1537881 TOOTH GP-UNI Caterpillar parts
302.2D, 302.4D, 302.5, 302.5C, 302.7D, 303, 303.5, 303.5C, 303.5D, 303.5E, 303C CR, 303E CR, 304, 304D CR, 304E, 305, BH150, BH27
Rating:
Alternative (cross code) number:
CA1537881
153-7881
1537881
CA1537881
153-7881
1537881
BACKHOE, MINI HYD EXCAVATOR,
Compatible equipment models: 1537881:
Information:
Introduction
The AccuGrade TM system is designed for earth moving equipment in the construction application. The system can be used with a wide variety of sensors in order to provide information. The information that is provided can assist the operator in order to maintain machine bucket control according to the site plan.Conventional Systems
Conventional systems provide elevation or slope control. Conventional systems continually measure the offset between a reference surface and the cutting edge of the machine. This measured offset is compared against a design offset that has been entered into the system. If the measured offsets and the design offsets differ, the AccuGrade system will inform the operator that the cutting edge is not at the desired location.Conventional systems do not provide a horizontal position. Therefore, the following items are not used in a conventional system: design files, background maps and avoidance zones.Global Navigation Satellite System (GLONASS)
Newer GPS receivers will be able to receive data from the Global Navigation Satellite System (GLONASS). GLONASS consists of twenty-one (21) satellites in three orbital planes. There are three spare "on-orbit" satellites. The three orbital planes are separated by 120 degrees. The satellites that are within the same orbit plane are separated by 45 degrees. Each satellite completes one orbit in approximately 11 hours and 15 minutes. The position of the satellites and the time for one orbit allows more GPS satellites to be used for the machine position solution.Low Accuracy Corrected GPS Satellite Based Augmentation System (SBAS)
If low accuracy GPS positions are adequate for the required job site work, then you can use "Satellite-Based Augmentation Systems" (SBAS) error corrections. SBAS corrected systems do not require additional site infrastructure. SBAS are free-to-air GPS correction services. SBAS networks consist of ground stations that are set at known positions around the world and geostationary satellites that maintain a fixed position above the Earth. The ground stations receive GPS signals from all GPS satellites that are in view. The GPS data is then sent to a master control site, which then transmits GPS corrections to the geostationary satellites. The satellites broadcast the information to all SBAS enabled GPS receivers. The following SBAS networks are currently available:
WAAS – Wide Area Augmentation System is used in the United States.
EGNOS – European Geostationary Navigation Overlay Service is used in Europe. For more information, refer to the Operation and Maintenance Manual, SEBU8501, "Product Information". The information is located in the section under the subtitle "General Information".
MSAS – Multi-Functional Satellite Augmentation System is used in Japan.Global Positioning System (GPS)
The GPS uses sensors that can measure horizontal position and vertical position. The resulting X,Y, and Z coordinates are compared against a design that was loaded into the AccuGrade system. The system uses two "Global Positioning System" (GPS) receivers as the position sensors. There are other sensors that are used by the AccuGrade system in order to provide feed back information to the AccuGrade system display about the machine position and bucket position.The GPS system uses two GPS receivers that are attached to
The AccuGrade TM system is designed for earth moving equipment in the construction application. The system can be used with a wide variety of sensors in order to provide information. The information that is provided can assist the operator in order to maintain machine bucket control according to the site plan.Conventional Systems
Conventional systems provide elevation or slope control. Conventional systems continually measure the offset between a reference surface and the cutting edge of the machine. This measured offset is compared against a design offset that has been entered into the system. If the measured offsets and the design offsets differ, the AccuGrade system will inform the operator that the cutting edge is not at the desired location.Conventional systems do not provide a horizontal position. Therefore, the following items are not used in a conventional system: design files, background maps and avoidance zones.Global Navigation Satellite System (GLONASS)
Newer GPS receivers will be able to receive data from the Global Navigation Satellite System (GLONASS). GLONASS consists of twenty-one (21) satellites in three orbital planes. There are three spare "on-orbit" satellites. The three orbital planes are separated by 120 degrees. The satellites that are within the same orbit plane are separated by 45 degrees. Each satellite completes one orbit in approximately 11 hours and 15 minutes. The position of the satellites and the time for one orbit allows more GPS satellites to be used for the machine position solution.Low Accuracy Corrected GPS Satellite Based Augmentation System (SBAS)
If low accuracy GPS positions are adequate for the required job site work, then you can use "Satellite-Based Augmentation Systems" (SBAS) error corrections. SBAS corrected systems do not require additional site infrastructure. SBAS are free-to-air GPS correction services. SBAS networks consist of ground stations that are set at known positions around the world and geostationary satellites that maintain a fixed position above the Earth. The ground stations receive GPS signals from all GPS satellites that are in view. The GPS data is then sent to a master control site, which then transmits GPS corrections to the geostationary satellites. The satellites broadcast the information to all SBAS enabled GPS receivers. The following SBAS networks are currently available:
WAAS – Wide Area Augmentation System is used in the United States.
EGNOS – European Geostationary Navigation Overlay Service is used in Europe. For more information, refer to the Operation and Maintenance Manual, SEBU8501, "Product Information". The information is located in the section under the subtitle "General Information".
MSAS – Multi-Functional Satellite Augmentation System is used in Japan.Global Positioning System (GPS)
The GPS uses sensors that can measure horizontal position and vertical position. The resulting X,Y, and Z coordinates are compared against a design that was loaded into the AccuGrade system. The system uses two "Global Positioning System" (GPS) receivers as the position sensors. There are other sensors that are used by the AccuGrade system in order to provide feed back information to the AccuGrade system display about the machine position and bucket position.The GPS system uses two GPS receivers that are attached to
Caterpillar SIS machinery equipment:
Caterpillar SIS
302.5 Mini Hydraulic Excavator 4AZ00001-UP (MACHINE) POWERED BY 3013 Engine »
153-7881
TOOTH GP-UNI
303.5 Mini Hydraulic Excavator AFW00001-UP (MACHINE) »
153-7881
TOOTH GP-UNI
305CR Mini Hydraulic Excavator DSA00001-UP (MACHINE) POWERED BY K4N Engine »
153-7881
TOOTH GP-UNI
BH27 BH30 BH30 w Skid Steer Loader Backhoe B2H00001-UP »
153-7881
TOOTH GP-UNI
303.5 Mini Hydraulic Excavator DCH00001-UP (MACHINE) POWERED BY 3013 Engine »
153-7881
TOOTH GP-UNI
303 CR Mini Hydraulic Excavator DMA00001-UP (MACHINE) POWERED BY S3L2 Engine »
153-7881
TOOTH GP-UNI
304CR Mini Hydraulic Excavator NAD00001-UP (MACHINE) POWERED BY S4L2 Engine »
153-7881
TOOTH GP-UNI
302.5C Mini Hydraulic Excavator GBB00001-UP (MACHINE) POWERED BY S3L2 Engine »
153-7881
TOOTH GP-UNI
BH150 & BH160 Skid Steer Loader Backhoes GGK00001-UP »
153-7881
TOOTH GP-UNI
303.5C CR Mini Hydraulic Excavator DMY00001-UP (MACHINE) POWERED BY S3Q2 Engine »
153-7881
TOOTH GP-UNI
303C CR Mini Hydraulic Excavator BXT00001-UP (MACHINE) POWERED BY S3Q2 Engine »
153-7881
TOOTH GP-UNI
302.7D CR Mini Hydraulic Excavator LJL00001-UP (MACHINE) »
153-7881
TOOTH GP-UNI
303.5E 2CR Mini Hydraulic Excavator BG800001-UP (MACHINE) POWERED BY C1.7 Engine »
153-7881
TOOTH GP-UNI
304E 2CR Mini Hydraulic Excavator CJ200001-UP (MACHINE) POWERED BY C2.4 Engine »
153-7881
TOOTH GP-UNI
Cat SIS web machinery list:
Parts tooth Caterpillar catalog:
1358206
TOOTH GP-UNI
304, 304.5, 304C CR, 305, 305.5D, 305.5E, 305C CR, 305D CR, 305E, 416B, 416C, 416D, 420D, 422E, 422F, 424B, 424B HD, 424D, 426C, 428B, 428C, 428D, 428E, 428F, 430D, 432D, 432E, 432F, 434E, 434F, 436C,...
304, 304.5, 304C CR, 305, 305.5D, 305.5E, 305C CR, 305D CR, 305E, 416B, 416C, 416D, 420D, 422E, 422F, 424B, 424B HD, 424D, 426C, 428B, 428C, 428D, 428E, 428F, 430D, 432D, 432E, 432F, 434E, 434F, 436C,...
2332885
TOOTH GP
301.4C, 301.5, 301.7D, 301.7D CR, 302.2D, 302.4D, 302.5, 302.7D, 303.5D, 303.5E, 303E CR, 304D CR, 304E
301.4C, 301.5, 301.7D, 301.7D CR, 302.2D, 302.4D, 302.5, 302.7D, 303.5D, 303.5E, 303E CR, 304D CR, 304E
1358203
TOOTH-UNI
304, 304.5, 304C CR, 305, 305.5D, 305.5E, 305C CR, 305D CR, 305E, 414E, 416B, 416C, 416D, 416E, 416F, 420D, 420E, 420F, 422E, 422F, 424B, 424B HD, 424D, 426C, 428B, 428C, 428D, 428E, 428F, 430D, 430E,...
304, 304.5, 304C CR, 305, 305.5D, 305.5E, 305C CR, 305D CR, 305E, 414E, 416B, 416C, 416D, 416E, 416F, 420D, 420E, 420F, 422E, 422F, 424B, 424B HD, 424D, 426C, 428B, 428C, 428D, 428E, 428F, 430D, 430E,...
2313999
TOOTH
301.4C, 301.5, 301.6C, 301.7D, 301.7D CR, 302.2D, 302.4D, 302.5, 302.5C, 302.7D, 303, 303.5D, 303.5E, 303E CR, 304D CR, 304E
301.4C, 301.5, 301.6C, 301.7D, 301.7D CR, 302.2D, 302.4D, 302.5, 302.5C, 302.7D, 303, 303.5D, 303.5E, 303E CR, 304D CR, 304E
1359390
TOOTH-UNI
302.2D, 302.4D, 302.5, 302.5C, 302.7D, 303, 303.5, 303.5C, 303.5D, 303.5E, 303C CR, 303E CR, 304, 304D CR, 304E, 305, BH150, BH27
302.2D, 302.4D, 302.5, 302.5C, 302.7D, 303, 303.5, 303.5C, 303.5D, 303.5E, 303C CR, 303E CR, 304, 304D CR, 304E, 305, BH150, BH27
2314000
TOOTH
304, 304.5, 305, 305.5D, 305.5E, 305D CR, 305E
304, 304.5, 305, 305.5D, 305.5E, 305D CR, 305E
2082784
TOOTH GP-TRENCHER
T15, T9, T9B
T15, T9, T9B
2082783
TOOTH GP-TRENCHER
T15, T9, T9B
T15, T9, T9B
2082782
TOOTH GP-TRENCHER
T15, T9, T9B
T15, T9, T9B
2082781
TOOTH GP-TRENCHER
T15, T9, T9B
T15, T9, T9B
1944682
TOOTH GP-TRENCHER
T15, T9, T9B
T15, T9, T9B
1660821
TOOTH GP-TRENCHER
T9, T9B
T9, T9B
2082792
TOOTH GP-TRENCHER
T15, T9B
T15, T9B
2082791
TOOTH GP-TRENCHER
T15, T9B
T15, T9B
2082790
TOOTH GP-TRENCHER
T15, T9B
T15, T9B
1935728
TOOTH GP-TRENCHER
T15, T9B
T15, T9B
1890702
TOOTH GP-TRENCHER
T15, T9B
T15, T9B