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Air Conditioning System (Diagnostics - Introduction): Other Lexus RX III рестайлинг

Automatic HVAC System 16 illustrations ~3628 words

PRECAUTION [07/2012 - ]

  1. PRECAUTION FOR DISCONNECTING CABLE FROM NEGATIVE BATTERY TERMINAL NOTE: When disconnecting the cable from the negative (-) battery terminal, initialize the following systems after the cable is reconnected. System Name See Procedure Parking Assist Monitor System Refer to «INITIALIZATION [07/2012 - ]»(ref-602551-S38908041872014030500000) Back Door Closer System Power Back Door System
  2. PRECAUTIONS WHEN USING TECHSTREAM When using the Techstream with the engine switch off to troubleshoot: Connect the Techstream to the vehicle, and turn a courtesy light switch on and off at 1.5-second intervals until communication between the Techstream and vehicle begins. After all DTCs are cleared, check if the malfunction occurs again 6 seconds after the engine switch is turned on (IG).
  3. DO NOT HANDLE REFRIGERANT IN AN ENCLOSED AREA OR NEAR AN OPEN FLAME TEXT IN ILLUSTRATION *1 Charging Cylinder
  4. ALWAYS WEAR EYE PROTECTION
  5. BE CAREFUL NOT TO GET LIQUID REFRIGERANT IN YOUR EYES OR ON YOUR SKIN If liquid refrigerant gets in your eyes or on your skin: Wash the area with lots of cold water. WARNING: Do not rub your eyes or skin. Apply clean petroleum jelly to the skin. Go immediately to a hospital or see a physician for professional treatment.
  6. NEVER HEAT CONTAINER OR EXPOSE THE CONTAINER TO AN OPEN FLAME
  7. BE CAREFUL NOT TO DROP CONTAINER OR APPLY PHYSICAL SHOCKS TO IT
  8. DO NOT OPERATE COMPRESSOR WITHOUT ENOUGH REFRIGERANT IN REFRIGERANT SYSTEM If there is not enough refrigerant in the A/C system, oil lubrication will be insufficient and the compressor may be damaged. Necessary care should be taken to avoid this.
  9. DO NOT OPEN HIGH PRESSURE MANIFOLD VALVE WHILE COMPRESSOR IS OPERATING Open and close only the low pressure valve. If the high pressure valve is opened, refrigerant flows in the reverse direction causing the charging cylinder to rupture.
  10. BE CAREFUL NOT TO OVERCHARGE SYSTEM WITH REFRIGERANT If refrigerant is overcharged, it causes problems such as insufficient cooling, poor fuel economy, engine overheating, etc.
  11. DO NOT OPERATE ENGINE AND COMPRESSOR WITH NO REFRIGERANT WARNING: Doing so may damage inside the compressor because the compressor parts always move regardless of whether the A/C system is turned on or off.
  12. SUPPLEMENTAL RESTRAINT SYSTEM (SRS) This vehicle is equipped with a Supplemental Restraint System (SRS) such as the driver, front passenger, side, and curtain shield airbags. Failure to carry out service operations in the correct sequence could cause the SRS to unexpectedly deploy during servicing, possibly leading to a serious accident. Before servicing (including removal or installation of parts, inspection or replacement), be sure to read the precautionary notices. Refer to «PRECAUTION [07/2012 - ]»(ref-602724-S13282392072014030500000) .
  13. GENERAL PRECAUTION While using the battery during inspection, do not bring the positive (+) and negative (-) tester probes too close to each other as a short circuit may occur.

Scheme 229

Scheme 229: ILLUSTRATION

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Scheme 230: ILLUSTRATION

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Scheme 231: ILLUSTRATION

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Scheme 232: ILLUSTRATION

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Scheme 233: SYSTEM DIAGRAM [03/2012 - ]

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SenderReceiverSignalCommunication Line
A/C amplifierECMMagnetic clutch request signalCAN
Idle up request signal
Refrigerant gas mass flow signal
Evaporator temperature signal
External variable control solenoid current signal
Cooling fan motor driving request signal
Refrigerant gas pressure sensor signal
Ambient temperature signal
A/C amplifierAccessory meter assembly*5Ambient temperature indicator signalLIN
MODE indicator signal
Blower level indicator signal
Set temperature indicator signal
Switch signal of 0 or 0.5°C below decimal point of ambient temperature display signal
A/C amplifierMulti-display assembly*6A/C display signalCAN/AVC-LAN
A/C indicator signal
DUAL/SYNC indicator signal
Blower level indicator signal
MODE indicator signal
Set temperature display signal
A/C amplifierMulti-media module receiver assembly*3, *4 or radio receiver assembly*2A/C display request signalCAN
A/C warning on-screen request signal
AUTO indicator signal
DEF indicator signal
Rr DEF indicator signal
Inlet auto indicator signal
REC indicator signal
FRS indicator signal
A/C indicator signal
Deicer indicator signal
DUAL/SYNC indicator signal
Blower level indicator signal
Outlet indicator signal
Blower manual status signal
A/C on-screen request signal
Driver side temperature display signal
Passenger side temperature display signal
A/C screen select information signal
Temperature unit select information signal
Blower step select information signal
Destination select information signal
Deicer switch select information signal
Mirror heater switch select information signal
Control information signal
Gas reception indicator display request signal
Gas reception indicator signal
Ambient temperature display signal
Switch signal of 0 or 0.5°C below decimal point of ambient temperature display signal
A/C amplifierRadio receiver assembly*1AUTO indicator signalLIN/AVC-LAN
DEF indicator signal
Rr DEF indicator signal
REC indicator signal
FRS indicator signal
A/C indicator signal
DUAL/SYNC indicator signal
Blower level indicator signal
Outlet indicator signal
Switch signal of 0 or 0.5°C below decimal point of ambient temperature display signal
A/C amplifierCombination meter assemblyAmbient temperature display signalCAN
Switch signal of 0 or 0.5°C below decimal point of ambient temperature display signal
Combination meter assemblyA/C amplifierVehicle speed signalCAN
Main body ECUA/C amplifierMain body request signalCAN
Destination symbol signal
Destination package signal
Steering wheel signal
A/C on signal
Defogger on signal
ECMA/C amplifierEngine revolution speed signalCAN
Engine coolant temperature signal
A/C control cut signal
Eco mode indicator signal
Gear information signal
Variable control inhibition signal
Air conditioning cut-off instruction flag at deceleration signal
A/C supercooling command flag at deceleration signal
Compulsory internal air circulation command signal at high engine coolant temperature
Multi-media module receiver assembly*3, 4 or radio receiver assembly*2A/C amplifierAUTO switch signalCAN
A/C switch signal
Fr DEF switch state signal
Rr DEF switch state signal
MODE switch state signal
REC/FRS switch state signal
DUAL switch state signal
OFF switch state signal
Blower level switch state signal
Driver side set temperature up switch state signal
Driver side set temperature down switch state signal
Front passenger side set temperature up switch state signal
Front passenger side set temperature down switch state signal
Wiper deicer switch state signal
Gas reception setting screen signal
Gas reception setting switch state signal
A/C-navi cooperation state signal
Radio receiver assembly*1A/C amplifierAUTO switch state signalLIN/AVC-LAN
A/C switch state signal
Fr DEF switch state signal
Rr DEF switch state signal
MODE switch state signal
REC/FRS switch state signal
DUAL switch state signal
OFF switch state signal
Blower level switch state signal
Driver side set temperature up switch state signal
Driver side set temperature down switch state signal
Front passenger side set temperature up switch state signal
Front passenger side set temperature down switch state signal

COMMUNICATION TABLE

  1. *1: w/ Audio and Visual System (w/o Multi-display)
  2. *2: w/ Audio and Visual System (w/ Multi-display without Parking Assist Monitor System)
  3. *3: w/ Audio and Visual System (w/ Multi-display with Parking Assist Monitor System)
  4. *4: w/ Navigation System
  5. *5: w/o Multi-display
  6. *6: w/ Multi-display

Scheme 235

Scheme 235: SYSTEM DESCRIPTION [03/2012 - ]

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  1. GENERAL The air conditioning system has the following controls. Control Outline Neural Network Control This control is capable of performing complex control by artificially simulating the information processing method of the nervous system of living organisms in order to establish a complex input/output relationship similar to that of a human brain. Automatic Recirculation Control*1 Automatically changes the air inlet mode to fresh air or recirculation air mode according to the level of harmful elements in the outside air, cabin temperature, and outside temperature. Outlet Air Temperature Control Based on the temperature set by the temperature control dial, the neural network control calculates outlet air temperature based on input signals from various sensors. Left and Right Independent Control The temperature settings for the driver and front passenger are controlled independently in order to provide separate vehicle interior temperatures for the right and left sides of the vehicle. Thus, air conditioning that accommodates the occupants' preferences has been realized. Blower Control Controls the blower motor in accordance with the airflow volume that has been calculated by the neural network control based on the input signals from various sensors. Air Outlet Control Automatically switches the air outlets in accordance with the outlet mode that has been calculated by the neural network control. In accordance with the engine coolant temperature, ambient air temperature, amount of sunlight, required blower, outlet temperature and vehicle speed conditions, this control automatically switches the blower outlet to foot and defroster mode to prevent the windows from becoming fogged up when the ambient air temperature is low. Air Inlet Control Automatically controls the air inlet control damper to help achieve the calculated outlet air temperature that is required. Drives the air inlet control servo motor according to the operation of the air inlet control switch and moves the dampers to the fresh or recirculation position. Compressor Control Through the calculation of the target evaporator temperature based on various sensor signals, the air conditioning amplifier optimally controls discharge capacity by regulating the opening extent of the compressor solenoid valve. The air conditioning amplifier compares the pulley speed signals (transmitted by the lock sensor located on the compressor) with the engine speed signal (which are transmitted by the ECM (crankshaft position sensor)). When the air conditioning amplifier determines that the pulley is locked, it turns off the magnetic clutch. Defroster Control Defroster control logic is used to improve defroster performance. Rear Defogger Control When the engine switch is on (IG) and the rear defogger switch is pushed, the system is activated to keep the defogger heater on for approx. 15 minutes. However, the operating time of the rear defogger can be extended up to approx. 60 minutes when both of the following requirements are met: Ambient Temperature: 0°C (32°F) or less Vehicle Speed: 37.3 mph (60 km/h) or more Memory Call Control Memorizes the last air conditioning settings when the engine switch is turned from on (IG) to off in accordance with the ID code of the key that is used to operate the vehicle. The key-linked memory call control then recalls the settings if the key is used when the engine switch is turned on (IG). This function operates when both of the following conditions are met: Inside of the outside door handle is touched or the driver door is unlocked using the unlock button, and then the driver door is opened. Engine switch is turned on (IG). Diagnosis A Diagnostic Trouble Code (DTC) is stored in the memory when the air conditioning amplifier detects a problem with the air conditioning system. *1: w/ Smog Ventilation Sensor
  2. NEURAL NETWORK CONTROL In previous automatic air conditioning systems, the A/C amplifier determined the required outlet air temperature and blower air volume in accordance with the calculation formula that has been obtained based on information received from the sensors. However, because the senses of a person are rather complex, a given temperature is sensed differently, depending on the environment in which the person is situated. For example, a given amount of solar radiation can feel comfortably warm in a cold climate, or extremely uncomfortable in a hot climate. Therefore, as a technique for effecting a higher level of control, a neural network has been adopted in the automatic air conditioning system. With this technique, the data that has been collected under varying environmental conditions is stored in the A/C amplifier. The A/C amplifier can then effect control to provide enhanced air conditioning comfort. The neural network control consists of neurons in the input layer, intermediate layer and output layer. The input layer neurons process the input data of the outside temperature, the amount of sunlight and the room temperature based on the outputs of the switches and sensors, and output them to the intermediate layer neurons. Based on this data, the intermediate layer neurons adjust the strength of the links among the neurons. The sum of these is then calculated by the output layer neurons in the form of the required outlet temperature, solar correction, target airflow volume and outlet mode control volume. Accordingly, the A/C amplifier controls the servo motors and blower motor in accordance with the control volumes that have been calculated by the neural network control.
  3. AUTOMATIC RECIRCULATION CONTROL (w/ Smog Ventilation Sensor) When the automatic recirculation control is operating, the A/C amplifier automatically changes the air inlet mode to fresh air or recirculate air mode based on signals from the smog ventilation sensor, ambient temperature and room temperature sensors when AUTO air inlet mode is selected. The A/C amplifier detects harmful elements (CO, HC, and NOx) based on a smog ventilation sensor signal and automatically switches the air inlet mode to recirculate air mode to prevent such harmful elements from entering the cabin. The A/C amplifier detects cabin temperature based on a room temperature sensor signal and automatically switches the air inlet mode to recirculate air mode to prevent the cabin temperature from becoming too high. The A/C amplifier detects the outside temperature based on an ambient temperature sensor signal and automatically switches the air inlet mode to fresh air mode to prevent the windshield from fogging up. NOTE: The smog ventilation sensor cannot detect elements such as the smoke from a bonfire or factory exhaust, foul or animal odors, and dirt or dust particles. Therefore, the air inlet mode is not switched automatically in accordance with those elements.
  4. MODE POSITION AND DAMPER OPERATION Mode Position and Damper Operation FUNCTIONS OF MAIN DAMPERS Control Damper Operation Position Damper Position Operation Air Inlet Control Damper FRESH A Allows fresh air to enter. RECIRCULATION B Causes internal air to recirculate. Air Mix Control Damper MAX COLD to MAX HOT Temperature Setting C - D Varies the mixture ratio of warm air and cool air in order to regulate the temperature continuously between hot and cold. Air Outlet Control Damper DEF E, K, N, R, U Defrosts the windshield through the center defroster, side defroster and side registers. FOOT/DEF F, K, N, Q, S Defrosts the windshield through the center defroster, side defrosters, side registers, and rear center register ducts, while air is also blown out from the front and rear footwell register ducts. FOOT G, K, N, Q, S Air blows out of the front and rear footwell register ducts, and side registers. In addition, air blows out slightly from the center defroster and side defrosters. BI-LEVEL H, J, M, P, T Air blows out of the front and rear center register, side register and front and rear footwell register ducts. FACE H, I, L, O, U Air blows out of the front center register, rear center register, and side register ducts.
  5. AIR OUTLETS AND AIRFLOW VOLUME Air Outlets and Airflow Volume Indication Mode FACE FOOT DEF CTR SIDE RR FR RR F A B C D E FACE B/L FOOT F/D DEF The size of each circle o indicates the ratio of airflow volume.
  6. A/C COMPRESSOR General: The A/C compressor is a continuously variable capacity type in which its capacity can be varied in accordance with the cooling load of the air conditioning system. The A/C compressor consists of a pulley, shaft, lug plate, swash plate, piston, shoe, crank chamber, cylinder, A/C lock sensor, solenoid control valve with built-in Crank chamber to Suction passage (CS) valve, A/C mass flow sensor, oil separator and variable suction side throttle. The A/C pulley with built-in magnetic clutch has an A/C lock sensor that detects whether the A/C compressor is locked. A solenoid valve is provided to enable the suction pressure to be controlled as desired. The Crank chamber to Suction passage (CS) valve, built into the solenoid control valve, operates in accordance with the suction pressure. The oil separator is installed in the refrigerant passage to separate A/C compressor oil from the refrigerant that is discharged. This helps to prevent the A/C compressor oil from flowing into the air conditioning system and reducing cooling effectiveness. Solenoid Valve Operation: The crank chamber is connected to the suction passage. A solenoid valve is provided between the suction passage (low pressure) and the discharge passage (high pressure). The solenoid valve operates under duty cycle control in accordance with the signals from A/C amplifier. When the solenoid valve closes (solenoid coil is energized), a difference in pressure is created and the pressure in the crank chamber decreases. Then, the pressure that is applied to the right side of the piston becomes greater than the pressure that is applied to the left side of the piston. This compresses the spring and tilts the swash plate. As a result, the piston stroke increases and the discharge capacity also increases. When the solenoid valve opens (solenoid coil is not energized), the difference in pressure disappears. Then, the pressure that is applied to the left side of the piston becomes the same as the pressure that is applied to the right side of the piston. Thus, the spring elongates and eliminates the tilt of the swash plate. As a result, there is no piston stroke, and the discharge capacity is reduced. CS Valve Operation: The CS valve consists of passage A and passage B. If the vehicle is left parked for a long period, refrigerant may accumulate in the crank chamber due to the heat capacity difference. The solenoid control valve is controlled by the A/C amplifier. While the A/C compressor is operating, the solenoid control valve pushes down the CS valve rod and open passage A. Under the above condition, only if the refrigerant accumulates in the crank chamber, the crank chamber pressure will become high. As a result, the bellows will contract because of the pressure difference with its internal pressure (vacuum), and opens passage B. This causes the accumulated refrigerant to be drawn in via passage A and B, clearing the accumulated refrigerant earlier and ensuring a more immediate cooling effect.
  7. A/C MASS FLOW SENSOR The A/C mass flow sensor, which is mounted on the A/C compressor, is used to detect the amount of refrigerant flow. The A/C mass flow sensor converts the amount of refrigerant flow that is detected to a voltage value to send it to the A/C amplifier. The voltage value sent from the A/C mass flow sensor changes depending on the amount of refrigerant flow. As the amount of refrigerant flow becomes larger, the voltage becomes lower. As the amount of refrigerant flow becomes smaller, the voltage becomes higher. The A/C amplifier supplies 5 V to the A/C mass flow sensor and monitors changes in the voltage value sent from the A/C mass flow sensor. The A/C amplifier then sends a signal to the ECM via CAN communication to allow the ECM to control the engine speed while the air conditioning is on.
  8. A/C LOCK SENSOR The A/C lock sensor sends A/C pulley speed signals to the A/C amplifier. The A/C amplifier determines whether the A/C compressor is locked or not by using those signals and engine speed signals.
  9. EVAPORATOR TEMPERATURE SENSOR The evaporator temperature sensor detects the temperature of the cool air immediately through the evaporator in the form of resistance changes, and outputs it to the A/C amplifier.
  10. BLOWER MOTOR The blower motor has a built-in blower controller, and is controlled using duty control performed by the A/C amplifier.
  11. BUS CONNECTOR (AIR CONDITIONING HARNESS) A bus connector is used for the wire harness connection that connects each servo motor to the A/C amplifier. Each bus connector has a built-in communication/driver IC which communicates with each servo motor connector, actuates the servo motor, and has a position detection function. This enables bus communication for the servo motor wire harness, for a more lightweight construction and a reduced number of wires.
  12. SERVO MOTOR The pulse pattern type servo motor consists of a printed circuit board and a servo motor. The printed circuit board has three contact points, and can transmit two ON-OFF signals to the A/C amplifier based on the difference of the pulse phases. The bus connector can detect the damper position and movement direction with these signals.
  13. ROOM TEMPERATURE SENSOR The room temperature sensor detects the cabin temperature based on changes in the resistance of its built-in thermistor and sends a signal to the A/C amplifier.
  14. AMBIENT TEMPERATURE SENSOR The ambient temperature sensor detects the outside temperature based on changes in the resistance of its built-in thermistor and sends a signal to the A/C amplifier.
  15. SOLAR SENSOR The solar sensor consists of a photo diode, two amplifier circuits for the solar sensor, and frequency converter circuit for the light control sensor. The solar sensor detects (in the form of changes in the current that flows through the built-in photo diode) the changes in the amount of sunlight from the LH and RH sides (2 directions) and outputs these sunlight strength signals to the A/C amplifier.
  16. A/C PRESSURE SENSOR The A/C pressure sensor detects the refrigerant pressure and outputs it to the A/C amplifier in the form of voltage changes.
  17. MEMORY CALL CONTROL Memory call control memorizes the air conditioning system settings together with the ID code of the key that is being used. When a key with memory is used to unlock the door, the driver door is opened and the engine switch is turned on (IG), the memorized air conditioning system settings will be recalled. The certification ECU (smart key ECU) will recognize the key during the unlock operation by reading the registered ID code. Using this control, the air conditioning system setting preference that corresponds to each key can be memorized, enhancing usability. The following air conditioning system settings can be memorized: Setting Condition A/C Switch On or Off AUTO Switch On or Off Temperature Setting Driver Side LO, 16 to 30°C (61 to 86°F) or HI Front Passenger Side LO, 16 to 30°C (61 to 86°F) or HI Blower Fan Speed Level 1 to 7 Air Inlet Mode Fresh or Recirculate Air Outlet Mode Face, Bi-Level, Foot, Foot/Defroster or Defroster DUAL Switch On or Off HINT: Memory call control can be cancelled or re-enabled using the Techstream. When a new key is added, key ID code registration is necessary. Refer to «REGISTRATION [03/2012 - ]»(ref-602709-S05223484982014030500000) .

REGISTRATION [03/2012 - ]

  1. KEY REGISTRATION Turn the engine switch off. Connect the Techstream to the DLC3. Turn the engine switch on (IG). Enter the following menus: Smart Key / Access / Utility / Driver Information Registration. According to the Techstream display, perform registration.

CUSTOMIZE PARAMETERS [03/2012 - ]

  1. CUSTOMIZING FUNCTION WITH TECHSTREAM HINT: The following items can be customized. NOTE: When the customer requests a change in a function, first make sure that the function can be customized. Be sure to make a note of the current settings before customizing. When troubleshooting a function, first make sure that the function is set to the default setting. Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Body Electrical / Air Conditioner / Utility / Customize. Select the setting by referring to the table below. AIR CONDITIONER Display (Item) Default Content Setting Set Temperature Shift Normal Function to control with the shifted temperature against the displayed temperature -2C, -1C, Normal, +1C, +2C Evaporator Control Automatic Function to set the evaporator control to the automatic position (AUTO) to save power, or to the coldest position (MANUAL) to dehumidify air and to prevent the windows from fogging up Automatic or Manual Air Inlet Mode*2 Automatic In case of turning the A/C on to cool the cabin down quickly, this is the function to change the mode automatically to RECIRCULATION mode Automatic or Manual Compressor Mode Automatic Function to automatically turn the A/C on by pressing the AUTO button when blower is on and the A/C is off Automatic or Manual Foot/DEF Auto Mode ON Function to automatically turn the airflow to FOOT/DEF on when AUTO mode is on ON or OFF Foot/DEF Automatic Blow Up Function ON Function to automatically increase the blower level when the defroster is on ON or OFF Emission Gas Sensor Shift*1 Normal Function to change the sensitivity of the smog ventilation sensor Much Less, Less, Little Less, Normal, Little More, More, Much More ECO MODE Cancel OFF Function to cancel the ECO mode drive when item is on. OFF or ON *1: w/ Smog Ventilation Sensor *2: for Korea
  2. CUSTOMIZING FUNCTION WITH MULTI-DISPLAY HINT: The items in the table below can be customized. NOTE: When the customer requests a change in a function, first make sure that the function can be customized. Be sure to make a note of the current setting before customizing. When troubleshooting a function, first make sure that the function is set to the default setting. Customizing with the multi-display Turn the engine switch on (IG). Enter the following menus: MENU / Setup / Vehicle / Vehicle Settings / Climate Settings. Select the setting by referring to the table below. Display Default Content Setting Relevant ECU Smog Sensor Sensitivity*1 0 Function to change the sensitivity of the smog ventilation sensor -3, -2, -1, 0, +1, +2, +3 Air conditioning amplifier assembly Auto A/C Mode On Function to automatically turn the A/C on by pressing the AUTO button when blower is on and the A/C is off On or Off Air conditioning amplifier assembly Efficient Ventilation Mode*2 On In case of turning the A/C on to cool the cabin down quickly, this is the function to change the mode automatically to RECIRCULATION mode On or Off Air conditioning amplifier assembly *1: w/ Smog Ventilation Sensor *2: for Korea