ZK600256AA00
Camshaft position sensing cylinder
Camshaft position sensing cylinder
Vane
Vane
Magnetic resistance element
Magnetic resistance element
Magnet flux
Magnet flux
The camshaft position sensor uses a magnetic resistance
element. When the vane of the camshaft position-sensing
cylinder passes the front surface of the magnetic resistance
element, the flux from the magnet passes the magnetic
resistance element. Thus, the resistance of the magnetic
resistance element increases. When the vane of the camshaft
position-sensing cylinder does not pass the front surface of the
magnetic resistance element, the flux from the magnet does not
pass to magnetic resistance element and resistance decreases.
The camshaft position sensor converts this change in resistance
of the magnetic resistance element to a 5 V pulse signal and
outputs the signal to ECM.
ZK603921
5V
5V
AA01
Camshaft position sensor
ECM
Output signal
Magnetic resistance element
KNOCK SENSOR
ZK600258 AA00
Piezoelectric element
A knock sensor is installed on the cylinder block (both right bank
gide and left bank side). Knock sensor uses the piezo electric
element to convert the vibration of the cylinder block generated
when engine is in operation to minute voltage that is output to
ECM. ECM uses the minute output voltage from the knock
sensor filtered through the cylinder block's natural frequency to
detect knocking, and compensates the ignition timing lag
according to the strength of the knocking.
/7.6+2146(7'.5;56'//(+
#
5'0514
Summary of Contents for Outlander 2007
Page 16: ... 4172 0 0 106 065 0 4 5 4 26 10 5 0 0 ...
Page 33: ... 4172 0 0 7 4 6 10 106 065 0 4 0 14 6 10 1 2 55 1 27 2 1 6 4 1 2 0 ...
Page 40: ...Control System Diagram 7 6 2146 7 5 56 0 4 0 14 6 10 ...
Page 99: ... 4172 7 5722 106 065 0 4 0 14 6 10 7 6 0 ...
Page 104: ...MEMO 7 5722 ...
Page 105: ... 4172 0 0 11 0 106 065 0 4 0 14 6 10 9 6 4 2 55 9 6 4 27 2 ...
Page 108: ...MEMO 0 0 11 0 ...
Page 109: ... 4172 06 0 756 106 065 4 06 5 56 4 7 6 0 4 0 4 06 0 1 756 5 56 756 0 1 756 2 2 0 7 4 ...
Page 114: ...MEMO 06 0 756 ...
Page 115: ... 4172 C 56 46 0 5 56 106 065 56 46 4 1614 C C ...
Page 117: ... 4172 D 4 0 5 56 106 065 6 40 614 D D ...
Page 119: ... 4172 E 0 6 10 5 56 106 065 0 6 10 1 E 52 4 2 7 E E ...
Page 121: ... 4172 C 0 0 10641 106 065 0 4 0 14 6 10 C C ...
Page 123: ... 4172 D 761 47 5 10641 5 56 106 065 0 4 0 14 6 10 D 105647 6 10 0 12 4 6 10 D D ...
Page 140: ...MEMO E 55 10 10641 ...
Page 181: ... 4172 2412 4 5 6 106 065 0 4 0 14 6 10 ...
Page 183: ... 4172 4106 106 065 0 4 0 14 6 10 ...
Page 186: ...MEMO 4106 ...
Page 207: ... 4172 9 0 6 4 106 065 0 4 0 14 6 10 6 4 24 5574 10 614 0 5 56 62 5 ...
Page 209: ... 4172 219 4 2 06 1706 106 065 0 4 0 14 6 10 ...
Page 212: ... 4172 4106 5752 05 10 106 065 0 4 0 14 6 10 ...
Page 215: ...MEMO 4106 5752 05 10 ...
Page 216: ... 4172 4 4 5752 05 10 106 065 0 4 0 14 6 10 ...
Page 220: ... 4172 5 4 5 56 106 065 0 4 105647 6 10 5 4 26 10 56 4 0 4 4 1156 4 4 2 5 4 ...
Page 227: ...N o Item Contents Rounded integral value 5 4 5 56 105647 6 10 5 4 26 10 ...
Page 228: ... 4172 174 9 06 1 4 5 56 5 106 065 0 4 0 14 6 10 105647 6 10 5 4 26 10 5 0514 EVWCVQT 5 7 ...
Page 266: ... 4172 2 4 0 4 5 106 065 0 4 0 14 6 10 ...
Page 276: ...13 1 GROUP 13 FUEL CONTENTS MULTIPORT FUEL INJECTION MFI 13A FUEL SUPPLY 13B ...
Page 300: ...MEMO 1 ...
Page 372: ...MEMO 06 4 14 ...
Page 396: ...MEMO 5722 06 4 564 06 5 56 545 ...
Page 432: ...MEMO 55 5 64 ...
Page 443: ... 4172 1 06 4 100 6 0 6914 0 106 065 0 4 0 14 6 10 5647 674 5 56 12 4 6 10 ...
Page 448: ...MEMO 1 06 4 100 6 0 6914 0 ...
Page 450: ... 4172 10641 4 4 0 6914 0 106 065 0 4 0 14 6 10 5647 674 5 56 12 4 6 10 5 015 5 0 75 0156 5 ...
Page 457: ...MEMO 10641 4 4 0 6914 0 ...
Page 469: ...MEMO 6 4 4 10 6 10 0 0 8 06 6 10 ...