM single wire digital throttle (SENT protocol) is supported.
Audi 4.2 V8 32v FSI 079D, BAR, CAU, BVJ 2006+ Audi A6 Quattro, R8, S5 2 x Hitachi
Engine Family - Ten Cylinder Engine Designation Year Vehicle Platform DI Fuel Pump Comment
Audi / Lamborghini 5.2 V10 FSI 07L.Y / BUJ / LP560 2009+ Audi R8, Lamborghini Gallardo, Lamborghini Hurracan 2 x Hitachi Injector and wiring loadings must be calculated prior to commencement of project.
Engines that are not suitable:
Engine Family Engine Designation Year Vehicle Platform DI Fuel Pump Not applicable because:
Audi / VW TFSI / TSI EA211 2012+ Platforms may include Golf Mk7 Electrical wastegate
Audi / VW TFSI / TSI EA888 2012+ Platforms may include Golf Mk7 Electrical wastegate
Mini N14 Mini R56 Siemens PWM controlled continuous pump
BMW B48 2014+ These engines use piezo injectors
BMW N55B30 (early) 2008-2010 BMW 335i (E90) Siemens PWM controlled continuous pump

ENGINE SPEED MODES

As of M1 System 1.4.00.0104

  • AMC 242 - Jeep Cherokee XJ/XI (1994-2000), Jeep Wrangler TJ
  • Aston Martin AJ37
  • BMW M62TU V8
  • BMW M54
  • BMW N55 - BMW N55 and N52 engines
  • BMW S1000RR MY2015
  • BMW S50 - BMW S50B32 (E36M3)
  • BMW S62 - BMW E36 M3 S52B32, BMW E46 M3 S64B32, BMW E39 M5 S62B50 NOTE: not tested - please contact MoTeC before running this engine
  • BMW S85 - BMW E60 M3 S85B50, BMW E90 M3 S65B40
  • Bosch 140 40 - General Motors LLT, Audi BXA / Lamborghini LP560, Mazda L3-VDT
  • Bosch 140 40 36M1 - Polaris RZR Pro R (2022)
  • Bosch 140 40 36M2 - Polaris Rebel (2021)
  • Bosch 140 40 Alternate
  • Bosch 60 120 180
  • Camshaft One Missing Four Stroke
  • Camshaft Two Missing Four Stroke
  • Chrysler Pentastar
  • Chrysler SRT8 2005 - Chrysler 6.1l Hemi 2005-2010 (eg Chrysler 300C SRT–8, Dodge Challenger SRT–8)
  • Chrysler SRT8 2011 - Chrysler "Apache" 6.4l Hemi with variable camshaft timing 2011- (eg Chrysler 300C SRT–8, Dodge Challenger SRT–8)
  • Corvette C4 ZR1 - GM LT5 (1990 - 1995)
  • Crankshaft 12P15 Two Stroke
  • Crankshaft One Missing Four Stroke
  • Crankshaft One Missing Two Stroke
  • Crankshaft Two Missing Four Stroke
  • Crankshaft Two Missing Two Stroke
  • Cummins B Series - Dodge Ram 2500, 3500, 4500 trucks equipped with ISB engines (2003-), Cummins QSB Marine engines, Cummins QSB Off-highway engines
  • Custom EJ20G - Subaru GC8 WRX and STi (EJ20G, EJ20K, EJ207 etc.) from MY95 - MY00 with the MY01 crankshaft sprocket (part number 13021AA141)
  • Denso 270 90
  • Denso 270 90 Magnetic
  • Dodge Viper
  • Dodge Viper MY2008
  • Fiat TwinAir
  • Ford Cosworth YB
  • Ford Coyote
  • Ford Coyote GEN3 - Ford Mustang GT (2018-)
  • Ford Cyclone - Ford F150 (2011-2016), Ford Expedition (2015-2016), Ford Racing M-6007-35T 3.5L V-6 Ecoboost crate engine
  • Ford Duratec Synchronisation - Duratec, EcoBoost, BA cams
  • Ford Falcon I6 - (Ford Falcon EA-ED)
  • Ford Nano - Ford Raptor (2017-), Ford GT (2017-)
  • Ford Navistar T444E - Ford Powerstroke 7.3L Diesel (1994-2003)
  • Ford Sigma TiVCT
  • Ford Windsor - with 'PIP' sensor in the distributor
  • Formula Renault V6
  • Gastech TX1
  • Gastech TX2
  • General Motors DMAX LMM - General Motors 6.6L Duramax LMM diesel engines (late 2007 - early 2011) when the eighth digit of the VIN number is 6.
  • General Motors LLR - H3 Hummer (2007 - 2010)
  • General Motors LN3 - (Holden Commadore VN-VT)
  • General Motors LS1 - (Gen 3 V8)
  • General Motors LS7
  • Gibson ZA348
  • Honda Bike Synchronisation
  • Honda CBR250RR - Honda CBR250RR 2017
  • Honda F20C (Honda S2000)
  • Honda J32A (Acura TL & CL)
  • Honda J35A
  • Honda K20
  • Honda K20C1 - Civic Type R 2015+
  • Honda K24Z7
  • Honda L15B7 - Honda Civic (2016-)
  • Honda Marine BF250D
  • Honda S07A - Honda S660 Roadster (2015-).
  • Hyundai Gamma T GDI
  • Hyundai Lambda II RS GDi Engine (Hyundai Genesis V6)
  • Hyundai Lambda II T GDI - KIA Stinger (2016-)
  • Isuzu 4JK1
  • Kia G4TH
  • KTM SXF - KTM SX-F, Honda CRF250R, Suzuki RMZ250 (2016), Kawasaki KX250F (2013)
  • Lamborghini V10 - Experimental mode for 5.0L port injected Gallardo 2003 - 2007
  • Lamborghini LP520
  • Mazda BP Z3 - MX5 NB (2001-2005)
  • Mazda L3 - Mazda L3 VVTi (example Mazda 3 SPorts SP23, Mazda 6), Ford Duratec 23EW iVCT (e.g. Ford Fusion CD338)
  • Mazda MX5 2006: Mazda LF (MZR family) in MX5 NC (2006-), Suzuki M16A VVT in Swift Sport (2012-)
  • Mazda RX8 - Mazda Renesis 13B-MSP
  • Mazda SkyActiv G - Mazda6 GJ 2012+, MX5 ND 2015+, Mazda3 BM 2014+, Mazda2 DJ 2014+
  • Mercedes M120 - 6.0l V12 (S600 1992 - 2001)
  • Mercruiser 1075
  • Mitsubishi 4B11 - Lancer Evolution X
  • Mitsubishi 4G63T
  • Mitsubishi 6A12 - 6A12, 6A13, 6G74, 6G75
  • Mitsubishi Fuso 4P10 (also Agco Sisu Power 49G)
  • Mitsubishi Fuso 6M60 - 2015 Fuso TKG-FK61F
  • Multi Tooth Four Stroke
  • Multi Tooth Two Stroke
  • Nissan MR16DDT
  • Nissan MR20DD (Nissan Sentra 2010-)
  • Nissan RB26 - Nissan RB26 and other six cylinder engines with 360 degree optical trigger on camshaft
  • Nissan SR20 - Nissan SR20, CA18DET and other four cylinder engines with 360 degree optical trigger on camshaft
  • Nissan One wide slot - Nissan RB30 and other engines with 360 degree optical trigger on camshaft
  • Nissan VK50VE
  • Nissan VK56DE - Nissan VK56DE engine and others
  • Nissan VQ35 - Nissan VQ35HR engine, Nissan VR38DETT engine as used in the R35 GTR 2007
  • Nissan VR30DDTT
  • Nissan YS23DDT
  • Peugeot PSA EW10 J4S - Peugeot 206 GTi and RC (2003-2007)
  • Polaris RMK snowmobile - Two stroke, twin cylinder (2014- ), Including turbo versions
  • Porsche 997: Porsche Direct Injected engine, 2009 Porsche GT2 with 3.6 Lt engine (Variocam PLUS)
  • Private 1 - Private 6
  • PSA EP6DTS - Mini Cooper S Turbo (2007-2010) and Peugeot 207 RC/GTI (2006-2010)
  • Renault F4R - Clio Sport RS 3 (2005-2012)
  • Rotax BRP 2 Stroke
  • Rover K Series - Lotus Elise (1996-2001), Lotus Elise 111S (1999-2004)
  • Scania DC16
  • Scania SGL12A
  • Subaru EA82 - Subaru Leone (1984-1994), Subaru XT (1985-1991)
  • Subaru EJ207AVCS - Subaru EJ205, EJ207, EJ255, EJ257 from MY01 to MY05
  • Subaru EJ20G - Subaru GC8 WRX and STi (EJ20G, EJ20K, EJ207 etc.) from MY95 - MY00
  • Subaru EZ30 - EZ30D with Dual AVCS
  • Subaru FA20D - Subaru EJ205, EJ207 etc. with dual AVCS (MY06-), Subaru FA20D for BRZ and FT86 (2012-)
  • Subaru FA20DIT - Subaru Forester 2014, WRX 2015
  • Suzuki K6A - Caterham 7 160, Suzuki Swift GT (2016 Indonesia)
  • Toyota 1FZ FE - Toyota Landcruiser
  • Toyota 1GD FTV
  • Toyota 1KD FTV
  • Toyota 1UZ-FE
  • Toyota 2GR-FE - Lotus Evora, 3GR-FE etc, V6 with dual VVT-i.
  • Toyota 2JZ GE - Toyota 6 cylinder 2JZ-GE with VVT (example Lexus IS300)
  • Toyota 2UR-GSE in Lexus RC-F 2015 MY (2014/09 -)
  • Toyota 2ZR - Lotus Elise (2012-), Lexus RC 300 (2015-)
  • Toyota 2ZZ - Toyota 2ZZ, 3GS and others with VVT.
  • Volkswagen EA189
  • Volkswagen EA211 - Volkswagen Golf mk7 (2015-)
  • Volvo B4204T9
  • Volvo B5244S
  • Volvo D11C - D11C truck engine (FM450 Platform)
  • Yamaha FX SHO
  • Bosch 140 40 Alternate - 36M1, 36M2
  • BMW M62TUB44
  • Cosworth AG2
  • Honda UTV 999cc - (Honda Talon (2016-2021), Honda Pioneer (2016-2021)
  • Synergy V8 - based on S1000RR (2020-)
  • Rover/MG K-series 1.4L without Sync sensor.

M122 PINOUT

M122 Connector A — 34 way
Mating Connector: Tyco Superseal 34 Position Keying 1 – MoTeC #65044
Pin Designation Full Name OE Pin Function Description
A_1 OUT_HB2 Half Bridge Output 2
A_2 SEN_5V0_A Sensor 5.0V A
A_3 IGN_LS1 Low Side Ignition 1
A_4 IGN_LS2 Low Side Ignition 2
A_5 IGN_LS3 Low Side Ignition 3
A_6 IGN_LS4 Low Side Ignition 4
A_7 INJ_LS3 Low Side Injector 3
A_8 INJ_LS4 Low Side Injector 4
A_9 SEN_5V0_B Sensor 5.0V B
A_10 BAT_NEG Battery Negative
A_11 BAT_NEG Battery Negative
A_12 INJ_LS5 Low Side Injector 5
A_13 INJ_LS6 Low Side Injector 6
A_14 AV1 Analogue Voltage Input 1
A_15 AV2 Analogue Voltage Input 2
A_16 AV3 Analogue Voltage Input 3
A_17 AV4 Analogue Voltage Input 4
A_18 OUT_HB1 Half Bridge Output 1
A_19 INJ_D1A_POS Direct Injector 1A +
A_20 INJ_D1B_POS Direct Injector 1B +
A_21 INJ_D2A_POS Direct Injector 2A +
A_22 INJ_D2B_POS Direct Injector 2B +
A_23 INJ_LS1 Low Side Injector 1
A_24 INJ_LS2 Low Side Injector 2
A_25 AV5 Analogue Voltage Input 5
A_26 BAT_POS Battery Positive
A_27 INJ_D1A_NEG Direct Injector 1A -
A_28 INJ_D1B_NEG Direct Injector 1B -
A_29 INJ_D2A_NEG Direct Injector 2A -
A_30 INJ_D2B_NEG Direct Injector 2B -
A_31 OUT_HB3 Half Bridge Output 3
A_32 OUT_HB4 Half Bridge Output 4
A_33 OUT_HB5 Half Bridge Output 5
A_34 OUT_HB6 Half Bridge Output 6
M122 Connector B — 26 way
Mating Connector: Tyco Superseal 26 Position Keying 1 – MoTeC #65045
Pin Designation Full Name OE Pin Function Description
B_1 UDIG1 Universal Digital Input 1
B_2 UDIG2 Universal Digital Input 2
B_3 AT1 Analogue Temperature Input 1
B_4 AT2 Analogue Temperature Input 2
B_5 AT3 Analogue Temperature Input 3
B_6 AT4 Analogue Temperature Input 4
B_7 KNOCK1 Knock Input 1
B_8 UDIG3 Universal Digital Input 3
B_9 UDIG4 Universal Digital Input 4
B_10 UDIG5 Universal Digital Input 5
B_11 UDIG6 Universal Digital Input 6
B_12 BAT_BAK Battery Backup
B_13 KNOCK2 Knock Input 2
B_14 UDIG7 Universal Digital Input 7
B_15 SEN_0V_A Sensor 0V A
B_16 SEN_0V_B Sensor 0V B
B_17 CAN_HI CAN Bus High
B_18 CAN_LO CAN Bus Low
B_19 SEN_6V3 Sensor 6.3V
B_20 AV6 Analogue Voltage Input 6
B_21 AV7 Analogue Voltage Input 7
B_22 AV8 Analogue Voltage Input 8
B_23 ETH_TX+ Ethernet Transmit+
B_24 ETH_TX- Ethernet Transmit-
B_25 ETH_RX+ Ethernet Receive+
B_26 ETH_RX- Ethernet Receive-

EXAMPLE M142 PINOUT - GM LLT 3.6 V6

M142 Connector A - 34 Way
Mating Connector: Tyco Superseal 34 Position Keying 2 – MoTeC #65067
Pin Designation Full Name OE Pin Description
A01 AT5 Analogue Temperature Input 5 X1-82 Coolant Temperature Sensor, 1k Pull up to SEN_5V_C
A02 AT6 Analogue Temperature Input 6 1k Pull up to SEN_5V_C
A03 AV15 Analogue Voltage Input 15
A04 AV16 Analogue Voltage Input 16
A05 AV17 Analogue Voltage Input 17
A06 INJ_D1A_NEG Direct Injector 1A - X1-51 Fuel Cylinder 1 Primary Output -
A07 INJ_D1A_POS Direct Injector 1A + X1-75 Fuel Cylinder 1 Primary Output +
A08 INJ_D1B_POS Direct Injector 1B + X1-74 Fuel Cylinder 4 Primary Output +
A09 INJ_D1B_NEG Direct Injector 1B - X1-50 Fuel Cylinder 4 Primary Output -
A10 SEN_5V0_C1 Sensor 5.0V C
A11 LA_NB1 Lambda Narrow Input 1
A12 LA_NB2 Lambda Narrow Input 2
A13 KNOCK3 Knock Input 3
A14 KNOCK4 Knock Input 4
A15 DIG2 Digital Input 2
A16 DIG3 Digital Input 3
A17 DIG4 Digital Input 4
A18 SEN_5V0_C2 Sensor 5.0V C
A19 SEN_5V0_B2 Sensor 5.0V B X2-35, X2-48, X2-49 Sensor 5V Analogue signals
A20 LIN LIN Bus
A21 RS232_RX RS232 Receive
A22 RS232_TX RS232 Transmit
A23 DIG1 Digital Input 1
A24 BAT_NEG3 Battery Negative X2-01, X2-02, X2-04 Power ground
A25 BAT_NEG4 Battery Negative X2-01, X2-02, X2-04 Power ground
A26 SEN_0V_C1 Sensor 0V C
A27 SEN_0V_C2 Sensor 0V C
A28 CAN3_HI CAN Bus 3 High
A29 CAN3_LO CAN Bus 3 Low
A30 CAN2_HI CAN Bus 2 High
A31 CAN2_LO CAN Bus 2 Low
A32 BAT_NEG5 Battery Negative X2-01, X2-02, X2-04 Power ground
A33 SEN_0V_B1 Sensor 0V B
A34 SEN_0V_A1 Sensor 0V A
M142 Connector B - 26 Way
Mating Connector: Tyco Superseal 26 Position Keying 3 – MoTeC #65068
Pin Designation Full Name OE Pin Description
B01 OUT_HB9 Half Bridge Output 9 X1-25 Exhaust Camshaft Bank 2 Actuator Output
B02 OUT_HB10 Half Bridge Output 10 X1-01 Exhaust Camshaft Bank 1 Actuator Output
B03 UDIG8 Universal Digital Input 8
B04 UDIG9 Universal Digital Input 9
B05 UDIG10 Universal Digital Input 10
B06 UDIG11 Universal Digital Input 11
B07 UDIG12 Universal Digital Input 12
B08 INJ_LS5 Low Side Injector 5
B09 INJ_LS3 Low Side Injector 3
B10 AV9 Analogue Voltage Input 9 Gear Position Sensor
B11 AV10 Analogue Voltage Input 10 Gear Actuator Shift Pressure Sensor
B12 AV11 Analogue Voltage Input 11
B13 BAT_POS Battery Positive X2-03, X2-05, X2-06 ECU Battery Voltage
B14 INJ_LS6 Low Side Injector 6
B15 INJ_LS4 Low Side Injector 4
B16 AV12 Analogue Voltage Input 12
B17 AV13 Analogue Voltage Input 13
B18 AV14 Analogue Voltage Input 14
B19 BAT_POS Battery Positive X2-03, X2-05, X2-06 ECU Battery Voltage
B20 OUT_HB7 Half Bridge Output 7 X1-49 Inlet Camshaft Bank 2 Actuator Output
B21 OUT_HB8 Half Bridge Output 8 X1-02 Inlet Camshaft Bank 1 Actuator Output
B22 INJ_D2A_NEG Direct Injector 2A - X1-52 Fuel Cylinder 2 Primary Output -
B23 INJ_D2A_POS Direct Injector 2A + X1-53 Fuel Cylinder 2 Primary Output +
B24 INJ_D2B_POS Direct Injector 2B + X1-29 Fuel Cylinder 5 Primary Output +
B25 INJ_D2B_NEG Direct Injector 2B - X1-28 Fuel Cylinder 5 Primary Output -
B26 SEN_5V0_A Sensor 5.0V A
M142 Connector C - 34 Way
Mating Connector: Tyco Superseal 34 Position Keying 1 – MoTeC #65044
Pin Designation Full Name OE Pin Description
C01 OUT_HB2 Half Bridge Output 2 X2-10 Fuel Pump Output
C02 SEN_5V0_A Sensor 5.0V A X1-15, X1-45 Sensor 5V for digital signals
C03 IGN_LS1 Low Side Ignition 1 X1-55 Ignition Cylinder 1 Output
C04 IGN_LS2 Low Side Ignition 2 X1-79 Ignition Cylinder 2 Output
C05 IGN_LS3 Low Side Ignition 3 X1-56 Ignition Cylinder 3 Output
C06 IGN_LS4 Low Side Ignition 4 X1-80 Ignition Cylinder 4 Output
C07 IGN_LS5 Low Side Ignition 5 X1-57 Ignition Cylinder 5 Output
C08 IGN_LS6 Low Side Ignition 6 X1-81 Ignition Cylinder 6 Output
C09 SEN_5V0_B Sensor 5.0V B X1-38, X1-39, X1-40 Sensor 5V Analogue signals
C10 BAT_NEG1 Battery Negative X2-01, X2-02, X2-04 Power ground
C11 BAT_NEG2 Battery Negative X2-01, X2-02, X2-04 Power ground
C12 IGN_LS7 Low Side Ignition 7 X2-46 Coolant Fan 1 Output
C13 IGN_LS8 Low Side Ignition 8 X2-45 Coolant Fan 2 Output
C14 AV1 Analogue Voltage Input 1 X2-15 Throttle Pedal Sensor Main
C15 AV2 Analogue Voltage Input 2 Inlet Manifold Pressure Sensor
C16 AV3 Analogue Voltage Input 3 X1-90 Throttle Servo Bank 1 Position Sensor Main
C17 AV4 Analogue Voltage Input 4 X1-89 Throttle Servo Bank 1 Position Sensor Tracking
C18 OUT_HB1 Half Bridge Output 1
C19 INJ_D3A_POS Direct Injector 3A + X1-27 Fuel Cylinder 3 Primary Output +
C20 INJ_D3B_POS Direct Injector 3B + X1-03 Fuel Cylinder 6 Primary Output +
C21 INJ_D4A_POS Direct Injector 4A +
C22 INJ_D4B_POS Direct Injector 4B +
C23 INJ_LS1 Low Side Injector 1 Gear Shift Actuator Up
C24 INJ_LS2 Low Side Injector 2 Gear Shift Actuator Down
C25 AV5 Analogue Voltage Input 5 X1-61 Engine Oil Pressure Sensor
C26 BAT_POS Battery Positive X2-03, X2-05, X2-06 ECU Battery Voltage
C27 INJ_D3A_NEG Direct Injector 3A - X1-26 Fuel Cylinder 3 Primary Output -
C28 INJ_D3B_NEG Direct Injector 3B - X1-04 Fuel Cylinder 6 Primary Output -
C29 INJ_D4A_NEG Direct Injector 4A -
C30 INJ_D4B_NEG Direct Injector 4B -
C31 OUT_HB3 Half Bridge Output 3 X1-73 Fuel Pressure Direct Pump Output
C32 OUT_HB4 Half Bridge Output 4 X1-05 Fuel Pressure Direct Pump Output
C33 OUT_HB5 Half Bridge Output 5 X1-24 Throttle Servo Bank 1 Motor
C34 OUT_HB6 Half Bridge Output 6 X1-48 Throttle Servo Bank 1 Motor
M142 Connector D - 26 Way
Mating Connector: Tyco Superseal 26 Position Keying 1 – MoTeC #65045
Pin Designation Full Name OE Pin Description
D01 UDIG1 Universal Digital Input 1 X1-35 Engine Speed Reference
D02 UDIG2 Universal Digital Input 2 X1-09 Exhaust Camshaft Bank 2 Position
D03 AT1 Analogue Temperature Input 1 1k Pull up to SEN_5V_A
D04 AT2 Analogue Temperature Input 2 X2-50 Inlet Manifold Temperature Sensor, 1k Pull up to SEN_5V_A
D05 AT3 Analogue Temperature Input 3 X1-85 Engine Oil Temperature Sensor, 1k Pull up to SEN_5V_B
D06 AT4 Analogue Temperature Input 4 1k Pull up to SEN_5V_B
D07 KNOCK1 Knock Input 1 X1-59 Knock Cylinder 1
D08 UDIG3 Universal Digital Input 3 X1-07 Inlet Camshaft Bank 1 Position
D09 UDIG4 Universal Digital Input 4 X1-34 Exhaust Camshaft Bank 1 Position
D10 UDIG5 Universal Digital Input 5 X1-33 Inlet Camshaft Bank 2 Position
D11 UDIG6 Universal Digital Input 6 Gear Shift Paddle Up Switch
D12 BAT_BAK Battery Backup
D13 KNOCK2 Knock Input 2 X1-84 Knock Cylinder 2
D14 UDIG7 Universal Digital Input 7 Gear Shift Paddle Down Switch
D15 SEN_0V_A Sensor 0V A X1-13, X1-41, X1-46, X1-78 Sensor 0V for digital signals
D16 SEN_0V_B Sensor 0V B X2-11, X2-22, X2-34, X2-47 Sensor 0V Analogue signals
D17 CAN1_HI CAN Bus 1 High
D18 CAN1_LO CAN Bus 1 Low
D19 SEN_6V3 Sensor 6.3V
D20 AV6 Analogue Voltage Input 6 X1-36 Fuel Pressure Direct Sensor
D21 AV7 Analogue Voltage Input 7 X2-25 Throttle Pedal Sensor Tracking
D22 AV8 Analogue Voltage Input 8 Airbox Mass Flow Sensor Voltage
D23 ETH_TX+ Ethernet Transmit+ Ethernet Green/White
D24 ETH_TX- Ethernet Transmit- Ethernet Green
D25 ETH_RX+ Ethernet Receive+ Ethernet Orange/White
D26 ETH_RX- Ethernet Receive- Ethernet Orange

EXAMPLE M182 PINOUT - GM LLT 3.6 V6

M182 Connector A - 55 Way
Mating Connector: Autosport 55 Way Green - (Deutsch) AS6-16-35SD – MoTeC #65032
Pin Designation Full Name OE Pin Description
A01 INJ_D1A_POS Direct Injector 1A + X1-75 Fuel Cylinder 1 Primary Output +
A02 INJ_D2A_POS Direct Injector 2A + X1-53 Fuel Cylinder 2 Primary Output +
A03 INJ_D2B_POS Direct Injector 2B +
A04 INJ_D4A_POS Direct Injector 4A + X1-74 Fuel Cylinder 4 Primary Output +
A05 INJ_D1B_POS Direct Injector 1B +
A06 LA_NB2 Lambda Narrow Input 2
A07 LA_NB1 Lambda Narrow Input 1
A08 SEN_5V0_C1 Sensor 5.0V C
A09 SEN_5V0_C2 Sensor 5.0V C
A10 INJ_D4B_POS Direct Injector 4B +
A11 INJ_D1A_NEG Direct Injector 1A - X1-51 Fuel Cylinder 1 Primary Output -
A12 INJ_D1B_NEG Direct Injector 1B -
A13 AV11 Analogue Voltage Input 11
A14 DIG2 Digital Input 2
A15 RS232_RX RS232 Receive
A16 SEN_5V0_C3 Sensor 5.0V C
A17 INJ_D6A_POS Direct Injector 6A + X1-03 Fuel Cylinder 6 Primary Output +
A18 SEN_0V_C1 Sensor 0V C
A19 SEN_0V_C2 Sensor 0V C
A20 SEN_0V_C3 Sensor 0V C
A21 DIG1 Digital Input 1
A22 LIN LIN Bus
A23 RS232_TX RS232 Transmit
A24 CAN2_HI CAN Bus 2 High
A25 INJ_D6B_POS Direct Injector 6B +
A26 INJ_D2A_NEG Direct Injector 2A - X1-52 Fuel Cylinder 2 Primary Output -
A27 AV15 Analogue Voltage Input 15
A28 AV16 Analogue Voltage Input 16
A29 AV17 Analogue Voltage Input 17
A30 DIG3 Digital Input 3
A31 CAN2_LO CAN Bus 2 Low
A32 INJ_D3A_POS Direct Injector 3A + X1-27 Fuel Cylinder 3 Primary Output +
A33 INJ_D2B_NEG Direct Injector 2B -
A34 AV13 Analogue Voltage Input 13
A35 AV12 Analogue Voltage Input 12
A36 INJ_D6A_NEG Direct Injector 6A - X1-04 Fuel Cylinder 6 Primary Output -
A37 DIG4 Digital Input 4
A38 BAT_BAK Battery Backup
A39 CAN3_HI CAN Bus 3 High
A40 INJ_D3B_POS Direct Injector 3B +
A41 AV14 Analogue Voltage Input 14
A42 INJ_D3A_NEG Direct Injector 3A - X1-26 Fuel Cylinder 3 Primary Output -
A43 INJ_D4A_NEG Direct Injector 4A - X1-50 Fuel Cylinder 4 Primary Output -
A44 INJ_D5B_NEG Direct Injector 5B -
A45 INJ_D6B_NEG Direct Injector 6B -
A46 CAN3_LO CAN Bus 3 Low
A47 INJ_D5A_POS Direct Injector 5A + X1-29 Fuel Cylinder 5 Primary Output +
A48 INJ_D5B_POS Direct Injector 5B +
A49 INJ_D3B_NEG Direct Injector 3B -
A50 INJ_D4B_NEG Direct Injector 4B -
A51 INJ_D5A_NEG Direct Injector 5A - X1-28 Fuel Cylinder 5 Primary Output -
A52 IGN_LS12 Low Side Ignition 12
A53 IGN_LS9 Low Side Ignition 9
A54 IGN_LS10 Low Side Ignition 10
A55 IGN_LS11 Low Side Ignition 11
M182 Connector B - 26 Way
Mating Connector: Autosport 26 Way Red - (Deutsch) AS6-16-26SN – MoTeC #65034
Pin Designation Full Name OE Pin Description
B_A OUT_HB1 Half Bridge Output 1
B_B OUT_HB2 Half Bridge Output 2 X2-10 Fuel Pump Output
B_C OUT_HB3 Half Bridge Output 3 X1-73 Fuel Pressure Direct Bank 2 Pump Output
B_D OUT_HB4 Half Bridge Output 4 X1-05 Fuel Pressure Direct Bank 2 Pump Output
B_E OUT_HB5 Half Bridge Output 5 X1-24 Throttle Servo Bank 1 Motor Output
B_F OUT_HB6 Half Bridge Output 6 X1-48 Throttle Servo Bank 1 Motor Output
B_G BAT_NEG1 Battery Negative X2-01 Power ground
B_H BAT_POS1 Battery Positive X2-03 ECU Battery Voltage
B_J BAT_POS2 Battery Positive X2-05 ECU Battery Voltage
B_K BAT_POS3 Battery Positive X2-06 ECU Battery Voltage
B_L BAT_POS4 Battery Positive X2-06 ECU Battery Voltage
B_M OUT_HB10 Half Bridge Output 10 X1-01 Exhaust Camshaft Bank 1 Actuator Output
B_N OUT_HB9 Half Bridge Output 9 X1-25 Exhaust Camshaft Bank 2 Actuator Output
B_P OUT_HB8 Half Bridge Output 8 X1-02 Inlet Camshaft Bank 1 Actuator Output
B_R OUT_HB7 Half Bridge Output 7 X1-49 Inlet Camshaft Bank 2 Actuator Output
B_S INJ_LS4 Low Side Injector 4 X2-46 Coolant Fan 1 Output, Low speed fan
B_T INJ_LS6 Low Side Injector 6
B_U INJ_LS1 Low Side Injector 1
B_V INJ_LS2 Low Side Injector 2
B_W BAT_NEG2 Battery Negative X2-02 Power ground
B_X BAT_NEG3 Battery Negative X2-02 Power ground
B_Y BAT_NEG4 Battery Negative X2-04 Power ground
B_Z BAT_NEG5 Battery Negative X2-04 Power ground
B_a INJ_LS5 Low Side Injector 5 X2-45 Coolant Fan 2 Output, High speed fan
B_b INJ_LS3 Low Side Injector 3
B_c BAT_NEG6 Battery Negative X2-01 Power ground
M182 Connector C - 55 Way
Mating Connector: Autosport 55 Way Red - (Deutsch) AS6-16-35SN – MoTeC #68090
Pin Designation Full Name OE Pin Description
C01 IGN_LS4 Low Side Ignition 4 X1-80 Ignition Cylinder 4 Output
C02 IGN_LS3 Low Side Ignition 3 X1-56 Ignition Cylinder 3 Output
C03 IGN_LS8 Low Side Ignition 8 Gear Shift Actuator Down
C04 IGN_LS6 Low Side Ignition 6 X1-81 Ignition Cylinder 6 Output
C05 IGN_LS5 Low Side Ignition 5 X1-57 Ignition Cylinder 5 Output
C06 AV8 Analogue Voltage Input 8 Airbox Mass Flow Sensor
C07 AV10 Analogue Voltage Input 10 Gear Actuator Shift Pressure Sensor
C08 IGN_LS2 Low Side Ignition 2 X1-79 Ignition Cylinder 2 Output
C09 IGN_LS7 Low Side Ignition 7 Gear Shift Actuator Up
C10 UDIG8 Universal Digital Input 8
C11 AV6 Analogue Voltage Input 6 X1-36 Fuel Pressure Direct Bank 2 Sensor
C12 AV7 Analogue Voltage Input 7 X2-25 Throttle Pedal Sensor Tracking
C13 AV9 Analogue Voltage Input 9 Gear Position Sensor
C14 SEN_0V_A1 Sensor 0V A X1-13,X1-41, X1-46, X1-78 Sensor 0V for digital signals
C15 SEN_0V_A2 Sensor 0V A
C16 IGN_LS1 Low Side Ignition 1 X1-55 Ignition Cylinder 1 Output
C17 UDIG7 Universal Digital Input 7 Gear Shift Paddle Down Switch
C18 UDIG1 Universal Digital Input 1 X1-35 Engine Speed Reference
C19 UDIG12 Universal Digital Input 12
C20 UDIG11 Universal Digital Input 11
C21 UDIG10 Universal Digital Input 10
C22 UDIG9 Universal Digital Input 9
C23 SEN_0V_B1 Sensor 0V B
C24 CAN1_HI CAN Bus 1 High
C25 UDIG3 Universal Digital Input 3 X1-07 Inlet Camshaft Bank 1 Position
C26 ETH_RX- Ethernet Receive- Ethernet Orange
C27 UDIG4 Universal Digital Input 4 X1-34 Exhaust Camshaft Bank 1 Position
C28 AV4 Analogue Voltage Input 4 X1-89 Throttle Servo Bank 1 Position Sensor Tracking
C29 AV5 Analogue Voltage Input 5 X1-61 Engine Oil Pressure Sensor
C30 SEN_0V_B2 Sensor 0V B X2-11, X2-22, X2-34, X2-47 Sensor 0V Analogue signals
C31 CAN1_LO CAN Bus 1 Low
C32 UDIG2 Universal Digital Input 2 X1-09 Exhaust Camshaft Bank 2 Position
C33 ETH_RX+ Ethernet Receive+ Ethernet Orange/White
C34 ETH_TX- Ethernet Transmit- Ethernet Green
C35 AV3 Analogue Voltage Input 3 X1-90 Throttle Servo Bank 1 Position Sensor Main
C36 AV2 Analogue Voltage Input 2 Inlet Manifold Pressure Sensor
C37 AT1 Analogue Temperature Input 1 1k Pull up to SEN_5V_A
C38 AT3 Analogue Temperature Input 3 X1-85 Engine Oil Temperature Sensor, 1k Pull up to SEN_5V_B
C39 AT2 Analogue Temperature Input 2 X2-50 Inlet Manifold Temperature Sensor, 1k Pull up to SEN_5V_A
C40 UDIG5 Universal Digital Input 5 X1-33 Inlet Camshaft Bank 2 Position
C41 ETH_TX+ Ethernet Transmit+ Ethernet Green/White
C42 AV1 Analogue Voltage Input 1 X2-15 Throttle Pedal Sensor Main
C43 KNOCK3 Knock Input 3
C44 KNOCK2 Knock Input 2 X1-84 Knock Cylinder 2
C45 AT5 Analogue Temperature Input 5 X1-82 Coolant Temperature Sensor, 1k Pull up to SEN_5V_C
C46 AT4 Analogue Temperature Input 4 1k Pull up to SEN_5V_B
C47 UDIG6 Universal Digital Input 6 Gear Shift Paddle Up Switch
C48 SEN_5V0_A1 Sensor 5.0V A X1-15, X1-45 Sensor 5V Digital signals
C49 KNOCK4 Knock Input 4
C50 SEN_5V0_B1 Sensor 5.0V B X1-38, X1-39, 1-40 Sensor 5V Analogue signals
C51 KNOCK1 Knock Input 1 X1-59 Knock Cylinder 1
C52 AT6 Analogue Temperature Input 6 1k Pull up to SEN_5V_C
C53 SEN_5V0_A2 Sensor 5.0V A
C54 SEN_6V3 Sensor 6.3V
C55 SEN_5V0_B2 Sensor 5.0V B X2-35, X2-48, 2-49 Sensor 5V Analogue signals

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OVERVIEW

ECU VARIANTS

LICENCING

VEHICLE COMPATIBILITY

PADDLE SHIFT FEATURES

FEATURES

ENGINE COMPATIBILITY

ENGINE SPEED MODES

M122 PINOUT

EXAMPLE M142 PINOUT - GM LLT 3.6 V6

EXAMPLE M182 PINOUT - GM LLT 3.6 V6

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