5B9407 HOSE Caterpillar parts
375, 375 L, 5080, 773B, 773D, 773E, 775B, 973, 980G, 988B, AP-1200
Rating:
Alternative (cross code) number:
CA5B9407
5B-9407
5B9407
CA5B9407
5B-9407
5B9407
Weight: 0.15 pounds 0 kg.
Information:
ID
34.92
mm
ASPHALT PAVER, WHEEL LOADER,
Compatible equipment models: 5B9407:
Information:
All EnginesSUPPLEMENT: 01/20/86SERVICE MAGAZINE, OCTOBER 28, 1985, PAGE 5, "COMPARISON OF FUEL TIMING TOLERANCES FOR FIELD SETTINGS".Add a note to this article that it does not apply to 3500 or 3600 Series Engines because they have unit fuel injectors. None of the three timing methods discussed in the article is used on these engines. Also, in the third line of the section, "Tolerances For All 3406B Engines", replace the word "tolerance" with "advance".
--------------- END SUPPLEMENT ---------------Reference: "Engine Information Plate Contains More Data; Use Of Performance Specifications" in this same issue. This topic applies to any engine with any type of Caterpillar fuel system. Fuel timing can be done by pin timing on the engine, fuel flow timing, or engine dynamic timing. Each of the three methods will result in a slightly different timing setting. This can be confusing to dealers and users, particularly if the fuel system parts are excessively worn. For example, you can expect a 2° difference between the static fuel flow setting method and engine dynamic timing with excessively worn parts.
Engines such as D353, D379, D398 and D399 Engines, that have had lifter settings adjusted on the engine, can be timed very accurately with the pin method. However, if the lifters are worn, the fuel flow method is more accurate. But, since worn lifters usually mean wear in the plunger scroll area, engine dynamic timing is really the best of the three methods. This method accounts for wear in all the fuel system parts. This may be the reason for possibly a 2° variation between the static fuel flow setting method and engine dynamic timing method.
In order to allow for the expected tolerances on fuel system parts with little or no wear, the following timing tolerances are to be used in place of previous tolerances in the field: ... Pin timing. This is changed from 1° to 2°, which is usually equal to one-half of the diameter of the timing bolt hole depending on engine model. Note this change in the Service Manual Specifications. Pin timing is recommended only to install the injection pump housing on the engine, although in some cases, it can provide acceptable complete engine timing.... Static fuel flow method. This tolerance remains 1°. Change the Testing and Adjustment Module where stated otherwise in the Service Manuals.... Dynamic (engine running) fuel timing method using the 6V3100 Timing Indicator Group. This tolerance is now 1.5°. This is due to the various tolerances from flywheels, flywheel housings, etc. which the indicator uses as part of its measurement. Refer to Special Instruction SEHS7742-03 and note this change on Page 21 under the topic "Timing Tolerances". Add this also to the Testing and Adjusting Module for the Service Manual on 3406B Engines.... For all engines except those with a full load rpm of 1200 or less, do not measure dynamic timing below 1000 rpm. Unstable readings are often obtained below 1000 rpm. Presently, the OT Microfiche on fuel settings shows fuel timing
--------------- END SUPPLEMENT ---------------Reference: "Engine Information Plate Contains More Data; Use Of Performance Specifications" in this same issue. This topic applies to any engine with any type of Caterpillar fuel system. Fuel timing can be done by pin timing on the engine, fuel flow timing, or engine dynamic timing. Each of the three methods will result in a slightly different timing setting. This can be confusing to dealers and users, particularly if the fuel system parts are excessively worn. For example, you can expect a 2° difference between the static fuel flow setting method and engine dynamic timing with excessively worn parts.
Engines such as D353, D379, D398 and D399 Engines, that have had lifter settings adjusted on the engine, can be timed very accurately with the pin method. However, if the lifters are worn, the fuel flow method is more accurate. But, since worn lifters usually mean wear in the plunger scroll area, engine dynamic timing is really the best of the three methods. This method accounts for wear in all the fuel system parts. This may be the reason for possibly a 2° variation between the static fuel flow setting method and engine dynamic timing method.
In order to allow for the expected tolerances on fuel system parts with little or no wear, the following timing tolerances are to be used in place of previous tolerances in the field: ... Pin timing. This is changed from 1° to 2°, which is usually equal to one-half of the diameter of the timing bolt hole depending on engine model. Note this change in the Service Manual Specifications. Pin timing is recommended only to install the injection pump housing on the engine, although in some cases, it can provide acceptable complete engine timing.... Static fuel flow method. This tolerance remains 1°. Change the Testing and Adjustment Module where stated otherwise in the Service Manuals.... Dynamic (engine running) fuel timing method using the 6V3100 Timing Indicator Group. This tolerance is now 1.5°. This is due to the various tolerances from flywheels, flywheel housings, etc. which the indicator uses as part of its measurement. Refer to Special Instruction SEHS7742-03 and note this change on Page 21 under the topic "Timing Tolerances". Add this also to the Testing and Adjusting Module for the Service Manual on 3406B Engines.... For all engines except those with a full load rpm of 1200 or less, do not measure dynamic timing below 1000 rpm. Unstable readings are often obtained below 1000 rpm. Presently, the OT Microfiche on fuel settings shows fuel timing
Caterpillar parts catalog:
Parts hose Caterpillar catalog:
7E8630
HOSE-AIR INLET
16M, 3176B, 3176C, 3196, 3406E, 3456, 345B, 345B II, 345B II MH, 345B L, 345C, 345C L, 345C MH, 345D, 345D L, 345D L VG, 349D, 349D L, 385C, 525C, 535C, 545C, 621B, 621G, 621H, 621K, 623G, 623H, 623K ...
16M, 3176B, 3176C, 3196, 3406E, 3456, 345B, 345B II, 345B II MH, 345B L, 345C, 345C L, 345C MH, 345D, 345D L, 345D L VG, 349D, 349D L, 385C, 525C, 535C, 545C, 621B, 621G, 621H, 621K, 623G, 623H, 623K ...
5P1442
HOSE
120B, 120G, 120H, 120H ES, 120H NA, 120M, 120M 2, 12G, 12M, 12M 2, 12M 3, 12M 3 AWD, 130G, 135H NA, 140B, 140G, 140M, 140M 2, 140M 3, 140M 3 AWD, 14G, 14M, 160M, 160M 2, 160M 3, 160M 3 AWD, 16M, 215, ...
120B, 120G, 120H, 120H ES, 120H NA, 120M, 120M 2, 12G, 12M, 12M 2, 12M 3, 12M 3 AWD, 130G, 135H NA, 140B, 140G, 140M, 140M 2, 140M 3, 140M 3 AWD, 14G, 14M, 160M, 160M 2, 160M 3, 160M 3 AWD, 16M, 215, ...
5P1506
HOSE
3114, 3116, 3176, 3176B, 330 L, 3304, 3306, 3406, 3408, 3412, 3412C, 350, 375, 414E, 416B, 416C, 416D, 416E, 420D, 420E, 422E, 424D, 426B, 426C, 428B, 428C, 428D, 428E, 430D, 430E, 432D, 432E, 434E, 4...
3114, 3116, 3176, 3176B, 330 L, 3304, 3306, 3406, 3408, 3412, 3412C, 350, 375, 414E, 416B, 416C, 416D, 416E, 420D, 420E, 422E, 424D, 426B, 426C, 428B, 428C, 428D, 428E, 430D, 430E, 432D, 432E, 434E, 4...
9L5158
HOSE AS-END
1674, 16G, 245, 3306C, 3406, 3406B, 3406E, 3408, 3408C, 3456, 3508, 3508B, 3512, 3512B, 3516, 3516B, 578, 583R, 587R, 589, 621B, 65C, 768C, 769C, 771C, 824C, 834B, 836, 980C, 988B, 988F, CG137-12, D44...
1674, 16G, 245, 3306C, 3406, 3406B, 3406E, 3408, 3408C, 3456, 3508, 3508B, 3512, 3512B, 3516, 3516B, 578, 583R, 587R, 589, 621B, 65C, 768C, 769C, 771C, 824C, 834B, 836, 980C, 988B, 988F, CG137-12, D44...
1901669
HOSE AS
120H, 120M, 12H, 12M, 135H, 140H, 140K, 140M, 143H, 14H, 160H, 160K, 160M, 163H, 16H, 16M, 301.6C, 302.5, 302.5C, 303.5, 304.5, 3304B, 3306, 3306B, 3406C, 3406E, 3408E, 3412, 3412C, 3412E, 350, 3508, ...
120H, 120M, 12H, 12M, 135H, 140H, 140K, 140M, 143H, 14H, 160H, 160K, 160M, 163H, 16H, 16M, 301.6C, 302.5, 302.5C, 303.5, 304.5, 3304B, 3306, 3306B, 3406C, 3406E, 3408E, 3412, 3412C, 3412E, 350, 3508, ...
7D7509
HOSE AS
3512, 768B, 769, 772, 772B, 773B, 773D, 775B, 775D
3512, 768B, 769, 772, 772B, 773B, 773D, 775B, 775D
9L6958
HOSE AS
245, 3406, 3406B, 3406C, 3408, 3408C, 3412, 3412C, 375, 375 L, 5080, 988B, D44B, D550B, SCT673, SPS342, SPT342
245, 3406, 3406B, 3406C, 3408, 3408C, 3412, 3412C, 375, 375 L, 5080, 988B, D44B, D550B, SCT673, SPS342, SPT342
9N5279
HOSE AS
16G, 16H NA, 3176, 3176B, 3176C, 3196, 3406, 3406B, 3406C, 375, 375 L, 5080, 824G, 825G, 826C, 826G, 834B, 836, 980G, 988B, 988F, C-10, C-12, PM-565
16G, 16H NA, 3176, 3176B, 3176C, 3196, 3406, 3406B, 3406C, 375, 375 L, 5080, 824G, 825G, 826C, 826G, 834B, 836, 980G, 988B, 988F, C-10, C-12, PM-565
1221608
HOSE AS
318C, 319C, 550, 550B, 560B, 570, 570B, 580, 580B, 963B, 973
318C, 319C, 550, 550B, 560B, 570, 570B, 580, 580B, 963B, 973
6Y3407
HOSE AS
773B, 773D, 773E, 775D, 775E, D9R, PM-465
773B, 773D, 773E, 775D, 775E, D9R, PM-465
1357911
HOSE AS
773D, 773E, 773F, 775D, 775E, 775F
773D, 773E, 773F, 775D, 775E, 775F
6I6901
HOSE AS
320C, 375, 375 L, 5080
320C, 375, 375 L, 5080
8G9606
HOSE
973
973
4J2538
HOSE
172, D9G
172, D9G
1190115
HOSE - 24 in. (610 mm) VALVE TO T, CR
527, 561M, D5H, D5M, D5N, D6H, D6M, D6R, D6R II, D6T
527, 561M, D5H, D5M, D5N, D6H, D6M, D6R, D6R II, D6T
1186332
HOSE - VALVE TO GAUGE PORT
515, 525, 527, 561M, D5H, D5M, D6H, D6M
515, 525, 527, 561M, D5H, D5M, D6H, D6M