Information governor
BOSCH
F 019 Z9E 719
f019z9e719
ZEXEL
105401-1281
1054011281

Rating:
Scheme ###:
1. | [1] | 154004-7620 | GOVERNOR HOUSING |
2. | [1] | 154007-2900 | CAPSULE |
3. | [1] | 154390-2000 | GASKET |
4. | [1] | 154064-4500 | COVER |
5. | [4] | 020006-1640 | BLEEDER SCREW M6P1L16 4T |
6. | [1] | 154007-0200 | ADAPTOR |
7. | [1] | 020018-1840 | BLEEDER SCREW M8P1.25L18 |
8. | [1] | 029632-5070 | O-RING |
9. | [1] | 154350-1800 | PLATE |
10. | [5] | 029010-6810 | BLEEDER SCREW |
11. | [1] | 020106-1640 | BLEEDER SCREW M6P1.0L14 |
12. | [1] | 154010-0100 | FLAT-HEAD SCREW |
13. | [2] | 154011-0100 | HEXAGON NUT |
13. | [2] | 154011-0100 | HEXAGON NUT |
16. | [1] | 155004-5300 | LEVER SHAFT |
18. | [1] | 155003-2620 | CONTROL LEVER |
19. | [1] | 155006-0700 | BLEEDER SCREW |
20/1. | [0] | 139408-1000 | SHIM D16&8T0.5 |
20/1. | [0] | 139408-1300 | SHIM D16&8T0.2 |
20/1. | [0] | 139408-1300 | SHIM D16&8T0.2 |
23. | [1] | 159238-4200 | LOCKING WASHER |
24. | [2] | 154206-5200 | BUSHING |
25. | [1] | 154328-1400 | COILED SPRING |
25B. | [1] | 154328-1500 | COILED SPRING |
26. | [1] | 154382-7200 | CONTROL LEVER |
26B. | [1] | 154382-5800 | PLATE |
27. | [2] | 014110-8440 | LOCKING WASHER |
27. | [2] | 014110-8440 | LOCKING WASHER |
28. | [2] | 013020-8040 | UNION NUT M8P1.25H7 |
28. | [2] | 013020-8040 | UNION NUT M8P1.25H7 |
29. | [2] | 154375-8900 | PLAIN WASHER |
29B. | [0] | 139408-1400 | SHIM |
29C. | [0] | 139408-1500 | SHIM |
30. | [2] | 029620-8050 | PACKING RING |
30. | [2] | 029620-8050 | PACKING RING |
35. | [1] | 154022-6020 | GOVERNOR COVER |
38. | [1] | 154031-4800 | FLAT-HEAD SCREW |
39. | [1] | 139208-0400 | UNION NUT |
47. | [1] | 154036-1200 | CAPSULE |
51. | [1] | 139006-7100 | BLEEDER SCREW |
51B. | [4] | 020106-5040 | BLEEDER SCREW |
52. | [1] | 020106-5040 | BLEEDER SCREW |
53. | [1] | 154010-0100 | FLAT-HEAD SCREW |
65. | [1] | 155404-5120 | STOPPING DEVICE |
66. | [1] | 026518-2240 | GASKET D21.9&18.2T1 |
80. | [1] | 154063-9020 | COVER |
82. | [2] | 029020-6210 | BLEEDER SCREW |
83. | [2] | 020006-1640 | BLEEDER SCREW M6P1L16 4T |
100. | [1] | 154101-0020 | FLYWEIGHT ASSEMBLY |
101. | [1] | 025803-1610 | WOODRUFF KEY |
102. | [1] | 029321-2020 | LOCKING WASHER |
103. | [1] | 029231-2030 | UNION NUT |
117. | [1] | 154123-2320 | SLIDING PIECE |
118/1. | [0] | 029311-0010 | SHIM D14&10.1T0.2 |
118/1. | [0] | 029311-0180 | SHIM D14&10.1T0.3 |
118/1. | [0] | 029311-0190 | SHIM D14&10.1T0.40 |
118/1. | [0] | 029311-0210 | SHIM D14&10.1T1 |
118/1. | [0] | 139410-0000 | SHIM D14.0&10.1T0.5 |
118/1. | [0] | 139410-0100 | SHIM D14.0&10.1T1.5 |
118/1. | [0] | 139410-3000 | SHIM D14&10.1T2.0 |
118/1. | [0] | 139410-3100 | SHIM D14&10.1T3.0 |
118/1. | [0] | 139410-3200 | SHIM D14&10.1T4.0 |
132. | [1] | 154154-0800 | COILED SPRING |
135. | [1] | 154158-1320 | HEADLESS SCREW |
136. | [1] | 029201-2290 | UNION NUT |
137. | [2] | 026512-1540 | GASKET D15.4&12.2T1.50 |
138. | [1] | 154159-1200 | CAP NUT |
140. | [1] | 154177-0520 | HEADLESS SCREW |
141. | [1] | 029201-6010 | UNION NUT |
150. | [1] | 154200-7020 | SWIVELLING LEVER |
151. | [1] | 154204-4300 | BUSHING |
152. | [2] | 029631-8020 | O-RING |
152. | [2] | 029631-8020 | O-RING |
153. | [2] | 016010-1640 | LOCKING WASHER |
153. | [2] | 016010-1640 | LOCKING WASHER |
154. | [1] | 139611-0000 | PACKING RING |
155. | [1] | 139411-0000 | SHIM |
156. | [0] | 029311-1070 | SHIM D16&11T0.5 |
157. | [1] | 154204-4400 | BUSHING |
159. | [1] | 025803-1310 | WOODRUFF KEY |
160. | [1] | 154206-2800 | BUSHING |
161. | [0] | 154206-0200 | PLAIN WASHER D19.5&11.2T1.0 |
170. | [1] | 154217-2920 | FORK LEVER |
171. | [1] | 016010-0540 | LOCKING WASHER |
172. | [3] | 029310-5170 | SHIM D8&5.3T0.5 |
172. | [3] | 029310-5170 | SHIM D8&5.3T0.5 |
173. | [2] | 025520-1210 | SPLIT PIN |
173. | [2] | 025520-1210 | SPLIT PIN |
174. | [1] | 154235-4720 | STRAP |
175. | [1] | 154232-3100 | CONNECTOR |
176. | [1] | 154222-5800 | BEARING PIN |
177. | [1] | 155402-3800 | SAFETY PIN |
181. | [1] | 154239-2220 | TENSIONING LEVER |
182. | [1] | 154237-1100 | BEARING PIN |
190. | [1] | 154343-9021 | CONTROL LEVER |
236. | [1] | 154390-1300 | GASKET |
237. | [1] | 154390-0300 | GASKET |
238. | [1] | 029635-2020 | O-RING |
255. | [1] | 154400-7820 | DIAPHRAGM |
256. | [1] | 154400-4800 | STOP PIN |
257. | [2] | 029330-8050 | GASKET |
257. | [2] | 029330-8050 | GASKET |
258. | [1] | 139308-0700 | LOCKING WASHER |
259. | [1] | 013030-6040 | UNION NUT M6P1H3.6 |
260. | [1] | 154401-3620 | CONTROL LEVER |
261. | [1] | 154401-1320 | STRAP |
262. | [1] | 026510-1440 | GASKET D13.9&10.2T1 |
263. | [1] | 154401-2100 | BLEEDER SCREW |
264. | [1] | 016010-0540 | LOCKING WASHER |
265. | [1] | 154222-6200 | BEARING PIN |
266. | [1] | 029300-4010 | PLAIN WASHER |
267. | [1] | 154403-1400 | COILED SPRING |
268. | [1] | 154404-5000 | COVER |
269. | [2] | 020106-2540 | BLEEDER SCREW M6P1L25 |
270. | [1] | 154034-1900 | FLAT-HEAD SCREW |
271. | [1] | 013030-6040 | UNION NUT M6P1H3.6 |
273. | [1] | 029731-0180 | EYE BOLT |
274. | [2] | 026510-1340 | GASKET D13.4&10.2T1 |
275. | [0] | 029312-0180 | SHIM D25.5&20T0.5 |
275B. | [0] | 029312-0210 | SHIM D25.5&20T0.2 |
276. | [1] | 154035-1900 | CAP NUT |
277. | [1] | 014110-6440 | LOCKING WASHER |
278. | [2] | 154413-2600 | GASKET |
278. | [2] | 154413-2600 | GASKET |
279. | [2] | 026506-1040 | GASKET D9.9&6.2T1 |
283. | [1] | 016010-0440 | LOCKING WASHER |
285. | [1] | 029010-6310 | BLEEDER SCREW |
300. | [1] | 154359-1320 | BRACKET |
301. | [1] | 020118-1640 | BLEEDER SCREW |
303. | [1] | 154011-1100 | UNION NUT |
304. | [1] | 029300-8320 | SHIM |
335. | [2] | 026508-1140 | GASKET D11.4&8.2T1 |
336. | [1] | 154035-2000 | CAP NUT |
353. | [4] | 029310-9080 | SHIM D16&9T1.7 |
400. | [1] | 154375-9420 | BRACKET |
401. | [1] | 020006-1240 | BLEEDER SCREW M6P1L12 4T |
Cross reference number
Zexel num
Bosch num
Firm num
Name
Information:
Electronic Controls
The electronic controller consists of two main components: the Electronic Control Module (ECM) and the Personality Module. The ECM is the computer which controls the PEEC engine. The Personality Module is the software which controls how the computer behaves. The two must be used together: neither can do anything by itself.Rack Controls
The rack mechanism on a PEEC III engine is very similar to a mechanical 3406B engine. The fuel injection pump is nearly identical; the rack is moved by a servo valve which receives oil pressure from the fuel injection pump. However, the PEEC III servo spool is moved by a solenoid or (BTM) rather than by a linkage controlled by flyweights and springs.PEEC III comes up with a "desired rpm" based on the throttle position, vehicle speed, customer specified parameters, and certain diagnostic codes. The PEEC III governor tries to maintain the desired rpm by sensing actual engine speed using the engine speed sensor, then controlling the rack to achieve the desired rpm. To move the rack, PEEC III adjusts the voltage to the rack solenoid (BTM) to increase rack. More voltage results in more rack. PEEC III knows how far the rack went by reading the rack position sensor. PEEC III increases the voltage to the rack solenoid until it senses the rack is in the desired position. PEEC III sets certain limits on rack motion. "FRC Rack" is a rack limit based on fuel-air ratio control, for emissions purposes. It works similar to a mechanical engine FRC; when PEEC III senses a higher boost pressure (more air into cylinder), it increases the FRC Rack limit, which allows more fuel into the cylinder. "Rated Rack" is a rack limit based on horsepower of the engine. It is similar to the rack stops and torque springs on a mechanical engine. It provides horsepower and torque curves for a specific engine family and rating. All of these limits are programmed by the factory into the personality module.Timing Advance Controls
The timing advance mechanism is the same as the 3406B mechanical engine, except the Timing solenoid (BTM), instead of the flyweights, controls timing advance. PEEC III adjusts voltage to the timing solenoid to change timing advance. More voltage results in more timing advance. PEEC III knows how much advance was achieved by reading the timing position sensor. PEEC III simply increases voltage to the timing solenoid until it senses that the timing advance is in the desired position. Programmable Parameters
Certain parameters that affect PEEC III 3406B Diesel Engine operation may be changed with electronic service tools (either the ECAP or DDT). The parameters are stored in the ECM, and are protected from unauthorized changes by passwords.These parameters are either "System Configuration Parameters" or "Customer Parameters". System Configuration Parameters are those that effect horsepower family or emissions. Customer Parameters are those that affect cruise control, vehicle speed limits, progressive shifting, horsepower rating within a family, and PTO operation.Some parameters may affect engine operation in ways a driver does not expect
The electronic controller consists of two main components: the Electronic Control Module (ECM) and the Personality Module. The ECM is the computer which controls the PEEC engine. The Personality Module is the software which controls how the computer behaves. The two must be used together: neither can do anything by itself.Rack Controls
The rack mechanism on a PEEC III engine is very similar to a mechanical 3406B engine. The fuel injection pump is nearly identical; the rack is moved by a servo valve which receives oil pressure from the fuel injection pump. However, the PEEC III servo spool is moved by a solenoid or (BTM) rather than by a linkage controlled by flyweights and springs.PEEC III comes up with a "desired rpm" based on the throttle position, vehicle speed, customer specified parameters, and certain diagnostic codes. The PEEC III governor tries to maintain the desired rpm by sensing actual engine speed using the engine speed sensor, then controlling the rack to achieve the desired rpm. To move the rack, PEEC III adjusts the voltage to the rack solenoid (BTM) to increase rack. More voltage results in more rack. PEEC III knows how far the rack went by reading the rack position sensor. PEEC III increases the voltage to the rack solenoid until it senses the rack is in the desired position. PEEC III sets certain limits on rack motion. "FRC Rack" is a rack limit based on fuel-air ratio control, for emissions purposes. It works similar to a mechanical engine FRC; when PEEC III senses a higher boost pressure (more air into cylinder), it increases the FRC Rack limit, which allows more fuel into the cylinder. "Rated Rack" is a rack limit based on horsepower of the engine. It is similar to the rack stops and torque springs on a mechanical engine. It provides horsepower and torque curves for a specific engine family and rating. All of these limits are programmed by the factory into the personality module.Timing Advance Controls
The timing advance mechanism is the same as the 3406B mechanical engine, except the Timing solenoid (BTM), instead of the flyweights, controls timing advance. PEEC III adjusts voltage to the timing solenoid to change timing advance. More voltage results in more timing advance. PEEC III knows how much advance was achieved by reading the timing position sensor. PEEC III simply increases voltage to the timing solenoid until it senses that the timing advance is in the desired position. Programmable Parameters
Certain parameters that affect PEEC III 3406B Diesel Engine operation may be changed with electronic service tools (either the ECAP or DDT). The parameters are stored in the ECM, and are protected from unauthorized changes by passwords.These parameters are either "System Configuration Parameters" or "Customer Parameters". System Configuration Parameters are those that effect horsepower family or emissions. Customer Parameters are those that affect cruise control, vehicle speed limits, progressive shifting, horsepower rating within a family, and PTO operation.Some parameters may affect engine operation in ways a driver does not expect