Page 897 of 2189
E position
The flow of fluid up to the drive pulley, the driven pulley' and the clutch reducing valve is the same as in E position'
Clutch reducing pressure (CR) t'"*" i" ii" start clut;h control valve, the manual valve, and the shift control valve' and is
intercepted bY those valves.
Under ihis condition, hydraulic pressure is not applied to the clutches and reverse braKe'
fr - --l
4t1.1 , 1'rltll
(cont'd)
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Page 898 of 2189

Description
Hydraulic Flow (cont'd)
lll position, when th€ electronic control system is fauhy.
when the electronic control svstem (linear solenoids and sensors) is faulty, the transmission uses the pitot pipe pressure(PP) to 311o- rh" u"hicle to drive.
when all linear solenoids and sensors are off because of a faulty electronrc control system, clutch reducing pressure (cR)flows to the start clutch control valve, the manual valve, the PH-PL control valve, and the shift control valve. clutch reduc-ing pressure (cR) becomes shift varve pressure (sV) at the shift contror varve, and shift varve pressure {sv) is appried tothe left end of the shift valve and the right end of the shift inhibitor valve. The shift valve moves to the right side. anduncovers the pon that leads high pressure (PH) to the drive pulley and uncovers the po.t tlr"t r""1" ro,,"-pressure (pL) tothe driven pulley At this time, the pulley ratio is high, The shift inhibitor valve moves to the left side, and uncovers theport that leads shift inhibitor pressure (Sll to the pitot lubrication pipe and the pitot regulator valve. tne prtot lubricationpipe discharges fluid inside of the pitot flange, and discharged fluid enters into the pitot pipe and it is applied to the leftend of the pitot regulator valve. The pitot regulator valve moves lo the right side, and uncovers the port that leads pitotregulator pressure (PR) to the shift inhibitor valve. Pitot regulator pressure {pR) becomes start clutch pressure {sc1 at theshift inhibitor valve, and is applied to the stan clutch. The stan clutch rs engaged. The forward clutch pressure (FWD) isapplied to the forward crutch, and the forward crutch is engaged. This alows the vehicre to drive.
NOTE: When used. "|eft" or ,,right', indicates direction on the hydraulic circuit.
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I.
Page 899 of 2189
E] position, when the elestronic Gontrol system is faulty'
The flow of tluid up to the drive pulley, the driven pulley' and the start clutch is the same as in El position
The manual valve is shifted into the lE position' and it uncovers the port that leads reverse brake pressure {RVS} to the
reverse inhibitor valve. Reverse ,"nlu-i,"ip*r""i" (Rl) is applied to.the right end of the reverse inhibitor valve because of
afaultyinhibitorsolenoid.The'"t'",""inftiUito'valvemovestotheleftside'anduncoverstheportthatleadsreverse
brake pressure {RVS) to the ,"u"r." ir"t"- cru,ch reducing pressure (cR) becomes reverse brake pressure (RVS) at the
manual valve, and,lows to the ,e
"rs" lr"re. ttre reverse brake is engaged and locks the ring gear' This allows the vehi-
cle to drive in reverse.
NOTE: When used, "left" or "right" indicates direction on the hydraulic circuit'
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Page 900 of 2189
Description
Park Mechanism
The park mechanism locks the transmission by engaging the park pawl with the park gear which is integral with the sec-ondary drive gear' The secondary drive gear engages with the secondary driven gear which engages wit-h the final drivengear.
shifting to E position causes the park cone (installed at the end of the park rod) to press the park pawl onto the park gear.Even if the end of the park pawl rides on the top of the park gear teeth, slight movement of the vehicle will cause the parkpawl and the park gear to mesh with each other completely because the park cone receives the tension from the park rodspring The park pawl receives the tension (which acts to separate the park pawl from the park gear) from the park pawlspring.
PARK PAWI-
PARK CONE
START CLUTCH
PABK GEAR
PARK RODPARK PAWL
PARK ROOSPRING
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D
Page 901 of 2189
Component Locations
36 - 98 Models
BRAKE SWITCH
DRIVEN PULLEYSPEED SENSOR
INHIBITOR SOLENOID
ENGINE CONTROLMODULE IECMI
SECONDARY GEAR SHAFTSPEEO SENSOR
AUTOMATIC TRANSAXLE (A/T}GEAR POSITION SWITCI{
MANIFOLD ABSOLUTE
VEHICLE SPEEO SENSOR{vss}
IMAPI SENSOR
THROTTI.I POSITION {TPISENSOR
PH.PL CONTROLLINEAR SOLENOID
/i/ i,' / ,','4
,i/:1
t"--.---.- i,,
-_,-:-_a.--:
il
START CLUTCH CONTROLLINEAR SOLENOIDPULLEY
SHIFT CONTROLLINEAR SOLENOTD
$r,
14-224
h
SPEED SENSOR
Page 902 of 2189
'99 - 00 Models
CONTROL
AUTOMATIC TRANSAXLE IA/TI
GEAR POS]TION SW]TCH
MANIFOLD ABSOLUTESECONDANY GEAR SHAFT
SPEED SENSORIMAPI SENSOR
VEHICLE SPEED SENSOR
tvss)
THROTTLE POS]TION ITP)SENSOR
PH.PL CONTBOLLINEAB SOLENOIO
DNVEN PUL]-EY
SPEED SENSOR
START CLUTCH CONTROL
PULLEY
SHIFT CONTROLLINEAR SOLENOIO
LINEAR SOIENOID
SPEED SENSOR
14-225
Page 903 of 2189
TCM Circuit Diagram ('96 - 98 Modelsl
UNDEN. HOOD FUSE]RELAY BOX
UNDER OASHFUSE/RELAY 80X
No. 52 1l5A)
No.4l l80A) No.47 (7.5A)
To t 2v lG1sToP sw T HBR( sw- - rur
A/T GEAR POSITIONINDICATOR
IGNITION COIL
Y
I
i
I
IBI-U
rsl
PARKINGBRAKEswrTcH
V
I
I
I
I
IGRN/REO
,t, I
l
I
IGnN,4,vHT
LT GRN
ELKi BI-U
RED
GRN/BLK
NoTEi if :ro 5V
T :To t2v
cRN ---l F----- GnN
Bru -J F------ 61U
8LK
II
Tl
G401G404
,o IJ'^A'
14-226
Page 904 of 2189
WHT/RED ELUMHTGRYPNK
B6B7B2O LB5
|
'i-
*l
L'
tl
-Pt-BLK
I
I-
G 101
Lli:"
+.
ilBRN/BLK
rNHrBlT0R ISOLENOID I
In-:
G 101
wHT I wHT qED I PNUSLK I PNK,BLU 1 G8N/YEL J GRN/BLK
T T T T T T T T T T T -.T-. TI cnN I nro,wHr BLKMHT I GRN{WHT-...1_... YFt -_..1_.-. BLUIEL^^.,1,.
nroieru -- wirr J wxitnro I eruxialr I PNKiBLU I GBN,^vEt J GRNiBIK
_L,r_r_rLrll'r-- -T' T -T -r T -T- -T- T
I I I I | | c*Hl**t I 'i' I sLU'i^'Hr II I | | | | pr'rxisLr I PNK7BLU I GBN/YEI I GRN/BIK
lllllltllll
dstg@@@le]
SFiYbtt"','J- 3FIYE,',X!b'J SEigY#I SBniho, 8i0ft 3il[ip' T5PEE'sENsoR !8[$fo,o !'$,'Afl]: !'8$nlo'o l
TCM Teflnlnal Locations
X><
235710'112567810
141720252614171820,/1,/
TCM-A (26P)ConnertorTCM -B l22P)Connedor
14-227