Information injection-pump assembly
BOSCH
9 460 614 100
9460614100
ZEXEL
104700-9021
1047009021

Rating:
Components :
0. | INJECTION-PUMP ASSEMBLY | 104700-9021 |
1. | _ | |
2. | FUEL INJECTION PUMP | 104600-9021 |
3. | NUMBER PLATE | |
4. | _ | |
5. | CAPSULE | |
6. | ADJUSTING DEVICE | |
7. | NOZZLE AND HOLDER ASSY | |
8. | Nozzle and Holder | |
9. | Open Pre:MPa(Kqf/cm2) | |
10. | NOZZLE-HOLDER | |
11. | NOZZLE |
Scheme ###:
1/6. | [1] | 146601-0700 | PACKING RING |
6. | [1] | 146100-0120 | SUPPLY PUMP |
9. | [1] | 148103-0400 | COVER |
10. | [2] | 139104-0000 | FLAT-HEAD SCREW |
12. | [1] | 148200-0520 | DRIVE SHAFT |
12/3. | [1] | 146201-0000 | WOODRUFF KEY |
17. | [1] | 146204-0000 | PLAIN WASHER |
20. | [1] | 148210-0120 | ROLLER SET |
24. | [1] | 146303-0000 | BEARING PIN |
25. | [1] | 146304-0000 | BEARING PIN |
26. | [1] | 146305-0000 | CLAMPING BAND |
27. | [1] | 146205-0000 | SLOTTED WASHER |
29. | [1] | 146220-4320 | CAM PLATE |
30. | [1] | 146600-0800 | O-RING |
31. | [1] | 146300-1900 | PUMP PLUNGER |
32. | [1] | 146301-0000 | SLIDING PIECE |
33. | [1] | 146603-1100 | SHIM D17.5&7.5T1.20 |
34. | [1] | 146306-1800 | COMPRESSION SPRING |
34B. | [1] | 146306-2100 | COMPRESSION SPRING |
35/1. | [0] | 146603-0700 | SHIM D17.5&7.5T0.60 |
35/1. | [0] | 146603-0800 | SHIM D17.5&7.5T0.70 |
35/1. | [0] | 146603-0900 | SHIM D17.5&7.5T0.90 |
35/1. | [0] | 146603-1000 | SHIM D17.5&7.5T1.00 |
35/1. | [0] | 146603-1100 | SHIM D17.5&7.5T1.20 |
35/1. | [0] | 146603-3600 | SHIM D17.5&7.5T2.40 |
36. | [1] | 146600-0800 | O-RING |
37. | [1] | 479773-9921 | TIMER PISTON SENSOR |
38. | [2] | 010206-2040 | HEX-SOCKET-HEAD CAP SCREW |
39. | [1] | 146310-0100 | COVER |
40. | [2] | 146620-5000 | BLEEDER SCREW |
43. | [1] | 146230-0000 | SHIM |
44. | [1] | 146230-0100 | PLAIN WASHER |
45. | [1] | 146231-0001 | SLOTTED WASHER |
47. | [2] | 146233-0000 | SLOTTED WASHER |
48/1. | [1] | 146603-0000 | SHIM D17.0&5.2T0.50 |
48/1. | [1] | 146603-0100 | SHIM D17.0&5.2T0.80 |
48/1. | [1] | 146603-0200 | SHIM D17.0&5.2T1.00 |
48/1. | [1] | 146603-0300 | SHIM D17.0&5.2T1.20 |
48/1. | [1] | 146603-0400 | SHIM D17.0&5.2T1.50 |
48/1. | [1] | 146603-0500 | SHIM D17.0&5.2T1.80 |
48/1. | [1] | 146603-0600 | SHIM D17.0&5.2T2.00 |
48/1. | [1] | 146690-1400 | SHIM D17&5.2T0.9 |
48/1. | [1] | 146690-1500 | SHIM D17&5.2T1.1 |
48/1. | [1] | 146690-1600 | SHIM D17&5.2T1.3 |
48/1. | [1] | 146690-1700 | SHIM D17&5.2T1.4 |
48/1. | [1] | 146690-1800 | SHIM D17&5.2T1.6 |
48/1. | [1] | 146690-1900 | SHIM D17&5.2T1.7 |
48/1. | [1] | 146690-5800 | SHIM D17&5.2T2.1 |
48/1. | [1] | 146690-5900 | SHIM D17&5.2T2.2 |
48/1. | [1] | 146690-6000 | SHIM D17&5.2T2.3 |
48/1. | [1] | 146690-6100 | SHIM D17&5.2T2.4 |
48/1. | [1] | 146690-6200 | SHIM D17&5.2T2.5 |
48/1. | [1] | 146690-6300 | SHIM D17&5.2T2.6 |
48/1. | [1] | 146690-6400 | SHIM D17&5.2T2.7 |
48/1. | [1] | 146690-6500 | SHIM D17&5.2T2.8 |
48/1. | [1] | 146690-6600 | SHIM D17&5.2T2.9 |
48/1. | [1] | 146690-6700 | SHIM D17&5.2T3.0 |
48/1. | [1] | 146690-6800 | SHIM D17&5.2T3.1 |
48/1. | [1] | 146690-6900 | SHIM D17&5.2T3.2 |
48/1. | [1] | 146690-7000 | SHIM D17&5.2T3.3 |
48/1. | [1] | 146690-7100 | SHIM D17&5.2T3.4 |
48/1. | [1] | 146690-7200 | SHIM D17&5.2T0.4 |
48/1. | [1] | 146690-7300 | SHIM D17&5.2T0.6 |
48/1. | [1] | 146690-7400 | SHIM D17&5.2T0.7 |
48/1. | [1] | 146690-7500 | SHIM D17&5.2T1.9 |
48/1. | [1] | 146690-7800 | SHIM D17&5.2T0.2 |
49. | [2] | 146234-0600 | GUIDE PIN |
50. | [1] | 146403-8720 | HYDRAULIC HEAD |
50. | [1] | 146403-8720 | HYDRAULIC HEAD |
50. | [1] | 146403-8720 | HYDRAULIC HEAD |
51. | [1] | 146600-0000 | O-RING |
52/1. | [1] | 146420-0000 | SHIM D9.5&3.0T1.90 |
52/1. | [1] | 146420-0100 | SHIM D9.5&3.0T1.92 |
52/1. | [1] | 146420-0200 | SHIM D9.5&3.0T1.94 |
52/1. | [1] | 146420-0300 | SHIM D9.5&3.0T1.96 |
52/1. | [1] | 146420-0400 | SHIM D9.5&3.0T1.98 |
52/1. | [1] | 146420-0500 | SHIM D9.5&3.0T2.00 |
52/1. | [1] | 146420-0600 | SHIM D9.5&3.0T2.02 |
52/1. | [1] | 146420-0700 | SHIM D9.5&3.0T2.04 |
52/1. | [1] | 146420-0800 | SHIM D9.5&3.0T2.06 |
52/1. | [1] | 146420-0900 | SHIM D9.5&3.0T2.08 |
52/1. | [1] | 146420-1000 | SHIM D9.5&3.0T2.10 |
52/1. | [1] | 146420-1100 | SHIM D9.5&3.0T2.12 |
52/1. | [1] | 146420-1200 | SHIM D9.5&3.0T2.14 |
52/1. | [1] | 146420-1300 | SHIM D9.5&3.0T2.16 |
52/1. | [1] | 146420-1400 | SHIM D9.5&3.0T2.18 |
52/1. | [1] | 146420-1500 | SHIM D9.5&3.0T2.20 |
52/1. | [1] | 146420-1600 | SHIM D9.5&3.0T2.22 |
52/1. | [1] | 146420-1700 | SHIM D9.5&3.0T2.24 |
52/1. | [1] | 146420-1800 | SHIM D9.5&3.0T2.26 |
52/1. | [1] | 146420-1900 | SHIM D9.5&3.0T2.28 |
52/1. | [1] | 146420-2000 | SHIM D9.5&3.0T2.30 |
52/1. | [1] | 146420-2100 | SHIM D9.5&3.0T2.32 |
52/1. | [1] | 146420-2200 | SHIM D9.5&3.0T2.34 |
52/1. | [1] | 146420-2300 | SHIM D9.5&3.0T2.36 |
52/1. | [1] | 146420-2400 | SHIM D9.5&3.0T2.38 |
52/1. | [1] | 146420-2500 | SHIM D9.5&3.0T2.40 |
52/1. | [1] | 146420-2600 | SHIM D9.5&3.0T2.42 |
52/1. | [1] | 146420-2700 | SHIM D9.5&3.0T2.44 |
52/1. | [1] | 146420-2800 | SHIM D9.5&3.0T2.46 |
52/1. | [1] | 146420-2900 | SHIM D9.5&3.0T2.48 |
52/1. | [1] | 146420-3000 | SHIM D9.5&3.0T2.50 |
52/1. | [1] | 146420-3100 | SHIM D9.5&3.0T2.52 |
52/1. | [1] | 146420-3200 | SHIM D9.5&3.0T2.54 |
52/1. | [1] | 146420-3300 | SHIM D9.5&3.0T2.56 |
52/1. | [1] | 146420-3400 | SHIM D9.5&3.0T2.58 |
52/1. | [1] | 146420-3500 | SHIM D9.5&3.0T2.60 |
52/1. | [1] | 146420-3600 | SHIM D9.5&3.0T2.62 |
52/1. | [1] | 146420-3700 | SHIM D9.5&3.0T2.64 |
52/1. | [1] | 146420-3800 | SHIM D9.5&3.0T2.66 |
52/1. | [1] | 146420-3900 | SHIM D9.5&3.0T2.68 |
52/1. | [1] | 146420-4000 | SHIM D9.5&3.0T2.70 |
52/1. | [1] | 146420-4100 | SHIM D9.5&3.0T2.72 |
52/1. | [1] | 146420-4200 | SHIM D9.5&3.0T2.74 |
52/1. | [1] | 146420-4300 | SHIM D9.5&3.0T2.76 |
52/1. | [1] | 146420-4400 | SHIM D9.5&3.0T2.78 |
52/1. | [1] | 146420-4500 | SHIM D9.5&3.0T2.80 |
52/1. | [1] | 146420-4600 | SHIM D9.5&3.0T2.82 |
52/1. | [1] | 146420-4700 | SHIM D9.5&3.0T2.84 |
52/1. | [1] | 146420-4800 | SHIM D9.5&3.0T2.86 |
52/1. | [1] | 146420-4900 | SHIM D9.5&3.0T2.88 |
52/1. | [1] | 146420-5000 | SHIM D9.5&3.0T2.90 |
52/1. | [1] | 146420-5100 | SHIM D9.5&3.0T1.74 |
52/1. | [1] | 146420-5200 | SHIM D9.5&3.0T1.76 |
52/1. | [1] | 146420-5300 | SHIM D9.5&3.0T1.78 |
52/1. | [1] | 146420-5400 | SHIM D9.5&3.0T1.80 |
52/1. | [1] | 146420-5500 | SHIM D9.5&3.0T1.82 |
52/1. | [1] | 146420-5600 | SHIM D9.5&3.0T1.84 |
52/1. | [1] | 146420-5700 | SHIM D9.5&3.0T1.86 |
52/1. | [1] | 146420-5800 | SHIM D9.5&3.0T1.88 |
54. | [4] | 146433-0100 | GASKET D12&6.4T1.00 |
55. | [4] | 146430-0320 | DELIVERY-VALVE ASSEMBLY |
56. | [4] | 146432-0800 | COMPRESSION SPRING |
58. | [4] | 146440-0120 | FITTING |
60. | [3] | 139106-0100 | FLAT-HEAD SCREW |
123. | [1] | 146620-8800 | FLAT-HEAD SCREW |
130. | [1] | 146421-1020 | CAPSULE |
130/2. | [1] | 139508-0200 | GASKET D11.4&8.2T1 |
130/3. | [1] | 146422-0300 | BLEEDER SCREW |
130/4. | [1] | 146600-0500 | O-RING |
133. | [1] | 146600-0600 | O-RING |
134. | [1] | 146600-0700 | O-RING |
135. | [1] | 146110-3220 | CONTROL VALVE |
135/5. | [1] | 146114-0000 | SPRING WASHER |
136. | [1] | 148120-0020 | OVER FLOW VALVE |
137. | [3] | 139512-0500 | GASKET |
138. | [1] | 146669-5820 | INLET UNION |
158. | [1] | 146614-6900 | SPACER BUSHING |
200. | [1] | 146206-0100 | COILED SPRING |
205. | [1] | 029470-4030 | WOODRUFF KEY |
206. | [1] | 013021-2140 | UNION NUT M12P1.75H10 |
207. | [1] | 014111-2440 | LOCKING WASHER D21.5&12.2T3 |
230. | [1] | 148613-4620 | BRACKET |
236. | [1] | 146620-2700 | HEX-SOCKET-HEAD CAP SCREW |
237. | [1] | 146620-0200 | HEX-SOCKET-HEAD CAP SCREW |
240. | [1] | 146688-0120 | PULLING ELECTROMAGNET |
240/8. | [1] | 146600-1700 | O-RING |
243. | [1] | 146621-1000 | UNION NUT |
245. | [3] | 139512-0500 | GASKET |
246. | [1] | 146125-0600 | EYE BOLT |
247. | [1] | 146669-6820 | INLET UNION |
248. | [1] | 146614-0200 | SPACER BUSHING |
275. | [1] | 148612-1400 | BRACKET |
276. | [2] | 010010-2840 | BLEEDER SCREW |
278. | [2] | 146616-8500 | SPACER BUSHING |
282. | [1] | 139006-4400 | BLEEDER SCREW |
504/1. | [1] | 146649-4500 | RESISTER |
504/1. | [1] | 146649-4600 | RESISTER |
504/1. | [1] | 146649-4700 | RESISTER |
504/1. | [1] | 146649-4800 | RESISTER |
504/1. | [1] | 146649-4900 | RESISTER |
504/1. | [1] | 146649-5000 | RESISTER |
504/1. | [1] | 146649-5100 | RESISTER |
504/1. | [1] | 146649-5200 | RESISTER |
504/1. | [1] | 146649-5300 | RESISTER |
504/1. | [1] | 146649-5400 | RESISTER |
504/1. | [1] | 146649-5500 | RESISTER |
504/1. | [1] | 146649-5600 | RESISTER |
504/1. | [1] | 146649-5700 | RESISTER |
505. | [1] | 148530-3020 | GOVERNOR;ELECTRIC |
506. | [3] | 146620-8900 | FLAT-HEAD SCREW |
515. | [1] | 106144-1070 | TIMING CONTROL VALVE |
515/8. | [1] | 161440-3800 | O-RING |
515/9. | [1] | 161440-3700 | O-RING |
516. | [2] | 010206-1440 | HEX-SOCKET-HEAD CAP SCREW M6P1L14 |
531. | [1] | 479765-3020 | PULSE GENERATOR |
531/6. | [1] | 479773-6500 | O-RING |
800S. | [1] | 148009-0620 | PUMP HOUSING |
800S/1/6. | [1] | 146601-0700 | PACKING RING |
804S. | [1] | 146232-0720 | COMPRESSION SPRING |
810S. | [1] | 146600-4620 | REPAIR SET |
821S. | [1] | 146210-5720 | ROLLER SET |
878S. | [1] | 148600-1300 | SEAL RING |
906. | [1] | 148643-0000 | NAMEPLATE |
Include in #2:
104700-9021
as INJECTION-PUMP ASSEMBLY
Cross reference number
BOSCH
9 460 614 100
9460614100
ZEXEL
104700-9021
1047009021
Zexel num
Bosch num
Firm num
Name
Calibration Data:
Adjustment conditions
Test oil
1404 Test oil ISO4113orSAEJ967d
1404 Test oil ISO4113orSAEJ967d
Test oil temperature
degC
45
45
50
Nozzle
105780-0060
Bosch type code
NP-DN0SD1510
Nozzle holder
105780-2150
Opening pressure
MPa
13
13
13.3
Opening pressure
kgf/cm2
133
133
136
Injection pipe
157805-7320
Injection pipe
Inside diameter - outside diameter - length (mm) mm 2-6-450
Inside diameter - outside diameter - length (mm) mm 2-6-450
Joint assembly
157641-4720
Tube assembly
157641-4020
Transfer pump pressure
kPa
20
20
20
Transfer pump pressure
kgf/cm2
0.2
0.2
0.2
Direction of rotation (viewed from drive side)
Right R
Right R
Governor adjustment
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Pump chamber pressure
kPa
598.5
569
628
Pump chamber pressure
kgf/cm2
6.1
5.8
6.4
Basic
*
Governor adjustment_02
Pump speed
r/min
100
100
100
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Pump chamber pressure
kPa
294
294
Pump chamber pressure
kgf/cm2
3
3
Governor adjustment_03
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Pump chamber pressure
kPa
598.5
559
638
Pump chamber pressure
kgf/cm2
6.1
5.7
6.5
Governor adjustment_04
Pump speed
r/min
2000
2000
2000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Pump chamber pressure
kPa
736
687
785
Pump chamber pressure
kgf/cm2
7.5
7
8
Boost compensator adjustment
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
7.7
7.5
7.9
Basic
*
Boost compensator adjustment_02
Pump speed
r/min
100
100
100
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
1.8
0.3
3.3
Boost compensator adjustment_03
Pump speed
r/min
350
350
350
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
5.2
3.1
7.3
Boost compensator adjustment_04
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
7.7
7.4
8
Boost compensator adjustment_05
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
70
70
70
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
4
1.9
6.1
Boost compensator adjustment_06
Pump speed
r/min
2000
2000
2000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
9.75
9.3
10.2
Boost compensator adjustment_07
Pump speed
r/min
2000
2000
2000
TCV duty (%) F TCV 60Hz
%
0
0
0
U alpha soll
V
2.7
2.7
2.7
Timer stroke
mm
0
0
0
Timer adjustment
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
0
0
0
U alpha soll
V
2.7
2.7
2.7
Vtps
V
0.51
0.382
0.638
Basic
*
Timer adjustment_02
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
0
0
0
U alpha soll
V
2.7
2.7
2.7
Vtps
V
0.51
0.382
0.638
Timer adjustment_03
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Vtps
V
1.925
1.702
2.148
Speed control lever angle
Pump speed
r/min
1000
1000
1000
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Overflow quantity
cm3/min
550
420
680
0000000901
Pump speed
r/min
1250
1250
1250
U alpha soll + dU alpha soll
V
2.73
2.73
2.73
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
63.3
62.8
63.8
Difference in delivery
mm3/st.
3.5
Basic
*
_02
Pump speed
r/min
375
375
375
U alpha soll + dU alpha soll
V
1.81
1.81
1.81
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
7.3
4.3
10.3
Difference in delivery
mm3/st.
2.5
Basic
*
Remarks
Confirmation of difference in delivery
Confirmation of difference in delivery
_03
Pump speed
r/min
2300
2300
2300
U alpha soll + dU alpha soll
V
1.81
1.81
1.81
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
19.4
16.9
21.9
Difference in delivery
mm3/st.
5.5
Basic
*
Remarks
Confirmation of difference in delivery
Confirmation of difference in delivery
_04
Pump speed
r/min
100
100
100
U alpha soll + dU alpha soll
V
2.9
2.9
2.9
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
50.3
40.3
60.3
_05
Pump speed
r/min
375
375
375
U alpha soll + dU alpha soll
V
1.81
1.81
1.81
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
7.3
4.3
10.3
_06
Pump speed
r/min
500
500
500
U alpha soll + dU alpha soll
V
2.59
2.59
2.59
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
51.8
49.3
54.3
_07
Pump speed
r/min
750
750
750
U alpha soll + dU alpha soll
V
2.71
2.71
2.71
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
60.2
57.7
62.7
_08
Pump speed
r/min
1250
1250
1250
U alpha soll + dU alpha soll
V
2.1
2.1
2.1
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
29
24
34
_09
Pump speed
r/min
1250
1250
1250
U alpha soll + dU alpha soll
V
2.5
2.5
2.5
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
49.8
44.8
54.8
_10
Pump speed
r/min
1250
1250
1250
U alpha soll + dU alpha soll
V
2.73
2.73
2.73
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
63.3
62.3
64.3
_11
Pump speed
r/min
1900
1900
1900
U alpha soll + dU alpha soll
V
2.56
2.56
2.56
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
53.2
50.7
55.7
_12
Pump speed
r/min
2300
2300
2300
U alpha soll + dU alpha soll
V
1.81
1.81
1.81
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
19.4
16.9
21.9
_13
Pump speed
r/min
2450
2450
2450
U alpha soll + dU alpha soll
V
1
1
1
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
mm3/st.
3
Stop lever angle
Pump speed
r/min
1900
1900
1900
U alpha soll + dU alpha soll
V
2.56
2.56
2.56
TCV duty (%) F TCV 60Hz
%
100
100
100
Average injection quantity
cm3/min
0
0
0
0000001101
Pump speed
r/min
200
200
200
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.7
2.7
2.7
Speed output
N=Measure the actual speed. r/min N+-8
N=Measure the actual speed. r/min N+-8
0000001201
Pump speed
r/min
1250
1250
1250
TCV duty (%) F TCV 60Hz
%
100
100
100
U alpha soll
V
2.73
2.73
2.73
Temperature output
Measure T = actual output temperature degC T+-5
Measure T = actual output temperature degC T+-5
0000001301
Max. applied voltage
V
8
8
8
Test voltage
V
13
12
14
0000001401
K dimension
mm
3.3
3.2
3.4
KF dimension
mm
5.9
5.8
6
Pre-stroke
mm
0.1
0.08
0.12
Test data Ex:
Injection timing adjustment Comp. resistor/voltage

Compensation resistance/compensation voltage comparison
A = Compensation resistor number
B= Compensation resistance
C = Compensation voltage delta U alpha soll
----------
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0000001601 HARNESS & CONNECTOR

TCV connector assembly specification
(1)Ensure the GE cable is not twisted at section A.
(2)Refer to the figure for the direction of connector clip B.
(3)Route the TCV harness in the direction indicated by the arrows in the figure and install the connector C.
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----------
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0000001701 HARNESS & CONNECTOR

Connector and binder assembly specification
(1)For D's connector, adjust the position of the protective tube to L1 and install.
(2)Assemble the connectors and clips in the order A, B, C, D, E, F, G and H.
(3)Fix the GE cable and the FCV cable using the binder C.
(4)Clip the GE cable, the F.C.V., the T.P.S. P/U and the T.P.S harnesses using clip H.
A:Push type clip
B:F.C.V. harness
C:Clip (be careful of installation direction)
D:G.E. Connector
E:Q adjustment connector
F:P/U Connector
G:T.P.S. Connector
H:Binder
I:Protective tube
----------
----------
L1=15+-5mm
----------
----------
L1=15+-5mm
Information:
Procedure
Note: Prior to performing the analysis with the APC, be sure to read and understand all the interferences listed in the "Interferences Inherent In the Fuel Sample" section of this document. Ensure that all precautions have been taken to minimize the affect of skewed results due to improper sampling, handling, or preparation.
Obtain the fuel sample to be analyzed in an appropriate sample bottle as described in the "Fuel Sample Preparation" section. Manually or mechanically shake the sample vigorously for 30 seconds. When manually shaking a sample, ensure thorough mixing of the sample by turning the bottle so that the lid is facing downward. Shake by moving the wrist and/or forearm up and down as rapidly as is comfortable for the 30 seconds.Note: Degassing samples can be accomplished with either the use of an ultrasonic bath or with the use of a vacuum pump.
Immediately degas the sample, by partially opening the lid to the bottle and placing the sample upright in the degassing unit. Perform only one of the degassing methods. An ultrasonic bath is the best method for degassing a sample. An ultrasonic bath takes the least amount of time minimizing the impact of particle settling.Note: The purpose of partially unscrewing or opening the lid is to promote quick degassing of the sample. Air bubbles to remaining near the surface of the sample following the degassing process are acceptable.
Illustration 5 g01741117
If an ultrasonic bath is unavailable, an alternative method of degassing the sample is with the use of a 1U-5718 Oil Sampling Vacuum Pump. Ensure the 1U-5718 Oil Sampling Vacuum Pump is clean before beginning the degas process.Note: Rubber is to be placed over the hole of the tubing for the pump to develop and hold the required vacuum.
With the sample to be analyzed in the sample bottle, thread the bottle into the bottom of the 1U-5718 Oil Sampling Vacuum Group. Operate the pump to create a vacuum. Maintain the vacuum until all air bubbles have risen to the surface of the sample and dissipated.
If an ultrasonic bath or a vacuum pump is not available, the sample can degas naturally. Degas the sample by setting the sample on a flat surface and leaving the sample undisturbed. If the APC performs a flushing cycle, let the sample sit for 15 seconds. If the APC does not perform a flushing cycle, such as the 293-8413 HYDAC Contamination Monitor Group or the 383-4255 HYDAC Contamination Monitor Group, let the sample sit for 30 seconds. Proceed to the "Sample Processing" section.Sample Processing
Remove the lid from the sample bottle. Immediately begin the processing of the sample on the APC that has been prepared according to the "Fuel Sample Preparation" section.Note: If more than 45 seconds elapse after the shaking of the sample, the procedure shall be restarted with shaking of the sample in "Fuel Sample Preparation" section. Shaking the sample ensures that suspended particles do not settle to the bottom of the sample, causing inaccurate particle count results.
Obtain the particle count results
Note: Prior to performing the analysis with the APC, be sure to read and understand all the interferences listed in the "Interferences Inherent In the Fuel Sample" section of this document. Ensure that all precautions have been taken to minimize the affect of skewed results due to improper sampling, handling, or preparation.
Obtain the fuel sample to be analyzed in an appropriate sample bottle as described in the "Fuel Sample Preparation" section. Manually or mechanically shake the sample vigorously for 30 seconds. When manually shaking a sample, ensure thorough mixing of the sample by turning the bottle so that the lid is facing downward. Shake by moving the wrist and/or forearm up and down as rapidly as is comfortable for the 30 seconds.Note: Degassing samples can be accomplished with either the use of an ultrasonic bath or with the use of a vacuum pump.
Immediately degas the sample, by partially opening the lid to the bottle and placing the sample upright in the degassing unit. Perform only one of the degassing methods. An ultrasonic bath is the best method for degassing a sample. An ultrasonic bath takes the least amount of time minimizing the impact of particle settling.Note: The purpose of partially unscrewing or opening the lid is to promote quick degassing of the sample. Air bubbles to remaining near the surface of the sample following the degassing process are acceptable.
Illustration 5 g01741117
If an ultrasonic bath is unavailable, an alternative method of degassing the sample is with the use of a 1U-5718 Oil Sampling Vacuum Pump. Ensure the 1U-5718 Oil Sampling Vacuum Pump is clean before beginning the degas process.Note: Rubber is to be placed over the hole of the tubing for the pump to develop and hold the required vacuum.
With the sample to be analyzed in the sample bottle, thread the bottle into the bottom of the 1U-5718 Oil Sampling Vacuum Group. Operate the pump to create a vacuum. Maintain the vacuum until all air bubbles have risen to the surface of the sample and dissipated.
If an ultrasonic bath or a vacuum pump is not available, the sample can degas naturally. Degas the sample by setting the sample on a flat surface and leaving the sample undisturbed. If the APC performs a flushing cycle, let the sample sit for 15 seconds. If the APC does not perform a flushing cycle, such as the 293-8413 HYDAC Contamination Monitor Group or the 383-4255 HYDAC Contamination Monitor Group, let the sample sit for 30 seconds. Proceed to the "Sample Processing" section.Sample Processing
Remove the lid from the sample bottle. Immediately begin the processing of the sample on the APC that has been prepared according to the "Fuel Sample Preparation" section.Note: If more than 45 seconds elapse after the shaking of the sample, the procedure shall be restarted with shaking of the sample in "Fuel Sample Preparation" section. Shaking the sample ensures that suspended particles do not settle to the bottom of the sample, causing inaccurate particle count results.
Obtain the particle count results